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siegfried.go
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siegfried.go
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// Copyright 2014 Richard Lehane. All rights reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
// Package siegfried identifies file formats
//
// Example:
//
// s, err := siegfried.Load("pronom.sig")
// if err != nil {
// log.Fatal(err)
// }
// f, err := os.Open("file")
// if err != nil {
// log.Fatal(err)
// }
// defer f.Close()
// ids, err := s.Identify(f, "filename.ext", "application/xml")
// if err != nil {
// log.Fatal(err)
// }
// for _, id := range ids {
// fmt.Println(id)
// }
package siegfried
import (
"bytes"
"compress/flate"
"fmt"
"io"
"io/ioutil"
"os"
"strings"
"time"
"github.com/richardlehane/siegfried/internal/bytematcher"
"github.com/richardlehane/siegfried/internal/containermatcher"
"github.com/richardlehane/siegfried/internal/mimematcher"
"github.com/richardlehane/siegfried/internal/namematcher"
"github.com/richardlehane/siegfried/internal/persist"
"github.com/richardlehane/siegfried/internal/riffmatcher"
"github.com/richardlehane/siegfried/internal/siegreader"
"github.com/richardlehane/siegfried/internal/textmatcher"
"github.com/richardlehane/siegfried/internal/xmlmatcher"
"github.com/richardlehane/siegfried/pkg/config"
"github.com/richardlehane/siegfried/pkg/core"
"github.com/richardlehane/siegfried/pkg/loc"
"github.com/richardlehane/siegfried/pkg/mimeinfo"
"github.com/richardlehane/siegfried/pkg/pronom"
// Load Wikidata into a Siegfried...
"github.com/richardlehane/siegfried/pkg/wikidata"
)
var ( // for side effect - register their patterns/ signature loaders
_ = pronom.Range{}
_ = mimeinfo.Int8(0)
_ = loc.Identifier{}
// Is this what we want to do here..?
_ = wikidata.Identifier{}
)
// Siegfried structs are persisent objects that can be serialised to disk and
// used to identify file formats.
// They contain three matchers as well as a slice of identifiers. When identifiers
// are added to a Siegfried struct, they are registered with each matcher.
type Siegfried struct {
// immutable fields
C time.Time // signature create time
nm core.Matcher // namematcher
mm core.Matcher // mimematcher
cm core.Matcher // containermatcher
xm core.Matcher // bytematcher
rm core.Matcher // riffmatcher
bm core.Matcher // bytematcher
tm core.Matcher // textmatcher
// mutatable fields
ids []core.Identifier // identifiers
buffers *siegreader.Buffers
}
// New creates a new Siegfried struct. It initializes the three matchers.
//
// Example:
//
// s := New()
// p, err := pronom.New() // create a new PRONOM identifier
// if err != nil {
// log.Fatal(err)
// }
// err = s.Add(p) // add the identifier to the Siegfried
// if err != nil {
// log.Fatal(err)
// }
// err = s.Save("pronom.sig") // save the Siegfried
func New() *Siegfried {
return &Siegfried{
C: time.Now(),
buffers: siegreader.New(),
}
}
// Add adds an identifier to a Siegfried struct.
func (s *Siegfried) Add(i core.Identifier) error {
for _, v := range s.ids {
if v.Name() == i.Name() {
return fmt.Errorf("siegfried: identifiers must have unique names, you already have an identifier named %s. Use the -name flag to assign a new name e.g. `roy add -name richard`", i.Name())
}
}
var err error
if s.nm, err = i.Add(s.nm, core.NameMatcher); err != nil {
return err
}
if s.mm, err = i.Add(s.mm, core.MIMEMatcher); err != nil {
return err
}
if s.cm, err = i.Add(s.cm, core.ContainerMatcher); err != nil {
return err
}
if s.xm, err = i.Add(s.xm, core.XMLMatcher); err != nil {
return err
}
if s.rm, err = i.Add(s.rm, core.RIFFMatcher); err != nil {
return err
}
if s.bm, err = i.Add(s.bm, core.ByteMatcher); