From af1e1339d780b1b09766c21e3f4474f9433c1392 Mon Sep 17 00:00:00 2001 From: Bel LaPointe Date: Thu, 2 May 2019 09:21:21 -0600 Subject: [PATCH] No more vendor or logger --- fproxy/new_test.go | 4 +- fproxy/serve.go | 32 +- oldmain.go | 20 +- vendor/github.com/armon/go-socks5/LICENSE | 20 - vendor/github.com/armon/go-socks5/README.md | 45 - vendor/github.com/armon/go-socks5/auth.go | 151 --- .../github.com/armon/go-socks5/credentials.go | 17 - vendor/github.com/armon/go-socks5/request.go | 364 ------ vendor/github.com/armon/go-socks5/resolver.go | 23 - vendor/github.com/armon/go-socks5/ruleset.go | 41 - vendor/github.com/armon/go-socks5/socks5.go | 169 --- vendor/github.com/golang/snappy/AUTHORS | 15 - vendor/github.com/golang/snappy/CONTRIBUTORS | 37 - vendor/github.com/golang/snappy/LICENSE | 27 - vendor/github.com/golang/snappy/README | 107 -- vendor/github.com/golang/snappy/decode.go | 237 ---- .../github.com/golang/snappy/decode_amd64.go | 14 - .../github.com/golang/snappy/decode_amd64.s | 490 -------- .../github.com/golang/snappy/decode_other.go | 101 -- vendor/github.com/golang/snappy/encode.go | 285 ----- .../github.com/golang/snappy/encode_amd64.go | 29 - .../github.com/golang/snappy/encode_amd64.s | 730 ------------ .../github.com/golang/snappy/encode_other.go | 238 ---- vendor/github.com/golang/snappy/snappy.go | 98 -- .../klauspost/cpuid/CONTRIBUTING.txt | 35 - vendor/github.com/klauspost/cpuid/LICENSE | 22 - vendor/github.com/klauspost/cpuid/README.md | 145 --- vendor/github.com/klauspost/cpuid/cpuid.go | 1040 ----------------- vendor/github.com/klauspost/cpuid/cpuid_386.s | 42 - .../github.com/klauspost/cpuid/cpuid_amd64.s | 42 - .../klauspost/cpuid/detect_intel.go | 17 - .../github.com/klauspost/cpuid/detect_ref.go | 23 - vendor/github.com/klauspost/cpuid/generate.go | 4 - .../github.com/klauspost/cpuid/private-gen.go | 476 -------- .../github.com/klauspost/reedsolomon/LICENSE | 23 - .../klauspost/reedsolomon/README.md | 279 ----- .../klauspost/reedsolomon/appveyor.yml | 20 - .../klauspost/reedsolomon/galois.go | 902 -------------- .../klauspost/reedsolomon/galois_amd64.go | 91 -- .../klauspost/reedsolomon/galois_amd64.s | 236 ---- .../klauspost/reedsolomon/galois_arm64.go | 48 - .../klauspost/reedsolomon/galois_arm64.s | 141 --- .../klauspost/reedsolomon/galois_noasm.go | 27 - .../klauspost/reedsolomon/gentables.go | 132 --- .../klauspost/reedsolomon/inversion_tree.go | 160 --- .../klauspost/reedsolomon/matrix.go | 279 ----- .../klauspost/reedsolomon/options.go | 111 -- .../klauspost/reedsolomon/reedsolomon.go | 884 -------------- .../klauspost/reedsolomon/streaming.go | 584 --------- vendor/github.com/pierrec/lz4/LICENSE | 28 - vendor/github.com/pierrec/lz4/README.md | 24 - vendor/github.com/pierrec/lz4/block.go | 397 ------- vendor/github.com/pierrec/lz4/debug.go | 23 - vendor/github.com/pierrec/lz4/debug_stub.go | 7 - vendor/github.com/pierrec/lz4/go.mod | 3 - vendor/github.com/pierrec/lz4/go.sum | 2 - .../pierrec/lz4/internal/xxh32/xxh32zero.go | 222 ---- vendor/github.com/pierrec/lz4/lz4.go | 68 -- vendor/github.com/pierrec/lz4/lz4_go1.10.go | 29 - .../github.com/pierrec/lz4/lz4_notgo1.10.go | 29 - vendor/github.com/pierrec/lz4/reader.go | 295 ----- vendor/github.com/pierrec/lz4/writer.go | 267 ----- vendor/golang.org/x/crypto/LICENSE | 27 - vendor/golang.org/x/crypto/PATENTS | 22 - vendor/golang.org/x/crypto/cast5/cast5.go | 526 --------- .../x/crypto/openpgp/armor/armor.go | 219 ---- .../x/crypto/openpgp/armor/encode.go | 160 --- .../x/crypto/openpgp/canonical_text.go | 59 - .../x/crypto/openpgp/elgamal/elgamal.go | 122 -- .../x/crypto/openpgp/errors/errors.go | 72 -- vendor/golang.org/x/crypto/openpgp/keys.go | 640 ---------- .../x/crypto/openpgp/packet/compressed.go | 123 -- .../x/crypto/openpgp/packet/config.go | 91 -- .../x/crypto/openpgp/packet/encrypted_key.go | 206 ---- .../x/crypto/openpgp/packet/literal.go | 89 -- .../x/crypto/openpgp/packet/ocfb.go | 143 --- .../openpgp/packet/one_pass_signature.go | 73 -- .../x/crypto/openpgp/packet/opaque.go | 162 --- .../x/crypto/openpgp/packet/packet.go | 549 --------- .../x/crypto/openpgp/packet/private_key.go | 380 ------ .../x/crypto/openpgp/packet/public_key.go | 753 ------------ .../x/crypto/openpgp/packet/public_key_v3.go | 279 ----- .../x/crypto/openpgp/packet/reader.go | 76 -- .../x/crypto/openpgp/packet/signature.go | 731 ------------ .../x/crypto/openpgp/packet/signature_v3.go | 146 --- .../openpgp/packet/symmetric_key_encrypted.go | 155 --- .../openpgp/packet/symmetrically_encrypted.go | 290 ----- .../x/crypto/openpgp/packet/userattribute.go | 91 -- .../x/crypto/openpgp/packet/userid.go | 160 --- vendor/golang.org/x/crypto/openpgp/read.go | 442 ------- vendor/golang.org/x/crypto/openpgp/s2k/s2k.go | 273 ----- vendor/golang.org/x/crypto/openpgp/write.go | 378 ------ .../x/crypto/ripemd160/ripemd160.go | 120 -- .../x/crypto/ripemd160/ripemd160block.go | 165 --- vendor/golang.org/x/net/LICENSE | 27 - vendor/golang.org/x/net/PATENTS | 22 - vendor/golang.org/x/net/context/context.go | 56 - vendor/golang.org/x/net/context/go17.go | 72 -- vendor/golang.org/x/net/context/go19.go | 20 - vendor/golang.org/x/net/context/pre_go17.go | 300 ----- vendor/golang.org/x/net/context/pre_go19.go | 109 -- .../golang.org/x/net/internal/socks/client.go | 168 --- .../golang.org/x/net/internal/socks/socks.go | 317 ----- vendor/golang.org/x/net/proxy/direct.go | 18 - vendor/golang.org/x/net/proxy/per_host.go | 140 --- vendor/golang.org/x/net/proxy/proxy.go | 139 --- vendor/golang.org/x/net/proxy/socks5.go | 36 - vendor/local/.gitignore | 12 - vendor/local/encoder/bop.go | 625 ---------- vendor/local/encoder/bop2_test.go | 61 - vendor/local/encoder/bop3_test.go | 75 -- vendor/local/encoder/bop_test.go | 111 -- vendor/local/encoder/config.go | 7 - vendor/local/encoder/encoder.go | 252 ---- vendor/local/encoder/encoder_test.go | 405 ------- vendor/local/encoder/pipe/pipe.go | 80 -- vendor/local/encoder/pipe/pipe_test.go | 83 -- vendor/local/encryptor | 1 - vendor/local/logger/.gitignore | 1 - vendor/local/logger/logger.go | 102 -- work.sh | 14 + 121 files changed, 42 insertions(+), 21384 deletions(-) delete mode 100644 vendor/github.com/armon/go-socks5/LICENSE delete mode 100644 vendor/github.com/armon/go-socks5/README.md delete mode 100644 vendor/github.com/armon/go-socks5/auth.go delete mode 100644 vendor/github.com/armon/go-socks5/credentials.go delete mode 100644 vendor/github.com/armon/go-socks5/request.go delete mode 100644 vendor/github.com/armon/go-socks5/resolver.go delete mode 100644 vendor/github.com/armon/go-socks5/ruleset.go delete mode 100644 vendor/github.com/armon/go-socks5/socks5.go delete mode 100644 vendor/github.com/golang/snappy/AUTHORS delete mode 100644 vendor/github.com/golang/snappy/CONTRIBUTORS delete mode 100644 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vendor/local/logger/.gitignore delete mode 100755 vendor/local/logger/logger.go create mode 100644 work.sh diff --git a/fproxy/new_test.go b/fproxy/new_test.go index d620da4..c13975c 100644 --- a/fproxy/new_test.go +++ b/fproxy/new_test.go @@ -2,7 +2,7 @@ package fproxy import ( "io/ioutil" - "local/logger" + "log" "os" "os/exec" "path" @@ -245,7 +245,7 @@ func getKeyPair(mode, parent string) string { cmd.Dir = d out, err := cmd.CombinedOutput() if err != nil { - logger.Logf("OUTPUT: %s", out) + log.Printf("OUTPUT: %s", out) panic(err) } return path.Join(d, mode) diff --git a/fproxy/serve.go b/fproxy/serve.go index c281fbf..a29ba28 100644 --- a/fproxy/serve.go +++ b/fproxy/serve.go @@ -6,7 +6,7 @@ import ( "io" "io/ioutil" "local/encoder" - "local/logger" + "log" "net" "net/http" "net/http/httputil" @@ -45,11 +45,11 @@ func (fp *FProxy) Start() { go func() { if fp.fromcrt != "" { if err := fp.sserver.ListenAndServeTLS(fp.mycrt, fp.mykey); err != http.ErrServerClosed { - logger.Fatal(err) + log.Fatal(err) } } else { if err := fp.iserver.ListenAndServe(); err != http.ErrServerClosed { - logger.Fatal(err) + log.Fatal(err) } } }() @@ -75,17 +75,17 @@ func (fp *FProxy) Valid(user, pass string) bool { if string(userb) != string(should[:30]) || string(passb) != string(should[len(should)-30:]) { return false } - logger.Log(fp.httpport, "directly connecting socks") + log.Print(fp.httpport, "directly connecting socks") return true } func (fp *FProxy) Allow(ctx context.Context, r *socks5.Request) (context.Context, bool) { if !fp.fromLocal(r.RemoteAddr.IP.String()) { - logger.Log(fp.httpport, "denying socks from non-local", r.RemoteAddr.IP.String()) + log.Print(fp.httpport, "denying socks from non-local", r.RemoteAddr.IP.String()) return ctx, false } if len(fp.whitelist) > 0 && !contains(fp.whitelist, baseHost(r.DestAddr.FQDN)) && !contains(fp.whitelist, baseHost(r.DestAddr.IP.String())) { - logger.Log(fp.httpport, "denying socks to non-whitelist", r.DestAddr.FQDN) + log.Print(fp.httpport, "denying socks to non-whitelist", r.DestAddr.FQDN) return ctx, false } return ctx, true @@ -98,34 +98,34 @@ func (fp *FProxy) Close() error { func (fp *FProxy) ServeHTTP(w http.ResponseWriter, r *http.Request) { if !fp.fromLocal(r.RemoteAddr) { - logger.Log(fp.httpport, "denying non-local", r.RemoteAddr) + log.Print(fp.httpport, "denying non-local", r.RemoteAddr) deny(w, r) return } if !fp.toWhitelist(r) { - logger.Log(fp.httpport, "denying non-whitelist", r.URL) + log.Print(fp.httpport, "denying non-whitelist", r.URL) deny(w, r) return } if contains(fp.bypass, baseHost(r.URL.Host)) { - logger.Log(fp.httpport, "passing through", r.URL) + log.Print(fp.httpport, "passing through", r.URL) fp.Passthrough(w, r) return } if r.Method == http.MethodConnect && fp.transport.Proxy == nil { - logger.Log(fp.httpport, "directly connecting", r.Host) + log.Print(fp.httpport, "directly connecting", r.Host) fp.Connect(w, r) return } if r.Method == http.MethodConnect && fp.transport.Proxy != nil { - logger.Log(fp.httpport, "connecting", r.Host, "via", fmt.Sprint(fp.transport.Proxy(r))) + log.Print(fp.httpport, "connecting", r.Host, "via", fmt.Sprint(fp.transport.Proxy(r))) fp.Connect(w, r) return } if fp.transport.Proxy != nil { - logger.Log(fp.httpport, "proxying", r.Host, "via", fmt.Sprint(fp.transport.Proxy(r))) + log.Print(fp.httpport, "proxying", r.Host, "via", fmt.Sprint(fp.transport.Proxy(r))) } else { - logger.Log(fp.httpport, "proxying directly to", r.Host) + log.Print(fp.httpport, "proxying directly to", r.Host) } fp.ProxyRequest(w, r) } @@ -212,7 +212,7 @@ func (fp *FProxy) ProxyRequest(w http.ResponseWriter, r *http.Request) { transport := fp.transport resp, err := transport.RoundTrip(r) if err != nil { - logger.Log("ProxyRequest ERR", err) + log.Print("ProxyRequest ERR", err) http.Error(w, err.Error(), http.StatusServiceUnavailable) return } @@ -230,7 +230,7 @@ func (fp *FProxy) old_Proxy_Request(w http.ResponseWriter, r *http.Request) { proxy.Transport = fp.transport v = strings.Split(fmt.Sprintln(fp.transport.Proxy(r)), " ")[0] } - logger.Logf("%s: proxying %q %q -> %q", fp.sserver.Addr, r.Method, withoutPath(r.URL).String(), v) + log.Printf("%s: proxying %q %q -> %q", fp.sserver.Addr, r.Method, withoutPath(r.URL).String(), v) proxy.ServeHTTP(w, r) return } @@ -241,7 +241,7 @@ func (fp *FProxy) Passthrough(w http.ResponseWriter, r *http.Request) { proxy.ServeHTTP(w, r) return } - dest_conn, err := net.DialTimeout("tcp", r.Host, 10*time.Second) + dest_conn, err := net.DialTimeout("tcp", r.Host, 30*time.Second) if err != nil { http.Error(w, err.Error(), http.StatusServiceUnavailable) return diff --git a/oldmain.go b/oldmain.go index 0b4e2e7..b95d53f 100644 --- a/oldmain.go +++ b/oldmain.go @@ -7,7 +7,7 @@ import ( "fmt" "io" "io/ioutil" - "local/logger" + "log" "net" "net/http" "net/http/httputil" @@ -88,25 +88,25 @@ func (s *Server) ServeHTTP(w http.ResponseWriter, r *http.Request) { fixScheme(r) // if not from localhost if !fromLocalhost(r.RemoteAddr) { - logger.Log("Denying non-localhost", r.RemoteAddr) + log.Print("Denying non-localhost", r.RemoteAddr) denyAccess(w) return } if !toWhitelist(s.whitelist, r.URL.Host) { - logger.Log("Denying non-whitelisted", r.URL.Host) + log.Print("Denying non-whitelisted", r.URL.Host) denyAccess(w) return } if toWhitelist(s.bypass, r.URL.Host) { - logger.Log("Bypassing", r.URL.String()) + log.Print("Bypassing", r.URL.String()) s.passthrough(w, r) return } if toWhitelist(s.secure, r.URL.Host) { - logger.Log("Securing", r.URL.String(), r.Host) + log.Print("Securing", r.URL.String(), r.Host) r.URL.Scheme = "https" } - //logger.Log("Proxying", r.URL.String(), r.Host, *r) + //log.Print("Proxying", r.URL.String(), r.Host, *r) // proxy via stuncaddsies s.handleHTTP(w, r) } @@ -249,14 +249,14 @@ func oldmain() { whitelist := strings.Split(conf["whitelist"], ",,") bypass := strings.Split(conf["bypass"], ",,") secure := strings.Split(conf["secure"], ",,") - logger.Log(conf) + log.Print(conf) server, err := NewServer(conf["port"], conf["stunaddr"], conf["mecrt"], conf["mekey"], conf["tocrt"], conf["fromcrt"], append(whitelist, bypass...), bypass, secure) if err != nil { - logger.Fatal(err) + log.Fatal(err) } if conf["fromcrt"] != "" { - logger.Fatal(server.server.ListenAndServeTLS(conf["mecrt"], conf["mekey"])) + log.Fatal(server.server.ListenAndServeTLS(conf["mecrt"], conf["mekey"])) } else { - logger.Fatal(http.ListenAndServe(conf["port"], server)) + log.Fatal(http.ListenAndServe(conf["port"], server)) } } diff --git a/vendor/github.com/armon/go-socks5/LICENSE b/vendor/github.com/armon/go-socks5/LICENSE deleted file mode 100644 index a5df10e..0000000 --- a/vendor/github.com/armon/go-socks5/LICENSE +++ /dev/null @@ -1,20 +0,0 @@ -The MIT License (MIT) - -Copyright (c) 2014 Armon Dadgar - -Permission is hereby granted, free of charge, to any person obtaining a copy of -this software and associated documentation files (the "Software"), to deal in -the Software without restriction, including without limitation the rights to -use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of -the Software, and to permit persons to whom the Software is furnished to do so, -subject to the following conditions: - -The above copyright notice and this permission notice shall be included in all -copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR -IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS -FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR -COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER -IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN -CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. diff --git a/vendor/github.com/armon/go-socks5/README.md b/vendor/github.com/armon/go-socks5/README.md deleted file mode 100644 index 9cd1563..0000000 --- a/vendor/github.com/armon/go-socks5/README.md +++ /dev/null @@ -1,45 +0,0 @@ -go-socks5 [![Build Status](https://travis-ci.org/armon/go-socks5.png)](https://travis-ci.org/armon/go-socks5) -========= - -Provides the `socks5` package that implements a [SOCKS5 server](http://en.wikipedia.org/wiki/SOCKS). -SOCKS (Secure Sockets) is used to route traffic between a client and server through -an intermediate proxy layer. This can be used to bypass firewalls or NATs. - -Feature -======= - -The package has the following features: -* "No Auth" mode -* User/Password authentication -* Support for the CONNECT command -* Rules to do granular filtering of commands -* Custom DNS resolution -* Unit tests - -TODO -==== - -The package still needs the following: -* Support for the BIND command -* Support for the ASSOCIATE command - - -Example -======= - -Below is a simple example of usage - -```go -// Create a SOCKS5 server -conf := &socks5.Config{} -server, err := socks5.New(conf) -if err != nil { - panic(err) -} - -// Create SOCKS5 proxy on localhost port 8000 -if err := server.ListenAndServe("tcp", "127.0.0.1:8000"); err != nil { - panic(err) -} -``` - diff --git a/vendor/github.com/armon/go-socks5/auth.go b/vendor/github.com/armon/go-socks5/auth.go deleted file mode 100644 index 7811e2a..0000000 --- a/vendor/github.com/armon/go-socks5/auth.go +++ /dev/null @@ -1,151 +0,0 @@ -package socks5 - -import ( - "fmt" - "io" -) - -const ( - NoAuth = uint8(0) - noAcceptable = uint8(255) - UserPassAuth = uint8(2) - userAuthVersion = uint8(1) - authSuccess = uint8(0) - authFailure = uint8(1) -) - -var ( - UserAuthFailed = fmt.Errorf("User authentication failed") - NoSupportedAuth = fmt.Errorf("No supported authentication mechanism") -) - -// A Request encapsulates authentication state provided -// during negotiation -type AuthContext struct { - // Provided auth method - Method uint8 - // Payload provided during negotiation. - // Keys depend on the used auth method. - // For UserPassauth contains Username - Payload map[string]string -} - -type Authenticator interface { - Authenticate(reader io.Reader, writer io.Writer) (*AuthContext, error) - GetCode() uint8 -} - -// NoAuthAuthenticator is used to handle the "No Authentication" mode -type NoAuthAuthenticator struct{} - -func (a NoAuthAuthenticator) GetCode() uint8 { - return NoAuth -} - -func (a NoAuthAuthenticator) Authenticate(reader io.Reader, writer io.Writer) (*AuthContext, error) { - _, err := writer.Write([]byte{socks5Version, NoAuth}) - return &AuthContext{NoAuth, nil}, err -} - -// UserPassAuthenticator is used to handle username/password based -// authentication -type UserPassAuthenticator struct { - Credentials CredentialStore -} - -func (a UserPassAuthenticator) GetCode() uint8 { - return UserPassAuth -} - -func (a UserPassAuthenticator) Authenticate(reader io.Reader, writer io.Writer) (*AuthContext, error) { - // Tell the client to use user/pass auth - if _, err := writer.Write([]byte{socks5Version, UserPassAuth}); err != nil { - return nil, err - } - - // Get the version and username length - header := []byte{0, 0} - if _, err := io.ReadAtLeast(reader, header, 2); err != nil { - return nil, err - } - - // Ensure we are compatible - if header[0] != userAuthVersion { - return nil, fmt.Errorf("Unsupported auth version: %v", header[0]) - } - - // Get the user name - userLen := int(header[1]) - user := make([]byte, userLen) - if _, err := io.ReadAtLeast(reader, user, userLen); err != nil { - return nil, err - } - - // Get the password length - if _, err := reader.Read(header[:1]); err != nil { - return nil, err - } - - // Get the password - passLen := int(header[0]) - pass := make([]byte, passLen) - if _, err := io.ReadAtLeast(reader, pass, passLen); err != nil { - return nil, err - } - - // Verify the password - if a.Credentials.Valid(string(user), string(pass)) { - if _, err := writer.Write([]byte{userAuthVersion, authSuccess}); err != nil { - return nil, err - } - } else { - if _, err := writer.Write([]byte{userAuthVersion, authFailure}); err != nil { - return nil, err - } - return nil, UserAuthFailed - } - - // Done - return &AuthContext{UserPassAuth, map[string]string{"Username": string(user)}}, nil -} - -// authenticate is used to handle connection authentication -func (s *Server) authenticate(conn io.Writer, bufConn io.Reader) (*AuthContext, error) { - // Get the methods - methods, err := readMethods(bufConn) - if err != nil { - return nil, fmt.Errorf("Failed to get auth methods: %v", err) - } - - // Select a usable method - for _, method := range methods { - cator, found := s.authMethods[method] - if found { - return cator.Authenticate(bufConn, conn) - } - } - - // No usable method found - return nil, noAcceptableAuth(conn) -} - -// noAcceptableAuth is used to handle when we have no eligible -// authentication mechanism -func noAcceptableAuth(conn io.Writer) error { - conn.Write([]byte{socks5Version, noAcceptable}) - return NoSupportedAuth -} - -// readMethods is used to read the number of methods -// and proceeding auth methods -func readMethods(r io.Reader) ([]byte, error) { - header := []byte{0} - if _, err := r.Read(header); err != nil { - return nil, err - } - - numMethods := int(header[0]) - methods := make([]byte, numMethods) - _, err := io.ReadAtLeast(r, methods, numMethods) - return methods, err -} diff --git a/vendor/github.com/armon/go-socks5/credentials.go b/vendor/github.com/armon/go-socks5/credentials.go deleted file mode 100644 index 9666427..0000000 --- a/vendor/github.com/armon/go-socks5/credentials.go +++ /dev/null @@ -1,17 +0,0 @@ -package socks5 - -// CredentialStore is used to support user/pass authentication -type CredentialStore interface { - Valid(user, password string) bool -} - -// StaticCredentials enables using a map directly as a credential store -type StaticCredentials map[string]string - -func (s StaticCredentials) Valid(user, password string) bool { - pass, ok := s[user] - if !ok { - return false - } - return password == pass -} diff --git a/vendor/github.com/armon/go-socks5/request.go b/vendor/github.com/armon/go-socks5/request.go deleted file mode 100644 index b615fcb..0000000 --- a/vendor/github.com/armon/go-socks5/request.go +++ /dev/null @@ -1,364 +0,0 @@ -package socks5 - -import ( - "fmt" - "io" - "net" - "strconv" - "strings" - - "golang.org/x/net/context" -) - -const ( - ConnectCommand = uint8(1) - BindCommand = uint8(2) - AssociateCommand = uint8(3) - ipv4Address = uint8(1) - fqdnAddress = uint8(3) - ipv6Address = uint8(4) -) - -const ( - successReply uint8 = iota - serverFailure - ruleFailure - networkUnreachable - hostUnreachable - connectionRefused - ttlExpired - commandNotSupported - addrTypeNotSupported -) - -var ( - unrecognizedAddrType = fmt.Errorf("Unrecognized address type") -) - -// AddressRewriter is used to rewrite a destination transparently -type AddressRewriter interface { - Rewrite(ctx context.Context, request *Request) (context.Context, *AddrSpec) -} - -// AddrSpec is used to return the target AddrSpec -// which may be specified as IPv4, IPv6, or a FQDN -type AddrSpec struct { - FQDN string - IP net.IP - Port int -} - -func (a *AddrSpec) String() string { - if a.FQDN != "" { - return fmt.Sprintf("%s (%s):%d", a.FQDN, a.IP, a.Port) - } - return fmt.Sprintf("%s:%d", a.IP, a.Port) -} - -// Address returns a string suitable to dial; prefer returning IP-based -// address, fallback to FQDN -func (a AddrSpec) Address() string { - if 0 != len(a.IP) { - return net.JoinHostPort(a.IP.String(), strconv.Itoa(a.Port)) - } - return net.JoinHostPort(a.FQDN, strconv.Itoa(a.Port)) -} - -// A Request represents request received by a server -type Request struct { - // Protocol version - Version uint8 - // Requested command - Command uint8 - // AuthContext provided during negotiation - AuthContext *AuthContext - // AddrSpec of the the network that sent the request - RemoteAddr *AddrSpec - // AddrSpec of the desired destination - DestAddr *AddrSpec - // AddrSpec of the actual destination (might be affected by rewrite) - realDestAddr *AddrSpec - bufConn io.Reader -} - -type conn interface { - Write([]byte) (int, error) - RemoteAddr() net.Addr -} - -// NewRequest creates a new Request from the tcp connection -func NewRequest(bufConn io.Reader) (*Request, error) { - // Read the version byte - header := []byte{0, 0, 0} - if _, err := io.ReadAtLeast(bufConn, header, 3); err != nil { - return nil, fmt.Errorf("Failed to get command version: %v", err) - } - - // Ensure we are compatible - if header[0] != socks5Version { - return nil, fmt.Errorf("Unsupported command version: %v", header[0]) - } - - // Read in the destination address - dest, err := readAddrSpec(bufConn) - if err != nil { - return nil, err - } - - request := &Request{ - Version: socks5Version, - Command: header[1], - DestAddr: dest, - bufConn: bufConn, - } - - return request, nil -} - -// handleRequest is used for request processing after authentication -func (s *Server) handleRequest(req *Request, conn conn) error { - ctx := context.Background() - - // Resolve the address if we have a FQDN - dest := req.DestAddr - if dest.FQDN != "" { - ctx_, addr, err := s.config.Resolver.Resolve(ctx, dest.FQDN) - if err != nil { - if err := sendReply(conn, hostUnreachable, nil); err != nil { - return fmt.Errorf("Failed to send reply: %v", err) - } - return fmt.Errorf("Failed to resolve destination '%v': %v", dest.FQDN, err) - } - ctx = ctx_ - dest.IP = addr - } - - // Apply any address rewrites - req.realDestAddr = req.DestAddr - if s.config.Rewriter != nil { - ctx, req.realDestAddr = s.config.Rewriter.Rewrite(ctx, req) - } - - // Switch on the command - switch req.Command { - case ConnectCommand: - return s.handleConnect(ctx, conn, req) - case BindCommand: - return s.handleBind(ctx, conn, req) - case AssociateCommand: - return s.handleAssociate(ctx, conn, req) - default: - if err := sendReply(conn, commandNotSupported, nil); err != nil { - return fmt.Errorf("Failed to send reply: %v", err) - } - return fmt.Errorf("Unsupported command: %v", req.Command) - } -} - -// handleConnect is used to handle a connect command -func (s *Server) handleConnect(ctx context.Context, conn conn, req *Request) error { - // Check if this is allowed - if ctx_, ok := s.config.Rules.Allow(ctx, req); !ok { - if err := sendReply(conn, ruleFailure, nil); err != nil { - return fmt.Errorf("Failed to send reply: %v", err) - } - return fmt.Errorf("Connect to %v blocked by rules", req.DestAddr) - } else { - ctx = ctx_ - } - - // Attempt to connect - dial := s.config.Dial - if dial == nil { - dial = func(ctx context.Context, net_, addr string) (net.Conn, error) { - return net.Dial(net_, addr) - } - } - target, err := dial(ctx, "tcp", req.realDestAddr.Address()) - if err != nil { - msg := err.Error() - resp := hostUnreachable - if strings.Contains(msg, "refused") { - resp = connectionRefused - } else if strings.Contains(msg, "network is unreachable") { - resp = networkUnreachable - } - if err := sendReply(conn, resp, nil); err != nil { - return fmt.Errorf("Failed to send reply: %v", err) - } - return fmt.Errorf("Connect to %v failed: %v", req.DestAddr, err) - } - defer target.Close() - - // Send success - local := target.LocalAddr().(*net.TCPAddr) - bind := AddrSpec{IP: local.IP, Port: local.Port} - if err := sendReply(conn, successReply, &bind); err != nil { - return fmt.Errorf("Failed to send reply: %v", err) - } - - // Start proxying - errCh := make(chan error, 2) - go proxy(target, req.bufConn, errCh) - go proxy(conn, target, errCh) - - // Wait - for i := 0; i < 2; i++ { - e := <-errCh - if e != nil { - // return from this function closes target (and conn). - return e - } - } - return nil -} - -// handleBind is used to handle a connect command -func (s *Server) handleBind(ctx context.Context, conn conn, req *Request) error { - // Check if this is allowed - if ctx_, ok := s.config.Rules.Allow(ctx, req); !ok { - if err := sendReply(conn, ruleFailure, nil); err != nil { - return fmt.Errorf("Failed to send reply: %v", err) - } - return fmt.Errorf("Bind to %v blocked by rules", req.DestAddr) - } else { - ctx = ctx_ - } - - // TODO: Support bind - if err := sendReply(conn, commandNotSupported, nil); err != nil { - return fmt.Errorf("Failed to send reply: %v", err) - } - return nil -} - -// handleAssociate is used to handle a connect command -func (s *Server) handleAssociate(ctx context.Context, conn conn, req *Request) error { - // Check if this is allowed - if ctx_, ok := s.config.Rules.Allow(ctx, req); !ok { - if err := sendReply(conn, ruleFailure, nil); err != nil { - return fmt.Errorf("Failed to send reply: %v", err) - } - return fmt.Errorf("Associate to %v blocked by rules", req.DestAddr) - } else { - ctx = ctx_ - } - - // TODO: Support associate - if err := sendReply(conn, commandNotSupported, nil); err != nil { - return fmt.Errorf("Failed to send reply: %v", err) - } - return nil -} - -// readAddrSpec is used to read AddrSpec. -// Expects an address type byte, follwed by the address and port -func readAddrSpec(r io.Reader) (*AddrSpec, error) { - d := &AddrSpec{} - - // Get the address type - addrType := []byte{0} - if _, err := r.Read(addrType); err != nil { - return nil, err - } - - // Handle on a per type basis - switch addrType[0] { - case ipv4Address: - addr := make([]byte, 4) - if _, err := io.ReadAtLeast(r, addr, len(addr)); err != nil { - return nil, err - } - d.IP = net.IP(addr) - - case ipv6Address: - addr := make([]byte, 16) - if _, err := io.ReadAtLeast(r, addr, len(addr)); err != nil { - return nil, err - } - d.IP = net.IP(addr) - - case fqdnAddress: - if _, err := r.Read(addrType); err != nil { - return nil, err - } - addrLen := int(addrType[0]) - fqdn := make([]byte, addrLen) - if _, err := io.ReadAtLeast(r, fqdn, addrLen); err != nil { - return nil, err - } - d.FQDN = string(fqdn) - - default: - return nil, unrecognizedAddrType - } - - // Read the port - port := []byte{0, 0} - if _, err := io.ReadAtLeast(r, port, 2); err != nil { - return nil, err - } - d.Port = (int(port[0]) << 8) | int(port[1]) - - return d, nil -} - -// sendReply is used to send a reply message -func sendReply(w io.Writer, resp uint8, addr *AddrSpec) error { - // Format the address - var addrType uint8 - var addrBody []byte - var addrPort uint16 - switch { - case addr == nil: - addrType = ipv4Address - addrBody = []byte{0, 0, 0, 0} - addrPort = 0 - - case addr.FQDN != "": - addrType = fqdnAddress - addrBody = append([]byte{byte(len(addr.FQDN))}, addr.FQDN...) - addrPort = uint16(addr.Port) - - case addr.IP.To4() != nil: - addrType = ipv4Address - addrBody = []byte(addr.IP.To4()) - addrPort = uint16(addr.Port) - - case addr.IP.To16() != nil: - addrType = ipv6Address - addrBody = []byte(addr.IP.To16()) - addrPort = uint16(addr.Port) - - default: - return fmt.Errorf("Failed to format address: %v", addr) - } - - // Format the message - msg := make([]byte, 6+len(addrBody)) - msg[0] = socks5Version - msg[1] = resp - msg[2] = 0 // Reserved - msg[3] = addrType - copy(msg[4:], addrBody) - msg[4+len(addrBody)] = byte(addrPort >> 8) - msg[4+len(addrBody)+1] = byte(addrPort & 0xff) - - // Send the message - _, err := w.Write(msg) - return err -} - -type closeWriter interface { - CloseWrite() error -} - -// proxy is used to suffle data from src to destination, and sends errors -// down a dedicated channel -func proxy(dst io.Writer, src io.Reader, errCh chan error) { - _, err := io.Copy(dst, src) - if tcpConn, ok := dst.(closeWriter); ok { - tcpConn.CloseWrite() - } - errCh <- err -} diff --git a/vendor/github.com/armon/go-socks5/resolver.go b/vendor/github.com/armon/go-socks5/resolver.go deleted file mode 100644 index b75a5c4..0000000 --- a/vendor/github.com/armon/go-socks5/resolver.go +++ /dev/null @@ -1,23 +0,0 @@ -package socks5 - -import ( - "net" - - "golang.org/x/net/context" -) - -// NameResolver is used to implement custom name resolution -type NameResolver interface { - Resolve(ctx context.Context, name string) (context.Context, net.IP, error) -} - -// DNSResolver uses the system DNS to resolve host names -type DNSResolver struct{} - -func (d DNSResolver) Resolve(ctx context.Context, name string) (context.Context, net.IP, error) { - addr, err := net.ResolveIPAddr("ip", name) - if err != nil { - return ctx, nil, err - } - return ctx, addr.IP, err -} diff --git a/vendor/github.com/armon/go-socks5/ruleset.go b/vendor/github.com/armon/go-socks5/ruleset.go deleted file mode 100644 index ba0e353..0000000 --- a/vendor/github.com/armon/go-socks5/ruleset.go +++ /dev/null @@ -1,41 +0,0 @@ -package socks5 - -import ( - "golang.org/x/net/context" -) - -// RuleSet is used to provide custom rules to allow or prohibit actions -type RuleSet interface { - Allow(ctx context.Context, req *Request) (context.Context, bool) -} - -// PermitAll returns a RuleSet which allows all types of connections -func PermitAll() RuleSet { - return &PermitCommand{true, true, true} -} - -// PermitNone returns a RuleSet which disallows all types of connections -func PermitNone() RuleSet { - return &PermitCommand{false, false, false} -} - -// PermitCommand is an implementation of the RuleSet which -// enables filtering supported commands -type PermitCommand struct { - EnableConnect bool - EnableBind bool - EnableAssociate bool -} - -func (p *PermitCommand) Allow(ctx context.Context, req *Request) (context.Context, bool) { - switch req.Command { - case ConnectCommand: - return ctx, p.EnableConnect - case BindCommand: - return ctx, p.EnableBind - case AssociateCommand: - return ctx, p.EnableAssociate - } - - return ctx, false -} diff --git a/vendor/github.com/armon/go-socks5/socks5.go b/vendor/github.com/armon/go-socks5/socks5.go deleted file mode 100644 index a17be68..0000000 --- a/vendor/github.com/armon/go-socks5/socks5.go +++ /dev/null @@ -1,169 +0,0 @@ -package socks5 - -import ( - "bufio" - "fmt" - "log" - "net" - "os" - - "golang.org/x/net/context" -) - -const ( - socks5Version = uint8(5) -) - -// Config is used to setup and configure a Server -type Config struct { - // AuthMethods can be provided to implement custom authentication - // By default, "auth-less" mode is enabled. - // For password-based auth use UserPassAuthenticator. - AuthMethods []Authenticator - - // If provided, username/password authentication is enabled, - // by appending a UserPassAuthenticator to AuthMethods. If not provided, - // and AUthMethods is nil, then "auth-less" mode is enabled. - Credentials CredentialStore - - // Resolver can be provided to do custom name resolution. - // Defaults to DNSResolver if not provided. - Resolver NameResolver - - // Rules is provided to enable custom logic around permitting - // various commands. If not provided, PermitAll is used. - Rules RuleSet - - // Rewriter can be used to transparently rewrite addresses. - // This is invoked before the RuleSet is invoked. - // Defaults to NoRewrite. - Rewriter AddressRewriter - - // BindIP is used for bind or udp associate - BindIP net.IP - - // Logger can be used to provide a custom log target. - // Defaults to stdout. - Logger *log.Logger - - // Optional function for dialing out - Dial func(ctx context.Context, network, addr string) (net.Conn, error) -} - -// Server is reponsible for accepting connections and handling -// the details of the SOCKS5 protocol -type Server struct { - config *Config - authMethods map[uint8]Authenticator -} - -// New creates a new Server and potentially returns an error -func New(conf *Config) (*Server, error) { - // Ensure we have at least one authentication method enabled - if len(conf.AuthMethods) == 0 { - if conf.Credentials != nil { - conf.AuthMethods = []Authenticator{&UserPassAuthenticator{conf.Credentials}} - } else { - conf.AuthMethods = []Authenticator{&NoAuthAuthenticator{}} - } - } - - // Ensure we have a DNS resolver - if conf.Resolver == nil { - conf.Resolver = DNSResolver{} - } - - // Ensure we have a rule set - if conf.Rules == nil { - conf.Rules = PermitAll() - } - - // Ensure we have a log target - if conf.Logger == nil { - conf.Logger = log.New(os.Stdout, "", log.LstdFlags) - } - - server := &Server{ - config: conf, - } - - server.authMethods = make(map[uint8]Authenticator) - - for _, a := range conf.AuthMethods { - server.authMethods[a.GetCode()] = a - } - - return server, nil -} - -// ListenAndServe is used to create a listener and serve on it -func (s *Server) ListenAndServe(network, addr string) error { - l, err := net.Listen(network, addr) - if err != nil { - return err - } - return s.Serve(l) -} - -// Serve is used to serve connections from a listener -func (s *Server) Serve(l net.Listener) error { - for { - conn, err := l.Accept() - if err != nil { - return err - } - go s.ServeConn(conn) - } - return nil -} - -// ServeConn is used to serve a single connection. -func (s *Server) ServeConn(conn net.Conn) error { - defer conn.Close() - bufConn := bufio.NewReader(conn) - - // Read the version byte - version := []byte{0} - if _, err := bufConn.Read(version); err != nil { - s.config.Logger.Printf("[ERR] socks: Failed to get version byte: %v", err) - return err - } - - // Ensure we are compatible - if version[0] != socks5Version { - err := fmt.Errorf("Unsupported SOCKS version: %v", version) - s.config.Logger.Printf("[ERR] socks: %v", err) - return err - } - - // Authenticate the connection - authContext, err := s.authenticate(conn, bufConn) - if err != nil { - err = fmt.Errorf("Failed to authenticate: %v", err) - s.config.Logger.Printf("[ERR] socks: %v", err) - return err - } - - request, err := NewRequest(bufConn) - if err != nil { - if err == unrecognizedAddrType { - if err := sendReply(conn, addrTypeNotSupported, nil); err != nil { - return fmt.Errorf("Failed to send reply: %v", err) - } - } - return fmt.Errorf("Failed to read destination address: %v", err) - } - request.AuthContext = authContext - if client, ok := conn.RemoteAddr().(*net.TCPAddr); ok { - request.RemoteAddr = &AddrSpec{IP: client.IP, Port: client.Port} - } - - // Process the client request - if err := s.handleRequest(request, conn); err != nil { - err = fmt.Errorf("Failed to handle request: %v", err) - s.config.Logger.Printf("[ERR] socks: %v", err) - return err - } - - return nil -} diff --git a/vendor/github.com/golang/snappy/AUTHORS b/vendor/github.com/golang/snappy/AUTHORS deleted file mode 100644 index bcfa195..0000000 --- a/vendor/github.com/golang/snappy/AUTHORS +++ /dev/null @@ -1,15 +0,0 @@ -# This is the official list of Snappy-Go authors for copyright purposes. -# This file is distinct from the CONTRIBUTORS files. -# See the latter for an explanation. - -# Names should be added to this file as -# Name or Organization -# The email address is not required for organizations. - -# Please keep the list sorted. - -Damian Gryski -Google Inc. -Jan Mercl <0xjnml@gmail.com> -Rodolfo Carvalho -Sebastien Binet diff --git a/vendor/github.com/golang/snappy/CONTRIBUTORS b/vendor/github.com/golang/snappy/CONTRIBUTORS deleted file mode 100644 index 931ae31..0000000 --- a/vendor/github.com/golang/snappy/CONTRIBUTORS +++ /dev/null @@ -1,37 +0,0 @@ -# This is the official list of people who can contribute -# (and typically have contributed) code to the Snappy-Go repository. -# The AUTHORS file lists the copyright holders; this file -# lists people. For example, Google employees are listed here -# but not in AUTHORS, because Google holds the copyright. -# -# The submission process automatically checks to make sure -# that people submitting code are listed in this file (by email address). -# -# Names should be added to this file only after verifying that -# the individual or the individual's organization has agreed to -# the appropriate Contributor License Agreement, found here: -# -# http://code.google.com/legal/individual-cla-v1.0.html -# http://code.google.com/legal/corporate-cla-v1.0.html -# -# The agreement for individuals can be filled out on the web. -# -# When adding J Random Contributor's name to this file, -# either J's name or J's organization's name should be -# added to the AUTHORS file, depending on whether the -# individual or corporate CLA was used. - -# Names should be added to this file like so: -# Name - -# Please keep the list sorted. - -Damian Gryski -Jan Mercl <0xjnml@gmail.com> -Kai Backman -Marc-Antoine Ruel -Nigel Tao -Rob Pike -Rodolfo Carvalho -Russ Cox -Sebastien Binet diff --git a/vendor/github.com/golang/snappy/LICENSE b/vendor/github.com/golang/snappy/LICENSE deleted file mode 100644 index 6050c10..0000000 --- a/vendor/github.com/golang/snappy/LICENSE +++ /dev/null @@ -1,27 +0,0 @@ -Copyright (c) 2011 The Snappy-Go Authors. All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - * Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - * Redistributions in binary form must reproduce the above -copyright notice, this list of conditions and the following disclaimer -in the documentation and/or other materials provided with the -distribution. - * Neither the name of Google Inc. nor the names of its -contributors may be used to endorse or promote products derived from -this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/vendor/github.com/golang/snappy/README b/vendor/github.com/golang/snappy/README deleted file mode 100644 index cea1287..0000000 --- a/vendor/github.com/golang/snappy/README +++ /dev/null @@ -1,107 +0,0 @@ -The Snappy compression format in the Go programming language. - -To download and install from source: -$ go get github.com/golang/snappy - -Unless otherwise noted, the Snappy-Go source files are distributed -under the BSD-style license found in the LICENSE file. - - - -Benchmarks. - -The golang/snappy benchmarks include compressing (Z) and decompressing (U) ten -or so files, the same set used by the C++ Snappy code (github.com/google/snappy -and note the "google", not "golang"). On an "Intel(R) Core(TM) i7-3770 CPU @ -3.40GHz", Go's GOARCH=amd64 numbers as of 2016-05-29: - -"go test -test.bench=." - -_UFlat0-8 2.19GB/s ± 0% html -_UFlat1-8 1.41GB/s ± 0% urls -_UFlat2-8 23.5GB/s ± 2% jpg -_UFlat3-8 1.91GB/s ± 0% jpg_200 -_UFlat4-8 14.0GB/s ± 1% pdf -_UFlat5-8 1.97GB/s ± 0% html4 -_UFlat6-8 814MB/s ± 0% txt1 -_UFlat7-8 785MB/s ± 0% txt2 -_UFlat8-8 857MB/s ± 0% txt3 -_UFlat9-8 719MB/s ± 1% txt4 -_UFlat10-8 2.84GB/s ± 0% pb -_UFlat11-8 1.05GB/s ± 0% gaviota - -_ZFlat0-8 1.04GB/s ± 0% html -_ZFlat1-8 534MB/s ± 0% urls -_ZFlat2-8 15.7GB/s ± 1% jpg -_ZFlat3-8 740MB/s ± 3% jpg_200 -_ZFlat4-8 9.20GB/s ± 1% pdf -_ZFlat5-8 991MB/s ± 0% html4 -_ZFlat6-8 379MB/s ± 0% txt1 -_ZFlat7-8 352MB/s ± 0% txt2 -_ZFlat8-8 396MB/s ± 1% txt3 -_ZFlat9-8 327MB/s ± 1% txt4 -_ZFlat10-8 1.33GB/s ± 1% pb -_ZFlat11-8 605MB/s ± 1% gaviota - - - -"go test -test.bench=. -tags=noasm" - -_UFlat0-8 621MB/s ± 2% html -_UFlat1-8 494MB/s ± 1% urls -_UFlat2-8 23.2GB/s ± 1% jpg -_UFlat3-8 1.12GB/s ± 1% jpg_200 -_UFlat4-8 4.35GB/s ± 1% pdf -_UFlat5-8 609MB/s ± 0% html4 -_UFlat6-8 296MB/s ± 0% txt1 -_UFlat7-8 288MB/s ± 0% txt2 -_UFlat8-8 309MB/s ± 1% txt3 -_UFlat9-8 280MB/s ± 1% txt4 -_UFlat10-8 753MB/s ± 0% pb -_UFlat11-8 400MB/s ± 0% gaviota - -_ZFlat0-8 409MB/s ± 1% html -_ZFlat1-8 250MB/s ± 1% urls -_ZFlat2-8 12.3GB/s ± 1% jpg -_ZFlat3-8 132MB/s ± 0% jpg_200 -_ZFlat4-8 2.92GB/s ± 0% pdf -_ZFlat5-8 405MB/s ± 1% html4 -_ZFlat6-8 179MB/s ± 1% txt1 -_ZFlat7-8 170MB/s ± 1% txt2 -_ZFlat8-8 189MB/s ± 1% txt3 -_ZFlat9-8 164MB/s ± 1% txt4 -_ZFlat10-8 479MB/s ± 1% pb -_ZFlat11-8 270MB/s ± 1% gaviota - - - -For comparison (Go's encoded output is byte-for-byte identical to C++'s), here -are the numbers from C++ Snappy's - -make CXXFLAGS="-O2 -DNDEBUG -g" clean snappy_unittest.log && cat snappy_unittest.log - -BM_UFlat/0 2.4GB/s html -BM_UFlat/1 1.4GB/s urls -BM_UFlat/2 21.8GB/s jpg -BM_UFlat/3 1.5GB/s jpg_200 -BM_UFlat/4 13.3GB/s pdf -BM_UFlat/5 2.1GB/s html4 -BM_UFlat/6 1.0GB/s txt1 -BM_UFlat/7 959.4MB/s txt2 -BM_UFlat/8 1.0GB/s txt3 -BM_UFlat/9 864.5MB/s txt4 -BM_UFlat/10 2.9GB/s pb -BM_UFlat/11 1.2GB/s gaviota - -BM_ZFlat/0 944.3MB/s html (22.31 %) -BM_ZFlat/1 501.6MB/s urls (47.78 %) -BM_ZFlat/2 14.3GB/s jpg (99.95 %) -BM_ZFlat/3 538.3MB/s jpg_200 (73.00 %) -BM_ZFlat/4 8.3GB/s pdf (83.30 %) -BM_ZFlat/5 903.5MB/s html4 (22.52 %) -BM_ZFlat/6 336.0MB/s txt1 (57.88 %) -BM_ZFlat/7 312.3MB/s txt2 (61.91 %) -BM_ZFlat/8 353.1MB/s txt3 (54.99 %) -BM_ZFlat/9 289.9MB/s txt4 (66.26 %) -BM_ZFlat/10 1.2GB/s pb (19.68 %) -BM_ZFlat/11 527.4MB/s gaviota (37.72 %) diff --git a/vendor/github.com/golang/snappy/decode.go b/vendor/github.com/golang/snappy/decode.go deleted file mode 100644 index 72efb03..0000000 --- a/vendor/github.com/golang/snappy/decode.go +++ /dev/null @@ -1,237 +0,0 @@ -// Copyright 2011 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package snappy - -import ( - "encoding/binary" - "errors" - "io" -) - -var ( - // ErrCorrupt reports that the input is invalid. - ErrCorrupt = errors.New("snappy: corrupt input") - // ErrTooLarge reports that the uncompressed length is too large. - ErrTooLarge = errors.New("snappy: decoded block is too large") - // ErrUnsupported reports that the input isn't supported. - ErrUnsupported = errors.New("snappy: unsupported input") - - errUnsupportedLiteralLength = errors.New("snappy: unsupported literal length") -) - -// DecodedLen returns the length of the decoded block. -func DecodedLen(src []byte) (int, error) { - v, _, err := decodedLen(src) - return v, err -} - -// decodedLen returns the length of the decoded block and the number of bytes -// that the length header occupied. -func decodedLen(src []byte) (blockLen, headerLen int, err error) { - v, n := binary.Uvarint(src) - if n <= 0 || v > 0xffffffff { - return 0, 0, ErrCorrupt - } - - const wordSize = 32 << (^uint(0) >> 32 & 1) - if wordSize == 32 && v > 0x7fffffff { - return 0, 0, ErrTooLarge - } - return int(v), n, nil -} - -const ( - decodeErrCodeCorrupt = 1 - decodeErrCodeUnsupportedLiteralLength = 2 -) - -// Decode returns the decoded form of src. The returned slice may be a sub- -// slice of dst if dst was large enough to hold the entire decoded block. -// Otherwise, a newly allocated slice will be returned. -// -// The dst and src must not overlap. It is valid to pass a nil dst. -func Decode(dst, src []byte) ([]byte, error) { - dLen, s, err := decodedLen(src) - if err != nil { - return nil, err - } - if dLen <= len(dst) { - dst = dst[:dLen] - } else { - dst = make([]byte, dLen) - } - switch decode(dst, src[s:]) { - case 0: - return dst, nil - case decodeErrCodeUnsupportedLiteralLength: - return nil, errUnsupportedLiteralLength - } - return nil, ErrCorrupt -} - -// NewReader returns a new Reader that decompresses from r, using the framing -// format described at -// https://github.com/google/snappy/blob/master/framing_format.txt -func NewReader(r io.Reader) *Reader { - return &Reader{ - r: r, - decoded: make([]byte, maxBlockSize), - buf: make([]byte, maxEncodedLenOfMaxBlockSize+checksumSize), - } -} - -// Reader is an io.Reader that can read Snappy-compressed bytes. -type Reader struct { - r io.Reader - err error - decoded []byte - buf []byte - // decoded[i:j] contains decoded bytes that have not yet been passed on. - i, j int - readHeader bool -} - -// Reset discards any buffered data, resets all state, and switches the Snappy -// reader to read from r. This permits reusing a Reader rather than allocating -// a new one. -func (r *Reader) Reset(reader io.Reader) { - r.r = reader - r.err = nil - r.i = 0 - r.j = 0 - r.readHeader = false -} - -func (r *Reader) readFull(p []byte, allowEOF bool) (ok bool) { - if _, r.err = io.ReadFull(r.r, p); r.err != nil { - if r.err == io.ErrUnexpectedEOF || (r.err == io.EOF && !allowEOF) { - r.err = ErrCorrupt - } - return false - } - return true -} - -// Read satisfies the io.Reader interface. -func (r *Reader) Read(p []byte) (int, error) { - if r.err != nil { - return 0, r.err - } - for { - if r.i < r.j { - n := copy(p, r.decoded[r.i:r.j]) - r.i += n - return n, nil - } - if !r.readFull(r.buf[:4], true) { - return 0, r.err - } - chunkType := r.buf[0] - if !r.readHeader { - if chunkType != chunkTypeStreamIdentifier { - r.err = ErrCorrupt - return 0, r.err - } - r.readHeader = true - } - chunkLen := int(r.buf[1]) | int(r.buf[2])<<8 | int(r.buf[3])<<16 - if chunkLen > len(r.buf) { - r.err = ErrUnsupported - return 0, r.err - } - - // The chunk types are specified at - // https://github.com/google/snappy/blob/master/framing_format.txt - switch chunkType { - case chunkTypeCompressedData: - // Section 4.2. Compressed data (chunk type 0x00). - if chunkLen < checksumSize { - r.err = ErrCorrupt - return 0, r.err - } - buf := r.buf[:chunkLen] - if !r.readFull(buf, false) { - return 0, r.err - } - checksum := uint32(buf[0]) | uint32(buf[1])<<8 | uint32(buf[2])<<16 | uint32(buf[3])<<24 - buf = buf[checksumSize:] - - n, err := DecodedLen(buf) - if err != nil { - r.err = err - return 0, r.err - } - if n > len(r.decoded) { - r.err = ErrCorrupt - return 0, r.err - } - if _, err := Decode(r.decoded, buf); err != nil { - r.err = err - return 0, r.err - } - if crc(r.decoded[:n]) != checksum { - r.err = ErrCorrupt - return 0, r.err - } - r.i, r.j = 0, n - continue - - case chunkTypeUncompressedData: - // Section 4.3. Uncompressed data (chunk type 0x01). - if chunkLen < checksumSize { - r.err = ErrCorrupt - return 0, r.err - } - buf := r.buf[:checksumSize] - if !r.readFull(buf, false) { - return 0, r.err - } - checksum := uint32(buf[0]) | uint32(buf[1])<<8 | uint32(buf[2])<<16 | uint32(buf[3])<<24 - // Read directly into r.decoded instead of via r.buf. - n := chunkLen - checksumSize - if n > len(r.decoded) { - r.err = ErrCorrupt - return 0, r.err - } - if !r.readFull(r.decoded[:n], false) { - return 0, r.err - } - if crc(r.decoded[:n]) != checksum { - r.err = ErrCorrupt - return 0, r.err - } - r.i, r.j = 0, n - continue - - case chunkTypeStreamIdentifier: - // Section 4.1. Stream identifier (chunk type 0xff). - if chunkLen != len(magicBody) { - r.err = ErrCorrupt - return 0, r.err - } - if !r.readFull(r.buf[:len(magicBody)], false) { - return 0, r.err - } - for i := 0; i < len(magicBody); i++ { - if r.buf[i] != magicBody[i] { - r.err = ErrCorrupt - return 0, r.err - } - } - continue - } - - if chunkType <= 0x7f { - // Section 4.5. Reserved unskippable chunks (chunk types 0x02-0x7f). - r.err = ErrUnsupported - return 0, r.err - } - // Section 4.4 Padding (chunk type 0xfe). - // Section 4.6. Reserved skippable chunks (chunk types 0x80-0xfd). - if !r.readFull(r.buf[:chunkLen], false) { - return 0, r.err - } - } -} diff --git a/vendor/github.com/golang/snappy/decode_amd64.go b/vendor/github.com/golang/snappy/decode_amd64.go deleted file mode 100644 index fcd192b..0000000 --- a/vendor/github.com/golang/snappy/decode_amd64.go +++ /dev/null @@ -1,14 +0,0 @@ -// Copyright 2016 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !appengine -// +build gc -// +build !noasm - -package snappy - -// decode has the same semantics as in decode_other.go. -// -//go:noescape -func decode(dst, src []byte) int diff --git a/vendor/github.com/golang/snappy/decode_amd64.s b/vendor/github.com/golang/snappy/decode_amd64.s deleted file mode 100644 index e6179f6..0000000 --- a/vendor/github.com/golang/snappy/decode_amd64.s +++ /dev/null @@ -1,490 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !appengine -// +build gc -// +build !noasm - -#include "textflag.h" - -// The asm code generally follows the pure Go code in decode_other.go, except -// where marked with a "!!!". - -// func decode(dst, src []byte) int -// -// All local variables fit into registers. The non-zero stack size is only to -// spill registers and push args when issuing a CALL. The register allocation: -// - AX scratch -// - BX scratch -// - CX length or x -// - DX offset -// - SI &src[s] -// - DI &dst[d] -// + R8 dst_base -// + R9 dst_len -// + R10 dst_base + dst_len -// + R11 src_base -// + R12 src_len -// + R13 src_base + src_len -// - R14 used by doCopy -// - R15 used by doCopy -// -// The registers R8-R13 (marked with a "+") are set at the start of the -// function, and after a CALL returns, and are not otherwise modified. -// -// The d variable is implicitly DI - R8, and len(dst)-d is R10 - DI. -// The s variable is implicitly SI - R11, and len(src)-s is R13 - SI. -TEXT ·decode(SB), NOSPLIT, $48-56 - // Initialize SI, DI and R8-R13. - MOVQ dst_base+0(FP), R8 - MOVQ dst_len+8(FP), R9 - MOVQ R8, DI - MOVQ R8, R10 - ADDQ R9, R10 - MOVQ src_base+24(FP), R11 - MOVQ src_len+32(FP), R12 - MOVQ R11, SI - MOVQ R11, R13 - ADDQ R12, R13 - -loop: - // for s < len(src) - CMPQ SI, R13 - JEQ end - - // CX = uint32(src[s]) - // - // switch src[s] & 0x03 - MOVBLZX (SI), CX - MOVL CX, BX - ANDL $3, BX - CMPL BX, $1 - JAE tagCopy - - // ---------------------------------------- - // The code below handles literal tags. - - // case tagLiteral: - // x := uint32(src[s] >> 2) - // switch - SHRL $2, CX - CMPL CX, $60 - JAE tagLit60Plus - - // case x < 60: - // s++ - INCQ SI - -doLit: - // This is the end of the inner "switch", when we have a literal tag. - // - // We assume that CX == x and x fits in a uint32, where x is the variable - // used in the pure Go decode_other.go code. - - // length = int(x) + 1 - // - // Unlike the pure Go code, we don't need to check if length <= 0 because - // CX can hold 64 bits, so the increment cannot overflow. - INCQ CX - - // Prepare to check if copying length bytes will run past the end of dst or - // src. - // - // AX = len(dst) - d - // BX = len(src) - s - MOVQ R10, AX - SUBQ DI, AX - MOVQ R13, BX - SUBQ SI, BX - - // !!! Try a faster technique for short (16 or fewer bytes) copies. - // - // if length > 16 || len(dst)-d < 16 || len(src)-s < 16 { - // goto callMemmove // Fall back on calling runtime·memmove. - // } - // - // The C++ snappy code calls this TryFastAppend. It also checks len(src)-s - // against 21 instead of 16, because it cannot assume that all of its input - // is contiguous in memory and so it needs to leave enough source bytes to - // read the next tag without refilling buffers, but Go's Decode assumes - // contiguousness (the src argument is a []byte). - CMPQ CX, $16 - JGT callMemmove - CMPQ AX, $16 - JLT callMemmove - CMPQ BX, $16 - JLT callMemmove - - // !!! Implement the copy from src to dst as a 16-byte load and store. - // (Decode's documentation says that dst and src must not overlap.) - // - // This always copies 16 bytes, instead of only length bytes, but that's - // OK. If the input is a valid Snappy encoding then subsequent iterations - // will fix up the overrun. Otherwise, Decode returns a nil []byte (and a - // non-nil error), so the overrun will be ignored. - // - // Note that on amd64, it is legal and cheap to issue unaligned 8-byte or - // 16-byte loads and stores. This technique probably wouldn't be as - // effective on architectures that are fussier about alignment. - MOVOU 0(SI), X0 - MOVOU X0, 0(DI) - - // d += length - // s += length - ADDQ CX, DI - ADDQ CX, SI - JMP loop - -callMemmove: - // if length > len(dst)-d || length > len(src)-s { etc } - CMPQ CX, AX - JGT errCorrupt - CMPQ CX, BX - JGT errCorrupt - - // copy(dst[d:], src[s:s+length]) - // - // This means calling runtime·memmove(&dst[d], &src[s], length), so we push - // DI, SI and CX as arguments. Coincidentally, we also need to spill those - // three registers to the stack, to save local variables across the CALL. - MOVQ DI, 0(SP) - MOVQ SI, 8(SP) - MOVQ CX, 16(SP) - MOVQ DI, 24(SP) - MOVQ SI, 32(SP) - MOVQ CX, 40(SP) - CALL runtime·memmove(SB) - - // Restore local variables: unspill registers from the stack and - // re-calculate R8-R13. - MOVQ 24(SP), DI - MOVQ 32(SP), SI - MOVQ 40(SP), CX - MOVQ dst_base+0(FP), R8 - MOVQ dst_len+8(FP), R9 - MOVQ R8, R10 - ADDQ R9, R10 - MOVQ src_base+24(FP), R11 - MOVQ src_len+32(FP), R12 - MOVQ R11, R13 - ADDQ R12, R13 - - // d += length - // s += length - ADDQ CX, DI - ADDQ CX, SI - JMP loop - -tagLit60Plus: - // !!! This fragment does the - // - // s += x - 58; if uint(s) > uint(len(src)) { etc } - // - // checks. In the asm version, we code it once instead of once per switch case. - ADDQ CX, SI - SUBQ $58, SI - MOVQ SI, BX - SUBQ R11, BX - CMPQ BX, R12 - JA errCorrupt - - // case x == 60: - CMPL CX, $61 - JEQ tagLit61 - JA tagLit62Plus - - // x = uint32(src[s-1]) - MOVBLZX -1(SI), CX - JMP doLit - -tagLit61: - // case x == 61: - // x = uint32(src[s-2]) | uint32(src[s-1])<<8 - MOVWLZX -2(SI), CX - JMP doLit - -tagLit62Plus: - CMPL CX, $62 - JA tagLit63 - - // case x == 62: - // x = uint32(src[s-3]) | uint32(src[s-2])<<8 | uint32(src[s-1])<<16 - MOVWLZX -3(SI), CX - MOVBLZX -1(SI), BX - SHLL $16, BX - ORL BX, CX - JMP doLit - -tagLit63: - // case x == 63: - // x = uint32(src[s-4]) | uint32(src[s-3])<<8 | uint32(src[s-2])<<16 | uint32(src[s-1])<<24 - MOVL -4(SI), CX - JMP doLit - -// The code above handles literal tags. -// ---------------------------------------- -// The code below handles copy tags. - -tagCopy4: - // case tagCopy4: - // s += 5 - ADDQ $5, SI - - // if uint(s) > uint(len(src)) { etc } - MOVQ SI, BX - SUBQ R11, BX - CMPQ BX, R12 - JA errCorrupt - - // length = 1 + int(src[s-5])>>2 - SHRQ $2, CX - INCQ CX - - // offset = int(uint32(src[s-4]) | uint32(src[s-3])<<8 | uint32(src[s-2])<<16 | uint32(src[s-1])<<24) - MOVLQZX -4(SI), DX - JMP doCopy - -tagCopy2: - // case tagCopy2: - // s += 3 - ADDQ $3, SI - - // if uint(s) > uint(len(src)) { etc } - MOVQ SI, BX - SUBQ R11, BX - CMPQ BX, R12 - JA errCorrupt - - // length = 1 + int(src[s-3])>>2 - SHRQ $2, CX - INCQ CX - - // offset = int(uint32(src[s-2]) | uint32(src[s-1])<<8) - MOVWQZX -2(SI), DX - JMP doCopy - -tagCopy: - // We have a copy tag. We assume that: - // - BX == src[s] & 0x03 - // - CX == src[s] - CMPQ BX, $2 - JEQ tagCopy2 - JA tagCopy4 - - // case tagCopy1: - // s += 2 - ADDQ $2, SI - - // if uint(s) > uint(len(src)) { etc } - MOVQ SI, BX - SUBQ R11, BX - CMPQ BX, R12 - JA errCorrupt - - // offset = int(uint32(src[s-2])&0xe0<<3 | uint32(src[s-1])) - MOVQ CX, DX - ANDQ $0xe0, DX - SHLQ $3, DX - MOVBQZX -1(SI), BX - ORQ BX, DX - - // length = 4 + int(src[s-2])>>2&0x7 - SHRQ $2, CX - ANDQ $7, CX - ADDQ $4, CX - -doCopy: - // This is the end of the outer "switch", when we have a copy tag. - // - // We assume that: - // - CX == length && CX > 0 - // - DX == offset - - // if offset <= 0 { etc } - CMPQ DX, $0 - JLE errCorrupt - - // if d < offset { etc } - MOVQ DI, BX - SUBQ R8, BX - CMPQ BX, DX - JLT errCorrupt - - // if length > len(dst)-d { etc } - MOVQ R10, BX - SUBQ DI, BX - CMPQ CX, BX - JGT errCorrupt - - // forwardCopy(dst[d:d+length], dst[d-offset:]); d += length - // - // Set: - // - R14 = len(dst)-d - // - R15 = &dst[d-offset] - MOVQ R10, R14 - SUBQ DI, R14 - MOVQ DI, R15 - SUBQ DX, R15 - - // !!! Try a faster technique for short (16 or fewer bytes) forward copies. - // - // First, try using two 8-byte load/stores, similar to the doLit technique - // above. Even if dst[d:d+length] and dst[d-offset:] can overlap, this is - // still OK if offset >= 8. Note that this has to be two 8-byte load/stores - // and not one 16-byte load/store, and the first store has to be before the - // second load, due to the overlap if offset is in the range [8, 16). - // - // if length > 16 || offset < 8 || len(dst)-d < 16 { - // goto slowForwardCopy - // } - // copy 16 bytes - // d += length - CMPQ CX, $16 - JGT slowForwardCopy - CMPQ DX, $8 - JLT slowForwardCopy - CMPQ R14, $16 - JLT slowForwardCopy - MOVQ 0(R15), AX - MOVQ AX, 0(DI) - MOVQ 8(R15), BX - MOVQ BX, 8(DI) - ADDQ CX, DI - JMP loop - -slowForwardCopy: - // !!! If the forward copy is longer than 16 bytes, or if offset < 8, we - // can still try 8-byte load stores, provided we can overrun up to 10 extra - // bytes. As above, the overrun will be fixed up by subsequent iterations - // of the outermost loop. - // - // The C++ snappy code calls this technique IncrementalCopyFastPath. Its - // commentary says: - // - // ---- - // - // The main part of this loop is a simple copy of eight bytes at a time - // until we've copied (at least) the requested amount of bytes. However, - // if d and d-offset are less than eight bytes apart (indicating a - // repeating pattern of length < 8), we first need to expand the pattern in - // order to get the correct results. For instance, if the buffer looks like - // this, with the eight-byte and patterns marked as - // intervals: - // - // abxxxxxxxxxxxx - // [------] d-offset - // [------] d - // - // a single eight-byte copy from to will repeat the pattern - // once, after which we can move two bytes without moving : - // - // ababxxxxxxxxxx - // [------] d-offset - // [------] d - // - // and repeat the exercise until the two no longer overlap. - // - // This allows us to do very well in the special case of one single byte - // repeated many times, without taking a big hit for more general cases. - // - // The worst case of extra writing past the end of the match occurs when - // offset == 1 and length == 1; the last copy will read from byte positions - // [0..7] and write to [4..11], whereas it was only supposed to write to - // position 1. Thus, ten excess bytes. - // - // ---- - // - // That "10 byte overrun" worst case is confirmed by Go's - // TestSlowForwardCopyOverrun, which also tests the fixUpSlowForwardCopy - // and finishSlowForwardCopy algorithm. - // - // if length > len(dst)-d-10 { - // goto verySlowForwardCopy - // } - SUBQ $10, R14 - CMPQ CX, R14 - JGT verySlowForwardCopy - -makeOffsetAtLeast8: - // !!! As above, expand the pattern so that offset >= 8 and we can use - // 8-byte load/stores. - // - // for offset < 8 { - // copy 8 bytes from dst[d-offset:] to dst[d:] - // length -= offset - // d += offset - // offset += offset - // // The two previous lines together means that d-offset, and therefore - // // R15, is unchanged. - // } - CMPQ DX, $8 - JGE fixUpSlowForwardCopy - MOVQ (R15), BX - MOVQ BX, (DI) - SUBQ DX, CX - ADDQ DX, DI - ADDQ DX, DX - JMP makeOffsetAtLeast8 - -fixUpSlowForwardCopy: - // !!! Add length (which might be negative now) to d (implied by DI being - // &dst[d]) so that d ends up at the right place when we jump back to the - // top of the loop. Before we do that, though, we save DI to AX so that, if - // length is positive, copying the remaining length bytes will write to the - // right place. - MOVQ DI, AX - ADDQ CX, DI - -finishSlowForwardCopy: - // !!! Repeat 8-byte load/stores until length <= 0. Ending with a negative - // length means that we overrun, but as above, that will be fixed up by - // subsequent iterations of the outermost loop. - CMPQ CX, $0 - JLE loop - MOVQ (R15), BX - MOVQ BX, (AX) - ADDQ $8, R15 - ADDQ $8, AX - SUBQ $8, CX - JMP finishSlowForwardCopy - -verySlowForwardCopy: - // verySlowForwardCopy is a simple implementation of forward copy. In C - // parlance, this is a do/while loop instead of a while loop, since we know - // that length > 0. In Go syntax: - // - // for { - // dst[d] = dst[d - offset] - // d++ - // length-- - // if length == 0 { - // break - // } - // } - MOVB (R15), BX - MOVB BX, (DI) - INCQ R15 - INCQ DI - DECQ CX - JNZ verySlowForwardCopy - JMP loop - -// The code above handles copy tags. -// ---------------------------------------- - -end: - // This is the end of the "for s < len(src)". - // - // if d != len(dst) { etc } - CMPQ DI, R10 - JNE errCorrupt - - // return 0 - MOVQ $0, ret+48(FP) - RET - -errCorrupt: - // return decodeErrCodeCorrupt - MOVQ $1, ret+48(FP) - RET diff --git a/vendor/github.com/golang/snappy/decode_other.go b/vendor/github.com/golang/snappy/decode_other.go deleted file mode 100644 index 8c9f204..0000000 --- a/vendor/github.com/golang/snappy/decode_other.go +++ /dev/null @@ -1,101 +0,0 @@ -// Copyright 2016 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !amd64 appengine !gc noasm - -package snappy - -// decode writes the decoding of src to dst. It assumes that the varint-encoded -// length of the decompressed bytes has already been read, and that len(dst) -// equals that length. -// -// It returns 0 on success or a decodeErrCodeXxx error code on failure. -func decode(dst, src []byte) int { - var d, s, offset, length int - for s < len(src) { - switch src[s] & 0x03 { - case tagLiteral: - x := uint32(src[s] >> 2) - switch { - case x < 60: - s++ - case x == 60: - s += 2 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - x = uint32(src[s-1]) - case x == 61: - s += 3 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - x = uint32(src[s-2]) | uint32(src[s-1])<<8 - case x == 62: - s += 4 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - x = uint32(src[s-3]) | uint32(src[s-2])<<8 | uint32(src[s-1])<<16 - case x == 63: - s += 5 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - x = uint32(src[s-4]) | uint32(src[s-3])<<8 | uint32(src[s-2])<<16 | uint32(src[s-1])<<24 - } - length = int(x) + 1 - if length <= 0 { - return decodeErrCodeUnsupportedLiteralLength - } - if length > len(dst)-d || length > len(src)-s { - return decodeErrCodeCorrupt - } - copy(dst[d:], src[s:s+length]) - d += length - s += length - continue - - case tagCopy1: - s += 2 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - length = 4 + int(src[s-2])>>2&0x7 - offset = int(uint32(src[s-2])&0xe0<<3 | uint32(src[s-1])) - - case tagCopy2: - s += 3 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - length = 1 + int(src[s-3])>>2 - offset = int(uint32(src[s-2]) | uint32(src[s-1])<<8) - - case tagCopy4: - s += 5 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - length = 1 + int(src[s-5])>>2 - offset = int(uint32(src[s-4]) | uint32(src[s-3])<<8 | uint32(src[s-2])<<16 | uint32(src[s-1])<<24) - } - - if offset <= 0 || d < offset || length > len(dst)-d { - return decodeErrCodeCorrupt - } - // Copy from an earlier sub-slice of dst to a later sub-slice. Unlike - // the built-in copy function, this byte-by-byte copy always runs - // forwards, even if the slices overlap. Conceptually, this is: - // - // d += forwardCopy(dst[d:d+length], dst[d-offset:]) - for end := d + length; d != end; d++ { - dst[d] = dst[d-offset] - } - } - if d != len(dst) { - return decodeErrCodeCorrupt - } - return 0 -} diff --git a/vendor/github.com/golang/snappy/encode.go b/vendor/github.com/golang/snappy/encode.go deleted file mode 100644 index 8d393e9..0000000 --- a/vendor/github.com/golang/snappy/encode.go +++ /dev/null @@ -1,285 +0,0 @@ -// Copyright 2011 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package snappy - -import ( - "encoding/binary" - "errors" - "io" -) - -// Encode returns the encoded form of src. The returned slice may be a sub- -// slice of dst if dst was large enough to hold the entire encoded block. -// Otherwise, a newly allocated slice will be returned. -// -// The dst and src must not overlap. It is valid to pass a nil dst. -func Encode(dst, src []byte) []byte { - if n := MaxEncodedLen(len(src)); n < 0 { - panic(ErrTooLarge) - } else if len(dst) < n { - dst = make([]byte, n) - } - - // The block starts with the varint-encoded length of the decompressed bytes. - d := binary.PutUvarint(dst, uint64(len(src))) - - for len(src) > 0 { - p := src - src = nil - if len(p) > maxBlockSize { - p, src = p[:maxBlockSize], p[maxBlockSize:] - } - if len(p) < minNonLiteralBlockSize { - d += emitLiteral(dst[d:], p) - } else { - d += encodeBlock(dst[d:], p) - } - } - return dst[:d] -} - -// inputMargin is the minimum number of extra input bytes to keep, inside -// encodeBlock's inner loop. On some architectures, this margin lets us -// implement a fast path for emitLiteral, where the copy of short (<= 16 byte) -// literals can be implemented as a single load to and store from a 16-byte -// register. That literal's actual length can be as short as 1 byte, so this -// can copy up to 15 bytes too much, but that's OK as subsequent iterations of -// the encoding loop will fix up the copy overrun, and this inputMargin ensures -// that we don't overrun the dst and src buffers. -const inputMargin = 16 - 1 - -// minNonLiteralBlockSize is the minimum size of the input to encodeBlock that -// could be encoded with a copy tag. This is the minimum with respect to the -// algorithm used by encodeBlock, not a minimum enforced by the file format. -// -// The encoded output must start with at least a 1 byte literal, as there are -// no previous bytes to copy. A minimal (1 byte) copy after that, generated -// from an emitCopy call in encodeBlock's main loop, would require at least -// another inputMargin bytes, for the reason above: we want any emitLiteral -// calls inside encodeBlock's main loop to use the fast path if possible, which -// requires being able to overrun by inputMargin bytes. Thus, -// minNonLiteralBlockSize equals 1 + 1 + inputMargin. -// -// The C++ code doesn't use this exact threshold, but it could, as discussed at -// https://groups.google.com/d/topic/snappy-compression/oGbhsdIJSJ8/discussion -// The difference between Go (2+inputMargin) and C++ (inputMargin) is purely an -// optimization. It should not affect the encoded form. This is tested by -// TestSameEncodingAsCppShortCopies. -const minNonLiteralBlockSize = 1 + 1 + inputMargin - -// MaxEncodedLen returns the maximum length of a snappy block, given its -// uncompressed length. -// -// It will return a negative value if srcLen is too large to encode. -func MaxEncodedLen(srcLen int) int { - n := uint64(srcLen) - if n > 0xffffffff { - return -1 - } - // Compressed data can be defined as: - // compressed := item* literal* - // item := literal* copy - // - // The trailing literal sequence has a space blowup of at most 62/60 - // since a literal of length 60 needs one tag byte + one extra byte - // for length information. - // - // Item blowup is trickier to measure. Suppose the "copy" op copies - // 4 bytes of data. Because of a special check in the encoding code, - // we produce a 4-byte copy only if the offset is < 65536. Therefore - // the copy op takes 3 bytes to encode, and this type of item leads - // to at most the 62/60 blowup for representing literals. - // - // Suppose the "copy" op copies 5 bytes of data. If the offset is big - // enough, it will take 5 bytes to encode the copy op. Therefore the - // worst case here is a one-byte literal followed by a five-byte copy. - // That is, 6 bytes of input turn into 7 bytes of "compressed" data. - // - // This last factor dominates the blowup, so the final estimate is: - n = 32 + n + n/6 - if n > 0xffffffff { - return -1 - } - return int(n) -} - -var errClosed = errors.New("snappy: Writer is closed") - -// NewWriter returns a new Writer that compresses to w. -// -// The Writer returned does not buffer writes. There is no need to Flush or -// Close such a Writer. -// -// Deprecated: the Writer returned is not suitable for many small writes, only -// for few large writes. Use NewBufferedWriter instead, which is efficient -// regardless of the frequency and shape of the writes, and remember to Close -// that Writer when done. -func NewWriter(w io.Writer) *Writer { - return &Writer{ - w: w, - obuf: make([]byte, obufLen), - } -} - -// NewBufferedWriter returns a new Writer that compresses to w, using the -// framing format described at -// https://github.com/google/snappy/blob/master/framing_format.txt -// -// The Writer returned buffers writes. Users must call Close to guarantee all -// data has been forwarded to the underlying io.Writer. They may also call -// Flush zero or more times before calling Close. -func NewBufferedWriter(w io.Writer) *Writer { - return &Writer{ - w: w, - ibuf: make([]byte, 0, maxBlockSize), - obuf: make([]byte, obufLen), - } -} - -// Writer is an io.Writer that can write Snappy-compressed bytes. -type Writer struct { - w io.Writer - err error - - // ibuf is a buffer for the incoming (uncompressed) bytes. - // - // Its use is optional. For backwards compatibility, Writers created by the - // NewWriter function have ibuf == nil, do not buffer incoming bytes, and - // therefore do not need to be Flush'ed or Close'd. - ibuf []byte - - // obuf is a buffer for the outgoing (compressed) bytes. - obuf []byte - - // wroteStreamHeader is whether we have written the stream header. - wroteStreamHeader bool -} - -// Reset discards the writer's state and switches the Snappy writer to write to -// w. This permits reusing a Writer rather than allocating a new one. -func (w *Writer) Reset(writer io.Writer) { - w.w = writer - w.err = nil - if w.ibuf != nil { - w.ibuf = w.ibuf[:0] - } - w.wroteStreamHeader = false -} - -// Write satisfies the io.Writer interface. -func (w *Writer) Write(p []byte) (nRet int, errRet error) { - if w.ibuf == nil { - // Do not buffer incoming bytes. This does not perform or compress well - // if the caller of Writer.Write writes many small slices. This - // behavior is therefore deprecated, but still supported for backwards - // compatibility with code that doesn't explicitly Flush or Close. - return w.write(p) - } - - // The remainder of this method is based on bufio.Writer.Write from the - // standard library. - - for len(p) > (cap(w.ibuf)-len(w.ibuf)) && w.err == nil { - var n int - if len(w.ibuf) == 0 { - // Large write, empty buffer. - // Write directly from p to avoid copy. - n, _ = w.write(p) - } else { - n = copy(w.ibuf[len(w.ibuf):cap(w.ibuf)], p) - w.ibuf = w.ibuf[:len(w.ibuf)+n] - w.Flush() - } - nRet += n - p = p[n:] - } - if w.err != nil { - return nRet, w.err - } - n := copy(w.ibuf[len(w.ibuf):cap(w.ibuf)], p) - w.ibuf = w.ibuf[:len(w.ibuf)+n] - nRet += n - return nRet, nil -} - -func (w *Writer) write(p []byte) (nRet int, errRet error) { - if w.err != nil { - return 0, w.err - } - for len(p) > 0 { - obufStart := len(magicChunk) - if !w.wroteStreamHeader { - w.wroteStreamHeader = true - copy(w.obuf, magicChunk) - obufStart = 0 - } - - var uncompressed []byte - if len(p) > maxBlockSize { - uncompressed, p = p[:maxBlockSize], p[maxBlockSize:] - } else { - uncompressed, p = p, nil - } - checksum := crc(uncompressed) - - // Compress the buffer, discarding the result if the improvement - // isn't at least 12.5%. - compressed := Encode(w.obuf[obufHeaderLen:], uncompressed) - chunkType := uint8(chunkTypeCompressedData) - chunkLen := 4 + len(compressed) - obufEnd := obufHeaderLen + len(compressed) - if len(compressed) >= len(uncompressed)-len(uncompressed)/8 { - chunkType = chunkTypeUncompressedData - chunkLen = 4 + len(uncompressed) - obufEnd = obufHeaderLen - } - - // Fill in the per-chunk header that comes before the body. - w.obuf[len(magicChunk)+0] = chunkType - w.obuf[len(magicChunk)+1] = uint8(chunkLen >> 0) - w.obuf[len(magicChunk)+2] = uint8(chunkLen >> 8) - w.obuf[len(magicChunk)+3] = uint8(chunkLen >> 16) - w.obuf[len(magicChunk)+4] = uint8(checksum >> 0) - w.obuf[len(magicChunk)+5] = uint8(checksum >> 8) - w.obuf[len(magicChunk)+6] = uint8(checksum >> 16) - w.obuf[len(magicChunk)+7] = uint8(checksum >> 24) - - if _, err := w.w.Write(w.obuf[obufStart:obufEnd]); err != nil { - w.err = err - return nRet, err - } - if chunkType == chunkTypeUncompressedData { - if _, err := w.w.Write(uncompressed); err != nil { - w.err = err - return nRet, err - } - } - nRet += len(uncompressed) - } - return nRet, nil -} - -// Flush flushes the Writer to its underlying io.Writer. -func (w *Writer) Flush() error { - if w.err != nil { - return w.err - } - if len(w.ibuf) == 0 { - return nil - } - w.write(w.ibuf) - w.ibuf = w.ibuf[:0] - return w.err -} - -// Close calls Flush and then closes the Writer. -func (w *Writer) Close() error { - w.Flush() - ret := w.err - if w.err == nil { - w.err = errClosed - } - return ret -} diff --git a/vendor/github.com/golang/snappy/encode_amd64.go b/vendor/github.com/golang/snappy/encode_amd64.go deleted file mode 100644 index 150d91b..0000000 --- a/vendor/github.com/golang/snappy/encode_amd64.go +++ /dev/null @@ -1,29 +0,0 @@ -// Copyright 2016 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !appengine -// +build gc -// +build !noasm - -package snappy - -// emitLiteral has the same semantics as in encode_other.go. -// -//go:noescape -func emitLiteral(dst, lit []byte) int - -// emitCopy has the same semantics as in encode_other.go. -// -//go:noescape -func emitCopy(dst []byte, offset, length int) int - -// extendMatch has the same semantics as in encode_other.go. -// -//go:noescape -func extendMatch(src []byte, i, j int) int - -// encodeBlock has the same semantics as in encode_other.go. -// -//go:noescape -func encodeBlock(dst, src []byte) (d int) diff --git a/vendor/github.com/golang/snappy/encode_amd64.s b/vendor/github.com/golang/snappy/encode_amd64.s deleted file mode 100644 index adfd979..0000000 --- a/vendor/github.com/golang/snappy/encode_amd64.s +++ /dev/null @@ -1,730 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !appengine -// +build gc -// +build !noasm - -#include "textflag.h" - -// The XXX lines assemble on Go 1.4, 1.5 and 1.7, but not 1.6, due to a -// Go toolchain regression. See https://github.com/golang/go/issues/15426 and -// https://github.com/golang/snappy/issues/29 -// -// As a workaround, the package was built with a known good assembler, and -// those instructions were disassembled by "objdump -d" to yield the -// 4e 0f b7 7c 5c 78 movzwq 0x78(%rsp,%r11,2),%r15 -// style comments, in AT&T asm syntax. Note that rsp here is a physical -// register, not Go/asm's SP pseudo-register (see https://golang.org/doc/asm). -// The instructions were then encoded as "BYTE $0x.." sequences, which assemble -// fine on Go 1.6. - -// The asm code generally follows the pure Go code in encode_other.go, except -// where marked with a "!!!". - -// ---------------------------------------------------------------------------- - -// func emitLiteral(dst, lit []byte) int -// -// All local variables fit into registers. The register allocation: -// - AX len(lit) -// - BX n -// - DX return value -// - DI &dst[i] -// - R10 &lit[0] -// -// The 24 bytes of stack space is to call runtime·memmove. -// -// The unusual register allocation of local variables, such as R10 for the -// source pointer, matches the allocation used at the call site in encodeBlock, -// which makes it easier to manually inline this function. -TEXT ·emitLiteral(SB), NOSPLIT, $24-56 - MOVQ dst_base+0(FP), DI - MOVQ lit_base+24(FP), R10 - MOVQ lit_len+32(FP), AX - MOVQ AX, DX - MOVL AX, BX - SUBL $1, BX - - CMPL BX, $60 - JLT oneByte - CMPL BX, $256 - JLT twoBytes - -threeBytes: - MOVB $0xf4, 0(DI) - MOVW BX, 1(DI) - ADDQ $3, DI - ADDQ $3, DX - JMP memmove - -twoBytes: - MOVB $0xf0, 0(DI) - MOVB BX, 1(DI) - ADDQ $2, DI - ADDQ $2, DX - JMP memmove - -oneByte: - SHLB $2, BX - MOVB BX, 0(DI) - ADDQ $1, DI - ADDQ $1, DX - -memmove: - MOVQ DX, ret+48(FP) - - // copy(dst[i:], lit) - // - // This means calling runtime·memmove(&dst[i], &lit[0], len(lit)), so we push - // DI, R10 and AX as arguments. - MOVQ DI, 0(SP) - MOVQ R10, 8(SP) - MOVQ AX, 16(SP) - CALL runtime·memmove(SB) - RET - -// ---------------------------------------------------------------------------- - -// func emitCopy(dst []byte, offset, length int) int -// -// All local variables fit into registers. The register allocation: -// - AX length -// - SI &dst[0] -// - DI &dst[i] -// - R11 offset -// -// The unusual register allocation of local variables, such as R11 for the -// offset, matches the allocation used at the call site in encodeBlock, which -// makes it easier to manually inline this function. -TEXT ·emitCopy(SB), NOSPLIT, $0-48 - MOVQ dst_base+0(FP), DI - MOVQ DI, SI - MOVQ offset+24(FP), R11 - MOVQ length+32(FP), AX - -loop0: - // for length >= 68 { etc } - CMPL AX, $68 - JLT step1 - - // Emit a length 64 copy, encoded as 3 bytes. - MOVB $0xfe, 0(DI) - MOVW R11, 1(DI) - ADDQ $3, DI - SUBL $64, AX - JMP loop0 - -step1: - // if length > 64 { etc } - CMPL AX, $64 - JLE step2 - - // Emit a length 60 copy, encoded as 3 bytes. - MOVB $0xee, 0(DI) - MOVW R11, 1(DI) - ADDQ $3, DI - SUBL $60, AX - -step2: - // if length >= 12 || offset >= 2048 { goto step3 } - CMPL AX, $12 - JGE step3 - CMPL R11, $2048 - JGE step3 - - // Emit the remaining copy, encoded as 2 bytes. - MOVB R11, 1(DI) - SHRL $8, R11 - SHLB $5, R11 - SUBB $4, AX - SHLB $2, AX - ORB AX, R11 - ORB $1, R11 - MOVB R11, 0(DI) - ADDQ $2, DI - - // Return the number of bytes written. - SUBQ SI, DI - MOVQ DI, ret+40(FP) - RET - -step3: - // Emit the remaining copy, encoded as 3 bytes. - SUBL $1, AX - SHLB $2, AX - ORB $2, AX - MOVB AX, 0(DI) - MOVW R11, 1(DI) - ADDQ $3, DI - - // Return the number of bytes written. - SUBQ SI, DI - MOVQ DI, ret+40(FP) - RET - -// ---------------------------------------------------------------------------- - -// func extendMatch(src []byte, i, j int) int -// -// All local variables fit into registers. The register allocation: -// - DX &src[0] -// - SI &src[j] -// - R13 &src[len(src) - 8] -// - R14 &src[len(src)] -// - R15 &src[i] -// -// The unusual register allocation of local variables, such as R15 for a source -// pointer, matches the allocation used at the call site in encodeBlock, which -// makes it easier to manually inline this function. -TEXT ·extendMatch(SB), NOSPLIT, $0-48 - MOVQ src_base+0(FP), DX - MOVQ src_len+8(FP), R14 - MOVQ i+24(FP), R15 - MOVQ j+32(FP), SI - ADDQ DX, R14 - ADDQ DX, R15 - ADDQ DX, SI - MOVQ R14, R13 - SUBQ $8, R13 - -cmp8: - // As long as we are 8 or more bytes before the end of src, we can load and - // compare 8 bytes at a time. If those 8 bytes are equal, repeat. - CMPQ SI, R13 - JA cmp1 - MOVQ (R15), AX - MOVQ (SI), BX - CMPQ AX, BX - JNE bsf - ADDQ $8, R15 - ADDQ $8, SI - JMP cmp8 - -bsf: - // If those 8 bytes were not equal, XOR the two 8 byte values, and return - // the index of the first byte that differs. The BSF instruction finds the - // least significant 1 bit, the amd64 architecture is little-endian, and - // the shift by 3 converts a bit index to a byte index. - XORQ AX, BX - BSFQ BX, BX - SHRQ $3, BX - ADDQ BX, SI - - // Convert from &src[ret] to ret. - SUBQ DX, SI - MOVQ SI, ret+40(FP) - RET - -cmp1: - // In src's tail, compare 1 byte at a time. - CMPQ SI, R14 - JAE extendMatchEnd - MOVB (R15), AX - MOVB (SI), BX - CMPB AX, BX - JNE extendMatchEnd - ADDQ $1, R15 - ADDQ $1, SI - JMP cmp1 - -extendMatchEnd: - // Convert from &src[ret] to ret. - SUBQ DX, SI - MOVQ SI, ret+40(FP) - RET - -// ---------------------------------------------------------------------------- - -// func encodeBlock(dst, src []byte) (d int) -// -// All local variables fit into registers, other than "var table". The register -// allocation: -// - AX . . -// - BX . . -// - CX 56 shift (note that amd64 shifts by non-immediates must use CX). -// - DX 64 &src[0], tableSize -// - SI 72 &src[s] -// - DI 80 &dst[d] -// - R9 88 sLimit -// - R10 . &src[nextEmit] -// - R11 96 prevHash, currHash, nextHash, offset -// - R12 104 &src[base], skip -// - R13 . &src[nextS], &src[len(src) - 8] -// - R14 . len(src), bytesBetweenHashLookups, &src[len(src)], x -// - R15 112 candidate -// -// The second column (56, 64, etc) is the stack offset to spill the registers -// when calling other functions. We could pack this slightly tighter, but it's -// simpler to have a dedicated spill map independent of the function called. -// -// "var table [maxTableSize]uint16" takes up 32768 bytes of stack space. An -// extra 56 bytes, to call other functions, and an extra 64 bytes, to spill -// local variables (registers) during calls gives 32768 + 56 + 64 = 32888. -TEXT ·encodeBlock(SB), 0, $32888-56 - MOVQ dst_base+0(FP), DI - MOVQ src_base+24(FP), SI - MOVQ src_len+32(FP), R14 - - // shift, tableSize := uint32(32-8), 1<<8 - MOVQ $24, CX - MOVQ $256, DX - -calcShift: - // for ; tableSize < maxTableSize && tableSize < len(src); tableSize *= 2 { - // shift-- - // } - CMPQ DX, $16384 - JGE varTable - CMPQ DX, R14 - JGE varTable - SUBQ $1, CX - SHLQ $1, DX - JMP calcShift - -varTable: - // var table [maxTableSize]uint16 - // - // In the asm code, unlike the Go code, we can zero-initialize only the - // first tableSize elements. Each uint16 element is 2 bytes and each MOVOU - // writes 16 bytes, so we can do only tableSize/8 writes instead of the - // 2048 writes that would zero-initialize all of table's 32768 bytes. - SHRQ $3, DX - LEAQ table-32768(SP), BX - PXOR X0, X0 - -memclr: - MOVOU X0, 0(BX) - ADDQ $16, BX - SUBQ $1, DX - JNZ memclr - - // !!! DX = &src[0] - MOVQ SI, DX - - // sLimit := len(src) - inputMargin - MOVQ R14, R9 - SUBQ $15, R9 - - // !!! Pre-emptively spill CX, DX and R9 to the stack. Their values don't - // change for the rest of the function. - MOVQ CX, 56(SP) - MOVQ DX, 64(SP) - MOVQ R9, 88(SP) - - // nextEmit := 0 - MOVQ DX, R10 - - // s := 1 - ADDQ $1, SI - - // nextHash := hash(load32(src, s), shift) - MOVL 0(SI), R11 - IMULL $0x1e35a7bd, R11 - SHRL CX, R11 - -outer: - // for { etc } - - // skip := 32 - MOVQ $32, R12 - - // nextS := s - MOVQ SI, R13 - - // candidate := 0 - MOVQ $0, R15 - -inner0: - // for { etc } - - // s := nextS - MOVQ R13, SI - - // bytesBetweenHashLookups := skip >> 5 - MOVQ R12, R14 - SHRQ $5, R14 - - // nextS = s + bytesBetweenHashLookups - ADDQ R14, R13 - - // skip += bytesBetweenHashLookups - ADDQ R14, R12 - - // if nextS > sLimit { goto emitRemainder } - MOVQ R13, AX - SUBQ DX, AX - CMPQ AX, R9 - JA emitRemainder - - // candidate = int(table[nextHash]) - // XXX: MOVWQZX table-32768(SP)(R11*2), R15 - // XXX: 4e 0f b7 7c 5c 78 movzwq 0x78(%rsp,%r11,2),%r15 - BYTE $0x4e - BYTE $0x0f - BYTE $0xb7 - BYTE $0x7c - BYTE $0x5c - BYTE $0x78 - - // table[nextHash] = uint16(s) - MOVQ SI, AX - SUBQ DX, AX - - // XXX: MOVW AX, table-32768(SP)(R11*2) - // XXX: 66 42 89 44 5c 78 mov %ax,0x78(%rsp,%r11,2) - BYTE $0x66 - BYTE $0x42 - BYTE $0x89 - BYTE $0x44 - BYTE $0x5c - BYTE $0x78 - - // nextHash = hash(load32(src, nextS), shift) - MOVL 0(R13), R11 - IMULL $0x1e35a7bd, R11 - SHRL CX, R11 - - // if load32(src, s) != load32(src, candidate) { continue } break - MOVL 0(SI), AX - MOVL (DX)(R15*1), BX - CMPL AX, BX - JNE inner0 - -fourByteMatch: - // As per the encode_other.go code: - // - // A 4-byte match has been found. We'll later see etc. - - // !!! Jump to a fast path for short (<= 16 byte) literals. See the comment - // on inputMargin in encode.go. - MOVQ SI, AX - SUBQ R10, AX - CMPQ AX, $16 - JLE emitLiteralFastPath - - // ---------------------------------------- - // Begin inline of the emitLiteral call. - // - // d += emitLiteral(dst[d:], src[nextEmit:s]) - - MOVL AX, BX - SUBL $1, BX - - CMPL BX, $60 - JLT inlineEmitLiteralOneByte - CMPL BX, $256 - JLT inlineEmitLiteralTwoBytes - -inlineEmitLiteralThreeBytes: - MOVB $0xf4, 0(DI) - MOVW BX, 1(DI) - ADDQ $3, DI - JMP inlineEmitLiteralMemmove - -inlineEmitLiteralTwoBytes: - MOVB $0xf0, 0(DI) - MOVB BX, 1(DI) - ADDQ $2, DI - JMP inlineEmitLiteralMemmove - -inlineEmitLiteralOneByte: - SHLB $2, BX - MOVB BX, 0(DI) - ADDQ $1, DI - -inlineEmitLiteralMemmove: - // Spill local variables (registers) onto the stack; call; unspill. - // - // copy(dst[i:], lit) - // - // This means calling runtime·memmove(&dst[i], &lit[0], len(lit)), so we push - // DI, R10 and AX as arguments. - MOVQ DI, 0(SP) - MOVQ R10, 8(SP) - MOVQ AX, 16(SP) - ADDQ AX, DI // Finish the "d +=" part of "d += emitLiteral(etc)". - MOVQ SI, 72(SP) - MOVQ DI, 80(SP) - MOVQ R15, 112(SP) - CALL runtime·memmove(SB) - MOVQ 56(SP), CX - MOVQ 64(SP), DX - MOVQ 72(SP), SI - MOVQ 80(SP), DI - MOVQ 88(SP), R9 - MOVQ 112(SP), R15 - JMP inner1 - -inlineEmitLiteralEnd: - // End inline of the emitLiteral call. - // ---------------------------------------- - -emitLiteralFastPath: - // !!! Emit the 1-byte encoding "uint8(len(lit)-1)<<2". - MOVB AX, BX - SUBB $1, BX - SHLB $2, BX - MOVB BX, (DI) - ADDQ $1, DI - - // !!! Implement the copy from lit to dst as a 16-byte load and store. - // (Encode's documentation says that dst and src must not overlap.) - // - // This always copies 16 bytes, instead of only len(lit) bytes, but that's - // OK. Subsequent iterations will fix up the overrun. - // - // Note that on amd64, it is legal and cheap to issue unaligned 8-byte or - // 16-byte loads and stores. This technique probably wouldn't be as - // effective on architectures that are fussier about alignment. - MOVOU 0(R10), X0 - MOVOU X0, 0(DI) - ADDQ AX, DI - -inner1: - // for { etc } - - // base := s - MOVQ SI, R12 - - // !!! offset := base - candidate - MOVQ R12, R11 - SUBQ R15, R11 - SUBQ DX, R11 - - // ---------------------------------------- - // Begin inline of the extendMatch call. - // - // s = extendMatch(src, candidate+4, s+4) - - // !!! R14 = &src[len(src)] - MOVQ src_len+32(FP), R14 - ADDQ DX, R14 - - // !!! R13 = &src[len(src) - 8] - MOVQ R14, R13 - SUBQ $8, R13 - - // !!! R15 = &src[candidate + 4] - ADDQ $4, R15 - ADDQ DX, R15 - - // !!! s += 4 - ADDQ $4, SI - -inlineExtendMatchCmp8: - // As long as we are 8 or more bytes before the end of src, we can load and - // compare 8 bytes at a time. If those 8 bytes are equal, repeat. - CMPQ SI, R13 - JA inlineExtendMatchCmp1 - MOVQ (R15), AX - MOVQ (SI), BX - CMPQ AX, BX - JNE inlineExtendMatchBSF - ADDQ $8, R15 - ADDQ $8, SI - JMP inlineExtendMatchCmp8 - -inlineExtendMatchBSF: - // If those 8 bytes were not equal, XOR the two 8 byte values, and return - // the index of the first byte that differs. The BSF instruction finds the - // least significant 1 bit, the amd64 architecture is little-endian, and - // the shift by 3 converts a bit index to a byte index. - XORQ AX, BX - BSFQ BX, BX - SHRQ $3, BX - ADDQ BX, SI - JMP inlineExtendMatchEnd - -inlineExtendMatchCmp1: - // In src's tail, compare 1 byte at a time. - CMPQ SI, R14 - JAE inlineExtendMatchEnd - MOVB (R15), AX - MOVB (SI), BX - CMPB AX, BX - JNE inlineExtendMatchEnd - ADDQ $1, R15 - ADDQ $1, SI - JMP inlineExtendMatchCmp1 - -inlineExtendMatchEnd: - // End inline of the extendMatch call. - // ---------------------------------------- - - // ---------------------------------------- - // Begin inline of the emitCopy call. - // - // d += emitCopy(dst[d:], base-candidate, s-base) - - // !!! length := s - base - MOVQ SI, AX - SUBQ R12, AX - -inlineEmitCopyLoop0: - // for length >= 68 { etc } - CMPL AX, $68 - JLT inlineEmitCopyStep1 - - // Emit a length 64 copy, encoded as 3 bytes. - MOVB $0xfe, 0(DI) - MOVW R11, 1(DI) - ADDQ $3, DI - SUBL $64, AX - JMP inlineEmitCopyLoop0 - -inlineEmitCopyStep1: - // if length > 64 { etc } - CMPL AX, $64 - JLE inlineEmitCopyStep2 - - // Emit a length 60 copy, encoded as 3 bytes. - MOVB $0xee, 0(DI) - MOVW R11, 1(DI) - ADDQ $3, DI - SUBL $60, AX - -inlineEmitCopyStep2: - // if length >= 12 || offset >= 2048 { goto inlineEmitCopyStep3 } - CMPL AX, $12 - JGE inlineEmitCopyStep3 - CMPL R11, $2048 - JGE inlineEmitCopyStep3 - - // Emit the remaining copy, encoded as 2 bytes. - MOVB R11, 1(DI) - SHRL $8, R11 - SHLB $5, R11 - SUBB $4, AX - SHLB $2, AX - ORB AX, R11 - ORB $1, R11 - MOVB R11, 0(DI) - ADDQ $2, DI - JMP inlineEmitCopyEnd - -inlineEmitCopyStep3: - // Emit the remaining copy, encoded as 3 bytes. - SUBL $1, AX - SHLB $2, AX - ORB $2, AX - MOVB AX, 0(DI) - MOVW R11, 1(DI) - ADDQ $3, DI - -inlineEmitCopyEnd: - // End inline of the emitCopy call. - // ---------------------------------------- - - // nextEmit = s - MOVQ SI, R10 - - // if s >= sLimit { goto emitRemainder } - MOVQ SI, AX - SUBQ DX, AX - CMPQ AX, R9 - JAE emitRemainder - - // As per the encode_other.go code: - // - // We could immediately etc. - - // x := load64(src, s-1) - MOVQ -1(SI), R14 - - // prevHash := hash(uint32(x>>0), shift) - MOVL R14, R11 - IMULL $0x1e35a7bd, R11 - SHRL CX, R11 - - // table[prevHash] = uint16(s-1) - MOVQ SI, AX - SUBQ DX, AX - SUBQ $1, AX - - // XXX: MOVW AX, table-32768(SP)(R11*2) - // XXX: 66 42 89 44 5c 78 mov %ax,0x78(%rsp,%r11,2) - BYTE $0x66 - BYTE $0x42 - BYTE $0x89 - BYTE $0x44 - BYTE $0x5c - BYTE $0x78 - - // currHash := hash(uint32(x>>8), shift) - SHRQ $8, R14 - MOVL R14, R11 - IMULL $0x1e35a7bd, R11 - SHRL CX, R11 - - // candidate = int(table[currHash]) - // XXX: MOVWQZX table-32768(SP)(R11*2), R15 - // XXX: 4e 0f b7 7c 5c 78 movzwq 0x78(%rsp,%r11,2),%r15 - BYTE $0x4e - BYTE $0x0f - BYTE $0xb7 - BYTE $0x7c - BYTE $0x5c - BYTE $0x78 - - // table[currHash] = uint16(s) - ADDQ $1, AX - - // XXX: MOVW AX, table-32768(SP)(R11*2) - // XXX: 66 42 89 44 5c 78 mov %ax,0x78(%rsp,%r11,2) - BYTE $0x66 - BYTE $0x42 - BYTE $0x89 - BYTE $0x44 - BYTE $0x5c - BYTE $0x78 - - // if uint32(x>>8) == load32(src, candidate) { continue } - MOVL (DX)(R15*1), BX - CMPL R14, BX - JEQ inner1 - - // nextHash = hash(uint32(x>>16), shift) - SHRQ $8, R14 - MOVL R14, R11 - IMULL $0x1e35a7bd, R11 - SHRL CX, R11 - - // s++ - ADDQ $1, SI - - // break out of the inner1 for loop, i.e. continue the outer loop. - JMP outer - -emitRemainder: - // if nextEmit < len(src) { etc } - MOVQ src_len+32(FP), AX - ADDQ DX, AX - CMPQ R10, AX - JEQ encodeBlockEnd - - // d += emitLiteral(dst[d:], src[nextEmit:]) - // - // Push args. - MOVQ DI, 0(SP) - MOVQ $0, 8(SP) // Unnecessary, as the callee ignores it, but conservative. - MOVQ $0, 16(SP) // Unnecessary, as the callee ignores it, but conservative. - MOVQ R10, 24(SP) - SUBQ R10, AX - MOVQ AX, 32(SP) - MOVQ AX, 40(SP) // Unnecessary, as the callee ignores it, but conservative. - - // Spill local variables (registers) onto the stack; call; unspill. - MOVQ DI, 80(SP) - CALL ·emitLiteral(SB) - MOVQ 80(SP), DI - - // Finish the "d +=" part of "d += emitLiteral(etc)". - ADDQ 48(SP), DI - -encodeBlockEnd: - MOVQ dst_base+0(FP), AX - SUBQ AX, DI - MOVQ DI, d+48(FP) - RET diff --git a/vendor/github.com/golang/snappy/encode_other.go b/vendor/github.com/golang/snappy/encode_other.go deleted file mode 100644 index dbcae90..0000000 --- a/vendor/github.com/golang/snappy/encode_other.go +++ /dev/null @@ -1,238 +0,0 @@ -// Copyright 2016 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !amd64 appengine !gc noasm - -package snappy - -func load32(b []byte, i int) uint32 { - b = b[i : i+4 : len(b)] // Help the compiler eliminate bounds checks on the next line. - return uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24 -} - -func load64(b []byte, i int) uint64 { - b = b[i : i+8 : len(b)] // Help the compiler eliminate bounds checks on the next line. - return uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 | - uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56 -} - -// emitLiteral writes a literal chunk and returns the number of bytes written. -// -// It assumes that: -// dst is long enough to hold the encoded bytes -// 1 <= len(lit) && len(lit) <= 65536 -func emitLiteral(dst, lit []byte) int { - i, n := 0, uint(len(lit)-1) - switch { - case n < 60: - dst[0] = uint8(n)<<2 | tagLiteral - i = 1 - case n < 1<<8: - dst[0] = 60<<2 | tagLiteral - dst[1] = uint8(n) - i = 2 - default: - dst[0] = 61<<2 | tagLiteral - dst[1] = uint8(n) - dst[2] = uint8(n >> 8) - i = 3 - } - return i + copy(dst[i:], lit) -} - -// emitCopy writes a copy chunk and returns the number of bytes written. -// -// It assumes that: -// dst is long enough to hold the encoded bytes -// 1 <= offset && offset <= 65535 -// 4 <= length && length <= 65535 -func emitCopy(dst []byte, offset, length int) int { - i := 0 - // The maximum length for a single tagCopy1 or tagCopy2 op is 64 bytes. The - // threshold for this loop is a little higher (at 68 = 64 + 4), and the - // length emitted down below is is a little lower (at 60 = 64 - 4), because - // it's shorter to encode a length 67 copy as a length 60 tagCopy2 followed - // by a length 7 tagCopy1 (which encodes as 3+2 bytes) than to encode it as - // a length 64 tagCopy2 followed by a length 3 tagCopy2 (which encodes as - // 3+3 bytes). The magic 4 in the 64±4 is because the minimum length for a - // tagCopy1 op is 4 bytes, which is why a length 3 copy has to be an - // encodes-as-3-bytes tagCopy2 instead of an encodes-as-2-bytes tagCopy1. - for length >= 68 { - // Emit a length 64 copy, encoded as 3 bytes. - dst[i+0] = 63<<2 | tagCopy2 - dst[i+1] = uint8(offset) - dst[i+2] = uint8(offset >> 8) - i += 3 - length -= 64 - } - if length > 64 { - // Emit a length 60 copy, encoded as 3 bytes. - dst[i+0] = 59<<2 | tagCopy2 - dst[i+1] = uint8(offset) - dst[i+2] = uint8(offset >> 8) - i += 3 - length -= 60 - } - if length >= 12 || offset >= 2048 { - // Emit the remaining copy, encoded as 3 bytes. - dst[i+0] = uint8(length-1)<<2 | tagCopy2 - dst[i+1] = uint8(offset) - dst[i+2] = uint8(offset >> 8) - return i + 3 - } - // Emit the remaining copy, encoded as 2 bytes. - dst[i+0] = uint8(offset>>8)<<5 | uint8(length-4)<<2 | tagCopy1 - dst[i+1] = uint8(offset) - return i + 2 -} - -// extendMatch returns the largest k such that k <= len(src) and that -// src[i:i+k-j] and src[j:k] have the same contents. -// -// It assumes that: -// 0 <= i && i < j && j <= len(src) -func extendMatch(src []byte, i, j int) int { - for ; j < len(src) && src[i] == src[j]; i, j = i+1, j+1 { - } - return j -} - -func hash(u, shift uint32) uint32 { - return (u * 0x1e35a7bd) >> shift -} - -// encodeBlock encodes a non-empty src to a guaranteed-large-enough dst. It -// assumes that the varint-encoded length of the decompressed bytes has already -// been written. -// -// It also assumes that: -// len(dst) >= MaxEncodedLen(len(src)) && -// minNonLiteralBlockSize <= len(src) && len(src) <= maxBlockSize -func encodeBlock(dst, src []byte) (d int) { - // Initialize the hash table. Its size ranges from 1<<8 to 1<<14 inclusive. - // The table element type is uint16, as s < sLimit and sLimit < len(src) - // and len(src) <= maxBlockSize and maxBlockSize == 65536. - const ( - maxTableSize = 1 << 14 - // tableMask is redundant, but helps the compiler eliminate bounds - // checks. - tableMask = maxTableSize - 1 - ) - shift := uint32(32 - 8) - for tableSize := 1 << 8; tableSize < maxTableSize && tableSize < len(src); tableSize *= 2 { - shift-- - } - // In Go, all array elements are zero-initialized, so there is no advantage - // to a smaller tableSize per se. However, it matches the C++ algorithm, - // and in the asm versions of this code, we can get away with zeroing only - // the first tableSize elements. - var table [maxTableSize]uint16 - - // sLimit is when to stop looking for offset/length copies. The inputMargin - // lets us use a fast path for emitLiteral in the main loop, while we are - // looking for copies. - sLimit := len(src) - inputMargin - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := 0 - - // The encoded form must start with a literal, as there are no previous - // bytes to copy, so we start looking for hash matches at s == 1. - s := 1 - nextHash := hash(load32(src, s), shift) - - for { - // Copied from the C++ snappy implementation: - // - // Heuristic match skipping: If 32 bytes are scanned with no matches - // found, start looking only at every other byte. If 32 more bytes are - // scanned (or skipped), look at every third byte, etc.. When a match - // is found, immediately go back to looking at every byte. This is a - // small loss (~5% performance, ~0.1% density) for compressible data - // due to more bookkeeping, but for non-compressible data (such as - // JPEG) it's a huge win since the compressor quickly "realizes" the - // data is incompressible and doesn't bother looking for matches - // everywhere. - // - // The "skip" variable keeps track of how many bytes there are since - // the last match; dividing it by 32 (ie. right-shifting by five) gives - // the number of bytes to move ahead for each iteration. - skip := 32 - - nextS := s - candidate := 0 - for { - s = nextS - bytesBetweenHashLookups := skip >> 5 - nextS = s + bytesBetweenHashLookups - skip += bytesBetweenHashLookups - if nextS > sLimit { - goto emitRemainder - } - candidate = int(table[nextHash&tableMask]) - table[nextHash&tableMask] = uint16(s) - nextHash = hash(load32(src, nextS), shift) - if load32(src, s) == load32(src, candidate) { - break - } - } - - // A 4-byte match has been found. We'll later see if more than 4 bytes - // match. But, prior to the match, src[nextEmit:s] are unmatched. Emit - // them as literal bytes. - d += emitLiteral(dst[d:], src[nextEmit:s]) - - // Call emitCopy, and then see if another emitCopy could be our next - // move. Repeat until we find no match for the input immediately after - // what was consumed by the last emitCopy call. - // - // If we exit this loop normally then we need to call emitLiteral next, - // though we don't yet know how big the literal will be. We handle that - // by proceeding to the next iteration of the main loop. We also can - // exit this loop via goto if we get close to exhausting the input. - for { - // Invariant: we have a 4-byte match at s, and no need to emit any - // literal bytes prior to s. - base := s - - // Extend the 4-byte match as long as possible. - // - // This is an inlined version of: - // s = extendMatch(src, candidate+4, s+4) - s += 4 - for i := candidate + 4; s < len(src) && src[i] == src[s]; i, s = i+1, s+1 { - } - - d += emitCopy(dst[d:], base-candidate, s-base) - nextEmit = s - if s >= sLimit { - goto emitRemainder - } - - // We could immediately start working at s now, but to improve - // compression we first update the hash table at s-1 and at s. If - // another emitCopy is not our next move, also calculate nextHash - // at s+1. At least on GOARCH=amd64, these three hash calculations - // are faster as one load64 call (with some shifts) instead of - // three load32 calls. - x := load64(src, s-1) - prevHash := hash(uint32(x>>0), shift) - table[prevHash&tableMask] = uint16(s - 1) - currHash := hash(uint32(x>>8), shift) - candidate = int(table[currHash&tableMask]) - table[currHash&tableMask] = uint16(s) - if uint32(x>>8) != load32(src, candidate) { - nextHash = hash(uint32(x>>16), shift) - s++ - break - } - } - } - -emitRemainder: - if nextEmit < len(src) { - d += emitLiteral(dst[d:], src[nextEmit:]) - } - return d -} diff --git a/vendor/github.com/golang/snappy/snappy.go b/vendor/github.com/golang/snappy/snappy.go deleted file mode 100644 index ece692e..0000000 --- a/vendor/github.com/golang/snappy/snappy.go +++ /dev/null @@ -1,98 +0,0 @@ -// Copyright 2011 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package snappy implements the Snappy compression format. It aims for very -// high speeds and reasonable compression. -// -// There are actually two Snappy formats: block and stream. They are related, -// but different: trying to decompress block-compressed data as a Snappy stream -// will fail, and vice versa. The block format is the Decode and Encode -// functions and the stream format is the Reader and Writer types. -// -// The block format, the more common case, is used when the complete size (the -// number of bytes) of the original data is known upfront, at the time -// compression starts. The stream format, also known as the framing format, is -// for when that isn't always true. -// -// The canonical, C++ implementation is at https://github.com/google/snappy and -// it only implements the block format. -package snappy // import "github.com/golang/snappy" - -import ( - "hash/crc32" -) - -/* -Each encoded block begins with the varint-encoded length of the decoded data, -followed by a sequence of chunks. Chunks begin and end on byte boundaries. The -first byte of each chunk is broken into its 2 least and 6 most significant bits -called l and m: l ranges in [0, 4) and m ranges in [0, 64). l is the chunk tag. -Zero means a literal tag. All other values mean a copy tag. - -For literal tags: - - If m < 60, the next 1 + m bytes are literal bytes. - - Otherwise, let n be the little-endian unsigned integer denoted by the next - m - 59 bytes. The next 1 + n bytes after that are literal bytes. - -For copy tags, length bytes are copied from offset bytes ago, in the style of -Lempel-Ziv compression algorithms. In particular: - - For l == 1, the offset ranges in [0, 1<<11) and the length in [4, 12). - The length is 4 + the low 3 bits of m. The high 3 bits of m form bits 8-10 - of the offset. The next byte is bits 0-7 of the offset. - - For l == 2, the offset ranges in [0, 1<<16) and the length in [1, 65). - The length is 1 + m. The offset is the little-endian unsigned integer - denoted by the next 2 bytes. - - For l == 3, this tag is a legacy format that is no longer issued by most - encoders. Nonetheless, the offset ranges in [0, 1<<32) and the length in - [1, 65). The length is 1 + m. The offset is the little-endian unsigned - integer denoted by the next 4 bytes. -*/ -const ( - tagLiteral = 0x00 - tagCopy1 = 0x01 - tagCopy2 = 0x02 - tagCopy4 = 0x03 -) - -const ( - checksumSize = 4 - chunkHeaderSize = 4 - magicChunk = "\xff\x06\x00\x00" + magicBody - magicBody = "sNaPpY" - - // maxBlockSize is the maximum size of the input to encodeBlock. It is not - // part of the wire format per se, but some parts of the encoder assume - // that an offset fits into a uint16. - // - // Also, for the framing format (Writer type instead of Encode function), - // https://github.com/google/snappy/blob/master/framing_format.txt says - // that "the uncompressed data in a chunk must be no longer than 65536 - // bytes". - maxBlockSize = 65536 - - // maxEncodedLenOfMaxBlockSize equals MaxEncodedLen(maxBlockSize), but is - // hard coded to be a const instead of a variable, so that obufLen can also - // be a const. Their equivalence is confirmed by - // TestMaxEncodedLenOfMaxBlockSize. - maxEncodedLenOfMaxBlockSize = 76490 - - obufHeaderLen = len(magicChunk) + checksumSize + chunkHeaderSize - obufLen = obufHeaderLen + maxEncodedLenOfMaxBlockSize -) - -const ( - chunkTypeCompressedData = 0x00 - chunkTypeUncompressedData = 0x01 - chunkTypePadding = 0xfe - chunkTypeStreamIdentifier = 0xff -) - -var crcTable = crc32.MakeTable(crc32.Castagnoli) - -// crc implements the checksum specified in section 3 of -// https://github.com/google/snappy/blob/master/framing_format.txt -func crc(b []byte) uint32 { - c := crc32.Update(0, crcTable, b) - return uint32(c>>15|c<<17) + 0xa282ead8 -} diff --git a/vendor/github.com/klauspost/cpuid/CONTRIBUTING.txt b/vendor/github.com/klauspost/cpuid/CONTRIBUTING.txt deleted file mode 100644 index 2ef4714..0000000 --- a/vendor/github.com/klauspost/cpuid/CONTRIBUTING.txt +++ /dev/null @@ -1,35 +0,0 @@ -Developer Certificate of Origin -Version 1.1 - -Copyright (C) 2015- Klaus Post & Contributors. -Email: klauspost@gmail.com - -Everyone is permitted to copy and distribute verbatim copies of this -license document, but changing it is not allowed. - - -Developer's Certificate of Origin 1.1 - -By making a contribution to this project, I certify that: - -(a) The contribution was created in whole or in part by me and I - have the right to submit it under the open source license - indicated in the file; or - -(b) The contribution is based upon previous work that, to the best - of my knowledge, is covered under an appropriate open source - license and I have the right under that license to submit that - work with modifications, whether created in whole or in part - by me, under the same open source license (unless I am - permitted to submit under a different license), as indicated - in the file; or - -(c) The contribution was provided directly to me by some other - person who certified (a), (b) or (c) and I have not modified - it. - -(d) I understand and agree that this project and the contribution - are public and that a record of the contribution (including all - personal information I submit with it, including my sign-off) is - maintained indefinitely and may be redistributed consistent with - this project or the open source license(s) involved. diff --git a/vendor/github.com/klauspost/cpuid/LICENSE b/vendor/github.com/klauspost/cpuid/LICENSE deleted file mode 100644 index 5cec7ee..0000000 --- a/vendor/github.com/klauspost/cpuid/LICENSE +++ /dev/null @@ -1,22 +0,0 @@ -The MIT License (MIT) - -Copyright (c) 2015 Klaus Post - -Permission is hereby granted, free of charge, to any person obtaining a copy -of this software and associated documentation files (the "Software"), to deal -in the Software without restriction, including without limitation the rights -to use, copy, modify, merge, publish, distribute, sublicense, and/or sell -copies of the Software, and to permit persons to whom the Software is -furnished to do so, subject to the following conditions: - -The above copyright notice and this permission notice shall be included in all -copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR -IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, -FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE -AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER -LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, -OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE -SOFTWARE. - diff --git a/vendor/github.com/klauspost/cpuid/README.md b/vendor/github.com/klauspost/cpuid/README.md deleted file mode 100644 index b2b6bee..0000000 --- a/vendor/github.com/klauspost/cpuid/README.md +++ /dev/null @@ -1,145 +0,0 @@ -# cpuid -Package cpuid provides information about the CPU running the current program. - -CPU features are detected on startup, and kept for fast access through the life of the application. -Currently x86 / x64 (AMD64) is supported, and no external C (cgo) code is used, which should make the library very easy to use. - -You can access the CPU information by accessing the shared CPU variable of the cpuid library. - -Package home: https://github.com/klauspost/cpuid - -[![GoDoc][1]][2] [![Build Status][3]][4] - -[1]: https://godoc.org/github.com/klauspost/cpuid?status.svg -[2]: https://godoc.org/github.com/klauspost/cpuid -[3]: https://travis-ci.org/klauspost/cpuid.svg -[4]: https://travis-ci.org/klauspost/cpuid - -# features -## CPU Instructions -* **CMOV** (i686 CMOV) -* **NX** (NX (No-Execute) bit) -* **AMD3DNOW** (AMD 3DNOW) -* **AMD3DNOWEXT** (AMD 3DNowExt) -* **MMX** (standard MMX) -* **MMXEXT** (SSE integer functions or AMD MMX ext) -* **SSE** (SSE functions) -* **SSE2** (P4 SSE functions) -* **SSE3** (Prescott SSE3 functions) -* **SSSE3** (Conroe SSSE3 functions) -* **SSE4** (Penryn SSE4.1 functions) -* **SSE4A** (AMD Barcelona microarchitecture SSE4a instructions) -* **SSE42** (Nehalem SSE4.2 functions) -* **AVX** (AVX functions) -* **AVX2** (AVX2 functions) -* **FMA3** (Intel FMA 3) -* **FMA4** (Bulldozer FMA4 functions) -* **XOP** (Bulldozer XOP functions) -* **F16C** (Half-precision floating-point conversion) -* **BMI1** (Bit Manipulation Instruction Set 1) -* **BMI2** (Bit Manipulation Instruction Set 2) -* **TBM** (AMD Trailing Bit Manipulation) -* **LZCNT** (LZCNT instruction) -* **POPCNT** (POPCNT instruction) -* **AESNI** (Advanced Encryption Standard New Instructions) -* **CLMUL** (Carry-less Multiplication) -* **HTT** (Hyperthreading (enabled)) -* **HLE** (Hardware Lock Elision) -* **RTM** (Restricted Transactional Memory) -* **RDRAND** (RDRAND instruction is available) -* **RDSEED** (RDSEED instruction is available) -* **ADX** (Intel ADX (Multi-Precision Add-Carry Instruction Extensions)) -* **SHA** (Intel SHA Extensions) -* **AVX512F** (AVX-512 Foundation) -* **AVX512DQ** (AVX-512 Doubleword and Quadword Instructions) -* **AVX512IFMA** (AVX-512 Integer Fused Multiply-Add Instructions) -* **AVX512PF** (AVX-512 Prefetch Instructions) -* **AVX512ER** (AVX-512 Exponential and Reciprocal Instructions) -* **AVX512CD** (AVX-512 Conflict Detection Instructions) -* **AVX512BW** (AVX-512 Byte and Word Instructions) -* **AVX512VL** (AVX-512 Vector Length Extensions) -* **AVX512VBMI** (AVX-512 Vector Bit Manipulation Instructions) -* **MPX** (Intel MPX (Memory Protection Extensions)) -* **ERMS** (Enhanced REP MOVSB/STOSB) -* **RDTSCP** (RDTSCP Instruction) -* **CX16** (CMPXCHG16B Instruction) -* **SGX** (Software Guard Extensions, with activation details) - -## Performance -* **RDTSCP()** Returns current cycle count. Can be used for benchmarking. -* **SSE2SLOW** (SSE2 is supported, but usually not faster) -* **SSE3SLOW** (SSE3 is supported, but usually not faster) -* **ATOM** (Atom processor, some SSSE3 instructions are slower) -* **Cache line** (Probable size of a cache line). -* **L1, L2, L3 Cache size** on newer Intel/AMD CPUs. - -## Cpu Vendor/VM -* **Intel** -* **AMD** -* **VIA** -* **Transmeta** -* **NSC** -* **KVM** (Kernel-based Virtual Machine) -* **MSVM** (Microsoft Hyper-V or Windows Virtual PC) -* **VMware** -* **XenHVM** - -# installing - -```go get github.com/klauspost/cpuid``` - -# example - -```Go -package main - -import ( - "fmt" - "github.com/klauspost/cpuid" -) - -func main() { - // Print basic CPU information: - fmt.Println("Name:", cpuid.CPU.BrandName) - fmt.Println("PhysicalCores:", cpuid.CPU.PhysicalCores) - fmt.Println("ThreadsPerCore:", cpuid.CPU.ThreadsPerCore) - fmt.Println("LogicalCores:", cpuid.CPU.LogicalCores) - fmt.Println("Family", cpuid.CPU.Family, "Model:", cpuid.CPU.Model) - fmt.Println("Features:", cpuid.CPU.Features) - fmt.Println("Cacheline bytes:", cpuid.CPU.CacheLine) - fmt.Println("L1 Data Cache:", cpuid.CPU.Cache.L1D, "bytes") - fmt.Println("L1 Instruction Cache:", cpuid.CPU.Cache.L1D, "bytes") - fmt.Println("L2 Cache:", cpuid.CPU.Cache.L2, "bytes") - fmt.Println("L3 Cache:", cpuid.CPU.Cache.L3, "bytes") - - // Test if we have a specific feature: - if cpuid.CPU.SSE() { - fmt.Println("We have Streaming SIMD Extensions") - } -} -``` - -Sample output: -``` ->go run main.go -Name: Intel(R) Core(TM) i5-2540M CPU @ 2.60GHz -PhysicalCores: 2 -ThreadsPerCore: 2 -LogicalCores: 4 -Family 6 Model: 42 -Features: CMOV,MMX,MMXEXT,SSE,SSE2,SSE3,SSSE3,SSE4.1,SSE4.2,AVX,AESNI,CLMUL -Cacheline bytes: 64 -We have Streaming SIMD Extensions -``` - -# private package - -In the "private" folder you can find an autogenerated version of the library you can include in your own packages. - -For this purpose all exports are removed, and functions and constants are lowercased. - -This is not a recommended way of using the library, but provided for convenience, if it is difficult for you to use external packages. - -# license - -This code is published under an MIT license. See LICENSE file for more information. diff --git a/vendor/github.com/klauspost/cpuid/cpuid.go b/vendor/github.com/klauspost/cpuid/cpuid.go deleted file mode 100644 index 60c681b..0000000 --- a/vendor/github.com/klauspost/cpuid/cpuid.go +++ /dev/null @@ -1,1040 +0,0 @@ -// Copyright (c) 2015 Klaus Post, released under MIT License. See LICENSE file. - -// Package cpuid provides information about the CPU running the current program. -// -// CPU features are detected on startup, and kept for fast access through the life of the application. -// Currently x86 / x64 (AMD64) is supported. -// -// You can access the CPU information by accessing the shared CPU variable of the cpuid library. -// -// Package home: https://github.com/klauspost/cpuid -package cpuid - -import "strings" - -// Vendor is a representation of a CPU vendor. -type Vendor int - -const ( - Other Vendor = iota - Intel - AMD - VIA - Transmeta - NSC - KVM // Kernel-based Virtual Machine - MSVM // Microsoft Hyper-V or Windows Virtual PC - VMware - XenHVM -) - -const ( - CMOV = 1 << iota // i686 CMOV - NX // NX (No-Execute) bit - AMD3DNOW // AMD 3DNOW - AMD3DNOWEXT // AMD 3DNowExt - MMX // standard MMX - MMXEXT // SSE integer functions or AMD MMX ext - SSE // SSE functions - SSE2 // P4 SSE functions - SSE3 // Prescott SSE3 functions - SSSE3 // Conroe SSSE3 functions - SSE4 // Penryn SSE4.1 functions - SSE4A // AMD Barcelona microarchitecture SSE4a instructions - SSE42 // Nehalem SSE4.2 functions - AVX // AVX functions - AVX2 // AVX2 functions - FMA3 // Intel FMA 3 - FMA4 // Bulldozer FMA4 functions - XOP // Bulldozer XOP functions - F16C // Half-precision floating-point conversion - BMI1 // Bit Manipulation Instruction Set 1 - BMI2 // Bit Manipulation Instruction Set 2 - TBM // AMD Trailing Bit Manipulation - LZCNT // LZCNT instruction - POPCNT // POPCNT instruction - AESNI // Advanced Encryption Standard New Instructions - CLMUL // Carry-less Multiplication - HTT // Hyperthreading (enabled) - HLE // Hardware Lock Elision - RTM // Restricted Transactional Memory - RDRAND // RDRAND instruction is available - RDSEED // RDSEED instruction is available - ADX // Intel ADX (Multi-Precision Add-Carry Instruction Extensions) - SHA // Intel SHA Extensions - AVX512F // AVX-512 Foundation - AVX512DQ // AVX-512 Doubleword and Quadword Instructions - AVX512IFMA // AVX-512 Integer Fused Multiply-Add Instructions - AVX512PF // AVX-512 Prefetch Instructions - AVX512ER // AVX-512 Exponential and Reciprocal Instructions - AVX512CD // AVX-512 Conflict Detection Instructions - AVX512BW // AVX-512 Byte and Word Instructions - AVX512VL // AVX-512 Vector Length Extensions - AVX512VBMI // AVX-512 Vector Bit Manipulation Instructions - MPX // Intel MPX (Memory Protection Extensions) - ERMS // Enhanced REP MOVSB/STOSB - RDTSCP // RDTSCP Instruction - CX16 // CMPXCHG16B Instruction - SGX // Software Guard Extensions - IBPB // Indirect Branch Restricted Speculation (IBRS) and Indirect Branch Predictor Barrier (IBPB) - STIBP // Single Thread Indirect Branch Predictors - - // Performance indicators - SSE2SLOW // SSE2 is supported, but usually not faster - SSE3SLOW // SSE3 is supported, but usually not faster - ATOM // Atom processor, some SSSE3 instructions are slower -) - -var flagNames = map[Flags]string{ - CMOV: "CMOV", // i686 CMOV - NX: "NX", // NX (No-Execute) bit - AMD3DNOW: "AMD3DNOW", // AMD 3DNOW - AMD3DNOWEXT: "AMD3DNOWEXT", // AMD 3DNowExt - MMX: "MMX", // Standard MMX - MMXEXT: "MMXEXT", // SSE integer functions or AMD MMX ext - SSE: "SSE", // SSE functions - SSE2: "SSE2", // P4 SSE2 functions - SSE3: "SSE3", // Prescott SSE3 functions - SSSE3: "SSSE3", // Conroe SSSE3 functions - SSE4: "SSE4.1", // Penryn SSE4.1 functions - SSE4A: "SSE4A", // AMD Barcelona microarchitecture SSE4a instructions - SSE42: "SSE4.2", // Nehalem SSE4.2 functions - AVX: "AVX", // AVX functions - AVX2: "AVX2", // AVX functions - FMA3: "FMA3", // Intel FMA 3 - FMA4: "FMA4", // Bulldozer FMA4 functions - XOP: "XOP", // Bulldozer XOP functions - F16C: "F16C", // Half-precision floating-point conversion - BMI1: "BMI1", // Bit Manipulation Instruction Set 1 - BMI2: "BMI2", // Bit Manipulation Instruction Set 2 - TBM: "TBM", // AMD Trailing Bit Manipulation - LZCNT: "LZCNT", // LZCNT instruction - POPCNT: "POPCNT", // POPCNT instruction - AESNI: "AESNI", // Advanced Encryption Standard New Instructions - CLMUL: "CLMUL", // Carry-less Multiplication - HTT: "HTT", // Hyperthreading (enabled) - HLE: "HLE", // Hardware Lock Elision - RTM: "RTM", // Restricted Transactional Memory - RDRAND: "RDRAND", // RDRAND instruction is available - RDSEED: "RDSEED", // RDSEED instruction is available - ADX: "ADX", // Intel ADX (Multi-Precision Add-Carry Instruction Extensions) - SHA: "SHA", // Intel SHA Extensions - AVX512F: "AVX512F", // AVX-512 Foundation - AVX512DQ: "AVX512DQ", // AVX-512 Doubleword and Quadword Instructions - AVX512IFMA: "AVX512IFMA", // AVX-512 Integer Fused Multiply-Add Instructions - AVX512PF: "AVX512PF", // AVX-512 Prefetch Instructions - AVX512ER: "AVX512ER", // AVX-512 Exponential and Reciprocal Instructions - AVX512CD: "AVX512CD", // AVX-512 Conflict Detection Instructions - AVX512BW: "AVX512BW", // AVX-512 Byte and Word Instructions - AVX512VL: "AVX512VL", // AVX-512 Vector Length Extensions - AVX512VBMI: "AVX512VBMI", // AVX-512 Vector Bit Manipulation Instructions - MPX: "MPX", // Intel MPX (Memory Protection Extensions) - ERMS: "ERMS", // Enhanced REP MOVSB/STOSB - RDTSCP: "RDTSCP", // RDTSCP Instruction - CX16: "CX16", // CMPXCHG16B Instruction - SGX: "SGX", // Software Guard Extensions - IBPB: "IBPB", // Indirect Branch Restricted Speculation and Indirect Branch Predictor Barrier - STIBP: "STIBP", // Single Thread Indirect Branch Predictors - - // Performance indicators - SSE2SLOW: "SSE2SLOW", // SSE2 supported, but usually not faster - SSE3SLOW: "SSE3SLOW", // SSE3 supported, but usually not faster - ATOM: "ATOM", // Atom processor, some SSSE3 instructions are slower - -} - -// CPUInfo contains information about the detected system CPU. -type CPUInfo struct { - BrandName string // Brand name reported by the CPU - VendorID Vendor // Comparable CPU vendor ID - Features Flags // Features of the CPU - PhysicalCores int // Number of physical processor cores in your CPU. Will be 0 if undetectable. - ThreadsPerCore int // Number of threads per physical core. Will be 1 if undetectable. - LogicalCores int // Number of physical cores times threads that can run on each core through the use of hyperthreading. Will be 0 if undetectable. - Family int // CPU family number - Model int // CPU model number - CacheLine int // Cache line size in bytes. Will be 0 if undetectable. - Cache struct { - L1I int // L1 Instruction Cache (per core or shared). Will be -1 if undetected - L1D int // L1 Data Cache (per core or shared). Will be -1 if undetected - L2 int // L2 Cache (per core or shared). Will be -1 if undetected - L3 int // L3 Instruction Cache (per core or shared). Will be -1 if undetected - } - SGX SGXSupport - maxFunc uint32 - maxExFunc uint32 -} - -var cpuid func(op uint32) (eax, ebx, ecx, edx uint32) -var cpuidex func(op, op2 uint32) (eax, ebx, ecx, edx uint32) -var xgetbv func(index uint32) (eax, edx uint32) -var rdtscpAsm func() (eax, ebx, ecx, edx uint32) - -// CPU contains information about the CPU as detected on startup, -// or when Detect last was called. -// -// Use this as the primary entry point to you data, -// this way queries are -var CPU CPUInfo - -func init() { - initCPU() - Detect() -} - -// Detect will re-detect current CPU info. -// This will replace the content of the exported CPU variable. -// -// Unless you expect the CPU to change while you are running your program -// you should not need to call this function. -// If you call this, you must ensure that no other goroutine is accessing the -// exported CPU variable. -func Detect() { - CPU.maxFunc = maxFunctionID() - CPU.maxExFunc = maxExtendedFunction() - CPU.BrandName = brandName() - CPU.CacheLine = cacheLine() - CPU.Family, CPU.Model = familyModel() - CPU.Features = support() - CPU.SGX = hasSGX(CPU.Features&SGX != 0) - CPU.ThreadsPerCore = threadsPerCore() - CPU.LogicalCores = logicalCores() - CPU.PhysicalCores = physicalCores() - CPU.VendorID = vendorID() - CPU.cacheSize() -} - -// Generated here: http://play.golang.org/p/BxFH2Gdc0G - -// Cmov indicates support of CMOV instructions -func (c CPUInfo) Cmov() bool { - return c.Features&CMOV != 0 -} - -// Amd3dnow indicates support of AMD 3DNOW! instructions -func (c CPUInfo) Amd3dnow() bool { - return c.Features&AMD3DNOW != 0 -} - -// Amd3dnowExt indicates support of AMD 3DNOW! Extended instructions -func (c CPUInfo) Amd3dnowExt() bool { - return c.Features&AMD3DNOWEXT != 0 -} - -// MMX indicates support of MMX instructions -func (c CPUInfo) MMX() bool { - return c.Features&MMX != 0 -} - -// MMXExt indicates support of MMXEXT instructions -// (SSE integer functions or AMD MMX ext) -func (c CPUInfo) MMXExt() bool { - return c.Features&MMXEXT != 0 -} - -// SSE indicates support of SSE instructions -func (c CPUInfo) SSE() bool { - return c.Features&SSE != 0 -} - -// SSE2 indicates support of SSE 2 instructions -func (c CPUInfo) SSE2() bool { - return c.Features&SSE2 != 0 -} - -// SSE3 indicates support of SSE 3 instructions -func (c CPUInfo) SSE3() bool { - return c.Features&SSE3 != 0 -} - -// SSSE3 indicates support of SSSE 3 instructions -func (c CPUInfo) SSSE3() bool { - return c.Features&SSSE3 != 0 -} - -// SSE4 indicates support of SSE 4 (also called SSE 4.1) instructions -func (c CPUInfo) SSE4() bool { - return c.Features&SSE4 != 0 -} - -// SSE42 indicates support of SSE4.2 instructions -func (c CPUInfo) SSE42() bool { - return c.Features&SSE42 != 0 -} - -// AVX indicates support of AVX instructions -// and operating system support of AVX instructions -func (c CPUInfo) AVX() bool { - return c.Features&AVX != 0 -} - -// AVX2 indicates support of AVX2 instructions -func (c CPUInfo) AVX2() bool { - return c.Features&AVX2 != 0 -} - -// FMA3 indicates support of FMA3 instructions -func (c CPUInfo) FMA3() bool { - return c.Features&FMA3 != 0 -} - -// FMA4 indicates support of FMA4 instructions -func (c CPUInfo) FMA4() bool { - return c.Features&FMA4 != 0 -} - -// XOP indicates support of XOP instructions -func (c CPUInfo) XOP() bool { - return c.Features&XOP != 0 -} - -// F16C indicates support of F16C instructions -func (c CPUInfo) F16C() bool { - return c.Features&F16C != 0 -} - -// BMI1 indicates support of BMI1 instructions -func (c CPUInfo) BMI1() bool { - return c.Features&BMI1 != 0 -} - -// BMI2 indicates support of BMI2 instructions -func (c CPUInfo) BMI2() bool { - return c.Features&BMI2 != 0 -} - -// TBM indicates support of TBM instructions -// (AMD Trailing Bit Manipulation) -func (c CPUInfo) TBM() bool { - return c.Features&TBM != 0 -} - -// Lzcnt indicates support of LZCNT instruction -func (c CPUInfo) Lzcnt() bool { - return c.Features&LZCNT != 0 -} - -// Popcnt indicates support of POPCNT instruction -func (c CPUInfo) Popcnt() bool { - return c.Features&POPCNT != 0 -} - -// HTT indicates the processor has Hyperthreading enabled -func (c CPUInfo) HTT() bool { - return c.Features&HTT != 0 -} - -// SSE2Slow indicates that SSE2 may be slow on this processor -func (c CPUInfo) SSE2Slow() bool { - return c.Features&SSE2SLOW != 0 -} - -// SSE3Slow indicates that SSE3 may be slow on this processor -func (c CPUInfo) SSE3Slow() bool { - return c.Features&SSE3SLOW != 0 -} - -// AesNi indicates support of AES-NI instructions -// (Advanced Encryption Standard New Instructions) -func (c CPUInfo) AesNi() bool { - return c.Features&AESNI != 0 -} - -// Clmul indicates support of CLMUL instructions -// (Carry-less Multiplication) -func (c CPUInfo) Clmul() bool { - return c.Features&CLMUL != 0 -} - -// NX indicates support of NX (No-Execute) bit -func (c CPUInfo) NX() bool { - return c.Features&NX != 0 -} - -// SSE4A indicates support of AMD Barcelona microarchitecture SSE4a instructions -func (c CPUInfo) SSE4A() bool { - return c.Features&SSE4A != 0 -} - -// HLE indicates support of Hardware Lock Elision -func (c CPUInfo) HLE() bool { - return c.Features&HLE != 0 -} - -// RTM indicates support of Restricted Transactional Memory -func (c CPUInfo) RTM() bool { - return c.Features&RTM != 0 -} - -// Rdrand indicates support of RDRAND instruction is available -func (c CPUInfo) Rdrand() bool { - return c.Features&RDRAND != 0 -} - -// Rdseed indicates support of RDSEED instruction is available -func (c CPUInfo) Rdseed() bool { - return c.Features&RDSEED != 0 -} - -// ADX indicates support of Intel ADX (Multi-Precision Add-Carry Instruction Extensions) -func (c CPUInfo) ADX() bool { - return c.Features&ADX != 0 -} - -// SHA indicates support of Intel SHA Extensions -func (c CPUInfo) SHA() bool { - return c.Features&SHA != 0 -} - -// AVX512F indicates support of AVX-512 Foundation -func (c CPUInfo) AVX512F() bool { - return c.Features&AVX512F != 0 -} - -// AVX512DQ indicates support of AVX-512 Doubleword and Quadword Instructions -func (c CPUInfo) AVX512DQ() bool { - return c.Features&AVX512DQ != 0 -} - -// AVX512IFMA indicates support of AVX-512 Integer Fused Multiply-Add Instructions -func (c CPUInfo) AVX512IFMA() bool { - return c.Features&AVX512IFMA != 0 -} - -// AVX512PF indicates support of AVX-512 Prefetch Instructions -func (c CPUInfo) AVX512PF() bool { - return c.Features&AVX512PF != 0 -} - -// AVX512ER indicates support of AVX-512 Exponential and Reciprocal Instructions -func (c CPUInfo) AVX512ER() bool { - return c.Features&AVX512ER != 0 -} - -// AVX512CD indicates support of AVX-512 Conflict Detection Instructions -func (c CPUInfo) AVX512CD() bool { - return c.Features&AVX512CD != 0 -} - -// AVX512BW indicates support of AVX-512 Byte and Word Instructions -func (c CPUInfo) AVX512BW() bool { - return c.Features&AVX512BW != 0 -} - -// AVX512VL indicates support of AVX-512 Vector Length Extensions -func (c CPUInfo) AVX512VL() bool { - return c.Features&AVX512VL != 0 -} - -// AVX512VBMI indicates support of AVX-512 Vector Bit Manipulation Instructions -func (c CPUInfo) AVX512VBMI() bool { - return c.Features&AVX512VBMI != 0 -} - -// MPX indicates support of Intel MPX (Memory Protection Extensions) -func (c CPUInfo) MPX() bool { - return c.Features&MPX != 0 -} - -// ERMS indicates support of Enhanced REP MOVSB/STOSB -func (c CPUInfo) ERMS() bool { - return c.Features&ERMS != 0 -} - -// RDTSCP Instruction is available. -func (c CPUInfo) RDTSCP() bool { - return c.Features&RDTSCP != 0 -} - -// CX16 indicates if CMPXCHG16B instruction is available. -func (c CPUInfo) CX16() bool { - return c.Features&CX16 != 0 -} - -// TSX is split into HLE (Hardware Lock Elision) and RTM (Restricted Transactional Memory) detection. -// So TSX simply checks that. -func (c CPUInfo) TSX() bool { - return c.Features&(HLE|RTM) == HLE|RTM -} - -// Atom indicates an Atom processor -func (c CPUInfo) Atom() bool { - return c.Features&ATOM != 0 -} - -// Intel returns true if vendor is recognized as Intel -func (c CPUInfo) Intel() bool { - return c.VendorID == Intel -} - -// AMD returns true if vendor is recognized as AMD -func (c CPUInfo) AMD() bool { - return c.VendorID == AMD -} - -// Transmeta returns true if vendor is recognized as Transmeta -func (c CPUInfo) Transmeta() bool { - return c.VendorID == Transmeta -} - -// NSC returns true if vendor is recognized as National Semiconductor -func (c CPUInfo) NSC() bool { - return c.VendorID == NSC -} - -// VIA returns true if vendor is recognized as VIA -func (c CPUInfo) VIA() bool { - return c.VendorID == VIA -} - -// RTCounter returns the 64-bit time-stamp counter -// Uses the RDTSCP instruction. The value 0 is returned -// if the CPU does not support the instruction. -func (c CPUInfo) RTCounter() uint64 { - if !c.RDTSCP() { - return 0 - } - a, _, _, d := rdtscpAsm() - return uint64(a) | (uint64(d) << 32) -} - -// Ia32TscAux returns the IA32_TSC_AUX part of the RDTSCP. -// This variable is OS dependent, but on Linux contains information -// about the current cpu/core the code is running on. -// If the RDTSCP instruction isn't supported on the CPU, the value 0 is returned. -func (c CPUInfo) Ia32TscAux() uint32 { - if !c.RDTSCP() { - return 0 - } - _, _, ecx, _ := rdtscpAsm() - return ecx -} - -// LogicalCPU will return the Logical CPU the code is currently executing on. -// This is likely to change when the OS re-schedules the running thread -// to another CPU. -// If the current core cannot be detected, -1 will be returned. -func (c CPUInfo) LogicalCPU() int { - if c.maxFunc < 1 { - return -1 - } - _, ebx, _, _ := cpuid(1) - return int(ebx >> 24) -} - -// VM Will return true if the cpu id indicates we are in -// a virtual machine. This is only a hint, and will very likely -// have many false negatives. -func (c CPUInfo) VM() bool { - switch c.VendorID { - case MSVM, KVM, VMware, XenHVM: - return true - } - return false -} - -// Flags contains detected cpu features and caracteristics -type Flags uint64 - -// String returns a string representation of the detected -// CPU features. -func (f Flags) String() string { - return strings.Join(f.Strings(), ",") -} - -// Strings returns and array of the detected features. -func (f Flags) Strings() []string { - s := support() - r := make([]string, 0, 20) - for i := uint(0); i < 64; i++ { - key := Flags(1 << i) - val := flagNames[key] - if s&key != 0 { - r = append(r, val) - } - } - return r -} - -func maxExtendedFunction() uint32 { - eax, _, _, _ := cpuid(0x80000000) - return eax -} - -func maxFunctionID() uint32 { - a, _, _, _ := cpuid(0) - return a -} - -func brandName() string { - if maxExtendedFunction() >= 0x80000004 { - v := make([]uint32, 0, 48) - for i := uint32(0); i < 3; i++ { - a, b, c, d := cpuid(0x80000002 + i) - v = append(v, a, b, c, d) - } - return strings.Trim(string(valAsString(v...)), " ") - } - return "unknown" -} - -func threadsPerCore() int { - mfi := maxFunctionID() - if mfi < 0x4 || vendorID() != Intel { - return 1 - } - - if mfi < 0xb { - _, b, _, d := cpuid(1) - if (d & (1 << 28)) != 0 { - // v will contain logical core count - v := (b >> 16) & 255 - if v > 1 { - a4, _, _, _ := cpuid(4) - // physical cores - v2 := (a4 >> 26) + 1 - if v2 > 0 { - return int(v) / int(v2) - } - } - } - return 1 - } - _, b, _, _ := cpuidex(0xb, 0) - if b&0xffff == 0 { - return 1 - } - return int(b & 0xffff) -} - -func logicalCores() int { - mfi := maxFunctionID() - switch vendorID() { - case Intel: - // Use this on old Intel processors - if mfi < 0xb { - if mfi < 1 { - return 0 - } - // CPUID.1:EBX[23:16] represents the maximum number of addressable IDs (initial APIC ID) - // that can be assigned to logical processors in a physical package. - // The value may not be the same as the number of logical processors that are present in the hardware of a physical package. - _, ebx, _, _ := cpuid(1) - logical := (ebx >> 16) & 0xff - return int(logical) - } - _, b, _, _ := cpuidex(0xb, 1) - return int(b & 0xffff) - case AMD: - _, b, _, _ := cpuid(1) - return int((b >> 16) & 0xff) - default: - return 0 - } -} - -func familyModel() (int, int) { - if maxFunctionID() < 0x1 { - return 0, 0 - } - eax, _, _, _ := cpuid(1) - family := ((eax >> 8) & 0xf) + ((eax >> 20) & 0xff) - model := ((eax >> 4) & 0xf) + ((eax >> 12) & 0xf0) - return int(family), int(model) -} - -func physicalCores() int { - switch vendorID() { - case Intel: - return logicalCores() / threadsPerCore() - case AMD: - if maxExtendedFunction() >= 0x80000008 { - _, _, c, _ := cpuid(0x80000008) - return int(c&0xff) + 1 - } - } - return 0 -} - -// Except from http://en.wikipedia.org/wiki/CPUID#EAX.3D0:_Get_vendor_ID -var vendorMapping = map[string]Vendor{ - "AMDisbetter!": AMD, - "AuthenticAMD": AMD, - "CentaurHauls": VIA, - "GenuineIntel": Intel, - "TransmetaCPU": Transmeta, - "GenuineTMx86": Transmeta, - "Geode by NSC": NSC, - "VIA VIA VIA ": VIA, - "KVMKVMKVMKVM": KVM, - "Microsoft Hv": MSVM, - "VMwareVMware": VMware, - "XenVMMXenVMM": XenHVM, -} - -func vendorID() Vendor { - _, b, c, d := cpuid(0) - v := valAsString(b, d, c) - vend, ok := vendorMapping[string(v)] - if !ok { - return Other - } - return vend -} - -func cacheLine() int { - if maxFunctionID() < 0x1 { - return 0 - } - - _, ebx, _, _ := cpuid(1) - cache := (ebx & 0xff00) >> 5 // cflush size - if cache == 0 && maxExtendedFunction() >= 0x80000006 { - _, _, ecx, _ := cpuid(0x80000006) - cache = ecx & 0xff // cacheline size - } - // TODO: Read from Cache and TLB Information - return int(cache) -} - -func (c *CPUInfo) cacheSize() { - c.Cache.L1D = -1 - c.Cache.L1I = -1 - c.Cache.L2 = -1 - c.Cache.L3 = -1 - vendor := vendorID() - switch vendor { - case Intel: - if maxFunctionID() < 4 { - return - } - for i := uint32(0); ; i++ { - eax, ebx, ecx, _ := cpuidex(4, i) - cacheType := eax & 15 - if cacheType == 0 { - break - } - cacheLevel := (eax >> 5) & 7 - coherency := int(ebx&0xfff) + 1 - partitions := int((ebx>>12)&0x3ff) + 1 - associativity := int((ebx>>22)&0x3ff) + 1 - sets := int(ecx) + 1 - size := associativity * partitions * coherency * sets - switch cacheLevel { - case 1: - if cacheType == 1 { - // 1 = Data Cache - c.Cache.L1D = size - } else if cacheType == 2 { - // 2 = Instruction Cache - c.Cache.L1I = size - } else { - if c.Cache.L1D < 0 { - c.Cache.L1I = size - } - if c.Cache.L1I < 0 { - c.Cache.L1I = size - } - } - case 2: - c.Cache.L2 = size - case 3: - c.Cache.L3 = size - } - } - case AMD: - // Untested. - if maxExtendedFunction() < 0x80000005 { - return - } - _, _, ecx, edx := cpuid(0x80000005) - c.Cache.L1D = int(((ecx >> 24) & 0xFF) * 1024) - c.Cache.L1I = int(((edx >> 24) & 0xFF) * 1024) - - if maxExtendedFunction() < 0x80000006 { - return - } - _, _, ecx, _ = cpuid(0x80000006) - c.Cache.L2 = int(((ecx >> 16) & 0xFFFF) * 1024) - } - - return -} - -type SGXSupport struct { - Available bool - SGX1Supported bool - SGX2Supported bool - MaxEnclaveSizeNot64 int64 - MaxEnclaveSize64 int64 -} - -func hasSGX(available bool) (rval SGXSupport) { - rval.Available = available - - if !available { - return - } - - a, _, _, d := cpuidex(0x12, 0) - rval.SGX1Supported = a&0x01 != 0 - rval.SGX2Supported = a&0x02 != 0 - rval.MaxEnclaveSizeNot64 = 1 << (d & 0xFF) // pow 2 - rval.MaxEnclaveSize64 = 1 << ((d >> 8) & 0xFF) // pow 2 - - return -} - -func support() Flags { - mfi := maxFunctionID() - vend := vendorID() - if mfi < 0x1 { - return 0 - } - rval := uint64(0) - _, _, c, d := cpuid(1) - if (d & (1 << 15)) != 0 { - rval |= CMOV - } - if (d & (1 << 23)) != 0 { - rval |= MMX - } - if (d & (1 << 25)) != 0 { - rval |= MMXEXT - } - if (d & (1 << 25)) != 0 { - rval |= SSE - } - if (d & (1 << 26)) != 0 { - rval |= SSE2 - } - if (c & 1) != 0 { - rval |= SSE3 - } - if (c & 0x00000200) != 0 { - rval |= SSSE3 - } - if (c & 0x00080000) != 0 { - rval |= SSE4 - } - if (c & 0x00100000) != 0 { - rval |= SSE42 - } - if (c & (1 << 25)) != 0 { - rval |= AESNI - } - if (c & (1 << 1)) != 0 { - rval |= CLMUL - } - if c&(1<<23) != 0 { - rval |= POPCNT - } - if c&(1<<30) != 0 { - rval |= RDRAND - } - if c&(1<<29) != 0 { - rval |= F16C - } - if c&(1<<13) != 0 { - rval |= CX16 - } - if vend == Intel && (d&(1<<28)) != 0 && mfi >= 4 { - if threadsPerCore() > 1 { - rval |= HTT - } - } - - // Check XGETBV, OXSAVE and AVX bits - if c&(1<<26) != 0 && c&(1<<27) != 0 && c&(1<<28) != 0 { - // Check for OS support - eax, _ := xgetbv(0) - if (eax & 0x6) == 0x6 { - rval |= AVX - if (c & 0x00001000) != 0 { - rval |= FMA3 - } - } - } - - // Check AVX2, AVX2 requires OS support, but BMI1/2 don't. - if mfi >= 7 { - _, ebx, ecx, edx := cpuidex(7, 0) - if (rval&AVX) != 0 && (ebx&0x00000020) != 0 { - rval |= AVX2 - } - if (ebx & 0x00000008) != 0 { - rval |= BMI1 - if (ebx & 0x00000100) != 0 { - rval |= BMI2 - } - } - if ebx&(1<<2) != 0 { - rval |= SGX - } - if ebx&(1<<4) != 0 { - rval |= HLE - } - if ebx&(1<<9) != 0 { - rval |= ERMS - } - if ebx&(1<<11) != 0 { - rval |= RTM - } - if ebx&(1<<14) != 0 { - rval |= MPX - } - if ebx&(1<<18) != 0 { - rval |= RDSEED - } - if ebx&(1<<19) != 0 { - rval |= ADX - } - if ebx&(1<<29) != 0 { - rval |= SHA - } - if edx&(1<<26) != 0 { - rval |= IBPB - } - if edx&(1<<27) != 0 { - rval |= STIBP - } - - // Only detect AVX-512 features if XGETBV is supported - if c&((1<<26)|(1<<27)) == (1<<26)|(1<<27) { - // Check for OS support - eax, _ := xgetbv(0) - - // Verify that XCR0[7:5] = ‘111b’ (OPMASK state, upper 256-bit of ZMM0-ZMM15 and - // ZMM16-ZMM31 state are enabled by OS) - /// and that XCR0[2:1] = ‘11b’ (XMM state and YMM state are enabled by OS). - if (eax>>5)&7 == 7 && (eax>>1)&3 == 3 { - if ebx&(1<<16) != 0 { - rval |= AVX512F - } - if ebx&(1<<17) != 0 { - rval |= AVX512DQ - } - if ebx&(1<<21) != 0 { - rval |= AVX512IFMA - } - if ebx&(1<<26) != 0 { - rval |= AVX512PF - } - if ebx&(1<<27) != 0 { - rval |= AVX512ER - } - if ebx&(1<<28) != 0 { - rval |= AVX512CD - } - if ebx&(1<<30) != 0 { - rval |= AVX512BW - } - if ebx&(1<<31) != 0 { - rval |= AVX512VL - } - // ecx - if ecx&(1<<1) != 0 { - rval |= AVX512VBMI - } - } - } - } - - if maxExtendedFunction() >= 0x80000001 { - _, _, c, d := cpuid(0x80000001) - if (c & (1 << 5)) != 0 { - rval |= LZCNT - rval |= POPCNT - } - if (d & (1 << 31)) != 0 { - rval |= AMD3DNOW - } - if (d & (1 << 30)) != 0 { - rval |= AMD3DNOWEXT - } - if (d & (1 << 23)) != 0 { - rval |= MMX - } - if (d & (1 << 22)) != 0 { - rval |= MMXEXT - } - if (c & (1 << 6)) != 0 { - rval |= SSE4A - } - if d&(1<<20) != 0 { - rval |= NX - } - if d&(1<<27) != 0 { - rval |= RDTSCP - } - - /* Allow for selectively disabling SSE2 functions on AMD processors - with SSE2 support but not SSE4a. This includes Athlon64, some - Opteron, and some Sempron processors. MMX, SSE, or 3DNow! are faster - than SSE2 often enough to utilize this special-case flag. - AV_CPU_FLAG_SSE2 and AV_CPU_FLAG_SSE2SLOW are both set in this case - so that SSE2 is used unless explicitly disabled by checking - AV_CPU_FLAG_SSE2SLOW. */ - if vendorID() != Intel && - rval&SSE2 != 0 && (c&0x00000040) == 0 { - rval |= SSE2SLOW - } - - /* XOP and FMA4 use the AVX instruction coding scheme, so they can't be - * used unless the OS has AVX support. */ - if (rval & AVX) != 0 { - if (c & 0x00000800) != 0 { - rval |= XOP - } - if (c & 0x00010000) != 0 { - rval |= FMA4 - } - } - - if vendorID() == Intel { - family, model := familyModel() - if family == 6 && (model == 9 || model == 13 || model == 14) { - /* 6/9 (pentium-m "banias"), 6/13 (pentium-m "dothan"), and - * 6/14 (core1 "yonah") theoretically support sse2, but it's - * usually slower than mmx. */ - if (rval & SSE2) != 0 { - rval |= SSE2SLOW - } - if (rval & SSE3) != 0 { - rval |= SSE3SLOW - } - } - /* The Atom processor has SSSE3 support, which is useful in many cases, - * but sometimes the SSSE3 version is slower than the SSE2 equivalent - * on the Atom, but is generally faster on other processors supporting - * SSSE3. This flag allows for selectively disabling certain SSSE3 - * functions on the Atom. */ - if family == 6 && model == 28 { - rval |= ATOM - } - } - } - return Flags(rval) -} - -func valAsString(values ...uint32) []byte { - r := make([]byte, 4*len(values)) - for i, v := range values { - dst := r[i*4:] - dst[0] = byte(v & 0xff) - dst[1] = byte((v >> 8) & 0xff) - dst[2] = byte((v >> 16) & 0xff) - dst[3] = byte((v >> 24) & 0xff) - switch { - case dst[0] == 0: - return r[:i*4] - case dst[1] == 0: - return r[:i*4+1] - case dst[2] == 0: - return r[:i*4+2] - case dst[3] == 0: - return r[:i*4+3] - } - } - return r -} diff --git a/vendor/github.com/klauspost/cpuid/cpuid_386.s b/vendor/github.com/klauspost/cpuid/cpuid_386.s deleted file mode 100644 index 4d73171..0000000 --- a/vendor/github.com/klauspost/cpuid/cpuid_386.s +++ /dev/null @@ -1,42 +0,0 @@ -// Copyright (c) 2015 Klaus Post, released under MIT License. See LICENSE file. - -// +build 386,!gccgo - -// func asmCpuid(op uint32) (eax, ebx, ecx, edx uint32) -TEXT ·asmCpuid(SB), 7, $0 - XORL CX, CX - MOVL op+0(FP), AX - CPUID - MOVL AX, eax+4(FP) - MOVL BX, ebx+8(FP) - MOVL CX, ecx+12(FP) - MOVL DX, edx+16(FP) - RET - -// func asmCpuidex(op, op2 uint32) (eax, ebx, ecx, edx uint32) -TEXT ·asmCpuidex(SB), 7, $0 - MOVL op+0(FP), AX - MOVL op2+4(FP), CX - CPUID - MOVL AX, eax+8(FP) - MOVL BX, ebx+12(FP) - MOVL CX, ecx+16(FP) - MOVL DX, edx+20(FP) - RET - -// func xgetbv(index uint32) (eax, edx uint32) -TEXT ·asmXgetbv(SB), 7, $0 - MOVL index+0(FP), CX - BYTE $0x0f; BYTE $0x01; BYTE $0xd0 // XGETBV - MOVL AX, eax+4(FP) - MOVL DX, edx+8(FP) - RET - -// func asmRdtscpAsm() (eax, ebx, ecx, edx uint32) -TEXT ·asmRdtscpAsm(SB), 7, $0 - BYTE $0x0F; BYTE $0x01; BYTE $0xF9 // RDTSCP - MOVL AX, eax+0(FP) - MOVL BX, ebx+4(FP) - MOVL CX, ecx+8(FP) - MOVL DX, edx+12(FP) - RET diff --git a/vendor/github.com/klauspost/cpuid/cpuid_amd64.s b/vendor/github.com/klauspost/cpuid/cpuid_amd64.s deleted file mode 100644 index 3c1d60e..0000000 --- a/vendor/github.com/klauspost/cpuid/cpuid_amd64.s +++ /dev/null @@ -1,42 +0,0 @@ -// Copyright (c) 2015 Klaus Post, released under MIT License. See LICENSE file. - -//+build amd64,!gccgo - -// func asmCpuid(op uint32) (eax, ebx, ecx, edx uint32) -TEXT ·asmCpuid(SB), 7, $0 - XORQ CX, CX - MOVL op+0(FP), AX - CPUID - MOVL AX, eax+8(FP) - MOVL BX, ebx+12(FP) - MOVL CX, ecx+16(FP) - MOVL DX, edx+20(FP) - RET - -// func asmCpuidex(op, op2 uint32) (eax, ebx, ecx, edx uint32) -TEXT ·asmCpuidex(SB), 7, $0 - MOVL op+0(FP), AX - MOVL op2+4(FP), CX - CPUID - MOVL AX, eax+8(FP) - MOVL BX, ebx+12(FP) - MOVL CX, ecx+16(FP) - MOVL DX, edx+20(FP) - RET - -// func asmXgetbv(index uint32) (eax, edx uint32) -TEXT ·asmXgetbv(SB), 7, $0 - MOVL index+0(FP), CX - BYTE $0x0f; BYTE $0x01; BYTE $0xd0 // XGETBV - MOVL AX, eax+8(FP) - MOVL DX, edx+12(FP) - RET - -// func asmRdtscpAsm() (eax, ebx, ecx, edx uint32) -TEXT ·asmRdtscpAsm(SB), 7, $0 - BYTE $0x0F; BYTE $0x01; BYTE $0xF9 // RDTSCP - MOVL AX, eax+0(FP) - MOVL BX, ebx+4(FP) - MOVL CX, ecx+8(FP) - MOVL DX, edx+12(FP) - RET diff --git a/vendor/github.com/klauspost/cpuid/detect_intel.go b/vendor/github.com/klauspost/cpuid/detect_intel.go deleted file mode 100644 index a5f04dd..0000000 --- a/vendor/github.com/klauspost/cpuid/detect_intel.go +++ /dev/null @@ -1,17 +0,0 @@ -// Copyright (c) 2015 Klaus Post, released under MIT License. See LICENSE file. - -// +build 386,!gccgo amd64,!gccgo - -package cpuid - -func asmCpuid(op uint32) (eax, ebx, ecx, edx uint32) -func asmCpuidex(op, op2 uint32) (eax, ebx, ecx, edx uint32) -func asmXgetbv(index uint32) (eax, edx uint32) -func asmRdtscpAsm() (eax, ebx, ecx, edx uint32) - -func initCPU() { - cpuid = asmCpuid - cpuidex = asmCpuidex - xgetbv = asmXgetbv - rdtscpAsm = asmRdtscpAsm -} diff --git a/vendor/github.com/klauspost/cpuid/detect_ref.go b/vendor/github.com/klauspost/cpuid/detect_ref.go deleted file mode 100644 index 909c5d9..0000000 --- a/vendor/github.com/klauspost/cpuid/detect_ref.go +++ /dev/null @@ -1,23 +0,0 @@ -// Copyright (c) 2015 Klaus Post, released under MIT License. See LICENSE file. - -// +build !amd64,!386 gccgo - -package cpuid - -func initCPU() { - cpuid = func(op uint32) (eax, ebx, ecx, edx uint32) { - return 0, 0, 0, 0 - } - - cpuidex = func(op, op2 uint32) (eax, ebx, ecx, edx uint32) { - return 0, 0, 0, 0 - } - - xgetbv = func(index uint32) (eax, edx uint32) { - return 0, 0 - } - - rdtscpAsm = func() (eax, ebx, ecx, edx uint32) { - return 0, 0, 0, 0 - } -} diff --git a/vendor/github.com/klauspost/cpuid/generate.go b/vendor/github.com/klauspost/cpuid/generate.go deleted file mode 100644 index 90e7a98..0000000 --- a/vendor/github.com/klauspost/cpuid/generate.go +++ /dev/null @@ -1,4 +0,0 @@ -package cpuid - -//go:generate go run private-gen.go -//go:generate gofmt -w ./private diff --git a/vendor/github.com/klauspost/cpuid/private-gen.go b/vendor/github.com/klauspost/cpuid/private-gen.go deleted file mode 100644 index 437333d..0000000 --- a/vendor/github.com/klauspost/cpuid/private-gen.go +++ /dev/null @@ -1,476 +0,0 @@ -// +build ignore - -package main - -import ( - "bytes" - "fmt" - "go/ast" - "go/parser" - "go/printer" - "go/token" - "io" - "io/ioutil" - "log" - "os" - "reflect" - "strings" - "unicode" - "unicode/utf8" -) - -var inFiles = []string{"cpuid.go", "cpuid_test.go"} -var copyFiles = []string{"cpuid_amd64.s", "cpuid_386.s", "detect_ref.go", "detect_intel.go"} -var fileSet = token.NewFileSet() -var reWrites = []rewrite{ - initRewrite("CPUInfo -> cpuInfo"), - initRewrite("Vendor -> vendor"), - initRewrite("Flags -> flags"), - initRewrite("Detect -> detect"), - initRewrite("CPU -> cpu"), -} -var excludeNames = map[string]bool{"string": true, "join": true, "trim": true, - // cpuid_test.go - "t": true, "println": true, "logf": true, "log": true, "fatalf": true, "fatal": true, -} - -var excludePrefixes = []string{"test", "benchmark"} - -func main() { - Package := "private" - parserMode := parser.ParseComments - exported := make(map[string]rewrite) - for _, file := range inFiles { - in, err := os.Open(file) - if err != nil { - log.Fatalf("opening input", err) - } - - src, err := ioutil.ReadAll(in) - if err != nil { - log.Fatalf("reading input", err) - } - - astfile, err := parser.ParseFile(fileSet, file, src, parserMode) - if err != nil { - log.Fatalf("parsing input", err) - } - - for _, rw := range reWrites { - astfile = rw(astfile) - } - - // Inspect the AST and print all identifiers and literals. - var startDecl token.Pos - var endDecl token.Pos - ast.Inspect(astfile, func(n ast.Node) bool { - var s string - switch x := n.(type) { - case *ast.Ident: - if x.IsExported() { - t := strings.ToLower(x.Name) - for _, pre := range excludePrefixes { - if strings.HasPrefix(t, pre) { - return true - } - } - if excludeNames[t] != true { - //if x.Pos() > startDecl && x.Pos() < endDecl { - exported[x.Name] = initRewrite(x.Name + " -> " + t) - } - } - - case *ast.GenDecl: - if x.Tok == token.CONST && x.Lparen > 0 { - startDecl = x.Lparen - endDecl = x.Rparen - // fmt.Printf("Decl:%s -> %s\n", fileSet.Position(startDecl), fileSet.Position(endDecl)) - } - } - if s != "" { - fmt.Printf("%s:\t%s\n", fileSet.Position(n.Pos()), s) - } - return true - }) - - for _, rw := range exported { - astfile = rw(astfile) - } - - var buf bytes.Buffer - - printer.Fprint(&buf, fileSet, astfile) - - // Remove package documentation and insert information - s := buf.String() - ind := strings.Index(buf.String(), "\npackage cpuid") - s = s[ind:] - s = "// Generated, DO NOT EDIT,\n" + - "// but copy it to your own project and rename the package.\n" + - "// See more at http://github.com/klauspost/cpuid\n" + - s - - outputName := Package + string(os.PathSeparator) + file - - err = ioutil.WriteFile(outputName, []byte(s), 0644) - if err != nil { - log.Fatalf("writing output: %s", err) - } - log.Println("Generated", outputName) - } - - for _, file := range copyFiles { - dst := "" - if strings.HasPrefix(file, "cpuid") { - dst = Package + string(os.PathSeparator) + file - } else { - dst = Package + string(os.PathSeparator) + "cpuid_" + file - } - err := copyFile(file, dst) - if err != nil { - log.Fatalf("copying file: %s", err) - } - log.Println("Copied", dst) - } -} - -// CopyFile copies a file from src to dst. If src and dst files exist, and are -// the same, then return success. Copy the file contents from src to dst. -func copyFile(src, dst string) (err error) { - sfi, err := os.Stat(src) - if err != nil { - return - } - if !sfi.Mode().IsRegular() { - // cannot copy non-regular files (e.g., directories, - // symlinks, devices, etc.) - return fmt.Errorf("CopyFile: non-regular source file %s (%q)", sfi.Name(), sfi.Mode().String()) - } - dfi, err := os.Stat(dst) - if err != nil { - if !os.IsNotExist(err) { - return - } - } else { - if !(dfi.Mode().IsRegular()) { - return fmt.Errorf("CopyFile: non-regular destination file %s (%q)", dfi.Name(), dfi.Mode().String()) - } - if os.SameFile(sfi, dfi) { - return - } - } - err = copyFileContents(src, dst) - return -} - -// copyFileContents copies the contents of the file named src to the file named -// by dst. The file will be created if it does not already exist. If the -// destination file exists, all it's contents will be replaced by the contents -// of the source file. -func copyFileContents(src, dst string) (err error) { - in, err := os.Open(src) - if err != nil { - return - } - defer in.Close() - out, err := os.Create(dst) - if err != nil { - return - } - defer func() { - cerr := out.Close() - if err == nil { - err = cerr - } - }() - if _, err = io.Copy(out, in); err != nil { - return - } - err = out.Sync() - return -} - -type rewrite func(*ast.File) *ast.File - -// Mostly copied from gofmt -func initRewrite(rewriteRule string) rewrite { - f := strings.Split(rewriteRule, "->") - if len(f) != 2 { - fmt.Fprintf(os.Stderr, "rewrite rule must be of the form 'pattern -> replacement'\n") - os.Exit(2) - } - pattern := parseExpr(f[0], "pattern") - replace := parseExpr(f[1], "replacement") - return func(p *ast.File) *ast.File { return rewriteFile(pattern, replace, p) } -} - -// parseExpr parses s as an expression. -// It might make sense to expand this to allow statement patterns, -// but there are problems with preserving formatting and also -// with what a wildcard for a statement looks like. -func parseExpr(s, what string) ast.Expr { - x, err := parser.ParseExpr(s) - if err != nil { - fmt.Fprintf(os.Stderr, "parsing %s %s at %s\n", what, s, err) - os.Exit(2) - } - return x -} - -// Keep this function for debugging. -/* -func dump(msg string, val reflect.Value) { - fmt.Printf("%s:\n", msg) - ast.Print(fileSet, val.Interface()) - fmt.Println() -} -*/ - -// rewriteFile applies the rewrite rule 'pattern -> replace' to an entire file. -func rewriteFile(pattern, replace ast.Expr, p *ast.File) *ast.File { - cmap := ast.NewCommentMap(fileSet, p, p.Comments) - m := make(map[string]reflect.Value) - pat := reflect.ValueOf(pattern) - repl := reflect.ValueOf(replace) - - var rewriteVal func(val reflect.Value) reflect.Value - rewriteVal = func(val reflect.Value) reflect.Value { - // don't bother if val is invalid to start with - if !val.IsValid() { - return reflect.Value{} - } - for k := range m { - delete(m, k) - } - val = apply(rewriteVal, val) - if match(m, pat, val) { - val = subst(m, repl, reflect.ValueOf(val.Interface().(ast.Node).Pos())) - } - return val - } - - r := apply(rewriteVal, reflect.ValueOf(p)).Interface().(*ast.File) - r.Comments = cmap.Filter(r).Comments() // recreate comments list - return r -} - -// set is a wrapper for x.Set(y); it protects the caller from panics if x cannot be changed to y. -func set(x, y reflect.Value) { - // don't bother if x cannot be set or y is invalid - if !x.CanSet() || !y.IsValid() { - return - } - defer func() { - if x := recover(); x != nil { - if s, ok := x.(string); ok && - (strings.Contains(s, "type mismatch") || strings.Contains(s, "not assignable")) { - // x cannot be set to y - ignore this rewrite - return - } - panic(x) - } - }() - x.Set(y) -} - -// Values/types for special cases. -var ( - objectPtrNil = reflect.ValueOf((*ast.Object)(nil)) - scopePtrNil = reflect.ValueOf((*ast.Scope)(nil)) - - identType = reflect.TypeOf((*ast.Ident)(nil)) - objectPtrType = reflect.TypeOf((*ast.Object)(nil)) - positionType = reflect.TypeOf(token.NoPos) - callExprType = reflect.TypeOf((*ast.CallExpr)(nil)) - scopePtrType = reflect.TypeOf((*ast.Scope)(nil)) -) - -// apply replaces each AST field x in val with f(x), returning val. -// To avoid extra conversions, f operates on the reflect.Value form. -func apply(f func(reflect.Value) reflect.Value, val reflect.Value) reflect.Value { - if !val.IsValid() { - return reflect.Value{} - } - - // *ast.Objects introduce cycles and are likely incorrect after - // rewrite; don't follow them but replace with nil instead - if val.Type() == objectPtrType { - return objectPtrNil - } - - // similarly for scopes: they are likely incorrect after a rewrite; - // replace them with nil - if val.Type() == scopePtrType { - return scopePtrNil - } - - switch v := reflect.Indirect(val); v.Kind() { - case reflect.Slice: - for i := 0; i < v.Len(); i++ { - e := v.Index(i) - set(e, f(e)) - } - case reflect.Struct: - for i := 0; i < v.NumField(); i++ { - e := v.Field(i) - set(e, f(e)) - } - case reflect.Interface: - e := v.Elem() - set(v, f(e)) - } - return val -} - -func isWildcard(s string) bool { - rune, size := utf8.DecodeRuneInString(s) - return size == len(s) && unicode.IsLower(rune) -} - -// match returns true if pattern matches val, -// recording wildcard submatches in m. -// If m == nil, match checks whether pattern == val. -func match(m map[string]reflect.Value, pattern, val reflect.Value) bool { - // Wildcard matches any expression. If it appears multiple - // times in the pattern, it must match the same expression - // each time. - if m != nil && pattern.IsValid() && pattern.Type() == identType { - name := pattern.Interface().(*ast.Ident).Name - if isWildcard(name) && val.IsValid() { - // wildcards only match valid (non-nil) expressions. - if _, ok := val.Interface().(ast.Expr); ok && !val.IsNil() { - if old, ok := m[name]; ok { - return match(nil, old, val) - } - m[name] = val - return true - } - } - } - - // Otherwise, pattern and val must match recursively. - if !pattern.IsValid() || !val.IsValid() { - return !pattern.IsValid() && !val.IsValid() - } - if pattern.Type() != val.Type() { - return false - } - - // Special cases. - switch pattern.Type() { - case identType: - // For identifiers, only the names need to match - // (and none of the other *ast.Object information). - // This is a common case, handle it all here instead - // of recursing down any further via reflection. - p := pattern.Interface().(*ast.Ident) - v := val.Interface().(*ast.Ident) - return p == nil && v == nil || p != nil && v != nil && p.Name == v.Name - case objectPtrType, positionType: - // object pointers and token positions always match - return true - case callExprType: - // For calls, the Ellipsis fields (token.Position) must - // match since that is how f(x) and f(x...) are different. - // Check them here but fall through for the remaining fields. - p := pattern.Interface().(*ast.CallExpr) - v := val.Interface().(*ast.CallExpr) - if p.Ellipsis.IsValid() != v.Ellipsis.IsValid() { - return false - } - } - - p := reflect.Indirect(pattern) - v := reflect.Indirect(val) - if !p.IsValid() || !v.IsValid() { - return !p.IsValid() && !v.IsValid() - } - - switch p.Kind() { - case reflect.Slice: - if p.Len() != v.Len() { - return false - } - for i := 0; i < p.Len(); i++ { - if !match(m, p.Index(i), v.Index(i)) { - return false - } - } - return true - - case reflect.Struct: - for i := 0; i < p.NumField(); i++ { - if !match(m, p.Field(i), v.Field(i)) { - return false - } - } - return true - - case reflect.Interface: - return match(m, p.Elem(), v.Elem()) - } - - // Handle token integers, etc. - return p.Interface() == v.Interface() -} - -// subst returns a copy of pattern with values from m substituted in place -// of wildcards and pos used as the position of tokens from the pattern. -// if m == nil, subst returns a copy of pattern and doesn't change the line -// number information. -func subst(m map[string]reflect.Value, pattern reflect.Value, pos reflect.Value) reflect.Value { - if !pattern.IsValid() { - return reflect.Value{} - } - - // Wildcard gets replaced with map value. - if m != nil && pattern.Type() == identType { - name := pattern.Interface().(*ast.Ident).Name - if isWildcard(name) { - if old, ok := m[name]; ok { - return subst(nil, old, reflect.Value{}) - } - } - } - - if pos.IsValid() && pattern.Type() == positionType { - // use new position only if old position was valid in the first place - if old := pattern.Interface().(token.Pos); !old.IsValid() { - return pattern - } - return pos - } - - // Otherwise copy. - switch p := pattern; p.Kind() { - case reflect.Slice: - v := reflect.MakeSlice(p.Type(), p.Len(), p.Len()) - for i := 0; i < p.Len(); i++ { - v.Index(i).Set(subst(m, p.Index(i), pos)) - } - return v - - case reflect.Struct: - v := reflect.New(p.Type()).Elem() - for i := 0; i < p.NumField(); i++ { - v.Field(i).Set(subst(m, p.Field(i), pos)) - } - return v - - case reflect.Ptr: - v := reflect.New(p.Type()).Elem() - if elem := p.Elem(); elem.IsValid() { - v.Set(subst(m, elem, pos).Addr()) - } - return v - - case reflect.Interface: - v := reflect.New(p.Type()).Elem() - if elem := p.Elem(); elem.IsValid() { - v.Set(subst(m, elem, pos)) - } - return v - } - - return pattern -} diff --git a/vendor/github.com/klauspost/reedsolomon/LICENSE b/vendor/github.com/klauspost/reedsolomon/LICENSE deleted file mode 100644 index a947e16..0000000 --- a/vendor/github.com/klauspost/reedsolomon/LICENSE +++ /dev/null @@ -1,23 +0,0 @@ -The MIT License (MIT) - -Copyright (c) 2015 Klaus Post -Copyright (c) 2015 Backblaze - -Permission is hereby granted, free of charge, to any person obtaining a copy -of this software and associated documentation files (the "Software"), to deal -in the Software without restriction, including without limitation the rights -to use, copy, modify, merge, publish, distribute, sublicense, and/or sell -copies of the Software, and to permit persons to whom the Software is -furnished to do so, subject to the following conditions: - -The above copyright notice and this permission notice shall be included in all -copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR -IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, -FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE -AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER -LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, -OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE -SOFTWARE. - diff --git a/vendor/github.com/klauspost/reedsolomon/README.md b/vendor/github.com/klauspost/reedsolomon/README.md deleted file mode 100644 index aceff05..0000000 --- a/vendor/github.com/klauspost/reedsolomon/README.md +++ /dev/null @@ -1,279 +0,0 @@ -# Reed-Solomon -[![GoDoc][1]][2] [![Build Status][3]][4] - -[1]: https://godoc.org/github.com/klauspost/reedsolomon?status.svg -[2]: https://godoc.org/github.com/klauspost/reedsolomon -[3]: https://travis-ci.org/klauspost/reedsolomon.svg?branch=master -[4]: https://travis-ci.org/klauspost/reedsolomon - -Reed-Solomon Erasure Coding in Go, with speeds exceeding 1GB/s/cpu core implemented in pure Go. - -This is a Go port of the [JavaReedSolomon](https://github.com/Backblaze/JavaReedSolomon) library released by [Backblaze](http://backblaze.com), with some additional optimizations. - -For an introduction on erasure coding, see the post on the [Backblaze blog](https://www.backblaze.com/blog/reed-solomon/). - -Package home: https://github.com/klauspost/reedsolomon - -Godoc: https://godoc.org/github.com/klauspost/reedsolomon - -# Installation -To get the package use the standard: -```bash -go get -u github.com/klauspost/reedsolomon -``` - -# Changes - -## November 18, 2017 - -Added [WithAutoGoroutines](https://godoc.org/github.com/klauspost/reedsolomon#WithAutoGoroutines) which will attempt to calculate the optimal number of goroutines to use based on your expected shard size and detected CPU. - -## October 1, 2017 - -* [Cauchy Matrix](https://godoc.org/github.com/klauspost/reedsolomon#WithCauchyMatrix) is now an option. Thanks to [templexxx](https://github.com/templexxx) for the basis of this. -* Default maximum number of [goroutines](https://godoc.org/github.com/klauspost/reedsolomon#WithMaxGoroutines) has been increased for better multi-core scaling. -* After several requests the Reconstruct and ReconstructData now slices of zero length but sufficient capacity to be used instead of allocating new memory. - -## August 26, 2017 - -* The [`Encoder()`](https://godoc.org/github.com/klauspost/reedsolomon#Encoder) now contains an `Update` function contributed by [chenzhongtao](https://github.com/chenzhongtao). -* [Frank Wessels](https://github.com/fwessels) kindly contributed ARM 64 bit assembly, which gives a huge performance boost on this platform. - -## July 20, 2017 - -`ReconstructData` added to [`Encoder`](https://godoc.org/github.com/klauspost/reedsolomon#Encoder) interface. This can cause compatibility issues if you implement your own Encoder. A simple workaround can be added: -```Go -func (e *YourEnc) ReconstructData(shards [][]byte) error { - return ReconstructData(shards) -} -``` - -You can of course also do your own implementation. The [`StreamEncoder`](https://godoc.org/github.com/klauspost/reedsolomon#StreamEncoder) handles this without modifying the interface. This is a good lesson on why returning interfaces is not a good design. - -# Usage - -This section assumes you know the basics of Reed-Solomon encoding. A good start is this [Backblaze blog post](https://www.backblaze.com/blog/reed-solomon/). - -This package performs the calculation of the parity sets. The usage is therefore relatively simple. - -First of all, you need to choose your distribution of data and parity shards. A 'good' distribution is very subjective, and will depend a lot on your usage scenario. A good starting point is above 5 and below 257 data shards (the maximum supported number), and the number of parity shards to be 2 or above, and below the number of data shards. - -To create an encoder with 10 data shards (where your data goes) and 3 parity shards (calculated): -```Go - enc, err := reedsolomon.New(10, 3) -``` -This encoder will work for all parity sets with this distribution of data and parity shards. The error will only be set if you specify 0 or negative values in any of the parameters, or if you specify more than 256 data shards. - -The you send and receive data is a simple slice of byte slices; `[][]byte`. In the example above, the top slice must have a length of 13. -```Go - data := make([][]byte, 13) -``` -You should then fill the 10 first slices with *equally sized* data, and create parity shards that will be populated with parity data. In this case we create the data in memory, but you could for instance also use [mmap](https://github.com/edsrzf/mmap-go) to map files. - -```Go - // Create all shards, size them at 50000 each - for i := range input { - data[i] := make([]byte, 50000) - } - - - // Fill some data into the data shards - for i, in := range data[:10] { - for j:= range in { - in[j] = byte((i+j)&0xff) - } - } -``` - -To populate the parity shards, you simply call `Encode()` with your data. -```Go - err = enc.Encode(data) -``` -The only cases where you should get an error is, if the data shards aren't of equal size. The last 3 shards now contain parity data. You can verify this by calling `Verify()`: - -```Go - ok, err = enc.Verify(data) -``` - -The final (and important) part is to be able to reconstruct missing shards. For this to work, you need to know which parts of your data is missing. The encoder *does not know which parts are invalid*, so if data corruption is a likely scenario, you need to implement a hash check for each shard. If a byte has changed in your set, and you don't know which it is, there is no way to reconstruct the data set. - -To indicate missing data, you set the shard to nil before calling `Reconstruct()`: - -```Go - // Delete two data shards - data[3] = nil - data[7] = nil - - // Reconstruct the missing shards - err := enc.Reconstruct(data) -``` -The missing data and parity shards will be recreated. If more than 3 shards are missing, the reconstruction will fail. - -If you are only interested in the data shards (for reading purposes) you can call `ReconstructData()`: - -```Go - // Delete two data shards - data[3] = nil - data[7] = nil - - // Reconstruct just the missing data shards - err := enc.ReconstructData(data) -``` - -So to sum up reconstruction: -* The number of data/parity shards must match the numbers used for encoding. -* The order of shards must be the same as used when encoding. -* You may only supply data you know is valid. -* Invalid shards should be set to nil. - -For complete examples of an encoder and decoder see the [examples folder](https://github.com/klauspost/reedsolomon/tree/master/examples). - -# Splitting/Joining Data - -You might have a large slice of data. To help you split this, there are some helper functions that can split and join a single byte slice. - -```Go - bigfile, _ := ioutil.Readfile("myfile.data") - - // Split the file - split, err := enc.Split(bigfile) -``` -This will split the file into the number of data shards set when creating the encoder and create empty parity shards. - -An important thing to note is that you have to *keep track of the exact input size*. If the size of the input isn't divisible by the number of data shards, extra zeros will be inserted in the last shard. - -To join a data set, use the `Join()` function, which will join the shards and write it to the `io.Writer` you supply: -```Go - // Join a data set and write it to io.Discard. - err = enc.Join(io.Discard, data, len(bigfile)) -``` - -# Streaming/Merging - -It might seem like a limitation that all data should be in memory, but an important property is that *as long as the number of data/parity shards are the same, you can merge/split data sets*, and they will remain valid as a separate set. - -```Go - // Split the data set of 50000 elements into two of 25000 - splitA := make([][]byte, 13) - splitB := make([][]byte, 13) - - // Merge into a 100000 element set - merged := make([][]byte, 13) - - for i := range data { - splitA[i] = data[i][:25000] - splitB[i] = data[i][25000:] - - // Concatenate it to itself - merged[i] = append(make([]byte, 0, len(data[i])*2), data[i]...) - merged[i] = append(merged[i], data[i]...) - } - - // Each part should still verify as ok. - ok, err := enc.Verify(splitA) - if ok && err == nil { - log.Println("splitA ok") - } - - ok, err = enc.Verify(splitB) - if ok && err == nil { - log.Println("splitB ok") - } - - ok, err = enc.Verify(merge) - if ok && err == nil { - log.Println("merge ok") - } -``` - -This means that if you have a data set that may not fit into memory, you can split processing into smaller blocks. For the best throughput, don't use too small blocks. - -This also means that you can divide big input up into smaller blocks, and do reconstruction on parts of your data. This doesn't give the same flexibility of a higher number of data shards, but it will be much more performant. - -# Streaming API - -There has been added support for a streaming API, to help perform fully streaming operations, which enables you to do the same operations, but on streams. To use the stream API, use [`NewStream`](https://godoc.org/github.com/klauspost/reedsolomon#NewStream) function to create the encoding/decoding interfaces. You can use [`NewStreamC`](https://godoc.org/github.com/klauspost/reedsolomon#NewStreamC) to ready an interface that reads/writes concurrently from the streams. - -Input is delivered as `[]io.Reader`, output as `[]io.Writer`, and functionality corresponds to the in-memory API. Each stream must supply the same amount of data, similar to how each slice must be similar size with the in-memory API. -If an error occurs in relation to a stream, a [`StreamReadError`](https://godoc.org/github.com/klauspost/reedsolomon#StreamReadError) or [`StreamWriteError`](https://godoc.org/github.com/klauspost/reedsolomon#StreamWriteError) will help you determine which stream was the offender. - -There is no buffering or timeouts/retry specified. If you want to add that, you need to add it to the Reader/Writer. - -For complete examples of a streaming encoder and decoder see the [examples folder](https://github.com/klauspost/reedsolomon/tree/master/examples). - -# Advanced Options - -You can modify internal options which affects how jobs are split between and processed by goroutines. - -To create options, use the WithXXX functions. You can supply options to `New`, `NewStream` and `NewStreamC`. If no Options are supplied, default options are used. - -Example of how to supply options: - - ```Go - enc, err := reedsolomon.New(10, 3, WithMaxGoroutines(25)) - ``` - - -# Performance -Performance depends mainly on the number of parity shards. In rough terms, doubling the number of parity shards will double the encoding time. - -Here are the throughput numbers with some different selections of data and parity shards. For reference each shard is 1MB random data, and 2 CPU cores are used for encoding. - -| Data | Parity | Parity | MB/s | SSSE3 MB/s | SSSE3 Speed | Rel. Speed | -|------|--------|--------|--------|-------------|-------------|------------| -| 5 | 2 | 40% | 576,11 | 2599,2 | 451% | 100,00% | -| 10 | 2 | 20% | 587,73 | 3100,28 | 528% | 102,02% | -| 10 | 4 | 40% | 298,38 | 2470,97 | 828% | 51,79% | -| 50 | 20 | 40% | 59,81 | 713,28 | 1193% | 10,38% | - -If `runtime.GOMAXPROCS()` is set to a value higher than 1, the encoder will use multiple goroutines to perform the calculations in `Verify`, `Encode` and `Reconstruct`. - -Example of performance scaling on Intel(R) Core(TM) i7-2600 CPU @ 3.40GHz - 4 physical cores, 8 logical cores. The example uses 10 blocks with 16MB data each and 4 parity blocks. - -| Threads | MB/s | Speed | -|---------|---------|-------| -| 1 | 1355,11 | 100% | -| 2 | 2339,78 | 172% | -| 4 | 3179,33 | 235% | -| 8 | 4346,18 | 321% | - -Benchmarking `Reconstruct()` followed by a `Verify()` (=`all`) versus just calling `ReconstructData()` (=`data`) gives the following result: -``` -benchmark all MB/s data MB/s speedup -BenchmarkReconstruct10x2x10000-8 2011.67 10530.10 5.23x -BenchmarkReconstruct50x5x50000-8 4585.41 14301.60 3.12x -BenchmarkReconstruct10x2x1M-8 8081.15 28216.41 3.49x -BenchmarkReconstruct5x2x1M-8 5780.07 28015.37 4.85x -BenchmarkReconstruct10x4x1M-8 4352.56 14367.61 3.30x -BenchmarkReconstruct50x20x1M-8 1364.35 4189.79 3.07x -BenchmarkReconstruct10x4x16M-8 1484.35 5779.53 3.89x -``` - -# Performance on ARM64 NEON - -By exploiting NEON instructions the performance for ARM has been accelerated. Below are the performance numbers for a single core on an ARM Cortex-A53 CPU @ 1.2GHz (Debian 8.0 Jessie running Go: 1.7.4): - -| Data | Parity | Parity | ARM64 Go MB/s | ARM64 NEON MB/s | NEON Speed | -|------|--------|--------|--------------:|----------------:|-----------:| -| 5 | 2 | 40% | 189 | 1304 | 588% | -| 10 | 2 | 20% | 188 | 1738 | 925% | -| 10 | 4 | 40% | 96 | 839 | 877% | - -# asm2plan9s - -[asm2plan9s](https://github.com/fwessels/asm2plan9s) is used for assembling the AVX2 instructions into their BYTE/WORD/LONG equivalents. - -# Links -* [Backblaze Open Sources Reed-Solomon Erasure Coding Source Code](https://www.backblaze.com/blog/reed-solomon/). -* [JavaReedSolomon](https://github.com/Backblaze/JavaReedSolomon). Compatible java library by Backblaze. -* [ocaml-reed-solomon-erasure](https://gitlab.com/darrenldl/ocaml-reed-solomon-erasure). Compatible OCaml implementation. -* [reedsolomon-c](https://github.com/jannson/reedsolomon-c). C version, compatible with output from this package. -* [Reed-Solomon Erasure Coding in Haskell](https://github.com/NicolasT/reedsolomon). Haskell port of the package with similar performance. -* [reed-solomon-erasure](https://github.com/darrenldl/reed-solomon-erasure). Compatible Rust implementation. -* [go-erasure](https://github.com/somethingnew2-0/go-erasure). A similar library using cgo, slower in my tests. -* [rsraid](https://github.com/goayame/rsraid). A similar library written in Go. Slower, but supports more shards. -* [Screaming Fast Galois Field Arithmetic](http://www.snia.org/sites/default/files2/SDC2013/presentations/NewThinking/EthanMiller_Screaming_Fast_Galois_Field%20Arithmetic_SIMD%20Instructions.pdf). Basis for SSE3 optimizations. - -# License - -This code, as the original [JavaReedSolomon](https://github.com/Backblaze/JavaReedSolomon) is published under an MIT license. See LICENSE file for more information. diff --git a/vendor/github.com/klauspost/reedsolomon/appveyor.yml b/vendor/github.com/klauspost/reedsolomon/appveyor.yml deleted file mode 100644 index 9bb067f..0000000 --- a/vendor/github.com/klauspost/reedsolomon/appveyor.yml +++ /dev/null @@ -1,20 +0,0 @@ -os: Visual Studio 2015 - -platform: x64 - -clone_folder: c:\gopath\src\github.com\klauspost\reedsolomon - -# environment variables -environment: - GOPATH: c:\gopath - -install: - - echo %PATH% - - echo %GOPATH% - - go version - - go env - - go get -d ./... - -build_script: - - go test -v -cpu=2 ./... - - go test -cpu=1,2,4 -short -race ./... diff --git a/vendor/github.com/klauspost/reedsolomon/galois.go b/vendor/github.com/klauspost/reedsolomon/galois.go deleted file mode 100644 index 2daf186..0000000 --- a/vendor/github.com/klauspost/reedsolomon/galois.go +++ /dev/null @@ -1,902 +0,0 @@ -/** - * 8-bit Galois Field - * Copyright 2015, Klaus Post - * Copyright 2015, Backblaze, Inc. All rights reserved. - */ - -package reedsolomon - -const ( - // The number of elements in the field. - fieldSize = 256 - - // The polynomial used to generate the logarithm table. - // - // There are a number of polynomials that work to generate - // a Galois field of 256 elements. The choice is arbitrary, - // and we just use the first one. - // - // The possibilities are: 29, 43, 45, 77, 95, 99, 101, 105, - //* 113, 135, 141, 169, 195, 207, 231, and 245. - generatingPolynomial = 29 -) - -var logTable = [fieldSize]byte{ - 0, 0, 1, 25, 2, 50, 26, 198, - 3, 223, 51, 238, 27, 104, 199, 75, - 4, 100, 224, 14, 52, 141, 239, 129, - 28, 193, 105, 248, 200, 8, 76, 113, - 5, 138, 101, 47, 225, 36, 15, 33, - 53, 147, 142, 218, 240, 18, 130, 69, - 29, 181, 194, 125, 106, 39, 249, 185, - 201, 154, 9, 120, 77, 228, 114, 166, - 6, 191, 139, 98, 102, 221, 48, 253, - 226, 152, 37, 179, 16, 145, 34, 136, - 54, 208, 148, 206, 143, 150, 219, 189, - 241, 210, 19, 92, 131, 56, 70, 64, - 30, 66, 182, 163, 195, 72, 126, 110, - 107, 58, 40, 84, 250, 133, 186, 61, - 202, 94, 155, 159, 10, 21, 121, 43, - 78, 212, 229, 172, 115, 243, 167, 87, - 7, 112, 192, 247, 140, 128, 99, 13, - 103, 74, 222, 237, 49, 197, 254, 24, - 227, 165, 153, 119, 38, 184, 180, 124, - 17, 68, 146, 217, 35, 32, 137, 46, - 55, 63, 209, 91, 149, 188, 207, 205, - 144, 135, 151, 178, 220, 252, 190, 97, - 242, 86, 211, 171, 20, 42, 93, 158, - 132, 60, 57, 83, 71, 109, 65, 162, - 31, 45, 67, 216, 183, 123, 164, 118, - 196, 23, 73, 236, 127, 12, 111, 246, - 108, 161, 59, 82, 41, 157, 85, 170, - 251, 96, 134, 177, 187, 204, 62, 90, - 203, 89, 95, 176, 156, 169, 160, 81, - 11, 245, 22, 235, 122, 117, 44, 215, - 79, 174, 213, 233, 230, 231, 173, 232, - 116, 214, 244, 234, 168, 80, 88, 175, -} - -/** - * Inverse of the logarithm table. Maps integer logarithms - * to members of the field. There is no entry for 255 - * because the highest log is 254. - * - * This table was generated by `go run gentables.go` - */ -var expTable = []byte{0x1, 0x2, 0x4, 0x8, 0x10, 0x20, 0x40, 0x80, 0x1d, 0x3a, 0x74, 0xe8, 0xcd, 0x87, 0x13, 0x26, 0x4c, 0x98, 0x2d, 0x5a, 0xb4, 0x75, 0xea, 0xc9, 0x8f, 0x3, 0x6, 0xc, 0x18, 0x30, 0x60, 0xc0, 0x9d, 0x27, 0x4e, 0x9c, 0x25, 0x4a, 0x94, 0x35, 0x6a, 0xd4, 0xb5, 0x77, 0xee, 0xc1, 0x9f, 0x23, 0x46, 0x8c, 0x5, 0xa, 0x14, 0x28, 0x50, 0xa0, 0x5d, 0xba, 0x69, 0xd2, 0xb9, 0x6f, 0xde, 0xa1, 0x5f, 0xbe, 0x61, 0xc2, 0x99, 0x2f, 0x5e, 0xbc, 0x65, 0xca, 0x89, 0xf, 0x1e, 0x3c, 0x78, 0xf0, 0xfd, 0xe7, 0xd3, 0xbb, 0x6b, 0xd6, 0xb1, 0x7f, 0xfe, 0xe1, 0xdf, 0xa3, 0x5b, 0xb6, 0x71, 0xe2, 0xd9, 0xaf, 0x43, 0x86, 0x11, 0x22, 0x44, 0x88, 0xd, 0x1a, 0x34, 0x68, 0xd0, 0xbd, 0x67, 0xce, 0x81, 0x1f, 0x3e, 0x7c, 0xf8, 0xed, 0xc7, 0x93, 0x3b, 0x76, 0xec, 0xc5, 0x97, 0x33, 0x66, 0xcc, 0x85, 0x17, 0x2e, 0x5c, 0xb8, 0x6d, 0xda, 0xa9, 0x4f, 0x9e, 0x21, 0x42, 0x84, 0x15, 0x2a, 0x54, 0xa8, 0x4d, 0x9a, 0x29, 0x52, 0xa4, 0x55, 0xaa, 0x49, 0x92, 0x39, 0x72, 0xe4, 0xd5, 0xb7, 0x73, 0xe6, 0xd1, 0xbf, 0x63, 0xc6, 0x91, 0x3f, 0x7e, 0xfc, 0xe5, 0xd7, 0xb3, 0x7b, 0xf6, 0xf1, 0xff, 0xe3, 0xdb, 0xab, 0x4b, 0x96, 0x31, 0x62, 0xc4, 0x95, 0x37, 0x6e, 0xdc, 0xa5, 0x57, 0xae, 0x41, 0x82, 0x19, 0x32, 0x64, 0xc8, 0x8d, 0x7, 0xe, 0x1c, 0x38, 0x70, 0xe0, 0xdd, 0xa7, 0x53, 0xa6, 0x51, 0xa2, 0x59, 0xb2, 0x79, 0xf2, 0xf9, 0xef, 0xc3, 0x9b, 0x2b, 0x56, 0xac, 0x45, 0x8a, 0x9, 0x12, 0x24, 0x48, 0x90, 0x3d, 0x7a, 0xf4, 0xf5, 0xf7, 0xf3, 0xfb, 0xeb, 0xcb, 0x8b, 0xb, 0x16, 0x2c, 0x58, 0xb0, 0x7d, 0xfa, 0xe9, 0xcf, 0x83, 0x1b, 0x36, 0x6c, 0xd8, 0xad, 0x47, 0x8e, 0x1, 0x2, 0x4, 0x8, 0x10, 0x20, 0x40, 0x80, 0x1d, 0x3a, 0x74, 0xe8, 0xcd, 0x87, 0x13, 0x26, 0x4c, 0x98, 0x2d, 0x5a, 0xb4, 0x75, 0xea, 0xc9, 0x8f, 0x3, 0x6, 0xc, 0x18, 0x30, 0x60, 0xc0, 0x9d, 0x27, 0x4e, 0x9c, 0x25, 0x4a, 0x94, 0x35, 0x6a, 0xd4, 0xb5, 0x77, 0xee, 0xc1, 0x9f, 0x23, 0x46, 0x8c, 0x5, 0xa, 0x14, 0x28, 0x50, 0xa0, 0x5d, 0xba, 0x69, 0xd2, 0xb9, 0x6f, 0xde, 0xa1, 0x5f, 0xbe, 0x61, 0xc2, 0x99, 0x2f, 0x5e, 0xbc, 0x65, 0xca, 0x89, 0xf, 0x1e, 0x3c, 0x78, 0xf0, 0xfd, 0xe7, 0xd3, 0xbb, 0x6b, 0xd6, 0xb1, 0x7f, 0xfe, 0xe1, 0xdf, 0xa3, 0x5b, 0xb6, 0x71, 0xe2, 0xd9, 0xaf, 0x43, 0x86, 0x11, 0x22, 0x44, 0x88, 0xd, 0x1a, 0x34, 0x68, 0xd0, 0xbd, 0x67, 0xce, 0x81, 0x1f, 0x3e, 0x7c, 0xf8, 0xed, 0xc7, 0x93, 0x3b, 0x76, 0xec, 0xc5, 0x97, 0x33, 0x66, 0xcc, 0x85, 0x17, 0x2e, 0x5c, 0xb8, 0x6d, 0xda, 0xa9, 0x4f, 0x9e, 0x21, 0x42, 0x84, 0x15, 0x2a, 0x54, 0xa8, 0x4d, 0x9a, 0x29, 0x52, 0xa4, 0x55, 0xaa, 0x49, 0x92, 0x39, 0x72, 0xe4, 0xd5, 0xb7, 0x73, 0xe6, 0xd1, 0xbf, 0x63, 0xc6, 0x91, 0x3f, 0x7e, 0xfc, 0xe5, 0xd7, 0xb3, 0x7b, 0xf6, 0xf1, 0xff, 0xe3, 0xdb, 0xab, 0x4b, 0x96, 0x31, 0x62, 0xc4, 0x95, 0x37, 0x6e, 0xdc, 0xa5, 0x57, 0xae, 0x41, 0x82, 0x19, 0x32, 0x64, 0xc8, 0x8d, 0x7, 0xe, 0x1c, 0x38, 0x70, 0xe0, 0xdd, 0xa7, 0x53, 0xa6, 0x51, 0xa2, 0x59, 0xb2, 0x79, 0xf2, 0xf9, 0xef, 0xc3, 0x9b, 0x2b, 0x56, 0xac, 0x45, 0x8a, 0x9, 0x12, 0x24, 0x48, 0x90, 0x3d, 0x7a, 0xf4, 0xf5, 0xf7, 0xf3, 0xfb, 0xeb, 0xcb, 0x8b, 0xb, 0x16, 0x2c, 0x58, 0xb0, 0x7d, 0xfa, 0xe9, 0xcf, 0x83, 0x1b, 0x36, 0x6c, 0xd8, 0xad, 0x47, 0x8e} - -func galAdd(a, b byte) byte { - return a ^ b -} - -func galSub(a, b byte) byte { - return a ^ b -} - -// Table from https://github.com/templexxx/reedsolomon -var invTable = [256]byte{0x0, 0x1, 0x8e, 0xf4, 0x47, 0xa7, 0x7a, 0xba, 0xad, 0x9d, 0xdd, 0x98, 0x3d, 0xaa, 0x5d, 0x96, 0xd8, 0x72, 0xc0, 0x58, 0xe0, 0x3e, 0x4c, 0x66, 0x90, 0xde, 0x55, 0x80, 0xa0, 0x83, 0x4b, 0x2a, 0x6c, 0xed, 0x39, 0x51, 0x60, 0x56, 0x2c, 0x8a, 0x70, 0xd0, 0x1f, 0x4a, 0x26, 0x8b, 0x33, 0x6e, 0x48, 0x89, 0x6f, 0x2e, 0xa4, 0xc3, 0x40, 0x5e, 0x50, 0x22, 0xcf, 0xa9, 0xab, 0xc, 0x15, 0xe1, 0x36, 0x5f, 0xf8, 0xd5, 0x92, 0x4e, 0xa6, 0x4, 0x30, 0x88, 0x2b, 0x1e, 0x16, 0x67, 0x45, 0x93, 0x38, 0x23, 0x68, 0x8c, 0x81, 0x1a, 0x25, 0x61, 0x13, 0xc1, 0xcb, 0x63, 0x97, 0xe, 0x37, 0x41, 0x24, 0x57, 0xca, 0x5b, 0xb9, 0xc4, 0x17, 0x4d, 0x52, 0x8d, 0xef, 0xb3, 0x20, 0xec, 0x2f, 0x32, 0x28, 0xd1, 0x11, 0xd9, 0xe9, 0xfb, 0xda, 0x79, 0xdb, 0x77, 0x6, 0xbb, 0x84, 0xcd, 0xfe, 0xfc, 0x1b, 0x54, 0xa1, 0x1d, 0x7c, 0xcc, 0xe4, 0xb0, 0x49, 0x31, 0x27, 0x2d, 0x53, 0x69, 0x2, 0xf5, 0x18, 0xdf, 0x44, 0x4f, 0x9b, 0xbc, 0xf, 0x5c, 0xb, 0xdc, 0xbd, 0x94, 0xac, 0x9, 0xc7, 0xa2, 0x1c, 0x82, 0x9f, 0xc6, 0x34, 0xc2, 0x46, 0x5, 0xce, 0x3b, 0xd, 0x3c, 0x9c, 0x8, 0xbe, 0xb7, 0x87, 0xe5, 0xee, 0x6b, 0xeb, 0xf2, 0xbf, 0xaf, 0xc5, 0x64, 0x7, 0x7b, 0x95, 0x9a, 0xae, 0xb6, 0x12, 0x59, 0xa5, 0x35, 0x65, 0xb8, 0xa3, 0x9e, 0xd2, 0xf7, 0x62, 0x5a, 0x85, 0x7d, 0xa8, 0x3a, 0x29, 0x71, 0xc8, 0xf6, 0xf9, 0x43, 0xd7, 0xd6, 0x10, 0x73, 0x76, 0x78, 0x99, 0xa, 0x19, 0x91, 0x14, 0x3f, 0xe6, 0xf0, 0x86, 0xb1, 0xe2, 0xf1, 0xfa, 0x74, 0xf3, 0xb4, 0x6d, 0x21, 0xb2, 0x6a, 0xe3, 0xe7, 0xb5, 0xea, 0x3, 0x8f, 0xd3, 0xc9, 0x42, 0xd4, 0xe8, 0x75, 0x7f, 0xff, 0x7e, 0xfd} - -var mulTable = [256][256]uint8{[256]uint8{0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0}, - {0x0, 0x1, 0x2, 0x3, 0x4, 0x5, 0x6, 0x7, 0x8, 0x9, 0xa, 0xb, 0xc, 0xd, 0xe, 0xf, 0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17, 0x18, 0x19, 0x1a, 0x1b, 0x1c, 0x1d, 0x1e, 0x1f, 0x20, 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27, 0x28, 0x29, 0x2a, 0x2b, 0x2c, 0x2d, 0x2e, 0x2f, 0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36, 0x37, 0x38, 0x39, 0x3a, 0x3b, 0x3c, 0x3d, 0x3e, 0x3f, 0x40, 0x41, 0x42, 0x43, 0x44, 0x45, 0x46, 0x47, 0x48, 0x49, 0x4a, 0x4b, 0x4c, 0x4d, 0x4e, 0x4f, 0x50, 0x51, 0x52, 0x53, 0x54, 0x55, 0x56, 0x57, 0x58, 0x59, 0x5a, 0x5b, 0x5c, 0x5d, 0x5e, 0x5f, 0x60, 0x61, 0x62, 0x63, 0x64, 0x65, 0x66, 0x67, 0x68, 0x69, 0x6a, 0x6b, 0x6c, 0x6d, 0x6e, 0x6f, 0x70, 0x71, 0x72, 0x73, 0x74, 0x75, 0x76, 0x77, 0x78, 0x79, 0x7a, 0x7b, 0x7c, 0x7d, 0x7e, 0x7f, 0x80, 0x81, 0x82, 0x83, 0x84, 0x85, 0x86, 0x87, 0x88, 0x89, 0x8a, 0x8b, 0x8c, 0x8d, 0x8e, 0x8f, 0x90, 0x91, 0x92, 0x93, 0x94, 0x95, 0x96, 0x97, 0x98, 0x99, 0x9a, 0x9b, 0x9c, 0x9d, 0x9e, 0x9f, 0xa0, 0xa1, 0xa2, 0xa3, 0xa4, 0xa5, 0xa6, 0xa7, 0xa8, 0xa9, 0xaa, 0xab, 0xac, 0xad, 0xae, 0xaf, 0xb0, 0xb1, 0xb2, 0xb3, 0xb4, 0xb5, 0xb6, 0xb7, 0xb8, 0xb9, 0xba, 0xbb, 0xbc, 0xbd, 0xbe, 0xbf, 0xc0, 0xc1, 0xc2, 0xc3, 0xc4, 0xc5, 0xc6, 0xc7, 0xc8, 0xc9, 0xca, 0xcb, 0xcc, 0xcd, 0xce, 0xcf, 0xd0, 0xd1, 0xd2, 0xd3, 0xd4, 0xd5, 0xd6, 0xd7, 0xd8, 0xd9, 0xda, 0xdb, 0xdc, 0xdd, 0xde, 0xdf, 0xe0, 0xe1, 0xe2, 0xe3, 0xe4, 0xe5, 0xe6, 0xe7, 0xe8, 0xe9, 0xea, 0xeb, 0xec, 0xed, 0xee, 0xef, 0xf0, 0xf1, 0xf2, 0xf3, 0xf4, 0xf5, 0xf6, 0xf7, 0xf8, 0xf9, 0xfa, 0xfb, 0xfc, 0xfd, 0xfe, 0xff}, - {0x0, 0x2, 0x4, 0x6, 0x8, 0xa, 0xc, 0xe, 0x10, 0x12, 0x14, 0x16, 0x18, 0x1a, 0x1c, 0x1e, 0x20, 0x22, 0x24, 0x26, 0x28, 0x2a, 0x2c, 0x2e, 0x30, 0x32, 0x34, 0x36, 0x38, 0x3a, 0x3c, 0x3e, 0x40, 0x42, 0x44, 0x46, 0x48, 0x4a, 0x4c, 0x4e, 0x50, 0x52, 0x54, 0x56, 0x58, 0x5a, 0x5c, 0x5e, 0x60, 0x62, 0x64, 0x66, 0x68, 0x6a, 0x6c, 0x6e, 0x70, 0x72, 0x74, 0x76, 0x78, 0x7a, 0x7c, 0x7e, 0x80, 0x82, 0x84, 0x86, 0x88, 0x8a, 0x8c, 0x8e, 0x90, 0x92, 0x94, 0x96, 0x98, 0x9a, 0x9c, 0x9e, 0xa0, 0xa2, 0xa4, 0xa6, 0xa8, 0xaa, 0xac, 0xae, 0xb0, 0xb2, 0xb4, 0xb6, 0xb8, 0xba, 0xbc, 0xbe, 0xc0, 0xc2, 0xc4, 0xc6, 0xc8, 0xca, 0xcc, 0xce, 0xd0, 0xd2, 0xd4, 0xd6, 0xd8, 0xda, 0xdc, 0xde, 0xe0, 0xe2, 0xe4, 0xe6, 0xe8, 0xea, 0xec, 0xee, 0xf0, 0xf2, 0xf4, 0xf6, 0xf8, 0xfa, 0xfc, 0xfe, 0x1d, 0x1f, 0x19, 0x1b, 0x15, 0x17, 0x11, 0x13, 0xd, 0xf, 0x9, 0xb, 0x5, 0x7, 0x1, 0x3, 0x3d, 0x3f, 0x39, 0x3b, 0x35, 0x37, 0x31, 0x33, 0x2d, 0x2f, 0x29, 0x2b, 0x25, 0x27, 0x21, 0x23, 0x5d, 0x5f, 0x59, 0x5b, 0x55, 0x57, 0x51, 0x53, 0x4d, 0x4f, 0x49, 0x4b, 0x45, 0x47, 0x41, 0x43, 0x7d, 0x7f, 0x79, 0x7b, 0x75, 0x77, 0x71, 0x73, 0x6d, 0x6f, 0x69, 0x6b, 0x65, 0x67, 0x61, 0x63, 0x9d, 0x9f, 0x99, 0x9b, 0x95, 0x97, 0x91, 0x93, 0x8d, 0x8f, 0x89, 0x8b, 0x85, 0x87, 0x81, 0x83, 0xbd, 0xbf, 0xb9, 0xbb, 0xb5, 0xb7, 0xb1, 0xb3, 0xad, 0xaf, 0xa9, 0xab, 0xa5, 0xa7, 0xa1, 0xa3, 0xdd, 0xdf, 0xd9, 0xdb, 0xd5, 0xd7, 0xd1, 0xd3, 0xcd, 0xcf, 0xc9, 0xcb, 0xc5, 0xc7, 0xc1, 0xc3, 0xfd, 0xff, 0xf9, 0xfb, 0xf5, 0xf7, 0xf1, 0xf3, 0xed, 0xef, 0xe9, 0xeb, 0xe5, 0xe7, 0xe1, 0xe3}, - {0x0, 0x3, 0x6, 0x5, 0xc, 0xf, 0xa, 0x9, 0x18, 0x1b, 0x1e, 0x1d, 0x14, 0x17, 0x12, 0x11, 0x30, 0x33, 0x36, 0x35, 0x3c, 0x3f, 0x3a, 0x39, 0x28, 0x2b, 0x2e, 0x2d, 0x24, 0x27, 0x22, 0x21, 0x60, 0x63, 0x66, 0x65, 0x6c, 0x6f, 0x6a, 0x69, 0x78, 0x7b, 0x7e, 0x7d, 0x74, 0x77, 0x72, 0x71, 0x50, 0x53, 0x56, 0x55, 0x5c, 0x5f, 0x5a, 0x59, 0x48, 0x4b, 0x4e, 0x4d, 0x44, 0x47, 0x42, 0x41, 0xc0, 0xc3, 0xc6, 0xc5, 0xcc, 0xcf, 0xca, 0xc9, 0xd8, 0xdb, 0xde, 0xdd, 0xd4, 0xd7, 0xd2, 0xd1, 0xf0, 0xf3, 0xf6, 0xf5, 0xfc, 0xff, 0xfa, 0xf9, 0xe8, 0xeb, 0xee, 0xed, 0xe4, 0xe7, 0xe2, 0xe1, 0xa0, 0xa3, 0xa6, 0xa5, 0xac, 0xaf, 0xaa, 0xa9, 0xb8, 0xbb, 0xbe, 0xbd, 0xb4, 0xb7, 0xb2, 0xb1, 0x90, 0x93, 0x96, 0x95, 0x9c, 0x9f, 0x9a, 0x99, 0x88, 0x8b, 0x8e, 0x8d, 0x84, 0x87, 0x82, 0x81, 0x9d, 0x9e, 0x9b, 0x98, 0x91, 0x92, 0x97, 0x94, 0x85, 0x86, 0x83, 0x80, 0x89, 0x8a, 0x8f, 0x8c, 0xad, 0xae, 0xab, 0xa8, 0xa1, 0xa2, 0xa7, 0xa4, 0xb5, 0xb6, 0xb3, 0xb0, 0xb9, 0xba, 0xbf, 0xbc, 0xfd, 0xfe, 0xfb, 0xf8, 0xf1, 0xf2, 0xf7, 0xf4, 0xe5, 0xe6, 0xe3, 0xe0, 0xe9, 0xea, 0xef, 0xec, 0xcd, 0xce, 0xcb, 0xc8, 0xc1, 0xc2, 0xc7, 0xc4, 0xd5, 0xd6, 0xd3, 0xd0, 0xd9, 0xda, 0xdf, 0xdc, 0x5d, 0x5e, 0x5b, 0x58, 0x51, 0x52, 0x57, 0x54, 0x45, 0x46, 0x43, 0x40, 0x49, 0x4a, 0x4f, 0x4c, 0x6d, 0x6e, 0x6b, 0x68, 0x61, 0x62, 0x67, 0x64, 0x75, 0x76, 0x73, 0x70, 0x79, 0x7a, 0x7f, 0x7c, 0x3d, 0x3e, 0x3b, 0x38, 0x31, 0x32, 0x37, 0x34, 0x25, 0x26, 0x23, 0x20, 0x29, 0x2a, 0x2f, 0x2c, 0xd, 0xe, 0xb, 0x8, 0x1, 0x2, 0x7, 0x4, 0x15, 0x16, 0x13, 0x10, 0x19, 0x1a, 0x1f, 0x1c}, - 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-var mulTableLow = [256][16]uint8{{0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0}, - {0x0, 0x1, 0x2, 0x3, 0x4, 0x5, 0x6, 0x7, 0x8, 0x9, 0xa, 0xb, 0xc, 0xd, 0xe, 0xf}, - {0x0, 0x2, 0x4, 0x6, 0x8, 0xa, 0xc, 0xe, 0x10, 0x12, 0x14, 0x16, 0x18, 0x1a, 0x1c, 0x1e}, - {0x0, 0x3, 0x6, 0x5, 0xc, 0xf, 0xa, 0x9, 0x18, 0x1b, 0x1e, 0x1d, 0x14, 0x17, 0x12, 0x11}, - {0x0, 0x4, 0x8, 0xc, 0x10, 0x14, 0x18, 0x1c, 0x20, 0x24, 0x28, 0x2c, 0x30, 0x34, 0x38, 0x3c}, - {0x0, 0x5, 0xa, 0xf, 0x14, 0x11, 0x1e, 0x1b, 0x28, 0x2d, 0x22, 0x27, 0x3c, 0x39, 0x36, 0x33}, - {0x0, 0x6, 0xc, 0xa, 0x18, 0x1e, 0x14, 0x12, 0x30, 0x36, 0x3c, 0x3a, 0x28, 0x2e, 0x24, 0x22}, - {0x0, 0x7, 0xe, 0x9, 0x1c, 0x1b, 0x12, 0x15, 0x38, 0x3f, 0x36, 0x31, 0x24, 0x23, 0x2a, 0x2d}, - {0x0, 0x8, 0x10, 0x18, 0x20, 0x28, 0x30, 0x38, 0x40, 0x48, 0x50, 0x58, 0x60, 0x68, 0x70, 0x78}, - {0x0, 0x9, 0x12, 0x1b, 0x24, 0x2d, 0x36, 0x3f, 0x48, 0x41, 0x5a, 0x53, 0x6c, 0x65, 0x7e, 0x77}, - {0x0, 0xa, 0x14, 0x1e, 0x28, 0x22, 0x3c, 0x36, 0x50, 0x5a, 0x44, 0x4e, 0x78, 0x72, 0x6c, 0x66}, - {0x0, 0xb, 0x16, 0x1d, 0x2c, 0x27, 0x3a, 0x31, 0x58, 0x53, 0x4e, 0x45, 0x74, 0x7f, 0x62, 0x69}, - {0x0, 0xc, 0x18, 0x14, 0x30, 0x3c, 0x28, 0x24, 0x60, 0x6c, 0x78, 0x74, 0x50, 0x5c, 0x48, 0x44}, - {0x0, 0xd, 0x1a, 0x17, 0x34, 0x39, 0x2e, 0x23, 0x68, 0x65, 0x72, 0x7f, 0x5c, 0x51, 0x46, 0x4b}, - {0x0, 0xe, 0x1c, 0x12, 0x38, 0x36, 0x24, 0x2a, 0x70, 0x7e, 0x6c, 0x62, 0x48, 0x46, 0x54, 0x5a}, - {0x0, 0xf, 0x1e, 0x11, 0x3c, 0x33, 0x22, 0x2d, 0x78, 0x77, 0x66, 0x69, 0x44, 0x4b, 0x5a, 0x55}, - {0x0, 0x10, 0x20, 0x30, 0x40, 0x50, 0x60, 0x70, 0x80, 0x90, 0xa0, 0xb0, 0xc0, 0xd0, 0xe0, 0xf0}, - {0x0, 0x11, 0x22, 0x33, 0x44, 0x55, 0x66, 0x77, 0x88, 0x99, 0xaa, 0xbb, 0xcc, 0xdd, 0xee, 0xff}, - {0x0, 0x12, 0x24, 0x36, 0x48, 0x5a, 0x6c, 0x7e, 0x90, 0x82, 0xb4, 0xa6, 0xd8, 0xca, 0xfc, 0xee}, - {0x0, 0x13, 0x26, 0x35, 0x4c, 0x5f, 0x6a, 0x79, 0x98, 0x8b, 0xbe, 0xad, 0xd4, 0xc7, 0xf2, 0xe1}, - {0x0, 0x14, 0x28, 0x3c, 0x50, 0x44, 0x78, 0x6c, 0xa0, 0xb4, 0x88, 0x9c, 0xf0, 0xe4, 0xd8, 0xcc}, - {0x0, 0x15, 0x2a, 0x3f, 0x54, 0x41, 0x7e, 0x6b, 0xa8, 0xbd, 0x82, 0x97, 0xfc, 0xe9, 0xd6, 0xc3}, - {0x0, 0x16, 0x2c, 0x3a, 0x58, 0x4e, 0x74, 0x62, 0xb0, 0xa6, 0x9c, 0x8a, 0xe8, 0xfe, 0xc4, 0xd2}, - {0x0, 0x17, 0x2e, 0x39, 0x5c, 0x4b, 0x72, 0x65, 0xb8, 0xaf, 0x96, 0x81, 0xe4, 0xf3, 0xca, 0xdd}, - {0x0, 0x18, 0x30, 0x28, 0x60, 0x78, 0x50, 0x48, 0xc0, 0xd8, 0xf0, 0xe8, 0xa0, 0xb8, 0x90, 0x88}, - {0x0, 0x19, 0x32, 0x2b, 0x64, 0x7d, 0x56, 0x4f, 0xc8, 0xd1, 0xfa, 0xe3, 0xac, 0xb5, 0x9e, 0x87}, - {0x0, 0x1a, 0x34, 0x2e, 0x68, 0x72, 0x5c, 0x46, 0xd0, 0xca, 0xe4, 0xfe, 0xb8, 0xa2, 0x8c, 0x96}, - {0x0, 0x1b, 0x36, 0x2d, 0x6c, 0x77, 0x5a, 0x41, 0xd8, 0xc3, 0xee, 0xf5, 0xb4, 0xaf, 0x82, 0x99}, - {0x0, 0x1c, 0x38, 0x24, 0x70, 0x6c, 0x48, 0x54, 0xe0, 0xfc, 0xd8, 0xc4, 0x90, 0x8c, 0xa8, 0xb4}, - {0x0, 0x1d, 0x3a, 0x27, 0x74, 0x69, 0x4e, 0x53, 0xe8, 0xf5, 0xd2, 0xcf, 0x9c, 0x81, 0xa6, 0xbb}, - {0x0, 0x1e, 0x3c, 0x22, 0x78, 0x66, 0x44, 0x5a, 0xf0, 0xee, 0xcc, 0xd2, 0x88, 0x96, 0xb4, 0xaa}, - {0x0, 0x1f, 0x3e, 0x21, 0x7c, 0x63, 0x42, 0x5d, 0xf8, 0xe7, 0xc6, 0xd9, 0x84, 0x9b, 0xba, 0xa5}, - {0x0, 0x20, 0x40, 0x60, 0x80, 0xa0, 0xc0, 0xe0, 0x1d, 0x3d, 0x5d, 0x7d, 0x9d, 0xbd, 0xdd, 0xfd}, - {0x0, 0x21, 0x42, 0x63, 0x84, 0xa5, 0xc6, 0xe7, 0x15, 0x34, 0x57, 0x76, 0x91, 0xb0, 0xd3, 0xf2}, - {0x0, 0x22, 0x44, 0x66, 0x88, 0xaa, 0xcc, 0xee, 0xd, 0x2f, 0x49, 0x6b, 0x85, 0xa7, 0xc1, 0xe3}, - {0x0, 0x23, 0x46, 0x65, 0x8c, 0xaf, 0xca, 0xe9, 0x5, 0x26, 0x43, 0x60, 0x89, 0xaa, 0xcf, 0xec}, - {0x0, 0x24, 0x48, 0x6c, 0x90, 0xb4, 0xd8, 0xfc, 0x3d, 0x19, 0x75, 0x51, 0xad, 0x89, 0xe5, 0xc1}, - {0x0, 0x25, 0x4a, 0x6f, 0x94, 0xb1, 0xde, 0xfb, 0x35, 0x10, 0x7f, 0x5a, 0xa1, 0x84, 0xeb, 0xce}, - {0x0, 0x26, 0x4c, 0x6a, 0x98, 0xbe, 0xd4, 0xf2, 0x2d, 0xb, 0x61, 0x47, 0xb5, 0x93, 0xf9, 0xdf}, - {0x0, 0x27, 0x4e, 0x69, 0x9c, 0xbb, 0xd2, 0xf5, 0x25, 0x2, 0x6b, 0x4c, 0xb9, 0x9e, 0xf7, 0xd0}, - {0x0, 0x28, 0x50, 0x78, 0xa0, 0x88, 0xf0, 0xd8, 0x5d, 0x75, 0xd, 0x25, 0xfd, 0xd5, 0xad, 0x85}, - {0x0, 0x29, 0x52, 0x7b, 0xa4, 0x8d, 0xf6, 0xdf, 0x55, 0x7c, 0x7, 0x2e, 0xf1, 0xd8, 0xa3, 0x8a}, - {0x0, 0x2a, 0x54, 0x7e, 0xa8, 0x82, 0xfc, 0xd6, 0x4d, 0x67, 0x19, 0x33, 0xe5, 0xcf, 0xb1, 0x9b}, - {0x0, 0x2b, 0x56, 0x7d, 0xac, 0x87, 0xfa, 0xd1, 0x45, 0x6e, 0x13, 0x38, 0xe9, 0xc2, 0xbf, 0x94}, - {0x0, 0x2c, 0x58, 0x74, 0xb0, 0x9c, 0xe8, 0xc4, 0x7d, 0x51, 0x25, 0x9, 0xcd, 0xe1, 0x95, 0xb9}, - {0x0, 0x2d, 0x5a, 0x77, 0xb4, 0x99, 0xee, 0xc3, 0x75, 0x58, 0x2f, 0x2, 0xc1, 0xec, 0x9b, 0xb6}, - {0x0, 0x2e, 0x5c, 0x72, 0xb8, 0x96, 0xe4, 0xca, 0x6d, 0x43, 0x31, 0x1f, 0xd5, 0xfb, 0x89, 0xa7}, - {0x0, 0x2f, 0x5e, 0x71, 0xbc, 0x93, 0xe2, 0xcd, 0x65, 0x4a, 0x3b, 0x14, 0xd9, 0xf6, 0x87, 0xa8}, - {0x0, 0x30, 0x60, 0x50, 0xc0, 0xf0, 0xa0, 0x90, 0x9d, 0xad, 0xfd, 0xcd, 0x5d, 0x6d, 0x3d, 0xd}, - {0x0, 0x31, 0x62, 0x53, 0xc4, 0xf5, 0xa6, 0x97, 0x95, 0xa4, 0xf7, 0xc6, 0x51, 0x60, 0x33, 0x2}, - {0x0, 0x32, 0x64, 0x56, 0xc8, 0xfa, 0xac, 0x9e, 0x8d, 0xbf, 0xe9, 0xdb, 0x45, 0x77, 0x21, 0x13}, - {0x0, 0x33, 0x66, 0x55, 0xcc, 0xff, 0xaa, 0x99, 0x85, 0xb6, 0xe3, 0xd0, 0x49, 0x7a, 0x2f, 0x1c}, - {0x0, 0x34, 0x68, 0x5c, 0xd0, 0xe4, 0xb8, 0x8c, 0xbd, 0x89, 0xd5, 0xe1, 0x6d, 0x59, 0x5, 0x31}, - {0x0, 0x35, 0x6a, 0x5f, 0xd4, 0xe1, 0xbe, 0x8b, 0xb5, 0x80, 0xdf, 0xea, 0x61, 0x54, 0xb, 0x3e}, - {0x0, 0x36, 0x6c, 0x5a, 0xd8, 0xee, 0xb4, 0x82, 0xad, 0x9b, 0xc1, 0xf7, 0x75, 0x43, 0x19, 0x2f}, - 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{0x0, 0xfd, 0xe7, 0x1a, 0xd3, 0x2e, 0x34, 0xc9, 0xbb, 0x46, 0x5c, 0xa1, 0x68, 0x95, 0x8f, 0x72}, - {0x0, 0xfe, 0xe1, 0x1f, 0xdf, 0x21, 0x3e, 0xc0, 0xa3, 0x5d, 0x42, 0xbc, 0x7c, 0x82, 0x9d, 0x63}, - {0x0, 0xff, 0xe3, 0x1c, 0xdb, 0x24, 0x38, 0xc7, 0xab, 0x54, 0x48, 0xb7, 0x70, 0x8f, 0x93, 0x6c}} -var mulTableHigh = [256][16]uint8{{0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0}, - {0x0, 0x10, 0x20, 0x30, 0x40, 0x50, 0x60, 0x70, 0x80, 0x90, 0xa0, 0xb0, 0xc0, 0xd0, 0xe0, 0xf0}, - {0x0, 0x20, 0x40, 0x60, 0x80, 0xa0, 0xc0, 0xe0, 0x1d, 0x3d, 0x5d, 0x7d, 0x9d, 0xbd, 0xdd, 0xfd}, - {0x0, 0x30, 0x60, 0x50, 0xc0, 0xf0, 0xa0, 0x90, 0x9d, 0xad, 0xfd, 0xcd, 0x5d, 0x6d, 0x3d, 0xd}, - {0x0, 0x40, 0x80, 0xc0, 0x1d, 0x5d, 0x9d, 0xdd, 0x3a, 0x7a, 0xba, 0xfa, 0x27, 0x67, 0xa7, 0xe7}, - {0x0, 0x50, 0xa0, 0xf0, 0x5d, 0xd, 0xfd, 0xad, 0xba, 0xea, 0x1a, 0x4a, 0xe7, 0xb7, 0x47, 0x17}, - {0x0, 0x60, 0xc0, 0xa0, 0x9d, 0xfd, 0x5d, 0x3d, 0x27, 0x47, 0xe7, 0x87, 0xba, 0xda, 0x7a, 0x1a}, - {0x0, 0x70, 0xe0, 0x90, 0xdd, 0xad, 0x3d, 0x4d, 0xa7, 0xd7, 0x47, 0x37, 0x7a, 0xa, 0x9a, 0xea}, - {0x0, 0x80, 0x1d, 0x9d, 0x3a, 0xba, 0x27, 0xa7, 0x74, 0xf4, 0x69, 0xe9, 0x4e, 0xce, 0x53, 0xd3}, - {0x0, 0x90, 0x3d, 0xad, 0x7a, 0xea, 0x47, 0xd7, 0xf4, 0x64, 0xc9, 0x59, 0x8e, 0x1e, 0xb3, 0x23}, - {0x0, 0xa0, 0x5d, 0xfd, 0xba, 0x1a, 0xe7, 0x47, 0x69, 0xc9, 0x34, 0x94, 0xd3, 0x73, 0x8e, 0x2e}, - {0x0, 0xb0, 0x7d, 0xcd, 0xfa, 0x4a, 0x87, 0x37, 0xe9, 0x59, 0x94, 0x24, 0x13, 0xa3, 0x6e, 0xde}, - {0x0, 0xc0, 0x9d, 0x5d, 0x27, 0xe7, 0xba, 0x7a, 0x4e, 0x8e, 0xd3, 0x13, 0x69, 0xa9, 0xf4, 0x34}, - {0x0, 0xd0, 0xbd, 0x6d, 0x67, 0xb7, 0xda, 0xa, 0xce, 0x1e, 0x73, 0xa3, 0xa9, 0x79, 0x14, 0xc4}, - {0x0, 0xe0, 0xdd, 0x3d, 0xa7, 0x47, 0x7a, 0x9a, 0x53, 0xb3, 0x8e, 0x6e, 0xf4, 0x14, 0x29, 0xc9}, - {0x0, 0xf0, 0xfd, 0xd, 0xe7, 0x17, 0x1a, 0xea, 0xd3, 0x23, 0x2e, 0xde, 0x34, 0xc4, 0xc9, 0x39}, - {0x0, 0x1d, 0x3a, 0x27, 0x74, 0x69, 0x4e, 0x53, 0xe8, 0xf5, 0xd2, 0xcf, 0x9c, 0x81, 0xa6, 0xbb}, - {0x0, 0xd, 0x1a, 0x17, 0x34, 0x39, 0x2e, 0x23, 0x68, 0x65, 0x72, 0x7f, 0x5c, 0x51, 0x46, 0x4b}, - {0x0, 0x3d, 0x7a, 0x47, 0xf4, 0xc9, 0x8e, 0xb3, 0xf5, 0xc8, 0x8f, 0xb2, 0x1, 0x3c, 0x7b, 0x46}, - {0x0, 0x2d, 0x5a, 0x77, 0xb4, 0x99, 0xee, 0xc3, 0x75, 0x58, 0x2f, 0x2, 0xc1, 0xec, 0x9b, 0xb6}, - {0x0, 0x5d, 0xba, 0xe7, 0x69, 0x34, 0xd3, 0x8e, 0xd2, 0x8f, 0x68, 0x35, 0xbb, 0xe6, 0x1, 0x5c}, - {0x0, 0x4d, 0x9a, 0xd7, 0x29, 0x64, 0xb3, 0xfe, 0x52, 0x1f, 0xc8, 0x85, 0x7b, 0x36, 0xe1, 0xac}, - {0x0, 0x7d, 0xfa, 0x87, 0xe9, 0x94, 0x13, 0x6e, 0xcf, 0xb2, 0x35, 0x48, 0x26, 0x5b, 0xdc, 0xa1}, - {0x0, 0x6d, 0xda, 0xb7, 0xa9, 0xc4, 0x73, 0x1e, 0x4f, 0x22, 0x95, 0xf8, 0xe6, 0x8b, 0x3c, 0x51}, - {0x0, 0x9d, 0x27, 0xba, 0x4e, 0xd3, 0x69, 0xf4, 0x9c, 0x1, 0xbb, 0x26, 0xd2, 0x4f, 0xf5, 0x68}, - {0x0, 0x8d, 0x7, 0x8a, 0xe, 0x83, 0x9, 0x84, 0x1c, 0x91, 0x1b, 0x96, 0x12, 0x9f, 0x15, 0x98}, - {0x0, 0xbd, 0x67, 0xda, 0xce, 0x73, 0xa9, 0x14, 0x81, 0x3c, 0xe6, 0x5b, 0x4f, 0xf2, 0x28, 0x95}, - {0x0, 0xad, 0x47, 0xea, 0x8e, 0x23, 0xc9, 0x64, 0x1, 0xac, 0x46, 0xeb, 0x8f, 0x22, 0xc8, 0x65}, - {0x0, 0xdd, 0xa7, 0x7a, 0x53, 0x8e, 0xf4, 0x29, 0xa6, 0x7b, 0x1, 0xdc, 0xf5, 0x28, 0x52, 0x8f}, - {0x0, 0xcd, 0x87, 0x4a, 0x13, 0xde, 0x94, 0x59, 0x26, 0xeb, 0xa1, 0x6c, 0x35, 0xf8, 0xb2, 0x7f}, - {0x0, 0xfd, 0xe7, 0x1a, 0xd3, 0x2e, 0x34, 0xc9, 0xbb, 0x46, 0x5c, 0xa1, 0x68, 0x95, 0x8f, 0x72}, - {0x0, 0xed, 0xc7, 0x2a, 0x93, 0x7e, 0x54, 0xb9, 0x3b, 0xd6, 0xfc, 0x11, 0xa8, 0x45, 0x6f, 0x82}, - {0x0, 0x3a, 0x74, 0x4e, 0xe8, 0xd2, 0x9c, 0xa6, 0xcd, 0xf7, 0xb9, 0x83, 0x25, 0x1f, 0x51, 0x6b}, - {0x0, 0x2a, 0x54, 0x7e, 0xa8, 0x82, 0xfc, 0xd6, 0x4d, 0x67, 0x19, 0x33, 0xe5, 0xcf, 0xb1, 0x9b}, - {0x0, 0x1a, 0x34, 0x2e, 0x68, 0x72, 0x5c, 0x46, 0xd0, 0xca, 0xe4, 0xfe, 0xb8, 0xa2, 0x8c, 0x96}, - {0x0, 0xa, 0x14, 0x1e, 0x28, 0x22, 0x3c, 0x36, 0x50, 0x5a, 0x44, 0x4e, 0x78, 0x72, 0x6c, 0x66}, - {0x0, 0x7a, 0xf4, 0x8e, 0xf5, 0x8f, 0x1, 0x7b, 0xf7, 0x8d, 0x3, 0x79, 0x2, 0x78, 0xf6, 0x8c}, - {0x0, 0x6a, 0xd4, 0xbe, 0xb5, 0xdf, 0x61, 0xb, 0x77, 0x1d, 0xa3, 0xc9, 0xc2, 0xa8, 0x16, 0x7c}, - {0x0, 0x5a, 0xb4, 0xee, 0x75, 0x2f, 0xc1, 0x9b, 0xea, 0xb0, 0x5e, 0x4, 0x9f, 0xc5, 0x2b, 0x71}, - {0x0, 0x4a, 0x94, 0xde, 0x35, 0x7f, 0xa1, 0xeb, 0x6a, 0x20, 0xfe, 0xb4, 0x5f, 0x15, 0xcb, 0x81}, - {0x0, 0xba, 0x69, 0xd3, 0xd2, 0x68, 0xbb, 0x1, 0xb9, 0x3, 0xd0, 0x6a, 0x6b, 0xd1, 0x2, 0xb8}, - {0x0, 0xaa, 0x49, 0xe3, 0x92, 0x38, 0xdb, 0x71, 0x39, 0x93, 0x70, 0xda, 0xab, 0x1, 0xe2, 0x48}, - {0x0, 0x9a, 0x29, 0xb3, 0x52, 0xc8, 0x7b, 0xe1, 0xa4, 0x3e, 0x8d, 0x17, 0xf6, 0x6c, 0xdf, 0x45}, - {0x0, 0x8a, 0x9, 0x83, 0x12, 0x98, 0x1b, 0x91, 0x24, 0xae, 0x2d, 0xa7, 0x36, 0xbc, 0x3f, 0xb5}, - {0x0, 0xfa, 0xe9, 0x13, 0xcf, 0x35, 0x26, 0xdc, 0x83, 0x79, 0x6a, 0x90, 0x4c, 0xb6, 0xa5, 0x5f}, - {0x0, 0xea, 0xc9, 0x23, 0x8f, 0x65, 0x46, 0xac, 0x3, 0xe9, 0xca, 0x20, 0x8c, 0x66, 0x45, 0xaf}, - {0x0, 0xda, 0xa9, 0x73, 0x4f, 0x95, 0xe6, 0x3c, 0x9e, 0x44, 0x37, 0xed, 0xd1, 0xb, 0x78, 0xa2}, - {0x0, 0xca, 0x89, 0x43, 0xf, 0xc5, 0x86, 0x4c, 0x1e, 0xd4, 0x97, 0x5d, 0x11, 0xdb, 0x98, 0x52}, - {0x0, 0x27, 0x4e, 0x69, 0x9c, 0xbb, 0xd2, 0xf5, 0x25, 0x2, 0x6b, 0x4c, 0xb9, 0x9e, 0xf7, 0xd0}, - {0x0, 0x37, 0x6e, 0x59, 0xdc, 0xeb, 0xb2, 0x85, 0xa5, 0x92, 0xcb, 0xfc, 0x79, 0x4e, 0x17, 0x20}, - {0x0, 0x7, 0xe, 0x9, 0x1c, 0x1b, 0x12, 0x15, 0x38, 0x3f, 0x36, 0x31, 0x24, 0x23, 0x2a, 0x2d}, - {0x0, 0x17, 0x2e, 0x39, 0x5c, 0x4b, 0x72, 0x65, 0xb8, 0xaf, 0x96, 0x81, 0xe4, 0xf3, 0xca, 0xdd}, - {0x0, 0x67, 0xce, 0xa9, 0x81, 0xe6, 0x4f, 0x28, 0x1f, 0x78, 0xd1, 0xb6, 0x9e, 0xf9, 0x50, 0x37}, - {0x0, 0x77, 0xee, 0x99, 0xc1, 0xb6, 0x2f, 0x58, 0x9f, 0xe8, 0x71, 0x6, 0x5e, 0x29, 0xb0, 0xc7}, - {0x0, 0x47, 0x8e, 0xc9, 0x1, 0x46, 0x8f, 0xc8, 0x2, 0x45, 0x8c, 0xcb, 0x3, 0x44, 0x8d, 0xca}, - {0x0, 0x57, 0xae, 0xf9, 0x41, 0x16, 0xef, 0xb8, 0x82, 0xd5, 0x2c, 0x7b, 0xc3, 0x94, 0x6d, 0x3a}, - {0x0, 0xa7, 0x53, 0xf4, 0xa6, 0x1, 0xf5, 0x52, 0x51, 0xf6, 0x2, 0xa5, 0xf7, 0x50, 0xa4, 0x3}, - {0x0, 0xb7, 0x73, 0xc4, 0xe6, 0x51, 0x95, 0x22, 0xd1, 0x66, 0xa2, 0x15, 0x37, 0x80, 0x44, 0xf3}, - {0x0, 0x87, 0x13, 0x94, 0x26, 0xa1, 0x35, 0xb2, 0x4c, 0xcb, 0x5f, 0xd8, 0x6a, 0xed, 0x79, 0xfe}, - {0x0, 0x97, 0x33, 0xa4, 0x66, 0xf1, 0x55, 0xc2, 0xcc, 0x5b, 0xff, 0x68, 0xaa, 0x3d, 0x99, 0xe}, - {0x0, 0xe7, 0xd3, 0x34, 0xbb, 0x5c, 0x68, 0x8f, 0x6b, 0x8c, 0xb8, 0x5f, 0xd0, 0x37, 0x3, 0xe4}, - {0x0, 0xf7, 0xf3, 0x4, 0xfb, 0xc, 0x8, 0xff, 0xeb, 0x1c, 0x18, 0xef, 0x10, 0xe7, 0xe3, 0x14}, - 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{0x0, 0x96, 0x31, 0xa7, 0x62, 0xf4, 0x53, 0xc5, 0xc4, 0x52, 0xf5, 0x63, 0xa6, 0x30, 0x97, 0x1}, - {0x0, 0xe6, 0xd1, 0x37, 0xbf, 0x59, 0x6e, 0x88, 0x63, 0x85, 0xb2, 0x54, 0xdc, 0x3a, 0xd, 0xeb}, - {0x0, 0xf6, 0xf1, 0x7, 0xff, 0x9, 0xe, 0xf8, 0xe3, 0x15, 0x12, 0xe4, 0x1c, 0xea, 0xed, 0x1b}, - {0x0, 0xc6, 0x91, 0x57, 0x3f, 0xf9, 0xae, 0x68, 0x7e, 0xb8, 0xef, 0x29, 0x41, 0x87, 0xd0, 0x16}, - {0x0, 0xd6, 0xb1, 0x67, 0x7f, 0xa9, 0xce, 0x18, 0xfe, 0x28, 0x4f, 0x99, 0x81, 0x57, 0x30, 0xe6}, - {0x0, 0x26, 0x4c, 0x6a, 0x98, 0xbe, 0xd4, 0xf2, 0x2d, 0xb, 0x61, 0x47, 0xb5, 0x93, 0xf9, 0xdf}, - {0x0, 0x36, 0x6c, 0x5a, 0xd8, 0xee, 0xb4, 0x82, 0xad, 0x9b, 0xc1, 0xf7, 0x75, 0x43, 0x19, 0x2f}, - {0x0, 0x6, 0xc, 0xa, 0x18, 0x1e, 0x14, 0x12, 0x30, 0x36, 0x3c, 0x3a, 0x28, 0x2e, 0x24, 0x22}, - {0x0, 0x16, 0x2c, 0x3a, 0x58, 0x4e, 0x74, 0x62, 0xb0, 0xa6, 0x9c, 0x8a, 0xe8, 0xfe, 0xc4, 0xd2}, - {0x0, 0x66, 0xcc, 0xaa, 0x85, 0xe3, 0x49, 0x2f, 0x17, 0x71, 0xdb, 0xbd, 0x92, 0xf4, 0x5e, 0x38}, - {0x0, 0x76, 0xec, 0x9a, 0xc5, 0xb3, 0x29, 0x5f, 0x97, 0xe1, 0x7b, 0xd, 0x52, 0x24, 0xbe, 0xc8}, - {0x0, 0x46, 0x8c, 0xca, 0x5, 0x43, 0x89, 0xcf, 0xa, 0x4c, 0x86, 0xc0, 0xf, 0x49, 0x83, 0xc5}, - {0x0, 0x56, 0xac, 0xfa, 0x45, 0x13, 0xe9, 0xbf, 0x8a, 0xdc, 0x26, 0x70, 0xcf, 0x99, 0x63, 0x35}, - {0x0, 0xbb, 0x6b, 0xd0, 0xd6, 0x6d, 0xbd, 0x6, 0xb1, 0xa, 0xda, 0x61, 0x67, 0xdc, 0xc, 0xb7}, - {0x0, 0xab, 0x4b, 0xe0, 0x96, 0x3d, 0xdd, 0x76, 0x31, 0x9a, 0x7a, 0xd1, 0xa7, 0xc, 0xec, 0x47}, - {0x0, 0x9b, 0x2b, 0xb0, 0x56, 0xcd, 0x7d, 0xe6, 0xac, 0x37, 0x87, 0x1c, 0xfa, 0x61, 0xd1, 0x4a}, - {0x0, 0x8b, 0xb, 0x80, 0x16, 0x9d, 0x1d, 0x96, 0x2c, 0xa7, 0x27, 0xac, 0x3a, 0xb1, 0x31, 0xba}, - {0x0, 0xfb, 0xeb, 0x10, 0xcb, 0x30, 0x20, 0xdb, 0x8b, 0x70, 0x60, 0x9b, 0x40, 0xbb, 0xab, 0x50}, - {0x0, 0xeb, 0xcb, 0x20, 0x8b, 0x60, 0x40, 0xab, 0xb, 0xe0, 0xc0, 0x2b, 0x80, 0x6b, 0x4b, 0xa0}, - {0x0, 0xdb, 0xab, 0x70, 0x4b, 0x90, 0xe0, 0x3b, 0x96, 0x4d, 0x3d, 0xe6, 0xdd, 0x6, 0x76, 0xad}, - {0x0, 0xcb, 0x8b, 0x40, 0xb, 0xc0, 0x80, 0x4b, 0x16, 0xdd, 0x9d, 0x56, 0x1d, 0xd6, 0x96, 0x5d}, - {0x0, 0x3b, 0x76, 0x4d, 0xec, 0xd7, 0x9a, 0xa1, 0xc5, 0xfe, 0xb3, 0x88, 0x29, 0x12, 0x5f, 0x64}, - {0x0, 0x2b, 0x56, 0x7d, 0xac, 0x87, 0xfa, 0xd1, 0x45, 0x6e, 0x13, 0x38, 0xe9, 0xc2, 0xbf, 0x94}, - {0x0, 0x1b, 0x36, 0x2d, 0x6c, 0x77, 0x5a, 0x41, 0xd8, 0xc3, 0xee, 0xf5, 0xb4, 0xaf, 0x82, 0x99}, - {0x0, 0xb, 0x16, 0x1d, 0x2c, 0x27, 0x3a, 0x31, 0x58, 0x53, 0x4e, 0x45, 0x74, 0x7f, 0x62, 0x69}, - {0x0, 0x7b, 0xf6, 0x8d, 0xf1, 0x8a, 0x7, 0x7c, 0xff, 0x84, 0x9, 0x72, 0xe, 0x75, 0xf8, 0x83}, - {0x0, 0x6b, 0xd6, 0xbd, 0xb1, 0xda, 0x67, 0xc, 0x7f, 0x14, 0xa9, 0xc2, 0xce, 0xa5, 0x18, 0x73}, - {0x0, 0x5b, 0xb6, 0xed, 0x71, 0x2a, 0xc7, 0x9c, 0xe2, 0xb9, 0x54, 0xf, 0x93, 0xc8, 0x25, 0x7e}, - {0x0, 0x4b, 0x96, 0xdd, 0x31, 0x7a, 0xa7, 0xec, 0x62, 0x29, 0xf4, 0xbf, 0x53, 0x18, 0xc5, 0x8e}} - -// galMultiply multiplies to elements of the field. -// Uses lookup table ~40% faster -func galMultiply(a, b byte) byte { - return mulTable[a][b] -} - -// Original function: -/* -// galMultiply multiplies to elements of the field. -func galMultiply(a, b byte) byte { - if a == 0 || b == 0 { - return 0 - } - logA := int(logTable[a]) - logB := int(logTable[b]) - return expTable[logA+logB] -} -*/ - -// galDivide is inverse of galMultiply. -func galDivide(a, b byte) byte { - if a == 0 { - return 0 - } - if b == 0 { - panic("Argument 'divisor' is 0") - } - logA := int(logTable[a]) - logB := int(logTable[b]) - logResult := logA - logB - if logResult < 0 { - logResult += 255 - } - return expTable[logResult] -} - -// Computes a**n. -// -// The result will be the same as multiplying a times itself n times. -func galExp(a byte, n int) byte { - if n == 0 { - return 1 - } - if a == 0 { - return 0 - } - - logA := logTable[a] - logResult := int(logA) * n - for logResult >= 255 { - logResult -= 255 - } - return byte(expTable[logResult]) -} diff --git a/vendor/github.com/klauspost/reedsolomon/galois_amd64.go b/vendor/github.com/klauspost/reedsolomon/galois_amd64.go deleted file mode 100644 index aeebdbb..0000000 --- a/vendor/github.com/klauspost/reedsolomon/galois_amd64.go +++ /dev/null @@ -1,91 +0,0 @@ -//+build !noasm -//+build !appengine - -// Copyright 2015, Klaus Post, see LICENSE for details. - -package reedsolomon - -//go:noescape -func galMulSSSE3(low, high, in, out []byte) - -//go:noescape -func galMulSSSE3Xor(low, high, in, out []byte) - -//go:noescape -func galMulAVX2Xor(low, high, in, out []byte) - -//go:noescape -func galMulAVX2(low, high, in, out []byte) - -//go:noescape -func sSE2XorSlice(in, out []byte) - -// This is what the assembler routines do in blocks of 16 bytes: -/* -func galMulSSSE3(low, high, in, out []byte) { - for n, input := range in { - l := input & 0xf - h := input >> 4 - out[n] = low[l] ^ high[h] - } -} - -func galMulSSSE3Xor(low, high, in, out []byte) { - for n, input := range in { - l := input & 0xf - h := input >> 4 - out[n] ^= low[l] ^ high[h] - } -} -*/ - -func galMulSlice(c byte, in, out []byte, ssse3, avx2 bool) { - var done int - if avx2 { - galMulAVX2(mulTableLow[c][:], mulTableHigh[c][:], in, out) - done = (len(in) >> 5) << 5 - } else if ssse3 { - galMulSSSE3(mulTableLow[c][:], mulTableHigh[c][:], in, out) - done = (len(in) >> 4) << 4 - } - remain := len(in) - done - if remain > 0 { - mt := mulTable[c] - for i := done; i < len(in); i++ { - out[i] = mt[in[i]] - } - } -} - -func galMulSliceXor(c byte, in, out []byte, ssse3, avx2 bool) { - var done int - if avx2 { - galMulAVX2Xor(mulTableLow[c][:], mulTableHigh[c][:], in, out) - done = (len(in) >> 5) << 5 - } else if ssse3 { - galMulSSSE3Xor(mulTableLow[c][:], mulTableHigh[c][:], in, out) - done = (len(in) >> 4) << 4 - } - remain := len(in) - done - if remain > 0 { - mt := mulTable[c] - for i := done; i < len(in); i++ { - out[i] ^= mt[in[i]] - } - } -} - -// slice galois add -func sliceXor(in, out []byte, sse2 bool) { - var done int - if sse2 { - sSE2XorSlice(in, out) - done = (len(in) >> 4) << 4 - } - remain := len(in) - done - if remain > 0 { - for i := done; i < len(in); i++ { - out[i] ^= in[i] - } - } -} diff --git a/vendor/github.com/klauspost/reedsolomon/galois_amd64.s b/vendor/github.com/klauspost/reedsolomon/galois_amd64.s deleted file mode 100644 index 8a294c1..0000000 --- a/vendor/github.com/klauspost/reedsolomon/galois_amd64.s +++ /dev/null @@ -1,236 +0,0 @@ -//+build !noasm !appengine - -// Copyright 2015, Klaus Post, see LICENSE for details. - -// Based on http://www.snia.org/sites/default/files2/SDC2013/presentations/NewThinking/EthanMiller_Screaming_Fast_Galois_Field%20Arithmetic_SIMD%20Instructions.pdf -// and http://jerasure.org/jerasure/gf-complete/tree/master - -// func galMulSSSE3Xor(low, high, in, out []byte) -TEXT ·galMulSSSE3Xor(SB), 7, $0 - MOVQ low+0(FP), SI // SI: &low - MOVQ high+24(FP), DX // DX: &high - MOVOU (SI), X6 // X6 low - MOVOU (DX), X7 // X7: high - MOVQ $15, BX // BX: low mask - MOVQ BX, X8 - PXOR X5, X5 - MOVQ in+48(FP), SI // R11: &in - MOVQ in_len+56(FP), R9 // R9: len(in) - MOVQ out+72(FP), DX // DX: &out - PSHUFB X5, X8 // X8: lomask (unpacked) - SHRQ $4, R9 // len(in) / 16 - MOVQ SI, AX - MOVQ DX, BX - ANDQ $15, AX - ANDQ $15, BX - CMPQ R9, $0 - JEQ done_xor - ORQ AX, BX - CMPQ BX, $0 - JNZ loopback_xor - -loopback_xor_aligned: - MOVOA (SI), X0 // in[x] - MOVOA (DX), X4 // out[x] - MOVOA X0, X1 // in[x] - MOVOA X6, X2 // low copy - MOVOA X7, X3 // high copy - PSRLQ $4, X1 // X1: high input - PAND X8, X0 // X0: low input - PAND X8, X1 // X0: high input - PSHUFB X0, X2 // X2: mul low part - PSHUFB X1, X3 // X3: mul high part - PXOR X2, X3 // X3: Result - PXOR X4, X3 // X3: Result xor existing out - MOVOA X3, (DX) // Store - ADDQ $16, SI // in+=16 - ADDQ $16, DX // out+=16 - SUBQ $1, R9 - JNZ loopback_xor_aligned - JMP done_xor - -loopback_xor: - MOVOU (SI), X0 // in[x] - MOVOU (DX), X4 // out[x] - MOVOU X0, X1 // in[x] - MOVOU X6, X2 // low copy - MOVOU X7, X3 // high copy - PSRLQ $4, X1 // X1: high input - PAND X8, X0 // X0: low input - PAND X8, X1 // X0: high input - PSHUFB X0, X2 // X2: mul low part - PSHUFB X1, X3 // X3: mul high part - PXOR X2, X3 // X3: Result - PXOR X4, X3 // X3: Result xor existing out - MOVOU X3, (DX) // Store - ADDQ $16, SI // in+=16 - ADDQ $16, DX // out+=16 - SUBQ $1, R9 - JNZ loopback_xor - -done_xor: - RET - -// func galMulSSSE3(low, high, in, out []byte) -TEXT ·galMulSSSE3(SB), 7, $0 - MOVQ low+0(FP), SI // SI: &low - MOVQ high+24(FP), DX // DX: &high - MOVOU (SI), X6 // X6 low - MOVOU (DX), X7 // X7: high - MOVQ $15, BX // BX: low mask - MOVQ BX, X8 - PXOR X5, X5 - MOVQ in+48(FP), SI // R11: &in - MOVQ in_len+56(FP), R9 // R9: len(in) - MOVQ out+72(FP), DX // DX: &out - PSHUFB X5, X8 // X8: lomask (unpacked) - MOVQ SI, AX - MOVQ DX, BX - SHRQ $4, R9 // len(in) / 16 - ANDQ $15, AX - ANDQ $15, BX - CMPQ R9, $0 - JEQ done - ORQ AX, BX - CMPQ BX, $0 - JNZ loopback - -loopback_aligned: - MOVOA (SI), X0 // in[x] - MOVOA X0, X1 // in[x] - MOVOA X6, X2 // low copy - MOVOA X7, X3 // high copy - PSRLQ $4, X1 // X1: high input - PAND X8, X0 // X0: low input - PAND X8, X1 // X0: high input - PSHUFB X0, X2 // X2: mul low part - PSHUFB X1, X3 // X3: mul high part - PXOR X2, X3 // X3: Result - MOVOA X3, (DX) // Store - ADDQ $16, SI // in+=16 - ADDQ $16, DX // out+=16 - SUBQ $1, R9 - JNZ loopback_aligned - JMP done - -loopback: - MOVOU (SI), X0 // in[x] - MOVOU X0, X1 // in[x] - MOVOA X6, X2 // low copy - MOVOA X7, X3 // high copy - PSRLQ $4, X1 // X1: high input - PAND X8, X0 // X0: low input - PAND X8, X1 // X0: high input - PSHUFB X0, X2 // X2: mul low part - PSHUFB X1, X3 // X3: mul high part - PXOR X2, X3 // X3: Result - MOVOU X3, (DX) // Store - ADDQ $16, SI // in+=16 - ADDQ $16, DX // out+=16 - SUBQ $1, R9 - JNZ loopback - -done: - RET - -// func galMulAVX2Xor(low, high, in, out []byte) -TEXT ·galMulAVX2Xor(SB), 7, $0 - MOVQ low+0(FP), SI // SI: &low - MOVQ high+24(FP), DX // DX: &high - MOVQ $15, BX // BX: low mask - MOVQ BX, X5 - MOVOU (SI), X6 // X6: low - MOVOU (DX), X7 // X7: high - MOVQ in_len+56(FP), R9 // R9: len(in) - - VINSERTI128 $1, X6, Y6, Y6 // low - VINSERTI128 $1, X7, Y7, Y7 // high - VPBROADCASTB X5, Y8 // Y8: lomask (unpacked) - - SHRQ $5, R9 // len(in) / 32 - MOVQ out+72(FP), DX // DX: &out - MOVQ in+48(FP), SI // SI: &in - TESTQ R9, R9 - JZ done_xor_avx2 - -loopback_xor_avx2: - VMOVDQU (SI), Y0 - VMOVDQU (DX), Y4 - VPSRLQ $4, Y0, Y1 // Y1: high input - VPAND Y8, Y0, Y0 // Y0: low input - VPAND Y8, Y1, Y1 // Y1: high input - VPSHUFB Y0, Y6, Y2 // Y2: mul low part - VPSHUFB Y1, Y7, Y3 // Y3: mul high part - VPXOR Y3, Y2, Y3 // Y3: Result - VPXOR Y4, Y3, Y4 // Y4: Result - VMOVDQU Y4, (DX) - - ADDQ $32, SI // in+=32 - ADDQ $32, DX // out+=32 - SUBQ $1, R9 - JNZ loopback_xor_avx2 - -done_xor_avx2: - VZEROUPPER - RET - -// func galMulAVX2(low, high, in, out []byte) -TEXT ·galMulAVX2(SB), 7, $0 - MOVQ low+0(FP), SI // SI: &low - MOVQ high+24(FP), DX // DX: &high - MOVQ $15, BX // BX: low mask - MOVQ BX, X5 - MOVOU (SI), X6 // X6: low - MOVOU (DX), X7 // X7: high - MOVQ in_len+56(FP), R9 // R9: len(in) - - VINSERTI128 $1, X6, Y6, Y6 // low - VINSERTI128 $1, X7, Y7, Y7 // high - VPBROADCASTB X5, Y8 // Y8: lomask (unpacked) - - SHRQ $5, R9 // len(in) / 32 - MOVQ out+72(FP), DX // DX: &out - MOVQ in+48(FP), SI // SI: &in - TESTQ R9, R9 - JZ done_avx2 - -loopback_avx2: - VMOVDQU (SI), Y0 - VPSRLQ $4, Y0, Y1 // Y1: high input - VPAND Y8, Y0, Y0 // Y0: low input - VPAND Y8, Y1, Y1 // Y1: high input - VPSHUFB Y0, Y6, Y2 // Y2: mul low part - VPSHUFB Y1, Y7, Y3 // Y3: mul high part - VPXOR Y3, Y2, Y4 // Y4: Result - VMOVDQU Y4, (DX) - - ADDQ $32, SI // in+=32 - ADDQ $32, DX // out+=32 - SUBQ $1, R9 - JNZ loopback_avx2 - -done_avx2: - VZEROUPPER - RET - -// func sSE2XorSlice(in, out []byte) -TEXT ·sSE2XorSlice(SB), 7, $0 - MOVQ in+0(FP), SI // SI: &in - MOVQ in_len+8(FP), R9 // R9: len(in) - MOVQ out+24(FP), DX // DX: &out - SHRQ $4, R9 // len(in) / 16 - CMPQ R9, $0 - JEQ done_xor_sse2 - -loopback_xor_sse2: - MOVOU (SI), X0 // in[x] - MOVOU (DX), X1 // out[x] - PXOR X0, X1 - MOVOU X1, (DX) - ADDQ $16, SI // in+=16 - ADDQ $16, DX // out+=16 - SUBQ $1, R9 - JNZ loopback_xor_sse2 - -done_xor_sse2: - RET diff --git a/vendor/github.com/klauspost/reedsolomon/galois_arm64.go b/vendor/github.com/klauspost/reedsolomon/galois_arm64.go deleted file mode 100644 index a9e533f..0000000 --- a/vendor/github.com/klauspost/reedsolomon/galois_arm64.go +++ /dev/null @@ -1,48 +0,0 @@ -//+build !noasm -//+build !appengine - -// Copyright 2015, Klaus Post, see LICENSE for details. -// Copyright 2017, Minio, Inc. - -package reedsolomon - -//go:noescape -func galMulNEON(c uint64, in, out []byte) - -//go:noescape -func galMulXorNEON(c uint64, in, out []byte) - -func galMulSlice(c byte, in, out []byte, ssse3, avx2 bool) { - var done int - galMulNEON(uint64(c), in, out) - done = (len(in) >> 5) << 5 - - remain := len(in) - done - if remain > 0 { - mt := mulTable[c] - for i := done; i < len(in); i++ { - out[i] = mt[in[i]] - } - } -} - -func galMulSliceXor(c byte, in, out []byte, ssse3, avx2 bool) { - var done int - galMulXorNEON(uint64(c), in, out) - done = (len(in) >> 5) << 5 - - remain := len(in) - done - if remain > 0 { - mt := mulTable[c] - for i := done; i < len(in); i++ { - out[i] ^= mt[in[i]] - } - } -} - -// slice galois add -func sliceXor(in, out []byte, sse2 bool) { - for n, input := range in { - out[n] ^= input - } -} diff --git a/vendor/github.com/klauspost/reedsolomon/galois_arm64.s b/vendor/github.com/klauspost/reedsolomon/galois_arm64.s deleted file mode 100644 index b18e258..0000000 --- a/vendor/github.com/klauspost/reedsolomon/galois_arm64.s +++ /dev/null @@ -1,141 +0,0 @@ -//+build !noasm !appengine - -// Copyright 2015, Klaus Post, see LICENSE for details. -// Copyright 2017, Minio, Inc. - -// Use github.com/minio/asm2plan9s on this file to assemble ARM instructions to -// the opcodes of their Plan9 equivalents - -// polynomial multiplication -#define POLYNOMIAL_MULTIPLICATION \ - WORD $0x0e3ce340 \ // pmull v0.8h,v26.8b,v28.8b - WORD $0x4e3ce346 \ // pmull2 v6.8h,v26.16b,v28.16b - WORD $0x0e3ce36c \ // pmull v12.8h,v27.8b,v28.8b - WORD $0x4e3ce372 // pmull2 v18.8h,v27.16b,v28.16b - -// first reduction -#define FIRST_REDUCTION \ - WORD $0x0f088402 \ // shrn v2.8b, v0.8h, #8 - WORD $0x0f0884c8 \ // shrn v8.8b, v6.8h, #8 - WORD $0x0f08858e \ // shrn v14.8b, v12.8h, #8 - WORD $0x0f088654 \ // shrn v20.8b, v18.8h, #8 - WORD $0x0e22e3c3 \ // pmull v3.8h,v30.8b,v2.8b - WORD $0x0e28e3c9 \ // pmull v9.8h,v30.8b,v8.8b - WORD $0x0e2ee3cf \ // pmull v15.8h,v30.8b,v14.8b - WORD $0x0e34e3d5 \ // pmull v21.8h,v30.8b,v20.8b - WORD $0x6e201c60 \ // eor v0.16b,v3.16b,v0.16b - WORD $0x6e261d26 \ // eor v6.16b,v9.16b,v6.16b - WORD $0x6e2c1dec \ // eor v12.16b,v15.16b,v12.16b - WORD $0x6e321eb2 // eor v18.16b,v21.16b,v18.16b - -// second reduction -#define SECOND_REDUCTION \ - WORD $0x0f088404 \ // shrn v4.8b, v0.8h, #8 - WORD $0x0f0884ca \ // shrn v10.8b, v6.8h, #8 - WORD $0x0f088590 \ // shrn v16.8b, v12.8h, #8 - WORD $0x0f088656 \ // shrn v22.8b, v18.8h, #8 - WORD $0x6e241c44 \ // eor v4.16b,v2.16b,v4.16b - WORD $0x6e2a1d0a \ // eor v10.16b,v8.16b,v10.16b - WORD $0x6e301dd0 \ // eor v16.16b,v14.16b,v16.16b - WORD $0x6e361e96 \ // eor v22.16b,v20.16b,v22.16b - WORD $0x0e24e3c5 \ // pmull v5.8h,v30.8b,v4.8b - WORD $0x0e2ae3cb \ // pmull v11.8h,v30.8b,v10.8b - WORD $0x0e30e3d1 \ // pmull v17.8h,v30.8b,v16.8b - WORD $0x0e36e3d7 \ // pmull v23.8h,v30.8b,v22.8b - WORD $0x6e201ca0 \ // eor v0.16b,v5.16b,v0.16b - WORD $0x6e261d61 \ // eor v1.16b,v11.16b,v6.16b - WORD $0x6e2c1e22 \ // eor v2.16b,v17.16b,v12.16b - WORD $0x6e321ee3 // eor v3.16b,v23.16b,v18.16b - -// func galMulNEON(c uint64, in, out []byte) -TEXT ·galMulNEON(SB), 7, $0 - MOVD c+0(FP), R0 - MOVD in_base+8(FP), R1 - MOVD in_len+16(FP), R2 // length of message - MOVD out_base+32(FP), R5 - SUBS $32, R2 - BMI complete - - // Load constants table pointer - MOVD $·constants(SB), R3 - - // and load constants into v30 & v31 - WORD $0x4c40a07e // ld1 {v30.16b-v31.16b}, [x3] - - WORD $0x4e010c1c // dup v28.16b, w0 - -loop: - // Main loop - WORD $0x4cdfa83a // ld1 {v26.4s-v27.4s}, [x1], #32 - - POLYNOMIAL_MULTIPLICATION - - FIRST_REDUCTION - - SECOND_REDUCTION - - // combine results - WORD $0x4e1f2000 // tbl v0.16b,{v0.16b,v1.16b},v31.16b - WORD $0x4e1f2041 // tbl v1.16b,{v2.16b,v3.16b},v31.16b - - // Store result - WORD $0x4c9faca0 // st1 {v0.2d-v1.2d}, [x5], #32 - - SUBS $32, R2 - BPL loop - -complete: - RET - -// func galMulXorNEON(c uint64, in, out []byte) -TEXT ·galMulXorNEON(SB), 7, $0 - MOVD c+0(FP), R0 - MOVD in_base+8(FP), R1 - MOVD in_len+16(FP), R2 // length of message - MOVD out_base+32(FP), R5 - SUBS $32, R2 - BMI completeXor - - // Load constants table pointer - MOVD $·constants(SB), R3 - - // and load constants into v30 & v31 - WORD $0x4c40a07e // ld1 {v30.16b-v31.16b}, [x3] - - WORD $0x4e010c1c // dup v28.16b, w0 - -loopXor: - // Main loop - WORD $0x4cdfa83a // ld1 {v26.4s-v27.4s}, [x1], #32 - WORD $0x4c40a8b8 // ld1 {v24.4s-v25.4s}, [x5] - - POLYNOMIAL_MULTIPLICATION - - FIRST_REDUCTION - - SECOND_REDUCTION - - // combine results - WORD $0x4e1f2000 // tbl v0.16b,{v0.16b,v1.16b},v31.16b - WORD $0x4e1f2041 // tbl v1.16b,{v2.16b,v3.16b},v31.16b - - // Xor result and store - WORD $0x6e381c00 // eor v0.16b,v0.16b,v24.16b - WORD $0x6e391c21 // eor v1.16b,v1.16b,v25.16b - WORD $0x4c9faca0 // st1 {v0.2d-v1.2d}, [x5], #32 - - SUBS $32, R2 - BPL loopXor - -completeXor: - RET - -// Constants table -// generating polynomial is 29 (= 0x1d) -DATA ·constants+0x0(SB)/8, $0x1d1d1d1d1d1d1d1d -DATA ·constants+0x8(SB)/8, $0x1d1d1d1d1d1d1d1d -// constant for TBL instruction -DATA ·constants+0x10(SB)/8, $0x0e0c0a0806040200 -DATA ·constants+0x18(SB)/8, $0x1e1c1a1816141210 - -GLOBL ·constants(SB), 8, $32 diff --git a/vendor/github.com/klauspost/reedsolomon/galois_noasm.go b/vendor/github.com/klauspost/reedsolomon/galois_noasm.go deleted file mode 100644 index ebde7be..0000000 --- a/vendor/github.com/klauspost/reedsolomon/galois_noasm.go +++ /dev/null @@ -1,27 +0,0 @@ -//+build !amd64 noasm appengine -//+build !arm64 noasm appengine - -// Copyright 2015, Klaus Post, see LICENSE for details. - -package reedsolomon - -func galMulSlice(c byte, in, out []byte, ssse3, avx2 bool) { - mt := mulTable[c] - for n, input := range in { - out[n] = mt[input] - } -} - -func galMulSliceXor(c byte, in, out []byte, ssse3, avx2 bool) { - mt := mulTable[c] - for n, input := range in { - out[n] ^= mt[input] - } -} - -// slice galois add -func sliceXor(in, out []byte, sse2 bool) { - for n, input := range in { - out[n] ^= input - } -} diff --git a/vendor/github.com/klauspost/reedsolomon/gentables.go b/vendor/github.com/klauspost/reedsolomon/gentables.go deleted file mode 100644 index 843aade..0000000 --- a/vendor/github.com/klauspost/reedsolomon/gentables.go +++ /dev/null @@ -1,132 +0,0 @@ -//+build ignore - -package main - -import ( - "fmt" -) - -var logTable = [fieldSize]int16{ - -1, 0, 1, 25, 2, 50, 26, 198, - 3, 223, 51, 238, 27, 104, 199, 75, - 4, 100, 224, 14, 52, 141, 239, 129, - 28, 193, 105, 248, 200, 8, 76, 113, - 5, 138, 101, 47, 225, 36, 15, 33, - 53, 147, 142, 218, 240, 18, 130, 69, - 29, 181, 194, 125, 106, 39, 249, 185, - 201, 154, 9, 120, 77, 228, 114, 166, - 6, 191, 139, 98, 102, 221, 48, 253, - 226, 152, 37, 179, 16, 145, 34, 136, - 54, 208, 148, 206, 143, 150, 219, 189, - 241, 210, 19, 92, 131, 56, 70, 64, - 30, 66, 182, 163, 195, 72, 126, 110, - 107, 58, 40, 84, 250, 133, 186, 61, - 202, 94, 155, 159, 10, 21, 121, 43, - 78, 212, 229, 172, 115, 243, 167, 87, - 7, 112, 192, 247, 140, 128, 99, 13, - 103, 74, 222, 237, 49, 197, 254, 24, - 227, 165, 153, 119, 38, 184, 180, 124, - 17, 68, 146, 217, 35, 32, 137, 46, - 55, 63, 209, 91, 149, 188, 207, 205, - 144, 135, 151, 178, 220, 252, 190, 97, - 242, 86, 211, 171, 20, 42, 93, 158, - 132, 60, 57, 83, 71, 109, 65, 162, - 31, 45, 67, 216, 183, 123, 164, 118, - 196, 23, 73, 236, 127, 12, 111, 246, - 108, 161, 59, 82, 41, 157, 85, 170, - 251, 96, 134, 177, 187, 204, 62, 90, - 203, 89, 95, 176, 156, 169, 160, 81, - 11, 245, 22, 235, 122, 117, 44, 215, - 79, 174, 213, 233, 230, 231, 173, 232, - 116, 214, 244, 234, 168, 80, 88, 175, -} - -const ( - // The number of elements in the field. - fieldSize = 256 - - // The polynomial used to generate the logarithm table. - // - // There are a number of polynomials that work to generate - // a Galois field of 256 elements. The choice is arbitrary, - // and we just use the first one. - // - // The possibilities are: 29, 43, 45, 77, 95, 99, 101, 105, - //* 113, 135, 141, 169, 195, 207, 231, and 245. - generatingPolynomial = 29 -) - -func main() { - t := generateExpTable() - fmt.Printf("var expTable = %#v\n", t) - //t2 := generateMulTableSplit(t) - //fmt.Printf("var mulTable = %#v\n", t2) - low, high := generateMulTableHalf(t) - fmt.Printf("var mulTableLow = %#v\n", low) - fmt.Printf("var mulTableHigh = %#v\n", high) -} - -/** - * Generates the inverse log table. - */ -func generateExpTable() []byte { - result := make([]byte, fieldSize*2-2) - for i := 1; i < fieldSize; i++ { - log := logTable[i] - result[log] = byte(i) - result[log+fieldSize-1] = byte(i) - } - return result -} - -func generateMulTable(expTable []byte) []byte { - result := make([]byte, 256*256) - for v := range result { - a := byte(v & 0xff) - b := byte(v >> 8) - if a == 0 || b == 0 { - result[v] = 0 - continue - } - logA := int(logTable[a]) - logB := int(logTable[b]) - result[v] = expTable[logA+logB] - } - return result -} - -func generateMulTableSplit(expTable []byte) [256][256]byte { - var result [256][256]byte - for a := range result { - for b := range result[a] { - if a == 0 || b == 0 { - result[a][b] = 0 - continue - } - logA := int(logTable[a]) - logB := int(logTable[b]) - result[a][b] = expTable[logA+logB] - } - } - return result -} - -func generateMulTableHalf(expTable []byte) (low [256][16]byte, high [256][16]byte) { - for a := range low { - for b := range low { - result := 0 - if !(a == 0 || b == 0) { - logA := int(logTable[a]) - logB := int(logTable[b]) - result = int(expTable[logA+logB]) - } - if (b & 0xf) == b { - low[a][b] = byte(result) - } - if (b & 0xf0) == b { - high[a][b>>4] = byte(result) - } - } - } - return -} diff --git a/vendor/github.com/klauspost/reedsolomon/inversion_tree.go b/vendor/github.com/klauspost/reedsolomon/inversion_tree.go deleted file mode 100644 index c9d8ab2..0000000 --- a/vendor/github.com/klauspost/reedsolomon/inversion_tree.go +++ /dev/null @@ -1,160 +0,0 @@ -/** - * A thread-safe tree which caches inverted matrices. - * - * Copyright 2016, Peter Collins - */ - -package reedsolomon - -import ( - "errors" - "sync" -) - -// The tree uses a Reader-Writer mutex to make it thread-safe -// when accessing cached matrices and inserting new ones. -type inversionTree struct { - mutex *sync.RWMutex - root inversionNode -} - -type inversionNode struct { - matrix matrix - children []*inversionNode -} - -// newInversionTree initializes a tree for storing inverted matrices. -// Note that the root node is the identity matrix as it implies -// there were no errors with the original data. -func newInversionTree(dataShards, parityShards int) inversionTree { - identity, _ := identityMatrix(dataShards) - root := inversionNode{ - matrix: identity, - children: make([]*inversionNode, dataShards+parityShards), - } - return inversionTree{ - mutex: &sync.RWMutex{}, - root: root, - } -} - -// GetInvertedMatrix returns the cached inverted matrix or nil if it -// is not found in the tree keyed on the indices of invalid rows. -func (t inversionTree) GetInvertedMatrix(invalidIndices []int) matrix { - // Lock the tree for reading before accessing the tree. - t.mutex.RLock() - defer t.mutex.RUnlock() - - // If no invalid indices were give we should return the root - // identity matrix. - if len(invalidIndices) == 0 { - return t.root.matrix - } - - // Recursively search for the inverted matrix in the tree, passing in - // 0 as the parent index as we start at the root of the tree. - return t.root.getInvertedMatrix(invalidIndices, 0) -} - -// errAlreadySet is returned if the root node matrix is overwritten -var errAlreadySet = errors.New("the root node identity matrix is already set") - -// InsertInvertedMatrix inserts a new inverted matrix into the tree -// keyed by the indices of invalid rows. The total number of shards -// is required for creating the proper length lists of child nodes for -// each node. -func (t inversionTree) InsertInvertedMatrix(invalidIndices []int, matrix matrix, shards int) error { - // If no invalid indices were given then we are done because the - // root node is already set with the identity matrix. - if len(invalidIndices) == 0 { - return errAlreadySet - } - - if !matrix.IsSquare() { - return errNotSquare - } - - // Lock the tree for writing and reading before accessing the tree. - t.mutex.Lock() - defer t.mutex.Unlock() - - // Recursively create nodes for the inverted matrix in the tree until - // we reach the node to insert the matrix to. We start by passing in - // 0 as the parent index as we start at the root of the tree. - t.root.insertInvertedMatrix(invalidIndices, matrix, shards, 0) - - return nil -} - -func (n inversionNode) getInvertedMatrix(invalidIndices []int, parent int) matrix { - // Get the child node to search next from the list of children. The - // list of children starts relative to the parent index passed in - // because the indices of invalid rows is sorted (by default). As we - // search recursively, the first invalid index gets popped off the list, - // so when searching through the list of children, use that first invalid - // index to find the child node. - firstIndex := invalidIndices[0] - node := n.children[firstIndex-parent] - - // If the child node doesn't exist in the list yet, fail fast by - // returning, so we can construct and insert the proper inverted matrix. - if node == nil { - return nil - } - - // If there's more than one invalid index left in the list we should - // keep searching recursively. - if len(invalidIndices) > 1 { - // Search recursively on the child node by passing in the invalid indices - // with the first index popped off the front. Also the parent index to - // pass down is the first index plus one. - return node.getInvertedMatrix(invalidIndices[1:], firstIndex+1) - } - // If there aren't any more invalid indices to search, we've found our - // node. Return it, however keep in mind that the matrix could still be - // nil because intermediary nodes in the tree are created sometimes with - // their inversion matrices uninitialized. - return node.matrix -} - -func (n inversionNode) insertInvertedMatrix(invalidIndices []int, matrix matrix, shards, parent int) { - // As above, get the child node to search next from the list of children. - // The list of children starts relative to the parent index passed in - // because the indices of invalid rows is sorted (by default). As we - // search recursively, the first invalid index gets popped off the list, - // so when searching through the list of children, use that first invalid - // index to find the child node. - firstIndex := invalidIndices[0] - node := n.children[firstIndex-parent] - - // If the child node doesn't exist in the list yet, create a new - // node because we have the writer lock and add it to the list - // of children. - if node == nil { - // Make the length of the list of children equal to the number - // of shards minus the first invalid index because the list of - // invalid indices is sorted, so only this length of errors - // are possible in the tree. - node = &inversionNode{ - children: make([]*inversionNode, shards-firstIndex), - } - // Insert the new node into the tree at the first index relative - // to the parent index that was given in this recursive call. - n.children[firstIndex-parent] = node - } - - // If there's more than one invalid index left in the list we should - // keep searching recursively in order to find the node to add our - // matrix. - if len(invalidIndices) > 1 { - // As above, search recursively on the child node by passing in - // the invalid indices with the first index popped off the front. - // Also the total number of shards and parent index are passed down - // which is equal to the first index plus one. - node.insertInvertedMatrix(invalidIndices[1:], matrix, shards, firstIndex+1) - } else { - // If there aren't any more invalid indices to search, we've found our - // node. Cache the inverted matrix in this node. - node.matrix = matrix - } -} diff --git a/vendor/github.com/klauspost/reedsolomon/matrix.go b/vendor/github.com/klauspost/reedsolomon/matrix.go deleted file mode 100644 index 339913a..0000000 --- a/vendor/github.com/klauspost/reedsolomon/matrix.go +++ /dev/null @@ -1,279 +0,0 @@ -/** - * Matrix Algebra over an 8-bit Galois Field - * - * Copyright 2015, Klaus Post - * Copyright 2015, Backblaze, Inc. - */ - -package reedsolomon - -import ( - "errors" - "fmt" - "strconv" - "strings" -) - -// byte[row][col] -type matrix [][]byte - -// newMatrix returns a matrix of zeros. -func newMatrix(rows, cols int) (matrix, error) { - if rows <= 0 { - return nil, errInvalidRowSize - } - if cols <= 0 { - return nil, errInvalidColSize - } - - m := matrix(make([][]byte, rows)) - for i := range m { - m[i] = make([]byte, cols) - } - return m, nil -} - -// NewMatrixData initializes a matrix with the given row-major data. -// Note that data is not copied from input. -func newMatrixData(data [][]byte) (matrix, error) { - m := matrix(data) - err := m.Check() - if err != nil { - return nil, err - } - return m, nil -} - -// IdentityMatrix returns an identity matrix of the given size. -func identityMatrix(size int) (matrix, error) { - m, err := newMatrix(size, size) - if err != nil { - return nil, err - } - for i := range m { - m[i][i] = 1 - } - return m, nil -} - -// errInvalidRowSize will be returned if attempting to create a matrix with negative or zero row number. -var errInvalidRowSize = errors.New("invalid row size") - -// errInvalidColSize will be returned if attempting to create a matrix with negative or zero column number. -var errInvalidColSize = errors.New("invalid column size") - -// errColSizeMismatch is returned if the size of matrix columns mismatch. -var errColSizeMismatch = errors.New("column size is not the same for all rows") - -func (m matrix) Check() error { - rows := len(m) - if rows <= 0 { - return errInvalidRowSize - } - cols := len(m[0]) - if cols <= 0 { - return errInvalidColSize - } - - for _, col := range m { - if len(col) != cols { - return errColSizeMismatch - } - } - return nil -} - -// String returns a human-readable string of the matrix contents. -// -// Example: [[1, 2], [3, 4]] -func (m matrix) String() string { - rowOut := make([]string, 0, len(m)) - for _, row := range m { - colOut := make([]string, 0, len(row)) - for _, col := range row { - colOut = append(colOut, strconv.Itoa(int(col))) - } - rowOut = append(rowOut, "["+strings.Join(colOut, ", ")+"]") - } - return "[" + strings.Join(rowOut, ", ") + "]" -} - -// Multiply multiplies this matrix (the one on the left) by another -// matrix (the one on the right) and returns a new matrix with the result. -func (m matrix) Multiply(right matrix) (matrix, error) { - if len(m[0]) != len(right) { - return nil, fmt.Errorf("columns on left (%d) is different than rows on right (%d)", len(m[0]), len(right)) - } - result, _ := newMatrix(len(m), len(right[0])) - for r, row := range result { - for c := range row { - var value byte - for i := range m[0] { - value ^= galMultiply(m[r][i], right[i][c]) - } - result[r][c] = value - } - } - return result, nil -} - -// Augment returns the concatenation of this matrix and the matrix on the right. -func (m matrix) Augment(right matrix) (matrix, error) { - if len(m) != len(right) { - return nil, errMatrixSize - } - - result, _ := newMatrix(len(m), len(m[0])+len(right[0])) - for r, row := range m { - for c := range row { - result[r][c] = m[r][c] - } - cols := len(m[0]) - for c := range right[0] { - result[r][cols+c] = right[r][c] - } - } - return result, nil -} - -// errMatrixSize is returned if matrix dimensions are doesn't match. -var errMatrixSize = errors.New("matrix sizes do not match") - -func (m matrix) SameSize(n matrix) error { - if len(m) != len(n) { - return errMatrixSize - } - for i := range m { - if len(m[i]) != len(n[i]) { - return errMatrixSize - } - } - return nil -} - -// Returns a part of this matrix. Data is copied. -func (m matrix) SubMatrix(rmin, cmin, rmax, cmax int) (matrix, error) { - result, err := newMatrix(rmax-rmin, cmax-cmin) - if err != nil { - return nil, err - } - // OPTME: If used heavily, use copy function to copy slice - for r := rmin; r < rmax; r++ { - for c := cmin; c < cmax; c++ { - result[r-rmin][c-cmin] = m[r][c] - } - } - return result, nil -} - -// SwapRows Exchanges two rows in the matrix. -func (m matrix) SwapRows(r1, r2 int) error { - if r1 < 0 || len(m) <= r1 || r2 < 0 || len(m) <= r2 { - return errInvalidRowSize - } - m[r2], m[r1] = m[r1], m[r2] - return nil -} - -// IsSquare will return true if the matrix is square -// and nil if the matrix is square -func (m matrix) IsSquare() bool { - return len(m) == len(m[0]) -} - -// errSingular is returned if the matrix is singular and cannot be inversed -var errSingular = errors.New("matrix is singular") - -// errNotSquare is returned if attempting to inverse a non-square matrix. -var errNotSquare = errors.New("only square matrices can be inverted") - -// Invert returns the inverse of this matrix. -// Returns ErrSingular when the matrix is singular and doesn't have an inverse. -// The matrix must be square, otherwise ErrNotSquare is returned. -func (m matrix) Invert() (matrix, error) { - if !m.IsSquare() { - return nil, errNotSquare - } - - size := len(m) - work, _ := identityMatrix(size) - work, _ = m.Augment(work) - - err := work.gaussianElimination() - if err != nil { - return nil, err - } - - return work.SubMatrix(0, size, size, size*2) -} - -func (m matrix) gaussianElimination() error { - rows := len(m) - columns := len(m[0]) - // Clear out the part below the main diagonal and scale the main - // diagonal to be 1. - for r := 0; r < rows; r++ { - // If the element on the diagonal is 0, find a row below - // that has a non-zero and swap them. - if m[r][r] == 0 { - for rowBelow := r + 1; rowBelow < rows; rowBelow++ { - if m[rowBelow][r] != 0 { - m.SwapRows(r, rowBelow) - break - } - } - } - // If we couldn't find one, the matrix is singular. - if m[r][r] == 0 { - return errSingular - } - // Scale to 1. - if m[r][r] != 1 { - scale := galDivide(1, m[r][r]) - for c := 0; c < columns; c++ { - m[r][c] = galMultiply(m[r][c], scale) - } - } - // Make everything below the 1 be a 0 by subtracting - // a multiple of it. (Subtraction and addition are - // both exclusive or in the Galois field.) - for rowBelow := r + 1; rowBelow < rows; rowBelow++ { - if m[rowBelow][r] != 0 { - scale := m[rowBelow][r] - for c := 0; c < columns; c++ { - m[rowBelow][c] ^= galMultiply(scale, m[r][c]) - } - } - } - } - - // Now clear the part above the main diagonal. - for d := 0; d < rows; d++ { - for rowAbove := 0; rowAbove < d; rowAbove++ { - if m[rowAbove][d] != 0 { - scale := m[rowAbove][d] - for c := 0; c < columns; c++ { - m[rowAbove][c] ^= galMultiply(scale, m[d][c]) - } - - } - } - } - return nil -} - -// Create a Vandermonde matrix, which is guaranteed to have the -// property that any subset of rows that forms a square matrix -// is invertible. -func vandermonde(rows, cols int) (matrix, error) { - result, err := newMatrix(rows, cols) - if err != nil { - return nil, err - } - for r, row := range result { - for c := range row { - result[r][c] = galExp(byte(r), c) - } - } - return result, nil -} diff --git a/vendor/github.com/klauspost/reedsolomon/options.go b/vendor/github.com/klauspost/reedsolomon/options.go deleted file mode 100644 index e8e3c46..0000000 --- a/vendor/github.com/klauspost/reedsolomon/options.go +++ /dev/null @@ -1,111 +0,0 @@ -package reedsolomon - -import ( - "runtime" - - "github.com/klauspost/cpuid" -) - -// Option allows to override processing parameters. -type Option func(*options) - -type options struct { - maxGoroutines int - minSplitSize int - useAVX2, useSSSE3, useSSE2 bool - usePAR1Matrix bool - useCauchy bool - shardSize int -} - -var defaultOptions = options{ - maxGoroutines: 384, - minSplitSize: 1024, -} - -func init() { - if runtime.GOMAXPROCS(0) <= 1 { - defaultOptions.maxGoroutines = 1 - } - // Detect CPU capabilities. - defaultOptions.useSSSE3 = cpuid.CPU.SSSE3() - defaultOptions.useAVX2 = cpuid.CPU.AVX2() - defaultOptions.useSSE2 = cpuid.CPU.SSE2() -} - -// WithMaxGoroutines is the maximum number of goroutines number for encoding & decoding. -// Jobs will be split into this many parts, unless each goroutine would have to process -// less than minSplitSize bytes (set with WithMinSplitSize). -// For the best speed, keep this well above the GOMAXPROCS number for more fine grained -// scheduling. -// If n <= 0, it is ignored. -func WithMaxGoroutines(n int) Option { - return func(o *options) { - if n > 0 { - o.maxGoroutines = n - } - } -} - -// WithAutoGoroutines will adjust the number of goroutines for optimal speed with a -// specific shard size. -// Send in the shard size you expect to send. Other shard sizes will work, but may not -// run at the optimal speed. -// Overwrites WithMaxGoroutines. -// If shardSize <= 0, it is ignored. -func WithAutoGoroutines(shardSize int) Option { - return func(o *options) { - o.shardSize = shardSize - } -} - -// WithMinSplitSize is the minimum encoding size in bytes per goroutine. -// See WithMaxGoroutines on how jobs are split. -// If n <= 0, it is ignored. -func WithMinSplitSize(n int) Option { - return func(o *options) { - if n > 0 { - o.minSplitSize = n - } - } -} - -func withSSE3(enabled bool) Option { - return func(o *options) { - o.useSSSE3 = enabled - } -} - -func withAVX2(enabled bool) Option { - return func(o *options) { - o.useAVX2 = enabled - } -} - -func withSSE2(enabled bool) Option { - return func(o *options) { - o.useSSE2 = enabled - } -} - -// WithPAR1Matrix causes the encoder to build the matrix how PARv1 -// does. Note that the method they use is buggy, and may lead to cases -// where recovery is impossible, even if there are enough parity -// shards. -func WithPAR1Matrix() Option { - return func(o *options) { - o.usePAR1Matrix = true - o.useCauchy = false - } -} - -// WithCauchyMatrix will make the encoder build a Cauchy style matrix. -// The output of this is not compatible with the standard output. -// A Cauchy matrix is faster to generate. This does not affect data throughput, -// but will result in slightly faster start-up time. -func WithCauchyMatrix() Option { - return func(o *options) { - o.useCauchy = true - o.usePAR1Matrix = false - } -} diff --git a/vendor/github.com/klauspost/reedsolomon/reedsolomon.go b/vendor/github.com/klauspost/reedsolomon/reedsolomon.go deleted file mode 100644 index 213d0b4..0000000 --- a/vendor/github.com/klauspost/reedsolomon/reedsolomon.go +++ /dev/null @@ -1,884 +0,0 @@ -/** - * Reed-Solomon Coding over 8-bit values. - * - * Copyright 2015, Klaus Post - * Copyright 2015, Backblaze, Inc. - */ - -// Package reedsolomon enables Erasure Coding in Go -// -// For usage and examples, see https://github.com/klauspost/reedsolomon -// -package reedsolomon - -import ( - "bytes" - "errors" - "io" - "runtime" - "sync" - - "github.com/klauspost/cpuid" -) - -// Encoder is an interface to encode Reed-Salomon parity sets for your data. -type Encoder interface { - // Encodes parity for a set of data shards. - // Input is 'shards' containing data shards followed by parity shards. - // The number of shards must match the number given to New(). - // Each shard is a byte array, and they must all be the same size. - // The parity shards will always be overwritten and the data shards - // will remain the same, so it is safe for you to read from the - // data shards while this is running. - Encode(shards [][]byte) error - - // Verify returns true if the parity shards contain correct data. - // The data is the same format as Encode. No data is modified, so - // you are allowed to read from data while this is running. - Verify(shards [][]byte) (bool, error) - - // Reconstruct will recreate the missing shards if possible. - // - // Given a list of shards, some of which contain data, fills in the - // ones that don't have data. - // - // The length of the array must be equal to the total number of shards. - // You indicate that a shard is missing by setting it to nil or zero-length. - // If a shard is zero-length but has sufficient capacity, that memory will - // be used, otherwise a new []byte will be allocated. - // - // If there are too few shards to reconstruct the missing - // ones, ErrTooFewShards will be returned. - // - // The reconstructed shard set is complete, but integrity is not verified. - // Use the Verify function to check if data set is ok. - Reconstruct(shards [][]byte) error - - // ReconstructData will recreate any missing data shards, if possible. - // - // Given a list of shards, some of which contain data, fills in the - // data shards that don't have data. - // - // The length of the array must be equal to Shards. - // You indicate that a shard is missing by setting it to nil or zero-length. - // If a shard is zero-length but has sufficient capacity, that memory will - // be used, otherwise a new []byte will be allocated. - // - // If there are too few shards to reconstruct the missing - // ones, ErrTooFewShards will be returned. - // - // As the reconstructed shard set may contain missing parity shards, - // calling the Verify function is likely to fail. - ReconstructData(shards [][]byte) error - - // Update parity is use for change a few data shards and update it's parity. - // Input 'newDatashards' containing data shards changed. - // Input 'shards' containing old data shards (if data shard not changed, it can be nil) and old parity shards. - // new parity shards will in shards[DataShards:] - // Update is very useful if DataShards much larger than ParityShards and changed data shards is few. It will - // faster than Encode and not need read all data shards to encode. - Update(shards [][]byte, newDatashards [][]byte) error - - // Split a data slice into the number of shards given to the encoder, - // and create empty parity shards. - // - // The data will be split into equally sized shards. - // If the data size isn't dividable by the number of shards, - // the last shard will contain extra zeros. - // - // There must be at least 1 byte otherwise ErrShortData will be - // returned. - // - // The data will not be copied, except for the last shard, so you - // should not modify the data of the input slice afterwards. - Split(data []byte) ([][]byte, error) - - // Join the shards and write the data segment to dst. - // - // Only the data shards are considered. - // You must supply the exact output size you want. - // If there are to few shards given, ErrTooFewShards will be returned. - // If the total data size is less than outSize, ErrShortData will be returned. - Join(dst io.Writer, shards [][]byte, outSize int) error -} - -// reedSolomon contains a matrix for a specific -// distribution of datashards and parity shards. -// Construct if using New() -type reedSolomon struct { - DataShards int // Number of data shards, should not be modified. - ParityShards int // Number of parity shards, should not be modified. - Shards int // Total number of shards. Calculated, and should not be modified. - m matrix - tree inversionTree - parity [][]byte - o options -} - -// ErrInvShardNum will be returned by New, if you attempt to create -// an Encoder where either data or parity shards is zero or less. -var ErrInvShardNum = errors.New("cannot create Encoder with zero or less data/parity shards") - -// ErrMaxShardNum will be returned by New, if you attempt to create an -// Encoder where data and parity shards are bigger than the order of -// GF(2^8). -var ErrMaxShardNum = errors.New("cannot create Encoder with more than 256 data+parity shards") - -// buildMatrix creates the matrix to use for encoding, given the -// number of data shards and the number of total shards. -// -// The top square of the matrix is guaranteed to be an identity -// matrix, which means that the data shards are unchanged after -// encoding. -func buildMatrix(dataShards, totalShards int) (matrix, error) { - // Start with a Vandermonde matrix. This matrix would work, - // in theory, but doesn't have the property that the data - // shards are unchanged after encoding. - vm, err := vandermonde(totalShards, dataShards) - if err != nil { - return nil, err - } - - // Multiply by the inverse of the top square of the matrix. - // This will make the top square be the identity matrix, but - // preserve the property that any square subset of rows is - // invertible. - top, err := vm.SubMatrix(0, 0, dataShards, dataShards) - if err != nil { - return nil, err - } - - topInv, err := top.Invert() - if err != nil { - return nil, err - } - - return vm.Multiply(topInv) -} - -// buildMatrixPAR1 creates the matrix to use for encoding according to -// the PARv1 spec, given the number of data shards and the number of -// total shards. Note that the method they use is buggy, and may lead -// to cases where recovery is impossible, even if there are enough -// parity shards. -// -// The top square of the matrix is guaranteed to be an identity -// matrix, which means that the data shards are unchanged after -// encoding. -func buildMatrixPAR1(dataShards, totalShards int) (matrix, error) { - result, err := newMatrix(totalShards, dataShards) - if err != nil { - return nil, err - } - - for r, row := range result { - // The top portion of the matrix is the identity - // matrix, and the bottom is a transposed Vandermonde - // matrix starting at 1 instead of 0. - if r < dataShards { - result[r][r] = 1 - } else { - for c := range row { - result[r][c] = galExp(byte(c+1), r-dataShards) - } - } - } - return result, nil -} - -func buildMatrixCauchy(dataShards, totalShards int) (matrix, error) { - result, err := newMatrix(totalShards, dataShards) - if err != nil { - return nil, err - } - - for r, row := range result { - // The top portion of the matrix is the identity - // matrix, and the bottom is a transposed Cauchy matrix. - if r < dataShards { - result[r][r] = 1 - } else { - for c := range row { - result[r][c] = invTable[(byte(r ^ c))] - } - } - } - return result, nil -} - -// New creates a new encoder and initializes it to -// the number of data shards and parity shards that -// you want to use. You can reuse this encoder. -// Note that the maximum number of total shards is 256. -// If no options are supplied, default options are used. -func New(dataShards, parityShards int, opts ...Option) (Encoder, error) { - r := reedSolomon{ - DataShards: dataShards, - ParityShards: parityShards, - Shards: dataShards + parityShards, - o: defaultOptions, - } - - for _, opt := range opts { - opt(&r.o) - } - if dataShards <= 0 || parityShards <= 0 { - return nil, ErrInvShardNum - } - - if dataShards+parityShards > 256 { - return nil, ErrMaxShardNum - } - - var err error - switch { - case r.o.useCauchy: - r.m, err = buildMatrixCauchy(dataShards, r.Shards) - case r.o.usePAR1Matrix: - r.m, err = buildMatrixPAR1(dataShards, r.Shards) - default: - r.m, err = buildMatrix(dataShards, r.Shards) - } - if err != nil { - return nil, err - } - if r.o.shardSize > 0 { - cacheSize := cpuid.CPU.Cache.L2 - if cacheSize <= 0 { - // Set to 128K if undetectable. - cacheSize = 128 << 10 - } - p := runtime.NumCPU() - - // 1 input + parity must fit in cache, and we add one more to be safer. - shards := 1 + parityShards - g := (r.o.shardSize * shards) / (cacheSize - (cacheSize >> 4)) - - if cpuid.CPU.ThreadsPerCore > 1 { - // If multiple threads per core, make sure they don't contend for cache. - g *= cpuid.CPU.ThreadsPerCore - } - g *= 2 - if g < p { - g = p - } - - // Have g be multiple of p - g += p - 1 - g -= g % p - - r.o.maxGoroutines = g - } - - // Inverted matrices are cached in a tree keyed by the indices - // of the invalid rows of the data to reconstruct. - // The inversion root node will have the identity matrix as - // its inversion matrix because it implies there are no errors - // with the original data. - r.tree = newInversionTree(dataShards, parityShards) - - r.parity = make([][]byte, parityShards) - for i := range r.parity { - r.parity[i] = r.m[dataShards+i] - } - - return &r, err -} - -// ErrTooFewShards is returned if too few shards where given to -// Encode/Verify/Reconstruct/Update. It will also be returned from Reconstruct -// if there were too few shards to reconstruct the missing data. -var ErrTooFewShards = errors.New("too few shards given") - -// Encodes parity for a set of data shards. -// An array 'shards' containing data shards followed by parity shards. -// The number of shards must match the number given to New. -// Each shard is a byte array, and they must all be the same size. -// The parity shards will always be overwritten and the data shards -// will remain the same. -func (r reedSolomon) Encode(shards [][]byte) error { - if len(shards) != r.Shards { - return ErrTooFewShards - } - - err := checkShards(shards, false) - if err != nil { - return err - } - - // Get the slice of output buffers. - output := shards[r.DataShards:] - - // Do the coding. - r.codeSomeShards(r.parity, shards[0:r.DataShards], output, r.ParityShards, len(shards[0])) - return nil -} - -// ErrInvalidInput is returned if invalid input parameter of Update. -var ErrInvalidInput = errors.New("invalid input") - -func (r reedSolomon) Update(shards [][]byte, newDatashards [][]byte) error { - if len(shards) != r.Shards { - return ErrTooFewShards - } - - if len(newDatashards) != r.DataShards { - return ErrTooFewShards - } - - err := checkShards(shards, true) - if err != nil { - return err - } - - err = checkShards(newDatashards, true) - if err != nil { - return err - } - - for i := range newDatashards { - if newDatashards[i] != nil && shards[i] == nil { - return ErrInvalidInput - } - } - for _, p := range shards[r.DataShards:] { - if p == nil { - return ErrInvalidInput - } - } - - shardSize := shardSize(shards) - - // Get the slice of output buffers. - output := shards[r.DataShards:] - - // Do the coding. - r.updateParityShards(r.parity, shards[0:r.DataShards], newDatashards[0:r.DataShards], output, r.ParityShards, shardSize) - return nil -} - -func (r reedSolomon) updateParityShards(matrixRows, oldinputs, newinputs, outputs [][]byte, outputCount, byteCount int) { - if r.o.maxGoroutines > 1 && byteCount > r.o.minSplitSize { - r.updateParityShardsP(matrixRows, oldinputs, newinputs, outputs, outputCount, byteCount) - return - } - - for c := 0; c < r.DataShards; c++ { - in := newinputs[c] - if in == nil { - continue - } - oldin := oldinputs[c] - // oldinputs data will be change - sliceXor(in, oldin, r.o.useSSE2) - for iRow := 0; iRow < outputCount; iRow++ { - galMulSliceXor(matrixRows[iRow][c], oldin, outputs[iRow], r.o.useSSSE3, r.o.useAVX2) - } - } -} - -func (r reedSolomon) updateParityShardsP(matrixRows, oldinputs, newinputs, outputs [][]byte, outputCount, byteCount int) { - var wg sync.WaitGroup - do := byteCount / r.o.maxGoroutines - if do < r.o.minSplitSize { - do = r.o.minSplitSize - } - start := 0 - for start < byteCount { - if start+do > byteCount { - do = byteCount - start - } - wg.Add(1) - go func(start, stop int) { - for c := 0; c < r.DataShards; c++ { - in := newinputs[c] - if in == nil { - continue - } - oldin := oldinputs[c] - // oldinputs data will be change - sliceXor(in[start:stop], oldin[start:stop], r.o.useSSE2) - for iRow := 0; iRow < outputCount; iRow++ { - galMulSliceXor(matrixRows[iRow][c], oldin[start:stop], outputs[iRow][start:stop], r.o.useSSSE3, r.o.useAVX2) - } - } - wg.Done() - }(start, start+do) - start += do - } - wg.Wait() -} - -// Verify returns true if the parity shards contain the right data. -// The data is the same format as Encode. No data is modified. -func (r reedSolomon) Verify(shards [][]byte) (bool, error) { - if len(shards) != r.Shards { - return false, ErrTooFewShards - } - err := checkShards(shards, false) - if err != nil { - return false, err - } - - // Slice of buffers being checked. - toCheck := shards[r.DataShards:] - - // Do the checking. - return r.checkSomeShards(r.parity, shards[0:r.DataShards], toCheck, r.ParityShards, len(shards[0])), nil -} - -// Multiplies a subset of rows from a coding matrix by a full set of -// input shards to produce some output shards. -// 'matrixRows' is The rows from the matrix to use. -// 'inputs' An array of byte arrays, each of which is one input shard. -// The number of inputs used is determined by the length of each matrix row. -// outputs Byte arrays where the computed shards are stored. -// The number of outputs computed, and the -// number of matrix rows used, is determined by -// outputCount, which is the number of outputs to compute. -func (r reedSolomon) codeSomeShards(matrixRows, inputs, outputs [][]byte, outputCount, byteCount int) { - if r.o.maxGoroutines > 1 && byteCount > r.o.minSplitSize { - r.codeSomeShardsP(matrixRows, inputs, outputs, outputCount, byteCount) - return - } - for c := 0; c < r.DataShards; c++ { - in := inputs[c] - for iRow := 0; iRow < outputCount; iRow++ { - if c == 0 { - galMulSlice(matrixRows[iRow][c], in, outputs[iRow], r.o.useSSSE3, r.o.useAVX2) - } else { - galMulSliceXor(matrixRows[iRow][c], in, outputs[iRow], r.o.useSSSE3, r.o.useAVX2) - } - } - } -} - -// Perform the same as codeSomeShards, but split the workload into -// several goroutines. -func (r reedSolomon) codeSomeShardsP(matrixRows, inputs, outputs [][]byte, outputCount, byteCount int) { - var wg sync.WaitGroup - do := byteCount / r.o.maxGoroutines - if do < r.o.minSplitSize { - do = r.o.minSplitSize - } - // Make sizes divisible by 16 - do = (do + 15) & (^15) - start := 0 - for start < byteCount { - if start+do > byteCount { - do = byteCount - start - } - wg.Add(1) - go func(start, stop int) { - for c := 0; c < r.DataShards; c++ { - in := inputs[c] - for iRow := 0; iRow < outputCount; iRow++ { - if c == 0 { - galMulSlice(matrixRows[iRow][c], in[start:stop], outputs[iRow][start:stop], r.o.useSSSE3, r.o.useAVX2) - } else { - galMulSliceXor(matrixRows[iRow][c], in[start:stop], outputs[iRow][start:stop], r.o.useSSSE3, r.o.useAVX2) - } - } - } - wg.Done() - }(start, start+do) - start += do - } - wg.Wait() -} - -// checkSomeShards is mostly the same as codeSomeShards, -// except this will check values and return -// as soon as a difference is found. -func (r reedSolomon) checkSomeShards(matrixRows, inputs, toCheck [][]byte, outputCount, byteCount int) bool { - if r.o.maxGoroutines > 1 && byteCount > r.o.minSplitSize { - return r.checkSomeShardsP(matrixRows, inputs, toCheck, outputCount, byteCount) - } - outputs := make([][]byte, len(toCheck)) - for i := range outputs { - outputs[i] = make([]byte, byteCount) - } - for c := 0; c < r.DataShards; c++ { - in := inputs[c] - for iRow := 0; iRow < outputCount; iRow++ { - galMulSliceXor(matrixRows[iRow][c], in, outputs[iRow], r.o.useSSSE3, r.o.useAVX2) - } - } - - for i, calc := range outputs { - if !bytes.Equal(calc, toCheck[i]) { - return false - } - } - return true -} - -func (r reedSolomon) checkSomeShardsP(matrixRows, inputs, toCheck [][]byte, outputCount, byteCount int) bool { - same := true - var mu sync.RWMutex // For above - - var wg sync.WaitGroup - do := byteCount / r.o.maxGoroutines - if do < r.o.minSplitSize { - do = r.o.minSplitSize - } - // Make sizes divisible by 16 - do = (do + 15) & (^15) - start := 0 - for start < byteCount { - if start+do > byteCount { - do = byteCount - start - } - wg.Add(1) - go func(start, do int) { - defer wg.Done() - outputs := make([][]byte, len(toCheck)) - for i := range outputs { - outputs[i] = make([]byte, do) - } - for c := 0; c < r.DataShards; c++ { - mu.RLock() - if !same { - mu.RUnlock() - return - } - mu.RUnlock() - in := inputs[c][start : start+do] - for iRow := 0; iRow < outputCount; iRow++ { - galMulSliceXor(matrixRows[iRow][c], in, outputs[iRow], r.o.useSSSE3, r.o.useAVX2) - } - } - - for i, calc := range outputs { - if !bytes.Equal(calc, toCheck[i][start:start+do]) { - mu.Lock() - same = false - mu.Unlock() - return - } - } - }(start, do) - start += do - } - wg.Wait() - return same -} - -// ErrShardNoData will be returned if there are no shards, -// or if the length of all shards is zero. -var ErrShardNoData = errors.New("no shard data") - -// ErrShardSize is returned if shard length isn't the same for all -// shards. -var ErrShardSize = errors.New("shard sizes do not match") - -// checkShards will check if shards are the same size -// or 0, if allowed. An error is returned if this fails. -// An error is also returned if all shards are size 0. -func checkShards(shards [][]byte, nilok bool) error { - size := shardSize(shards) - if size == 0 { - return ErrShardNoData - } - for _, shard := range shards { - if len(shard) != size { - if len(shard) != 0 || !nilok { - return ErrShardSize - } - } - } - return nil -} - -// shardSize return the size of a single shard. -// The first non-zero size is returned, -// or 0 if all shards are size 0. -func shardSize(shards [][]byte) int { - for _, shard := range shards { - if len(shard) != 0 { - return len(shard) - } - } - return 0 -} - -// Reconstruct will recreate the missing shards, if possible. -// -// Given a list of shards, some of which contain data, fills in the -// ones that don't have data. -// -// The length of the array must be equal to Shards. -// You indicate that a shard is missing by setting it to nil or zero-length. -// If a shard is zero-length but has sufficient capacity, that memory will -// be used, otherwise a new []byte will be allocated. -// -// If there are too few shards to reconstruct the missing -// ones, ErrTooFewShards will be returned. -// -// The reconstructed shard set is complete, but integrity is not verified. -// Use the Verify function to check if data set is ok. -func (r reedSolomon) Reconstruct(shards [][]byte) error { - return r.reconstruct(shards, false) -} - -// ReconstructData will recreate any missing data shards, if possible. -// -// Given a list of shards, some of which contain data, fills in the -// data shards that don't have data. -// -// The length of the array must be equal to Shards. -// You indicate that a shard is missing by setting it to nil or zero-length. -// If a shard is zero-length but has sufficient capacity, that memory will -// be used, otherwise a new []byte will be allocated. -// -// If there are too few shards to reconstruct the missing -// ones, ErrTooFewShards will be returned. -// -// As the reconstructed shard set may contain missing parity shards, -// calling the Verify function is likely to fail. -func (r reedSolomon) ReconstructData(shards [][]byte) error { - return r.reconstruct(shards, true) -} - -// reconstruct will recreate the missing data shards, and unless -// dataOnly is true, also the missing parity shards -// -// The length of the array must be equal to Shards. -// You indicate that a shard is missing by setting it to nil. -// -// If there are too few shards to reconstruct the missing -// ones, ErrTooFewShards will be returned. -func (r reedSolomon) reconstruct(shards [][]byte, dataOnly bool) error { - if len(shards) != r.Shards { - return ErrTooFewShards - } - // Check arguments. - err := checkShards(shards, true) - if err != nil { - return err - } - - shardSize := shardSize(shards) - - // Quick check: are all of the shards present? If so, there's - // nothing to do. - numberPresent := 0 - for i := 0; i < r.Shards; i++ { - if len(shards[i]) != 0 { - numberPresent++ - } - } - if numberPresent == r.Shards { - // Cool. All of the shards data data. We don't - // need to do anything. - return nil - } - - // More complete sanity check - if numberPresent < r.DataShards { - return ErrTooFewShards - } - - // Pull out an array holding just the shards that - // correspond to the rows of the submatrix. These shards - // will be the input to the decoding process that re-creates - // the missing data shards. - // - // Also, create an array of indices of the valid rows we do have - // and the invalid rows we don't have up until we have enough valid rows. - subShards := make([][]byte, r.DataShards) - validIndices := make([]int, r.DataShards) - invalidIndices := make([]int, 0) - subMatrixRow := 0 - for matrixRow := 0; matrixRow < r.Shards && subMatrixRow < r.DataShards; matrixRow++ { - if len(shards[matrixRow]) != 0 { - subShards[subMatrixRow] = shards[matrixRow] - validIndices[subMatrixRow] = matrixRow - subMatrixRow++ - } else { - invalidIndices = append(invalidIndices, matrixRow) - } - } - - // Attempt to get the cached inverted matrix out of the tree - // based on the indices of the invalid rows. - dataDecodeMatrix := r.tree.GetInvertedMatrix(invalidIndices) - - // If the inverted matrix isn't cached in the tree yet we must - // construct it ourselves and insert it into the tree for the - // future. In this way the inversion tree is lazily loaded. - if dataDecodeMatrix == nil { - // Pull out the rows of the matrix that correspond to the - // shards that we have and build a square matrix. This - // matrix could be used to generate the shards that we have - // from the original data. - subMatrix, _ := newMatrix(r.DataShards, r.DataShards) - for subMatrixRow, validIndex := range validIndices { - for c := 0; c < r.DataShards; c++ { - subMatrix[subMatrixRow][c] = r.m[validIndex][c] - } - } - // Invert the matrix, so we can go from the encoded shards - // back to the original data. Then pull out the row that - // generates the shard that we want to decode. Note that - // since this matrix maps back to the original data, it can - // be used to create a data shard, but not a parity shard. - dataDecodeMatrix, err = subMatrix.Invert() - if err != nil { - return err - } - - // Cache the inverted matrix in the tree for future use keyed on the - // indices of the invalid rows. - err = r.tree.InsertInvertedMatrix(invalidIndices, dataDecodeMatrix, r.Shards) - if err != nil { - return err - } - } - - // Re-create any data shards that were missing. - // - // The input to the coding is all of the shards we actually - // have, and the output is the missing data shards. The computation - // is done using the special decode matrix we just built. - outputs := make([][]byte, r.ParityShards) - matrixRows := make([][]byte, r.ParityShards) - outputCount := 0 - - for iShard := 0; iShard < r.DataShards; iShard++ { - if len(shards[iShard]) == 0 { - if cap(shards[iShard]) >= shardSize { - shards[iShard] = shards[iShard][0:shardSize] - } else { - shards[iShard] = make([]byte, shardSize) - } - outputs[outputCount] = shards[iShard] - matrixRows[outputCount] = dataDecodeMatrix[iShard] - outputCount++ - } - } - r.codeSomeShards(matrixRows, subShards, outputs[:outputCount], outputCount, shardSize) - - if dataOnly { - // Exit out early if we are only interested in the data shards - return nil - } - - // Now that we have all of the data shards intact, we can - // compute any of the parity that is missing. - // - // The input to the coding is ALL of the data shards, including - // any that we just calculated. The output is whichever of the - // data shards were missing. - outputCount = 0 - for iShard := r.DataShards; iShard < r.Shards; iShard++ { - if len(shards[iShard]) == 0 { - if cap(shards[iShard]) >= shardSize { - shards[iShard] = shards[iShard][0:shardSize] - } else { - shards[iShard] = make([]byte, shardSize) - } - outputs[outputCount] = shards[iShard] - matrixRows[outputCount] = r.parity[iShard-r.DataShards] - outputCount++ - } - } - r.codeSomeShards(matrixRows, shards[:r.DataShards], outputs[:outputCount], outputCount, shardSize) - return nil -} - -// ErrShortData will be returned by Split(), if there isn't enough data -// to fill the number of shards. -var ErrShortData = errors.New("not enough data to fill the number of requested shards") - -// Split a data slice into the number of shards given to the encoder, -// and create empty parity shards if necessary. -// -// The data will be split into equally sized shards. -// If the data size isn't divisible by the number of shards, -// the last shard will contain extra zeros. -// -// There must be at least 1 byte otherwise ErrShortData will be -// returned. -// -// The data will not be copied, except for the last shard, so you -// should not modify the data of the input slice afterwards. -func (r reedSolomon) Split(data []byte) ([][]byte, error) { - if len(data) == 0 { - return nil, ErrShortData - } - // Calculate number of bytes per data shard. - perShard := (len(data) + r.DataShards - 1) / r.DataShards - - if cap(data) > len(data) { - data = data[:cap(data)] - } - - // Only allocate memory if necessary - if len(data) < (r.Shards * perShard) { - // Pad data to r.Shards*perShard. - padding := make([]byte, (r.Shards*perShard)-len(data)) - data = append(data, padding...) - } - - // Split into equal-length shards. - dst := make([][]byte, r.Shards) - for i := range dst { - dst[i] = data[:perShard] - data = data[perShard:] - } - - return dst, nil -} - -// ErrReconstructRequired is returned if too few data shards are intact and a -// reconstruction is required before you can successfully join the shards. -var ErrReconstructRequired = errors.New("reconstruction required as one or more required data shards are nil") - -// Join the shards and write the data segment to dst. -// -// Only the data shards are considered. -// You must supply the exact output size you want. -// -// If there are to few shards given, ErrTooFewShards will be returned. -// If the total data size is less than outSize, ErrShortData will be returned. -// If one or more required data shards are nil, ErrReconstructRequired will be returned. -func (r reedSolomon) Join(dst io.Writer, shards [][]byte, outSize int) error { - // Do we have enough shards? - if len(shards) < r.DataShards { - return ErrTooFewShards - } - shards = shards[:r.DataShards] - - // Do we have enough data? - size := 0 - for _, shard := range shards { - if shard == nil { - return ErrReconstructRequired - } - size += len(shard) - - // Do we have enough data already? - if size >= outSize { - break - } - } - if size < outSize { - return ErrShortData - } - - // Copy data to dst - write := outSize - for _, shard := range shards { - if write < len(shard) { - _, err := dst.Write(shard[:write]) - return err - } - n, err := dst.Write(shard) - if err != nil { - return err - } - write -= n - } - return nil -} diff --git a/vendor/github.com/klauspost/reedsolomon/streaming.go b/vendor/github.com/klauspost/reedsolomon/streaming.go deleted file mode 100644 index 9e55d73..0000000 --- a/vendor/github.com/klauspost/reedsolomon/streaming.go +++ /dev/null @@ -1,584 +0,0 @@ -/** - * Reed-Solomon Coding over 8-bit values. - * - * Copyright 2015, Klaus Post - * Copyright 2015, Backblaze, Inc. - */ - -package reedsolomon - -import ( - "bytes" - "errors" - "fmt" - "io" - "sync" -) - -// StreamEncoder is an interface to encode Reed-Salomon parity sets for your data. -// It provides a fully streaming interface, and processes data in blocks of up to 4MB. -// -// For small shard sizes, 10MB and below, it is recommended to use the in-memory interface, -// since the streaming interface has a start up overhead. -// -// For all operations, no readers and writers should not assume any order/size of -// individual reads/writes. -// -// For usage examples, see "stream-encoder.go" and "streamdecoder.go" in the examples -// folder. -type StreamEncoder interface { - // Encodes parity shards for a set of data shards. - // - // Input is 'shards' containing readers for data shards followed by parity shards - // io.Writer. - // - // The number of shards must match the number given to NewStream(). - // - // Each reader must supply the same number of bytes. - // - // The parity shards will be written to the writer. - // The number of bytes written will match the input size. - // - // If a data stream returns an error, a StreamReadError type error - // will be returned. If a parity writer returns an error, a - // StreamWriteError will be returned. - Encode(data []io.Reader, parity []io.Writer) error - - // Verify returns true if the parity shards contain correct data. - // - // The number of shards must match the number total data+parity shards - // given to NewStream(). - // - // Each reader must supply the same number of bytes. - // If a shard stream returns an error, a StreamReadError type error - // will be returned. - Verify(shards []io.Reader) (bool, error) - - // Reconstruct will recreate the missing shards if possible. - // - // Given a list of valid shards (to read) and invalid shards (to write) - // - // You indicate that a shard is missing by setting it to nil in the 'valid' - // slice and at the same time setting a non-nil writer in "fill". - // An index cannot contain both non-nil 'valid' and 'fill' entry. - // If both are provided 'ErrReconstructMismatch' is returned. - // - // If there are too few shards to reconstruct the missing - // ones, ErrTooFewShards will be returned. - // - // The reconstructed shard set is complete, but integrity is not verified. - // Use the Verify function to check if data set is ok. - Reconstruct(valid []io.Reader, fill []io.Writer) error - - // Split a an input stream into the number of shards given to the encoder. - // - // The data will be split into equally sized shards. - // If the data size isn't dividable by the number of shards, - // the last shard will contain extra zeros. - // - // You must supply the total size of your input. - // 'ErrShortData' will be returned if it is unable to retrieve the - // number of bytes indicated. - Split(data io.Reader, dst []io.Writer, size int64) (err error) - - // Join the shards and write the data segment to dst. - // - // Only the data shards are considered. - // - // You must supply the exact output size you want. - // If there are to few shards given, ErrTooFewShards will be returned. - // If the total data size is less than outSize, ErrShortData will be returned. - Join(dst io.Writer, shards []io.Reader, outSize int64) error -} - -// StreamReadError is returned when a read error is encountered -// that relates to a supplied stream. -// This will allow you to find out which reader has failed. -type StreamReadError struct { - Err error // The error - Stream int // The stream number on which the error occurred -} - -// Error returns the error as a string -func (s StreamReadError) Error() string { - return fmt.Sprintf("error reading stream %d: %s", s.Stream, s.Err) -} - -// String returns the error as a string -func (s StreamReadError) String() string { - return s.Error() -} - -// StreamWriteError is returned when a write error is encountered -// that relates to a supplied stream. This will allow you to -// find out which reader has failed. -type StreamWriteError struct { - Err error // The error - Stream int // The stream number on which the error occurred -} - -// Error returns the error as a string -func (s StreamWriteError) Error() string { - return fmt.Sprintf("error writing stream %d: %s", s.Stream, s.Err) -} - -// String returns the error as a string -func (s StreamWriteError) String() string { - return s.Error() -} - -// rsStream contains a matrix for a specific -// distribution of datashards and parity shards. -// Construct if using NewStream() -type rsStream struct { - r *reedSolomon - bs int // Block size - // Shard reader - readShards func(dst [][]byte, in []io.Reader) error - // Shard writer - writeShards func(out []io.Writer, in [][]byte) error - creads bool - cwrites bool -} - -// NewStream creates a new encoder and initializes it to -// the number of data shards and parity shards that -// you want to use. You can reuse this encoder. -// Note that the maximum number of data shards is 256. -func NewStream(dataShards, parityShards int, o ...Option) (StreamEncoder, error) { - enc, err := New(dataShards, parityShards, o...) - if err != nil { - return nil, err - } - rs := enc.(*reedSolomon) - r := rsStream{r: rs, bs: 4 << 20} - r.readShards = readShards - r.writeShards = writeShards - return &r, err -} - -// NewStreamC creates a new encoder and initializes it to -// the number of data shards and parity shards given. -// -// This functions as 'NewStream', but allows you to enable CONCURRENT reads and writes. -func NewStreamC(dataShards, parityShards int, conReads, conWrites bool, o ...Option) (StreamEncoder, error) { - enc, err := New(dataShards, parityShards, o...) - if err != nil { - return nil, err - } - rs := enc.(*reedSolomon) - r := rsStream{r: rs, bs: 4 << 20} - r.readShards = readShards - r.writeShards = writeShards - if conReads { - r.readShards = cReadShards - } - if conWrites { - r.writeShards = cWriteShards - } - return &r, err -} - -func createSlice(n, length int) [][]byte { - out := make([][]byte, n) - for i := range out { - out[i] = make([]byte, length) - } - return out -} - -// Encodes parity shards for a set of data shards. -// -// Input is 'shards' containing readers for data shards followed by parity shards -// io.Writer. -// -// The number of shards must match the number given to NewStream(). -// -// Each reader must supply the same number of bytes. -// -// The parity shards will be written to the writer. -// The number of bytes written will match the input size. -// -// If a data stream returns an error, a StreamReadError type error -// will be returned. If a parity writer returns an error, a -// StreamWriteError will be returned. -func (r rsStream) Encode(data []io.Reader, parity []io.Writer) error { - if len(data) != r.r.DataShards { - return ErrTooFewShards - } - - if len(parity) != r.r.ParityShards { - return ErrTooFewShards - } - - all := createSlice(r.r.Shards, r.bs) - in := all[:r.r.DataShards] - out := all[r.r.DataShards:] - read := 0 - - for { - err := r.readShards(in, data) - switch err { - case nil: - case io.EOF: - if read == 0 { - return ErrShardNoData - } - return nil - default: - return err - } - out = trimShards(out, shardSize(in)) - read += shardSize(in) - err = r.r.Encode(all) - if err != nil { - return err - } - err = r.writeShards(parity, out) - if err != nil { - return err - } - } -} - -// Trim the shards so they are all the same size -func trimShards(in [][]byte, size int) [][]byte { - for i := range in { - if in[i] != nil { - in[i] = in[i][0:size] - } - if len(in[i]) < size { - in[i] = nil - } - } - return in -} - -func readShards(dst [][]byte, in []io.Reader) error { - if len(in) != len(dst) { - panic("internal error: in and dst size do not match") - } - size := -1 - for i := range in { - if in[i] == nil { - dst[i] = nil - continue - } - n, err := io.ReadFull(in[i], dst[i]) - // The error is EOF only if no bytes were read. - // If an EOF happens after reading some but not all the bytes, - // ReadFull returns ErrUnexpectedEOF. - switch err { - case io.ErrUnexpectedEOF, io.EOF: - if size < 0 { - size = n - } else if n != size { - // Shard sizes must match. - return ErrShardSize - } - dst[i] = dst[i][0:n] - case nil: - continue - default: - return StreamReadError{Err: err, Stream: i} - } - } - if size == 0 { - return io.EOF - } - return nil -} - -func writeShards(out []io.Writer, in [][]byte) error { - if len(out) != len(in) { - panic("internal error: in and out size do not match") - } - for i := range in { - if out[i] == nil { - continue - } - n, err := out[i].Write(in[i]) - if err != nil { - return StreamWriteError{Err: err, Stream: i} - } - // - if n != len(in[i]) { - return StreamWriteError{Err: io.ErrShortWrite, Stream: i} - } - } - return nil -} - -type readResult struct { - n int - size int - err error -} - -// cReadShards reads shards concurrently -func cReadShards(dst [][]byte, in []io.Reader) error { - if len(in) != len(dst) { - panic("internal error: in and dst size do not match") - } - var wg sync.WaitGroup - wg.Add(len(in)) - res := make(chan readResult, len(in)) - for i := range in { - if in[i] == nil { - dst[i] = nil - wg.Done() - continue - } - go func(i int) { - defer wg.Done() - n, err := io.ReadFull(in[i], dst[i]) - // The error is EOF only if no bytes were read. - // If an EOF happens after reading some but not all the bytes, - // ReadFull returns ErrUnexpectedEOF. - res <- readResult{size: n, err: err, n: i} - - }(i) - } - wg.Wait() - close(res) - size := -1 - for r := range res { - switch r.err { - case io.ErrUnexpectedEOF, io.EOF: - if size < 0 { - size = r.size - } else if r.size != size { - // Shard sizes must match. - return ErrShardSize - } - dst[r.n] = dst[r.n][0:r.size] - case nil: - default: - return StreamReadError{Err: r.err, Stream: r.n} - } - } - if size == 0 { - return io.EOF - } - return nil -} - -// cWriteShards writes shards concurrently -func cWriteShards(out []io.Writer, in [][]byte) error { - if len(out) != len(in) { - panic("internal error: in and out size do not match") - } - var errs = make(chan error, len(out)) - var wg sync.WaitGroup - wg.Add(len(out)) - for i := range in { - go func(i int) { - defer wg.Done() - if out[i] == nil { - errs <- nil - return - } - n, err := out[i].Write(in[i]) - if err != nil { - errs <- StreamWriteError{Err: err, Stream: i} - return - } - if n != len(in[i]) { - errs <- StreamWriteError{Err: io.ErrShortWrite, Stream: i} - } - }(i) - } - wg.Wait() - close(errs) - for err := range errs { - if err != nil { - return err - } - } - - return nil -} - -// Verify returns true if the parity shards contain correct data. -// -// The number of shards must match the number total data+parity shards -// given to NewStream(). -// -// Each reader must supply the same number of bytes. -// If a shard stream returns an error, a StreamReadError type error -// will be returned. -func (r rsStream) Verify(shards []io.Reader) (bool, error) { - if len(shards) != r.r.Shards { - return false, ErrTooFewShards - } - - read := 0 - all := createSlice(r.r.Shards, r.bs) - for { - err := r.readShards(all, shards) - if err == io.EOF { - if read == 0 { - return false, ErrShardNoData - } - return true, nil - } - if err != nil { - return false, err - } - read += shardSize(all) - ok, err := r.r.Verify(all) - if !ok || err != nil { - return ok, err - } - } -} - -// ErrReconstructMismatch is returned by the StreamEncoder, if you supply -// "valid" and "fill" streams on the same index. -// Therefore it is impossible to see if you consider the shard valid -// or would like to have it reconstructed. -var ErrReconstructMismatch = errors.New("valid shards and fill shards are mutually exclusive") - -// Reconstruct will recreate the missing shards if possible. -// -// Given a list of valid shards (to read) and invalid shards (to write) -// -// You indicate that a shard is missing by setting it to nil in the 'valid' -// slice and at the same time setting a non-nil writer in "fill". -// An index cannot contain both non-nil 'valid' and 'fill' entry. -// -// If there are too few shards to reconstruct the missing -// ones, ErrTooFewShards will be returned. -// -// The reconstructed shard set is complete when explicitly asked for all missing shards. -// However its integrity is not automatically verified. -// Use the Verify function to check in case the data set is complete. -func (r rsStream) Reconstruct(valid []io.Reader, fill []io.Writer) error { - if len(valid) != r.r.Shards { - return ErrTooFewShards - } - if len(fill) != r.r.Shards { - return ErrTooFewShards - } - - all := createSlice(r.r.Shards, r.bs) - reconDataOnly := true - for i := range valid { - if valid[i] != nil && fill[i] != nil { - return ErrReconstructMismatch - } - if i >= r.r.DataShards && fill[i] != nil { - reconDataOnly = false - } - } - - read := 0 - for { - err := r.readShards(all, valid) - if err == io.EOF { - if read == 0 { - return ErrShardNoData - } - return nil - } - if err != nil { - return err - } - read += shardSize(all) - all = trimShards(all, shardSize(all)) - - if reconDataOnly { - err = r.r.ReconstructData(all) // just reconstruct missing data shards - } else { - err = r.r.Reconstruct(all) // reconstruct all missing shards - } - if err != nil { - return err - } - err = r.writeShards(fill, all) - if err != nil { - return err - } - } -} - -// Join the shards and write the data segment to dst. -// -// Only the data shards are considered. -// -// You must supply the exact output size you want. -// If there are to few shards given, ErrTooFewShards will be returned. -// If the total data size is less than outSize, ErrShortData will be returned. -func (r rsStream) Join(dst io.Writer, shards []io.Reader, outSize int64) error { - // Do we have enough shards? - if len(shards) < r.r.DataShards { - return ErrTooFewShards - } - - // Trim off parity shards if any - shards = shards[:r.r.DataShards] - for i := range shards { - if shards[i] == nil { - return StreamReadError{Err: ErrShardNoData, Stream: i} - } - } - // Join all shards - src := io.MultiReader(shards...) - - // Copy data to dst - n, err := io.CopyN(dst, src, outSize) - if err == io.EOF { - return ErrShortData - } - if err != nil { - return err - } - if n != outSize { - return ErrShortData - } - return nil -} - -// Split a an input stream into the number of shards given to the encoder. -// -// The data will be split into equally sized shards. -// If the data size isn't dividable by the number of shards, -// the last shard will contain extra zeros. -// -// You must supply the total size of your input. -// 'ErrShortData' will be returned if it is unable to retrieve the -// number of bytes indicated. -func (r rsStream) Split(data io.Reader, dst []io.Writer, size int64) error { - if size == 0 { - return ErrShortData - } - if len(dst) != r.r.DataShards { - return ErrInvShardNum - } - - for i := range dst { - if dst[i] == nil { - return StreamWriteError{Err: ErrShardNoData, Stream: i} - } - } - - // Calculate number of bytes per shard. - perShard := (size + int64(r.r.DataShards) - 1) / int64(r.r.DataShards) - - // Pad data to r.Shards*perShard. - padding := make([]byte, (int64(r.r.Shards)*perShard)-size) - data = io.MultiReader(data, bytes.NewBuffer(padding)) - - // Split into equal-length shards and copy. - for i := range dst { - n, err := io.CopyN(dst[i], data, perShard) - if err != io.EOF && err != nil { - return err - } - if n != perShard { - return ErrShortData - } - } - - return nil -} diff --git a/vendor/github.com/pierrec/lz4/LICENSE b/vendor/github.com/pierrec/lz4/LICENSE deleted file mode 100644 index bd899d8..0000000 --- a/vendor/github.com/pierrec/lz4/LICENSE +++ /dev/null @@ -1,28 +0,0 @@ -Copyright (c) 2015, Pierre Curto -All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are met: - -* Redistributions of source code must retain the above copyright notice, this - list of conditions and the following disclaimer. - -* Redistributions in binary form must reproduce the above copyright notice, - this list of conditions and the following disclaimer in the documentation - and/or other materials provided with the distribution. - -* Neither the name of xxHash nor the names of its - contributors may be used to endorse or promote products derived from - this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" -AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE -IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE -DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE -FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL -DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR -SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER -CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, -OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - diff --git a/vendor/github.com/pierrec/lz4/README.md b/vendor/github.com/pierrec/lz4/README.md deleted file mode 100644 index e71ebd5..0000000 --- a/vendor/github.com/pierrec/lz4/README.md +++ /dev/null @@ -1,24 +0,0 @@ -[![godoc](https://godoc.org/github.com/pierrec/lz4?status.png)](https://godoc.org/github.com/pierrec/lz4) - -# lz4 -LZ4 compression and decompression in pure Go. - -## Usage - -```go -import "github.com/pierrec/lz4/v2" -``` - -## Description -Package lz4 implements reading and writing lz4 compressed data (a frame), -as specified in http://fastcompression.blogspot.fr/2013/04/lz4-streaming-format-final.html. - -This package is **compatible with the LZ4 frame format** although the block level compression -and decompression functions are exposed and are fully compatible with the lz4 block format -definition, they are low level and should not be used directly. - -For a complete description of an lz4 compressed block, see: -http://fastcompression.blogspot.fr/2011/05/lz4-explained.html - -See https://github.com/Cyan4973/lz4 for the reference C implementation. - diff --git a/vendor/github.com/pierrec/lz4/block.go b/vendor/github.com/pierrec/lz4/block.go deleted file mode 100644 index 00b1111..0000000 --- a/vendor/github.com/pierrec/lz4/block.go +++ /dev/null @@ -1,397 +0,0 @@ -package lz4 - -import ( - "encoding/binary" - "errors" -) - -var ( - // ErrInvalidSourceShortBuffer is returned by UncompressBlock or CompressBLock when a compressed - // block is corrupted or the destination buffer is not large enough for the uncompressed data. - ErrInvalidSourceShortBuffer = errors.New("lz4: invalid source or destination buffer too short") - // ErrInvalid is returned when reading an invalid LZ4 archive. - ErrInvalid = errors.New("lz4: bad magic number") -) - -// blockHash hashes 4 bytes into a value < winSize. -func blockHash(x uint32) uint32 { - const hasher uint32 = 2654435761 // Knuth multiplicative hash. - return x * hasher >> hashShift -} - -// CompressBlockBound returns the maximum size of a given buffer of size n, when not compressible. -func CompressBlockBound(n int) int { - return n + n/255 + 16 -} - -// UncompressBlock uncompresses the source buffer into the destination one, -// and returns the uncompressed size. -// -// The destination buffer must be sized appropriately. -// -// An error is returned if the source data is invalid or the destination buffer is too small. -func UncompressBlock(src, dst []byte) (si int, err error) { - defer func() { - // It is now faster to let the runtime panic and recover on out of bound slice access - // than checking indices as we go along. - if recover() != nil { - err = ErrInvalidSourceShortBuffer - } - }() - sn := len(src) - if sn == 0 { - return 0, nil - } - var di int - - for { - // Literals and match lengths (token). - b := int(src[si]) - si++ - - // Literals. - if lLen := b >> 4; lLen > 0 { - if lLen == 0xF { - for src[si] == 0xFF { - lLen += 0xFF - si++ - } - lLen += int(src[si]) - si++ - } - i := si - si += lLen - di += copy(dst[di:], src[i:si]) - - if si >= sn { - return di, nil - } - } - - si++ - _ = src[si] // Bound check elimination. - offset := int(src[si-1]) | int(src[si])<<8 - si++ - - // Match. - mLen := b & 0xF - if mLen == 0xF { - for src[si] == 0xFF { - mLen += 0xFF - si++ - } - mLen += int(src[si]) - si++ - } - mLen += minMatch - - // Copy the match. - i := di - offset - if offset > 0 && mLen >= offset { - // Efficiently copy the match dst[di-offset:di] into the dst slice. - bytesToCopy := offset * (mLen / offset) - expanded := dst[i:] - for n := offset; n <= bytesToCopy+offset; n *= 2 { - copy(expanded[n:], expanded[:n]) - } - di += bytesToCopy - mLen -= bytesToCopy - } - di += copy(dst[di:], dst[i:i+mLen]) - } -} - -// CompressBlock compresses the source buffer into the destination one. -// This is the fast version of LZ4 compression and also the default one. -// The size of hashTable must be at least 64Kb. -// -// The size of the compressed data is returned. If it is 0 and no error, then the data is incompressible. -// -// An error is returned if the destination buffer is too small. -func CompressBlock(src, dst []byte, hashTable []int) (di int, err error) { - defer func() { - if recover() != nil { - err = ErrInvalidSourceShortBuffer - } - }() - - sn, dn := len(src)-mfLimit, len(dst) - if sn <= 0 || dn == 0 { - return 0, nil - } - var si int - - // Fast scan strategy: the hash table only stores the last 4 bytes sequences. - // const accInit = 1 << skipStrength - - anchor := si // Position of the current literals. - // acc := accInit // Variable step: improves performance on non-compressible data. - - for si < sn { - // Hash the next 4 bytes (sequence)... - match := binary.LittleEndian.Uint32(src[si:]) - h := blockHash(match) - - ref := hashTable[h] - hashTable[h] = si - if ref >= sn { // Invalid reference (dirty hashtable). - si++ - continue - } - offset := si - ref - if offset <= 0 || offset >= winSize || // Out of window. - match != binary.LittleEndian.Uint32(src[ref:]) { // Hash collision on different matches. - // si += acc >> skipStrength - // acc++ - si++ - continue - } - - // Match found. - // acc = accInit - lLen := si - anchor // Literal length. - - // Encode match length part 1. - si += minMatch - mLen := si // Match length has minMatch already. - // Find the longest match, first looking by batches of 8 bytes. - for si < sn && binary.LittleEndian.Uint64(src[si:]) == binary.LittleEndian.Uint64(src[si-offset:]) { - si += 8 - } - // Then byte by byte. - for si < sn && src[si] == src[si-offset] { - si++ - } - - mLen = si - mLen - if mLen < 0xF { - dst[di] = byte(mLen) - } else { - dst[di] = 0xF - } - - // Encode literals length. - if lLen < 0xF { - dst[di] |= byte(lLen << 4) - } else { - dst[di] |= 0xF0 - di++ - l := lLen - 0xF - for ; l >= 0xFF; l -= 0xFF { - dst[di] = 0xFF - di++ - } - dst[di] = byte(l) - } - di++ - - // Literals. - copy(dst[di:], src[anchor:anchor+lLen]) - di += lLen + 2 - anchor = si - - // Encode offset. - _ = dst[di] // Bound check elimination. - dst[di-2], dst[di-1] = byte(offset), byte(offset>>8) - - // Encode match length part 2. - if mLen >= 0xF { - for mLen -= 0xF; mLen >= 0xFF; mLen -= 0xFF { - dst[di] = 0xFF - di++ - } - dst[di] = byte(mLen) - di++ - } - } - - if anchor == 0 { - // Incompressible. - return 0, nil - } - - // Last literals. - lLen := len(src) - anchor - if lLen < 0xF { - dst[di] = byte(lLen << 4) - } else { - dst[di] = 0xF0 - di++ - for lLen -= 0xF; lLen >= 0xFF; lLen -= 0xFF { - dst[di] = 0xFF - di++ - } - dst[di] = byte(lLen) - } - di++ - - // Write the last literals. - if di >= anchor { - // Incompressible. - return 0, nil - } - di += copy(dst[di:], src[anchor:]) - return di, nil -} - -// CompressBlockHC compresses the source buffer src into the destination dst -// with max search depth (use 0 or negative value for no max). -// -// CompressBlockHC compression ratio is better than CompressBlock but it is also slower. -// -// The size of the compressed data is returned. If it is 0 and no error, then the data is not compressible. -// -// An error is returned if the destination buffer is too small. -func CompressBlockHC(src, dst []byte, depth int) (di int, err error) { - defer func() { - if recover() != nil { - err = ErrInvalidSourceShortBuffer - } - }() - - sn, dn := len(src)-mfLimit, len(dst) - if sn <= 0 || dn == 0 { - return 0, nil - } - var si int - - // hashTable: stores the last position found for a given hash - // chaingTable: stores previous positions for a given hash - var hashTable, chainTable [winSize]int - - if depth <= 0 { - depth = winSize - } - - anchor := si - for si < sn { - // Hash the next 4 bytes (sequence). - match := binary.LittleEndian.Uint32(src[si:]) - h := blockHash(match) - - // Follow the chain until out of window and give the longest match. - mLen := 0 - offset := 0 - for next, try := hashTable[h], depth; try > 0 && next > 0 && si-next < winSize; next = chainTable[next&winMask] { - // The first (mLen==0) or next byte (mLen>=minMatch) at current match length - // must match to improve on the match length. - if src[next+mLen] != src[si+mLen] { - continue - } - ml := 0 - // Compare the current position with a previous with the same hash. - for ml < sn-si && binary.LittleEndian.Uint64(src[next+ml:]) == binary.LittleEndian.Uint64(src[si+ml:]) { - ml += 8 - } - for ml < sn-si && src[next+ml] == src[si+ml] { - ml++ - } - if ml < minMatch || ml <= mLen { - // Match too small ( winStart { - winStart = ws - } - for si, ml := winStart, si+mLen; si < ml; { - match >>= 8 - match |= uint32(src[si+3]) << 24 - h := blockHash(match) - chainTable[si&winMask] = hashTable[h] - hashTable[h] = si - si++ - } - - lLen := si - anchor - si += mLen - mLen -= minMatch // Match length does not include minMatch. - - if mLen < 0xF { - dst[di] = byte(mLen) - } else { - dst[di] = 0xF - } - - // Encode literals length. - if lLen < 0xF { - dst[di] |= byte(lLen << 4) - } else { - dst[di] |= 0xF0 - di++ - l := lLen - 0xF - for ; l >= 0xFF; l -= 0xFF { - dst[di] = 0xFF - di++ - } - dst[di] = byte(l) - } - di++ - - // Literals. - copy(dst[di:], src[anchor:anchor+lLen]) - di += lLen - anchor = si - - // Encode offset. - di += 2 - dst[di-2], dst[di-1] = byte(offset), byte(offset>>8) - - // Encode match length part 2. - if mLen >= 0xF { - for mLen -= 0xF; mLen >= 0xFF; mLen -= 0xFF { - dst[di] = 0xFF - di++ - } - dst[di] = byte(mLen) - di++ - } - } - - if anchor == 0 { - // Incompressible. - return 0, nil - } - - // Last literals. - lLen := len(src) - anchor - if lLen < 0xF { - dst[di] = byte(lLen << 4) - } else { - dst[di] = 0xF0 - di++ - lLen -= 0xF - for ; lLen >= 0xFF; lLen -= 0xFF { - dst[di] = 0xFF - di++ - } - dst[di] = byte(lLen) - } - di++ - - // Write the last literals. - if di >= anchor { - // Incompressible. - return 0, nil - } - di += copy(dst[di:], src[anchor:]) - return di, nil -} diff --git a/vendor/github.com/pierrec/lz4/debug.go b/vendor/github.com/pierrec/lz4/debug.go deleted file mode 100644 index bc5e78d..0000000 --- a/vendor/github.com/pierrec/lz4/debug.go +++ /dev/null @@ -1,23 +0,0 @@ -// +build lz4debug - -package lz4 - -import ( - "fmt" - "os" - "path/filepath" - "runtime" -) - -const debugFlag = true - -func debug(args ...interface{}) { - _, file, line, _ := runtime.Caller(1) - file = filepath.Base(file) - - f := fmt.Sprintf("LZ4: %s:%d %s", file, line, args[0]) - if f[len(f)-1] != '\n' { - f += "\n" - } - fmt.Fprintf(os.Stderr, f, args[1:]...) -} diff --git a/vendor/github.com/pierrec/lz4/debug_stub.go b/vendor/github.com/pierrec/lz4/debug_stub.go deleted file mode 100644 index 44211ad..0000000 --- a/vendor/github.com/pierrec/lz4/debug_stub.go +++ /dev/null @@ -1,7 +0,0 @@ -// +build !lz4debug - -package lz4 - -const debugFlag = false - -func debug(args ...interface{}) {} diff --git a/vendor/github.com/pierrec/lz4/go.mod b/vendor/github.com/pierrec/lz4/go.mod deleted file mode 100644 index f9f570a..0000000 --- a/vendor/github.com/pierrec/lz4/go.mod +++ /dev/null @@ -1,3 +0,0 @@ -module github.com/pierrec/lz4 - -require github.com/pkg/profile v1.2.1 diff --git a/vendor/github.com/pierrec/lz4/go.sum b/vendor/github.com/pierrec/lz4/go.sum deleted file mode 100644 index 6ca7598..0000000 --- a/vendor/github.com/pierrec/lz4/go.sum +++ /dev/null @@ -1,2 +0,0 @@ -github.com/pkg/profile v1.2.1 h1:F++O52m40owAmADcojzM+9gyjmMOY/T4oYJkgFDH8RE= -github.com/pkg/profile v1.2.1/go.mod h1:hJw3o1OdXxsrSjjVksARp5W95eeEaEfptyVZyv6JUPA= diff --git a/vendor/github.com/pierrec/lz4/internal/xxh32/xxh32zero.go b/vendor/github.com/pierrec/lz4/internal/xxh32/xxh32zero.go deleted file mode 100644 index 850a6fd..0000000 --- a/vendor/github.com/pierrec/lz4/internal/xxh32/xxh32zero.go +++ /dev/null @@ -1,222 +0,0 @@ -// Package xxh32 implements the very fast XXH hashing algorithm (32 bits version). -// (https://github.com/Cyan4973/XXH/) -package xxh32 - -import ( - "encoding/binary" -) - -const ( - prime32_1 uint32 = 2654435761 - prime32_2 uint32 = 2246822519 - prime32_3 uint32 = 3266489917 - prime32_4 uint32 = 668265263 - prime32_5 uint32 = 374761393 - - prime32_1plus2 uint32 = 606290984 - prime32_minus1 uint32 = 1640531535 -) - -// XXHZero represents an xxhash32 object with seed 0. -type XXHZero struct { - v1 uint32 - v2 uint32 - v3 uint32 - v4 uint32 - totalLen uint64 - buf [16]byte - bufused int -} - -// Sum appends the current hash to b and returns the resulting slice. -// It does not change the underlying hash state. -func (xxh XXHZero) Sum(b []byte) []byte { - h32 := xxh.Sum32() - return append(b, byte(h32), byte(h32>>8), byte(h32>>16), byte(h32>>24)) -} - -// Reset resets the Hash to its initial state. -func (xxh *XXHZero) Reset() { - xxh.v1 = prime32_1plus2 - xxh.v2 = prime32_2 - xxh.v3 = 0 - xxh.v4 = prime32_minus1 - xxh.totalLen = 0 - xxh.bufused = 0 -} - -// Size returns the number of bytes returned by Sum(). -func (xxh *XXHZero) Size() int { - return 4 -} - -// BlockSize gives the minimum number of bytes accepted by Write(). -func (xxh *XXHZero) BlockSize() int { - return 1 -} - -// Write adds input bytes to the Hash. -// It never returns an error. -func (xxh *XXHZero) Write(input []byte) (int, error) { - if xxh.totalLen == 0 { - xxh.Reset() - } - n := len(input) - m := xxh.bufused - - xxh.totalLen += uint64(n) - - r := len(xxh.buf) - m - if n < r { - copy(xxh.buf[m:], input) - xxh.bufused += len(input) - return n, nil - } - - p := 0 - // Causes compiler to work directly from registers instead of stack: - v1, v2, v3, v4 := xxh.v1, xxh.v2, xxh.v3, xxh.v4 - if m > 0 { - // some data left from previous update - copy(xxh.buf[xxh.bufused:], input[:r]) - xxh.bufused += len(input) - r - - // fast rotl(13) - buf := xxh.buf[:16] // BCE hint. - v1 = rol13(v1+binary.LittleEndian.Uint32(buf[:])*prime32_2) * prime32_1 - v2 = rol13(v2+binary.LittleEndian.Uint32(buf[4:])*prime32_2) * prime32_1 - v3 = rol13(v3+binary.LittleEndian.Uint32(buf[8:])*prime32_2) * prime32_1 - v4 = rol13(v4+binary.LittleEndian.Uint32(buf[12:])*prime32_2) * prime32_1 - p = r - xxh.bufused = 0 - } - - for n := n - 16; p <= n; p += 16 { - sub := input[p:][:16] //BCE hint for compiler - v1 = rol13(v1+binary.LittleEndian.Uint32(sub[:])*prime32_2) * prime32_1 - v2 = rol13(v2+binary.LittleEndian.Uint32(sub[4:])*prime32_2) * prime32_1 - v3 = rol13(v3+binary.LittleEndian.Uint32(sub[8:])*prime32_2) * prime32_1 - v4 = rol13(v4+binary.LittleEndian.Uint32(sub[12:])*prime32_2) * prime32_1 - } - xxh.v1, xxh.v2, xxh.v3, xxh.v4 = v1, v2, v3, v4 - - copy(xxh.buf[xxh.bufused:], input[p:]) - xxh.bufused += len(input) - p - - return n, nil -} - -// Sum32 returns the 32 bits Hash value. -func (xxh *XXHZero) Sum32() uint32 { - h32 := uint32(xxh.totalLen) - if h32 >= 16 { - h32 += rol1(xxh.v1) + rol7(xxh.v2) + rol12(xxh.v3) + rol18(xxh.v4) - } else { - h32 += prime32_5 - } - - p := 0 - n := xxh.bufused - buf := xxh.buf - for n := n - 4; p <= n; p += 4 { - h32 += binary.LittleEndian.Uint32(buf[p:p+4]) * prime32_3 - h32 = rol17(h32) * prime32_4 - } - for ; p < n; p++ { - h32 += uint32(buf[p]) * prime32_5 - h32 = rol11(h32) * prime32_1 - } - - h32 ^= h32 >> 15 - h32 *= prime32_2 - h32 ^= h32 >> 13 - h32 *= prime32_3 - h32 ^= h32 >> 16 - - return h32 -} - -// ChecksumZero returns the 32bits Hash value. -func ChecksumZero(input []byte) uint32 { - n := len(input) - h32 := uint32(n) - - if n < 16 { - h32 += prime32_5 - } else { - v1 := prime32_1plus2 - v2 := prime32_2 - v3 := uint32(0) - v4 := prime32_minus1 - p := 0 - for n := n - 16; p <= n; p += 16 { - sub := input[p:][:16] //BCE hint for compiler - v1 = rol13(v1+binary.LittleEndian.Uint32(sub[:])*prime32_2) * prime32_1 - v2 = rol13(v2+binary.LittleEndian.Uint32(sub[4:])*prime32_2) * prime32_1 - v3 = rol13(v3+binary.LittleEndian.Uint32(sub[8:])*prime32_2) * prime32_1 - v4 = rol13(v4+binary.LittleEndian.Uint32(sub[12:])*prime32_2) * prime32_1 - } - input = input[p:] - n -= p - h32 += rol1(v1) + rol7(v2) + rol12(v3) + rol18(v4) - } - - p := 0 - for n := n - 4; p <= n; p += 4 { - h32 += binary.LittleEndian.Uint32(input[p:p+4]) * prime32_3 - h32 = rol17(h32) * prime32_4 - } - for p < n { - h32 += uint32(input[p]) * prime32_5 - h32 = rol11(h32) * prime32_1 - p++ - } - - h32 ^= h32 >> 15 - h32 *= prime32_2 - h32 ^= h32 >> 13 - h32 *= prime32_3 - h32 ^= h32 >> 16 - - return h32 -} - -// Uint32Zero hashes x with seed 0. -func Uint32Zero(x uint32) uint32 { - h := prime32_5 + 4 + x*prime32_3 - h = rol17(h) * prime32_4 - h ^= h >> 15 - h *= prime32_2 - h ^= h >> 13 - h *= prime32_3 - h ^= h >> 16 - return h -} - -func rol1(u uint32) uint32 { - return u<<1 | u>>31 -} - -func rol7(u uint32) uint32 { - return u<<7 | u>>25 -} - -func rol11(u uint32) uint32 { - return u<<11 | u>>21 -} - -func rol12(u uint32) uint32 { - return u<<12 | u>>20 -} - -func rol13(u uint32) uint32 { - return u<<13 | u>>19 -} - -func rol17(u uint32) uint32 { - return u<<17 | u>>15 -} - -func rol18(u uint32) uint32 { - return u<<18 | u>>14 -} diff --git a/vendor/github.com/pierrec/lz4/lz4.go b/vendor/github.com/pierrec/lz4/lz4.go deleted file mode 100644 index 3580275..0000000 --- a/vendor/github.com/pierrec/lz4/lz4.go +++ /dev/null @@ -1,68 +0,0 @@ -// Package lz4 implements reading and writing lz4 compressed data (a frame), -// as specified in http://fastcompression.blogspot.fr/2013/04/lz4-streaming-format-final.html. -// -// Although the block level compression and decompression functions are exposed and are fully compatible -// with the lz4 block format definition, they are low level and should not be used directly. -// For a complete description of an lz4 compressed block, see: -// http://fastcompression.blogspot.fr/2011/05/lz4-explained.html -// -// See https://github.com/Cyan4973/lz4 for the reference C implementation. -// -package lz4 - -const ( - // Extension is the LZ4 frame file name extension - Extension = ".lz4" - // Version is the LZ4 frame format version - Version = 1 - - frameMagic uint32 = 0x184D2204 - frameSkipMagic uint32 = 0x184D2A50 - - // The following constants are used to setup the compression algorithm. - minMatch = 4 // the minimum size of the match sequence size (4 bytes) - winSizeLog = 16 // LZ4 64Kb window size limit - winSize = 1 << winSizeLog - winMask = winSize - 1 // 64Kb window of previous data for dependent blocks - compressedBlockFlag = 1 << 31 - compressedBlockMask = compressedBlockFlag - 1 - - // hashLog determines the size of the hash table used to quickly find a previous match position. - // Its value influences the compression speed and memory usage, the lower the faster, - // but at the expense of the compression ratio. - // 16 seems to be the best compromise. - hashLog = 16 - hashTableSize = 1 << hashLog - hashShift = uint((minMatch * 8) - hashLog) - - mfLimit = 8 + minMatch // The last match cannot start within the last 12 bytes. - skipStrength = 6 // variable step for fast scan -) - -// map the block max size id with its value in bytes: 64Kb, 256Kb, 1Mb and 4Mb. -var ( - bsMapID = map[byte]int{4: 64 << 10, 5: 256 << 10, 6: 1 << 20, 7: 4 << 20} - bsMapValue = make(map[int]byte, len(bsMapID)) -) - -// Reversed. -func init() { - for i, v := range bsMapID { - bsMapValue[v] = i - } -} - -// Header describes the various flags that can be set on a Writer or obtained from a Reader. -// The default values match those of the LZ4 frame format definition -// (http://fastcompression.blogspot.com/2013/04/lz4-streaming-format-final.html). -// -// NB. in a Reader, in case of concatenated frames, the Header values may change between Read() calls. -// It is the caller responsibility to check them if necessary. -type Header struct { - BlockChecksum bool // Compressed blocks checksum flag. - NoChecksum bool // Frame checksum flag. - BlockMaxSize int // Size of the uncompressed data block (one of [64KB, 256KB, 1MB, 4MB]). Default=4MB. - Size uint64 // Frame total size. It is _not_ computed by the Writer. - CompressionLevel int // Compression level (higher is better, use 0 for fastest compression). - done bool // Header processed flag (Read or Write and checked). -} diff --git a/vendor/github.com/pierrec/lz4/lz4_go1.10.go b/vendor/github.com/pierrec/lz4/lz4_go1.10.go deleted file mode 100644 index 9a0fb00..0000000 --- a/vendor/github.com/pierrec/lz4/lz4_go1.10.go +++ /dev/null @@ -1,29 +0,0 @@ -//+build go1.10 - -package lz4 - -import ( - "fmt" - "strings" -) - -func (h Header) String() string { - var s strings.Builder - - s.WriteString(fmt.Sprintf("%T{", h)) - if h.BlockChecksum { - s.WriteString("BlockChecksum: true ") - } - if h.NoChecksum { - s.WriteString("NoChecksum: true ") - } - if bs := h.BlockMaxSize; bs != 0 && bs != 4<<20 { - s.WriteString(fmt.Sprintf("BlockMaxSize: %d ", bs)) - } - if l := h.CompressionLevel; l != 0 { - s.WriteString(fmt.Sprintf("CompressionLevel: %d ", l)) - } - s.WriteByte('}') - - return s.String() -} diff --git a/vendor/github.com/pierrec/lz4/lz4_notgo1.10.go b/vendor/github.com/pierrec/lz4/lz4_notgo1.10.go deleted file mode 100644 index 12c761a..0000000 --- a/vendor/github.com/pierrec/lz4/lz4_notgo1.10.go +++ /dev/null @@ -1,29 +0,0 @@ -//+build !go1.10 - -package lz4 - -import ( - "bytes" - "fmt" -) - -func (h Header) String() string { - var s bytes.Buffer - - s.WriteString(fmt.Sprintf("%T{", h)) - if h.BlockChecksum { - s.WriteString("BlockChecksum: true ") - } - if h.NoChecksum { - s.WriteString("NoChecksum: true ") - } - if bs := h.BlockMaxSize; bs != 0 && bs != 4<<20 { - s.WriteString(fmt.Sprintf("BlockMaxSize: %d ", bs)) - } - if l := h.CompressionLevel; l != 0 { - s.WriteString(fmt.Sprintf("CompressionLevel: %d ", l)) - } - s.WriteByte('}') - - return s.String() -} diff --git a/vendor/github.com/pierrec/lz4/reader.go b/vendor/github.com/pierrec/lz4/reader.go deleted file mode 100644 index f08db47..0000000 --- a/vendor/github.com/pierrec/lz4/reader.go +++ /dev/null @@ -1,295 +0,0 @@ -package lz4 - -import ( - "encoding/binary" - "fmt" - "io" - "io/ioutil" - - "github.com/pierrec/lz4/internal/xxh32" -) - -// Reader implements the LZ4 frame decoder. -// The Header is set after the first call to Read(). -// The Header may change between Read() calls in case of concatenated frames. -type Reader struct { - Header - - buf [8]byte // Scrap buffer. - pos int64 // Current position in src. - src io.Reader // Source. - zdata []byte // Compressed data. - data []byte // Uncompressed data. - idx int // Index of unread bytes into data. - checksum xxh32.XXHZero // Frame hash. -} - -// NewReader returns a new LZ4 frame decoder. -// No access to the underlying io.Reader is performed. -func NewReader(src io.Reader) *Reader { - r := &Reader{src: src} - return r -} - -// readHeader checks the frame magic number and parses the frame descriptoz. -// Skippable frames are supported even as a first frame although the LZ4 -// specifications recommends skippable frames not to be used as first frames. -func (z *Reader) readHeader(first bool) error { - defer z.checksum.Reset() - - buf := z.buf[:] - for { - magic, err := z.readUint32() - if err != nil { - z.pos += 4 - if !first && err == io.ErrUnexpectedEOF { - return io.EOF - } - return err - } - if magic == frameMagic { - break - } - if magic>>8 != frameSkipMagic>>8 { - return ErrInvalid - } - skipSize, err := z.readUint32() - if err != nil { - return err - } - z.pos += 4 - m, err := io.CopyN(ioutil.Discard, z.src, int64(skipSize)) - if err != nil { - return err - } - z.pos += m - } - - // Header. - if _, err := io.ReadFull(z.src, buf[:2]); err != nil { - return err - } - z.pos += 8 - - b := buf[0] - if v := b >> 6; v != Version { - return fmt.Errorf("lz4: invalid version: got %d; expected %d", v, Version) - } - if b>>5&1 == 0 { - return fmt.Errorf("lz4: block dependency not supported") - } - z.BlockChecksum = b>>4&1 > 0 - frameSize := b>>3&1 > 0 - z.NoChecksum = b>>2&1 == 0 - - bmsID := buf[1] >> 4 & 0x7 - bSize, ok := bsMapID[bmsID] - if !ok { - return fmt.Errorf("lz4: invalid block max size ID: %d", bmsID) - } - z.BlockMaxSize = bSize - - // Allocate the compressed/uncompressed buffers. - // The compressed buffer cannot exceed the uncompressed one. - if n := 2 * bSize; cap(z.zdata) < n { - z.zdata = make([]byte, n, n) - } - if debugFlag { - debug("header block max size id=%d size=%d", bmsID, bSize) - } - z.zdata = z.zdata[:bSize] - z.data = z.zdata[:cap(z.zdata)][bSize:] - z.idx = len(z.data) - - z.checksum.Write(buf[0:2]) - - if frameSize { - buf := buf[:8] - if _, err := io.ReadFull(z.src, buf); err != nil { - return err - } - z.Size = binary.LittleEndian.Uint64(buf) - z.pos += 8 - z.checksum.Write(buf) - } - - // Header checksum. - if _, err := io.ReadFull(z.src, buf[:1]); err != nil { - return err - } - z.pos++ - if h := byte(z.checksum.Sum32() >> 8 & 0xFF); h != buf[0] { - return fmt.Errorf("lz4: invalid header checksum: got %x; expected %x", buf[0], h) - } - - z.Header.done = true - if debugFlag { - debug("header read: %v", z.Header) - } - - return nil -} - -// Read decompresses data from the underlying source into the supplied buffer. -// -// Since there can be multiple streams concatenated, Header values may -// change between calls to Read(). If that is the case, no data is actually read from -// the underlying io.Reader, to allow for potential input buffer resizing. -func (z *Reader) Read(buf []byte) (int, error) { - if debugFlag { - debug("Read buf len=%d", len(buf)) - } - if !z.Header.done { - if err := z.readHeader(true); err != nil { - return 0, err - } - if debugFlag { - debug("header read OK compressed buffer %d / %d uncompressed buffer %d : %d index=%d", - len(z.zdata), cap(z.zdata), len(z.data), cap(z.data), z.idx) - } - } - - if len(buf) == 0 { - return 0, nil - } - - if z.idx == len(z.data) { - // No data ready for reading, process the next block. - if debugFlag { - debug("reading block from writer") - } - // Block length: 0 = end of frame, highest bit set: uncompressed. - bLen, err := z.readUint32() - if err != nil { - return 0, err - } - z.pos += 4 - - if bLen == 0 { - // End of frame reached. - if !z.NoChecksum { - // Validate the frame checksum. - checksum, err := z.readUint32() - if err != nil { - return 0, err - } - if debugFlag { - debug("frame checksum got=%x / want=%x", z.checksum.Sum32(), checksum) - } - z.pos += 4 - if h := z.checksum.Sum32(); checksum != h { - return 0, fmt.Errorf("lz4: invalid frame checksum: got %x; expected %x", h, checksum) - } - } - - // Get ready for the next concatenated frame and keep the position. - pos := z.pos - z.Reset(z.src) - z.pos = pos - - // Since multiple frames can be concatenated, check for more. - return 0, z.readHeader(false) - } - - if debugFlag { - debug("raw block size %d", bLen) - } - if bLen&compressedBlockFlag > 0 { - // Uncompressed block. - bLen &= compressedBlockMask - if debugFlag { - debug("uncompressed block size %d", bLen) - } - if int(bLen) > cap(z.data) { - return 0, fmt.Errorf("lz4: invalid block size: %d", bLen) - } - z.data = z.data[:bLen] - if _, err := io.ReadFull(z.src, z.data); err != nil { - return 0, err - } - z.pos += int64(bLen) - - if z.BlockChecksum { - checksum, err := z.readUint32() - if err != nil { - return 0, err - } - z.pos += 4 - - if h := xxh32.ChecksumZero(z.data); h != checksum { - return 0, fmt.Errorf("lz4: invalid block checksum: got %x; expected %x", h, checksum) - } - } - - } else { - // Compressed block. - if debugFlag { - debug("compressed block size %d", bLen) - } - if int(bLen) > cap(z.data) { - return 0, fmt.Errorf("lz4: invalid block size: %d", bLen) - } - zdata := z.zdata[:bLen] - if _, err := io.ReadFull(z.src, zdata); err != nil { - return 0, err - } - z.pos += int64(bLen) - - if z.BlockChecksum { - checksum, err := z.readUint32() - if err != nil { - return 0, err - } - z.pos += 4 - - if h := xxh32.ChecksumZero(zdata); h != checksum { - return 0, fmt.Errorf("lz4: invalid block checksum: got %x; expected %x", h, checksum) - } - } - - n, err := UncompressBlock(zdata, z.data) - if err != nil { - return 0, err - } - z.data = z.data[:n] - } - - if !z.NoChecksum { - z.checksum.Write(z.data) - if debugFlag { - debug("current frame checksum %x", z.checksum.Sum32()) - } - } - z.idx = 0 - } - - n := copy(buf, z.data[z.idx:]) - z.idx += n - if debugFlag { - debug("copied %d bytes to input", n) - } - - return n, nil -} - -// Reset discards the Reader's state and makes it equivalent to the -// result of its original state from NewReader, but reading from r instead. -// This permits reusing a Reader rather than allocating a new one. -func (z *Reader) Reset(r io.Reader) { - z.Header = Header{} - z.pos = 0 - z.src = r - z.zdata = z.zdata[:0] - z.data = z.data[:0] - z.idx = 0 - z.checksum.Reset() -} - -// readUint32 reads an uint32 into the supplied buffer. -// The idea is to make use of the already allocated buffers avoiding additional allocations. -func (z *Reader) readUint32() (uint32, error) { - buf := z.buf[:4] - _, err := io.ReadFull(z.src, buf) - x := binary.LittleEndian.Uint32(buf) - return x, err -} diff --git a/vendor/github.com/pierrec/lz4/writer.go b/vendor/github.com/pierrec/lz4/writer.go deleted file mode 100644 index 0120438..0000000 --- a/vendor/github.com/pierrec/lz4/writer.go +++ /dev/null @@ -1,267 +0,0 @@ -package lz4 - -import ( - "encoding/binary" - "fmt" - "io" - - "github.com/pierrec/lz4/internal/xxh32" -) - -// Writer implements the LZ4 frame encoder. -type Writer struct { - Header - - buf [19]byte // magic number(4) + header(flags(2)+[Size(8)+DictID(4)]+checksum(1)) does not exceed 19 bytes - dst io.Writer // Destination. - checksum xxh32.XXHZero // Frame checksum. - zdata []byte // Compressed data. - data []byte // Data to be compressed. - idx int // Index into data. - hashtable [winSize]int // Hash table used in CompressBlock(). -} - -// NewWriter returns a new LZ4 frame encoder. -// No access to the underlying io.Writer is performed. -// The supplied Header is checked at the first Write. -// It is ok to change it before the first Write but then not until a Reset() is performed. -func NewWriter(dst io.Writer) *Writer { - return &Writer{dst: dst} -} - -// writeHeader builds and writes the header (magic+header) to the underlying io.Writer. -func (z *Writer) writeHeader() error { - // Default to 4Mb if BlockMaxSize is not set. - if z.Header.BlockMaxSize == 0 { - z.Header.BlockMaxSize = bsMapID[7] - } - // The only option that needs to be validated. - bSize := z.Header.BlockMaxSize - bSizeID, ok := bsMapValue[bSize] - if !ok { - return fmt.Errorf("lz4: invalid block max size: %d", bSize) - } - // Allocate the compressed/uncompressed buffers. - // The compressed buffer cannot exceed the uncompressed one. - if n := 2 * bSize; cap(z.zdata) < n { - z.zdata = make([]byte, n, n) - } - z.zdata = z.zdata[:bSize] - z.data = z.zdata[:cap(z.zdata)][bSize:] - z.idx = 0 - - // Size is optional. - buf := z.buf[:] - - // Set the fixed size data: magic number, block max size and flags. - binary.LittleEndian.PutUint32(buf[0:], frameMagic) - flg := byte(Version << 6) - flg |= 1 << 5 // No block dependency. - if z.Header.BlockChecksum { - flg |= 1 << 4 - } - if z.Header.Size > 0 { - flg |= 1 << 3 - } - if !z.Header.NoChecksum { - flg |= 1 << 2 - } - buf[4] = flg - buf[5] = bSizeID << 4 - - // Current buffer size: magic(4) + flags(1) + block max size (1). - n := 6 - // Optional items. - if z.Header.Size > 0 { - binary.LittleEndian.PutUint64(buf[n:], z.Header.Size) - n += 8 - } - - // The header checksum includes the flags, block max size and optional Size. - buf[n] = byte(xxh32.ChecksumZero(buf[4:n]) >> 8 & 0xFF) - z.checksum.Reset() - - // Header ready, write it out. - if _, err := z.dst.Write(buf[0 : n+1]); err != nil { - return err - } - z.Header.done = true - if debugFlag { - debug("wrote header %v", z.Header) - } - - return nil -} - -// Write compresses data from the supplied buffer into the underlying io.Writer. -// Write does not return until the data has been written. -func (z *Writer) Write(buf []byte) (int, error) { - if !z.Header.done { - if err := z.writeHeader(); err != nil { - return 0, err - } - } - if debugFlag { - debug("input buffer len=%d index=%d", len(buf), z.idx) - } - - zn := len(z.data) - var n int - for len(buf) > 0 { - if z.idx == 0 && len(buf) >= zn { - // Avoid a copy as there is enough data for a block. - if err := z.compressBlock(buf[:zn]); err != nil { - return n, err - } - n += zn - buf = buf[zn:] - continue - } - // Accumulate the data to be compressed. - m := copy(z.data[z.idx:], buf) - n += m - z.idx += m - buf = buf[m:] - if debugFlag { - debug("%d bytes copied to buf, current index %d", n, z.idx) - } - - if z.idx < len(z.data) { - // Buffer not filled. - if debugFlag { - debug("need more data for compression") - } - return n, nil - } - - // Buffer full. - if err := z.compressBlock(z.data); err != nil { - return n, err - } - z.idx = 0 - } - - return n, nil -} - -// compressBlock compresses a block. -func (z *Writer) compressBlock(data []byte) error { - if !z.NoChecksum { - z.checksum.Write(data) - } - - // The compressed block size cannot exceed the input's. - var zn int - var err error - - if level := z.Header.CompressionLevel; level != 0 { - zn, err = CompressBlockHC(data, z.zdata, level) - } else { - zn, err = CompressBlock(data, z.zdata, z.hashtable[:]) - } - - var zdata []byte - var bLen uint32 - if debugFlag { - debug("block compression %d => %d", len(data), zn) - } - if err == nil && zn > 0 && zn < len(data) { - // Compressible and compressed size smaller than uncompressed: ok! - bLen = uint32(zn) - zdata = z.zdata[:zn] - } else { - // Uncompressed block. - bLen = uint32(len(data)) | compressedBlockFlag - zdata = data - } - if debugFlag { - debug("block compression to be written len=%d data len=%d", bLen, len(zdata)) - } - - // Write the block. - if err := z.writeUint32(bLen); err != nil { - return err - } - if _, err := z.dst.Write(zdata); err != nil { - return err - } - - if z.BlockChecksum { - checksum := xxh32.ChecksumZero(zdata) - if debugFlag { - debug("block checksum %x", checksum) - } - if err := z.writeUint32(checksum); err != nil { - return err - } - } - if debugFlag { - debug("current frame checksum %x", z.checksum.Sum32()) - } - - return nil -} - -// Flush flushes any pending compressed data to the underlying writer. -// Flush does not return until the data has been written. -// If the underlying writer returns an error, Flush returns that error. -func (z *Writer) Flush() error { - if debugFlag { - debug("flush with index %d", z.idx) - } - if z.idx == 0 { - return nil - } - - return z.compressBlock(z.data[:z.idx]) -} - -// Close closes the Writer, flushing any unwritten data to the underlying io.Writer, but does not close the underlying io.Writer. -func (z *Writer) Close() error { - if !z.Header.done { - if err := z.writeHeader(); err != nil { - return err - } - } - - if err := z.Flush(); err != nil { - return err - } - - if debugFlag { - debug("writing last empty block") - } - if err := z.writeUint32(0); err != nil { - return err - } - if !z.NoChecksum { - checksum := z.checksum.Sum32() - if debugFlag { - debug("stream checksum %x", checksum) - } - if err := z.writeUint32(checksum); err != nil { - return err - } - } - return nil -} - -// Reset clears the state of the Writer z such that it is equivalent to its -// initial state from NewWriter, but instead writing to w. -// No access to the underlying io.Writer is performed. -func (z *Writer) Reset(w io.Writer) { - z.Header = Header{} - z.dst = w - z.checksum.Reset() - z.zdata = z.zdata[:0] - z.data = z.data[:0] - z.idx = 0 -} - -// writeUint32 writes a uint32 to the underlying writer. -func (z *Writer) writeUint32(x uint32) error { - buf := z.buf[:4] - binary.LittleEndian.PutUint32(buf, x) - _, err := z.dst.Write(buf) - return err -} diff --git a/vendor/golang.org/x/crypto/LICENSE b/vendor/golang.org/x/crypto/LICENSE deleted file mode 100644 index 6a66aea..0000000 --- a/vendor/golang.org/x/crypto/LICENSE +++ /dev/null @@ -1,27 +0,0 @@ -Copyright (c) 2009 The Go Authors. All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - * Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - * Redistributions in binary form must reproduce the above -copyright notice, this list of conditions and the following disclaimer -in the documentation and/or other materials provided with the -distribution. - * Neither the name of Google Inc. nor the names of its -contributors may be used to endorse or promote products derived from -this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/vendor/golang.org/x/crypto/PATENTS b/vendor/golang.org/x/crypto/PATENTS deleted file mode 100644 index 7330990..0000000 --- a/vendor/golang.org/x/crypto/PATENTS +++ /dev/null @@ -1,22 +0,0 @@ -Additional IP Rights Grant (Patents) - -"This implementation" means the copyrightable works distributed by -Google as part of the Go project. - -Google hereby grants to You a perpetual, worldwide, non-exclusive, -no-charge, royalty-free, irrevocable (except as stated in this section) -patent license to make, have made, use, offer to sell, sell, import, -transfer and otherwise run, modify and propagate the contents of this -implementation of Go, where such license applies only to those patent -claims, both currently owned or controlled by Google and acquired in -the future, licensable by Google that are necessarily infringed by this -implementation of Go. This grant does not include claims that would be -infringed only as a consequence of further modification of this -implementation. If you or your agent or exclusive licensee institute or -order or agree to the institution of patent litigation against any -entity (including a cross-claim or counterclaim in a lawsuit) alleging -that this implementation of Go or any code incorporated within this -implementation of Go constitutes direct or contributory patent -infringement, or inducement of patent infringement, then any patent -rights granted to you under this License for this implementation of Go -shall terminate as of the date such litigation is filed. diff --git a/vendor/golang.org/x/crypto/cast5/cast5.go b/vendor/golang.org/x/crypto/cast5/cast5.go deleted file mode 100644 index 0b4af37..0000000 --- a/vendor/golang.org/x/crypto/cast5/cast5.go +++ /dev/null @@ -1,526 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package cast5 implements CAST5, as defined in RFC 2144. CAST5 is a common -// OpenPGP cipher. -package cast5 // import "golang.org/x/crypto/cast5" - -import "errors" - -const BlockSize = 8 -const KeySize = 16 - -type Cipher struct { - masking [16]uint32 - rotate [16]uint8 -} - -func NewCipher(key []byte) (c *Cipher, err error) { - if len(key) != KeySize { - return nil, errors.New("CAST5: keys must be 16 bytes") - } - - c = new(Cipher) - c.keySchedule(key) - return -} - -func (c *Cipher) BlockSize() int { - return BlockSize -} - -func (c *Cipher) Encrypt(dst, src []byte) { - l := uint32(src[0])<<24 | uint32(src[1])<<16 | uint32(src[2])<<8 | uint32(src[3]) - r := uint32(src[4])<<24 | uint32(src[5])<<16 | uint32(src[6])<<8 | uint32(src[7]) - - l, r = r, l^f1(r, c.masking[0], c.rotate[0]) - l, r = r, l^f2(r, c.masking[1], c.rotate[1]) - l, r = r, l^f3(r, c.masking[2], c.rotate[2]) - l, r = r, l^f1(r, c.masking[3], c.rotate[3]) - - l, r = r, l^f2(r, c.masking[4], c.rotate[4]) - l, r = r, l^f3(r, c.masking[5], c.rotate[5]) - l, r = r, l^f1(r, c.masking[6], c.rotate[6]) - l, r = r, l^f2(r, c.masking[7], c.rotate[7]) - - l, r = r, l^f3(r, c.masking[8], c.rotate[8]) - l, r = r, l^f1(r, c.masking[9], c.rotate[9]) - l, r = r, l^f2(r, c.masking[10], c.rotate[10]) - l, r = r, l^f3(r, c.masking[11], c.rotate[11]) - - l, r = r, l^f1(r, c.masking[12], c.rotate[12]) - l, r = r, l^f2(r, c.masking[13], c.rotate[13]) - l, r = r, l^f3(r, c.masking[14], c.rotate[14]) - l, r = r, l^f1(r, c.masking[15], c.rotate[15]) - - dst[0] = uint8(r >> 24) - dst[1] = uint8(r >> 16) - dst[2] = uint8(r >> 8) - dst[3] = uint8(r) - dst[4] = uint8(l >> 24) - dst[5] = uint8(l >> 16) - dst[6] = uint8(l >> 8) - dst[7] = uint8(l) -} - -func (c *Cipher) Decrypt(dst, src []byte) { - l := uint32(src[0])<<24 | uint32(src[1])<<16 | uint32(src[2])<<8 | uint32(src[3]) - r := uint32(src[4])<<24 | uint32(src[5])<<16 | uint32(src[6])<<8 | uint32(src[7]) - - l, r = r, l^f1(r, c.masking[15], c.rotate[15]) - l, r = r, l^f3(r, c.masking[14], c.rotate[14]) - l, r = r, l^f2(r, c.masking[13], c.rotate[13]) - l, r = r, l^f1(r, c.masking[12], c.rotate[12]) - - l, r = r, l^f3(r, c.masking[11], c.rotate[11]) - l, r = r, l^f2(r, c.masking[10], c.rotate[10]) - l, r = r, l^f1(r, c.masking[9], c.rotate[9]) - l, r = r, l^f3(r, c.masking[8], c.rotate[8]) - - l, r = r, l^f2(r, c.masking[7], c.rotate[7]) - l, r = r, l^f1(r, c.masking[6], c.rotate[6]) - l, r = r, l^f3(r, c.masking[5], c.rotate[5]) - l, r = r, l^f2(r, c.masking[4], c.rotate[4]) - - l, r = r, l^f1(r, c.masking[3], c.rotate[3]) - l, r = r, l^f3(r, c.masking[2], c.rotate[2]) - l, r = r, l^f2(r, c.masking[1], c.rotate[1]) - l, r = r, l^f1(r, c.masking[0], c.rotate[0]) - - dst[0] = uint8(r >> 24) - dst[1] = uint8(r >> 16) - dst[2] = uint8(r >> 8) - dst[3] = uint8(r) - dst[4] = uint8(l >> 24) - dst[5] = uint8(l >> 16) - dst[6] = uint8(l >> 8) - dst[7] = uint8(l) -} - -type keyScheduleA [4][7]uint8 -type keyScheduleB [4][5]uint8 - -// keyScheduleRound contains the magic values for a round of the key schedule. -// The keyScheduleA deals with the lines like: -// z0z1z2z3 = x0x1x2x3 ^ S5[xD] ^ S6[xF] ^ S7[xC] ^ S8[xE] ^ S7[x8] -// Conceptually, both x and z are in the same array, x first. The first -// element describes which word of this array gets written to and the -// second, which word gets read. So, for the line above, it's "4, 0", because -// it's writing to the first word of z, which, being after x, is word 4, and -// reading from the first word of x: word 0. -// -// Next are the indexes into the S-boxes. Now the array is treated as bytes. So -// "xD" is 0xd. The first byte of z is written as "16 + 0", just to be clear -// that it's z that we're indexing. -// -// keyScheduleB deals with lines like: -// K1 = S5[z8] ^ S6[z9] ^ S7[z7] ^ S8[z6] ^ S5[z2] -// "K1" is ignored because key words are always written in order. So the five -// elements are the S-box indexes. They use the same form as in keyScheduleA, -// above. - -type keyScheduleRound struct{} -type keySchedule []keyScheduleRound - -var schedule = []struct { - a keyScheduleA - b keyScheduleB -}{ - { - keyScheduleA{ - {4, 0, 0xd, 0xf, 0xc, 0xe, 0x8}, - {5, 2, 16 + 0, 16 + 2, 16 + 1, 16 + 3, 0xa}, - {6, 3, 16 + 7, 16 + 6, 16 + 5, 16 + 4, 9}, - {7, 1, 16 + 0xa, 16 + 9, 16 + 0xb, 16 + 8, 0xb}, - }, - keyScheduleB{ - {16 + 8, 16 + 9, 16 + 7, 16 + 6, 16 + 2}, - {16 + 0xa, 16 + 0xb, 16 + 5, 16 + 4, 16 + 6}, - {16 + 0xc, 16 + 0xd, 16 + 3, 16 + 2, 16 + 9}, - {16 + 0xe, 16 + 0xf, 16 + 1, 16 + 0, 16 + 0xc}, - }, - }, - { - keyScheduleA{ - {0, 6, 16 + 5, 16 + 7, 16 + 4, 16 + 6, 16 + 0}, - {1, 4, 0, 2, 1, 3, 16 + 2}, - {2, 5, 7, 6, 5, 4, 16 + 1}, - {3, 7, 0xa, 9, 0xb, 8, 16 + 3}, - }, - keyScheduleB{ - {3, 2, 0xc, 0xd, 8}, - {1, 0, 0xe, 0xf, 0xd}, - {7, 6, 8, 9, 3}, - {5, 4, 0xa, 0xb, 7}, - }, - }, - { - keyScheduleA{ - {4, 0, 0xd, 0xf, 0xc, 0xe, 8}, - {5, 2, 16 + 0, 16 + 2, 16 + 1, 16 + 3, 0xa}, - {6, 3, 16 + 7, 16 + 6, 16 + 5, 16 + 4, 9}, - {7, 1, 16 + 0xa, 16 + 9, 16 + 0xb, 16 + 8, 0xb}, - }, - keyScheduleB{ - {16 + 3, 16 + 2, 16 + 0xc, 16 + 0xd, 16 + 9}, - {16 + 1, 16 + 0, 16 + 0xe, 16 + 0xf, 16 + 0xc}, - {16 + 7, 16 + 6, 16 + 8, 16 + 9, 16 + 2}, - {16 + 5, 16 + 4, 16 + 0xa, 16 + 0xb, 16 + 6}, - }, - }, - { - keyScheduleA{ - {0, 6, 16 + 5, 16 + 7, 16 + 4, 16 + 6, 16 + 0}, - {1, 4, 0, 2, 1, 3, 16 + 2}, - {2, 5, 7, 6, 5, 4, 16 + 1}, - {3, 7, 0xa, 9, 0xb, 8, 16 + 3}, - }, - keyScheduleB{ - {8, 9, 7, 6, 3}, - {0xa, 0xb, 5, 4, 7}, - {0xc, 0xd, 3, 2, 8}, - {0xe, 0xf, 1, 0, 0xd}, - }, - }, -} - -func (c *Cipher) keySchedule(in []byte) { - var t [8]uint32 - var k [32]uint32 - - for i := 0; i < 4; i++ { - j := i * 4 - t[i] = uint32(in[j])<<24 | uint32(in[j+1])<<16 | uint32(in[j+2])<<8 | uint32(in[j+3]) - } - - x := []byte{6, 7, 4, 5} - ki := 0 - - for half := 0; half < 2; half++ { - for _, round := range schedule { - for j := 0; j < 4; j++ { - var a [7]uint8 - copy(a[:], round.a[j][:]) - w := t[a[1]] - w ^= sBox[4][(t[a[2]>>2]>>(24-8*(a[2]&3)))&0xff] - w ^= sBox[5][(t[a[3]>>2]>>(24-8*(a[3]&3)))&0xff] - w ^= sBox[6][(t[a[4]>>2]>>(24-8*(a[4]&3)))&0xff] - w ^= sBox[7][(t[a[5]>>2]>>(24-8*(a[5]&3)))&0xff] - w ^= sBox[x[j]][(t[a[6]>>2]>>(24-8*(a[6]&3)))&0xff] - t[a[0]] = w - } - - for j := 0; j < 4; j++ { - var b [5]uint8 - copy(b[:], round.b[j][:]) - w := sBox[4][(t[b[0]>>2]>>(24-8*(b[0]&3)))&0xff] - w ^= sBox[5][(t[b[1]>>2]>>(24-8*(b[1]&3)))&0xff] - w ^= sBox[6][(t[b[2]>>2]>>(24-8*(b[2]&3)))&0xff] - w ^= sBox[7][(t[b[3]>>2]>>(24-8*(b[3]&3)))&0xff] - w ^= sBox[4+j][(t[b[4]>>2]>>(24-8*(b[4]&3)))&0xff] - k[ki] = w - ki++ - } - } - } - - for i := 0; i < 16; i++ { - c.masking[i] = k[i] - c.rotate[i] = uint8(k[16+i] & 0x1f) - } -} - -// These are the three 'f' functions. See RFC 2144, section 2.2. -func f1(d, m uint32, r uint8) uint32 { - t := m + d - I := (t << r) | (t >> (32 - r)) - return ((sBox[0][I>>24] ^ sBox[1][(I>>16)&0xff]) - sBox[2][(I>>8)&0xff]) + sBox[3][I&0xff] -} - -func f2(d, m uint32, r uint8) uint32 { - t := m ^ d - I := (t << r) | (t >> (32 - r)) - return ((sBox[0][I>>24] - sBox[1][(I>>16)&0xff]) + sBox[2][(I>>8)&0xff]) ^ sBox[3][I&0xff] -} - -func f3(d, m uint32, r uint8) uint32 { - t := m - d - I := (t << r) | (t >> (32 - r)) - return ((sBox[0][I>>24] + sBox[1][(I>>16)&0xff]) ^ sBox[2][(I>>8)&0xff]) - sBox[3][I&0xff] -} - -var sBox = [8][256]uint32{ - { - 0x30fb40d4, 0x9fa0ff0b, 0x6beccd2f, 0x3f258c7a, 0x1e213f2f, 0x9c004dd3, 0x6003e540, 0xcf9fc949, - 0xbfd4af27, 0x88bbbdb5, 0xe2034090, 0x98d09675, 0x6e63a0e0, 0x15c361d2, 0xc2e7661d, 0x22d4ff8e, - 0x28683b6f, 0xc07fd059, 0xff2379c8, 0x775f50e2, 0x43c340d3, 0xdf2f8656, 0x887ca41a, 0xa2d2bd2d, - 0xa1c9e0d6, 0x346c4819, 0x61b76d87, 0x22540f2f, 0x2abe32e1, 0xaa54166b, 0x22568e3a, 0xa2d341d0, - 0x66db40c8, 0xa784392f, 0x004dff2f, 0x2db9d2de, 0x97943fac, 0x4a97c1d8, 0x527644b7, 0xb5f437a7, - 0xb82cbaef, 0xd751d159, 0x6ff7f0ed, 0x5a097a1f, 0x827b68d0, 0x90ecf52e, 0x22b0c054, 0xbc8e5935, - 0x4b6d2f7f, 0x50bb64a2, 0xd2664910, 0xbee5812d, 0xb7332290, 0xe93b159f, 0xb48ee411, 0x4bff345d, - 0xfd45c240, 0xad31973f, 0xc4f6d02e, 0x55fc8165, 0xd5b1caad, 0xa1ac2dae, 0xa2d4b76d, 0xc19b0c50, - 0x882240f2, 0x0c6e4f38, 0xa4e4bfd7, 0x4f5ba272, 0x564c1d2f, 0xc59c5319, 0xb949e354, 0xb04669fe, - 0xb1b6ab8a, 0xc71358dd, 0x6385c545, 0x110f935d, 0x57538ad5, 0x6a390493, 0xe63d37e0, 0x2a54f6b3, - 0x3a787d5f, 0x6276a0b5, 0x19a6fcdf, 0x7a42206a, 0x29f9d4d5, 0xf61b1891, 0xbb72275e, 0xaa508167, - 0x38901091, 0xc6b505eb, 0x84c7cb8c, 0x2ad75a0f, 0x874a1427, 0xa2d1936b, 0x2ad286af, 0xaa56d291, - 0xd7894360, 0x425c750d, 0x93b39e26, 0x187184c9, 0x6c00b32d, 0x73e2bb14, 0xa0bebc3c, 0x54623779, - 0x64459eab, 0x3f328b82, 0x7718cf82, 0x59a2cea6, 0x04ee002e, 0x89fe78e6, 0x3fab0950, 0x325ff6c2, - 0x81383f05, 0x6963c5c8, 0x76cb5ad6, 0xd49974c9, 0xca180dcf, 0x380782d5, 0xc7fa5cf6, 0x8ac31511, - 0x35e79e13, 0x47da91d0, 0xf40f9086, 0xa7e2419e, 0x31366241, 0x051ef495, 0xaa573b04, 0x4a805d8d, - 0x548300d0, 0x00322a3c, 0xbf64cddf, 0xba57a68e, 0x75c6372b, 0x50afd341, 0xa7c13275, 0x915a0bf5, - 0x6b54bfab, 0x2b0b1426, 0xab4cc9d7, 0x449ccd82, 0xf7fbf265, 0xab85c5f3, 0x1b55db94, 0xaad4e324, - 0xcfa4bd3f, 0x2deaa3e2, 0x9e204d02, 0xc8bd25ac, 0xeadf55b3, 0xd5bd9e98, 0xe31231b2, 0x2ad5ad6c, - 0x954329de, 0xadbe4528, 0xd8710f69, 0xaa51c90f, 0xaa786bf6, 0x22513f1e, 0xaa51a79b, 0x2ad344cc, - 0x7b5a41f0, 0xd37cfbad, 0x1b069505, 0x41ece491, 0xb4c332e6, 0x032268d4, 0xc9600acc, 0xce387e6d, - 0xbf6bb16c, 0x6a70fb78, 0x0d03d9c9, 0xd4df39de, 0xe01063da, 0x4736f464, 0x5ad328d8, 0xb347cc96, - 0x75bb0fc3, 0x98511bfb, 0x4ffbcc35, 0xb58bcf6a, 0xe11f0abc, 0xbfc5fe4a, 0xa70aec10, 0xac39570a, - 0x3f04442f, 0x6188b153, 0xe0397a2e, 0x5727cb79, 0x9ceb418f, 0x1cacd68d, 0x2ad37c96, 0x0175cb9d, - 0xc69dff09, 0xc75b65f0, 0xd9db40d8, 0xec0e7779, 0x4744ead4, 0xb11c3274, 0xdd24cb9e, 0x7e1c54bd, - 0xf01144f9, 0xd2240eb1, 0x9675b3fd, 0xa3ac3755, 0xd47c27af, 0x51c85f4d, 0x56907596, 0xa5bb15e6, - 0x580304f0, 0xca042cf1, 0x011a37ea, 0x8dbfaadb, 0x35ba3e4a, 0x3526ffa0, 0xc37b4d09, 0xbc306ed9, - 0x98a52666, 0x5648f725, 0xff5e569d, 0x0ced63d0, 0x7c63b2cf, 0x700b45e1, 0xd5ea50f1, 0x85a92872, - 0xaf1fbda7, 0xd4234870, 0xa7870bf3, 0x2d3b4d79, 0x42e04198, 0x0cd0ede7, 0x26470db8, 0xf881814c, - 0x474d6ad7, 0x7c0c5e5c, 0xd1231959, 0x381b7298, 0xf5d2f4db, 0xab838653, 0x6e2f1e23, 0x83719c9e, - 0xbd91e046, 0x9a56456e, 0xdc39200c, 0x20c8c571, 0x962bda1c, 0xe1e696ff, 0xb141ab08, 0x7cca89b9, - 0x1a69e783, 0x02cc4843, 0xa2f7c579, 0x429ef47d, 0x427b169c, 0x5ac9f049, 0xdd8f0f00, 0x5c8165bf, - }, - { - 0x1f201094, 0xef0ba75b, 0x69e3cf7e, 0x393f4380, 0xfe61cf7a, 0xeec5207a, 0x55889c94, 0x72fc0651, - 0xada7ef79, 0x4e1d7235, 0xd55a63ce, 0xde0436ba, 0x99c430ef, 0x5f0c0794, 0x18dcdb7d, 0xa1d6eff3, - 0xa0b52f7b, 0x59e83605, 0xee15b094, 0xe9ffd909, 0xdc440086, 0xef944459, 0xba83ccb3, 0xe0c3cdfb, - 0xd1da4181, 0x3b092ab1, 0xf997f1c1, 0xa5e6cf7b, 0x01420ddb, 0xe4e7ef5b, 0x25a1ff41, 0xe180f806, - 0x1fc41080, 0x179bee7a, 0xd37ac6a9, 0xfe5830a4, 0x98de8b7f, 0x77e83f4e, 0x79929269, 0x24fa9f7b, - 0xe113c85b, 0xacc40083, 0xd7503525, 0xf7ea615f, 0x62143154, 0x0d554b63, 0x5d681121, 0xc866c359, - 0x3d63cf73, 0xcee234c0, 0xd4d87e87, 0x5c672b21, 0x071f6181, 0x39f7627f, 0x361e3084, 0xe4eb573b, - 0x602f64a4, 0xd63acd9c, 0x1bbc4635, 0x9e81032d, 0x2701f50c, 0x99847ab4, 0xa0e3df79, 0xba6cf38c, - 0x10843094, 0x2537a95e, 0xf46f6ffe, 0xa1ff3b1f, 0x208cfb6a, 0x8f458c74, 0xd9e0a227, 0x4ec73a34, - 0xfc884f69, 0x3e4de8df, 0xef0e0088, 0x3559648d, 0x8a45388c, 0x1d804366, 0x721d9bfd, 0xa58684bb, - 0xe8256333, 0x844e8212, 0x128d8098, 0xfed33fb4, 0xce280ae1, 0x27e19ba5, 0xd5a6c252, 0xe49754bd, - 0xc5d655dd, 0xeb667064, 0x77840b4d, 0xa1b6a801, 0x84db26a9, 0xe0b56714, 0x21f043b7, 0xe5d05860, - 0x54f03084, 0x066ff472, 0xa31aa153, 0xdadc4755, 0xb5625dbf, 0x68561be6, 0x83ca6b94, 0x2d6ed23b, - 0xeccf01db, 0xa6d3d0ba, 0xb6803d5c, 0xaf77a709, 0x33b4a34c, 0x397bc8d6, 0x5ee22b95, 0x5f0e5304, - 0x81ed6f61, 0x20e74364, 0xb45e1378, 0xde18639b, 0x881ca122, 0xb96726d1, 0x8049a7e8, 0x22b7da7b, - 0x5e552d25, 0x5272d237, 0x79d2951c, 0xc60d894c, 0x488cb402, 0x1ba4fe5b, 0xa4b09f6b, 0x1ca815cf, - 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0xbf32679d, 0xd45b5b75, 0xb353fd00, 0xcbb0e358, 0x830f220a, 0x1f8fb214, 0xd372cf08, 0xcc3c4a13, - 0x8cf63166, 0x061c87be, 0x88c98f88, 0x6062e397, 0x47cf8e7a, 0xb6c85283, 0x3cc2acfb, 0x3fc06976, - 0x4e8f0252, 0x64d8314d, 0xda3870e3, 0x1e665459, 0xc10908f0, 0x513021a5, 0x6c5b68b7, 0x822f8aa0, - 0x3007cd3e, 0x74719eef, 0xdc872681, 0x073340d4, 0x7e432fd9, 0x0c5ec241, 0x8809286c, 0xf592d891, - 0x08a930f6, 0x957ef305, 0xb7fbffbd, 0xc266e96f, 0x6fe4ac98, 0xb173ecc0, 0xbc60b42a, 0x953498da, - 0xfba1ae12, 0x2d4bd736, 0x0f25faab, 0xa4f3fceb, 0xe2969123, 0x257f0c3d, 0x9348af49, 0x361400bc, - 0xe8816f4a, 0x3814f200, 0xa3f94043, 0x9c7a54c2, 0xbc704f57, 0xda41e7f9, 0xc25ad33a, 0x54f4a084, - 0xb17f5505, 0x59357cbe, 0xedbd15c8, 0x7f97c5ab, 0xba5ac7b5, 0xb6f6deaf, 0x3a479c3a, 0x5302da25, - 0x653d7e6a, 0x54268d49, 0x51a477ea, 0x5017d55b, 0xd7d25d88, 0x44136c76, 0x0404a8c8, 0xb8e5a121, - 0xb81a928a, 0x60ed5869, 0x97c55b96, 0xeaec991b, 0x29935913, 0x01fdb7f1, 0x088e8dfa, 0x9ab6f6f5, - 0x3b4cbf9f, 0x4a5de3ab, 0xe6051d35, 0xa0e1d855, 0xd36b4cf1, 0xf544edeb, 0xb0e93524, 0xbebb8fbd, - 0xa2d762cf, 0x49c92f54, 0x38b5f331, 0x7128a454, 0x48392905, 0xa65b1db8, 0x851c97bd, 0xd675cf2f, - }, - { - 0x85e04019, 0x332bf567, 0x662dbfff, 0xcfc65693, 0x2a8d7f6f, 0xab9bc912, 0xde6008a1, 0x2028da1f, - 0x0227bce7, 0x4d642916, 0x18fac300, 0x50f18b82, 0x2cb2cb11, 0xb232e75c, 0x4b3695f2, 0xb28707de, - 0xa05fbcf6, 0xcd4181e9, 0xe150210c, 0xe24ef1bd, 0xb168c381, 0xfde4e789, 0x5c79b0d8, 0x1e8bfd43, - 0x4d495001, 0x38be4341, 0x913cee1d, 0x92a79c3f, 0x089766be, 0xbaeeadf4, 0x1286becf, 0xb6eacb19, - 0x2660c200, 0x7565bde4, 0x64241f7a, 0x8248dca9, 0xc3b3ad66, 0x28136086, 0x0bd8dfa8, 0x356d1cf2, - 0x107789be, 0xb3b2e9ce, 0x0502aa8f, 0x0bc0351e, 0x166bf52a, 0xeb12ff82, 0xe3486911, 0xd34d7516, - 0x4e7b3aff, 0x5f43671b, 0x9cf6e037, 0x4981ac83, 0x334266ce, 0x8c9341b7, 0xd0d854c0, 0xcb3a6c88, - 0x47bc2829, 0x4725ba37, 0xa66ad22b, 0x7ad61f1e, 0x0c5cbafa, 0x4437f107, 0xb6e79962, 0x42d2d816, - 0x0a961288, 0xe1a5c06e, 0x13749e67, 0x72fc081a, 0xb1d139f7, 0xf9583745, 0xcf19df58, 0xbec3f756, - 0xc06eba30, 0x07211b24, 0x45c28829, 0xc95e317f, 0xbc8ec511, 0x38bc46e9, 0xc6e6fa14, 0xbae8584a, - 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}, - { - 0xe216300d, 0xbbddfffc, 0xa7ebdabd, 0x35648095, 0x7789f8b7, 0xe6c1121b, 0x0e241600, 0x052ce8b5, - 0x11a9cfb0, 0xe5952f11, 0xece7990a, 0x9386d174, 0x2a42931c, 0x76e38111, 0xb12def3a, 0x37ddddfc, - 0xde9adeb1, 0x0a0cc32c, 0xbe197029, 0x84a00940, 0xbb243a0f, 0xb4d137cf, 0xb44e79f0, 0x049eedfd, - 0x0b15a15d, 0x480d3168, 0x8bbbde5a, 0x669ded42, 0xc7ece831, 0x3f8f95e7, 0x72df191b, 0x7580330d, - 0x94074251, 0x5c7dcdfa, 0xabbe6d63, 0xaa402164, 0xb301d40a, 0x02e7d1ca, 0x53571dae, 0x7a3182a2, - 0x12a8ddec, 0xfdaa335d, 0x176f43e8, 0x71fb46d4, 0x38129022, 0xce949ad4, 0xb84769ad, 0x965bd862, - 0x82f3d055, 0x66fb9767, 0x15b80b4e, 0x1d5b47a0, 0x4cfde06f, 0xc28ec4b8, 0x57e8726e, 0x647a78fc, - 0x99865d44, 0x608bd593, 0x6c200e03, 0x39dc5ff6, 0x5d0b00a3, 0xae63aff2, 0x7e8bd632, 0x70108c0c, - 0xbbd35049, 0x2998df04, 0x980cf42a, 0x9b6df491, 0x9e7edd53, 0x06918548, 0x58cb7e07, 0x3b74ef2e, - 0x522fffb1, 0xd24708cc, 0x1c7e27cd, 0xa4eb215b, 0x3cf1d2e2, 0x19b47a38, 0x424f7618, 0x35856039, - 0x9d17dee7, 0x27eb35e6, 0xc9aff67b, 0x36baf5b8, 0x09c467cd, 0xc18910b1, 0xe11dbf7b, 0x06cd1af8, - 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0x5715f6b7, 0xef3478dd, 0xf267616f, 0xc148cbe4, 0x9052815e, 0x5e410fab, 0xb48a2465, 0x2eda7fa4, - 0xe87b40e4, 0xe98ea084, 0x5889e9e1, 0xefd390fc, 0xdd07d35b, 0xdb485694, 0x38d7e5b2, 0x57720101, - 0x730edebc, 0x5b643113, 0x94917e4f, 0x503c2fba, 0x646f1282, 0x7523d24a, 0xe0779695, 0xf9c17a8f, - 0x7a5b2121, 0xd187b896, 0x29263a4d, 0xba510cdf, 0x81f47c9f, 0xad1163ed, 0xea7b5965, 0x1a00726e, - 0x11403092, 0x00da6d77, 0x4a0cdd61, 0xad1f4603, 0x605bdfb0, 0x9eedc364, 0x22ebe6a8, 0xcee7d28a, - 0xa0e736a0, 0x5564a6b9, 0x10853209, 0xc7eb8f37, 0x2de705ca, 0x8951570f, 0xdf09822b, 0xbd691a6c, - 0xaa12e4f2, 0x87451c0f, 0xe0f6a27a, 0x3ada4819, 0x4cf1764f, 0x0d771c2b, 0x67cdb156, 0x350d8384, - 0x5938fa0f, 0x42399ef3, 0x36997b07, 0x0e84093d, 0x4aa93e61, 0x8360d87b, 0x1fa98b0c, 0x1149382c, - 0xe97625a5, 0x0614d1b7, 0x0e25244b, 0x0c768347, 0x589e8d82, 0x0d2059d1, 0xa466bb1e, 0xf8da0a82, - 0x04f19130, 0xba6e4ec0, 0x99265164, 0x1ee7230d, 0x50b2ad80, 0xeaee6801, 0x8db2a283, 0xea8bf59e, - }, -} diff --git a/vendor/golang.org/x/crypto/openpgp/armor/armor.go b/vendor/golang.org/x/crypto/openpgp/armor/armor.go deleted file mode 100644 index 592d186..0000000 --- a/vendor/golang.org/x/crypto/openpgp/armor/armor.go +++ /dev/null @@ -1,219 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package armor implements OpenPGP ASCII Armor, see RFC 4880. OpenPGP Armor is -// very similar to PEM except that it has an additional CRC checksum. -package armor // import "golang.org/x/crypto/openpgp/armor" - -import ( - "bufio" - "bytes" - "encoding/base64" - "golang.org/x/crypto/openpgp/errors" - "io" -) - -// A Block represents an OpenPGP armored structure. -// -// The encoded form is: -// -----BEGIN Type----- -// Headers -// -// base64-encoded Bytes -// '=' base64 encoded checksum -// -----END Type----- -// where Headers is a possibly empty sequence of Key: Value lines. -// -// Since the armored data can be very large, this package presents a streaming -// interface. -type Block struct { - Type string // The type, taken from the preamble (i.e. "PGP SIGNATURE"). - Header map[string]string // Optional headers. - Body io.Reader // A Reader from which the contents can be read - lReader lineReader - oReader openpgpReader -} - -var ArmorCorrupt error = errors.StructuralError("armor invalid") - -const crc24Init = 0xb704ce -const crc24Poly = 0x1864cfb -const crc24Mask = 0xffffff - -// crc24 calculates the OpenPGP checksum as specified in RFC 4880, section 6.1 -func crc24(crc uint32, d []byte) uint32 { - for _, b := range d { - crc ^= uint32(b) << 16 - for i := 0; i < 8; i++ { - crc <<= 1 - if crc&0x1000000 != 0 { - crc ^= crc24Poly - } - } - } - return crc -} - -var armorStart = []byte("-----BEGIN ") -var armorEnd = []byte("-----END ") -var armorEndOfLine = []byte("-----") - -// lineReader wraps a line based reader. It watches for the end of an armor -// block and records the expected CRC value. -type lineReader struct { - in *bufio.Reader - buf []byte - eof bool - crc uint32 -} - -func (l *lineReader) Read(p []byte) (n int, err error) { - if l.eof { - return 0, io.EOF - } - - if len(l.buf) > 0 { - n = copy(p, l.buf) - l.buf = l.buf[n:] - return - } - - line, isPrefix, err := l.in.ReadLine() - if err != nil { - return - } - if isPrefix { - return 0, ArmorCorrupt - } - - if len(line) == 5 && line[0] == '=' { - // This is the checksum line - var expectedBytes [3]byte - var m int - m, err = base64.StdEncoding.Decode(expectedBytes[0:], line[1:]) - if m != 3 || err != nil { - return - } - l.crc = uint32(expectedBytes[0])<<16 | - uint32(expectedBytes[1])<<8 | - uint32(expectedBytes[2]) - - line, _, err = l.in.ReadLine() - if err != nil && err != io.EOF { - return - } - if !bytes.HasPrefix(line, armorEnd) { - return 0, ArmorCorrupt - } - - l.eof = true - return 0, io.EOF - } - - if len(line) > 96 { - return 0, ArmorCorrupt - } - - n = copy(p, line) - bytesToSave := len(line) - n - if bytesToSave > 0 { - if cap(l.buf) < bytesToSave { - l.buf = make([]byte, 0, bytesToSave) - } - l.buf = l.buf[0:bytesToSave] - copy(l.buf, line[n:]) - } - - return -} - -// openpgpReader passes Read calls to the underlying base64 decoder, but keeps -// a running CRC of the resulting data and checks the CRC against the value -// found by the lineReader at EOF. -type openpgpReader struct { - lReader *lineReader - b64Reader io.Reader - currentCRC uint32 -} - -func (r *openpgpReader) Read(p []byte) (n int, err error) { - n, err = r.b64Reader.Read(p) - r.currentCRC = crc24(r.currentCRC, p[:n]) - - if err == io.EOF { - if r.lReader.crc != uint32(r.currentCRC&crc24Mask) { - return 0, ArmorCorrupt - } - } - - return -} - -// Decode reads a PGP armored block from the given Reader. It will ignore -// leading garbage. If it doesn't find a block, it will return nil, io.EOF. The -// given Reader is not usable after calling this function: an arbitrary amount -// of data may have been read past the end of the block. -func Decode(in io.Reader) (p *Block, err error) { - r := bufio.NewReaderSize(in, 100) - var line []byte - ignoreNext := false - -TryNextBlock: - p = nil - - // Skip leading garbage - for { - ignoreThis := ignoreNext - line, ignoreNext, err = r.ReadLine() - if err != nil { - return - } - if ignoreNext || ignoreThis { - continue - } - line = bytes.TrimSpace(line) - if len(line) > len(armorStart)+len(armorEndOfLine) && bytes.HasPrefix(line, armorStart) { - break - } - } - - p = new(Block) - p.Type = string(line[len(armorStart) : len(line)-len(armorEndOfLine)]) - p.Header = make(map[string]string) - nextIsContinuation := false - var lastKey string - - // Read headers - for { - isContinuation := nextIsContinuation - line, nextIsContinuation, err = r.ReadLine() - if err != nil { - p = nil - return - } - if isContinuation { - p.Header[lastKey] += string(line) - continue - } - line = bytes.TrimSpace(line) - if len(line) == 0 { - break - } - - i := bytes.Index(line, []byte(": ")) - if i == -1 { - goto TryNextBlock - } - lastKey = string(line[:i]) - p.Header[lastKey] = string(line[i+2:]) - } - - p.lReader.in = r - p.oReader.currentCRC = crc24Init - p.oReader.lReader = &p.lReader - p.oReader.b64Reader = base64.NewDecoder(base64.StdEncoding, &p.lReader) - p.Body = &p.oReader - - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/armor/encode.go b/vendor/golang.org/x/crypto/openpgp/armor/encode.go deleted file mode 100644 index 6f07582..0000000 --- a/vendor/golang.org/x/crypto/openpgp/armor/encode.go +++ /dev/null @@ -1,160 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package armor - -import ( - "encoding/base64" - "io" -) - -var armorHeaderSep = []byte(": ") -var blockEnd = []byte("\n=") -var newline = []byte("\n") -var armorEndOfLineOut = []byte("-----\n") - -// writeSlices writes its arguments to the given Writer. -func writeSlices(out io.Writer, slices ...[]byte) (err error) { - for _, s := range slices { - _, err = out.Write(s) - if err != nil { - return err - } - } - return -} - -// lineBreaker breaks data across several lines, all of the same byte length -// (except possibly the last). Lines are broken with a single '\n'. -type lineBreaker struct { - lineLength int - line []byte - used int - out io.Writer - haveWritten bool -} - -func newLineBreaker(out io.Writer, lineLength int) *lineBreaker { - return &lineBreaker{ - lineLength: lineLength, - line: make([]byte, lineLength), - used: 0, - out: out, - } -} - -func (l *lineBreaker) Write(b []byte) (n int, err error) { - n = len(b) - - if n == 0 { - return - } - - if l.used == 0 && l.haveWritten { - _, err = l.out.Write([]byte{'\n'}) - if err != nil { - return - } - } - - if l.used+len(b) < l.lineLength { - l.used += copy(l.line[l.used:], b) - return - } - - l.haveWritten = true - _, err = l.out.Write(l.line[0:l.used]) - if err != nil { - return - } - excess := l.lineLength - l.used - l.used = 0 - - _, err = l.out.Write(b[0:excess]) - if err != nil { - return - } - - _, err = l.Write(b[excess:]) - return -} - -func (l *lineBreaker) Close() (err error) { - if l.used > 0 { - _, err = l.out.Write(l.line[0:l.used]) - if err != nil { - return - } - } - - return -} - -// encoding keeps track of a running CRC24 over the data which has been written -// to it and outputs a OpenPGP checksum when closed, followed by an armor -// trailer. -// -// It's built into a stack of io.Writers: -// encoding -> base64 encoder -> lineBreaker -> out -type encoding struct { - out io.Writer - breaker *lineBreaker - b64 io.WriteCloser - crc uint32 - blockType []byte -} - -func (e *encoding) Write(data []byte) (n int, err error) { - e.crc = crc24(e.crc, data) - return e.b64.Write(data) -} - -func (e *encoding) Close() (err error) { - err = e.b64.Close() - if err != nil { - return - } - e.breaker.Close() - - var checksumBytes [3]byte - checksumBytes[0] = byte(e.crc >> 16) - checksumBytes[1] = byte(e.crc >> 8) - checksumBytes[2] = byte(e.crc) - - var b64ChecksumBytes [4]byte - base64.StdEncoding.Encode(b64ChecksumBytes[:], checksumBytes[:]) - - return writeSlices(e.out, blockEnd, b64ChecksumBytes[:], newline, armorEnd, e.blockType, armorEndOfLine) -} - -// Encode returns a WriteCloser which will encode the data written to it in -// OpenPGP armor. -func Encode(out io.Writer, blockType string, headers map[string]string) (w io.WriteCloser, err error) { - bType := []byte(blockType) - err = writeSlices(out, armorStart, bType, armorEndOfLineOut) - if err != nil { - return - } - - for k, v := range headers { - err = writeSlices(out, []byte(k), armorHeaderSep, []byte(v), newline) - if err != nil { - return - } - } - - _, err = out.Write(newline) - if err != nil { - return - } - - e := &encoding{ - out: out, - breaker: newLineBreaker(out, 64), - crc: crc24Init, - blockType: bType, - } - e.b64 = base64.NewEncoder(base64.StdEncoding, e.breaker) - return e, nil -} diff --git a/vendor/golang.org/x/crypto/openpgp/canonical_text.go b/vendor/golang.org/x/crypto/openpgp/canonical_text.go deleted file mode 100644 index e601e38..0000000 --- a/vendor/golang.org/x/crypto/openpgp/canonical_text.go +++ /dev/null @@ -1,59 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package openpgp - -import "hash" - -// NewCanonicalTextHash reformats text written to it into the canonical -// form and then applies the hash h. See RFC 4880, section 5.2.1. -func NewCanonicalTextHash(h hash.Hash) hash.Hash { - return &canonicalTextHash{h, 0} -} - -type canonicalTextHash struct { - h hash.Hash - s int -} - -var newline = []byte{'\r', '\n'} - -func (cth *canonicalTextHash) Write(buf []byte) (int, error) { - start := 0 - - for i, c := range buf { - switch cth.s { - case 0: - if c == '\r' { - cth.s = 1 - } else if c == '\n' { - cth.h.Write(buf[start:i]) - cth.h.Write(newline) - start = i + 1 - } - case 1: - cth.s = 0 - } - } - - cth.h.Write(buf[start:]) - return len(buf), nil -} - -func (cth *canonicalTextHash) Sum(in []byte) []byte { - return cth.h.Sum(in) -} - -func (cth *canonicalTextHash) Reset() { - cth.h.Reset() - cth.s = 0 -} - -func (cth *canonicalTextHash) Size() int { - return cth.h.Size() -} - -func (cth *canonicalTextHash) BlockSize() int { - return cth.h.BlockSize() -} diff --git a/vendor/golang.org/x/crypto/openpgp/elgamal/elgamal.go b/vendor/golang.org/x/crypto/openpgp/elgamal/elgamal.go deleted file mode 100644 index 73f4fe3..0000000 --- a/vendor/golang.org/x/crypto/openpgp/elgamal/elgamal.go +++ /dev/null @@ -1,122 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package elgamal implements ElGamal encryption, suitable for OpenPGP, -// as specified in "A Public-Key Cryptosystem and a Signature Scheme Based on -// Discrete Logarithms," IEEE Transactions on Information Theory, v. IT-31, -// n. 4, 1985, pp. 469-472. -// -// This form of ElGamal embeds PKCS#1 v1.5 padding, which may make it -// unsuitable for other protocols. RSA should be used in preference in any -// case. -package elgamal // import "golang.org/x/crypto/openpgp/elgamal" - -import ( - "crypto/rand" - "crypto/subtle" - "errors" - "io" - "math/big" -) - -// PublicKey represents an ElGamal public key. -type PublicKey struct { - G, P, Y *big.Int -} - -// PrivateKey represents an ElGamal private key. -type PrivateKey struct { - PublicKey - X *big.Int -} - -// Encrypt encrypts the given message to the given public key. The result is a -// pair of integers. Errors can result from reading random, or because msg is -// too large to be encrypted to the public key. -func Encrypt(random io.Reader, pub *PublicKey, msg []byte) (c1, c2 *big.Int, err error) { - pLen := (pub.P.BitLen() + 7) / 8 - if len(msg) > pLen-11 { - err = errors.New("elgamal: message too long") - return - } - - // EM = 0x02 || PS || 0x00 || M - em := make([]byte, pLen-1) - em[0] = 2 - ps, mm := em[1:len(em)-len(msg)-1], em[len(em)-len(msg):] - err = nonZeroRandomBytes(ps, random) - if err != nil { - return - } - em[len(em)-len(msg)-1] = 0 - copy(mm, msg) - - m := new(big.Int).SetBytes(em) - - k, err := rand.Int(random, pub.P) - if err != nil { - return - } - - c1 = new(big.Int).Exp(pub.G, k, pub.P) - s := new(big.Int).Exp(pub.Y, k, pub.P) - c2 = s.Mul(s, m) - c2.Mod(c2, pub.P) - - return -} - -// Decrypt takes two integers, resulting from an ElGamal encryption, and -// returns the plaintext of the message. An error can result only if the -// ciphertext is invalid. Users should keep in mind that this is a padding -// oracle and thus, if exposed to an adaptive chosen ciphertext attack, can -// be used to break the cryptosystem. See ``Chosen Ciphertext Attacks -// Against Protocols Based on the RSA Encryption Standard PKCS #1'', Daniel -// Bleichenbacher, Advances in Cryptology (Crypto '98), -func Decrypt(priv *PrivateKey, c1, c2 *big.Int) (msg []byte, err error) { - s := new(big.Int).Exp(c1, priv.X, priv.P) - s.ModInverse(s, priv.P) - s.Mul(s, c2) - s.Mod(s, priv.P) - em := s.Bytes() - - firstByteIsTwo := subtle.ConstantTimeByteEq(em[0], 2) - - // The remainder of the plaintext must be a string of non-zero random - // octets, followed by a 0, followed by the message. - // lookingForIndex: 1 iff we are still looking for the zero. - // index: the offset of the first zero byte. - var lookingForIndex, index int - lookingForIndex = 1 - - for i := 1; i < len(em); i++ { - equals0 := subtle.ConstantTimeByteEq(em[i], 0) - index = subtle.ConstantTimeSelect(lookingForIndex&equals0, i, index) - lookingForIndex = subtle.ConstantTimeSelect(equals0, 0, lookingForIndex) - } - - if firstByteIsTwo != 1 || lookingForIndex != 0 || index < 9 { - return nil, errors.New("elgamal: decryption error") - } - return em[index+1:], nil -} - -// nonZeroRandomBytes fills the given slice with non-zero random octets. -func nonZeroRandomBytes(s []byte, rand io.Reader) (err error) { - _, err = io.ReadFull(rand, s) - if err != nil { - return - } - - for i := 0; i < len(s); i++ { - for s[i] == 0 { - _, err = io.ReadFull(rand, s[i:i+1]) - if err != nil { - return - } - } - } - - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/errors/errors.go b/vendor/golang.org/x/crypto/openpgp/errors/errors.go deleted file mode 100644 index eb0550b..0000000 --- a/vendor/golang.org/x/crypto/openpgp/errors/errors.go +++ /dev/null @@ -1,72 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package errors contains common error types for the OpenPGP packages. -package errors // import "golang.org/x/crypto/openpgp/errors" - -import ( - "strconv" -) - -// A StructuralError is returned when OpenPGP data is found to be syntactically -// invalid. -type StructuralError string - -func (s StructuralError) Error() string { - return "openpgp: invalid data: " + string(s) -} - -// UnsupportedError indicates that, although the OpenPGP data is valid, it -// makes use of currently unimplemented features. -type UnsupportedError string - -func (s UnsupportedError) Error() string { - return "openpgp: unsupported feature: " + string(s) -} - -// InvalidArgumentError indicates that the caller is in error and passed an -// incorrect value. -type InvalidArgumentError string - -func (i InvalidArgumentError) Error() string { - return "openpgp: invalid argument: " + string(i) -} - -// SignatureError indicates that a syntactically valid signature failed to -// validate. -type SignatureError string - -func (b SignatureError) Error() string { - return "openpgp: invalid signature: " + string(b) -} - -type keyIncorrectError int - -func (ki keyIncorrectError) Error() string { - return "openpgp: incorrect key" -} - -var ErrKeyIncorrect error = keyIncorrectError(0) - -type unknownIssuerError int - -func (unknownIssuerError) Error() string { - return "openpgp: signature made by unknown entity" -} - -var ErrUnknownIssuer error = unknownIssuerError(0) - -type keyRevokedError int - -func (keyRevokedError) Error() string { - return "openpgp: signature made by revoked key" -} - -var ErrKeyRevoked error = keyRevokedError(0) - -type UnknownPacketTypeError uint8 - -func (upte UnknownPacketTypeError) Error() string { - return "openpgp: unknown packet type: " + strconv.Itoa(int(upte)) -} diff --git a/vendor/golang.org/x/crypto/openpgp/keys.go b/vendor/golang.org/x/crypto/openpgp/keys.go deleted file mode 100644 index aceb1b7..0000000 --- a/vendor/golang.org/x/crypto/openpgp/keys.go +++ /dev/null @@ -1,640 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package openpgp - -import ( - "crypto/rsa" - "io" - "time" - - "golang.org/x/crypto/openpgp/armor" - "golang.org/x/crypto/openpgp/errors" - "golang.org/x/crypto/openpgp/packet" -) - -// PublicKeyType is the armor type for a PGP public key. -var PublicKeyType = "PGP PUBLIC KEY BLOCK" - -// PrivateKeyType is the armor type for a PGP private key. -var PrivateKeyType = "PGP PRIVATE KEY BLOCK" - -// An Entity represents the components of an OpenPGP key: a primary public key -// (which must be a signing key), one or more identities claimed by that key, -// and zero or more subkeys, which may be encryption keys. -type Entity struct { - PrimaryKey *packet.PublicKey - PrivateKey *packet.PrivateKey - Identities map[string]*Identity // indexed by Identity.Name - Revocations []*packet.Signature - Subkeys []Subkey -} - -// An Identity represents an identity claimed by an Entity and zero or more -// assertions by other entities about that claim. -type Identity struct { - Name string // by convention, has the form "Full Name (comment) " - UserId *packet.UserId - SelfSignature *packet.Signature - Signatures []*packet.Signature -} - -// A Subkey is an additional public key in an Entity. Subkeys can be used for -// encryption. -type Subkey struct { - PublicKey *packet.PublicKey - PrivateKey *packet.PrivateKey - Sig *packet.Signature -} - -// A Key identifies a specific public key in an Entity. This is either the -// Entity's primary key or a subkey. -type Key struct { - Entity *Entity - PublicKey *packet.PublicKey - PrivateKey *packet.PrivateKey - SelfSignature *packet.Signature -} - -// A KeyRing provides access to public and private keys. -type KeyRing interface { - // KeysById returns the set of keys that have the given key id. - KeysById(id uint64) []Key - // KeysByIdAndUsage returns the set of keys with the given id - // that also meet the key usage given by requiredUsage. - // The requiredUsage is expressed as the bitwise-OR of - // packet.KeyFlag* values. - KeysByIdUsage(id uint64, requiredUsage byte) []Key - // DecryptionKeys returns all private keys that are valid for - // decryption. - DecryptionKeys() []Key -} - -// primaryIdentity returns the Identity marked as primary or the first identity -// if none are so marked. -func (e *Entity) primaryIdentity() *Identity { - var firstIdentity *Identity - for _, ident := range e.Identities { - if firstIdentity == nil { - firstIdentity = ident - } - if ident.SelfSignature.IsPrimaryId != nil && *ident.SelfSignature.IsPrimaryId { - return ident - } - } - return firstIdentity -} - -// encryptionKey returns the best candidate Key for encrypting a message to the -// given Entity. -func (e *Entity) encryptionKey(now time.Time) (Key, bool) { - candidateSubkey := -1 - - // Iterate the keys to find the newest key - var maxTime time.Time - for i, subkey := range e.Subkeys { - if subkey.Sig.FlagsValid && - subkey.Sig.FlagEncryptCommunications && - subkey.PublicKey.PubKeyAlgo.CanEncrypt() && - !subkey.Sig.KeyExpired(now) && - (maxTime.IsZero() || subkey.Sig.CreationTime.After(maxTime)) { - candidateSubkey = i - maxTime = subkey.Sig.CreationTime - } - } - - if candidateSubkey != -1 { - subkey := e.Subkeys[candidateSubkey] - return Key{e, subkey.PublicKey, subkey.PrivateKey, subkey.Sig}, true - } - - // If we don't have any candidate subkeys for encryption and - // the primary key doesn't have any usage metadata then we - // assume that the primary key is ok. Or, if the primary key is - // marked as ok to encrypt to, then we can obviously use it. - i := e.primaryIdentity() - if !i.SelfSignature.FlagsValid || i.SelfSignature.FlagEncryptCommunications && - e.PrimaryKey.PubKeyAlgo.CanEncrypt() && - !i.SelfSignature.KeyExpired(now) { - return Key{e, e.PrimaryKey, e.PrivateKey, i.SelfSignature}, true - } - - // This Entity appears to be signing only. - return Key{}, false -} - -// signingKey return the best candidate Key for signing a message with this -// Entity. -func (e *Entity) signingKey(now time.Time) (Key, bool) { - candidateSubkey := -1 - - for i, subkey := range e.Subkeys { - if subkey.Sig.FlagsValid && - subkey.Sig.FlagSign && - subkey.PublicKey.PubKeyAlgo.CanSign() && - !subkey.Sig.KeyExpired(now) { - candidateSubkey = i - break - } - } - - if candidateSubkey != -1 { - subkey := e.Subkeys[candidateSubkey] - return Key{e, subkey.PublicKey, subkey.PrivateKey, subkey.Sig}, true - } - - // If we have no candidate subkey then we assume that it's ok to sign - // with the primary key. - i := e.primaryIdentity() - if !i.SelfSignature.FlagsValid || i.SelfSignature.FlagSign && - !i.SelfSignature.KeyExpired(now) { - return Key{e, e.PrimaryKey, e.PrivateKey, i.SelfSignature}, true - } - - return Key{}, false -} - -// An EntityList contains one or more Entities. -type EntityList []*Entity - -// KeysById returns the set of keys that have the given key id. -func (el EntityList) KeysById(id uint64) (keys []Key) { - for _, e := range el { - if e.PrimaryKey.KeyId == id { - var selfSig *packet.Signature - for _, ident := range e.Identities { - if selfSig == nil { - selfSig = ident.SelfSignature - } else if ident.SelfSignature.IsPrimaryId != nil && *ident.SelfSignature.IsPrimaryId { - selfSig = ident.SelfSignature - break - } - } - keys = append(keys, Key{e, e.PrimaryKey, e.PrivateKey, selfSig}) - } - - for _, subKey := range e.Subkeys { - if subKey.PublicKey.KeyId == id { - keys = append(keys, Key{e, subKey.PublicKey, subKey.PrivateKey, subKey.Sig}) - } - } - } - return -} - -// KeysByIdAndUsage returns the set of keys with the given id that also meet -// the key usage given by requiredUsage. The requiredUsage is expressed as -// the bitwise-OR of packet.KeyFlag* values. -func (el EntityList) KeysByIdUsage(id uint64, requiredUsage byte) (keys []Key) { - for _, key := range el.KeysById(id) { - if len(key.Entity.Revocations) > 0 { - continue - } - - if key.SelfSignature.RevocationReason != nil { - continue - } - - if key.SelfSignature.FlagsValid && requiredUsage != 0 { - var usage byte - if key.SelfSignature.FlagCertify { - usage |= packet.KeyFlagCertify - } - if key.SelfSignature.FlagSign { - usage |= packet.KeyFlagSign - } - if key.SelfSignature.FlagEncryptCommunications { - usage |= packet.KeyFlagEncryptCommunications - } - if key.SelfSignature.FlagEncryptStorage { - usage |= packet.KeyFlagEncryptStorage - } - if usage&requiredUsage != requiredUsage { - continue - } - } - - keys = append(keys, key) - } - return -} - -// DecryptionKeys returns all private keys that are valid for decryption. -func (el EntityList) DecryptionKeys() (keys []Key) { - for _, e := range el { - for _, subKey := range e.Subkeys { - if subKey.PrivateKey != nil && (!subKey.Sig.FlagsValid || subKey.Sig.FlagEncryptStorage || subKey.Sig.FlagEncryptCommunications) { - keys = append(keys, Key{e, subKey.PublicKey, subKey.PrivateKey, subKey.Sig}) - } - } - } - return -} - -// ReadArmoredKeyRing reads one or more public/private keys from an armor keyring file. -func ReadArmoredKeyRing(r io.Reader) (EntityList, error) { - block, err := armor.Decode(r) - if err == io.EOF { - return nil, errors.InvalidArgumentError("no armored data found") - } - if err != nil { - return nil, err - } - if block.Type != PublicKeyType && block.Type != PrivateKeyType { - return nil, errors.InvalidArgumentError("expected public or private key block, got: " + block.Type) - } - - return ReadKeyRing(block.Body) -} - -// ReadKeyRing reads one or more public/private keys. Unsupported keys are -// ignored as long as at least a single valid key is found. -func ReadKeyRing(r io.Reader) (el EntityList, err error) { - packets := packet.NewReader(r) - var lastUnsupportedError error - - for { - var e *Entity - e, err = ReadEntity(packets) - if err != nil { - // TODO: warn about skipped unsupported/unreadable keys - if _, ok := err.(errors.UnsupportedError); ok { - lastUnsupportedError = err - err = readToNextPublicKey(packets) - } else if _, ok := err.(errors.StructuralError); ok { - // Skip unreadable, badly-formatted keys - lastUnsupportedError = err - err = readToNextPublicKey(packets) - } - if err == io.EOF { - err = nil - break - } - if err != nil { - el = nil - break - } - } else { - el = append(el, e) - } - } - - if len(el) == 0 && err == nil { - err = lastUnsupportedError - } - return -} - -// readToNextPublicKey reads packets until the start of the entity and leaves -// the first packet of the new entity in the Reader. -func readToNextPublicKey(packets *packet.Reader) (err error) { - var p packet.Packet - for { - p, err = packets.Next() - if err == io.EOF { - return - } else if err != nil { - if _, ok := err.(errors.UnsupportedError); ok { - err = nil - continue - } - return - } - - if pk, ok := p.(*packet.PublicKey); ok && !pk.IsSubkey { - packets.Unread(p) - return - } - } -} - -// ReadEntity reads an entity (public key, identities, subkeys etc) from the -// given Reader. -func ReadEntity(packets *packet.Reader) (*Entity, error) { - e := new(Entity) - e.Identities = make(map[string]*Identity) - - p, err := packets.Next() - if err != nil { - return nil, err - } - - var ok bool - if e.PrimaryKey, ok = p.(*packet.PublicKey); !ok { - if e.PrivateKey, ok = p.(*packet.PrivateKey); !ok { - packets.Unread(p) - return nil, errors.StructuralError("first packet was not a public/private key") - } - e.PrimaryKey = &e.PrivateKey.PublicKey - } - - if !e.PrimaryKey.PubKeyAlgo.CanSign() { - return nil, errors.StructuralError("primary key cannot be used for signatures") - } - - var current *Identity - var revocations []*packet.Signature -EachPacket: - for { - p, err := packets.Next() - if err == io.EOF { - break - } else if err != nil { - return nil, err - } - - switch pkt := p.(type) { - case *packet.UserId: - current = new(Identity) - current.Name = pkt.Id - current.UserId = pkt - e.Identities[pkt.Id] = current - - for { - p, err = packets.Next() - if err == io.EOF { - return nil, io.ErrUnexpectedEOF - } else if err != nil { - return nil, err - } - - sig, ok := p.(*packet.Signature) - if !ok { - return nil, errors.StructuralError("user ID packet not followed by self-signature") - } - - if (sig.SigType == packet.SigTypePositiveCert || sig.SigType == packet.SigTypeGenericCert) && sig.IssuerKeyId != nil && *sig.IssuerKeyId == e.PrimaryKey.KeyId { - if err = e.PrimaryKey.VerifyUserIdSignature(pkt.Id, e.PrimaryKey, sig); err != nil { - return nil, errors.StructuralError("user ID self-signature invalid: " + err.Error()) - } - current.SelfSignature = sig - break - } - current.Signatures = append(current.Signatures, sig) - } - case *packet.Signature: - if pkt.SigType == packet.SigTypeKeyRevocation { - revocations = append(revocations, pkt) - } else if pkt.SigType == packet.SigTypeDirectSignature { - // TODO: RFC4880 5.2.1 permits signatures - // directly on keys (eg. to bind additional - // revocation keys). - } else if current == nil { - return nil, errors.StructuralError("signature packet found before user id packet") - } else { - current.Signatures = append(current.Signatures, pkt) - } - case *packet.PrivateKey: - if pkt.IsSubkey == false { - packets.Unread(p) - break EachPacket - } - err = addSubkey(e, packets, &pkt.PublicKey, pkt) - if err != nil { - return nil, err - } - case *packet.PublicKey: - if pkt.IsSubkey == false { - packets.Unread(p) - break EachPacket - } - err = addSubkey(e, packets, pkt, nil) - if err != nil { - return nil, err - } - default: - // we ignore unknown packets - } - } - - if len(e.Identities) == 0 { - return nil, errors.StructuralError("entity without any identities") - } - - for _, revocation := range revocations { - err = e.PrimaryKey.VerifyRevocationSignature(revocation) - if err == nil { - e.Revocations = append(e.Revocations, revocation) - } else { - // TODO: RFC 4880 5.2.3.15 defines revocation keys. - return nil, errors.StructuralError("revocation signature signed by alternate key") - } - } - - return e, nil -} - -func addSubkey(e *Entity, packets *packet.Reader, pub *packet.PublicKey, priv *packet.PrivateKey) error { - var subKey Subkey - subKey.PublicKey = pub - subKey.PrivateKey = priv - p, err := packets.Next() - if err == io.EOF { - return io.ErrUnexpectedEOF - } - if err != nil { - return errors.StructuralError("subkey signature invalid: " + err.Error()) - } - var ok bool - subKey.Sig, ok = p.(*packet.Signature) - if !ok { - return errors.StructuralError("subkey packet not followed by signature") - } - if subKey.Sig.SigType != packet.SigTypeSubkeyBinding && subKey.Sig.SigType != packet.SigTypeSubkeyRevocation { - return errors.StructuralError("subkey signature with wrong type") - } - err = e.PrimaryKey.VerifyKeySignature(subKey.PublicKey, subKey.Sig) - if err != nil { - return errors.StructuralError("subkey signature invalid: " + err.Error()) - } - e.Subkeys = append(e.Subkeys, subKey) - return nil -} - -const defaultRSAKeyBits = 2048 - -// NewEntity returns an Entity that contains a fresh RSA/RSA keypair with a -// single identity composed of the given full name, comment and email, any of -// which may be empty but must not contain any of "()<>\x00". -// If config is nil, sensible defaults will be used. -func NewEntity(name, comment, email string, config *packet.Config) (*Entity, error) { - currentTime := config.Now() - - bits := defaultRSAKeyBits - if config != nil && config.RSABits != 0 { - bits = config.RSABits - } - - uid := packet.NewUserId(name, comment, email) - if uid == nil { - return nil, errors.InvalidArgumentError("user id field contained invalid characters") - } - signingPriv, err := rsa.GenerateKey(config.Random(), bits) - if err != nil { - return nil, err - } - encryptingPriv, err := rsa.GenerateKey(config.Random(), bits) - if err != nil { - return nil, err - } - - e := &Entity{ - PrimaryKey: packet.NewRSAPublicKey(currentTime, &signingPriv.PublicKey), - PrivateKey: packet.NewRSAPrivateKey(currentTime, signingPriv), - Identities: make(map[string]*Identity), - } - isPrimaryId := true - e.Identities[uid.Id] = &Identity{ - Name: uid.Id, - UserId: uid, - SelfSignature: &packet.Signature{ - CreationTime: currentTime, - SigType: packet.SigTypePositiveCert, - PubKeyAlgo: packet.PubKeyAlgoRSA, - Hash: config.Hash(), - IsPrimaryId: &isPrimaryId, - FlagsValid: true, - FlagSign: true, - FlagCertify: true, - IssuerKeyId: &e.PrimaryKey.KeyId, - }, - } - err = e.Identities[uid.Id].SelfSignature.SignUserId(uid.Id, e.PrimaryKey, e.PrivateKey, config) - if err != nil { - return nil, err - } - - // If the user passes in a DefaultHash via packet.Config, - // set the PreferredHash for the SelfSignature. - if config != nil && config.DefaultHash != 0 { - e.Identities[uid.Id].SelfSignature.PreferredHash = []uint8{hashToHashId(config.DefaultHash)} - } - - // Likewise for DefaultCipher. - if config != nil && config.DefaultCipher != 0 { - e.Identities[uid.Id].SelfSignature.PreferredSymmetric = []uint8{uint8(config.DefaultCipher)} - } - - e.Subkeys = make([]Subkey, 1) - e.Subkeys[0] = Subkey{ - PublicKey: packet.NewRSAPublicKey(currentTime, &encryptingPriv.PublicKey), - PrivateKey: packet.NewRSAPrivateKey(currentTime, encryptingPriv), - Sig: &packet.Signature{ - CreationTime: currentTime, - SigType: packet.SigTypeSubkeyBinding, - PubKeyAlgo: packet.PubKeyAlgoRSA, - Hash: config.Hash(), - FlagsValid: true, - FlagEncryptStorage: true, - FlagEncryptCommunications: true, - IssuerKeyId: &e.PrimaryKey.KeyId, - }, - } - e.Subkeys[0].PublicKey.IsSubkey = true - e.Subkeys[0].PrivateKey.IsSubkey = true - err = e.Subkeys[0].Sig.SignKey(e.Subkeys[0].PublicKey, e.PrivateKey, config) - if err != nil { - return nil, err - } - return e, nil -} - -// SerializePrivate serializes an Entity, including private key material, to -// the given Writer. For now, it must only be used on an Entity returned from -// NewEntity. -// config is ignored -func (e *Entity) SerializePrivate(w io.Writer, config *packet.Config) (err error) { - err = e.PrivateKey.Serialize(w) - if err != nil { - return - } - for _, ident := range e.Identities { - err = ident.UserId.Serialize(w) - if err != nil { - return - } - err = ident.SelfSignature.Serialize(w) - if err != nil { - return - } - } - for _, subkey := range e.Subkeys { - err = subkey.PrivateKey.Serialize(w) - if err != nil { - return - } - err = subkey.Sig.Serialize(w) - if err != nil { - return - } - } - return nil -} - -// Serialize writes the public part of the given Entity to w. (No private -// key material will be output). -func (e *Entity) Serialize(w io.Writer) error { - err := e.PrimaryKey.Serialize(w) - if err != nil { - return err - } - for _, ident := range e.Identities { - err = ident.UserId.Serialize(w) - if err != nil { - return err - } - err = ident.SelfSignature.Serialize(w) - if err != nil { - return err - } - for _, sig := range ident.Signatures { - err = sig.Serialize(w) - if err != nil { - return err - } - } - } - for _, subkey := range e.Subkeys { - err = subkey.PublicKey.Serialize(w) - if err != nil { - return err - } - err = subkey.Sig.Serialize(w) - if err != nil { - return err - } - } - return nil -} - -// SignIdentity adds a signature to e, from signer, attesting that identity is -// associated with e. The provided identity must already be an element of -// e.Identities and the private key of signer must have been decrypted if -// necessary. -// If config is nil, sensible defaults will be used. -func (e *Entity) SignIdentity(identity string, signer *Entity, config *packet.Config) error { - if signer.PrivateKey == nil { - return errors.InvalidArgumentError("signing Entity must have a private key") - } - if signer.PrivateKey.Encrypted { - return errors.InvalidArgumentError("signing Entity's private key must be decrypted") - } - ident, ok := e.Identities[identity] - if !ok { - return errors.InvalidArgumentError("given identity string not found in Entity") - } - - sig := &packet.Signature{ - SigType: packet.SigTypeGenericCert, - PubKeyAlgo: signer.PrivateKey.PubKeyAlgo, - Hash: config.Hash(), - CreationTime: config.Now(), - IssuerKeyId: &signer.PrivateKey.KeyId, - } - if err := sig.SignUserId(identity, e.PrimaryKey, signer.PrivateKey, config); err != nil { - return err - } - ident.Signatures = append(ident.Signatures, sig) - return nil -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/compressed.go b/vendor/golang.org/x/crypto/openpgp/packet/compressed.go deleted file mode 100644 index e8f0b5c..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/compressed.go +++ /dev/null @@ -1,123 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "compress/bzip2" - "compress/flate" - "compress/zlib" - "golang.org/x/crypto/openpgp/errors" - "io" - "strconv" -) - -// Compressed represents a compressed OpenPGP packet. The decompressed contents -// will contain more OpenPGP packets. See RFC 4880, section 5.6. -type Compressed struct { - Body io.Reader -} - -const ( - NoCompression = flate.NoCompression - BestSpeed = flate.BestSpeed - BestCompression = flate.BestCompression - DefaultCompression = flate.DefaultCompression -) - -// CompressionConfig contains compressor configuration settings. -type CompressionConfig struct { - // Level is the compression level to use. It must be set to - // between -1 and 9, with -1 causing the compressor to use the - // default compression level, 0 causing the compressor to use - // no compression and 1 to 9 representing increasing (better, - // slower) compression levels. If Level is less than -1 or - // more then 9, a non-nil error will be returned during - // encryption. See the constants above for convenient common - // settings for Level. - Level int -} - -func (c *Compressed) parse(r io.Reader) error { - var buf [1]byte - _, err := readFull(r, buf[:]) - if err != nil { - return err - } - - switch buf[0] { - case 1: - c.Body = flate.NewReader(r) - case 2: - c.Body, err = zlib.NewReader(r) - case 3: - c.Body = bzip2.NewReader(r) - default: - err = errors.UnsupportedError("unknown compression algorithm: " + strconv.Itoa(int(buf[0]))) - } - - return err -} - -// compressedWriterCloser represents the serialized compression stream -// header and the compressor. Its Close() method ensures that both the -// compressor and serialized stream header are closed. Its Write() -// method writes to the compressor. -type compressedWriteCloser struct { - sh io.Closer // Stream Header - c io.WriteCloser // Compressor -} - -func (cwc compressedWriteCloser) Write(p []byte) (int, error) { - return cwc.c.Write(p) -} - -func (cwc compressedWriteCloser) Close() (err error) { - err = cwc.c.Close() - if err != nil { - return err - } - - return cwc.sh.Close() -} - -// SerializeCompressed serializes a compressed data packet to w and -// returns a WriteCloser to which the literal data packets themselves -// can be written and which MUST be closed on completion. If cc is -// nil, sensible defaults will be used to configure the compression -// algorithm. -func SerializeCompressed(w io.WriteCloser, algo CompressionAlgo, cc *CompressionConfig) (literaldata io.WriteCloser, err error) { - compressed, err := serializeStreamHeader(w, packetTypeCompressed) - if err != nil { - return - } - - _, err = compressed.Write([]byte{uint8(algo)}) - if err != nil { - return - } - - level := DefaultCompression - if cc != nil { - level = cc.Level - } - - var compressor io.WriteCloser - switch algo { - case CompressionZIP: - compressor, err = flate.NewWriter(compressed, level) - case CompressionZLIB: - compressor, err = zlib.NewWriterLevel(compressed, level) - default: - s := strconv.Itoa(int(algo)) - err = errors.UnsupportedError("Unsupported compression algorithm: " + s) - } - if err != nil { - return - } - - literaldata = compressedWriteCloser{compressed, compressor} - - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/config.go b/vendor/golang.org/x/crypto/openpgp/packet/config.go deleted file mode 100644 index c76eecc..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/config.go +++ /dev/null @@ -1,91 +0,0 @@ -// Copyright 2012 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "crypto" - "crypto/rand" - "io" - "time" -) - -// Config collects a number of parameters along with sensible defaults. -// A nil *Config is valid and results in all default values. -type Config struct { - // Rand provides the source of entropy. - // If nil, the crypto/rand Reader is used. - Rand io.Reader - // DefaultHash is the default hash function to be used. - // If zero, SHA-256 is used. - DefaultHash crypto.Hash - // DefaultCipher is the cipher to be used. - // If zero, AES-128 is used. - DefaultCipher CipherFunction - // Time returns the current time as the number of seconds since the - // epoch. If Time is nil, time.Now is used. - Time func() time.Time - // DefaultCompressionAlgo is the compression algorithm to be - // applied to the plaintext before encryption. If zero, no - // compression is done. - DefaultCompressionAlgo CompressionAlgo - // CompressionConfig configures the compression settings. - CompressionConfig *CompressionConfig - // S2KCount is only used for symmetric encryption. It - // determines the strength of the passphrase stretching when - // the said passphrase is hashed to produce a key. S2KCount - // should be between 1024 and 65011712, inclusive. If Config - // is nil or S2KCount is 0, the value 65536 used. Not all - // values in the above range can be represented. S2KCount will - // be rounded up to the next representable value if it cannot - // be encoded exactly. When set, it is strongly encrouraged to - // use a value that is at least 65536. See RFC 4880 Section - // 3.7.1.3. - S2KCount int - // RSABits is the number of bits in new RSA keys made with NewEntity. - // If zero, then 2048 bit keys are created. - RSABits int -} - -func (c *Config) Random() io.Reader { - if c == nil || c.Rand == nil { - return rand.Reader - } - return c.Rand -} - -func (c *Config) Hash() crypto.Hash { - if c == nil || uint(c.DefaultHash) == 0 { - return crypto.SHA256 - } - return c.DefaultHash -} - -func (c *Config) Cipher() CipherFunction { - if c == nil || uint8(c.DefaultCipher) == 0 { - return CipherAES128 - } - return c.DefaultCipher -} - -func (c *Config) Now() time.Time { - if c == nil || c.Time == nil { - return time.Now() - } - return c.Time() -} - -func (c *Config) Compression() CompressionAlgo { - if c == nil { - return CompressionNone - } - return c.DefaultCompressionAlgo -} - -func (c *Config) PasswordHashIterations() int { - if c == nil || c.S2KCount == 0 { - return 0 - } - return c.S2KCount -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/encrypted_key.go b/vendor/golang.org/x/crypto/openpgp/packet/encrypted_key.go deleted file mode 100644 index 02b372c..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/encrypted_key.go +++ /dev/null @@ -1,206 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "crypto/rsa" - "encoding/binary" - "io" - "math/big" - "strconv" - - "golang.org/x/crypto/openpgp/elgamal" - "golang.org/x/crypto/openpgp/errors" -) - -const encryptedKeyVersion = 3 - -// EncryptedKey represents a public-key encrypted session key. See RFC 4880, -// section 5.1. -type EncryptedKey struct { - KeyId uint64 - Algo PublicKeyAlgorithm - CipherFunc CipherFunction // only valid after a successful Decrypt - Key []byte // only valid after a successful Decrypt - - encryptedMPI1, encryptedMPI2 parsedMPI -} - -func (e *EncryptedKey) parse(r io.Reader) (err error) { - var buf [10]byte - _, err = readFull(r, buf[:]) - if err != nil { - return - } - if buf[0] != encryptedKeyVersion { - return errors.UnsupportedError("unknown EncryptedKey version " + strconv.Itoa(int(buf[0]))) - } - e.KeyId = binary.BigEndian.Uint64(buf[1:9]) - e.Algo = PublicKeyAlgorithm(buf[9]) - switch e.Algo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly: - e.encryptedMPI1.bytes, e.encryptedMPI1.bitLength, err = readMPI(r) - if err != nil { - return - } - case PubKeyAlgoElGamal: - e.encryptedMPI1.bytes, e.encryptedMPI1.bitLength, err = readMPI(r) - if err != nil { - return - } - e.encryptedMPI2.bytes, e.encryptedMPI2.bitLength, err = readMPI(r) - if err != nil { - return - } - } - _, err = consumeAll(r) - return -} - -func checksumKeyMaterial(key []byte) uint16 { - var checksum uint16 - for _, v := range key { - checksum += uint16(v) - } - return checksum -} - -// Decrypt decrypts an encrypted session key with the given private key. The -// private key must have been decrypted first. -// If config is nil, sensible defaults will be used. -func (e *EncryptedKey) Decrypt(priv *PrivateKey, config *Config) error { - var err error - var b []byte - - // TODO(agl): use session key decryption routines here to avoid - // padding oracle attacks. - switch priv.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly: - k := priv.PrivateKey.(*rsa.PrivateKey) - b, err = rsa.DecryptPKCS1v15(config.Random(), k, padToKeySize(&k.PublicKey, e.encryptedMPI1.bytes)) - case PubKeyAlgoElGamal: - c1 := new(big.Int).SetBytes(e.encryptedMPI1.bytes) - c2 := new(big.Int).SetBytes(e.encryptedMPI2.bytes) - b, err = elgamal.Decrypt(priv.PrivateKey.(*elgamal.PrivateKey), c1, c2) - default: - err = errors.InvalidArgumentError("cannot decrypted encrypted session key with private key of type " + strconv.Itoa(int(priv.PubKeyAlgo))) - } - - if err != nil { - return err - } - - e.CipherFunc = CipherFunction(b[0]) - e.Key = b[1 : len(b)-2] - expectedChecksum := uint16(b[len(b)-2])<<8 | uint16(b[len(b)-1]) - checksum := checksumKeyMaterial(e.Key) - if checksum != expectedChecksum { - return errors.StructuralError("EncryptedKey checksum incorrect") - } - - return nil -} - -// Serialize writes the encrypted key packet, e, to w. -func (e *EncryptedKey) Serialize(w io.Writer) error { - var mpiLen int - switch e.Algo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly: - mpiLen = 2 + len(e.encryptedMPI1.bytes) - case PubKeyAlgoElGamal: - mpiLen = 2 + len(e.encryptedMPI1.bytes) + 2 + len(e.encryptedMPI2.bytes) - default: - return errors.InvalidArgumentError("don't know how to serialize encrypted key type " + strconv.Itoa(int(e.Algo))) - } - - serializeHeader(w, packetTypeEncryptedKey, 1 /* version */ +8 /* key id */ +1 /* algo */ +mpiLen) - - w.Write([]byte{encryptedKeyVersion}) - binary.Write(w, binary.BigEndian, e.KeyId) - w.Write([]byte{byte(e.Algo)}) - - switch e.Algo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly: - writeMPIs(w, e.encryptedMPI1) - case PubKeyAlgoElGamal: - writeMPIs(w, e.encryptedMPI1, e.encryptedMPI2) - default: - panic("internal error") - } - - return nil -} - -// SerializeEncryptedKey serializes an encrypted key packet to w that contains -// key, encrypted to pub. -// If config is nil, sensible defaults will be used. -func SerializeEncryptedKey(w io.Writer, pub *PublicKey, cipherFunc CipherFunction, key []byte, config *Config) error { - var buf [10]byte - buf[0] = encryptedKeyVersion - binary.BigEndian.PutUint64(buf[1:9], pub.KeyId) - buf[9] = byte(pub.PubKeyAlgo) - - keyBlock := make([]byte, 1 /* cipher type */ +len(key)+2 /* checksum */) - keyBlock[0] = byte(cipherFunc) - copy(keyBlock[1:], key) - checksum := checksumKeyMaterial(key) - keyBlock[1+len(key)] = byte(checksum >> 8) - keyBlock[1+len(key)+1] = byte(checksum) - - switch pub.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly: - return serializeEncryptedKeyRSA(w, config.Random(), buf, pub.PublicKey.(*rsa.PublicKey), keyBlock) - case PubKeyAlgoElGamal: - return serializeEncryptedKeyElGamal(w, config.Random(), buf, pub.PublicKey.(*elgamal.PublicKey), keyBlock) - case PubKeyAlgoDSA, PubKeyAlgoRSASignOnly: - return errors.InvalidArgumentError("cannot encrypt to public key of type " + strconv.Itoa(int(pub.PubKeyAlgo))) - } - - return errors.UnsupportedError("encrypting a key to public key of type " + strconv.Itoa(int(pub.PubKeyAlgo))) -} - -func serializeEncryptedKeyRSA(w io.Writer, rand io.Reader, header [10]byte, pub *rsa.PublicKey, keyBlock []byte) error { - cipherText, err := rsa.EncryptPKCS1v15(rand, pub, keyBlock) - if err != nil { - return errors.InvalidArgumentError("RSA encryption failed: " + err.Error()) - } - - packetLen := 10 /* header length */ + 2 /* mpi size */ + len(cipherText) - - err = serializeHeader(w, packetTypeEncryptedKey, packetLen) - if err != nil { - return err - } - _, err = w.Write(header[:]) - if err != nil { - return err - } - return writeMPI(w, 8*uint16(len(cipherText)), cipherText) -} - -func serializeEncryptedKeyElGamal(w io.Writer, rand io.Reader, header [10]byte, pub *elgamal.PublicKey, keyBlock []byte) error { - c1, c2, err := elgamal.Encrypt(rand, pub, keyBlock) - if err != nil { - return errors.InvalidArgumentError("ElGamal encryption failed: " + err.Error()) - } - - packetLen := 10 /* header length */ - packetLen += 2 /* mpi size */ + (c1.BitLen()+7)/8 - packetLen += 2 /* mpi size */ + (c2.BitLen()+7)/8 - - err = serializeHeader(w, packetTypeEncryptedKey, packetLen) - if err != nil { - return err - } - _, err = w.Write(header[:]) - if err != nil { - return err - } - err = writeBig(w, c1) - if err != nil { - return err - } - return writeBig(w, c2) -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/literal.go b/vendor/golang.org/x/crypto/openpgp/packet/literal.go deleted file mode 100644 index 1a9ec6e..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/literal.go +++ /dev/null @@ -1,89 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "encoding/binary" - "io" -) - -// LiteralData represents an encrypted file. See RFC 4880, section 5.9. -type LiteralData struct { - IsBinary bool - FileName string - Time uint32 // Unix epoch time. Either creation time or modification time. 0 means undefined. - Body io.Reader -} - -// ForEyesOnly returns whether the contents of the LiteralData have been marked -// as especially sensitive. -func (l *LiteralData) ForEyesOnly() bool { - return l.FileName == "_CONSOLE" -} - -func (l *LiteralData) parse(r io.Reader) (err error) { - var buf [256]byte - - _, err = readFull(r, buf[:2]) - if err != nil { - return - } - - l.IsBinary = buf[0] == 'b' - fileNameLen := int(buf[1]) - - _, err = readFull(r, buf[:fileNameLen]) - if err != nil { - return - } - - l.FileName = string(buf[:fileNameLen]) - - _, err = readFull(r, buf[:4]) - if err != nil { - return - } - - l.Time = binary.BigEndian.Uint32(buf[:4]) - l.Body = r - return -} - -// SerializeLiteral serializes a literal data packet to w and returns a -// WriteCloser to which the data itself can be written and which MUST be closed -// on completion. The fileName is truncated to 255 bytes. -func SerializeLiteral(w io.WriteCloser, isBinary bool, fileName string, time uint32) (plaintext io.WriteCloser, err error) { - var buf [4]byte - buf[0] = 't' - if isBinary { - buf[0] = 'b' - } - if len(fileName) > 255 { - fileName = fileName[:255] - } - buf[1] = byte(len(fileName)) - - inner, err := serializeStreamHeader(w, packetTypeLiteralData) - if err != nil { - return - } - - _, err = inner.Write(buf[:2]) - if err != nil { - return - } - _, err = inner.Write([]byte(fileName)) - if err != nil { - return - } - binary.BigEndian.PutUint32(buf[:], time) - _, err = inner.Write(buf[:]) - if err != nil { - return - } - - plaintext = inner - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/ocfb.go b/vendor/golang.org/x/crypto/openpgp/packet/ocfb.go deleted file mode 100644 index ce2a33a..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/ocfb.go +++ /dev/null @@ -1,143 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// OpenPGP CFB Mode. http://tools.ietf.org/html/rfc4880#section-13.9 - -package packet - -import ( - "crypto/cipher" -) - -type ocfbEncrypter struct { - b cipher.Block - fre []byte - outUsed int -} - -// An OCFBResyncOption determines if the "resynchronization step" of OCFB is -// performed. -type OCFBResyncOption bool - -const ( - OCFBResync OCFBResyncOption = true - OCFBNoResync OCFBResyncOption = false -) - -// NewOCFBEncrypter returns a cipher.Stream which encrypts data with OpenPGP's -// cipher feedback mode using the given cipher.Block, and an initial amount of -// ciphertext. randData must be random bytes and be the same length as the -// cipher.Block's block size. Resync determines if the "resynchronization step" -// from RFC 4880, 13.9 step 7 is performed. Different parts of OpenPGP vary on -// this point. -func NewOCFBEncrypter(block cipher.Block, randData []byte, resync OCFBResyncOption) (cipher.Stream, []byte) { - blockSize := block.BlockSize() - if len(randData) != blockSize { - return nil, nil - } - - x := &ocfbEncrypter{ - b: block, - fre: make([]byte, blockSize), - outUsed: 0, - } - prefix := make([]byte, blockSize+2) - - block.Encrypt(x.fre, x.fre) - for i := 0; i < blockSize; i++ { - prefix[i] = randData[i] ^ x.fre[i] - } - - block.Encrypt(x.fre, prefix[:blockSize]) - prefix[blockSize] = x.fre[0] ^ randData[blockSize-2] - prefix[blockSize+1] = x.fre[1] ^ randData[blockSize-1] - - if resync { - block.Encrypt(x.fre, prefix[2:]) - } else { - x.fre[0] = prefix[blockSize] - x.fre[1] = prefix[blockSize+1] - x.outUsed = 2 - } - return x, prefix -} - -func (x *ocfbEncrypter) XORKeyStream(dst, src []byte) { - for i := 0; i < len(src); i++ { - if x.outUsed == len(x.fre) { - x.b.Encrypt(x.fre, x.fre) - x.outUsed = 0 - } - - x.fre[x.outUsed] ^= src[i] - dst[i] = x.fre[x.outUsed] - x.outUsed++ - } -} - -type ocfbDecrypter struct { - b cipher.Block - fre []byte - outUsed int -} - -// NewOCFBDecrypter returns a cipher.Stream which decrypts data with OpenPGP's -// cipher feedback mode using the given cipher.Block. Prefix must be the first -// blockSize + 2 bytes of the ciphertext, where blockSize is the cipher.Block's -// block size. If an incorrect key is detected then nil is returned. On -// successful exit, blockSize+2 bytes of decrypted data are written into -// prefix. Resync determines if the "resynchronization step" from RFC 4880, -// 13.9 step 7 is performed. Different parts of OpenPGP vary on this point. -func NewOCFBDecrypter(block cipher.Block, prefix []byte, resync OCFBResyncOption) cipher.Stream { - blockSize := block.BlockSize() - if len(prefix) != blockSize+2 { - return nil - } - - x := &ocfbDecrypter{ - b: block, - fre: make([]byte, blockSize), - outUsed: 0, - } - prefixCopy := make([]byte, len(prefix)) - copy(prefixCopy, prefix) - - block.Encrypt(x.fre, x.fre) - for i := 0; i < blockSize; i++ { - prefixCopy[i] ^= x.fre[i] - } - - block.Encrypt(x.fre, prefix[:blockSize]) - prefixCopy[blockSize] ^= x.fre[0] - prefixCopy[blockSize+1] ^= x.fre[1] - - if prefixCopy[blockSize-2] != prefixCopy[blockSize] || - prefixCopy[blockSize-1] != prefixCopy[blockSize+1] { - return nil - } - - if resync { - block.Encrypt(x.fre, prefix[2:]) - } else { - x.fre[0] = prefix[blockSize] - x.fre[1] = prefix[blockSize+1] - x.outUsed = 2 - } - copy(prefix, prefixCopy) - return x -} - -func (x *ocfbDecrypter) XORKeyStream(dst, src []byte) { - for i := 0; i < len(src); i++ { - if x.outUsed == len(x.fre) { - x.b.Encrypt(x.fre, x.fre) - x.outUsed = 0 - } - - c := src[i] - dst[i] = x.fre[x.outUsed] ^ src[i] - x.fre[x.outUsed] = c - x.outUsed++ - } -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/one_pass_signature.go b/vendor/golang.org/x/crypto/openpgp/packet/one_pass_signature.go deleted file mode 100644 index 1713503..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/one_pass_signature.go +++ /dev/null @@ -1,73 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "crypto" - "encoding/binary" - "golang.org/x/crypto/openpgp/errors" - "golang.org/x/crypto/openpgp/s2k" - "io" - "strconv" -) - -// OnePassSignature represents a one-pass signature packet. See RFC 4880, -// section 5.4. -type OnePassSignature struct { - SigType SignatureType - Hash crypto.Hash - PubKeyAlgo PublicKeyAlgorithm - KeyId uint64 - IsLast bool -} - -const onePassSignatureVersion = 3 - -func (ops *OnePassSignature) parse(r io.Reader) (err error) { - var buf [13]byte - - _, err = readFull(r, buf[:]) - if err != nil { - return - } - if buf[0] != onePassSignatureVersion { - err = errors.UnsupportedError("one-pass-signature packet version " + strconv.Itoa(int(buf[0]))) - } - - var ok bool - ops.Hash, ok = s2k.HashIdToHash(buf[2]) - if !ok { - return errors.UnsupportedError("hash function: " + strconv.Itoa(int(buf[2]))) - } - - ops.SigType = SignatureType(buf[1]) - ops.PubKeyAlgo = PublicKeyAlgorithm(buf[3]) - ops.KeyId = binary.BigEndian.Uint64(buf[4:12]) - ops.IsLast = buf[12] != 0 - return -} - -// Serialize marshals the given OnePassSignature to w. -func (ops *OnePassSignature) Serialize(w io.Writer) error { - var buf [13]byte - buf[0] = onePassSignatureVersion - buf[1] = uint8(ops.SigType) - var ok bool - buf[2], ok = s2k.HashToHashId(ops.Hash) - if !ok { - return errors.UnsupportedError("hash type: " + strconv.Itoa(int(ops.Hash))) - } - buf[3] = uint8(ops.PubKeyAlgo) - binary.BigEndian.PutUint64(buf[4:12], ops.KeyId) - if ops.IsLast { - buf[12] = 1 - } - - if err := serializeHeader(w, packetTypeOnePassSignature, len(buf)); err != nil { - return err - } - _, err := w.Write(buf[:]) - return err -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/opaque.go b/vendor/golang.org/x/crypto/openpgp/packet/opaque.go deleted file mode 100644 index 456d807..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/opaque.go +++ /dev/null @@ -1,162 +0,0 @@ -// Copyright 2012 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "bytes" - "io" - "io/ioutil" - - "golang.org/x/crypto/openpgp/errors" -) - -// OpaquePacket represents an OpenPGP packet as raw, unparsed data. This is -// useful for splitting and storing the original packet contents separately, -// handling unsupported packet types or accessing parts of the packet not yet -// implemented by this package. -type OpaquePacket struct { - // Packet type - Tag uint8 - // Reason why the packet was parsed opaquely - Reason error - // Binary contents of the packet data - Contents []byte -} - -func (op *OpaquePacket) parse(r io.Reader) (err error) { - op.Contents, err = ioutil.ReadAll(r) - return -} - -// Serialize marshals the packet to a writer in its original form, including -// the packet header. -func (op *OpaquePacket) Serialize(w io.Writer) (err error) { - err = serializeHeader(w, packetType(op.Tag), len(op.Contents)) - if err == nil { - _, err = w.Write(op.Contents) - } - return -} - -// Parse attempts to parse the opaque contents into a structure supported by -// this package. If the packet is not known then the result will be another -// OpaquePacket. -func (op *OpaquePacket) Parse() (p Packet, err error) { - hdr := bytes.NewBuffer(nil) - err = serializeHeader(hdr, packetType(op.Tag), len(op.Contents)) - if err != nil { - op.Reason = err - return op, err - } - p, err = Read(io.MultiReader(hdr, bytes.NewBuffer(op.Contents))) - if err != nil { - op.Reason = err - p = op - } - return -} - -// OpaqueReader reads OpaquePackets from an io.Reader. -type OpaqueReader struct { - r io.Reader -} - -func NewOpaqueReader(r io.Reader) *OpaqueReader { - return &OpaqueReader{r: r} -} - -// Read the next OpaquePacket. -func (or *OpaqueReader) Next() (op *OpaquePacket, err error) { - tag, _, contents, err := readHeader(or.r) - if err != nil { - return - } - op = &OpaquePacket{Tag: uint8(tag), Reason: err} - err = op.parse(contents) - if err != nil { - consumeAll(contents) - } - return -} - -// OpaqueSubpacket represents an unparsed OpenPGP subpacket, -// as found in signature and user attribute packets. -type OpaqueSubpacket struct { - SubType uint8 - Contents []byte -} - -// OpaqueSubpackets extracts opaque, unparsed OpenPGP subpackets from -// their byte representation. -func OpaqueSubpackets(contents []byte) (result []*OpaqueSubpacket, err error) { - var ( - subHeaderLen int - subPacket *OpaqueSubpacket - ) - for len(contents) > 0 { - subHeaderLen, subPacket, err = nextSubpacket(contents) - if err != nil { - break - } - result = append(result, subPacket) - contents = contents[subHeaderLen+len(subPacket.Contents):] - } - return -} - -func nextSubpacket(contents []byte) (subHeaderLen int, subPacket *OpaqueSubpacket, err error) { - // RFC 4880, section 5.2.3.1 - var subLen uint32 - if len(contents) < 1 { - goto Truncated - } - subPacket = &OpaqueSubpacket{} - switch { - case contents[0] < 192: - subHeaderLen = 2 // 1 length byte, 1 subtype byte - if len(contents) < subHeaderLen { - goto Truncated - } - subLen = uint32(contents[0]) - contents = contents[1:] - case contents[0] < 255: - subHeaderLen = 3 // 2 length bytes, 1 subtype - if len(contents) < subHeaderLen { - goto Truncated - } - subLen = uint32(contents[0]-192)<<8 + uint32(contents[1]) + 192 - contents = contents[2:] - default: - subHeaderLen = 6 // 5 length bytes, 1 subtype - if len(contents) < subHeaderLen { - goto Truncated - } - subLen = uint32(contents[1])<<24 | - uint32(contents[2])<<16 | - uint32(contents[3])<<8 | - uint32(contents[4]) - contents = contents[5:] - } - if subLen > uint32(len(contents)) || subLen == 0 { - goto Truncated - } - subPacket.SubType = contents[0] - subPacket.Contents = contents[1:subLen] - return -Truncated: - err = errors.StructuralError("subpacket truncated") - return -} - -func (osp *OpaqueSubpacket) Serialize(w io.Writer) (err error) { - buf := make([]byte, 6) - n := serializeSubpacketLength(buf, len(osp.Contents)+1) - buf[n] = osp.SubType - if _, err = w.Write(buf[:n+1]); err != nil { - return - } - _, err = w.Write(osp.Contents) - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/packet.go b/vendor/golang.org/x/crypto/openpgp/packet/packet.go deleted file mode 100644 index 625bb5a..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/packet.go +++ /dev/null @@ -1,549 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package packet implements parsing and serialization of OpenPGP packets, as -// specified in RFC 4880. -package packet // import "golang.org/x/crypto/openpgp/packet" - -import ( - "bufio" - "crypto/aes" - "crypto/cipher" - "crypto/des" - "crypto/rsa" - "io" - "math/big" - - "golang.org/x/crypto/cast5" - "golang.org/x/crypto/openpgp/errors" -) - -// readFull is the same as io.ReadFull except that reading zero bytes returns -// ErrUnexpectedEOF rather than EOF. -func readFull(r io.Reader, buf []byte) (n int, err error) { - n, err = io.ReadFull(r, buf) - if err == io.EOF { - err = io.ErrUnexpectedEOF - } - return -} - -// readLength reads an OpenPGP length from r. See RFC 4880, section 4.2.2. -func readLength(r io.Reader) (length int64, isPartial bool, err error) { - var buf [4]byte - _, err = readFull(r, buf[:1]) - if err != nil { - return - } - switch { - case buf[0] < 192: - length = int64(buf[0]) - case buf[0] < 224: - length = int64(buf[0]-192) << 8 - _, err = readFull(r, buf[0:1]) - if err != nil { - return - } - length += int64(buf[0]) + 192 - case buf[0] < 255: - length = int64(1) << (buf[0] & 0x1f) - isPartial = true - default: - _, err = readFull(r, buf[0:4]) - if err != nil { - return - } - length = int64(buf[0])<<24 | - int64(buf[1])<<16 | - int64(buf[2])<<8 | - int64(buf[3]) - } - return -} - -// partialLengthReader wraps an io.Reader and handles OpenPGP partial lengths. -// The continuation lengths are parsed and removed from the stream and EOF is -// returned at the end of the packet. See RFC 4880, section 4.2.2.4. -type partialLengthReader struct { - r io.Reader - remaining int64 - isPartial bool -} - -func (r *partialLengthReader) Read(p []byte) (n int, err error) { - for r.remaining == 0 { - if !r.isPartial { - return 0, io.EOF - } - r.remaining, r.isPartial, err = readLength(r.r) - if err != nil { - return 0, err - } - } - - toRead := int64(len(p)) - if toRead > r.remaining { - toRead = r.remaining - } - - n, err = r.r.Read(p[:int(toRead)]) - r.remaining -= int64(n) - if n < int(toRead) && err == io.EOF { - err = io.ErrUnexpectedEOF - } - return -} - -// partialLengthWriter writes a stream of data using OpenPGP partial lengths. -// See RFC 4880, section 4.2.2.4. -type partialLengthWriter struct { - w io.WriteCloser - lengthByte [1]byte -} - -func (w *partialLengthWriter) Write(p []byte) (n int, err error) { - for len(p) > 0 { - for power := uint(14); power < 32; power-- { - l := 1 << power - if len(p) >= l { - w.lengthByte[0] = 224 + uint8(power) - _, err = w.w.Write(w.lengthByte[:]) - if err != nil { - return - } - var m int - m, err = w.w.Write(p[:l]) - n += m - if err != nil { - return - } - p = p[l:] - break - } - } - } - return -} - -func (w *partialLengthWriter) Close() error { - w.lengthByte[0] = 0 - _, err := w.w.Write(w.lengthByte[:]) - if err != nil { - return err - } - return w.w.Close() -} - -// A spanReader is an io.LimitReader, but it returns ErrUnexpectedEOF if the -// underlying Reader returns EOF before the limit has been reached. -type spanReader struct { - r io.Reader - n int64 -} - -func (l *spanReader) Read(p []byte) (n int, err error) { - if l.n <= 0 { - return 0, io.EOF - } - if int64(len(p)) > l.n { - p = p[0:l.n] - } - n, err = l.r.Read(p) - l.n -= int64(n) - if l.n > 0 && err == io.EOF { - err = io.ErrUnexpectedEOF - } - return -} - -// readHeader parses a packet header and returns an io.Reader which will return -// the contents of the packet. See RFC 4880, section 4.2. -func readHeader(r io.Reader) (tag packetType, length int64, contents io.Reader, err error) { - var buf [4]byte - _, err = io.ReadFull(r, buf[:1]) - if err != nil { - return - } - if buf[0]&0x80 == 0 { - err = errors.StructuralError("tag byte does not have MSB set") - return - } - if buf[0]&0x40 == 0 { - // Old format packet - tag = packetType((buf[0] & 0x3f) >> 2) - lengthType := buf[0] & 3 - if lengthType == 3 { - length = -1 - contents = r - return - } - lengthBytes := 1 << lengthType - _, err = readFull(r, buf[0:lengthBytes]) - if err != nil { - return - } - for i := 0; i < lengthBytes; i++ { - length <<= 8 - length |= int64(buf[i]) - } - contents = &spanReader{r, length} - return - } - - // New format packet - tag = packetType(buf[0] & 0x3f) - length, isPartial, err := readLength(r) - if err != nil { - return - } - if isPartial { - contents = &partialLengthReader{ - remaining: length, - isPartial: true, - r: r, - } - length = -1 - } else { - contents = &spanReader{r, length} - } - return -} - -// serializeHeader writes an OpenPGP packet header to w. See RFC 4880, section -// 4.2. -func serializeHeader(w io.Writer, ptype packetType, length int) (err error) { - var buf [6]byte - var n int - - buf[0] = 0x80 | 0x40 | byte(ptype) - if length < 192 { - buf[1] = byte(length) - n = 2 - } else if length < 8384 { - length -= 192 - buf[1] = 192 + byte(length>>8) - buf[2] = byte(length) - n = 3 - } else { - buf[1] = 255 - buf[2] = byte(length >> 24) - buf[3] = byte(length >> 16) - buf[4] = byte(length >> 8) - buf[5] = byte(length) - n = 6 - } - - _, err = w.Write(buf[:n]) - return -} - -// serializeStreamHeader writes an OpenPGP packet header to w where the -// length of the packet is unknown. It returns a io.WriteCloser which can be -// used to write the contents of the packet. See RFC 4880, section 4.2. -func serializeStreamHeader(w io.WriteCloser, ptype packetType) (out io.WriteCloser, err error) { - var buf [1]byte - buf[0] = 0x80 | 0x40 | byte(ptype) - _, err = w.Write(buf[:]) - if err != nil { - return - } - out = &partialLengthWriter{w: w} - return -} - -// Packet represents an OpenPGP packet. Users are expected to try casting -// instances of this interface to specific packet types. -type Packet interface { - parse(io.Reader) error -} - -// consumeAll reads from the given Reader until error, returning the number of -// bytes read. -func consumeAll(r io.Reader) (n int64, err error) { - var m int - var buf [1024]byte - - for { - m, err = r.Read(buf[:]) - n += int64(m) - if err == io.EOF { - err = nil - return - } - if err != nil { - return - } - } -} - -// packetType represents the numeric ids of the different OpenPGP packet types. See -// http://www.iana.org/assignments/pgp-parameters/pgp-parameters.xhtml#pgp-parameters-2 -type packetType uint8 - -const ( - packetTypeEncryptedKey packetType = 1 - packetTypeSignature packetType = 2 - packetTypeSymmetricKeyEncrypted packetType = 3 - packetTypeOnePassSignature packetType = 4 - packetTypePrivateKey packetType = 5 - packetTypePublicKey packetType = 6 - packetTypePrivateSubkey packetType = 7 - packetTypeCompressed packetType = 8 - packetTypeSymmetricallyEncrypted packetType = 9 - packetTypeLiteralData packetType = 11 - packetTypeUserId packetType = 13 - packetTypePublicSubkey packetType = 14 - packetTypeUserAttribute packetType = 17 - packetTypeSymmetricallyEncryptedMDC packetType = 18 -) - -// peekVersion detects the version of a public key packet about to -// be read. A bufio.Reader at the original position of the io.Reader -// is returned. -func peekVersion(r io.Reader) (bufr *bufio.Reader, ver byte, err error) { - bufr = bufio.NewReader(r) - var verBuf []byte - if verBuf, err = bufr.Peek(1); err != nil { - return - } - ver = verBuf[0] - return -} - -// Read reads a single OpenPGP packet from the given io.Reader. If there is an -// error parsing a packet, the whole packet is consumed from the input. -func Read(r io.Reader) (p Packet, err error) { - tag, _, contents, err := readHeader(r) - if err != nil { - return - } - - switch tag { - case packetTypeEncryptedKey: - p = new(EncryptedKey) - case packetTypeSignature: - var version byte - // Detect signature version - if contents, version, err = peekVersion(contents); err != nil { - return - } - if version < 4 { - p = new(SignatureV3) - } else { - p = new(Signature) - } - case packetTypeSymmetricKeyEncrypted: - p = new(SymmetricKeyEncrypted) - case packetTypeOnePassSignature: - p = new(OnePassSignature) - case packetTypePrivateKey, packetTypePrivateSubkey: - pk := new(PrivateKey) - if tag == packetTypePrivateSubkey { - pk.IsSubkey = true - } - p = pk - case packetTypePublicKey, packetTypePublicSubkey: - var version byte - if contents, version, err = peekVersion(contents); err != nil { - return - } - isSubkey := tag == packetTypePublicSubkey - if version < 4 { - p = &PublicKeyV3{IsSubkey: isSubkey} - } else { - p = &PublicKey{IsSubkey: isSubkey} - } - case packetTypeCompressed: - p = new(Compressed) - case packetTypeSymmetricallyEncrypted: - p = new(SymmetricallyEncrypted) - case packetTypeLiteralData: - p = new(LiteralData) - case packetTypeUserId: - p = new(UserId) - case packetTypeUserAttribute: - p = new(UserAttribute) - case packetTypeSymmetricallyEncryptedMDC: - se := new(SymmetricallyEncrypted) - se.MDC = true - p = se - default: - err = errors.UnknownPacketTypeError(tag) - } - if p != nil { - err = p.parse(contents) - } - if err != nil { - consumeAll(contents) - } - return -} - -// SignatureType represents the different semantic meanings of an OpenPGP -// signature. See RFC 4880, section 5.2.1. -type SignatureType uint8 - -const ( - SigTypeBinary SignatureType = 0 - SigTypeText = 1 - SigTypeGenericCert = 0x10 - SigTypePersonaCert = 0x11 - SigTypeCasualCert = 0x12 - SigTypePositiveCert = 0x13 - SigTypeSubkeyBinding = 0x18 - SigTypePrimaryKeyBinding = 0x19 - SigTypeDirectSignature = 0x1F - SigTypeKeyRevocation = 0x20 - SigTypeSubkeyRevocation = 0x28 -) - -// PublicKeyAlgorithm represents the different public key system specified for -// OpenPGP. See -// http://www.iana.org/assignments/pgp-parameters/pgp-parameters.xhtml#pgp-parameters-12 -type PublicKeyAlgorithm uint8 - -const ( - PubKeyAlgoRSA PublicKeyAlgorithm = 1 - PubKeyAlgoRSAEncryptOnly PublicKeyAlgorithm = 2 - PubKeyAlgoRSASignOnly PublicKeyAlgorithm = 3 - PubKeyAlgoElGamal PublicKeyAlgorithm = 16 - PubKeyAlgoDSA PublicKeyAlgorithm = 17 - // RFC 6637, Section 5. - PubKeyAlgoECDH PublicKeyAlgorithm = 18 - PubKeyAlgoECDSA PublicKeyAlgorithm = 19 -) - -// CanEncrypt returns true if it's possible to encrypt a message to a public -// key of the given type. -func (pka PublicKeyAlgorithm) CanEncrypt() bool { - switch pka { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoElGamal: - return true - } - return false -} - -// CanSign returns true if it's possible for a public key of the given type to -// sign a message. -func (pka PublicKeyAlgorithm) CanSign() bool { - switch pka { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly, PubKeyAlgoDSA, PubKeyAlgoECDSA: - return true - } - return false -} - -// CipherFunction represents the different block ciphers specified for OpenPGP. See -// http://www.iana.org/assignments/pgp-parameters/pgp-parameters.xhtml#pgp-parameters-13 -type CipherFunction uint8 - -const ( - Cipher3DES CipherFunction = 2 - CipherCAST5 CipherFunction = 3 - CipherAES128 CipherFunction = 7 - CipherAES192 CipherFunction = 8 - CipherAES256 CipherFunction = 9 -) - -// KeySize returns the key size, in bytes, of cipher. -func (cipher CipherFunction) KeySize() int { - switch cipher { - case Cipher3DES: - return 24 - case CipherCAST5: - return cast5.KeySize - case CipherAES128: - return 16 - case CipherAES192: - return 24 - case CipherAES256: - return 32 - } - return 0 -} - -// blockSize returns the block size, in bytes, of cipher. -func (cipher CipherFunction) blockSize() int { - switch cipher { - case Cipher3DES: - return des.BlockSize - case CipherCAST5: - return 8 - case CipherAES128, CipherAES192, CipherAES256: - return 16 - } - return 0 -} - -// new returns a fresh instance of the given cipher. -func (cipher CipherFunction) new(key []byte) (block cipher.Block) { - switch cipher { - case Cipher3DES: - block, _ = des.NewTripleDESCipher(key) - case CipherCAST5: - block, _ = cast5.NewCipher(key) - case CipherAES128, CipherAES192, CipherAES256: - block, _ = aes.NewCipher(key) - } - return -} - -// readMPI reads a big integer from r. The bit length returned is the bit -// length that was specified in r. This is preserved so that the integer can be -// reserialized exactly. -func readMPI(r io.Reader) (mpi []byte, bitLength uint16, err error) { - var buf [2]byte - _, err = readFull(r, buf[0:]) - if err != nil { - return - } - bitLength = uint16(buf[0])<<8 | uint16(buf[1]) - numBytes := (int(bitLength) + 7) / 8 - mpi = make([]byte, numBytes) - _, err = readFull(r, mpi) - // According to RFC 4880 3.2. we should check that the MPI has no leading - // zeroes (at least when not an encrypted MPI?), but this implementation - // does generate leading zeroes, so we keep accepting them. - return -} - -// writeMPI serializes a big integer to w. -func writeMPI(w io.Writer, bitLength uint16, mpiBytes []byte) (err error) { - // Note that we can produce leading zeroes, in violation of RFC 4880 3.2. - // Implementations seem to be tolerant of them, and stripping them would - // make it complex to guarantee matching re-serialization. - _, err = w.Write([]byte{byte(bitLength >> 8), byte(bitLength)}) - if err == nil { - _, err = w.Write(mpiBytes) - } - return -} - -// writeBig serializes a *big.Int to w. -func writeBig(w io.Writer, i *big.Int) error { - return writeMPI(w, uint16(i.BitLen()), i.Bytes()) -} - -// padToKeySize left-pads a MPI with zeroes to match the length of the -// specified RSA public. -func padToKeySize(pub *rsa.PublicKey, b []byte) []byte { - k := (pub.N.BitLen() + 7) / 8 - if len(b) >= k { - return b - } - bb := make([]byte, k) - copy(bb[len(bb)-len(b):], b) - return bb -} - -// CompressionAlgo Represents the different compression algorithms -// supported by OpenPGP (except for BZIP2, which is not currently -// supported). See Section 9.3 of RFC 4880. -type CompressionAlgo uint8 - -const ( - CompressionNone CompressionAlgo = 0 - CompressionZIP CompressionAlgo = 1 - CompressionZLIB CompressionAlgo = 2 -) diff --git a/vendor/golang.org/x/crypto/openpgp/packet/private_key.go b/vendor/golang.org/x/crypto/openpgp/packet/private_key.go deleted file mode 100644 index 34734cc..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/private_key.go +++ /dev/null @@ -1,380 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "bytes" - "crypto" - "crypto/cipher" - "crypto/dsa" - "crypto/ecdsa" - "crypto/rsa" - "crypto/sha1" - "io" - "io/ioutil" - "math/big" - "strconv" - "time" - - "golang.org/x/crypto/openpgp/elgamal" - "golang.org/x/crypto/openpgp/errors" - "golang.org/x/crypto/openpgp/s2k" -) - -// PrivateKey represents a possibly encrypted private key. See RFC 4880, -// section 5.5.3. -type PrivateKey struct { - PublicKey - Encrypted bool // if true then the private key is unavailable until Decrypt has been called. - encryptedData []byte - cipher CipherFunction - s2k func(out, in []byte) - PrivateKey interface{} // An *{rsa|dsa|ecdsa}.PrivateKey or a crypto.Signer. - sha1Checksum bool - iv []byte -} - -func NewRSAPrivateKey(currentTime time.Time, priv *rsa.PrivateKey) *PrivateKey { - pk := new(PrivateKey) - pk.PublicKey = *NewRSAPublicKey(currentTime, &priv.PublicKey) - pk.PrivateKey = priv - return pk -} - -func NewDSAPrivateKey(currentTime time.Time, priv *dsa.PrivateKey) *PrivateKey { - pk := new(PrivateKey) - pk.PublicKey = *NewDSAPublicKey(currentTime, &priv.PublicKey) - pk.PrivateKey = priv - return pk -} - -func NewElGamalPrivateKey(currentTime time.Time, priv *elgamal.PrivateKey) *PrivateKey { - pk := new(PrivateKey) - pk.PublicKey = *NewElGamalPublicKey(currentTime, &priv.PublicKey) - pk.PrivateKey = priv - return pk -} - -func NewECDSAPrivateKey(currentTime time.Time, priv *ecdsa.PrivateKey) *PrivateKey { - pk := new(PrivateKey) - pk.PublicKey = *NewECDSAPublicKey(currentTime, &priv.PublicKey) - pk.PrivateKey = priv - return pk -} - -// NewSignerPrivateKey creates a sign-only PrivateKey from a crypto.Signer that -// implements RSA or ECDSA. -func NewSignerPrivateKey(currentTime time.Time, signer crypto.Signer) *PrivateKey { - pk := new(PrivateKey) - switch pubkey := signer.Public().(type) { - case rsa.PublicKey: - pk.PublicKey = *NewRSAPublicKey(currentTime, &pubkey) - pk.PubKeyAlgo = PubKeyAlgoRSASignOnly - case ecdsa.PublicKey: - pk.PublicKey = *NewECDSAPublicKey(currentTime, &pubkey) - default: - panic("openpgp: unknown crypto.Signer type in NewSignerPrivateKey") - } - pk.PrivateKey = signer - return pk -} - -func (pk *PrivateKey) parse(r io.Reader) (err error) { - err = (&pk.PublicKey).parse(r) - if err != nil { - return - } - var buf [1]byte - _, err = readFull(r, buf[:]) - if err != nil { - return - } - - s2kType := buf[0] - - switch s2kType { - case 0: - pk.s2k = nil - pk.Encrypted = false - case 254, 255: - _, err = readFull(r, buf[:]) - if err != nil { - return - } - pk.cipher = CipherFunction(buf[0]) - pk.Encrypted = true - pk.s2k, err = s2k.Parse(r) - if err != nil { - return - } - if s2kType == 254 { - pk.sha1Checksum = true - } - default: - return errors.UnsupportedError("deprecated s2k function in private key") - } - - if pk.Encrypted { - blockSize := pk.cipher.blockSize() - if blockSize == 0 { - return errors.UnsupportedError("unsupported cipher in private key: " + strconv.Itoa(int(pk.cipher))) - } - pk.iv = make([]byte, blockSize) - _, err = readFull(r, pk.iv) - if err != nil { - return - } - } - - pk.encryptedData, err = ioutil.ReadAll(r) - if err != nil { - return - } - - if !pk.Encrypted { - return pk.parsePrivateKey(pk.encryptedData) - } - - return -} - -func mod64kHash(d []byte) uint16 { - var h uint16 - for _, b := range d { - h += uint16(b) - } - return h -} - -func (pk *PrivateKey) Serialize(w io.Writer) (err error) { - // TODO(agl): support encrypted private keys - buf := bytes.NewBuffer(nil) - err = pk.PublicKey.serializeWithoutHeaders(buf) - if err != nil { - return - } - buf.WriteByte(0 /* no encryption */) - - privateKeyBuf := bytes.NewBuffer(nil) - - switch priv := pk.PrivateKey.(type) { - case *rsa.PrivateKey: - err = serializeRSAPrivateKey(privateKeyBuf, priv) - case *dsa.PrivateKey: - err = serializeDSAPrivateKey(privateKeyBuf, priv) - case *elgamal.PrivateKey: - err = serializeElGamalPrivateKey(privateKeyBuf, priv) - case *ecdsa.PrivateKey: - err = serializeECDSAPrivateKey(privateKeyBuf, priv) - default: - err = errors.InvalidArgumentError("unknown private key type") - } - if err != nil { - return - } - - ptype := packetTypePrivateKey - contents := buf.Bytes() - privateKeyBytes := privateKeyBuf.Bytes() - if pk.IsSubkey { - ptype = packetTypePrivateSubkey - } - err = serializeHeader(w, ptype, len(contents)+len(privateKeyBytes)+2) - if err != nil { - return - } - _, err = w.Write(contents) - if err != nil { - return - } - _, err = w.Write(privateKeyBytes) - if err != nil { - return - } - - checksum := mod64kHash(privateKeyBytes) - var checksumBytes [2]byte - checksumBytes[0] = byte(checksum >> 8) - checksumBytes[1] = byte(checksum) - _, err = w.Write(checksumBytes[:]) - - return -} - -func serializeRSAPrivateKey(w io.Writer, priv *rsa.PrivateKey) error { - err := writeBig(w, priv.D) - if err != nil { - return err - } - err = writeBig(w, priv.Primes[1]) - if err != nil { - return err - } - err = writeBig(w, priv.Primes[0]) - if err != nil { - return err - } - return writeBig(w, priv.Precomputed.Qinv) -} - -func serializeDSAPrivateKey(w io.Writer, priv *dsa.PrivateKey) error { - return writeBig(w, priv.X) -} - -func serializeElGamalPrivateKey(w io.Writer, priv *elgamal.PrivateKey) error { - return writeBig(w, priv.X) -} - -func serializeECDSAPrivateKey(w io.Writer, priv *ecdsa.PrivateKey) error { - return writeBig(w, priv.D) -} - -// Decrypt decrypts an encrypted private key using a passphrase. -func (pk *PrivateKey) Decrypt(passphrase []byte) error { - if !pk.Encrypted { - return nil - } - - key := make([]byte, pk.cipher.KeySize()) - pk.s2k(key, passphrase) - block := pk.cipher.new(key) - cfb := cipher.NewCFBDecrypter(block, pk.iv) - - data := make([]byte, len(pk.encryptedData)) - cfb.XORKeyStream(data, pk.encryptedData) - - if pk.sha1Checksum { - if len(data) < sha1.Size { - return errors.StructuralError("truncated private key data") - } - h := sha1.New() - h.Write(data[:len(data)-sha1.Size]) - sum := h.Sum(nil) - if !bytes.Equal(sum, data[len(data)-sha1.Size:]) { - return errors.StructuralError("private key checksum failure") - } - data = data[:len(data)-sha1.Size] - } else { - if len(data) < 2 { - return errors.StructuralError("truncated private key data") - } - var sum uint16 - for i := 0; i < len(data)-2; i++ { - sum += uint16(data[i]) - } - if data[len(data)-2] != uint8(sum>>8) || - data[len(data)-1] != uint8(sum) { - return errors.StructuralError("private key checksum failure") - } - data = data[:len(data)-2] - } - - return pk.parsePrivateKey(data) -} - -func (pk *PrivateKey) parsePrivateKey(data []byte) (err error) { - switch pk.PublicKey.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly, PubKeyAlgoRSAEncryptOnly: - return pk.parseRSAPrivateKey(data) - case PubKeyAlgoDSA: - return pk.parseDSAPrivateKey(data) - case PubKeyAlgoElGamal: - return pk.parseElGamalPrivateKey(data) - case PubKeyAlgoECDSA: - return pk.parseECDSAPrivateKey(data) - } - panic("impossible") -} - -func (pk *PrivateKey) parseRSAPrivateKey(data []byte) (err error) { - rsaPub := pk.PublicKey.PublicKey.(*rsa.PublicKey) - rsaPriv := new(rsa.PrivateKey) - rsaPriv.PublicKey = *rsaPub - - buf := bytes.NewBuffer(data) - d, _, err := readMPI(buf) - if err != nil { - return - } - p, _, err := readMPI(buf) - if err != nil { - return - } - q, _, err := readMPI(buf) - if err != nil { - return - } - - rsaPriv.D = new(big.Int).SetBytes(d) - rsaPriv.Primes = make([]*big.Int, 2) - rsaPriv.Primes[0] = new(big.Int).SetBytes(p) - rsaPriv.Primes[1] = new(big.Int).SetBytes(q) - if err := rsaPriv.Validate(); err != nil { - return err - } - rsaPriv.Precompute() - pk.PrivateKey = rsaPriv - pk.Encrypted = false - pk.encryptedData = nil - - return nil -} - -func (pk *PrivateKey) parseDSAPrivateKey(data []byte) (err error) { - dsaPub := pk.PublicKey.PublicKey.(*dsa.PublicKey) - dsaPriv := new(dsa.PrivateKey) - dsaPriv.PublicKey = *dsaPub - - buf := bytes.NewBuffer(data) - x, _, err := readMPI(buf) - if err != nil { - return - } - - dsaPriv.X = new(big.Int).SetBytes(x) - pk.PrivateKey = dsaPriv - pk.Encrypted = false - pk.encryptedData = nil - - return nil -} - -func (pk *PrivateKey) parseElGamalPrivateKey(data []byte) (err error) { - pub := pk.PublicKey.PublicKey.(*elgamal.PublicKey) - priv := new(elgamal.PrivateKey) - priv.PublicKey = *pub - - buf := bytes.NewBuffer(data) - x, _, err := readMPI(buf) - if err != nil { - return - } - - priv.X = new(big.Int).SetBytes(x) - pk.PrivateKey = priv - pk.Encrypted = false - pk.encryptedData = nil - - return nil -} - -func (pk *PrivateKey) parseECDSAPrivateKey(data []byte) (err error) { - ecdsaPub := pk.PublicKey.PublicKey.(*ecdsa.PublicKey) - - buf := bytes.NewBuffer(data) - d, _, err := readMPI(buf) - if err != nil { - return - } - - pk.PrivateKey = &ecdsa.PrivateKey{ - PublicKey: *ecdsaPub, - D: new(big.Int).SetBytes(d), - } - pk.Encrypted = false - pk.encryptedData = nil - - return nil -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/public_key.go b/vendor/golang.org/x/crypto/openpgp/packet/public_key.go deleted file mode 100644 index fcd5f52..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/public_key.go +++ /dev/null @@ -1,753 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "bytes" - "crypto" - "crypto/dsa" - "crypto/ecdsa" - "crypto/elliptic" - "crypto/rsa" - "crypto/sha1" - _ "crypto/sha256" - _ "crypto/sha512" - "encoding/binary" - "fmt" - "hash" - "io" - "math/big" - "strconv" - "time" - - "golang.org/x/crypto/openpgp/elgamal" - "golang.org/x/crypto/openpgp/errors" -) - -var ( - // NIST curve P-256 - oidCurveP256 []byte = []byte{0x2A, 0x86, 0x48, 0xCE, 0x3D, 0x03, 0x01, 0x07} - // NIST curve P-384 - oidCurveP384 []byte = []byte{0x2B, 0x81, 0x04, 0x00, 0x22} - // NIST curve P-521 - oidCurveP521 []byte = []byte{0x2B, 0x81, 0x04, 0x00, 0x23} -) - -const maxOIDLength = 8 - -// ecdsaKey stores the algorithm-specific fields for ECDSA keys. -// as defined in RFC 6637, Section 9. -type ecdsaKey struct { - // oid contains the OID byte sequence identifying the elliptic curve used - oid []byte - // p contains the elliptic curve point that represents the public key - p parsedMPI -} - -// parseOID reads the OID for the curve as defined in RFC 6637, Section 9. -func parseOID(r io.Reader) (oid []byte, err error) { - buf := make([]byte, maxOIDLength) - if _, err = readFull(r, buf[:1]); err != nil { - return - } - oidLen := buf[0] - if int(oidLen) > len(buf) { - err = errors.UnsupportedError("invalid oid length: " + strconv.Itoa(int(oidLen))) - return - } - oid = buf[:oidLen] - _, err = readFull(r, oid) - return -} - -func (f *ecdsaKey) parse(r io.Reader) (err error) { - if f.oid, err = parseOID(r); err != nil { - return err - } - f.p.bytes, f.p.bitLength, err = readMPI(r) - return -} - -func (f *ecdsaKey) serialize(w io.Writer) (err error) { - buf := make([]byte, maxOIDLength+1) - buf[0] = byte(len(f.oid)) - copy(buf[1:], f.oid) - if _, err = w.Write(buf[:len(f.oid)+1]); err != nil { - return - } - return writeMPIs(w, f.p) -} - -func (f *ecdsaKey) newECDSA() (*ecdsa.PublicKey, error) { - var c elliptic.Curve - if bytes.Equal(f.oid, oidCurveP256) { - c = elliptic.P256() - } else if bytes.Equal(f.oid, oidCurveP384) { - c = elliptic.P384() - } else if bytes.Equal(f.oid, oidCurveP521) { - c = elliptic.P521() - } else { - return nil, errors.UnsupportedError(fmt.Sprintf("unsupported oid: %x", f.oid)) - } - x, y := elliptic.Unmarshal(c, f.p.bytes) - if x == nil { - return nil, errors.UnsupportedError("failed to parse EC point") - } - return &ecdsa.PublicKey{Curve: c, X: x, Y: y}, nil -} - -func (f *ecdsaKey) byteLen() int { - return 1 + len(f.oid) + 2 + len(f.p.bytes) -} - -type kdfHashFunction byte -type kdfAlgorithm byte - -// ecdhKdf stores key derivation function parameters -// used for ECDH encryption. See RFC 6637, Section 9. -type ecdhKdf struct { - KdfHash kdfHashFunction - KdfAlgo kdfAlgorithm -} - -func (f *ecdhKdf) parse(r io.Reader) (err error) { - buf := make([]byte, 1) - if _, err = readFull(r, buf); err != nil { - return - } - kdfLen := int(buf[0]) - if kdfLen < 3 { - return errors.UnsupportedError("Unsupported ECDH KDF length: " + strconv.Itoa(kdfLen)) - } - buf = make([]byte, kdfLen) - if _, err = readFull(r, buf); err != nil { - return - } - reserved := int(buf[0]) - f.KdfHash = kdfHashFunction(buf[1]) - f.KdfAlgo = kdfAlgorithm(buf[2]) - if reserved != 0x01 { - return errors.UnsupportedError("Unsupported KDF reserved field: " + strconv.Itoa(reserved)) - } - return -} - -func (f *ecdhKdf) serialize(w io.Writer) (err error) { - buf := make([]byte, 4) - // See RFC 6637, Section 9, Algorithm-Specific Fields for ECDH keys. - buf[0] = byte(0x03) // Length of the following fields - buf[1] = byte(0x01) // Reserved for future extensions, must be 1 for now - buf[2] = byte(f.KdfHash) - buf[3] = byte(f.KdfAlgo) - _, err = w.Write(buf[:]) - return -} - -func (f *ecdhKdf) byteLen() int { - return 4 -} - -// PublicKey represents an OpenPGP public key. See RFC 4880, section 5.5.2. -type PublicKey struct { - CreationTime time.Time - PubKeyAlgo PublicKeyAlgorithm - PublicKey interface{} // *rsa.PublicKey, *dsa.PublicKey or *ecdsa.PublicKey - Fingerprint [20]byte - KeyId uint64 - IsSubkey bool - - n, e, p, q, g, y parsedMPI - - // RFC 6637 fields - ec *ecdsaKey - ecdh *ecdhKdf -} - -// signingKey provides a convenient abstraction over signature verification -// for v3 and v4 public keys. -type signingKey interface { - SerializeSignaturePrefix(io.Writer) - serializeWithoutHeaders(io.Writer) error -} - -func fromBig(n *big.Int) parsedMPI { - return parsedMPI{ - bytes: n.Bytes(), - bitLength: uint16(n.BitLen()), - } -} - -// NewRSAPublicKey returns a PublicKey that wraps the given rsa.PublicKey. -func NewRSAPublicKey(creationTime time.Time, pub *rsa.PublicKey) *PublicKey { - pk := &PublicKey{ - CreationTime: creationTime, - PubKeyAlgo: PubKeyAlgoRSA, - PublicKey: pub, - n: fromBig(pub.N), - e: fromBig(big.NewInt(int64(pub.E))), - } - - pk.setFingerPrintAndKeyId() - return pk -} - -// NewDSAPublicKey returns a PublicKey that wraps the given dsa.PublicKey. -func NewDSAPublicKey(creationTime time.Time, pub *dsa.PublicKey) *PublicKey { - pk := &PublicKey{ - CreationTime: creationTime, - PubKeyAlgo: PubKeyAlgoDSA, - PublicKey: pub, - p: fromBig(pub.P), - q: fromBig(pub.Q), - g: fromBig(pub.G), - y: fromBig(pub.Y), - } - - pk.setFingerPrintAndKeyId() - return pk -} - -// NewElGamalPublicKey returns a PublicKey that wraps the given elgamal.PublicKey. -func NewElGamalPublicKey(creationTime time.Time, pub *elgamal.PublicKey) *PublicKey { - pk := &PublicKey{ - CreationTime: creationTime, - PubKeyAlgo: PubKeyAlgoElGamal, - PublicKey: pub, - p: fromBig(pub.P), - g: fromBig(pub.G), - y: fromBig(pub.Y), - } - - pk.setFingerPrintAndKeyId() - return pk -} - -func NewECDSAPublicKey(creationTime time.Time, pub *ecdsa.PublicKey) *PublicKey { - pk := &PublicKey{ - CreationTime: creationTime, - PubKeyAlgo: PubKeyAlgoECDSA, - PublicKey: pub, - ec: new(ecdsaKey), - } - - switch pub.Curve { - case elliptic.P256(): - pk.ec.oid = oidCurveP256 - case elliptic.P384(): - pk.ec.oid = oidCurveP384 - case elliptic.P521(): - pk.ec.oid = oidCurveP521 - default: - panic("unknown elliptic curve") - } - - pk.ec.p.bytes = elliptic.Marshal(pub.Curve, pub.X, pub.Y) - - // The bit length is 3 (for the 0x04 specifying an uncompressed key) - // plus two field elements (for x and y), which are rounded up to the - // nearest byte. See https://tools.ietf.org/html/rfc6637#section-6 - fieldBytes := (pub.Curve.Params().BitSize + 7) & ^7 - pk.ec.p.bitLength = uint16(3 + fieldBytes + fieldBytes) - - pk.setFingerPrintAndKeyId() - return pk -} - -func (pk *PublicKey) parse(r io.Reader) (err error) { - // RFC 4880, section 5.5.2 - var buf [6]byte - _, err = readFull(r, buf[:]) - if err != nil { - return - } - if buf[0] != 4 { - return errors.UnsupportedError("public key version") - } - pk.CreationTime = time.Unix(int64(uint32(buf[1])<<24|uint32(buf[2])<<16|uint32(buf[3])<<8|uint32(buf[4])), 0) - pk.PubKeyAlgo = PublicKeyAlgorithm(buf[5]) - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoRSASignOnly: - err = pk.parseRSA(r) - case PubKeyAlgoDSA: - err = pk.parseDSA(r) - case PubKeyAlgoElGamal: - err = pk.parseElGamal(r) - case PubKeyAlgoECDSA: - pk.ec = new(ecdsaKey) - if err = pk.ec.parse(r); err != nil { - return err - } - pk.PublicKey, err = pk.ec.newECDSA() - case PubKeyAlgoECDH: - pk.ec = new(ecdsaKey) - if err = pk.ec.parse(r); err != nil { - return - } - pk.ecdh = new(ecdhKdf) - if err = pk.ecdh.parse(r); err != nil { - return - } - // The ECDH key is stored in an ecdsa.PublicKey for convenience. - pk.PublicKey, err = pk.ec.newECDSA() - default: - err = errors.UnsupportedError("public key type: " + strconv.Itoa(int(pk.PubKeyAlgo))) - } - if err != nil { - return - } - - pk.setFingerPrintAndKeyId() - return -} - -func (pk *PublicKey) setFingerPrintAndKeyId() { - // RFC 4880, section 12.2 - fingerPrint := sha1.New() - pk.SerializeSignaturePrefix(fingerPrint) - pk.serializeWithoutHeaders(fingerPrint) - copy(pk.Fingerprint[:], fingerPrint.Sum(nil)) - pk.KeyId = binary.BigEndian.Uint64(pk.Fingerprint[12:20]) -} - -// parseRSA parses RSA public key material from the given Reader. See RFC 4880, -// section 5.5.2. -func (pk *PublicKey) parseRSA(r io.Reader) (err error) { - pk.n.bytes, pk.n.bitLength, err = readMPI(r) - if err != nil { - return - } - pk.e.bytes, pk.e.bitLength, err = readMPI(r) - if err != nil { - return - } - - if len(pk.e.bytes) > 3 { - err = errors.UnsupportedError("large public exponent") - return - } - rsa := &rsa.PublicKey{ - N: new(big.Int).SetBytes(pk.n.bytes), - E: 0, - } - for i := 0; i < len(pk.e.bytes); i++ { - rsa.E <<= 8 - rsa.E |= int(pk.e.bytes[i]) - } - pk.PublicKey = rsa - return -} - -// parseDSA parses DSA public key material from the given Reader. See RFC 4880, -// section 5.5.2. -func (pk *PublicKey) parseDSA(r io.Reader) (err error) { - pk.p.bytes, pk.p.bitLength, err = readMPI(r) - if err != nil { - return - } - pk.q.bytes, pk.q.bitLength, err = readMPI(r) - if err != nil { - return - } - pk.g.bytes, pk.g.bitLength, err = readMPI(r) - if err != nil { - return - } - pk.y.bytes, pk.y.bitLength, err = readMPI(r) - if err != nil { - return - } - - dsa := new(dsa.PublicKey) - dsa.P = new(big.Int).SetBytes(pk.p.bytes) - dsa.Q = new(big.Int).SetBytes(pk.q.bytes) - dsa.G = new(big.Int).SetBytes(pk.g.bytes) - dsa.Y = new(big.Int).SetBytes(pk.y.bytes) - pk.PublicKey = dsa - return -} - -// parseElGamal parses ElGamal public key material from the given Reader. See -// RFC 4880, section 5.5.2. -func (pk *PublicKey) parseElGamal(r io.Reader) (err error) { - pk.p.bytes, pk.p.bitLength, err = readMPI(r) - if err != nil { - return - } - pk.g.bytes, pk.g.bitLength, err = readMPI(r) - if err != nil { - return - } - pk.y.bytes, pk.y.bitLength, err = readMPI(r) - if err != nil { - return - } - - elgamal := new(elgamal.PublicKey) - elgamal.P = new(big.Int).SetBytes(pk.p.bytes) - elgamal.G = new(big.Int).SetBytes(pk.g.bytes) - elgamal.Y = new(big.Int).SetBytes(pk.y.bytes) - pk.PublicKey = elgamal - return -} - -// SerializeSignaturePrefix writes the prefix for this public key to the given Writer. -// The prefix is used when calculating a signature over this public key. See -// RFC 4880, section 5.2.4. -func (pk *PublicKey) SerializeSignaturePrefix(h io.Writer) { - var pLength uint16 - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoRSASignOnly: - pLength += 2 + uint16(len(pk.n.bytes)) - pLength += 2 + uint16(len(pk.e.bytes)) - case PubKeyAlgoDSA: - pLength += 2 + uint16(len(pk.p.bytes)) - pLength += 2 + uint16(len(pk.q.bytes)) - pLength += 2 + uint16(len(pk.g.bytes)) - pLength += 2 + uint16(len(pk.y.bytes)) - case PubKeyAlgoElGamal: - pLength += 2 + uint16(len(pk.p.bytes)) - pLength += 2 + uint16(len(pk.g.bytes)) - pLength += 2 + uint16(len(pk.y.bytes)) - case PubKeyAlgoECDSA: - pLength += uint16(pk.ec.byteLen()) - case PubKeyAlgoECDH: - pLength += uint16(pk.ec.byteLen()) - pLength += uint16(pk.ecdh.byteLen()) - default: - panic("unknown public key algorithm") - } - pLength += 6 - h.Write([]byte{0x99, byte(pLength >> 8), byte(pLength)}) - return -} - -func (pk *PublicKey) Serialize(w io.Writer) (err error) { - length := 6 // 6 byte header - - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoRSASignOnly: - length += 2 + len(pk.n.bytes) - length += 2 + len(pk.e.bytes) - case PubKeyAlgoDSA: - length += 2 + len(pk.p.bytes) - length += 2 + len(pk.q.bytes) - length += 2 + len(pk.g.bytes) - length += 2 + len(pk.y.bytes) - case PubKeyAlgoElGamal: - length += 2 + len(pk.p.bytes) - length += 2 + len(pk.g.bytes) - length += 2 + len(pk.y.bytes) - case PubKeyAlgoECDSA: - length += pk.ec.byteLen() - case PubKeyAlgoECDH: - length += pk.ec.byteLen() - length += pk.ecdh.byteLen() - default: - panic("unknown public key algorithm") - } - - packetType := packetTypePublicKey - if pk.IsSubkey { - packetType = packetTypePublicSubkey - } - err = serializeHeader(w, packetType, length) - if err != nil { - return - } - return pk.serializeWithoutHeaders(w) -} - -// serializeWithoutHeaders marshals the PublicKey to w in the form of an -// OpenPGP public key packet, not including the packet header. -func (pk *PublicKey) serializeWithoutHeaders(w io.Writer) (err error) { - var buf [6]byte - buf[0] = 4 - t := uint32(pk.CreationTime.Unix()) - buf[1] = byte(t >> 24) - buf[2] = byte(t >> 16) - buf[3] = byte(t >> 8) - buf[4] = byte(t) - buf[5] = byte(pk.PubKeyAlgo) - - _, err = w.Write(buf[:]) - if err != nil { - return - } - - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoRSASignOnly: - return writeMPIs(w, pk.n, pk.e) - case PubKeyAlgoDSA: - return writeMPIs(w, pk.p, pk.q, pk.g, pk.y) - case PubKeyAlgoElGamal: - return writeMPIs(w, pk.p, pk.g, pk.y) - case PubKeyAlgoECDSA: - return pk.ec.serialize(w) - case PubKeyAlgoECDH: - if err = pk.ec.serialize(w); err != nil { - return - } - return pk.ecdh.serialize(w) - } - return errors.InvalidArgumentError("bad public-key algorithm") -} - -// CanSign returns true iff this public key can generate signatures -func (pk *PublicKey) CanSign() bool { - return pk.PubKeyAlgo != PubKeyAlgoRSAEncryptOnly && pk.PubKeyAlgo != PubKeyAlgoElGamal -} - -// VerifySignature returns nil iff sig is a valid signature, made by this -// public key, of the data hashed into signed. signed is mutated by this call. -func (pk *PublicKey) VerifySignature(signed hash.Hash, sig *Signature) (err error) { - if !pk.CanSign() { - return errors.InvalidArgumentError("public key cannot generate signatures") - } - - signed.Write(sig.HashSuffix) - hashBytes := signed.Sum(nil) - - if hashBytes[0] != sig.HashTag[0] || hashBytes[1] != sig.HashTag[1] { - return errors.SignatureError("hash tag doesn't match") - } - - if pk.PubKeyAlgo != sig.PubKeyAlgo { - return errors.InvalidArgumentError("public key and signature use different algorithms") - } - - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly: - rsaPublicKey, _ := pk.PublicKey.(*rsa.PublicKey) - err = rsa.VerifyPKCS1v15(rsaPublicKey, sig.Hash, hashBytes, padToKeySize(rsaPublicKey, sig.RSASignature.bytes)) - if err != nil { - return errors.SignatureError("RSA verification failure") - } - return nil - case PubKeyAlgoDSA: - dsaPublicKey, _ := pk.PublicKey.(*dsa.PublicKey) - // Need to truncate hashBytes to match FIPS 186-3 section 4.6. - subgroupSize := (dsaPublicKey.Q.BitLen() + 7) / 8 - if len(hashBytes) > subgroupSize { - hashBytes = hashBytes[:subgroupSize] - } - if !dsa.Verify(dsaPublicKey, hashBytes, new(big.Int).SetBytes(sig.DSASigR.bytes), new(big.Int).SetBytes(sig.DSASigS.bytes)) { - return errors.SignatureError("DSA verification failure") - } - return nil - case PubKeyAlgoECDSA: - ecdsaPublicKey := pk.PublicKey.(*ecdsa.PublicKey) - if !ecdsa.Verify(ecdsaPublicKey, hashBytes, new(big.Int).SetBytes(sig.ECDSASigR.bytes), new(big.Int).SetBytes(sig.ECDSASigS.bytes)) { - return errors.SignatureError("ECDSA verification failure") - } - return nil - default: - return errors.SignatureError("Unsupported public key algorithm used in signature") - } -} - -// VerifySignatureV3 returns nil iff sig is a valid signature, made by this -// public key, of the data hashed into signed. signed is mutated by this call. -func (pk *PublicKey) VerifySignatureV3(signed hash.Hash, sig *SignatureV3) (err error) { - if !pk.CanSign() { - return errors.InvalidArgumentError("public key cannot generate signatures") - } - - suffix := make([]byte, 5) - suffix[0] = byte(sig.SigType) - binary.BigEndian.PutUint32(suffix[1:], uint32(sig.CreationTime.Unix())) - signed.Write(suffix) - hashBytes := signed.Sum(nil) - - if hashBytes[0] != sig.HashTag[0] || hashBytes[1] != sig.HashTag[1] { - return errors.SignatureError("hash tag doesn't match") - } - - if pk.PubKeyAlgo != sig.PubKeyAlgo { - return errors.InvalidArgumentError("public key and signature use different algorithms") - } - - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly: - rsaPublicKey := pk.PublicKey.(*rsa.PublicKey) - if err = rsa.VerifyPKCS1v15(rsaPublicKey, sig.Hash, hashBytes, padToKeySize(rsaPublicKey, sig.RSASignature.bytes)); err != nil { - return errors.SignatureError("RSA verification failure") - } - return - case PubKeyAlgoDSA: - dsaPublicKey := pk.PublicKey.(*dsa.PublicKey) - // Need to truncate hashBytes to match FIPS 186-3 section 4.6. - subgroupSize := (dsaPublicKey.Q.BitLen() + 7) / 8 - if len(hashBytes) > subgroupSize { - hashBytes = hashBytes[:subgroupSize] - } - if !dsa.Verify(dsaPublicKey, hashBytes, new(big.Int).SetBytes(sig.DSASigR.bytes), new(big.Int).SetBytes(sig.DSASigS.bytes)) { - return errors.SignatureError("DSA verification failure") - } - return nil - default: - panic("shouldn't happen") - } -} - -// keySignatureHash returns a Hash of the message that needs to be signed for -// pk to assert a subkey relationship to signed. -func keySignatureHash(pk, signed signingKey, hashFunc crypto.Hash) (h hash.Hash, err error) { - if !hashFunc.Available() { - return nil, errors.UnsupportedError("hash function") - } - h = hashFunc.New() - - // RFC 4880, section 5.2.4 - pk.SerializeSignaturePrefix(h) - pk.serializeWithoutHeaders(h) - signed.SerializeSignaturePrefix(h) - signed.serializeWithoutHeaders(h) - return -} - -// VerifyKeySignature returns nil iff sig is a valid signature, made by this -// public key, of signed. -func (pk *PublicKey) VerifyKeySignature(signed *PublicKey, sig *Signature) error { - h, err := keySignatureHash(pk, signed, sig.Hash) - if err != nil { - return err - } - if err = pk.VerifySignature(h, sig); err != nil { - return err - } - - if sig.FlagSign { - // Signing subkeys must be cross-signed. See - // https://www.gnupg.org/faq/subkey-cross-certify.html. - if sig.EmbeddedSignature == nil { - return errors.StructuralError("signing subkey is missing cross-signature") - } - // Verify the cross-signature. This is calculated over the same - // data as the main signature, so we cannot just recursively - // call signed.VerifyKeySignature(...) - if h, err = keySignatureHash(pk, signed, sig.EmbeddedSignature.Hash); err != nil { - return errors.StructuralError("error while hashing for cross-signature: " + err.Error()) - } - if err := signed.VerifySignature(h, sig.EmbeddedSignature); err != nil { - return errors.StructuralError("error while verifying cross-signature: " + err.Error()) - } - } - - return nil -} - -func keyRevocationHash(pk signingKey, hashFunc crypto.Hash) (h hash.Hash, err error) { - if !hashFunc.Available() { - return nil, errors.UnsupportedError("hash function") - } - h = hashFunc.New() - - // RFC 4880, section 5.2.4 - pk.SerializeSignaturePrefix(h) - pk.serializeWithoutHeaders(h) - - return -} - -// VerifyRevocationSignature returns nil iff sig is a valid signature, made by this -// public key. -func (pk *PublicKey) VerifyRevocationSignature(sig *Signature) (err error) { - h, err := keyRevocationHash(pk, sig.Hash) - if err != nil { - return err - } - return pk.VerifySignature(h, sig) -} - -// userIdSignatureHash returns a Hash of the message that needs to be signed -// to assert that pk is a valid key for id. -func userIdSignatureHash(id string, pk *PublicKey, hashFunc crypto.Hash) (h hash.Hash, err error) { - if !hashFunc.Available() { - return nil, errors.UnsupportedError("hash function") - } - h = hashFunc.New() - - // RFC 4880, section 5.2.4 - pk.SerializeSignaturePrefix(h) - pk.serializeWithoutHeaders(h) - - var buf [5]byte - buf[0] = 0xb4 - buf[1] = byte(len(id) >> 24) - buf[2] = byte(len(id) >> 16) - buf[3] = byte(len(id) >> 8) - buf[4] = byte(len(id)) - h.Write(buf[:]) - h.Write([]byte(id)) - - return -} - -// VerifyUserIdSignature returns nil iff sig is a valid signature, made by this -// public key, that id is the identity of pub. -func (pk *PublicKey) VerifyUserIdSignature(id string, pub *PublicKey, sig *Signature) (err error) { - h, err := userIdSignatureHash(id, pub, sig.Hash) - if err != nil { - return err - } - return pk.VerifySignature(h, sig) -} - -// VerifyUserIdSignatureV3 returns nil iff sig is a valid signature, made by this -// public key, that id is the identity of pub. -func (pk *PublicKey) VerifyUserIdSignatureV3(id string, pub *PublicKey, sig *SignatureV3) (err error) { - h, err := userIdSignatureV3Hash(id, pub, sig.Hash) - if err != nil { - return err - } - return pk.VerifySignatureV3(h, sig) -} - -// KeyIdString returns the public key's fingerprint in capital hex -// (e.g. "6C7EE1B8621CC013"). -func (pk *PublicKey) KeyIdString() string { - return fmt.Sprintf("%X", pk.Fingerprint[12:20]) -} - -// KeyIdShortString returns the short form of public key's fingerprint -// in capital hex, as shown by gpg --list-keys (e.g. "621CC013"). -func (pk *PublicKey) KeyIdShortString() string { - return fmt.Sprintf("%X", pk.Fingerprint[16:20]) -} - -// A parsedMPI is used to store the contents of a big integer, along with the -// bit length that was specified in the original input. This allows the MPI to -// be reserialized exactly. -type parsedMPI struct { - bytes []byte - bitLength uint16 -} - -// writeMPIs is a utility function for serializing several big integers to the -// given Writer. -func writeMPIs(w io.Writer, mpis ...parsedMPI) (err error) { - for _, mpi := range mpis { - err = writeMPI(w, mpi.bitLength, mpi.bytes) - if err != nil { - return - } - } - return -} - -// BitLength returns the bit length for the given public key. -func (pk *PublicKey) BitLength() (bitLength uint16, err error) { - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoRSASignOnly: - bitLength = pk.n.bitLength - case PubKeyAlgoDSA: - bitLength = pk.p.bitLength - case PubKeyAlgoElGamal: - bitLength = pk.p.bitLength - default: - err = errors.InvalidArgumentError("bad public-key algorithm") - } - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/public_key_v3.go b/vendor/golang.org/x/crypto/openpgp/packet/public_key_v3.go deleted file mode 100644 index 5daf7b6..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/public_key_v3.go +++ /dev/null @@ -1,279 +0,0 @@ -// Copyright 2013 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "crypto" - "crypto/md5" - "crypto/rsa" - "encoding/binary" - "fmt" - "hash" - "io" - "math/big" - "strconv" - "time" - - "golang.org/x/crypto/openpgp/errors" -) - -// PublicKeyV3 represents older, version 3 public keys. These keys are less secure and -// should not be used for signing or encrypting. They are supported here only for -// parsing version 3 key material and validating signatures. -// See RFC 4880, section 5.5.2. -type PublicKeyV3 struct { - CreationTime time.Time - DaysToExpire uint16 - PubKeyAlgo PublicKeyAlgorithm - PublicKey *rsa.PublicKey - Fingerprint [16]byte - KeyId uint64 - IsSubkey bool - - n, e parsedMPI -} - -// newRSAPublicKeyV3 returns a PublicKey that wraps the given rsa.PublicKey. -// Included here for testing purposes only. RFC 4880, section 5.5.2: -// "an implementation MUST NOT generate a V3 key, but MAY accept it." -func newRSAPublicKeyV3(creationTime time.Time, pub *rsa.PublicKey) *PublicKeyV3 { - pk := &PublicKeyV3{ - CreationTime: creationTime, - PublicKey: pub, - n: fromBig(pub.N), - e: fromBig(big.NewInt(int64(pub.E))), - } - - pk.setFingerPrintAndKeyId() - return pk -} - -func (pk *PublicKeyV3) parse(r io.Reader) (err error) { - // RFC 4880, section 5.5.2 - var buf [8]byte - if _, err = readFull(r, buf[:]); err != nil { - return - } - if buf[0] < 2 || buf[0] > 3 { - return errors.UnsupportedError("public key version") - } - pk.CreationTime = time.Unix(int64(uint32(buf[1])<<24|uint32(buf[2])<<16|uint32(buf[3])<<8|uint32(buf[4])), 0) - pk.DaysToExpire = binary.BigEndian.Uint16(buf[5:7]) - pk.PubKeyAlgo = PublicKeyAlgorithm(buf[7]) - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoRSASignOnly: - err = pk.parseRSA(r) - default: - err = errors.UnsupportedError("public key type: " + strconv.Itoa(int(pk.PubKeyAlgo))) - } - if err != nil { - return - } - - pk.setFingerPrintAndKeyId() - return -} - -func (pk *PublicKeyV3) setFingerPrintAndKeyId() { - // RFC 4880, section 12.2 - fingerPrint := md5.New() - fingerPrint.Write(pk.n.bytes) - fingerPrint.Write(pk.e.bytes) - fingerPrint.Sum(pk.Fingerprint[:0]) - pk.KeyId = binary.BigEndian.Uint64(pk.n.bytes[len(pk.n.bytes)-8:]) -} - -// parseRSA parses RSA public key material from the given Reader. See RFC 4880, -// section 5.5.2. -func (pk *PublicKeyV3) parseRSA(r io.Reader) (err error) { - if pk.n.bytes, pk.n.bitLength, err = readMPI(r); err != nil { - return - } - if pk.e.bytes, pk.e.bitLength, err = readMPI(r); err != nil { - return - } - - // RFC 4880 Section 12.2 requires the low 8 bytes of the - // modulus to form the key id. - if len(pk.n.bytes) < 8 { - return errors.StructuralError("v3 public key modulus is too short") - } - if len(pk.e.bytes) > 3 { - err = errors.UnsupportedError("large public exponent") - return - } - rsa := &rsa.PublicKey{N: new(big.Int).SetBytes(pk.n.bytes)} - for i := 0; i < len(pk.e.bytes); i++ { - rsa.E <<= 8 - rsa.E |= int(pk.e.bytes[i]) - } - pk.PublicKey = rsa - return -} - -// SerializeSignaturePrefix writes the prefix for this public key to the given Writer. -// The prefix is used when calculating a signature over this public key. See -// RFC 4880, section 5.2.4. -func (pk *PublicKeyV3) SerializeSignaturePrefix(w io.Writer) { - var pLength uint16 - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoRSASignOnly: - pLength += 2 + uint16(len(pk.n.bytes)) - pLength += 2 + uint16(len(pk.e.bytes)) - default: - panic("unknown public key algorithm") - } - pLength += 6 - w.Write([]byte{0x99, byte(pLength >> 8), byte(pLength)}) - return -} - -func (pk *PublicKeyV3) Serialize(w io.Writer) (err error) { - length := 8 // 8 byte header - - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoRSASignOnly: - length += 2 + len(pk.n.bytes) - length += 2 + len(pk.e.bytes) - default: - panic("unknown public key algorithm") - } - - packetType := packetTypePublicKey - if pk.IsSubkey { - packetType = packetTypePublicSubkey - } - if err = serializeHeader(w, packetType, length); err != nil { - return - } - return pk.serializeWithoutHeaders(w) -} - -// serializeWithoutHeaders marshals the PublicKey to w in the form of an -// OpenPGP public key packet, not including the packet header. -func (pk *PublicKeyV3) serializeWithoutHeaders(w io.Writer) (err error) { - var buf [8]byte - // Version 3 - buf[0] = 3 - // Creation time - t := uint32(pk.CreationTime.Unix()) - buf[1] = byte(t >> 24) - buf[2] = byte(t >> 16) - buf[3] = byte(t >> 8) - buf[4] = byte(t) - // Days to expire - buf[5] = byte(pk.DaysToExpire >> 8) - buf[6] = byte(pk.DaysToExpire) - // Public key algorithm - buf[7] = byte(pk.PubKeyAlgo) - - if _, err = w.Write(buf[:]); err != nil { - return - } - - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoRSASignOnly: - return writeMPIs(w, pk.n, pk.e) - } - return errors.InvalidArgumentError("bad public-key algorithm") -} - -// CanSign returns true iff this public key can generate signatures -func (pk *PublicKeyV3) CanSign() bool { - return pk.PubKeyAlgo != PubKeyAlgoRSAEncryptOnly -} - -// VerifySignatureV3 returns nil iff sig is a valid signature, made by this -// public key, of the data hashed into signed. signed is mutated by this call. -func (pk *PublicKeyV3) VerifySignatureV3(signed hash.Hash, sig *SignatureV3) (err error) { - if !pk.CanSign() { - return errors.InvalidArgumentError("public key cannot generate signatures") - } - - suffix := make([]byte, 5) - suffix[0] = byte(sig.SigType) - binary.BigEndian.PutUint32(suffix[1:], uint32(sig.CreationTime.Unix())) - signed.Write(suffix) - hashBytes := signed.Sum(nil) - - if hashBytes[0] != sig.HashTag[0] || hashBytes[1] != sig.HashTag[1] { - return errors.SignatureError("hash tag doesn't match") - } - - if pk.PubKeyAlgo != sig.PubKeyAlgo { - return errors.InvalidArgumentError("public key and signature use different algorithms") - } - - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly: - if err = rsa.VerifyPKCS1v15(pk.PublicKey, sig.Hash, hashBytes, sig.RSASignature.bytes); err != nil { - return errors.SignatureError("RSA verification failure") - } - return - default: - // V3 public keys only support RSA. - panic("shouldn't happen") - } -} - -// VerifyUserIdSignatureV3 returns nil iff sig is a valid signature, made by this -// public key, that id is the identity of pub. -func (pk *PublicKeyV3) VerifyUserIdSignatureV3(id string, pub *PublicKeyV3, sig *SignatureV3) (err error) { - h, err := userIdSignatureV3Hash(id, pk, sig.Hash) - if err != nil { - return err - } - return pk.VerifySignatureV3(h, sig) -} - -// VerifyKeySignatureV3 returns nil iff sig is a valid signature, made by this -// public key, of signed. -func (pk *PublicKeyV3) VerifyKeySignatureV3(signed *PublicKeyV3, sig *SignatureV3) (err error) { - h, err := keySignatureHash(pk, signed, sig.Hash) - if err != nil { - return err - } - return pk.VerifySignatureV3(h, sig) -} - -// userIdSignatureV3Hash returns a Hash of the message that needs to be signed -// to assert that pk is a valid key for id. -func userIdSignatureV3Hash(id string, pk signingKey, hfn crypto.Hash) (h hash.Hash, err error) { - if !hfn.Available() { - return nil, errors.UnsupportedError("hash function") - } - h = hfn.New() - - // RFC 4880, section 5.2.4 - pk.SerializeSignaturePrefix(h) - pk.serializeWithoutHeaders(h) - - h.Write([]byte(id)) - - return -} - -// KeyIdString returns the public key's fingerprint in capital hex -// (e.g. "6C7EE1B8621CC013"). -func (pk *PublicKeyV3) KeyIdString() string { - return fmt.Sprintf("%X", pk.KeyId) -} - -// KeyIdShortString returns the short form of public key's fingerprint -// in capital hex, as shown by gpg --list-keys (e.g. "621CC013"). -func (pk *PublicKeyV3) KeyIdShortString() string { - return fmt.Sprintf("%X", pk.KeyId&0xFFFFFFFF) -} - -// BitLength returns the bit length for the given public key. -func (pk *PublicKeyV3) BitLength() (bitLength uint16, err error) { - switch pk.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSAEncryptOnly, PubKeyAlgoRSASignOnly: - bitLength = pk.n.bitLength - default: - err = errors.InvalidArgumentError("bad public-key algorithm") - } - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/reader.go b/vendor/golang.org/x/crypto/openpgp/packet/reader.go deleted file mode 100644 index 34bc7c6..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/reader.go +++ /dev/null @@ -1,76 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "golang.org/x/crypto/openpgp/errors" - "io" -) - -// Reader reads packets from an io.Reader and allows packets to be 'unread' so -// that they result from the next call to Next. -type Reader struct { - q []Packet - readers []io.Reader -} - -// New io.Readers are pushed when a compressed or encrypted packet is processed -// and recursively treated as a new source of packets. However, a carefully -// crafted packet can trigger an infinite recursive sequence of packets. See -// http://mumble.net/~campbell/misc/pgp-quine -// https://web.nvd.nist.gov/view/vuln/detail?vulnId=CVE-2013-4402 -// This constant limits the number of recursive packets that may be pushed. -const maxReaders = 32 - -// Next returns the most recently unread Packet, or reads another packet from -// the top-most io.Reader. Unknown packet types are skipped. -func (r *Reader) Next() (p Packet, err error) { - if len(r.q) > 0 { - p = r.q[len(r.q)-1] - r.q = r.q[:len(r.q)-1] - return - } - - for len(r.readers) > 0 { - p, err = Read(r.readers[len(r.readers)-1]) - if err == nil { - return - } - if err == io.EOF { - r.readers = r.readers[:len(r.readers)-1] - continue - } - if _, ok := err.(errors.UnknownPacketTypeError); !ok { - return nil, err - } - } - - return nil, io.EOF -} - -// Push causes the Reader to start reading from a new io.Reader. When an EOF -// error is seen from the new io.Reader, it is popped and the Reader continues -// to read from the next most recent io.Reader. Push returns a StructuralError -// if pushing the reader would exceed the maximum recursion level, otherwise it -// returns nil. -func (r *Reader) Push(reader io.Reader) (err error) { - if len(r.readers) >= maxReaders { - return errors.StructuralError("too many layers of packets") - } - r.readers = append(r.readers, reader) - return nil -} - -// Unread causes the given Packet to be returned from the next call to Next. -func (r *Reader) Unread(p Packet) { - r.q = append(r.q, p) -} - -func NewReader(r io.Reader) *Reader { - return &Reader{ - q: nil, - readers: []io.Reader{r}, - } -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/signature.go b/vendor/golang.org/x/crypto/openpgp/packet/signature.go deleted file mode 100644 index 6ce0cbe..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/signature.go +++ /dev/null @@ -1,731 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "bytes" - "crypto" - "crypto/dsa" - "crypto/ecdsa" - "encoding/asn1" - "encoding/binary" - "hash" - "io" - "math/big" - "strconv" - "time" - - "golang.org/x/crypto/openpgp/errors" - "golang.org/x/crypto/openpgp/s2k" -) - -const ( - // See RFC 4880, section 5.2.3.21 for details. - KeyFlagCertify = 1 << iota - KeyFlagSign - KeyFlagEncryptCommunications - KeyFlagEncryptStorage -) - -// Signature represents a signature. See RFC 4880, section 5.2. -type Signature struct { - SigType SignatureType - PubKeyAlgo PublicKeyAlgorithm - Hash crypto.Hash - - // HashSuffix is extra data that is hashed in after the signed data. - HashSuffix []byte - // HashTag contains the first two bytes of the hash for fast rejection - // of bad signed data. - HashTag [2]byte - CreationTime time.Time - - RSASignature parsedMPI - DSASigR, DSASigS parsedMPI - ECDSASigR, ECDSASigS parsedMPI - - // rawSubpackets contains the unparsed subpackets, in order. - rawSubpackets []outputSubpacket - - // The following are optional so are nil when not included in the - // signature. - - SigLifetimeSecs, KeyLifetimeSecs *uint32 - PreferredSymmetric, PreferredHash, PreferredCompression []uint8 - IssuerKeyId *uint64 - IsPrimaryId *bool - - // FlagsValid is set if any flags were given. See RFC 4880, section - // 5.2.3.21 for details. - FlagsValid bool - FlagCertify, FlagSign, FlagEncryptCommunications, FlagEncryptStorage bool - - // RevocationReason is set if this signature has been revoked. - // See RFC 4880, section 5.2.3.23 for details. - RevocationReason *uint8 - RevocationReasonText string - - // MDC is set if this signature has a feature packet that indicates - // support for MDC subpackets. - MDC bool - - // EmbeddedSignature, if non-nil, is a signature of the parent key, by - // this key. This prevents an attacker from claiming another's signing - // subkey as their own. - EmbeddedSignature *Signature - - outSubpackets []outputSubpacket -} - -func (sig *Signature) parse(r io.Reader) (err error) { - // RFC 4880, section 5.2.3 - var buf [5]byte - _, err = readFull(r, buf[:1]) - if err != nil { - return - } - if buf[0] != 4 { - err = errors.UnsupportedError("signature packet version " + strconv.Itoa(int(buf[0]))) - return - } - - _, err = readFull(r, buf[:5]) - if err != nil { - return - } - sig.SigType = SignatureType(buf[0]) - sig.PubKeyAlgo = PublicKeyAlgorithm(buf[1]) - switch sig.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly, PubKeyAlgoDSA, PubKeyAlgoECDSA: - default: - err = errors.UnsupportedError("public key algorithm " + strconv.Itoa(int(sig.PubKeyAlgo))) - return - } - - var ok bool - sig.Hash, ok = s2k.HashIdToHash(buf[2]) - if !ok { - return errors.UnsupportedError("hash function " + strconv.Itoa(int(buf[2]))) - } - - hashedSubpacketsLength := int(buf[3])<<8 | int(buf[4]) - l := 6 + hashedSubpacketsLength - sig.HashSuffix = make([]byte, l+6) - sig.HashSuffix[0] = 4 - copy(sig.HashSuffix[1:], buf[:5]) - hashedSubpackets := sig.HashSuffix[6:l] - _, err = readFull(r, hashedSubpackets) - if err != nil { - return - } - // See RFC 4880, section 5.2.4 - trailer := sig.HashSuffix[l:] - trailer[0] = 4 - trailer[1] = 0xff - trailer[2] = uint8(l >> 24) - trailer[3] = uint8(l >> 16) - trailer[4] = uint8(l >> 8) - trailer[5] = uint8(l) - - err = parseSignatureSubpackets(sig, hashedSubpackets, true) - if err != nil { - return - } - - _, err = readFull(r, buf[:2]) - if err != nil { - return - } - unhashedSubpacketsLength := int(buf[0])<<8 | int(buf[1]) - unhashedSubpackets := make([]byte, unhashedSubpacketsLength) - _, err = readFull(r, unhashedSubpackets) - if err != nil { - return - } - err = parseSignatureSubpackets(sig, unhashedSubpackets, false) - if err != nil { - return - } - - _, err = readFull(r, sig.HashTag[:2]) - if err != nil { - return - } - - switch sig.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly: - sig.RSASignature.bytes, sig.RSASignature.bitLength, err = readMPI(r) - case PubKeyAlgoDSA: - sig.DSASigR.bytes, sig.DSASigR.bitLength, err = readMPI(r) - if err == nil { - sig.DSASigS.bytes, sig.DSASigS.bitLength, err = readMPI(r) - } - case PubKeyAlgoECDSA: - sig.ECDSASigR.bytes, sig.ECDSASigR.bitLength, err = readMPI(r) - if err == nil { - sig.ECDSASigS.bytes, sig.ECDSASigS.bitLength, err = readMPI(r) - } - default: - panic("unreachable") - } - return -} - -// parseSignatureSubpackets parses subpackets of the main signature packet. See -// RFC 4880, section 5.2.3.1. -func parseSignatureSubpackets(sig *Signature, subpackets []byte, isHashed bool) (err error) { - for len(subpackets) > 0 { - subpackets, err = parseSignatureSubpacket(sig, subpackets, isHashed) - if err != nil { - return - } - } - - if sig.CreationTime.IsZero() { - err = errors.StructuralError("no creation time in signature") - } - - return -} - -type signatureSubpacketType uint8 - -const ( - creationTimeSubpacket signatureSubpacketType = 2 - signatureExpirationSubpacket signatureSubpacketType = 3 - keyExpirationSubpacket signatureSubpacketType = 9 - prefSymmetricAlgosSubpacket signatureSubpacketType = 11 - issuerSubpacket signatureSubpacketType = 16 - prefHashAlgosSubpacket signatureSubpacketType = 21 - prefCompressionSubpacket signatureSubpacketType = 22 - primaryUserIdSubpacket signatureSubpacketType = 25 - keyFlagsSubpacket signatureSubpacketType = 27 - reasonForRevocationSubpacket signatureSubpacketType = 29 - featuresSubpacket signatureSubpacketType = 30 - embeddedSignatureSubpacket signatureSubpacketType = 32 -) - -// parseSignatureSubpacket parses a single subpacket. len(subpacket) is >= 1. -func parseSignatureSubpacket(sig *Signature, subpacket []byte, isHashed bool) (rest []byte, err error) { - // RFC 4880, section 5.2.3.1 - var ( - length uint32 - packetType signatureSubpacketType - isCritical bool - ) - switch { - case subpacket[0] < 192: - length = uint32(subpacket[0]) - subpacket = subpacket[1:] - case subpacket[0] < 255: - if len(subpacket) < 2 { - goto Truncated - } - length = uint32(subpacket[0]-192)<<8 + uint32(subpacket[1]) + 192 - subpacket = subpacket[2:] - default: - if len(subpacket) < 5 { - goto Truncated - } - length = uint32(subpacket[1])<<24 | - uint32(subpacket[2])<<16 | - uint32(subpacket[3])<<8 | - uint32(subpacket[4]) - subpacket = subpacket[5:] - } - if length > uint32(len(subpacket)) { - goto Truncated - } - rest = subpacket[length:] - subpacket = subpacket[:length] - if len(subpacket) == 0 { - err = errors.StructuralError("zero length signature subpacket") - return - } - packetType = signatureSubpacketType(subpacket[0] & 0x7f) - isCritical = subpacket[0]&0x80 == 0x80 - subpacket = subpacket[1:] - sig.rawSubpackets = append(sig.rawSubpackets, outputSubpacket{isHashed, packetType, isCritical, subpacket}) - switch packetType { - case creationTimeSubpacket: - if !isHashed { - err = errors.StructuralError("signature creation time in non-hashed area") - return - } - if len(subpacket) != 4 { - err = errors.StructuralError("signature creation time not four bytes") - return - } - t := binary.BigEndian.Uint32(subpacket) - sig.CreationTime = time.Unix(int64(t), 0) - case signatureExpirationSubpacket: - // Signature expiration time, section 5.2.3.10 - if !isHashed { - return - } - if len(subpacket) != 4 { - err = errors.StructuralError("expiration subpacket with bad length") - return - } - sig.SigLifetimeSecs = new(uint32) - *sig.SigLifetimeSecs = binary.BigEndian.Uint32(subpacket) - case keyExpirationSubpacket: - // Key expiration time, section 5.2.3.6 - if !isHashed { - return - } - if len(subpacket) != 4 { - err = errors.StructuralError("key expiration subpacket with bad length") - return - } - sig.KeyLifetimeSecs = new(uint32) - *sig.KeyLifetimeSecs = binary.BigEndian.Uint32(subpacket) - case prefSymmetricAlgosSubpacket: - // Preferred symmetric algorithms, section 5.2.3.7 - if !isHashed { - return - } - sig.PreferredSymmetric = make([]byte, len(subpacket)) - copy(sig.PreferredSymmetric, subpacket) - case issuerSubpacket: - // Issuer, section 5.2.3.5 - if len(subpacket) != 8 { - err = errors.StructuralError("issuer subpacket with bad length") - return - } - sig.IssuerKeyId = new(uint64) - *sig.IssuerKeyId = binary.BigEndian.Uint64(subpacket) - case prefHashAlgosSubpacket: - // Preferred hash algorithms, section 5.2.3.8 - if !isHashed { - return - } - sig.PreferredHash = make([]byte, len(subpacket)) - copy(sig.PreferredHash, subpacket) - case prefCompressionSubpacket: - // Preferred compression algorithms, section 5.2.3.9 - if !isHashed { - return - } - sig.PreferredCompression = make([]byte, len(subpacket)) - copy(sig.PreferredCompression, subpacket) - case primaryUserIdSubpacket: - // Primary User ID, section 5.2.3.19 - if !isHashed { - return - } - if len(subpacket) != 1 { - err = errors.StructuralError("primary user id subpacket with bad length") - return - } - sig.IsPrimaryId = new(bool) - if subpacket[0] > 0 { - *sig.IsPrimaryId = true - } - case keyFlagsSubpacket: - // Key flags, section 5.2.3.21 - if !isHashed { - return - } - if len(subpacket) == 0 { - err = errors.StructuralError("empty key flags subpacket") - return - } - sig.FlagsValid = true - if subpacket[0]&KeyFlagCertify != 0 { - sig.FlagCertify = true - } - if subpacket[0]&KeyFlagSign != 0 { - sig.FlagSign = true - } - if subpacket[0]&KeyFlagEncryptCommunications != 0 { - sig.FlagEncryptCommunications = true - } - if subpacket[0]&KeyFlagEncryptStorage != 0 { - sig.FlagEncryptStorage = true - } - case reasonForRevocationSubpacket: - // Reason For Revocation, section 5.2.3.23 - if !isHashed { - return - } - if len(subpacket) == 0 { - err = errors.StructuralError("empty revocation reason subpacket") - return - } - sig.RevocationReason = new(uint8) - *sig.RevocationReason = subpacket[0] - sig.RevocationReasonText = string(subpacket[1:]) - case featuresSubpacket: - // Features subpacket, section 5.2.3.24 specifies a very general - // mechanism for OpenPGP implementations to signal support for new - // features. In practice, the subpacket is used exclusively to - // indicate support for MDC-protected encryption. - sig.MDC = len(subpacket) >= 1 && subpacket[0]&1 == 1 - case embeddedSignatureSubpacket: - // Only usage is in signatures that cross-certify - // signing subkeys. section 5.2.3.26 describes the - // format, with its usage described in section 11.1 - if sig.EmbeddedSignature != nil { - err = errors.StructuralError("Cannot have multiple embedded signatures") - return - } - sig.EmbeddedSignature = new(Signature) - // Embedded signatures are required to be v4 signatures see - // section 12.1. However, we only parse v4 signatures in this - // file anyway. - if err := sig.EmbeddedSignature.parse(bytes.NewBuffer(subpacket)); err != nil { - return nil, err - } - if sigType := sig.EmbeddedSignature.SigType; sigType != SigTypePrimaryKeyBinding { - return nil, errors.StructuralError("cross-signature has unexpected type " + strconv.Itoa(int(sigType))) - } - default: - if isCritical { - err = errors.UnsupportedError("unknown critical signature subpacket type " + strconv.Itoa(int(packetType))) - return - } - } - return - -Truncated: - err = errors.StructuralError("signature subpacket truncated") - return -} - -// subpacketLengthLength returns the length, in bytes, of an encoded length value. -func subpacketLengthLength(length int) int { - if length < 192 { - return 1 - } - if length < 16320 { - return 2 - } - return 5 -} - -// serializeSubpacketLength marshals the given length into to. -func serializeSubpacketLength(to []byte, length int) int { - // RFC 4880, Section 4.2.2. - if length < 192 { - to[0] = byte(length) - return 1 - } - if length < 16320 { - length -= 192 - to[0] = byte((length >> 8) + 192) - to[1] = byte(length) - return 2 - } - to[0] = 255 - to[1] = byte(length >> 24) - to[2] = byte(length >> 16) - to[3] = byte(length >> 8) - to[4] = byte(length) - return 5 -} - -// subpacketsLength returns the serialized length, in bytes, of the given -// subpackets. -func subpacketsLength(subpackets []outputSubpacket, hashed bool) (length int) { - for _, subpacket := range subpackets { - if subpacket.hashed == hashed { - length += subpacketLengthLength(len(subpacket.contents) + 1) - length += 1 // type byte - length += len(subpacket.contents) - } - } - return -} - -// serializeSubpackets marshals the given subpackets into to. -func serializeSubpackets(to []byte, subpackets []outputSubpacket, hashed bool) { - for _, subpacket := range subpackets { - if subpacket.hashed == hashed { - n := serializeSubpacketLength(to, len(subpacket.contents)+1) - to[n] = byte(subpacket.subpacketType) - to = to[1+n:] - n = copy(to, subpacket.contents) - to = to[n:] - } - } - return -} - -// KeyExpired returns whether sig is a self-signature of a key that has -// expired. -func (sig *Signature) KeyExpired(currentTime time.Time) bool { - if sig.KeyLifetimeSecs == nil { - return false - } - expiry := sig.CreationTime.Add(time.Duration(*sig.KeyLifetimeSecs) * time.Second) - return currentTime.After(expiry) -} - -// buildHashSuffix constructs the HashSuffix member of sig in preparation for signing. -func (sig *Signature) buildHashSuffix() (err error) { - hashedSubpacketsLen := subpacketsLength(sig.outSubpackets, true) - - var ok bool - l := 6 + hashedSubpacketsLen - sig.HashSuffix = make([]byte, l+6) - sig.HashSuffix[0] = 4 - sig.HashSuffix[1] = uint8(sig.SigType) - sig.HashSuffix[2] = uint8(sig.PubKeyAlgo) - sig.HashSuffix[3], ok = s2k.HashToHashId(sig.Hash) - if !ok { - sig.HashSuffix = nil - return errors.InvalidArgumentError("hash cannot be represented in OpenPGP: " + strconv.Itoa(int(sig.Hash))) - } - sig.HashSuffix[4] = byte(hashedSubpacketsLen >> 8) - sig.HashSuffix[5] = byte(hashedSubpacketsLen) - serializeSubpackets(sig.HashSuffix[6:l], sig.outSubpackets, true) - trailer := sig.HashSuffix[l:] - trailer[0] = 4 - trailer[1] = 0xff - trailer[2] = byte(l >> 24) - trailer[3] = byte(l >> 16) - trailer[4] = byte(l >> 8) - trailer[5] = byte(l) - return -} - -func (sig *Signature) signPrepareHash(h hash.Hash) (digest []byte, err error) { - err = sig.buildHashSuffix() - if err != nil { - return - } - - h.Write(sig.HashSuffix) - digest = h.Sum(nil) - copy(sig.HashTag[:], digest) - return -} - -// Sign signs a message with a private key. The hash, h, must contain -// the hash of the message to be signed and will be mutated by this function. -// On success, the signature is stored in sig. Call Serialize to write it out. -// If config is nil, sensible defaults will be used. -func (sig *Signature) Sign(h hash.Hash, priv *PrivateKey, config *Config) (err error) { - sig.outSubpackets = sig.buildSubpackets() - digest, err := sig.signPrepareHash(h) - if err != nil { - return - } - - switch priv.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly: - // supports both *rsa.PrivateKey and crypto.Signer - sig.RSASignature.bytes, err = priv.PrivateKey.(crypto.Signer).Sign(config.Random(), digest, sig.Hash) - sig.RSASignature.bitLength = uint16(8 * len(sig.RSASignature.bytes)) - case PubKeyAlgoDSA: - dsaPriv := priv.PrivateKey.(*dsa.PrivateKey) - - // Need to truncate hashBytes to match FIPS 186-3 section 4.6. - subgroupSize := (dsaPriv.Q.BitLen() + 7) / 8 - if len(digest) > subgroupSize { - digest = digest[:subgroupSize] - } - r, s, err := dsa.Sign(config.Random(), dsaPriv, digest) - if err == nil { - sig.DSASigR.bytes = r.Bytes() - sig.DSASigR.bitLength = uint16(8 * len(sig.DSASigR.bytes)) - sig.DSASigS.bytes = s.Bytes() - sig.DSASigS.bitLength = uint16(8 * len(sig.DSASigS.bytes)) - } - case PubKeyAlgoECDSA: - var r, s *big.Int - if pk, ok := priv.PrivateKey.(*ecdsa.PrivateKey); ok { - // direct support, avoid asn1 wrapping/unwrapping - r, s, err = ecdsa.Sign(config.Random(), pk, digest) - } else { - var b []byte - b, err = priv.PrivateKey.(crypto.Signer).Sign(config.Random(), digest, nil) - if err == nil { - r, s, err = unwrapECDSASig(b) - } - } - if err == nil { - sig.ECDSASigR = fromBig(r) - sig.ECDSASigS = fromBig(s) - } - default: - err = errors.UnsupportedError("public key algorithm: " + strconv.Itoa(int(sig.PubKeyAlgo))) - } - - return -} - -// unwrapECDSASig parses the two integer components of an ASN.1-encoded ECDSA -// signature. -func unwrapECDSASig(b []byte) (r, s *big.Int, err error) { - var ecsdaSig struct { - R, S *big.Int - } - _, err = asn1.Unmarshal(b, &ecsdaSig) - if err != nil { - return - } - return ecsdaSig.R, ecsdaSig.S, nil -} - -// SignUserId computes a signature from priv, asserting that pub is a valid -// key for the identity id. On success, the signature is stored in sig. Call -// Serialize to write it out. -// If config is nil, sensible defaults will be used. -func (sig *Signature) SignUserId(id string, pub *PublicKey, priv *PrivateKey, config *Config) error { - h, err := userIdSignatureHash(id, pub, sig.Hash) - if err != nil { - return err - } - return sig.Sign(h, priv, config) -} - -// SignKey computes a signature from priv, asserting that pub is a subkey. On -// success, the signature is stored in sig. Call Serialize to write it out. -// If config is nil, sensible defaults will be used. -func (sig *Signature) SignKey(pub *PublicKey, priv *PrivateKey, config *Config) error { - h, err := keySignatureHash(&priv.PublicKey, pub, sig.Hash) - if err != nil { - return err - } - return sig.Sign(h, priv, config) -} - -// Serialize marshals sig to w. Sign, SignUserId or SignKey must have been -// called first. -func (sig *Signature) Serialize(w io.Writer) (err error) { - if len(sig.outSubpackets) == 0 { - sig.outSubpackets = sig.rawSubpackets - } - if sig.RSASignature.bytes == nil && sig.DSASigR.bytes == nil && sig.ECDSASigR.bytes == nil { - return errors.InvalidArgumentError("Signature: need to call Sign, SignUserId or SignKey before Serialize") - } - - sigLength := 0 - switch sig.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly: - sigLength = 2 + len(sig.RSASignature.bytes) - case PubKeyAlgoDSA: - sigLength = 2 + len(sig.DSASigR.bytes) - sigLength += 2 + len(sig.DSASigS.bytes) - case PubKeyAlgoECDSA: - sigLength = 2 + len(sig.ECDSASigR.bytes) - sigLength += 2 + len(sig.ECDSASigS.bytes) - default: - panic("impossible") - } - - unhashedSubpacketsLen := subpacketsLength(sig.outSubpackets, false) - length := len(sig.HashSuffix) - 6 /* trailer not included */ + - 2 /* length of unhashed subpackets */ + unhashedSubpacketsLen + - 2 /* hash tag */ + sigLength - err = serializeHeader(w, packetTypeSignature, length) - if err != nil { - return - } - - _, err = w.Write(sig.HashSuffix[:len(sig.HashSuffix)-6]) - if err != nil { - return - } - - unhashedSubpackets := make([]byte, 2+unhashedSubpacketsLen) - unhashedSubpackets[0] = byte(unhashedSubpacketsLen >> 8) - unhashedSubpackets[1] = byte(unhashedSubpacketsLen) - serializeSubpackets(unhashedSubpackets[2:], sig.outSubpackets, false) - - _, err = w.Write(unhashedSubpackets) - if err != nil { - return - } - _, err = w.Write(sig.HashTag[:]) - if err != nil { - return - } - - switch sig.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly: - err = writeMPIs(w, sig.RSASignature) - case PubKeyAlgoDSA: - err = writeMPIs(w, sig.DSASigR, sig.DSASigS) - case PubKeyAlgoECDSA: - err = writeMPIs(w, sig.ECDSASigR, sig.ECDSASigS) - default: - panic("impossible") - } - return -} - -// outputSubpacket represents a subpacket to be marshaled. -type outputSubpacket struct { - hashed bool // true if this subpacket is in the hashed area. - subpacketType signatureSubpacketType - isCritical bool - contents []byte -} - -func (sig *Signature) buildSubpackets() (subpackets []outputSubpacket) { - creationTime := make([]byte, 4) - binary.BigEndian.PutUint32(creationTime, uint32(sig.CreationTime.Unix())) - subpackets = append(subpackets, outputSubpacket{true, creationTimeSubpacket, false, creationTime}) - - if sig.IssuerKeyId != nil { - keyId := make([]byte, 8) - binary.BigEndian.PutUint64(keyId, *sig.IssuerKeyId) - subpackets = append(subpackets, outputSubpacket{true, issuerSubpacket, false, keyId}) - } - - if sig.SigLifetimeSecs != nil && *sig.SigLifetimeSecs != 0 { - sigLifetime := make([]byte, 4) - binary.BigEndian.PutUint32(sigLifetime, *sig.SigLifetimeSecs) - subpackets = append(subpackets, outputSubpacket{true, signatureExpirationSubpacket, true, sigLifetime}) - } - - // Key flags may only appear in self-signatures or certification signatures. - - if sig.FlagsValid { - var flags byte - if sig.FlagCertify { - flags |= KeyFlagCertify - } - if sig.FlagSign { - flags |= KeyFlagSign - } - if sig.FlagEncryptCommunications { - flags |= KeyFlagEncryptCommunications - } - if sig.FlagEncryptStorage { - flags |= KeyFlagEncryptStorage - } - subpackets = append(subpackets, outputSubpacket{true, keyFlagsSubpacket, false, []byte{flags}}) - } - - // The following subpackets may only appear in self-signatures - - if sig.KeyLifetimeSecs != nil && *sig.KeyLifetimeSecs != 0 { - keyLifetime := make([]byte, 4) - binary.BigEndian.PutUint32(keyLifetime, *sig.KeyLifetimeSecs) - subpackets = append(subpackets, outputSubpacket{true, keyExpirationSubpacket, true, keyLifetime}) - } - - if sig.IsPrimaryId != nil && *sig.IsPrimaryId { - subpackets = append(subpackets, outputSubpacket{true, primaryUserIdSubpacket, false, []byte{1}}) - } - - if len(sig.PreferredSymmetric) > 0 { - subpackets = append(subpackets, outputSubpacket{true, prefSymmetricAlgosSubpacket, false, sig.PreferredSymmetric}) - } - - if len(sig.PreferredHash) > 0 { - subpackets = append(subpackets, outputSubpacket{true, prefHashAlgosSubpacket, false, sig.PreferredHash}) - } - - if len(sig.PreferredCompression) > 0 { - subpackets = append(subpackets, outputSubpacket{true, prefCompressionSubpacket, false, sig.PreferredCompression}) - } - - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/signature_v3.go b/vendor/golang.org/x/crypto/openpgp/packet/signature_v3.go deleted file mode 100644 index 6edff88..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/signature_v3.go +++ /dev/null @@ -1,146 +0,0 @@ -// Copyright 2013 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "crypto" - "encoding/binary" - "fmt" - "io" - "strconv" - "time" - - "golang.org/x/crypto/openpgp/errors" - "golang.org/x/crypto/openpgp/s2k" -) - -// SignatureV3 represents older version 3 signatures. These signatures are less secure -// than version 4 and should not be used to create new signatures. They are included -// here for backwards compatibility to read and validate with older key material. -// See RFC 4880, section 5.2.2. -type SignatureV3 struct { - SigType SignatureType - CreationTime time.Time - IssuerKeyId uint64 - PubKeyAlgo PublicKeyAlgorithm - Hash crypto.Hash - HashTag [2]byte - - RSASignature parsedMPI - DSASigR, DSASigS parsedMPI -} - -func (sig *SignatureV3) parse(r io.Reader) (err error) { - // RFC 4880, section 5.2.2 - var buf [8]byte - if _, err = readFull(r, buf[:1]); err != nil { - return - } - if buf[0] < 2 || buf[0] > 3 { - err = errors.UnsupportedError("signature packet version " + strconv.Itoa(int(buf[0]))) - return - } - if _, err = readFull(r, buf[:1]); err != nil { - return - } - if buf[0] != 5 { - err = errors.UnsupportedError( - "invalid hashed material length " + strconv.Itoa(int(buf[0]))) - return - } - - // Read hashed material: signature type + creation time - if _, err = readFull(r, buf[:5]); err != nil { - return - } - sig.SigType = SignatureType(buf[0]) - t := binary.BigEndian.Uint32(buf[1:5]) - sig.CreationTime = time.Unix(int64(t), 0) - - // Eight-octet Key ID of signer. - if _, err = readFull(r, buf[:8]); err != nil { - return - } - sig.IssuerKeyId = binary.BigEndian.Uint64(buf[:]) - - // Public-key and hash algorithm - if _, err = readFull(r, buf[:2]); err != nil { - return - } - sig.PubKeyAlgo = PublicKeyAlgorithm(buf[0]) - switch sig.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly, PubKeyAlgoDSA: - default: - err = errors.UnsupportedError("public key algorithm " + strconv.Itoa(int(sig.PubKeyAlgo))) - return - } - var ok bool - if sig.Hash, ok = s2k.HashIdToHash(buf[1]); !ok { - return errors.UnsupportedError("hash function " + strconv.Itoa(int(buf[2]))) - } - - // Two-octet field holding left 16 bits of signed hash value. - if _, err = readFull(r, sig.HashTag[:2]); err != nil { - return - } - - switch sig.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly: - sig.RSASignature.bytes, sig.RSASignature.bitLength, err = readMPI(r) - case PubKeyAlgoDSA: - if sig.DSASigR.bytes, sig.DSASigR.bitLength, err = readMPI(r); err != nil { - return - } - sig.DSASigS.bytes, sig.DSASigS.bitLength, err = readMPI(r) - default: - panic("unreachable") - } - return -} - -// Serialize marshals sig to w. Sign, SignUserId or SignKey must have been -// called first. -func (sig *SignatureV3) Serialize(w io.Writer) (err error) { - buf := make([]byte, 8) - - // Write the sig type and creation time - buf[0] = byte(sig.SigType) - binary.BigEndian.PutUint32(buf[1:5], uint32(sig.CreationTime.Unix())) - if _, err = w.Write(buf[:5]); err != nil { - return - } - - // Write the issuer long key ID - binary.BigEndian.PutUint64(buf[:8], sig.IssuerKeyId) - if _, err = w.Write(buf[:8]); err != nil { - return - } - - // Write public key algorithm, hash ID, and hash value - buf[0] = byte(sig.PubKeyAlgo) - hashId, ok := s2k.HashToHashId(sig.Hash) - if !ok { - return errors.UnsupportedError(fmt.Sprintf("hash function %v", sig.Hash)) - } - buf[1] = hashId - copy(buf[2:4], sig.HashTag[:]) - if _, err = w.Write(buf[:4]); err != nil { - return - } - - if sig.RSASignature.bytes == nil && sig.DSASigR.bytes == nil { - return errors.InvalidArgumentError("Signature: need to call Sign, SignUserId or SignKey before Serialize") - } - - switch sig.PubKeyAlgo { - case PubKeyAlgoRSA, PubKeyAlgoRSASignOnly: - err = writeMPIs(w, sig.RSASignature) - case PubKeyAlgoDSA: - err = writeMPIs(w, sig.DSASigR, sig.DSASigS) - default: - panic("impossible") - } - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/symmetric_key_encrypted.go b/vendor/golang.org/x/crypto/openpgp/packet/symmetric_key_encrypted.go deleted file mode 100644 index 744c2d2..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/symmetric_key_encrypted.go +++ /dev/null @@ -1,155 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "bytes" - "crypto/cipher" - "io" - "strconv" - - "golang.org/x/crypto/openpgp/errors" - "golang.org/x/crypto/openpgp/s2k" -) - -// This is the largest session key that we'll support. Since no 512-bit cipher -// has even been seriously used, this is comfortably large. -const maxSessionKeySizeInBytes = 64 - -// SymmetricKeyEncrypted represents a passphrase protected session key. See RFC -// 4880, section 5.3. -type SymmetricKeyEncrypted struct { - CipherFunc CipherFunction - s2k func(out, in []byte) - encryptedKey []byte -} - -const symmetricKeyEncryptedVersion = 4 - -func (ske *SymmetricKeyEncrypted) parse(r io.Reader) error { - // RFC 4880, section 5.3. - var buf [2]byte - if _, err := readFull(r, buf[:]); err != nil { - return err - } - if buf[0] != symmetricKeyEncryptedVersion { - return errors.UnsupportedError("SymmetricKeyEncrypted version") - } - ske.CipherFunc = CipherFunction(buf[1]) - - if ske.CipherFunc.KeySize() == 0 { - return errors.UnsupportedError("unknown cipher: " + strconv.Itoa(int(buf[1]))) - } - - var err error - ske.s2k, err = s2k.Parse(r) - if err != nil { - return err - } - - encryptedKey := make([]byte, maxSessionKeySizeInBytes) - // The session key may follow. We just have to try and read to find - // out. If it exists then we limit it to maxSessionKeySizeInBytes. - n, err := readFull(r, encryptedKey) - if err != nil && err != io.ErrUnexpectedEOF { - return err - } - - if n != 0 { - if n == maxSessionKeySizeInBytes { - return errors.UnsupportedError("oversized encrypted session key") - } - ske.encryptedKey = encryptedKey[:n] - } - - return nil -} - -// Decrypt attempts to decrypt an encrypted session key and returns the key and -// the cipher to use when decrypting a subsequent Symmetrically Encrypted Data -// packet. -func (ske *SymmetricKeyEncrypted) Decrypt(passphrase []byte) ([]byte, CipherFunction, error) { - key := make([]byte, ske.CipherFunc.KeySize()) - ske.s2k(key, passphrase) - - if len(ske.encryptedKey) == 0 { - return key, ske.CipherFunc, nil - } - - // the IV is all zeros - iv := make([]byte, ske.CipherFunc.blockSize()) - c := cipher.NewCFBDecrypter(ske.CipherFunc.new(key), iv) - plaintextKey := make([]byte, len(ske.encryptedKey)) - c.XORKeyStream(plaintextKey, ske.encryptedKey) - cipherFunc := CipherFunction(plaintextKey[0]) - if cipherFunc.blockSize() == 0 { - return nil, ske.CipherFunc, errors.UnsupportedError("unknown cipher: " + strconv.Itoa(int(cipherFunc))) - } - plaintextKey = plaintextKey[1:] - if l, cipherKeySize := len(plaintextKey), cipherFunc.KeySize(); l != cipherFunc.KeySize() { - return nil, cipherFunc, errors.StructuralError("length of decrypted key (" + strconv.Itoa(l) + ") " + - "not equal to cipher keysize (" + strconv.Itoa(cipherKeySize) + ")") - } - return plaintextKey, cipherFunc, nil -} - -// SerializeSymmetricKeyEncrypted serializes a symmetric key packet to w. The -// packet contains a random session key, encrypted by a key derived from the -// given passphrase. The session key is returned and must be passed to -// SerializeSymmetricallyEncrypted. -// If config is nil, sensible defaults will be used. -func SerializeSymmetricKeyEncrypted(w io.Writer, passphrase []byte, config *Config) (key []byte, err error) { - cipherFunc := config.Cipher() - keySize := cipherFunc.KeySize() - if keySize == 0 { - return nil, errors.UnsupportedError("unknown cipher: " + strconv.Itoa(int(cipherFunc))) - } - - s2kBuf := new(bytes.Buffer) - keyEncryptingKey := make([]byte, keySize) - // s2k.Serialize salts and stretches the passphrase, and writes the - // resulting key to keyEncryptingKey and the s2k descriptor to s2kBuf. - err = s2k.Serialize(s2kBuf, keyEncryptingKey, config.Random(), passphrase, &s2k.Config{Hash: config.Hash(), S2KCount: config.PasswordHashIterations()}) - if err != nil { - return - } - s2kBytes := s2kBuf.Bytes() - - packetLength := 2 /* header */ + len(s2kBytes) + 1 /* cipher type */ + keySize - err = serializeHeader(w, packetTypeSymmetricKeyEncrypted, packetLength) - if err != nil { - return - } - - var buf [2]byte - buf[0] = symmetricKeyEncryptedVersion - buf[1] = byte(cipherFunc) - _, err = w.Write(buf[:]) - if err != nil { - return - } - _, err = w.Write(s2kBytes) - if err != nil { - return - } - - sessionKey := make([]byte, keySize) - _, err = io.ReadFull(config.Random(), sessionKey) - if err != nil { - return - } - iv := make([]byte, cipherFunc.blockSize()) - c := cipher.NewCFBEncrypter(cipherFunc.new(keyEncryptingKey), iv) - encryptedCipherAndKey := make([]byte, keySize+1) - c.XORKeyStream(encryptedCipherAndKey, buf[1:]) - c.XORKeyStream(encryptedCipherAndKey[1:], sessionKey) - _, err = w.Write(encryptedCipherAndKey) - if err != nil { - return - } - - key = sessionKey - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/symmetrically_encrypted.go b/vendor/golang.org/x/crypto/openpgp/packet/symmetrically_encrypted.go deleted file mode 100644 index 6126030..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/symmetrically_encrypted.go +++ /dev/null @@ -1,290 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "crypto/cipher" - "crypto/sha1" - "crypto/subtle" - "golang.org/x/crypto/openpgp/errors" - "hash" - "io" - "strconv" -) - -// SymmetricallyEncrypted represents a symmetrically encrypted byte string. The -// encrypted contents will consist of more OpenPGP packets. See RFC 4880, -// sections 5.7 and 5.13. -type SymmetricallyEncrypted struct { - MDC bool // true iff this is a type 18 packet and thus has an embedded MAC. - contents io.Reader - prefix []byte -} - -const symmetricallyEncryptedVersion = 1 - -func (se *SymmetricallyEncrypted) parse(r io.Reader) error { - if se.MDC { - // See RFC 4880, section 5.13. - var buf [1]byte - _, err := readFull(r, buf[:]) - if err != nil { - return err - } - if buf[0] != symmetricallyEncryptedVersion { - return errors.UnsupportedError("unknown SymmetricallyEncrypted version") - } - } - se.contents = r - return nil -} - -// Decrypt returns a ReadCloser, from which the decrypted contents of the -// packet can be read. An incorrect key can, with high probability, be detected -// immediately and this will result in a KeyIncorrect error being returned. -func (se *SymmetricallyEncrypted) Decrypt(c CipherFunction, key []byte) (io.ReadCloser, error) { - keySize := c.KeySize() - if keySize == 0 { - return nil, errors.UnsupportedError("unknown cipher: " + strconv.Itoa(int(c))) - } - if len(key) != keySize { - return nil, errors.InvalidArgumentError("SymmetricallyEncrypted: incorrect key length") - } - - if se.prefix == nil { - se.prefix = make([]byte, c.blockSize()+2) - _, err := readFull(se.contents, se.prefix) - if err != nil { - return nil, err - } - } else if len(se.prefix) != c.blockSize()+2 { - return nil, errors.InvalidArgumentError("can't try ciphers with different block lengths") - } - - ocfbResync := OCFBResync - if se.MDC { - // MDC packets use a different form of OCFB mode. - ocfbResync = OCFBNoResync - } - - s := NewOCFBDecrypter(c.new(key), se.prefix, ocfbResync) - if s == nil { - return nil, errors.ErrKeyIncorrect - } - - plaintext := cipher.StreamReader{S: s, R: se.contents} - - if se.MDC { - // MDC packets have an embedded hash that we need to check. - h := sha1.New() - h.Write(se.prefix) - return &seMDCReader{in: plaintext, h: h}, nil - } - - // Otherwise, we just need to wrap plaintext so that it's a valid ReadCloser. - return seReader{plaintext}, nil -} - -// seReader wraps an io.Reader with a no-op Close method. -type seReader struct { - in io.Reader -} - -func (ser seReader) Read(buf []byte) (int, error) { - return ser.in.Read(buf) -} - -func (ser seReader) Close() error { - return nil -} - -const mdcTrailerSize = 1 /* tag byte */ + 1 /* length byte */ + sha1.Size - -// An seMDCReader wraps an io.Reader, maintains a running hash and keeps hold -// of the most recent 22 bytes (mdcTrailerSize). Upon EOF, those bytes form an -// MDC packet containing a hash of the previous contents which is checked -// against the running hash. See RFC 4880, section 5.13. -type seMDCReader struct { - in io.Reader - h hash.Hash - trailer [mdcTrailerSize]byte - scratch [mdcTrailerSize]byte - trailerUsed int - error bool - eof bool -} - -func (ser *seMDCReader) Read(buf []byte) (n int, err error) { - if ser.error { - err = io.ErrUnexpectedEOF - return - } - if ser.eof { - err = io.EOF - return - } - - // If we haven't yet filled the trailer buffer then we must do that - // first. - for ser.trailerUsed < mdcTrailerSize { - n, err = ser.in.Read(ser.trailer[ser.trailerUsed:]) - ser.trailerUsed += n - if err == io.EOF { - if ser.trailerUsed != mdcTrailerSize { - n = 0 - err = io.ErrUnexpectedEOF - ser.error = true - return - } - ser.eof = true - n = 0 - return - } - - if err != nil { - n = 0 - return - } - } - - // If it's a short read then we read into a temporary buffer and shift - // the data into the caller's buffer. - if len(buf) <= mdcTrailerSize { - n, err = readFull(ser.in, ser.scratch[:len(buf)]) - copy(buf, ser.trailer[:n]) - ser.h.Write(buf[:n]) - copy(ser.trailer[:], ser.trailer[n:]) - copy(ser.trailer[mdcTrailerSize-n:], ser.scratch[:]) - if n < len(buf) { - ser.eof = true - err = io.EOF - } - return - } - - n, err = ser.in.Read(buf[mdcTrailerSize:]) - copy(buf, ser.trailer[:]) - ser.h.Write(buf[:n]) - copy(ser.trailer[:], buf[n:]) - - if err == io.EOF { - ser.eof = true - } - return -} - -// This is a new-format packet tag byte for a type 19 (MDC) packet. -const mdcPacketTagByte = byte(0x80) | 0x40 | 19 - -func (ser *seMDCReader) Close() error { - if ser.error { - return errors.SignatureError("error during reading") - } - - for !ser.eof { - // We haven't seen EOF so we need to read to the end - var buf [1024]byte - _, err := ser.Read(buf[:]) - if err == io.EOF { - break - } - if err != nil { - return errors.SignatureError("error during reading") - } - } - - if ser.trailer[0] != mdcPacketTagByte || ser.trailer[1] != sha1.Size { - return errors.SignatureError("MDC packet not found") - } - ser.h.Write(ser.trailer[:2]) - - final := ser.h.Sum(nil) - if subtle.ConstantTimeCompare(final, ser.trailer[2:]) != 1 { - return errors.SignatureError("hash mismatch") - } - return nil -} - -// An seMDCWriter writes through to an io.WriteCloser while maintains a running -// hash of the data written. On close, it emits an MDC packet containing the -// running hash. -type seMDCWriter struct { - w io.WriteCloser - h hash.Hash -} - -func (w *seMDCWriter) Write(buf []byte) (n int, err error) { - w.h.Write(buf) - return w.w.Write(buf) -} - -func (w *seMDCWriter) Close() (err error) { - var buf [mdcTrailerSize]byte - - buf[0] = mdcPacketTagByte - buf[1] = sha1.Size - w.h.Write(buf[:2]) - digest := w.h.Sum(nil) - copy(buf[2:], digest) - - _, err = w.w.Write(buf[:]) - if err != nil { - return - } - return w.w.Close() -} - -// noOpCloser is like an ioutil.NopCloser, but for an io.Writer. -type noOpCloser struct { - w io.Writer -} - -func (c noOpCloser) Write(data []byte) (n int, err error) { - return c.w.Write(data) -} - -func (c noOpCloser) Close() error { - return nil -} - -// SerializeSymmetricallyEncrypted serializes a symmetrically encrypted packet -// to w and returns a WriteCloser to which the to-be-encrypted packets can be -// written. -// If config is nil, sensible defaults will be used. -func SerializeSymmetricallyEncrypted(w io.Writer, c CipherFunction, key []byte, config *Config) (contents io.WriteCloser, err error) { - if c.KeySize() != len(key) { - return nil, errors.InvalidArgumentError("SymmetricallyEncrypted.Serialize: bad key length") - } - writeCloser := noOpCloser{w} - ciphertext, err := serializeStreamHeader(writeCloser, packetTypeSymmetricallyEncryptedMDC) - if err != nil { - return - } - - _, err = ciphertext.Write([]byte{symmetricallyEncryptedVersion}) - if err != nil { - return - } - - block := c.new(key) - blockSize := block.BlockSize() - iv := make([]byte, blockSize) - _, err = config.Random().Read(iv) - if err != nil { - return - } - s, prefix := NewOCFBEncrypter(block, iv, OCFBNoResync) - _, err = ciphertext.Write(prefix) - if err != nil { - return - } - plaintext := cipher.StreamWriter{S: s, W: ciphertext} - - h := sha1.New() - h.Write(iv) - h.Write(iv[blockSize-2:]) - contents = &seMDCWriter{w: plaintext, h: h} - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/userattribute.go b/vendor/golang.org/x/crypto/openpgp/packet/userattribute.go deleted file mode 100644 index 96a2b38..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/userattribute.go +++ /dev/null @@ -1,91 +0,0 @@ -// Copyright 2013 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "bytes" - "image" - "image/jpeg" - "io" - "io/ioutil" -) - -const UserAttrImageSubpacket = 1 - -// UserAttribute is capable of storing other types of data about a user -// beyond name, email and a text comment. In practice, user attributes are typically used -// to store a signed thumbnail photo JPEG image of the user. -// See RFC 4880, section 5.12. -type UserAttribute struct { - Contents []*OpaqueSubpacket -} - -// NewUserAttributePhoto creates a user attribute packet -// containing the given images. -func NewUserAttributePhoto(photos ...image.Image) (uat *UserAttribute, err error) { - uat = new(UserAttribute) - for _, photo := range photos { - var buf bytes.Buffer - // RFC 4880, Section 5.12.1. - data := []byte{ - 0x10, 0x00, // Little-endian image header length (16 bytes) - 0x01, // Image header version 1 - 0x01, // JPEG - 0, 0, 0, 0, // 12 reserved octets, must be all zero. - 0, 0, 0, 0, - 0, 0, 0, 0} - if _, err = buf.Write(data); err != nil { - return - } - if err = jpeg.Encode(&buf, photo, nil); err != nil { - return - } - uat.Contents = append(uat.Contents, &OpaqueSubpacket{ - SubType: UserAttrImageSubpacket, - Contents: buf.Bytes()}) - } - return -} - -// NewUserAttribute creates a new user attribute packet containing the given subpackets. -func NewUserAttribute(contents ...*OpaqueSubpacket) *UserAttribute { - return &UserAttribute{Contents: contents} -} - -func (uat *UserAttribute) parse(r io.Reader) (err error) { - // RFC 4880, section 5.13 - b, err := ioutil.ReadAll(r) - if err != nil { - return - } - uat.Contents, err = OpaqueSubpackets(b) - return -} - -// Serialize marshals the user attribute to w in the form of an OpenPGP packet, including -// header. -func (uat *UserAttribute) Serialize(w io.Writer) (err error) { - var buf bytes.Buffer - for _, sp := range uat.Contents { - sp.Serialize(&buf) - } - if err = serializeHeader(w, packetTypeUserAttribute, buf.Len()); err != nil { - return err - } - _, err = w.Write(buf.Bytes()) - return -} - -// ImageData returns zero or more byte slices, each containing -// JPEG File Interchange Format (JFIF), for each photo in the -// the user attribute packet. -func (uat *UserAttribute) ImageData() (imageData [][]byte) { - for _, sp := range uat.Contents { - if sp.SubType == UserAttrImageSubpacket && len(sp.Contents) > 16 { - imageData = append(imageData, sp.Contents[16:]) - } - } - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/packet/userid.go b/vendor/golang.org/x/crypto/openpgp/packet/userid.go deleted file mode 100644 index d6bea7d..0000000 --- a/vendor/golang.org/x/crypto/openpgp/packet/userid.go +++ /dev/null @@ -1,160 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package packet - -import ( - "io" - "io/ioutil" - "strings" -) - -// UserId contains text that is intended to represent the name and email -// address of the key holder. See RFC 4880, section 5.11. By convention, this -// takes the form "Full Name (Comment) " -type UserId struct { - Id string // By convention, this takes the form "Full Name (Comment) " which is split out in the fields below. - - Name, Comment, Email string -} - -func hasInvalidCharacters(s string) bool { - for _, c := range s { - switch c { - case '(', ')', '<', '>', 0: - return true - } - } - return false -} - -// NewUserId returns a UserId or nil if any of the arguments contain invalid -// characters. The invalid characters are '\x00', '(', ')', '<' and '>' -func NewUserId(name, comment, email string) *UserId { - // RFC 4880 doesn't deal with the structure of userid strings; the - // name, comment and email form is just a convention. However, there's - // no convention about escaping the metacharacters and GPG just refuses - // to create user ids where, say, the name contains a '('. We mirror - // this behaviour. - - if hasInvalidCharacters(name) || hasInvalidCharacters(comment) || hasInvalidCharacters(email) { - return nil - } - - uid := new(UserId) - uid.Name, uid.Comment, uid.Email = name, comment, email - uid.Id = name - if len(comment) > 0 { - if len(uid.Id) > 0 { - uid.Id += " " - } - uid.Id += "(" - uid.Id += comment - uid.Id += ")" - } - if len(email) > 0 { - if len(uid.Id) > 0 { - uid.Id += " " - } - uid.Id += "<" - uid.Id += email - uid.Id += ">" - } - return uid -} - -func (uid *UserId) parse(r io.Reader) (err error) { - // RFC 4880, section 5.11 - b, err := ioutil.ReadAll(r) - if err != nil { - return - } - uid.Id = string(b) - uid.Name, uid.Comment, uid.Email = parseUserId(uid.Id) - return -} - -// Serialize marshals uid to w in the form of an OpenPGP packet, including -// header. -func (uid *UserId) Serialize(w io.Writer) error { - err := serializeHeader(w, packetTypeUserId, len(uid.Id)) - if err != nil { - return err - } - _, err = w.Write([]byte(uid.Id)) - return err -} - -// parseUserId extracts the name, comment and email from a user id string that -// is formatted as "Full Name (Comment) ". -func parseUserId(id string) (name, comment, email string) { - var n, c, e struct { - start, end int - } - var state int - - for offset, rune := range id { - switch state { - case 0: - // Entering name - n.start = offset - state = 1 - fallthrough - case 1: - // In name - if rune == '(' { - state = 2 - n.end = offset - } else if rune == '<' { - state = 5 - n.end = offset - } - case 2: - // Entering comment - c.start = offset - state = 3 - fallthrough - case 3: - // In comment - if rune == ')' { - state = 4 - c.end = offset - } - case 4: - // Between comment and email - if rune == '<' { - state = 5 - } - case 5: - // Entering email - e.start = offset - state = 6 - fallthrough - case 6: - // In email - if rune == '>' { - state = 7 - e.end = offset - } - default: - // After email - } - } - switch state { - case 1: - // ended in the name - n.end = len(id) - case 3: - // ended in comment - c.end = len(id) - case 6: - // ended in email - e.end = len(id) - } - - name = strings.TrimSpace(id[n.start:n.end]) - comment = strings.TrimSpace(id[c.start:c.end]) - email = strings.TrimSpace(id[e.start:e.end]) - return -} diff --git a/vendor/golang.org/x/crypto/openpgp/read.go b/vendor/golang.org/x/crypto/openpgp/read.go deleted file mode 100644 index 6ec664f..0000000 --- a/vendor/golang.org/x/crypto/openpgp/read.go +++ /dev/null @@ -1,442 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package openpgp implements high level operations on OpenPGP messages. -package openpgp // import "golang.org/x/crypto/openpgp" - -import ( - "crypto" - _ "crypto/sha256" - "hash" - "io" - "strconv" - - "golang.org/x/crypto/openpgp/armor" - "golang.org/x/crypto/openpgp/errors" - "golang.org/x/crypto/openpgp/packet" -) - -// SignatureType is the armor type for a PGP signature. -var SignatureType = "PGP SIGNATURE" - -// readArmored reads an armored block with the given type. -func readArmored(r io.Reader, expectedType string) (body io.Reader, err error) { - block, err := armor.Decode(r) - if err != nil { - return - } - - if block.Type != expectedType { - return nil, errors.InvalidArgumentError("expected '" + expectedType + "', got: " + block.Type) - } - - return block.Body, nil -} - -// MessageDetails contains the result of parsing an OpenPGP encrypted and/or -// signed message. -type MessageDetails struct { - IsEncrypted bool // true if the message was encrypted. - EncryptedToKeyIds []uint64 // the list of recipient key ids. - IsSymmetricallyEncrypted bool // true if a passphrase could have decrypted the message. - DecryptedWith Key // the private key used to decrypt the message, if any. - IsSigned bool // true if the message is signed. - SignedByKeyId uint64 // the key id of the signer, if any. - SignedBy *Key // the key of the signer, if available. - LiteralData *packet.LiteralData // the metadata of the contents - UnverifiedBody io.Reader // the contents of the message. - - // If IsSigned is true and SignedBy is non-zero then the signature will - // be verified as UnverifiedBody is read. The signature cannot be - // checked until the whole of UnverifiedBody is read so UnverifiedBody - // must be consumed until EOF before the data can be trusted. Even if a - // message isn't signed (or the signer is unknown) the data may contain - // an authentication code that is only checked once UnverifiedBody has - // been consumed. Once EOF has been seen, the following fields are - // valid. (An authentication code failure is reported as a - // SignatureError error when reading from UnverifiedBody.) - SignatureError error // nil if the signature is good. - Signature *packet.Signature // the signature packet itself, if v4 (default) - SignatureV3 *packet.SignatureV3 // the signature packet if it is a v2 or v3 signature - - decrypted io.ReadCloser -} - -// A PromptFunction is used as a callback by functions that may need to decrypt -// a private key, or prompt for a passphrase. It is called with a list of -// acceptable, encrypted private keys and a boolean that indicates whether a -// passphrase is usable. It should either decrypt a private key or return a -// passphrase to try. If the decrypted private key or given passphrase isn't -// correct, the function will be called again, forever. Any error returned will -// be passed up. -type PromptFunction func(keys []Key, symmetric bool) ([]byte, error) - -// A keyEnvelopePair is used to store a private key with the envelope that -// contains a symmetric key, encrypted with that key. -type keyEnvelopePair struct { - key Key - encryptedKey *packet.EncryptedKey -} - -// ReadMessage parses an OpenPGP message that may be signed and/or encrypted. -// The given KeyRing should contain both public keys (for signature -// verification) and, possibly encrypted, private keys for decrypting. -// If config is nil, sensible defaults will be used. -func ReadMessage(r io.Reader, keyring KeyRing, prompt PromptFunction, config *packet.Config) (md *MessageDetails, err error) { - var p packet.Packet - - var symKeys []*packet.SymmetricKeyEncrypted - var pubKeys []keyEnvelopePair - var se *packet.SymmetricallyEncrypted - - packets := packet.NewReader(r) - md = new(MessageDetails) - md.IsEncrypted = true - - // The message, if encrypted, starts with a number of packets - // containing an encrypted decryption key. The decryption key is either - // encrypted to a public key, or with a passphrase. This loop - // collects these packets. -ParsePackets: - for { - p, err = packets.Next() - if err != nil { - return nil, err - } - switch p := p.(type) { - case *packet.SymmetricKeyEncrypted: - // This packet contains the decryption key encrypted with a passphrase. - md.IsSymmetricallyEncrypted = true - symKeys = append(symKeys, p) - case *packet.EncryptedKey: - // This packet contains the decryption key encrypted to a public key. - md.EncryptedToKeyIds = append(md.EncryptedToKeyIds, p.KeyId) - switch p.Algo { - case packet.PubKeyAlgoRSA, packet.PubKeyAlgoRSAEncryptOnly, packet.PubKeyAlgoElGamal: - break - default: - continue - } - var keys []Key - if p.KeyId == 0 { - keys = keyring.DecryptionKeys() - } else { - keys = keyring.KeysById(p.KeyId) - } - for _, k := range keys { - pubKeys = append(pubKeys, keyEnvelopePair{k, p}) - } - case *packet.SymmetricallyEncrypted: - se = p - break ParsePackets - case *packet.Compressed, *packet.LiteralData, *packet.OnePassSignature: - // This message isn't encrypted. - if len(symKeys) != 0 || len(pubKeys) != 0 { - return nil, errors.StructuralError("key material not followed by encrypted message") - } - packets.Unread(p) - return readSignedMessage(packets, nil, keyring) - } - } - - var candidates []Key - var decrypted io.ReadCloser - - // Now that we have the list of encrypted keys we need to decrypt at - // least one of them or, if we cannot, we need to call the prompt - // function so that it can decrypt a key or give us a passphrase. -FindKey: - for { - // See if any of the keys already have a private key available - candidates = candidates[:0] - candidateFingerprints := make(map[string]bool) - - for _, pk := range pubKeys { - if pk.key.PrivateKey == nil { - continue - } - if !pk.key.PrivateKey.Encrypted { - if len(pk.encryptedKey.Key) == 0 { - pk.encryptedKey.Decrypt(pk.key.PrivateKey, config) - } - if len(pk.encryptedKey.Key) == 0 { - continue - } - decrypted, err = se.Decrypt(pk.encryptedKey.CipherFunc, pk.encryptedKey.Key) - if err != nil && err != errors.ErrKeyIncorrect { - return nil, err - } - if decrypted != nil { - md.DecryptedWith = pk.key - break FindKey - } - } else { - fpr := string(pk.key.PublicKey.Fingerprint[:]) - if v := candidateFingerprints[fpr]; v { - continue - } - candidates = append(candidates, pk.key) - candidateFingerprints[fpr] = true - } - } - - if len(candidates) == 0 && len(symKeys) == 0 { - return nil, errors.ErrKeyIncorrect - } - - if prompt == nil { - return nil, errors.ErrKeyIncorrect - } - - passphrase, err := prompt(candidates, len(symKeys) != 0) - if err != nil { - return nil, err - } - - // Try the symmetric passphrase first - if len(symKeys) != 0 && passphrase != nil { - for _, s := range symKeys { - key, cipherFunc, err := s.Decrypt(passphrase) - if err == nil { - decrypted, err = se.Decrypt(cipherFunc, key) - if err != nil && err != errors.ErrKeyIncorrect { - return nil, err - } - if decrypted != nil { - break FindKey - } - } - - } - } - } - - md.decrypted = decrypted - if err := packets.Push(decrypted); err != nil { - return nil, err - } - return readSignedMessage(packets, md, keyring) -} - -// readSignedMessage reads a possibly signed message if mdin is non-zero then -// that structure is updated and returned. Otherwise a fresh MessageDetails is -// used. -func readSignedMessage(packets *packet.Reader, mdin *MessageDetails, keyring KeyRing) (md *MessageDetails, err error) { - if mdin == nil { - mdin = new(MessageDetails) - } - md = mdin - - var p packet.Packet - var h hash.Hash - var wrappedHash hash.Hash -FindLiteralData: - for { - p, err = packets.Next() - if err != nil { - return nil, err - } - switch p := p.(type) { - case *packet.Compressed: - if err := packets.Push(p.Body); err != nil { - return nil, err - } - case *packet.OnePassSignature: - if !p.IsLast { - return nil, errors.UnsupportedError("nested signatures") - } - - h, wrappedHash, err = hashForSignature(p.Hash, p.SigType) - if err != nil { - md = nil - return - } - - md.IsSigned = true - md.SignedByKeyId = p.KeyId - keys := keyring.KeysByIdUsage(p.KeyId, packet.KeyFlagSign) - if len(keys) > 0 { - md.SignedBy = &keys[0] - } - case *packet.LiteralData: - md.LiteralData = p - break FindLiteralData - } - } - - if md.SignedBy != nil { - md.UnverifiedBody = &signatureCheckReader{packets, h, wrappedHash, md} - } else if md.decrypted != nil { - md.UnverifiedBody = checkReader{md} - } else { - md.UnverifiedBody = md.LiteralData.Body - } - - return md, nil -} - -// hashForSignature returns a pair of hashes that can be used to verify a -// signature. The signature may specify that the contents of the signed message -// should be preprocessed (i.e. to normalize line endings). Thus this function -// returns two hashes. The second should be used to hash the message itself and -// performs any needed preprocessing. -func hashForSignature(hashId crypto.Hash, sigType packet.SignatureType) (hash.Hash, hash.Hash, error) { - if !hashId.Available() { - return nil, nil, errors.UnsupportedError("hash not available: " + strconv.Itoa(int(hashId))) - } - h := hashId.New() - - switch sigType { - case packet.SigTypeBinary: - return h, h, nil - case packet.SigTypeText: - return h, NewCanonicalTextHash(h), nil - } - - return nil, nil, errors.UnsupportedError("unsupported signature type: " + strconv.Itoa(int(sigType))) -} - -// checkReader wraps an io.Reader from a LiteralData packet. When it sees EOF -// it closes the ReadCloser from any SymmetricallyEncrypted packet to trigger -// MDC checks. -type checkReader struct { - md *MessageDetails -} - -func (cr checkReader) Read(buf []byte) (n int, err error) { - n, err = cr.md.LiteralData.Body.Read(buf) - if err == io.EOF { - mdcErr := cr.md.decrypted.Close() - if mdcErr != nil { - err = mdcErr - } - } - return -} - -// signatureCheckReader wraps an io.Reader from a LiteralData packet and hashes -// the data as it is read. When it sees an EOF from the underlying io.Reader -// it parses and checks a trailing Signature packet and triggers any MDC checks. -type signatureCheckReader struct { - packets *packet.Reader - h, wrappedHash hash.Hash - md *MessageDetails -} - -func (scr *signatureCheckReader) Read(buf []byte) (n int, err error) { - n, err = scr.md.LiteralData.Body.Read(buf) - scr.wrappedHash.Write(buf[:n]) - if err == io.EOF { - var p packet.Packet - p, scr.md.SignatureError = scr.packets.Next() - if scr.md.SignatureError != nil { - return - } - - var ok bool - if scr.md.Signature, ok = p.(*packet.Signature); ok { - scr.md.SignatureError = scr.md.SignedBy.PublicKey.VerifySignature(scr.h, scr.md.Signature) - } else if scr.md.SignatureV3, ok = p.(*packet.SignatureV3); ok { - scr.md.SignatureError = scr.md.SignedBy.PublicKey.VerifySignatureV3(scr.h, scr.md.SignatureV3) - } else { - scr.md.SignatureError = errors.StructuralError("LiteralData not followed by Signature") - return - } - - // The SymmetricallyEncrypted packet, if any, might have an - // unsigned hash of its own. In order to check this we need to - // close that Reader. - if scr.md.decrypted != nil { - mdcErr := scr.md.decrypted.Close() - if mdcErr != nil { - err = mdcErr - } - } - } - return -} - -// CheckDetachedSignature takes a signed file and a detached signature and -// returns the signer if the signature is valid. If the signer isn't known, -// ErrUnknownIssuer is returned. -func CheckDetachedSignature(keyring KeyRing, signed, signature io.Reader) (signer *Entity, err error) { - var issuerKeyId uint64 - var hashFunc crypto.Hash - var sigType packet.SignatureType - var keys []Key - var p packet.Packet - - packets := packet.NewReader(signature) - for { - p, err = packets.Next() - if err == io.EOF { - return nil, errors.ErrUnknownIssuer - } - if err != nil { - return nil, err - } - - switch sig := p.(type) { - case *packet.Signature: - if sig.IssuerKeyId == nil { - return nil, errors.StructuralError("signature doesn't have an issuer") - } - issuerKeyId = *sig.IssuerKeyId - hashFunc = sig.Hash - sigType = sig.SigType - case *packet.SignatureV3: - issuerKeyId = sig.IssuerKeyId - hashFunc = sig.Hash - sigType = sig.SigType - default: - return nil, errors.StructuralError("non signature packet found") - } - - keys = keyring.KeysByIdUsage(issuerKeyId, packet.KeyFlagSign) - if len(keys) > 0 { - break - } - } - - if len(keys) == 0 { - panic("unreachable") - } - - h, wrappedHash, err := hashForSignature(hashFunc, sigType) - if err != nil { - return nil, err - } - - if _, err := io.Copy(wrappedHash, signed); err != nil && err != io.EOF { - return nil, err - } - - for _, key := range keys { - switch sig := p.(type) { - case *packet.Signature: - err = key.PublicKey.VerifySignature(h, sig) - case *packet.SignatureV3: - err = key.PublicKey.VerifySignatureV3(h, sig) - default: - panic("unreachable") - } - - if err == nil { - return key.Entity, nil - } - } - - return nil, err -} - -// CheckArmoredDetachedSignature performs the same actions as -// CheckDetachedSignature but expects the signature to be armored. -func CheckArmoredDetachedSignature(keyring KeyRing, signed, signature io.Reader) (signer *Entity, err error) { - body, err := readArmored(signature, SignatureType) - if err != nil { - return - } - - return CheckDetachedSignature(keyring, signed, body) -} diff --git a/vendor/golang.org/x/crypto/openpgp/s2k/s2k.go b/vendor/golang.org/x/crypto/openpgp/s2k/s2k.go deleted file mode 100644 index 4b9a44c..0000000 --- a/vendor/golang.org/x/crypto/openpgp/s2k/s2k.go +++ /dev/null @@ -1,273 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package s2k implements the various OpenPGP string-to-key transforms as -// specified in RFC 4800 section 3.7.1. -package s2k // import "golang.org/x/crypto/openpgp/s2k" - -import ( - "crypto" - "hash" - "io" - "strconv" - - "golang.org/x/crypto/openpgp/errors" -) - -// Config collects configuration parameters for s2k key-stretching -// transformatioms. A nil *Config is valid and results in all default -// values. Currently, Config is used only by the Serialize function in -// this package. -type Config struct { - // Hash is the default hash function to be used. If - // nil, SHA1 is used. - Hash crypto.Hash - // S2KCount is only used for symmetric encryption. It - // determines the strength of the passphrase stretching when - // the said passphrase is hashed to produce a key. S2KCount - // should be between 1024 and 65011712, inclusive. If Config - // is nil or S2KCount is 0, the value 65536 used. Not all - // values in the above range can be represented. S2KCount will - // be rounded up to the next representable value if it cannot - // be encoded exactly. When set, it is strongly encrouraged to - // use a value that is at least 65536. See RFC 4880 Section - // 3.7.1.3. - S2KCount int -} - -func (c *Config) hash() crypto.Hash { - if c == nil || uint(c.Hash) == 0 { - // SHA1 is the historical default in this package. - return crypto.SHA1 - } - - return c.Hash -} - -func (c *Config) encodedCount() uint8 { - if c == nil || c.S2KCount == 0 { - return 96 // The common case. Correspoding to 65536 - } - - i := c.S2KCount - switch { - // Behave like GPG. Should we make 65536 the lowest value used? - case i < 1024: - i = 1024 - case i > 65011712: - i = 65011712 - } - - return encodeCount(i) -} - -// encodeCount converts an iterative "count" in the range 1024 to -// 65011712, inclusive, to an encoded count. The return value is the -// octet that is actually stored in the GPG file. encodeCount panics -// if i is not in the above range (encodedCount above takes care to -// pass i in the correct range). See RFC 4880 Section 3.7.7.1. -func encodeCount(i int) uint8 { - if i < 1024 || i > 65011712 { - panic("count arg i outside the required range") - } - - for encoded := 0; encoded < 256; encoded++ { - count := decodeCount(uint8(encoded)) - if count >= i { - return uint8(encoded) - } - } - - return 255 -} - -// decodeCount returns the s2k mode 3 iterative "count" corresponding to -// the encoded octet c. -func decodeCount(c uint8) int { - return (16 + int(c&15)) << (uint32(c>>4) + 6) -} - -// Simple writes to out the result of computing the Simple S2K function (RFC -// 4880, section 3.7.1.1) using the given hash and input passphrase. -func Simple(out []byte, h hash.Hash, in []byte) { - Salted(out, h, in, nil) -} - -var zero [1]byte - -// Salted writes to out the result of computing the Salted S2K function (RFC -// 4880, section 3.7.1.2) using the given hash, input passphrase and salt. -func Salted(out []byte, h hash.Hash, in []byte, salt []byte) { - done := 0 - var digest []byte - - for i := 0; done < len(out); i++ { - h.Reset() - for j := 0; j < i; j++ { - h.Write(zero[:]) - } - h.Write(salt) - h.Write(in) - digest = h.Sum(digest[:0]) - n := copy(out[done:], digest) - done += n - } -} - -// Iterated writes to out the result of computing the Iterated and Salted S2K -// function (RFC 4880, section 3.7.1.3) using the given hash, input passphrase, -// salt and iteration count. -func Iterated(out []byte, h hash.Hash, in []byte, salt []byte, count int) { - combined := make([]byte, len(in)+len(salt)) - copy(combined, salt) - copy(combined[len(salt):], in) - - if count < len(combined) { - count = len(combined) - } - - done := 0 - var digest []byte - for i := 0; done < len(out); i++ { - h.Reset() - for j := 0; j < i; j++ { - h.Write(zero[:]) - } - written := 0 - for written < count { - if written+len(combined) > count { - todo := count - written - h.Write(combined[:todo]) - written = count - } else { - h.Write(combined) - written += len(combined) - } - } - digest = h.Sum(digest[:0]) - n := copy(out[done:], digest) - done += n - } -} - -// Parse reads a binary specification for a string-to-key transformation from r -// and returns a function which performs that transform. -func Parse(r io.Reader) (f func(out, in []byte), err error) { - var buf [9]byte - - _, err = io.ReadFull(r, buf[:2]) - if err != nil { - return - } - - hash, ok := HashIdToHash(buf[1]) - if !ok { - return nil, errors.UnsupportedError("hash for S2K function: " + strconv.Itoa(int(buf[1]))) - } - if !hash.Available() { - return nil, errors.UnsupportedError("hash not available: " + strconv.Itoa(int(hash))) - } - h := hash.New() - - switch buf[0] { - case 0: - f := func(out, in []byte) { - Simple(out, h, in) - } - return f, nil - case 1: - _, err = io.ReadFull(r, buf[:8]) - if err != nil { - return - } - f := func(out, in []byte) { - Salted(out, h, in, buf[:8]) - } - return f, nil - case 3: - _, err = io.ReadFull(r, buf[:9]) - if err != nil { - return - } - count := decodeCount(buf[8]) - f := func(out, in []byte) { - Iterated(out, h, in, buf[:8], count) - } - return f, nil - } - - return nil, errors.UnsupportedError("S2K function") -} - -// Serialize salts and stretches the given passphrase and writes the -// resulting key into key. It also serializes an S2K descriptor to -// w. The key stretching can be configured with c, which may be -// nil. In that case, sensible defaults will be used. -func Serialize(w io.Writer, key []byte, rand io.Reader, passphrase []byte, c *Config) error { - var buf [11]byte - buf[0] = 3 /* iterated and salted */ - buf[1], _ = HashToHashId(c.hash()) - salt := buf[2:10] - if _, err := io.ReadFull(rand, salt); err != nil { - return err - } - encodedCount := c.encodedCount() - count := decodeCount(encodedCount) - buf[10] = encodedCount - if _, err := w.Write(buf[:]); err != nil { - return err - } - - Iterated(key, c.hash().New(), passphrase, salt, count) - return nil -} - -// hashToHashIdMapping contains pairs relating OpenPGP's hash identifier with -// Go's crypto.Hash type. See RFC 4880, section 9.4. -var hashToHashIdMapping = []struct { - id byte - hash crypto.Hash - name string -}{ - {1, crypto.MD5, "MD5"}, - {2, crypto.SHA1, "SHA1"}, - {3, crypto.RIPEMD160, "RIPEMD160"}, - {8, crypto.SHA256, "SHA256"}, - {9, crypto.SHA384, "SHA384"}, - {10, crypto.SHA512, "SHA512"}, - {11, crypto.SHA224, "SHA224"}, -} - -// HashIdToHash returns a crypto.Hash which corresponds to the given OpenPGP -// hash id. -func HashIdToHash(id byte) (h crypto.Hash, ok bool) { - for _, m := range hashToHashIdMapping { - if m.id == id { - return m.hash, true - } - } - return 0, false -} - -// HashIdToString returns the name of the hash function corresponding to the -// given OpenPGP hash id. -func HashIdToString(id byte) (name string, ok bool) { - for _, m := range hashToHashIdMapping { - if m.id == id { - return m.name, true - } - } - - return "", false -} - -// HashIdToHash returns an OpenPGP hash id which corresponds the given Hash. -func HashToHashId(h crypto.Hash) (id byte, ok bool) { - for _, m := range hashToHashIdMapping { - if m.hash == h { - return m.id, true - } - } - return 0, false -} diff --git a/vendor/golang.org/x/crypto/openpgp/write.go b/vendor/golang.org/x/crypto/openpgp/write.go deleted file mode 100644 index 65a304c..0000000 --- a/vendor/golang.org/x/crypto/openpgp/write.go +++ /dev/null @@ -1,378 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package openpgp - -import ( - "crypto" - "hash" - "io" - "strconv" - "time" - - "golang.org/x/crypto/openpgp/armor" - "golang.org/x/crypto/openpgp/errors" - "golang.org/x/crypto/openpgp/packet" - "golang.org/x/crypto/openpgp/s2k" -) - -// DetachSign signs message with the private key from signer (which must -// already have been decrypted) and writes the signature to w. -// If config is nil, sensible defaults will be used. -func DetachSign(w io.Writer, signer *Entity, message io.Reader, config *packet.Config) error { - return detachSign(w, signer, message, packet.SigTypeBinary, config) -} - -// ArmoredDetachSign signs message with the private key from signer (which -// must already have been decrypted) and writes an armored signature to w. -// If config is nil, sensible defaults will be used. -func ArmoredDetachSign(w io.Writer, signer *Entity, message io.Reader, config *packet.Config) (err error) { - return armoredDetachSign(w, signer, message, packet.SigTypeBinary, config) -} - -// DetachSignText signs message (after canonicalising the line endings) with -// the private key from signer (which must already have been decrypted) and -// writes the signature to w. -// If config is nil, sensible defaults will be used. -func DetachSignText(w io.Writer, signer *Entity, message io.Reader, config *packet.Config) error { - return detachSign(w, signer, message, packet.SigTypeText, config) -} - -// ArmoredDetachSignText signs message (after canonicalising the line endings) -// with the private key from signer (which must already have been decrypted) -// and writes an armored signature to w. -// If config is nil, sensible defaults will be used. -func ArmoredDetachSignText(w io.Writer, signer *Entity, message io.Reader, config *packet.Config) error { - return armoredDetachSign(w, signer, message, packet.SigTypeText, config) -} - -func armoredDetachSign(w io.Writer, signer *Entity, message io.Reader, sigType packet.SignatureType, config *packet.Config) (err error) { - out, err := armor.Encode(w, SignatureType, nil) - if err != nil { - return - } - err = detachSign(out, signer, message, sigType, config) - if err != nil { - return - } - return out.Close() -} - -func detachSign(w io.Writer, signer *Entity, message io.Reader, sigType packet.SignatureType, config *packet.Config) (err error) { - if signer.PrivateKey == nil { - return errors.InvalidArgumentError("signing key doesn't have a private key") - } - if signer.PrivateKey.Encrypted { - return errors.InvalidArgumentError("signing key is encrypted") - } - - sig := new(packet.Signature) - sig.SigType = sigType - sig.PubKeyAlgo = signer.PrivateKey.PubKeyAlgo - sig.Hash = config.Hash() - sig.CreationTime = config.Now() - sig.IssuerKeyId = &signer.PrivateKey.KeyId - - h, wrappedHash, err := hashForSignature(sig.Hash, sig.SigType) - if err != nil { - return - } - io.Copy(wrappedHash, message) - - err = sig.Sign(h, signer.PrivateKey, config) - if err != nil { - return - } - - return sig.Serialize(w) -} - -// FileHints contains metadata about encrypted files. This metadata is, itself, -// encrypted. -type FileHints struct { - // IsBinary can be set to hint that the contents are binary data. - IsBinary bool - // FileName hints at the name of the file that should be written. It's - // truncated to 255 bytes if longer. It may be empty to suggest that the - // file should not be written to disk. It may be equal to "_CONSOLE" to - // suggest the data should not be written to disk. - FileName string - // ModTime contains the modification time of the file, or the zero time if not applicable. - ModTime time.Time -} - -// SymmetricallyEncrypt acts like gpg -c: it encrypts a file with a passphrase. -// The resulting WriteCloser must be closed after the contents of the file have -// been written. -// If config is nil, sensible defaults will be used. -func SymmetricallyEncrypt(ciphertext io.Writer, passphrase []byte, hints *FileHints, config *packet.Config) (plaintext io.WriteCloser, err error) { - if hints == nil { - hints = &FileHints{} - } - - key, err := packet.SerializeSymmetricKeyEncrypted(ciphertext, passphrase, config) - if err != nil { - return - } - w, err := packet.SerializeSymmetricallyEncrypted(ciphertext, config.Cipher(), key, config) - if err != nil { - return - } - - literaldata := w - if algo := config.Compression(); algo != packet.CompressionNone { - var compConfig *packet.CompressionConfig - if config != nil { - compConfig = config.CompressionConfig - } - literaldata, err = packet.SerializeCompressed(w, algo, compConfig) - if err != nil { - return - } - } - - var epochSeconds uint32 - if !hints.ModTime.IsZero() { - epochSeconds = uint32(hints.ModTime.Unix()) - } - return packet.SerializeLiteral(literaldata, hints.IsBinary, hints.FileName, epochSeconds) -} - -// intersectPreferences mutates and returns a prefix of a that contains only -// the values in the intersection of a and b. The order of a is preserved. -func intersectPreferences(a []uint8, b []uint8) (intersection []uint8) { - var j int - for _, v := range a { - for _, v2 := range b { - if v == v2 { - a[j] = v - j++ - break - } - } - } - - return a[:j] -} - -func hashToHashId(h crypto.Hash) uint8 { - v, ok := s2k.HashToHashId(h) - if !ok { - panic("tried to convert unknown hash") - } - return v -} - -// Encrypt encrypts a message to a number of recipients and, optionally, signs -// it. hints contains optional information, that is also encrypted, that aids -// the recipients in processing the message. The resulting WriteCloser must -// be closed after the contents of the file have been written. -// If config is nil, sensible defaults will be used. -func Encrypt(ciphertext io.Writer, to []*Entity, signed *Entity, hints *FileHints, config *packet.Config) (plaintext io.WriteCloser, err error) { - var signer *packet.PrivateKey - if signed != nil { - signKey, ok := signed.signingKey(config.Now()) - if !ok { - return nil, errors.InvalidArgumentError("no valid signing keys") - } - signer = signKey.PrivateKey - if signer == nil { - return nil, errors.InvalidArgumentError("no private key in signing key") - } - if signer.Encrypted { - return nil, errors.InvalidArgumentError("signing key must be decrypted") - } - } - - // These are the possible ciphers that we'll use for the message. - candidateCiphers := []uint8{ - uint8(packet.CipherAES128), - uint8(packet.CipherAES256), - uint8(packet.CipherCAST5), - } - // These are the possible hash functions that we'll use for the signature. - candidateHashes := []uint8{ - hashToHashId(crypto.SHA256), - hashToHashId(crypto.SHA512), - hashToHashId(crypto.SHA1), - hashToHashId(crypto.RIPEMD160), - } - // In the event that a recipient doesn't specify any supported ciphers - // or hash functions, these are the ones that we assume that every - // implementation supports. - defaultCiphers := candidateCiphers[len(candidateCiphers)-1:] - defaultHashes := candidateHashes[len(candidateHashes)-1:] - - encryptKeys := make([]Key, len(to)) - for i := range to { - var ok bool - encryptKeys[i], ok = to[i].encryptionKey(config.Now()) - if !ok { - return nil, errors.InvalidArgumentError("cannot encrypt a message to key id " + strconv.FormatUint(to[i].PrimaryKey.KeyId, 16) + " because it has no encryption keys") - } - - sig := to[i].primaryIdentity().SelfSignature - - preferredSymmetric := sig.PreferredSymmetric - if len(preferredSymmetric) == 0 { - preferredSymmetric = defaultCiphers - } - preferredHashes := sig.PreferredHash - if len(preferredHashes) == 0 { - preferredHashes = defaultHashes - } - candidateCiphers = intersectPreferences(candidateCiphers, preferredSymmetric) - candidateHashes = intersectPreferences(candidateHashes, preferredHashes) - } - - if len(candidateCiphers) == 0 || len(candidateHashes) == 0 { - return nil, errors.InvalidArgumentError("cannot encrypt because recipient set shares no common algorithms") - } - - cipher := packet.CipherFunction(candidateCiphers[0]) - // If the cipher specified by config is a candidate, we'll use that. - configuredCipher := config.Cipher() - for _, c := range candidateCiphers { - cipherFunc := packet.CipherFunction(c) - if cipherFunc == configuredCipher { - cipher = cipherFunc - break - } - } - - var hash crypto.Hash - for _, hashId := range candidateHashes { - if h, ok := s2k.HashIdToHash(hashId); ok && h.Available() { - hash = h - break - } - } - - // If the hash specified by config is a candidate, we'll use that. - if configuredHash := config.Hash(); configuredHash.Available() { - for _, hashId := range candidateHashes { - if h, ok := s2k.HashIdToHash(hashId); ok && h == configuredHash { - hash = h - break - } - } - } - - if hash == 0 { - hashId := candidateHashes[0] - name, ok := s2k.HashIdToString(hashId) - if !ok { - name = "#" + strconv.Itoa(int(hashId)) - } - return nil, errors.InvalidArgumentError("cannot encrypt because no candidate hash functions are compiled in. (Wanted " + name + " in this case.)") - } - - symKey := make([]byte, cipher.KeySize()) - if _, err := io.ReadFull(config.Random(), symKey); err != nil { - return nil, err - } - - for _, key := range encryptKeys { - if err := packet.SerializeEncryptedKey(ciphertext, key.PublicKey, cipher, symKey, config); err != nil { - return nil, err - } - } - - encryptedData, err := packet.SerializeSymmetricallyEncrypted(ciphertext, cipher, symKey, config) - if err != nil { - return - } - - if signer != nil { - ops := &packet.OnePassSignature{ - SigType: packet.SigTypeBinary, - Hash: hash, - PubKeyAlgo: signer.PubKeyAlgo, - KeyId: signer.KeyId, - IsLast: true, - } - if err := ops.Serialize(encryptedData); err != nil { - return nil, err - } - } - - if hints == nil { - hints = &FileHints{} - } - - w := encryptedData - if signer != nil { - // If we need to write a signature packet after the literal - // data then we need to stop literalData from closing - // encryptedData. - w = noOpCloser{encryptedData} - - } - var epochSeconds uint32 - if !hints.ModTime.IsZero() { - epochSeconds = uint32(hints.ModTime.Unix()) - } - literalData, err := packet.SerializeLiteral(w, hints.IsBinary, hints.FileName, epochSeconds) - if err != nil { - return nil, err - } - - if signer != nil { - return signatureWriter{encryptedData, literalData, hash, hash.New(), signer, config}, nil - } - return literalData, nil -} - -// signatureWriter hashes the contents of a message while passing it along to -// literalData. When closed, it closes literalData, writes a signature packet -// to encryptedData and then also closes encryptedData. -type signatureWriter struct { - encryptedData io.WriteCloser - literalData io.WriteCloser - hashType crypto.Hash - h hash.Hash - signer *packet.PrivateKey - config *packet.Config -} - -func (s signatureWriter) Write(data []byte) (int, error) { - s.h.Write(data) - return s.literalData.Write(data) -} - -func (s signatureWriter) Close() error { - sig := &packet.Signature{ - SigType: packet.SigTypeBinary, - PubKeyAlgo: s.signer.PubKeyAlgo, - Hash: s.hashType, - CreationTime: s.config.Now(), - IssuerKeyId: &s.signer.KeyId, - } - - if err := sig.Sign(s.h, s.signer, s.config); err != nil { - return err - } - if err := s.literalData.Close(); err != nil { - return err - } - if err := sig.Serialize(s.encryptedData); err != nil { - return err - } - return s.encryptedData.Close() -} - -// noOpCloser is like an ioutil.NopCloser, but for an io.Writer. -// TODO: we have two of these in OpenPGP packages alone. This probably needs -// to be promoted somewhere more common. -type noOpCloser struct { - w io.Writer -} - -func (c noOpCloser) Write(data []byte) (n int, err error) { - return c.w.Write(data) -} - -func (c noOpCloser) Close() error { - return nil -} diff --git a/vendor/golang.org/x/crypto/ripemd160/ripemd160.go b/vendor/golang.org/x/crypto/ripemd160/ripemd160.go deleted file mode 100644 index 6c6e842..0000000 --- a/vendor/golang.org/x/crypto/ripemd160/ripemd160.go +++ /dev/null @@ -1,120 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package ripemd160 implements the RIPEMD-160 hash algorithm. -package ripemd160 // import "golang.org/x/crypto/ripemd160" - -// RIPEMD-160 is designed by by Hans Dobbertin, Antoon Bosselaers, and Bart -// Preneel with specifications available at: -// http://homes.esat.kuleuven.be/~cosicart/pdf/AB-9601/AB-9601.pdf. - -import ( - "crypto" - "hash" -) - -func init() { - crypto.RegisterHash(crypto.RIPEMD160, New) -} - -// The size of the checksum in bytes. -const Size = 20 - -// The block size of the hash algorithm in bytes. -const BlockSize = 64 - -const ( - _s0 = 0x67452301 - _s1 = 0xefcdab89 - _s2 = 0x98badcfe - _s3 = 0x10325476 - _s4 = 0xc3d2e1f0 -) - -// digest represents the partial evaluation of a checksum. -type digest struct { - s [5]uint32 // running context - x [BlockSize]byte // temporary buffer - nx int // index into x - tc uint64 // total count of bytes processed -} - -func (d *digest) Reset() { - d.s[0], d.s[1], d.s[2], d.s[3], d.s[4] = _s0, _s1, _s2, _s3, _s4 - d.nx = 0 - d.tc = 0 -} - -// New returns a new hash.Hash computing the checksum. -func New() hash.Hash { - result := new(digest) - result.Reset() - return result -} - -func (d *digest) Size() int { return Size } - -func (d *digest) BlockSize() int { return BlockSize } - -func (d *digest) Write(p []byte) (nn int, err error) { - nn = len(p) - d.tc += uint64(nn) - if d.nx > 0 { - n := len(p) - if n > BlockSize-d.nx { - n = BlockSize - d.nx - } - for i := 0; i < n; i++ { - d.x[d.nx+i] = p[i] - } - d.nx += n - if d.nx == BlockSize { - _Block(d, d.x[0:]) - d.nx = 0 - } - p = p[n:] - } - n := _Block(d, p) - p = p[n:] - if len(p) > 0 { - d.nx = copy(d.x[:], p) - } - return -} - -func (d0 *digest) Sum(in []byte) []byte { - // Make a copy of d0 so that caller can keep writing and summing. - d := *d0 - - // Padding. Add a 1 bit and 0 bits until 56 bytes mod 64. - tc := d.tc - var tmp [64]byte - tmp[0] = 0x80 - if tc%64 < 56 { - d.Write(tmp[0 : 56-tc%64]) - } else { - d.Write(tmp[0 : 64+56-tc%64]) - } - - // Length in bits. - tc <<= 3 - for i := uint(0); i < 8; i++ { - tmp[i] = byte(tc >> (8 * i)) - } - d.Write(tmp[0:8]) - - if d.nx != 0 { - panic("d.nx != 0") - } - - var digest [Size]byte - for i, s := range d.s { - digest[i*4] = byte(s) - digest[i*4+1] = byte(s >> 8) - digest[i*4+2] = byte(s >> 16) - digest[i*4+3] = byte(s >> 24) - } - - return append(in, digest[:]...) -} diff --git a/vendor/golang.org/x/crypto/ripemd160/ripemd160block.go b/vendor/golang.org/x/crypto/ripemd160/ripemd160block.go deleted file mode 100644 index e0edc02..0000000 --- a/vendor/golang.org/x/crypto/ripemd160/ripemd160block.go +++ /dev/null @@ -1,165 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// RIPEMD-160 block step. -// In its own file so that a faster assembly or C version -// can be substituted easily. - -package ripemd160 - -import ( - "math/bits" -) - -// work buffer indices and roll amounts for one line -var _n = [80]uint{ - 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, - 7, 4, 13, 1, 10, 6, 15, 3, 12, 0, 9, 5, 2, 14, 11, 8, - 3, 10, 14, 4, 9, 15, 8, 1, 2, 7, 0, 6, 13, 11, 5, 12, - 1, 9, 11, 10, 0, 8, 12, 4, 13, 3, 7, 15, 14, 5, 6, 2, - 4, 0, 5, 9, 7, 12, 2, 10, 14, 1, 3, 8, 11, 6, 15, 13, -} - -var _r = [80]uint{ - 11, 14, 15, 12, 5, 8, 7, 9, 11, 13, 14, 15, 6, 7, 9, 8, - 7, 6, 8, 13, 11, 9, 7, 15, 7, 12, 15, 9, 11, 7, 13, 12, - 11, 13, 6, 7, 14, 9, 13, 15, 14, 8, 13, 6, 5, 12, 7, 5, - 11, 12, 14, 15, 14, 15, 9, 8, 9, 14, 5, 6, 8, 6, 5, 12, - 9, 15, 5, 11, 6, 8, 13, 12, 5, 12, 13, 14, 11, 8, 5, 6, -} - -// same for the other parallel one -var n_ = [80]uint{ - 5, 14, 7, 0, 9, 2, 11, 4, 13, 6, 15, 8, 1, 10, 3, 12, - 6, 11, 3, 7, 0, 13, 5, 10, 14, 15, 8, 12, 4, 9, 1, 2, - 15, 5, 1, 3, 7, 14, 6, 9, 11, 8, 12, 2, 10, 0, 4, 13, - 8, 6, 4, 1, 3, 11, 15, 0, 5, 12, 2, 13, 9, 7, 10, 14, - 12, 15, 10, 4, 1, 5, 8, 7, 6, 2, 13, 14, 0, 3, 9, 11, -} - -var r_ = [80]uint{ - 8, 9, 9, 11, 13, 15, 15, 5, 7, 7, 8, 11, 14, 14, 12, 6, - 9, 13, 15, 7, 12, 8, 9, 11, 7, 7, 12, 7, 6, 15, 13, 11, - 9, 7, 15, 11, 8, 6, 6, 14, 12, 13, 5, 14, 13, 13, 7, 5, - 15, 5, 8, 11, 14, 14, 6, 14, 6, 9, 12, 9, 12, 5, 15, 8, - 8, 5, 12, 9, 12, 5, 14, 6, 8, 13, 6, 5, 15, 13, 11, 11, -} - -func _Block(md *digest, p []byte) int { - n := 0 - var x [16]uint32 - var alpha, beta uint32 - for len(p) >= BlockSize { - a, b, c, d, e := md.s[0], md.s[1], md.s[2], md.s[3], md.s[4] - aa, bb, cc, dd, ee := a, b, c, d, e - j := 0 - for i := 0; i < 16; i++ { - x[i] = uint32(p[j]) | uint32(p[j+1])<<8 | uint32(p[j+2])<<16 | uint32(p[j+3])<<24 - j += 4 - } - - // round 1 - i := 0 - for i < 16 { - alpha = a + (b ^ c ^ d) + x[_n[i]] - s := int(_r[i]) - alpha = bits.RotateLeft32(alpha, s) + e - beta = bits.RotateLeft32(c, 10) - a, b, c, d, e = e, alpha, b, beta, d - - // parallel line - alpha = aa + (bb ^ (cc | ^dd)) + x[n_[i]] + 0x50a28be6 - s = int(r_[i]) - alpha = bits.RotateLeft32(alpha, s) + ee - beta = bits.RotateLeft32(cc, 10) - aa, bb, cc, dd, ee = ee, alpha, bb, beta, dd - - i++ - } - - // round 2 - for i < 32 { - alpha = a + (b&c | ^b&d) + x[_n[i]] + 0x5a827999 - s := int(_r[i]) - alpha = bits.RotateLeft32(alpha, s) + e - beta = bits.RotateLeft32(c, 10) - a, b, c, d, e = e, alpha, b, beta, d - - // parallel line - alpha = aa + (bb&dd | cc&^dd) + x[n_[i]] + 0x5c4dd124 - s = int(r_[i]) - alpha = bits.RotateLeft32(alpha, s) + ee - beta = bits.RotateLeft32(cc, 10) - aa, bb, cc, dd, ee = ee, alpha, bb, beta, dd - - i++ - } - - // round 3 - for i < 48 { - alpha = a + (b | ^c ^ d) + x[_n[i]] + 0x6ed9eba1 - s := int(_r[i]) - alpha = bits.RotateLeft32(alpha, s) + e - beta = bits.RotateLeft32(c, 10) - a, b, c, d, e = e, alpha, b, beta, d - - // parallel line - alpha = aa + (bb | ^cc ^ dd) + x[n_[i]] + 0x6d703ef3 - s = int(r_[i]) - alpha = bits.RotateLeft32(alpha, s) + ee - beta = bits.RotateLeft32(cc, 10) - aa, bb, cc, dd, ee = ee, alpha, bb, beta, dd - - i++ - } - - // round 4 - for i < 64 { - alpha = a + (b&d | c&^d) + x[_n[i]] + 0x8f1bbcdc - s := int(_r[i]) - alpha = bits.RotateLeft32(alpha, s) + e - beta = bits.RotateLeft32(c, 10) - a, b, c, d, e = e, alpha, b, beta, d - - // parallel line - alpha = aa + (bb&cc | ^bb&dd) + x[n_[i]] + 0x7a6d76e9 - s = int(r_[i]) - alpha = bits.RotateLeft32(alpha, s) + ee - beta = bits.RotateLeft32(cc, 10) - aa, bb, cc, dd, ee = ee, alpha, bb, beta, dd - - i++ - } - - // round 5 - for i < 80 { - alpha = a + (b ^ (c | ^d)) + x[_n[i]] + 0xa953fd4e - s := int(_r[i]) - alpha = bits.RotateLeft32(alpha, s) + e - beta = bits.RotateLeft32(c, 10) - a, b, c, d, e = e, alpha, b, beta, d - - // parallel line - alpha = aa + (bb ^ cc ^ dd) + x[n_[i]] - s = int(r_[i]) - alpha = bits.RotateLeft32(alpha, s) + ee - beta = bits.RotateLeft32(cc, 10) - aa, bb, cc, dd, ee = ee, alpha, bb, beta, dd - - i++ - } - - // combine results - dd += c + md.s[1] - md.s[1] = md.s[2] + d + ee - md.s[2] = md.s[3] + e + aa - md.s[3] = md.s[4] + a + bb - md.s[4] = md.s[0] + b + cc - md.s[0] = dd - - p = p[BlockSize:] - n += BlockSize - } - return n -} diff --git a/vendor/golang.org/x/net/LICENSE b/vendor/golang.org/x/net/LICENSE deleted file mode 100644 index 6a66aea..0000000 --- a/vendor/golang.org/x/net/LICENSE +++ /dev/null @@ -1,27 +0,0 @@ -Copyright (c) 2009 The Go Authors. All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - * Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - * Redistributions in binary form must reproduce the above -copyright notice, this list of conditions and the following disclaimer -in the documentation and/or other materials provided with the -distribution. - * Neither the name of Google Inc. nor the names of its -contributors may be used to endorse or promote products derived from -this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/vendor/golang.org/x/net/PATENTS b/vendor/golang.org/x/net/PATENTS deleted file mode 100644 index 7330990..0000000 --- a/vendor/golang.org/x/net/PATENTS +++ /dev/null @@ -1,22 +0,0 @@ -Additional IP Rights Grant (Patents) - -"This implementation" means the copyrightable works distributed by -Google as part of the Go project. - -Google hereby grants to You a perpetual, worldwide, non-exclusive, -no-charge, royalty-free, irrevocable (except as stated in this section) -patent license to make, have made, use, offer to sell, sell, import, -transfer and otherwise run, modify and propagate the contents of this -implementation of Go, where such license applies only to those patent -claims, both currently owned or controlled by Google and acquired in -the future, licensable by Google that are necessarily infringed by this -implementation of Go. This grant does not include claims that would be -infringed only as a consequence of further modification of this -implementation. If you or your agent or exclusive licensee institute or -order or agree to the institution of patent litigation against any -entity (including a cross-claim or counterclaim in a lawsuit) alleging -that this implementation of Go or any code incorporated within this -implementation of Go constitutes direct or contributory patent -infringement, or inducement of patent infringement, then any patent -rights granted to you under this License for this implementation of Go -shall terminate as of the date such litigation is filed. diff --git a/vendor/golang.org/x/net/context/context.go b/vendor/golang.org/x/net/context/context.go deleted file mode 100644 index a3c021d..0000000 --- a/vendor/golang.org/x/net/context/context.go +++ /dev/null @@ -1,56 +0,0 @@ -// Copyright 2014 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package context defines the Context type, which carries deadlines, -// cancelation signals, and other request-scoped values across API boundaries -// and between processes. -// As of Go 1.7 this package is available in the standard library under the -// name context. https://golang.org/pkg/context. -// -// Incoming requests to a server should create a Context, and outgoing calls to -// servers should accept a Context. The chain of function calls between must -// propagate the Context, optionally replacing it with a modified copy created -// using WithDeadline, WithTimeout, WithCancel, or WithValue. -// -// Programs that use Contexts should follow these rules to keep interfaces -// consistent across packages and enable static analysis tools to check context -// propagation: -// -// Do not store Contexts inside a struct type; instead, pass a Context -// explicitly to each function that needs it. The Context should be the first -// parameter, typically named ctx: -// -// func DoSomething(ctx context.Context, arg Arg) error { -// // ... use ctx ... -// } -// -// Do not pass a nil Context, even if a function permits it. Pass context.TODO -// if you are unsure about which Context to use. -// -// Use context Values only for request-scoped data that transits processes and -// APIs, not for passing optional parameters to functions. -// -// The same Context may be passed to functions running in different goroutines; -// Contexts are safe for simultaneous use by multiple goroutines. -// -// See http://blog.golang.org/context for example code for a server that uses -// Contexts. -package context // import "golang.org/x/net/context" - -// Background returns a non-nil, empty Context. It is never canceled, has no -// values, and has no deadline. It is typically used by the main function, -// initialization, and tests, and as the top-level Context for incoming -// requests. -func Background() Context { - return background -} - -// TODO returns a non-nil, empty Context. Code should use context.TODO when -// it's unclear which Context to use or it is not yet available (because the -// surrounding function has not yet been extended to accept a Context -// parameter). TODO is recognized by static analysis tools that determine -// whether Contexts are propagated correctly in a program. -func TODO() Context { - return todo -} diff --git a/vendor/golang.org/x/net/context/go17.go b/vendor/golang.org/x/net/context/go17.go deleted file mode 100644 index d20f52b..0000000 --- a/vendor/golang.org/x/net/context/go17.go +++ /dev/null @@ -1,72 +0,0 @@ -// Copyright 2016 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build go1.7 - -package context - -import ( - "context" // standard library's context, as of Go 1.7 - "time" -) - -var ( - todo = context.TODO() - background = context.Background() -) - -// Canceled is the error returned by Context.Err when the context is canceled. -var Canceled = context.Canceled - -// DeadlineExceeded is the error returned by Context.Err when the context's -// deadline passes. -var DeadlineExceeded = context.DeadlineExceeded - -// WithCancel returns a copy of parent with a new Done channel. The returned -// context's Done channel is closed when the returned cancel function is called -// or when the parent context's Done channel is closed, whichever happens first. -// -// Canceling this context releases resources associated with it, so code should -// call cancel as soon as the operations running in this Context complete. -func WithCancel(parent Context) (ctx Context, cancel CancelFunc) { - ctx, f := context.WithCancel(parent) - return ctx, CancelFunc(f) -} - -// WithDeadline returns a copy of the parent context with the deadline adjusted -// to be no later than d. If the parent's deadline is already earlier than d, -// WithDeadline(parent, d) is semantically equivalent to parent. The returned -// context's Done channel is closed when the deadline expires, when the returned -// cancel function is called, or when the parent context's Done channel is -// closed, whichever happens first. -// -// Canceling this context releases resources associated with it, so code should -// call cancel as soon as the operations running in this Context complete. -func WithDeadline(parent Context, deadline time.Time) (Context, CancelFunc) { - ctx, f := context.WithDeadline(parent, deadline) - return ctx, CancelFunc(f) -} - -// WithTimeout returns WithDeadline(parent, time.Now().Add(timeout)). -// -// Canceling this context releases resources associated with it, so code should -// call cancel as soon as the operations running in this Context complete: -// -// func slowOperationWithTimeout(ctx context.Context) (Result, error) { -// ctx, cancel := context.WithTimeout(ctx, 100*time.Millisecond) -// defer cancel() // releases resources if slowOperation completes before timeout elapses -// return slowOperation(ctx) -// } -func WithTimeout(parent Context, timeout time.Duration) (Context, CancelFunc) { - return WithDeadline(parent, time.Now().Add(timeout)) -} - -// WithValue returns a copy of parent in which the value associated with key is -// val. -// -// Use context Values only for request-scoped data that transits processes and -// APIs, not for passing optional parameters to functions. -func WithValue(parent Context, key interface{}, val interface{}) Context { - return context.WithValue(parent, key, val) -} diff --git a/vendor/golang.org/x/net/context/go19.go b/vendor/golang.org/x/net/context/go19.go deleted file mode 100644 index d88bd1d..0000000 --- a/vendor/golang.org/x/net/context/go19.go +++ /dev/null @@ -1,20 +0,0 @@ -// Copyright 2017 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build go1.9 - -package context - -import "context" // standard library's context, as of Go 1.7 - -// A Context carries a deadline, a cancelation signal, and other values across -// API boundaries. -// -// Context's methods may be called by multiple goroutines simultaneously. -type Context = context.Context - -// A CancelFunc tells an operation to abandon its work. -// A CancelFunc does not wait for the work to stop. -// After the first call, subsequent calls to a CancelFunc do nothing. -type CancelFunc = context.CancelFunc diff --git a/vendor/golang.org/x/net/context/pre_go17.go b/vendor/golang.org/x/net/context/pre_go17.go deleted file mode 100644 index 0f35592..0000000 --- a/vendor/golang.org/x/net/context/pre_go17.go +++ /dev/null @@ -1,300 +0,0 @@ -// Copyright 2014 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !go1.7 - -package context - -import ( - "errors" - "fmt" - "sync" - "time" -) - -// An emptyCtx is never canceled, has no values, and has no deadline. It is not -// struct{}, since vars of this type must have distinct addresses. -type emptyCtx int - -func (*emptyCtx) Deadline() (deadline time.Time, ok bool) { - return -} - -func (*emptyCtx) Done() <-chan struct{} { - return nil -} - -func (*emptyCtx) Err() error { - return nil -} - -func (*emptyCtx) Value(key interface{}) interface{} { - return nil -} - -func (e *emptyCtx) String() string { - switch e { - case background: - return "context.Background" - case todo: - return "context.TODO" - } - return "unknown empty Context" -} - -var ( - background = new(emptyCtx) - todo = new(emptyCtx) -) - -// Canceled is the error returned by Context.Err when the context is canceled. -var Canceled = errors.New("context canceled") - -// DeadlineExceeded is the error returned by Context.Err when the context's -// deadline passes. -var DeadlineExceeded = errors.New("context deadline exceeded") - -// WithCancel returns a copy of parent with a new Done channel. The returned -// context's Done channel is closed when the returned cancel function is called -// or when the parent context's Done channel is closed, whichever happens first. -// -// Canceling this context releases resources associated with it, so code should -// call cancel as soon as the operations running in this Context complete. -func WithCancel(parent Context) (ctx Context, cancel CancelFunc) { - c := newCancelCtx(parent) - propagateCancel(parent, c) - return c, func() { c.cancel(true, Canceled) } -} - -// newCancelCtx returns an initialized cancelCtx. -func newCancelCtx(parent Context) *cancelCtx { - return &cancelCtx{ - Context: parent, - done: make(chan struct{}), - } -} - -// propagateCancel arranges for child to be canceled when parent is. -func propagateCancel(parent Context, child canceler) { - if parent.Done() == nil { - return // parent is never canceled - } - if p, ok := parentCancelCtx(parent); ok { - p.mu.Lock() - if p.err != nil { - // parent has already been canceled - child.cancel(false, p.err) - } else { - if p.children == nil { - p.children = make(map[canceler]bool) - } - p.children[child] = true - } - p.mu.Unlock() - } else { - go func() { - select { - case <-parent.Done(): - child.cancel(false, parent.Err()) - case <-child.Done(): - } - }() - } -} - -// parentCancelCtx follows a chain of parent references until it finds a -// *cancelCtx. This function understands how each of the concrete types in this -// package represents its parent. -func parentCancelCtx(parent Context) (*cancelCtx, bool) { - for { - switch c := parent.(type) { - case *cancelCtx: - return c, true - case *timerCtx: - return c.cancelCtx, true - case *valueCtx: - parent = c.Context - default: - return nil, false - } - } -} - -// removeChild removes a context from its parent. -func removeChild(parent Context, child canceler) { - p, ok := parentCancelCtx(parent) - if !ok { - return - } - p.mu.Lock() - if p.children != nil { - delete(p.children, child) - } - p.mu.Unlock() -} - -// A canceler is a context type that can be canceled directly. The -// implementations are *cancelCtx and *timerCtx. -type canceler interface { - cancel(removeFromParent bool, err error) - Done() <-chan struct{} -} - -// A cancelCtx can be canceled. When canceled, it also cancels any children -// that implement canceler. -type cancelCtx struct { - Context - - done chan struct{} // closed by the first cancel call. - - mu sync.Mutex - children map[canceler]bool // set to nil by the first cancel call - err error // set to non-nil by the first cancel call -} - -func (c *cancelCtx) Done() <-chan struct{} { - return c.done -} - -func (c *cancelCtx) Err() error { - c.mu.Lock() - defer c.mu.Unlock() - return c.err -} - -func (c *cancelCtx) String() string { - return fmt.Sprintf("%v.WithCancel", c.Context) -} - -// cancel closes c.done, cancels each of c's children, and, if -// removeFromParent is true, removes c from its parent's children. -func (c *cancelCtx) cancel(removeFromParent bool, err error) { - if err == nil { - panic("context: internal error: missing cancel error") - } - c.mu.Lock() - if c.err != nil { - c.mu.Unlock() - return // already canceled - } - c.err = err - close(c.done) - for child := range c.children { - // NOTE: acquiring the child's lock while holding parent's lock. - child.cancel(false, err) - } - c.children = nil - c.mu.Unlock() - - if removeFromParent { - removeChild(c.Context, c) - } -} - -// WithDeadline returns a copy of the parent context with the deadline adjusted -// to be no later than d. If the parent's deadline is already earlier than d, -// WithDeadline(parent, d) is semantically equivalent to parent. The returned -// context's Done channel is closed when the deadline expires, when the returned -// cancel function is called, or when the parent context's Done channel is -// closed, whichever happens first. -// -// Canceling this context releases resources associated with it, so code should -// call cancel as soon as the operations running in this Context complete. -func WithDeadline(parent Context, deadline time.Time) (Context, CancelFunc) { - if cur, ok := parent.Deadline(); ok && cur.Before(deadline) { - // The current deadline is already sooner than the new one. - return WithCancel(parent) - } - c := &timerCtx{ - cancelCtx: newCancelCtx(parent), - deadline: deadline, - } - propagateCancel(parent, c) - d := deadline.Sub(time.Now()) - if d <= 0 { - c.cancel(true, DeadlineExceeded) // deadline has already passed - return c, func() { c.cancel(true, Canceled) } - } - c.mu.Lock() - defer c.mu.Unlock() - if c.err == nil { - c.timer = time.AfterFunc(d, func() { - c.cancel(true, DeadlineExceeded) - }) - } - return c, func() { c.cancel(true, Canceled) } -} - -// A timerCtx carries a timer and a deadline. It embeds a cancelCtx to -// implement Done and Err. It implements cancel by stopping its timer then -// delegating to cancelCtx.cancel. -type timerCtx struct { - *cancelCtx - timer *time.Timer // Under cancelCtx.mu. - - deadline time.Time -} - -func (c *timerCtx) Deadline() (deadline time.Time, ok bool) { - return c.deadline, true -} - -func (c *timerCtx) String() string { - return fmt.Sprintf("%v.WithDeadline(%s [%s])", c.cancelCtx.Context, c.deadline, c.deadline.Sub(time.Now())) -} - -func (c *timerCtx) cancel(removeFromParent bool, err error) { - c.cancelCtx.cancel(false, err) - if removeFromParent { - // Remove this timerCtx from its parent cancelCtx's children. - removeChild(c.cancelCtx.Context, c) - } - c.mu.Lock() - if c.timer != nil { - c.timer.Stop() - c.timer = nil - } - c.mu.Unlock() -} - -// WithTimeout returns WithDeadline(parent, time.Now().Add(timeout)). -// -// Canceling this context releases resources associated with it, so code should -// call cancel as soon as the operations running in this Context complete: -// -// func slowOperationWithTimeout(ctx context.Context) (Result, error) { -// ctx, cancel := context.WithTimeout(ctx, 100*time.Millisecond) -// defer cancel() // releases resources if slowOperation completes before timeout elapses -// return slowOperation(ctx) -// } -func WithTimeout(parent Context, timeout time.Duration) (Context, CancelFunc) { - return WithDeadline(parent, time.Now().Add(timeout)) -} - -// WithValue returns a copy of parent in which the value associated with key is -// val. -// -// Use context Values only for request-scoped data that transits processes and -// APIs, not for passing optional parameters to functions. -func WithValue(parent Context, key interface{}, val interface{}) Context { - return &valueCtx{parent, key, val} -} - -// A valueCtx carries a key-value pair. It implements Value for that key and -// delegates all other calls to the embedded Context. -type valueCtx struct { - Context - key, val interface{} -} - -func (c *valueCtx) String() string { - return fmt.Sprintf("%v.WithValue(%#v, %#v)", c.Context, c.key, c.val) -} - -func (c *valueCtx) Value(key interface{}) interface{} { - if c.key == key { - return c.val - } - return c.Context.Value(key) -} diff --git a/vendor/golang.org/x/net/context/pre_go19.go b/vendor/golang.org/x/net/context/pre_go19.go deleted file mode 100644 index b105f80..0000000 --- a/vendor/golang.org/x/net/context/pre_go19.go +++ /dev/null @@ -1,109 +0,0 @@ -// Copyright 2014 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !go1.9 - -package context - -import "time" - -// A Context carries a deadline, a cancelation signal, and other values across -// API boundaries. -// -// Context's methods may be called by multiple goroutines simultaneously. -type Context interface { - // Deadline returns the time when work done on behalf of this context - // should be canceled. Deadline returns ok==false when no deadline is - // set. Successive calls to Deadline return the same results. - Deadline() (deadline time.Time, ok bool) - - // Done returns a channel that's closed when work done on behalf of this - // context should be canceled. Done may return nil if this context can - // never be canceled. Successive calls to Done return the same value. - // - // WithCancel arranges for Done to be closed when cancel is called; - // WithDeadline arranges for Done to be closed when the deadline - // expires; WithTimeout arranges for Done to be closed when the timeout - // elapses. - // - // Done is provided for use in select statements: - // - // // Stream generates values with DoSomething and sends them to out - // // until DoSomething returns an error or ctx.Done is closed. - // func Stream(ctx context.Context, out chan<- Value) error { - // for { - // v, err := DoSomething(ctx) - // if err != nil { - // return err - // } - // select { - // case <-ctx.Done(): - // return ctx.Err() - // case out <- v: - // } - // } - // } - // - // See http://blog.golang.org/pipelines for more examples of how to use - // a Done channel for cancelation. - Done() <-chan struct{} - - // Err returns a non-nil error value after Done is closed. Err returns - // Canceled if the context was canceled or DeadlineExceeded if the - // context's deadline passed. No other values for Err are defined. - // After Done is closed, successive calls to Err return the same value. - Err() error - - // Value returns the value associated with this context for key, or nil - // if no value is associated with key. Successive calls to Value with - // the same key returns the same result. - // - // Use context values only for request-scoped data that transits - // processes and API boundaries, not for passing optional parameters to - // functions. - // - // A key identifies a specific value in a Context. Functions that wish - // to store values in Context typically allocate a key in a global - // variable then use that key as the argument to context.WithValue and - // Context.Value. A key can be any type that supports equality; - // packages should define keys as an unexported type to avoid - // collisions. - // - // Packages that define a Context key should provide type-safe accessors - // for the values stores using that key: - // - // // Package user defines a User type that's stored in Contexts. - // package user - // - // import "golang.org/x/net/context" - // - // // User is the type of value stored in the Contexts. - // type User struct {...} - // - // // key is an unexported type for keys defined in this package. - // // This prevents collisions with keys defined in other packages. - // type key int - // - // // userKey is the key for user.User values in Contexts. It is - // // unexported; clients use user.NewContext and user.FromContext - // // instead of using this key directly. - // var userKey key = 0 - // - // // NewContext returns a new Context that carries value u. - // func NewContext(ctx context.Context, u *User) context.Context { - // return context.WithValue(ctx, userKey, u) - // } - // - // // FromContext returns the User value stored in ctx, if any. - // func FromContext(ctx context.Context) (*User, bool) { - // u, ok := ctx.Value(userKey).(*User) - // return u, ok - // } - Value(key interface{}) interface{} -} - -// A CancelFunc tells an operation to abandon its work. -// A CancelFunc does not wait for the work to stop. -// After the first call, subsequent calls to a CancelFunc do nothing. -type CancelFunc func() diff --git a/vendor/golang.org/x/net/internal/socks/client.go b/vendor/golang.org/x/net/internal/socks/client.go deleted file mode 100644 index 3d6f516..0000000 --- a/vendor/golang.org/x/net/internal/socks/client.go +++ /dev/null @@ -1,168 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package socks - -import ( - "context" - "errors" - "io" - "net" - "strconv" - "time" -) - -var ( - noDeadline = time.Time{} - aLongTimeAgo = time.Unix(1, 0) -) - -func (d *Dialer) connect(ctx context.Context, c net.Conn, address string) (_ net.Addr, ctxErr error) { - host, port, err := splitHostPort(address) - if err != nil { - return nil, err - } - if deadline, ok := ctx.Deadline(); ok && !deadline.IsZero() { - c.SetDeadline(deadline) - defer c.SetDeadline(noDeadline) - } - if ctx != context.Background() { - errCh := make(chan error, 1) - done := make(chan struct{}) - defer func() { - close(done) - if ctxErr == nil { - ctxErr = <-errCh - } - }() - go func() { - select { - case <-ctx.Done(): - c.SetDeadline(aLongTimeAgo) - errCh <- ctx.Err() - case <-done: - errCh <- nil - } - }() - } - - b := make([]byte, 0, 6+len(host)) // the size here is just an estimate - b = append(b, Version5) - if len(d.AuthMethods) == 0 || d.Authenticate == nil { - b = append(b, 1, byte(AuthMethodNotRequired)) - } else { - ams := d.AuthMethods - if len(ams) > 255 { - return nil, errors.New("too many authentication methods") - } - b = append(b, byte(len(ams))) - for _, am := range ams { - b = append(b, byte(am)) - } - } - if _, ctxErr = c.Write(b); ctxErr != nil { - return - } - - if _, ctxErr = io.ReadFull(c, b[:2]); ctxErr != nil { - return - } - if b[0] != Version5 { - return nil, errors.New("unexpected protocol version " + strconv.Itoa(int(b[0]))) - } - am := AuthMethod(b[1]) - if am == AuthMethodNoAcceptableMethods { - return nil, errors.New("no acceptable authentication methods") - } - if d.Authenticate != nil { - if ctxErr = d.Authenticate(ctx, c, am); ctxErr != nil { - return - } - } - - b = b[:0] - b = append(b, Version5, byte(d.cmd), 0) - if ip := net.ParseIP(host); ip != nil { - if ip4 := ip.To4(); ip4 != nil { - b = append(b, AddrTypeIPv4) - b = append(b, ip4...) - } else if ip6 := ip.To16(); ip6 != nil { - b = append(b, AddrTypeIPv6) - b = append(b, ip6...) - } else { - return nil, errors.New("unknown address type") - } - } else { - if len(host) > 255 { - return nil, errors.New("FQDN too long") - } - b = append(b, AddrTypeFQDN) - b = append(b, byte(len(host))) - b = append(b, host...) - } - b = append(b, byte(port>>8), byte(port)) - if _, ctxErr = c.Write(b); ctxErr != nil { - return - } - - if _, ctxErr = io.ReadFull(c, b[:4]); ctxErr != nil { - return - } - if b[0] != Version5 { - return nil, errors.New("unexpected protocol version " + strconv.Itoa(int(b[0]))) - } - if cmdErr := Reply(b[1]); cmdErr != StatusSucceeded { - return nil, errors.New("unknown error " + cmdErr.String()) - } - if b[2] != 0 { - return nil, errors.New("non-zero reserved field") - } - l := 2 - var a Addr - switch b[3] { - case AddrTypeIPv4: - l += net.IPv4len - a.IP = make(net.IP, net.IPv4len) - case AddrTypeIPv6: - l += net.IPv6len - a.IP = make(net.IP, net.IPv6len) - case AddrTypeFQDN: - if _, err := io.ReadFull(c, b[:1]); err != nil { - return nil, err - } - l += int(b[0]) - default: - return nil, errors.New("unknown address type " + strconv.Itoa(int(b[3]))) - } - if cap(b) < l { - b = make([]byte, l) - } else { - b = b[:l] - } - if _, ctxErr = io.ReadFull(c, b); ctxErr != nil { - return - } - if a.IP != nil { - copy(a.IP, b) - } else { - a.Name = string(b[:len(b)-2]) - } - a.Port = int(b[len(b)-2])<<8 | int(b[len(b)-1]) - return &a, nil -} - -func splitHostPort(address string) (string, int, error) { - host, port, err := net.SplitHostPort(address) - if err != nil { - return "", 0, err - } - portnum, err := strconv.Atoi(port) - if err != nil { - return "", 0, err - } - if 1 > portnum || portnum > 0xffff { - return "", 0, errors.New("port number out of range " + port) - } - return host, portnum, nil -} diff --git a/vendor/golang.org/x/net/internal/socks/socks.go b/vendor/golang.org/x/net/internal/socks/socks.go deleted file mode 100644 index 6929a9f..0000000 --- a/vendor/golang.org/x/net/internal/socks/socks.go +++ /dev/null @@ -1,317 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package socks provides a SOCKS version 5 client implementation. -// -// SOCKS protocol version 5 is defined in RFC 1928. -// Username/Password authentication for SOCKS version 5 is defined in -// RFC 1929. -package socks - -import ( - "context" - "errors" - "io" - "net" - "strconv" -) - -// A Command represents a SOCKS command. -type Command int - -func (cmd Command) String() string { - switch cmd { - case CmdConnect: - return "socks connect" - case cmdBind: - return "socks bind" - default: - return "socks " + strconv.Itoa(int(cmd)) - } -} - -// An AuthMethod represents a SOCKS authentication method. -type AuthMethod int - -// A Reply represents a SOCKS command reply code. -type Reply int - -func (code Reply) String() string { - switch code { - case StatusSucceeded: - return "succeeded" - case 0x01: - return "general SOCKS server failure" - case 0x02: - return "connection not allowed by ruleset" - case 0x03: - return "network unreachable" - case 0x04: - return "host unreachable" - case 0x05: - return "connection refused" - case 0x06: - return "TTL expired" - case 0x07: - return "command not supported" - case 0x08: - return "address type not supported" - default: - return "unknown code: " + strconv.Itoa(int(code)) - } -} - -// Wire protocol constants. -const ( - Version5 = 0x05 - - AddrTypeIPv4 = 0x01 - AddrTypeFQDN = 0x03 - AddrTypeIPv6 = 0x04 - - CmdConnect Command = 0x01 // establishes an active-open forward proxy connection - cmdBind Command = 0x02 // establishes a passive-open forward proxy connection - - AuthMethodNotRequired AuthMethod = 0x00 // no authentication required - AuthMethodUsernamePassword AuthMethod = 0x02 // use username/password - AuthMethodNoAcceptableMethods AuthMethod = 0xff // no acceptable authentication methods - - StatusSucceeded Reply = 0x00 -) - -// An Addr represents a SOCKS-specific address. -// Either Name or IP is used exclusively. -type Addr struct { - Name string // fully-qualified domain name - IP net.IP - Port int -} - -func (a *Addr) Network() string { return "socks" } - -func (a *Addr) String() string { - if a == nil { - return "" - } - port := strconv.Itoa(a.Port) - if a.IP == nil { - return net.JoinHostPort(a.Name, port) - } - return net.JoinHostPort(a.IP.String(), port) -} - -// A Conn represents a forward proxy connection. -type Conn struct { - net.Conn - - boundAddr net.Addr -} - -// BoundAddr returns the address assigned by the proxy server for -// connecting to the command target address from the proxy server. -func (c *Conn) BoundAddr() net.Addr { - if c == nil { - return nil - } - return c.boundAddr -} - -// A Dialer holds SOCKS-specific options. -type Dialer struct { - cmd Command // either CmdConnect or cmdBind - proxyNetwork string // network between a proxy server and a client - proxyAddress string // proxy server address - - // ProxyDial specifies the optional dial function for - // establishing the transport connection. - ProxyDial func(context.Context, string, string) (net.Conn, error) - - // AuthMethods specifies the list of request authention - // methods. - // If empty, SOCKS client requests only AuthMethodNotRequired. - AuthMethods []AuthMethod - - // Authenticate specifies the optional authentication - // function. It must be non-nil when AuthMethods is not empty. - // It must return an error when the authentication is failed. - Authenticate func(context.Context, io.ReadWriter, AuthMethod) error -} - -// DialContext connects to the provided address on the provided -// network. -// -// The returned error value may be a net.OpError. When the Op field of -// net.OpError contains "socks", the Source field contains a proxy -// server address and the Addr field contains a command target -// address. -// -// See func Dial of the net package of standard library for a -// description of the network and address parameters. -func (d *Dialer) DialContext(ctx context.Context, network, address string) (net.Conn, error) { - if err := d.validateTarget(network, address); err != nil { - proxy, dst, _ := d.pathAddrs(address) - return nil, &net.OpError{Op: d.cmd.String(), Net: network, Source: proxy, Addr: dst, Err: err} - } - if ctx == nil { - proxy, dst, _ := d.pathAddrs(address) - return nil, &net.OpError{Op: d.cmd.String(), Net: network, Source: proxy, Addr: dst, Err: errors.New("nil context")} - } - var err error - var c net.Conn - if d.ProxyDial != nil { - c, err = d.ProxyDial(ctx, d.proxyNetwork, d.proxyAddress) - } else { - var dd net.Dialer - c, err = dd.DialContext(ctx, d.proxyNetwork, d.proxyAddress) - } - if err != nil { - proxy, dst, _ := d.pathAddrs(address) - return nil, &net.OpError{Op: d.cmd.String(), Net: network, Source: proxy, Addr: dst, Err: err} - } - a, err := d.connect(ctx, c, address) - if err != nil { - c.Close() - proxy, dst, _ := d.pathAddrs(address) - return nil, &net.OpError{Op: d.cmd.String(), Net: network, Source: proxy, Addr: dst, Err: err} - } - return &Conn{Conn: c, boundAddr: a}, nil -} - -// DialWithConn initiates a connection from SOCKS server to the target -// network and address using the connection c that is already -// connected to the SOCKS server. -// -// It returns the connection's local address assigned by the SOCKS -// server. -func (d *Dialer) DialWithConn(ctx context.Context, c net.Conn, network, address string) (net.Addr, error) { - if err := d.validateTarget(network, address); err != nil { - proxy, dst, _ := d.pathAddrs(address) - return nil, &net.OpError{Op: d.cmd.String(), Net: network, Source: proxy, Addr: dst, Err: err} - } - if ctx == nil { - proxy, dst, _ := d.pathAddrs(address) - return nil, &net.OpError{Op: d.cmd.String(), Net: network, Source: proxy, Addr: dst, Err: errors.New("nil context")} - } - a, err := d.connect(ctx, c, address) - if err != nil { - proxy, dst, _ := d.pathAddrs(address) - return nil, &net.OpError{Op: d.cmd.String(), Net: network, Source: proxy, Addr: dst, Err: err} - } - return a, nil -} - -// Dial connects to the provided address on the provided network. -// -// Unlike DialContext, it returns a raw transport connection instead -// of a forward proxy connection. -// -// Deprecated: Use DialContext or DialWithConn instead. -func (d *Dialer) Dial(network, address string) (net.Conn, error) { - if err := d.validateTarget(network, address); err != nil { - proxy, dst, _ := d.pathAddrs(address) - return nil, &net.OpError{Op: d.cmd.String(), Net: network, Source: proxy, Addr: dst, Err: err} - } - var err error - var c net.Conn - if d.ProxyDial != nil { - c, err = d.ProxyDial(context.Background(), d.proxyNetwork, d.proxyAddress) - } else { - c, err = net.Dial(d.proxyNetwork, d.proxyAddress) - } - if err != nil { - proxy, dst, _ := d.pathAddrs(address) - return nil, &net.OpError{Op: d.cmd.String(), Net: network, Source: proxy, Addr: dst, Err: err} - } - if _, err := d.DialWithConn(context.Background(), c, network, address); err != nil { - c.Close() - return nil, err - } - return c, nil -} - -func (d *Dialer) validateTarget(network, address string) error { - switch network { - case "tcp", "tcp6", "tcp4": - default: - return errors.New("network not implemented") - } - switch d.cmd { - case CmdConnect, cmdBind: - default: - return errors.New("command not implemented") - } - return nil -} - -func (d *Dialer) pathAddrs(address string) (proxy, dst net.Addr, err error) { - for i, s := range []string{d.proxyAddress, address} { - host, port, err := splitHostPort(s) - if err != nil { - return nil, nil, err - } - a := &Addr{Port: port} - a.IP = net.ParseIP(host) - if a.IP == nil { - a.Name = host - } - if i == 0 { - proxy = a - } else { - dst = a - } - } - return -} - -// NewDialer returns a new Dialer that dials through the provided -// proxy server's network and address. -func NewDialer(network, address string) *Dialer { - return &Dialer{proxyNetwork: network, proxyAddress: address, cmd: CmdConnect} -} - -const ( - authUsernamePasswordVersion = 0x01 - authStatusSucceeded = 0x00 -) - -// UsernamePassword are the credentials for the username/password -// authentication method. -type UsernamePassword struct { - Username string - Password string -} - -// Authenticate authenticates a pair of username and password with the -// proxy server. -func (up *UsernamePassword) Authenticate(ctx context.Context, rw io.ReadWriter, auth AuthMethod) error { - switch auth { - case AuthMethodNotRequired: - return nil - case AuthMethodUsernamePassword: - if len(up.Username) == 0 || len(up.Username) > 255 || len(up.Password) == 0 || len(up.Password) > 255 { - return errors.New("invalid username/password") - } - b := []byte{authUsernamePasswordVersion} - b = append(b, byte(len(up.Username))) - b = append(b, up.Username...) - b = append(b, byte(len(up.Password))) - b = append(b, up.Password...) - // TODO(mikio): handle IO deadlines and cancelation if - // necessary - if _, err := rw.Write(b); err != nil { - return err - } - if _, err := io.ReadFull(rw, b[:2]); err != nil { - return err - } - if b[0] != authUsernamePasswordVersion { - return errors.New("invalid username/password version") - } - if b[1] != authStatusSucceeded { - return errors.New("username/password authentication failed") - } - return nil - } - return errors.New("unsupported authentication method " + strconv.Itoa(int(auth))) -} diff --git a/vendor/golang.org/x/net/proxy/direct.go b/vendor/golang.org/x/net/proxy/direct.go deleted file mode 100644 index 4c5ad88..0000000 --- a/vendor/golang.org/x/net/proxy/direct.go +++ /dev/null @@ -1,18 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proxy - -import ( - "net" -) - -type direct struct{} - -// Direct is a direct proxy: one that makes network connections directly. -var Direct = direct{} - -func (direct) Dial(network, addr string) (net.Conn, error) { - return net.Dial(network, addr) -} diff --git a/vendor/golang.org/x/net/proxy/per_host.go b/vendor/golang.org/x/net/proxy/per_host.go deleted file mode 100644 index 0689bb6..0000000 --- a/vendor/golang.org/x/net/proxy/per_host.go +++ /dev/null @@ -1,140 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proxy - -import ( - "net" - "strings" -) - -// A PerHost directs connections to a default Dialer unless the host name -// requested matches one of a number of exceptions. -type PerHost struct { - def, bypass Dialer - - bypassNetworks []*net.IPNet - bypassIPs []net.IP - bypassZones []string - bypassHosts []string -} - -// NewPerHost returns a PerHost Dialer that directs connections to either -// defaultDialer or bypass, depending on whether the connection matches one of -// the configured rules. -func NewPerHost(defaultDialer, bypass Dialer) *PerHost { - return &PerHost{ - def: defaultDialer, - bypass: bypass, - } -} - -// Dial connects to the address addr on the given network through either -// defaultDialer or bypass. -func (p *PerHost) Dial(network, addr string) (c net.Conn, err error) { - host, _, err := net.SplitHostPort(addr) - if err != nil { - return nil, err - } - - return p.dialerForRequest(host).Dial(network, addr) -} - -func (p *PerHost) dialerForRequest(host string) Dialer { - if ip := net.ParseIP(host); ip != nil { - for _, net := range p.bypassNetworks { - if net.Contains(ip) { - return p.bypass - } - } - for _, bypassIP := range p.bypassIPs { - if bypassIP.Equal(ip) { - return p.bypass - } - } - return p.def - } - - for _, zone := range p.bypassZones { - if strings.HasSuffix(host, zone) { - return p.bypass - } - if host == zone[1:] { - // For a zone ".example.com", we match "example.com" - // too. - return p.bypass - } - } - for _, bypassHost := range p.bypassHosts { - if bypassHost == host { - return p.bypass - } - } - return p.def -} - -// AddFromString parses a string that contains comma-separated values -// specifying hosts that should use the bypass proxy. Each value is either an -// IP address, a CIDR range, a zone (*.example.com) or a host name -// (localhost). A best effort is made to parse the string and errors are -// ignored. -func (p *PerHost) AddFromString(s string) { - hosts := strings.Split(s, ",") - for _, host := range hosts { - host = strings.TrimSpace(host) - if len(host) == 0 { - continue - } - if strings.Contains(host, "/") { - // We assume that it's a CIDR address like 127.0.0.0/8 - if _, net, err := net.ParseCIDR(host); err == nil { - p.AddNetwork(net) - } - continue - } - if ip := net.ParseIP(host); ip != nil { - p.AddIP(ip) - continue - } - if strings.HasPrefix(host, "*.") { - p.AddZone(host[1:]) - continue - } - p.AddHost(host) - } -} - -// AddIP specifies an IP address that will use the bypass proxy. Note that -// this will only take effect if a literal IP address is dialed. A connection -// to a named host will never match an IP. -func (p *PerHost) AddIP(ip net.IP) { - p.bypassIPs = append(p.bypassIPs, ip) -} - -// AddNetwork specifies an IP range that will use the bypass proxy. Note that -// this will only take effect if a literal IP address is dialed. A connection -// to a named host will never match. -func (p *PerHost) AddNetwork(net *net.IPNet) { - p.bypassNetworks = append(p.bypassNetworks, net) -} - -// AddZone specifies a DNS suffix that will use the bypass proxy. A zone of -// "example.com" matches "example.com" and all of its subdomains. -func (p *PerHost) AddZone(zone string) { - if strings.HasSuffix(zone, ".") { - zone = zone[:len(zone)-1] - } - if !strings.HasPrefix(zone, ".") { - zone = "." + zone - } - p.bypassZones = append(p.bypassZones, zone) -} - -// AddHost specifies a host name that will use the bypass proxy. -func (p *PerHost) AddHost(host string) { - if strings.HasSuffix(host, ".") { - host = host[:len(host)-1] - } - p.bypassHosts = append(p.bypassHosts, host) -} diff --git a/vendor/golang.org/x/net/proxy/proxy.go b/vendor/golang.org/x/net/proxy/proxy.go deleted file mode 100644 index f6026b9..0000000 --- a/vendor/golang.org/x/net/proxy/proxy.go +++ /dev/null @@ -1,139 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package proxy provides support for a variety of protocols to proxy network -// data. -package proxy // import "golang.org/x/net/proxy" - -import ( - "errors" - "net" - "net/url" - "os" - "sync" -) - -// A Dialer is a means to establish a connection. -type Dialer interface { - // Dial connects to the given address via the proxy. - Dial(network, addr string) (c net.Conn, err error) -} - -// Auth contains authentication parameters that specific Dialers may require. -type Auth struct { - User, Password string -} - -// FromEnvironment returns the dialer specified by the proxy related variables in -// the environment. -func FromEnvironment() Dialer { - allProxy := allProxyEnv.Get() - if len(allProxy) == 0 { - return Direct - } - - proxyURL, err := url.Parse(allProxy) - if err != nil { - return Direct - } - proxy, err := FromURL(proxyURL, Direct) - if err != nil { - return Direct - } - - noProxy := noProxyEnv.Get() - if len(noProxy) == 0 { - return proxy - } - - perHost := NewPerHost(proxy, Direct) - perHost.AddFromString(noProxy) - return perHost -} - -// proxySchemes is a map from URL schemes to a function that creates a Dialer -// from a URL with such a scheme. -var proxySchemes map[string]func(*url.URL, Dialer) (Dialer, error) - -// RegisterDialerType takes a URL scheme and a function to generate Dialers from -// a URL with that scheme and a forwarding Dialer. Registered schemes are used -// by FromURL. -func RegisterDialerType(scheme string, f func(*url.URL, Dialer) (Dialer, error)) { - if proxySchemes == nil { - proxySchemes = make(map[string]func(*url.URL, Dialer) (Dialer, error)) - } - proxySchemes[scheme] = f -} - -// FromURL returns a Dialer given a URL specification and an underlying -// Dialer for it to make network requests. -func FromURL(u *url.URL, forward Dialer) (Dialer, error) { - var auth *Auth - if u.User != nil { - auth = new(Auth) - auth.User = u.User.Username() - if p, ok := u.User.Password(); ok { - auth.Password = p - } - } - - switch u.Scheme { - case "socks5", "socks5h": - addr := u.Hostname() - port := u.Port() - if port == "" { - port = "1080" - } - return SOCKS5("tcp", net.JoinHostPort(addr, port), auth, forward) - } - - // If the scheme doesn't match any of the built-in schemes, see if it - // was registered by another package. - if proxySchemes != nil { - if f, ok := proxySchemes[u.Scheme]; ok { - return f(u, forward) - } - } - - return nil, errors.New("proxy: unknown scheme: " + u.Scheme) -} - -var ( - allProxyEnv = &envOnce{ - names: []string{"ALL_PROXY", "all_proxy"}, - } - noProxyEnv = &envOnce{ - names: []string{"NO_PROXY", "no_proxy"}, - } -) - -// envOnce looks up an environment variable (optionally by multiple -// names) once. It mitigates expensive lookups on some platforms -// (e.g. Windows). -// (Borrowed from net/http/transport.go) -type envOnce struct { - names []string - once sync.Once - val string -} - -func (e *envOnce) Get() string { - e.once.Do(e.init) - return e.val -} - -func (e *envOnce) init() { - for _, n := range e.names { - e.val = os.Getenv(n) - if e.val != "" { - return - } - } -} - -// reset is used by tests -func (e *envOnce) reset() { - e.once = sync.Once{} - e.val = "" -} diff --git a/vendor/golang.org/x/net/proxy/socks5.go b/vendor/golang.org/x/net/proxy/socks5.go deleted file mode 100644 index 56345ec..0000000 --- a/vendor/golang.org/x/net/proxy/socks5.go +++ /dev/null @@ -1,36 +0,0 @@ -// Copyright 2011 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proxy - -import ( - "context" - "net" - - "golang.org/x/net/internal/socks" -) - -// SOCKS5 returns a Dialer that makes SOCKSv5 connections to the given -// address with an optional username and password. -// See RFC 1928 and RFC 1929. -func SOCKS5(network, address string, auth *Auth, forward Dialer) (Dialer, error) { - d := socks.NewDialer(network, address) - if forward != nil { - d.ProxyDial = func(_ context.Context, network string, address string) (net.Conn, error) { - return forward.Dial(network, address) - } - } - if auth != nil { - up := socks.UsernamePassword{ - Username: auth.User, - Password: auth.Password, - } - d.AuthMethods = []socks.AuthMethod{ - socks.AuthMethodNotRequired, - socks.AuthMethodUsernamePassword, - } - d.Authenticate = up.Authenticate - } - return d, nil -} diff --git a/vendor/local/.gitignore b/vendor/local/.gitignore deleted file mode 100644 index 19fc60a..0000000 --- a/vendor/local/.gitignore +++ /dev/null @@ -1,12 +0,0 @@ -*.key -*.crt -*.pem -*.swp -*.swo -*.pub -cli-keys -fake-ssh -gcpkeys -*.json -*mnt -ssh-portable diff --git a/vendor/local/encoder/bop.go b/vendor/local/encoder/bop.go deleted file mode 100644 index 12cf536..0000000 --- a/vendor/local/encoder/bop.go +++ /dev/null @@ -1,625 +0,0 @@ -package encoder - -import ( - "bytes" - "compress/gzip" - "crypto/aes" - "crypto/cipher" - "crypto/rand" - "io" - "io/ioutil" - "local/encoder/pipe" - "local/encryptor" - "local/logger" - "strconv" - - "github.com/golang/snappy" - "github.com/klauspost/reedsolomon" - "github.com/pierrec/lz4" -) - -var PipeBuffSize = aes.BlockSize + 2 - -type BOP3 interface { - Wrap3(chan []byte) chan []byte - Unwrap3(chan []byte) chan []byte - BOP -} - -type BOP2 interface { - Wrap2(io.Reader) io.Reader - Unwrap2(io.Reader) io.Reader - BOP -} - -type BOP interface { - Wrap([]byte) []byte - Unwrap([]byte) []byte -} - -type Zipper struct{} -type snapper struct{} -type symCryptor struct{ encryptor.Encryptor } -type asymCryptor struct{ encryptor.Encryptor } -type Salter struct{ n int } -type LZ4 struct{} -type AES struct { - Key []byte - keylen int - block cipher.Block -} -type PAR2 struct { - chunks int - pars int - enc reedsolomon.Encoder -} - -func (p *PAR2) fix() error { - if p.chunks == 0 { - p.chunks = 50 - } - if p.pars == 0 { - p.pars = 5 - } - if p.enc == nil { - e, err := reedsolomon.New(p.chunks, p.pars) - p.enc = e - return err - } - return nil -} -func (p *PAR2) Wrap(b []byte) []byte { - if p.fix() != nil { - return b - } - split, err := p.enc.Split(b) - if err != nil { - return b - } - if err := p.enc.Encode(split); err != nil { - return b - } - if ok, err := p.enc.Verify(split); err != nil || !ok { - return b - } - l := strconv.Itoa(len(b)) - l = string(byte(len(l))) + l - b = []byte(l) - for i := range split { - b = append(b, split[i]...) - } - return b -} -func (p *PAR2) Unwrap(b []byte) []byte { - if p.fix() != nil { - return b - } - l := int(b[0]) - o := b[1 : l+1] - c := b[l+1:] - m, err := strconv.Atoi(string(o)) - if err != nil { - return b - } - split := make([][]byte, p.chunks+p.pars) - chunklen := len(c) / (p.chunks + p.pars) - for i := range split { - split[i] = c[i*chunklen : (i+1)*chunklen] - } - if err := p.enc.Reconstruct(split); err != nil { - return b - } - d := []byte{} - for i := 0; i < p.chunks; i++ { - d = append(d, split[i]...) - } - return d[:m] -} - -func (z *Zipper) Wrap3(b chan []byte) chan []byte { - out := make(chan []byte) - go func() { - defer close(out) - pipeR, pipeW := io.Pipe() - go func() { - zw := gzip.NewWriter(pipeW) - defer pipeW.Close() - defer zw.Close() - for input := range b { - if _, err := zw.Write(input); err != nil { - panic(err) - } - } - }() - for { - subbuff := make([]byte, PipeBuffSize) - n, err := pipeR.Read(subbuff) - if err != nil && err != io.EOF { - panic(err) - } else if n > 0 { - out <- copyBSlice(subbuff[:n]) - } - if err == io.EOF { - break - } - } - }() - return out -} -func (z *Zipper) Unwrap3(b chan []byte) chan []byte { - out := make(chan []byte) - go func() { - pipeR, pipeW := io.Pipe() - defer close(out) - go func() { - defer pipeW.Close() - for input := range b { - if _, err := pipeW.Write(input); err != nil { - panic(err) - } - } - }() - zr, err := gzip.NewReader(pipeR) - if err != nil { - panic(err) - } - buff := make([]byte, PipeBuffSize) - for { - n, err := zr.Read(buff) - if err != nil && err != io.EOF { - panic(err) - } - if n > 0 { - out <- copyBSlice(buff[:n]) - } - if err == io.EOF { - break - } - } - }() - return out -} - -func (z *Zipper) Wrap2(b io.Reader) io.Reader { - pipe := pipe.New() - pipe.SetCap(PipeBuffSize) - zw := gzip.NewWriter(pipe) - go func() { - defer pipe.Close() - defer zw.Close() - buff := make([]byte, PipeBuffSize) - if _, err := io.CopyBuffer(zw, b, buff); err != nil { - panic(err) - } - }() - return pipe -} -func (z *Zipper) Unwrap2(b io.Reader) io.Reader { - pipe := pipe.New() - pipe.SetCap(PipeBuffSize) - go func() { - defer pipe.Close() - zr, err := gzip.NewReader(b) - if err != nil && err != io.EOF { - panic(err) - } else if err == nil { - if _, err := io.Copy(pipe, zr); err != nil { - panic(err) - } - defer zr.Close() - } - }() - return pipe -} - -func (z *Zipper) Wrap(b []byte) []byte { - var buf bytes.Buffer - zw := gzip.NewWriter(&buf) - if _, err := zw.Write(b); err != nil { - return b - } - zw.Close() - return buf.Bytes() -} - -func (z *Zipper) Unwrap(b []byte) []byte { - buf := bytes.NewBuffer(b) - zw, err := gzip.NewReader(buf) - if err != nil { - return b - } - decompressed, err := ioutil.ReadAll(zw) - if err != nil { - return b - } - return decompressed -} - -func (s *Salter) Unwrap3(b chan []byte) chan []byte { - out := make(chan []byte) - go func() { - defer close(out) - first := <-b - saltLen := int(first[0]) - for len(first) < saltLen+1 { - first = append(first, <-b...) - } - first = first[saltLen+1:] - out <- copyBSlice(first) - for input := range b { - out <- copyBSlice(input) - } - }() - return out -} - -func (s *Salter) Wrap3(b chan []byte) chan []byte { - out := make(chan []byte) - salt := s.makeSalt() - go func() { - defer close(out) - out <- copyBSlice(salt) - for input := range b { - out <- copyBSlice(input) - } - }() - return out -} - -func (s *Salter) makeSalt() []byte { - n := 21 - if s.n > 0 { - n = s.n - } - salt := make([]byte, n) - _, err := rand.Read(salt) - if err != nil { - return nil - } - return append([]byte{byte(len(salt))}, salt...) -} - -func (s *Salter) Wrap2(b io.Reader) io.Reader { - salt := s.makeSalt() - - pipe := pipe.New() - pipe.SetCap(PipeBuffSize) - go func() { - defer pipe.Close() - if _, err := pipe.Write(salt); err != nil { - panic(err) - } - tmpbuff := make([]byte, PipeBuffSize) - if _, err := io.CopyBuffer(pipe, b, tmpbuff); err != nil { - panic(err) - } - }() - return pipe -} - -func (s *Salter) Unwrap2(b io.Reader) io.Reader { - buff := make([]byte, 1) - if _, err := b.Read(buff); err != nil && err != io.EOF { - panic(err) - } - l := int(buff[0]) - buff = make([]byte, l) - if _, err := b.Read(buff); err != nil && err != io.EOF { - panic(err) - } - pipe := pipe.New() - pipe.SetCap(PipeBuffSize) - go func() { - defer pipe.Close() - if _, err := io.Copy(pipe, b); err != nil && err != io.EOF { - panic(err) - } - }() - return pipe -} - -func (s *Salter) Wrap(b []byte) []byte { - salt := s.makeSalt() - - return append(salt, b...) -} - -func (s *Salter) Unwrap(b []byte) []byte { - if len(b) < 1 { - return b - } - l := int(b[0]) - if l > len(b)+1 { - return b - } - return b[1+l:] -} - -func (sc *symCryptor) Wrap(b []byte) []byte { - return []byte(sc.Encrypt(string(b))) -} - -func (sc *symCryptor) Unwrap(b []byte) []byte { - return []byte(sc.Decrypt(string(b))) -} - -func (sc *asymCryptor) Wrap(b []byte) []byte { - return []byte(sc.Encrypt(string(b))) -} - -func (sc *asymCryptor) Unwrap(b []byte) []byte { - return []byte(sc.Decrypt(string(b))) -} - -func (s *snapper) Wrap(b []byte) []byte { - return snappy.Encode(nil, b) -} - -func (s *snapper) Unwrap(b []byte) []byte { - d, err := snappy.Decode(nil, b) - if err != nil { - return b - } - return d -} - -func (s *AES) Wrap3(b chan []byte) chan []byte { - s.fix() - out := make(chan []byte) - - go func() { - defer close(out) - - // IV - iv := make([]byte, aes.BlockSize) - if n, err := io.ReadFull(rand.Reader, iv); err != nil || n != len(iv) { - panic(err) - } - out <- copyBSlice(iv) - - // cipher - ttl := int64(0) - stream := cipher.NewCFBEncrypter(s.block, iv) - for input := range b { - ttl += int64(len(input)) - stream.XORKeyStream(input, input) - if len(input) > 0 { - out <- copyBSlice(input) - } - } - - // padding - out <- copyBSlice(s.getPadding(ttl)) - }() - - return out -} - -func (s *AES) Wrap2(b io.Reader) io.Reader { - s.fix() - pipe := pipe.New() - pipe.SetCap(PipeBuffSize) - - go func() { - defer pipe.Close() - - // IV - iv := make([]byte, aes.BlockSize) - if n, err := io.ReadFull(rand.Reader, iv); err != nil || n != len(iv) { - panic(err) - } - pipe.Write(iv) - - // cipher - ttl := int64(0) - stream := cipher.NewCFBEncrypter(s.block, iv) - buff := make([]byte, PipeBuffSize) - for n, err := b.Read(buff); err == nil || err == io.EOF; n, err = b.Read(buff) { - ttl += int64(n) - stream.XORKeyStream(buff[:n], buff[:n]) - if m, err := pipe.Write(buff[:n]); err != nil || m != n { - panic(err) - } - if err == io.EOF { - break - } - } - - // padding - pipe.Write(s.getPadding(ttl)) - }() - - return pipe -} - -func (s *AES) Unwrap2(b io.Reader) io.Reader { - s.fix() - pipe := pipe.New() - pipe.SetCap(PipeBuffSize) - - go func() { - defer pipe.Close() - - // IV - var iv []byte - add := make([]byte, PipeBuffSize) - for len(iv) < aes.BlockSize { - n, err := b.Read(add) - if err != nil && err != io.EOF { - panic(err) - } - iv = append(iv, add[:n]...) - } - last := iv[aes.BlockSize:] - iv = iv[:aes.BlockSize] - - // cipher - var n int - var err error - stream := cipher.NewCFBDecrypter(s.block, iv) - for n, err = b.Read(add); err == nil || err == io.EOF; n, err = b.Read(add) { - last = append(last, add[:n]...) - stream.XORKeyStream(last[:len(last)-s.needModZero()], last[:len(last)-s.needModZero()]) - pipe.Write(last[:len(last)-s.needModZero()]) - last = last[len(last)-s.needModZero():] - if err == io.EOF { - break - } - } - if err != nil && err != io.EOF { - panic(err) - } - // padding - trim := int(last[len(last)-1]) - last = last[:len(last)-trim] - stream.XORKeyStream(last, last) - pipe.Write(last) - }() - - return pipe -} - -func (s *AES) Unwrap3(b chan []byte) chan []byte { - s.fix() - out := make(chan []byte) - - go func() { - defer close(out) - - // IV - var lastTwo [2][]byte - var iv []byte - for len(iv) < aes.BlockSize { - add := <-b - if len(add) >= aes.BlockSize-len(iv) { - isIV := aes.BlockSize - len(iv) - lastTwo[0] = add[isIV:] - add = add[:isIV] - } - iv = append(iv, add...) - } - - // cipher - stream := cipher.NewCFBDecrypter(s.block, iv) - for input := range b { - stream.XORKeyStream(lastTwo[1], lastTwo[1]) - if len(lastTwo[1]) > 0 { - out <- copyBSlice(lastTwo[1]) - } - lastTwo[1] = lastTwo[0] - lastTwo[0] = input - } - last := append(lastTwo[1], lastTwo[0]...) - // padding - trim := int(last[len(last)-1]) - last = last[:len(last)-trim] - stream.XORKeyStream(last, last) - if len(last) > 0 { - out <- copyBSlice(last) - } - }() - - return out -} - -func (s *AES) Wrap(b []byte) []byte { - s.fix() - - c := s.pad(b) - - d := make([]byte, aes.BlockSize+len(c)) - iv := d[:aes.BlockSize] - if _, err := io.ReadFull(rand.Reader, iv); err != nil { - return nil - } - - stream := cipher.NewCFBEncrypter(s.block, iv) - stream.XORKeyStream(d[aes.BlockSize:], c) - - return d -} - -func (s *AES) Unwrap(b []byte) []byte { - s.fix() - - iv := b[:aes.BlockSize] - b = b[aes.BlockSize:] - - stream := cipher.NewCFBDecrypter(s.block, iv) - stream.XORKeyStream(b, b) - - return s.unpad(b) -} -func (s *AES) fix() { - if s.keylen < 1 { - s.keylen = 32 - } - if len(s.Key) != s.keylen { - s.Key = bytes.Repeat(append(s.Key, 0), s.keylen)[:s.keylen] - } - if s.block == nil { - s.block, _ = aes.NewCipher(s.Key) - } -} - -func (s *AES) unpad(b []byte) []byte { - s.fix() - if len(b) < 1 || len(b) < int(b[len(b)-1]) { - return b - } - return b[:len(b)-int(b[len(b)-1])] -} - -func (s *AES) pad(b []byte) []byte { - s.fix() - return append(b, s.getPadding(int64(len(b)))...) -} - -func (s *AES) getPadding(l int64) []byte { - padding := int(int64(s.needModZero()) - l%int64(s.needModZero())) - return bytes.Repeat([]byte{byte(padding)}, padding) -} - -func (s *AES) needModZero() int { - return aes.BlockSize -} - -func (l *LZ4) Wrap(b []byte) []byte { - var buf bytes.Buffer - w := lz4.NewWriter(&buf) - if _, err := io.Copy(w, bytes.NewBuffer(b)); err != nil { - panic(err) - } - if err := w.Close(); err != nil { - panic(err) - } - return buf.Bytes() -} - -func (l *LZ4) Unwrap(b []byte) []byte { - zr := lz4.NewReader(bytes.NewBuffer(b)) - b, err := ioutil.ReadAll(zr) - if err != nil { - panic(err) - } - return b -} - -func copyBSlice(b []byte) []byte { - return append([]byte{}, b...) -} - -func screenReader(b io.Reader) io.Reader { - return b - c, err := ioutil.ReadAll(b) - if err != nil { - panic(err) - } - logger.Logf("screened %v", len(c)) - if len(c) > 20 { - logger.Logf("%s...%s", c[:5], c[len(c)-5:]) - } else if len(c) > 0 { - logger.Logf("%s", c) - } - return bytes.NewReader(c) -} diff --git a/vendor/local/encoder/bop2_test.go b/vendor/local/encoder/bop2_test.go deleted file mode 100644 index 2a3ba09..0000000 --- a/vendor/local/encoder/bop2_test.go +++ /dev/null @@ -1,61 +0,0 @@ -package encoder - -import ( - "io/ioutil" - "strings" - "testing" -) - -func Test_BOP2(t *testing.T) { - cases := []struct { - bop BOP2 - streamLength int - bufferCapacity int - }{ - { - bop: &Salter{}, - streamLength: 50000, - bufferCapacity: 100, - }, - { - bop: &Salter{}, - streamLength: 50, - bufferCapacity: 40, - }, - { - bop: &AES{Key: []byte("key")}, - streamLength: 50000, - bufferCapacity: 100, - }, - { - bop: &AES{Key: []byte("key")}, - streamLength: 50, - bufferCapacity: 40, - }, - { - bop: &Zipper{}, - streamLength: 50000, - bufferCapacity: 100, - }, - { - bop: &Zipper{}, - streamLength: 50, - bufferCapacity: 40, - }, - } - - for _, c := range cases { - PipeBuffSize = c.bufferCapacity - inputString := strings.Repeat("hello world! ", c.streamLength)[:c.streamLength] - input := strings.NewReader(inputString) - wrappedReader := c.bop.Wrap2(input) - unwrappedReader := c.bop.Unwrap2(wrappedReader) - out, err := ioutil.ReadAll(unwrappedReader) - if err != nil { - t.Fatalf("failed to read from unwrapped: %v", err) - } else if string(out) != inputString { - t.Errorf("wrong output: wanted (%v), got (%v)", len(inputString), len(out)) - } - t.Logf("%T : %v => ? => %v", c.bop, len(inputString), len(out)) - } -} diff --git a/vendor/local/encoder/bop3_test.go b/vendor/local/encoder/bop3_test.go deleted file mode 100644 index db5f45c..0000000 --- a/vendor/local/encoder/bop3_test.go +++ /dev/null @@ -1,75 +0,0 @@ -package encoder - -import ( - "strings" - "testing" -) - -func Test_BOP3(t *testing.T) { - was := PipeBuffSize - defer func() { - PipeBuffSize = was - }() - cases := []struct { - bop BOP3 - sz int - }{ - { - sz: 500, - bop: &AES{Key: []byte("hi")}, - }, - { - sz: 10, - bop: &AES{Key: []byte("hi")}, - }, - { - sz: 500, - bop: &Zipper{}, - }, - { - sz: 10, - bop: &Zipper{}, - }, - { - sz: 500, - bop: &Salter{}, - }, - { - sz: 10, - bop: &Salter{}, - }, - } - - for _, c := range cases { - PipeBuffSize = c.sz - input := strings.Repeat("input", 5) - inch := make(chan []byte) - wrapch := c.bop.Wrap3(inch) - go func() { - for _, ch := range input { - inch <- []byte{byte(ch)} - } - close(inch) - }() - wrapped := "" - for o := range wrapch { - wrapped += string(o) - } - if len(wrapped) < 1 { - t.Errorf("%T : %s => 0 length", c, input) - continue - } - inunwrapch := make(chan []byte) - unwrapch := c.bop.Unwrap3(inunwrapch) - inunwrapch <- []byte(wrapped) - close(inunwrapch) - out := "" - for o := range unwrapch { - out += string(o) - } - if input != out { - t.Errorf("wrap3 failed for %T", c) - } - t.Logf("%T : %v : %s => (%v) => %s", c.bop, c.sz, input, len(wrapped), out) - } -} diff --git a/vendor/local/encoder/bop_test.go b/vendor/local/encoder/bop_test.go deleted file mode 100644 index b347d38..0000000 --- a/vendor/local/encoder/bop_test.go +++ /dev/null @@ -1,111 +0,0 @@ -package encoder - -import ( - "fmt" - "io/ioutil" - "local/encryptor" - "os" - "path" - "strings" - "testing" -) - -func benchmarkBopOp(bop BOP, op int, l int, b *testing.B) { - dir, err := os.Getwd() - if err != nil { - b.Fatalf("cannot get wd: %v", err) - } - input, err := ioutil.ReadFile(path.Join(dir, "bop.go")) - if err != nil { - b.Fatalf("cannot read bop.go: %v", err) - } - for len(input) < l { - input = append(input, input...) - } - if len(input) > l { - input = input[:l] - } - switch op { - case 0: - case 1: - input = bop.Wrap(input) - } - b.N = 4 - b.Run(fmt.Sprintf("%T-%v-%v", bop, op, len(input)), func(b *testing.B) { - for i := 0; i < b.N; i++ { - switch op { - case 0: - bop.Wrap([]byte(string(input))) - case 1: - bop.Unwrap([]byte(string(input))) - } - } - }) -} - -func Test_BOPs_Mem(t *testing.T) { - cases := []struct { - bop BOP - }{ - {bop: &AES{Key: []byte("hello")}}, - {bop: &PAR2{}}, - {bop: &LZ4{}}, - {bop: &Zipper{}}, - } - - base := 50000000 - scale := 10 - for _, c := range cases { - memoryRatioByOp := [4]float64{} - for op := 0; op < 4; op++ { - l := base - if op > 1 { - l *= scale - } - //name := fmt.Sprintf("%T-%d-%d", c.bop, op%2, l) - result := testing.Benchmark(func(b *testing.B) { - b.ReportAllocs() - b.SetBytes(1) - benchmarkBopOp(c.bop, op%2, l, b) - }) - if result.MemBytes > 0 { - memoryRatioByOp[op] = float64(result.MemBytes) / float64(l) - } - //t.Logf("%s: %v", name, memoryRatioByOp[op]) - } - for i := 0; i < 2; i++ { - t.Logf("%T-%d: %v -> %v (%v MB)", c.bop, i, memoryRatioByOp[i], memoryRatioByOp[i+2], memoryRatioByOp[i+2]*float64(scale)*float64(base)/1000/1000) - } - } -} - -func Test_BOPs(t *testing.T) { - cases := []struct { - name string - bop BOP - }{ - {name: "zipper", bop: &Zipper{}}, - {name: "snapper", bop: &snapper{}}, - {name: "symC", bop: &symCryptor{encryptor.NewEncryptor("", "")}}, - {name: "asymC", bop: &asymCryptor{encryptor.NewEncryptor("", "")}}, - {name: "salter", bop: &Salter{}}, - {name: "lz4", bop: &LZ4{}}, - {name: "aes", bop: &AES{Key: []byte("hello")}}, - {name: "par2", bop: &PAR2{}}, - } - - for _, c := range cases { - input := []byte(strings.Repeat("Hello world", 100)) - encoded := c.bop.Wrap(input) - decoded := c.bop.Unwrap(encoded) - if string(input) != string(decoded) { - t.Errorf("BOP %v failed: len(inp)=%v, len(enc)=%v, len(dec)=%v", c.name, len(input), len(encoded), len(decoded)) - } - } -} - -func Test_AES_Padding(t *testing.T) { - for i := 0; i < 100; i++ { - t.Logf("%v => %v", i, len((&AES{}).getPadding(int64(i)))) - } -} diff --git a/vendor/local/encoder/config.go b/vendor/local/encoder/config.go deleted file mode 100644 index 7755a06..0000000 --- a/vendor/local/encoder/config.go +++ /dev/null @@ -1,7 +0,0 @@ -package encoder - -type Config struct { - SymKey string - SymKeyOnly bool - KeyPath string -} diff --git a/vendor/local/encoder/encoder.go b/vendor/local/encoder/encoder.go deleted file mode 100644 index c9aad98..0000000 --- a/vendor/local/encoder/encoder.go +++ /dev/null @@ -1,252 +0,0 @@ -package encoder - -import ( - "errors" - "io" - "local/encryptor" - "os" - "path" -) - -type Encoder struct { - bops []BOP -} - -func New(config *Config, bops ...BOP) (*Encoder, error) { - if len(bops) != 0 { - return &Encoder{bops: bops}, nil - } - - bops = []BOP{ - &Zipper{}, - &Salter{}, - } - - if config != nil { - if config.SymKey != "" { - bops = append(bops, &AES{Key: []byte(config.SymKey)}) - } - - if !config.SymKeyOnly { - var encr encryptor.Encryptor - if path.Base(config.KeyPath) == "env" { - pub := os.Getenv("PUB") - pri := os.Getenv("PRI") - if pub == "" || pri == "" { - return nil, errors.New("PUB and PRI cannot be empty") - } - encr = encryptor.NewEncryptor(pri, pub, false) - } else if config.KeyPath != "" { - encr = encryptor.NewEncryptor("", "", false) - priKeyPath := path.Join(config.KeyPath, "key.pri") - pubKeyPath := path.Join(config.KeyPath, "key.pub") - defer encr.ToFiles(priKeyPath, pubKeyPath) - if err := encr.FromFiles(priKeyPath, pubKeyPath); err != nil { - return nil, err - } - } else { - encr = encryptor.NewEncryptor("", "", false) - } - bops = append(bops, &asymCryptor{Encryptor: encr}) - } - } - - bops = append(bops, &Zipper{}) - return &Encoder{ - bops: bops, - }, nil -} - -func (e *Encoder) Encode2(r io.Reader) (io.Reader, error) { - pipeR, pipeW := io.Pipe() - go func() { - defer pipeW.Close() - for i := 0; i < len(e.bops); i++ { - r = e.bops[i].(BOP2).Wrap2(r) - } - if _, err := io.Copy(pipeW, r); err != nil { - panic(err) - } - }() - return pipeR, nil -} - -func (e *Encoder) Decode2(r io.Reader) (io.Reader, error) { - pipeR, pipeW := io.Pipe() - go func() { - defer pipeW.Close() - r = screenReader(r) - for i := len(e.bops) - 1; i >= 0; i-- { - r = e.bops[i].(BOP2).Unwrap2(r) - r = screenReader(r) - } - if _, err := io.Copy(pipeW, r); err != nil { - panic(err) - } - }() - return pipeR, nil -} - -func (e *Encoder) Encode3(r io.Reader) (io.Reader, error) { - pipeR, pipeW := io.Pipe() - - bopCh := make([]chan []byte, len(e.bops)+1) - inputChIndex := len(bopCh) - 1 - bopCh[inputChIndex] = make(chan []byte) - //[0]=bops[0]([n+1]) - //[1]=bops[1]([0]) - //... - //[n]=bops[n]([n-1]) - //[n+1]=firstin - for i := range e.bops { - bopCh[i] = e.bops[i].(BOP3).Wrap3(bopCh[(i-1+len(bopCh))%len(bopCh)]) - } - go func() { - defer pipeW.Close() - for input := range bopCh[inputChIndex-1] { - if _, err := pipeW.Write(input); err != nil { - panic(err) - } - } - }() - go func() { - defer close(bopCh[inputChIndex]) - buff := make([]byte, 64000) - for { - n, err := r.Read(buff) - if err != nil && err != io.EOF { - panic(err) - } - if n > 0 { - bopCh[inputChIndex] <- copyBSlice(buff[:n]) - } - if err == io.EOF { - break - } - } - }() - return pipeR, nil -} - -func (e *Encoder) Decode3(r io.Reader) (io.Reader, error) { - pipeR, pipeW := io.Pipe() - - bopCh := make([]chan []byte, len(e.bops)+1) - inputChIndex := len(bopCh) - 1 - bopCh[inputChIndex] = make(chan []byte) - //[0]=bops[0]([1]) - //[1]=bops[1]([2]) - //... - //[n]=bops[n]([n+1]) - //[n+1]=firstin - for i := len(e.bops) - 1; i >= 0; i-- { - bopCh[i] = e.bops[i].(BOP3).Unwrap3(bopCh[i+1]) - } - go func() { - defer pipeW.Close() - for input := range bopCh[0] { - if _, err := pipeW.Write(input); err != nil { - panic(err) - } - } - }() - go func() { - defer close(bopCh[inputChIndex]) - buff := make([]byte, 64000) - for { - n, err := r.Read(buff) - if err != nil && err != io.EOF { - panic(err) - } - if n > 0 { - bopCh[inputChIndex] <- copyBSlice(buff[:n]) - } - if err == io.EOF { - break - } - } - }() - return pipeR, nil -} - -func (e *Encoder) Encode(payload []byte, metadata ...[]byte) ([]byte, error) { - if len(payload) == 0 { - return nil, nil - } - - for i := range e.bops { - payload = e.bops[i].Wrap(payload) - if len(payload) == 0 { - return nil, errors.New("cannot encode payload") - } - } - - return e.WriteMetadata(payload, metadata) -} - -func (e *Encoder) Decode(payload []byte) ([]byte, error) { - metalen, err := e.metadataLength(payload) - if err != nil { - return nil, err - } - payload = payload[metalen:] - - if len(payload) == 0 { - return nil, nil - } - - for i := len(e.bops); i > 0; i-- { - payload = e.bops[i-1].Unwrap(payload) - if len(payload) == 0 { - return nil, errors.New("cannot decode payload") - } - } - - return payload, nil -} - -func (e *Encoder) WriteMetadata(payload []byte, metadata [][]byte) ([]byte, error) { - meta := []byte{byte(len(metadata))} - for i := range metadata { - meta = append(meta, byte(len(metadata[i]))) - meta = append(meta, metadata[i]...) - } - payload = append(meta, payload...) - return payload, nil -} - -func (e *Encoder) ReadMetadata(payload []byte) ([][]byte, error) { - metadata := [][]byte{} - if len(payload) < 2 { - return nil, nil - } - metalen := int(payload[0]) - payload = payload[1:] - for i := 0; i < metalen; i++ { - if len(payload) < 1 { - return nil, nil - } - j := payload[0] - if len(payload) < 1+int(j) { - return nil, nil - } - metadata = append(metadata, payload[1:1+int(j)]) - payload = payload[1+int(j):] - } - return metadata, nil -} - -func (e *Encoder) metadataLength(payload []byte) (int, error) { - metadata, err := e.ReadMetadata(payload) - if err != nil { - return 0, err - } - n := 1 - for i := range metadata { - n += 1 + len(metadata[i]) - } - if len(payload) < n { - return 0, nil - } - return n, nil -} diff --git a/vendor/local/encoder/encoder_test.go b/vendor/local/encoder/encoder_test.go deleted file mode 100644 index 790029c..0000000 --- a/vendor/local/encoder/encoder_test.go +++ /dev/null @@ -1,405 +0,0 @@ -package encoder - -import ( - "bytes" - "crypto/aes" - "fmt" - "io" - "io/ioutil" - "local/encryptor" - "strings" - "testing" -) - -func Test_Encoder2(t *testing.T) { - cases := []struct { - bops []BOP - streamLength int - bufferCapacity int - }{ - { - bops: []BOP{ - &Zipper{}, - &Salter{}, - &AES{Key: []byte("key")}, - &Zipper{}, - }, - streamLength: 0, - bufferCapacity: 250, - }, - { - bops: []BOP{ - &Zipper{}, - &Salter{}, - &AES{Key: []byte("key")}, - &Zipper{}, - }, - streamLength: 76 * 1000 * 1000, - bufferCapacity: 250, - }, - { - bops: []BOP{ - &AES{Key: []byte("key")}, - }, - streamLength: 7500, - bufferCapacity: 250, - }, - { - bops: []BOP{ - &Salter{}, - }, - streamLength: 7500, - bufferCapacity: 250, - }, - { - bops: []BOP{ - &Zipper{}, - }, - streamLength: 7500, - bufferCapacity: 250, - }, - { - bops: []BOP{ - &AES{Key: []byte("key")}, - }, - streamLength: 75, - bufferCapacity: 25, - }, - { - bops: []BOP{ - &Salter{}, - }, - streamLength: 75, - bufferCapacity: 25, - }, - { - bops: []BOP{ - &Zipper{}, - }, - streamLength: 75, - bufferCapacity: 25, - }, - { - bops: []BOP{ - &Zipper{}, - &Salter{}, - &AES{Key: []byte("key")}, - &Zipper{}, - }, - streamLength: 7500, - bufferCapacity: 250, - }, - { - bops: []BOP{ - &Zipper{}, - &Salter{}, - &AES{Key: []byte("key")}, - &Zipper{}, - }, - streamLength: 75, - bufferCapacity: 25, - }, - } - - for _, c := range cases { - PipeBuffSize = c.bufferCapacity - enc, _ := New(nil, c.bops...) - input := strings.Repeat("hello world", c.streamLength)[:c.streamLength] - inputReader := strings.NewReader(input) - encodedReader, err := enc.Encode2(inputReader) - if err != nil { - t.Fatalf("cannot encode2: %v", err) - } - encoded, err := ioutil.ReadAll(encodedReader) - if err != nil { - t.Fatalf("cannot read encdoed: %v", err) - } - encodedReader = bytes.NewReader(encoded) - decodedReader, err := enc.Decode2(encodedReader) - if err != nil { - t.Fatalf("cannot decode2: %v", err) - } - out, err := ioutil.ReadAll(decodedReader) - if err != nil { - t.Fatalf("cannot gather decoded: %v", err) - } - if string(out) != input { - t.Errorf("wrong encdoed-decoded: got %v, wanted %v", len(out), len(input)) - } - } -} - -func Test_Encoder3_Enc(t *testing.T) { - was := PipeBuffSize - defer func() { - PipeBuffSize = was - }() - PipeBuffSize = aes.BlockSize + 2 - cases := []struct { - bops []BOP - }{ - {bops: []BOP{&Salter{}}}, - {bops: []BOP{&Zipper{}}}, - {bops: []BOP{&Zipper{}, &Salter{}}}, - {bops: []BOP{&Salter{}, &Zipper{}}}, - {bops: []BOP{&AES{Key: []byte("key")}}}, - } - - for _, c := range cases { - title := "---" - for i := range c.bops { - title += fmt.Sprintf(" %T", c.bops[i]) - } - enc, err := New(nil, c.bops...) - if err != nil { - t.Fatalf("cannot create new encoder: %v", err) - } - input := strings.Repeat("hello world", PipeBuffSize*2)[:PipeBuffSize*2] - inputReader := bytes.NewBuffer([]byte(input)) - encodeReader, err := enc.Encode3(inputReader) - if err != nil { - t.Fatalf("cannot get encode reader: %v", err) - } - out, err := ioutil.ReadAll(encodeReader) - if err != nil { - t.Fatalf("cannot read from decode reader: %v", err) - } - t.Logf("%s : %s => %s", title, input, out) - } -} -func Test_Encoder3_All(t *testing.T) { - was := PipeBuffSize - defer func() { - PipeBuffSize = was - }() - PipeBuffSize = aes.BlockSize + 2 - cases := []struct { - bops []BOP - }{ - {bops: []BOP{&Salter{}}}, - {bops: []BOP{&Zipper{}}}, - {bops: []BOP{&AES{Key: []byte("key")}}}, - {bops: []BOP{&Zipper{}, &Salter{}}}, - {bops: []BOP{&Salter{}, &Zipper{}}}, - {bops: []BOP{&Zipper{}, &Salter{}, &AES{Key: []byte("key")}, &Zipper{}}}, - } - - for _, c := range cases { - title := "///" - for i := range c.bops { - title += fmt.Sprintf(" %T", c.bops[i]) - } - enc, err := New(nil, c.bops...) - if err != nil { - t.Fatalf("cannot create new encoder: %v", err) - } - input := strings.Repeat("hello world", PipeBuffSize*2)[:PipeBuffSize*2] - inputReader := bytes.NewBuffer([]byte(input)) - encodeReader, err := enc.Encode3(inputReader) - if err != nil { - t.Fatalf("cannot get encode reader: %v", err) - } - var decodeReader io.Reader - if false { - encodedString, err := ioutil.ReadAll(encodeReader) - if err != nil { - t.Fatalf("cannot gather encoded: %v", err) - } - decodeReader, err = enc.Decode3(bytes.NewBuffer(encodedString)) - } else { - decodeReader, err = enc.Decode3(encodeReader) - } - if err != nil { - t.Fatalf("cannot get decode reader: %v", err) - } - out, err := ioutil.ReadAll(decodeReader) - if err != nil { - t.Fatalf("cannot read from decode reader: %v", err) - } - if string(out) != input { - t.Errorf("failed test with %v bops", len(c.bops)) - } - t.Logf("%v : %s => %s", c.bops, input, out) - } -} - -func Test_Encoder(t *testing.T) { - input := "My secret secret" - conf := &Config{ - SymKey: "letme123in", - SymKeyOnly: false, - KeyPath: "", - } - enc, err := New(conf) - if err != nil { - t.Fatalf("cannot create new encoder: %v", err) - } - - packed, err := enc.Encode([]byte(input), []byte("meta"), []byte("META 22222!!!!")) - if err != nil { - t.Fatalf("cannot encode with new encoder: %v", err) - } - unpacked, err := enc.Decode(packed) - if err != nil { - t.Fatalf("cannot decode with new encoder: %v", err) - } - if string(unpacked) != input { - t.Fatalf("unpacked != input: %v vs %v", string(unpacked), input) - } - - packed, err = enc.Encode([]byte(input)) - if err != nil { - t.Fatalf("cannot encode with new encoder: %v", err) - } - unpacked, err = enc.Decode(packed) - if err != nil { - t.Fatalf("cannot decode with new encoder: %v", err) - } - if string(unpacked) != input { - t.Fatalf("unpacked != input: %v vs %v", string(unpacked), input) - } - - t.Logf("prepacked: %q, packed len: %v, unpacked: %q", input, len(packed), string(unpacked)) -} - -var metaname = []byte("META NAME") -var metavalue = []byte("META VALUE") - -func Test_Encoder_BOP_Combos(t *testing.T) { - enc := encryptor.NewEncryptor("", "") - sym := encryptor.NewEncryptor("", "") - sym.SetSymmetric(sym.GetPublic()) - - encAndDec(t, makeSomeEnc(), "default") - encAndDec(t, makeSomeEnc( - &Salter{}, - &asymCryptor{Encryptor: enc}, - &AES{Key: []byte(sym.GetPublic())}, - &Zipper{}, - ), "salt_asym_sym_zip") - encAndDec(t, makeSomeEnc( - &Zipper{}, - &Salter{}, - &asymCryptor{Encryptor: enc}, - &AES{Key: []byte(sym.GetPublic())}, - &Zipper{}, - ), "zip_salt_asym_sym_zip") - encAndDec(t, makeSomeEnc( - &snapper{}, - &Salter{}, - &asymCryptor{Encryptor: enc}, - &AES{Key: []byte(sym.GetPublic())}, - &snapper{}, - ), "snap_salt_asym_sym_snap") - encAndDec(t, makeSomeEnc( - &Salter{}, - &asymCryptor{Encryptor: enc}, - &AES{Key: []byte(sym.GetPublic())}, - &Zipper{}, - ), "salt_asym_sym_zip") - encAndDec(t, makeSomeEnc( - &Zipper{}, - &Salter{}, - &asymCryptor{Encryptor: enc}, - &AES{Key: []byte(sym.GetPublic())}, - ), "zip_salt_asym_sym") - encAndDec(t, makeSomeEnc( - &Zipper{}, - &Salter{}, - &AES{Key: []byte(sym.GetPublic())}, - &asymCryptor{Encryptor: enc}, - &Zipper{}, - ), "zip_salt_sym_asym_zip") - encAndDec(t, makeSomeEnc( - &Zipper{}, - &Salter{n: 50}, - &AES{Key: []byte(sym.GetPublic())}, - &asymCryptor{Encryptor: enc}, - &Zipper{}, - ), "zip_salt50_sym_asym_zip") - encAndDec(t, makeSomeEnc( - &Zipper{}, - &Salter{n: 10}, - &AES{Key: []byte(sym.GetPublic())}, - &asymCryptor{Encryptor: enc}, - &Zipper{}, - ), "zip_salt10_sym_asym_zip") - syms := []encryptor.Encryptor{} - for i := 0; i < 10; i++ { - e := encryptor.NewEncryptor("", "") - e.SetSymmetric(e.GetPublic()) - syms = append(syms, e) - } - encAndDec(t, makeSomeEnc( - &Zipper{}, - &Salter{n: 10}, - &AES{Key: []byte(syms[0].GetPublic())}, - &AES{Key: []byte(syms[1].GetPublic())}, - &AES{Key: []byte(syms[2].GetPublic())}, - &AES{Key: []byte(syms[3].GetPublic())}, - &AES{Key: []byte(syms[4].GetPublic())}, - &AES{Key: []byte(syms[5].GetPublic())}, - &Zipper{}, - ), "zip_salt10_sym6_zip") - encAndDec(t, makeSomeEnc( - &Salter{n: 10}, - &Zipper{}, - &AES{Key: []byte(sym.GetPublic())}, - &Zipper{}, - ), "salt10_zip_sym_zip") - encAndDec(t, makeSomeEnc( - &Salter{n: 10}, - &LZ4{}, - &AES{Key: []byte(sym.GetPublic())}, - &LZ4{}, - ), "salt10_lz4_sym_lz4") - encAndDec(t, makeSomeEnc( - &LZ4{}, - &Salter{n: 10}, - &AES{Key: []byte(sym.GetPublic())}, - &LZ4{}, - ), "salt10_lz4_sym_lz4") - encAndDec(t, makeSomeEnc( - &LZ4{}, - ), "lz4") - encAndDec(t, makeSomeEnc( - &Zipper{}, - ), "zip") -} - -func encAndDec(t *testing.T, enc *Encoder, name string) { - input := readSomeInput() - packed, err := enc.Encode(input, metaname, metavalue) - if err != nil { - t.Fatal(err) - } - unpacked, err := enc.Decode(packed) - if err != nil { - t.Fatal(err) - } - if string(unpacked) != string(input) { - t.Fatalf("Unpacked != input: len %v vs %v", len(unpacked), len(input)) - } - t.Logf("%30q: %4d -> %4d when packed (%d%%)", name, len(input), len(packed), 100.0*len(packed)/len(input)) -} - -func makeSomeEnc(bops ...BOP) *Encoder { - conf := &Config{ - SymKey: "letme123in", - SymKeyOnly: false, - KeyPath: "", - } - e, err := New(conf, bops...) - if err != nil { - panic(err) - } - return e -} - -func readSomeInput() []byte { - b, err := ioutil.ReadFile("./encoder.go") - if err != nil { - panic(err) - } - return b -} diff --git a/vendor/local/encoder/pipe/pipe.go b/vendor/local/encoder/pipe/pipe.go deleted file mode 100644 index 001c508..0000000 --- a/vendor/local/encoder/pipe/pipe.go +++ /dev/null @@ -1,80 +0,0 @@ -package pipe - -import ( - "fmt" - "io" -) - -type PipeReader struct { - last []byte - buff chan []byte - capacity int -} - -func New() *PipeReader { - return &PipeReader{ - buff: make(chan []byte), - capacity: 64000, - last: nil, - } -} - -func (pr *PipeReader) SetCap(n int) { - pr.capacity = n -} - -func (pr *PipeReader) String() string { - return fmt.Sprintf("buf=%v, cap=%v, last=%v", len(pr.buff), pr.capacity, len(pr.last)) -} - -func (pr *PipeReader) Read(b []byte) (int, error) { - ttl := 0 - m, n, hasMore := xfer(b, pr.last) - pr.last = m - ttl = n - if hasMore { - return ttl, nil - } - for m := range pr.buff { - m, n, hasMore := xfer(b[ttl:], m) - pr.last = m - ttl += n - if hasMore { - return ttl, nil - } - } - return ttl, io.EOF -} - -func (pr *PipeReader) Write(b []byte) (int, error) { - chunklen := pr.capacity / (1 + len(pr.buff)) - wrote := 0 - for wrote+chunklen < len(b) { - pr.buff <- copyByteSlice(b[wrote : wrote+chunklen]) - wrote += chunklen - } - pr.buff <- copyByteSlice(b[wrote:]) - return wrote + len(b[wrote:]), nil -} - -func (pr *PipeReader) Close() error { - close(pr.buff) - return nil -} - -func copyByteSlice(b []byte) []byte { - return append([]byte{}, b...) -} - -func xfer(dst, src []byte) ([]byte, int, bool) { - min := len(dst) - if len(src) < min { - min = len(src) - } - copy(dst[:min], src[:min]) - src = src[min:] - if len(src) > 0 { - return src, min, true - } - return src, min, false -} diff --git a/vendor/local/encoder/pipe/pipe_test.go b/vendor/local/encoder/pipe/pipe_test.go deleted file mode 100644 index 61fb76d..0000000 --- a/vendor/local/encoder/pipe/pipe_test.go +++ /dev/null @@ -1,83 +0,0 @@ -package pipe - -import ( - "io/ioutil" - "strings" - "testing" -) - -func Test_PipeReader_Bench(t *testing.T) { - input := []byte(strings.Repeat("hello world", 1000)) - pr := New() - pr.SetCap(1000) - writing := func() { - defer pr.Close() - if n, err := pr.Write(input); err != nil { - t.Errorf("failed to write: %v", err) - } else if n != len(input) { - t.Errorf("failed to write: wrote %v, expected %v", n, len(input)) - } - } - reading := func() { - if bytes, err := ioutil.ReadAll(pr); err != nil { - t.Errorf("failed to read: %v", err) - } else if len(bytes) != len(input) { - t.Errorf("failed to read: read %v, expected %v", len(bytes), len(input)) - } - } - go writing() - reading() -} - -func Test_PipeReader(t *testing.T) { - cases := []struct { - streamLength int - bufferCap int - }{ - { - streamLength: 10000000, - bufferCap: 50, - }, - { - streamLength: 1000000, - bufferCap: 5000, - }, - { - streamLength: 100, - bufferCap: 50, - }, - { - streamLength: 50, - bufferCap: 100, - }, - { - streamLength: 10, - bufferCap: 5, - }, - { - streamLength: 5, - bufferCap: 10, - }, - } - - for _, c := range cases { - pr := New() - pr.SetCap(c.bufferCap) - input := []byte(strings.Repeat("hello world", c.streamLength)[:c.streamLength]) - go func() { - defer pr.Close() - n, err := pr.Write(input) - if n != c.streamLength || err != nil { - t.Errorf("ERR: failed to write %v bytes to %v cap: %v", c.streamLength, c.bufferCap, err) - } - t.Logf("wrote %v bytes to pipereader", n) - }() - output, err := ioutil.ReadAll(pr) - if err != nil { - t.Errorf("ERR: failed to read %v bytes to %v cap: %v", c.streamLength, c.bufferCap, err) - } else if string(output) != string(input) { - t.Errorf("ERR: sl=%v, bc=%v, read wrong output from pipe: \nwanted %v, \n got %v", c.streamLength, c.bufferCap, len(input), len(output)) - } - t.Logf("read %v bytes from pipereader", len(output)) - } -} diff --git a/vendor/local/encryptor b/vendor/local/encryptor deleted file mode 160000 index 4b65d5e..0000000 --- a/vendor/local/encryptor +++ /dev/null @@ -1 +0,0 @@ -Subproject commit 4b65d5e4a7a4bf79b4a4ec58cae2b04ce24f6387 diff --git a/vendor/local/logger/.gitignore b/vendor/local/logger/.gitignore deleted file mode 100755 index 7c82fcf..0000000 --- a/vendor/local/logger/.gitignore +++ /dev/null @@ -1 +0,0 @@ -logger diff --git a/vendor/local/logger/logger.go b/vendor/local/logger/logger.go deleted file mode 100755 index add1f14..0000000 --- a/vendor/local/logger/logger.go +++ /dev/null @@ -1,102 +0,0 @@ -package logger - -import ( - "errors" - "fmt" - "os" - "time" -) - -var outfile *os.File -var outfileB *os.File - -var lastWasReturn = false - -var ErrCantConfigLog = errors.New("cannot configure log") - -func ConfigFile(f *os.File) { - outfile = f -} - -func Config(path string) error { - if path == "" { - return nil - } - f, err := os.OpenFile(path, os.O_CREATE|os.O_APPEND|os.O_WRONLY, 0600) - if err != nil { - return ErrCantConfigLog - } - outfile = f - return nil -} - -func Logf(args ...interface{}) { - if outfile == nil { - outfile = os.Stderr - } - defer outfile.Sync() - if len(args) == 0 { - fmt.Fprintln(outfile, "") - return - } - v := fmt.Sprintf(args[0].(string), args[1:]...) - if v[len(v)-1] == '\n' { - v = v[:len(v)-1] - } - thisWasReturn := v[0] == '\r' - if lastWasReturn && !thisWasReturn { - fmt.Println() - } - if thisWasReturn { - fmt.Fprintf(outfile, "\r%s%v", prefix(), v[1:]) - } else { - fmt.Fprintf(outfile, "%s%v\n", prefix(), v) - } - lastWasReturn = thisWasReturn -} - -func Fatalf(args ...interface{}) { - Logf(args...) - if len(args) > 0 { - panic(args[0]) - } else { - panic("Panic from logger.fatal()") - } -} - -func Fatal(args ...interface{}) { - Log(args...) - if len(args) > 0 { - panic(args[0]) - } else { - panic("Panic from logger.fatal()") - } -} - -func Log(args ...interface{}) { - if lastWasReturn { - fmt.Println() - } - if outfile == nil { - outfile = os.Stderr - } - v := fmt.Sprintf("%v", args) - v = v[1 : len(v)-1] - fmt.Fprintf(outfile, "%s%v\n", prefix(), v) - outfile.Sync() - lastWasReturn = false -} - -func LogB(args ...interface{}) { - if outfileB == nil { - outfileB = os.Stderr - } - v := fmt.Sprintf("%v", args) - v = v[1 : len(v)-1] - fmt.Fprintf(outfileB, "%s%v\n", prefix(), v) - outfileB.Sync() -} - -func prefix() string { - return time.Now().Format("20060102-150405") + " : " -} diff --git a/work.sh b/work.sh new file mode 100644 index 0000000..e9b77a9 --- /dev/null +++ b/work.sh @@ -0,0 +1,14 @@ +#! /bin/bash +cd "$(dirname "${BASH_SOURCE[0]}")" +if [ ! -d /Volumes/bldisk ]; then + bash ./ramdisk.sh + pushd /Volumes/bldisk/ + for i in secret client.crt client.key server.crt; do + read -p "Ready for $i?" asdf + pbpaste > $i + done + popd +fi +port="${1:-9181}" +echo Proxy on :$port +go build -o /tmp/out && /tmp/out -fromcrt "" -port $port -secret "$(cat /Volumes/bldisk/secret)" -toaddr https://bel.house:41312 -bypass youtube.com,,googlevideo.com,,youtu.be -whitelist 192.168.0.86,,scratch.com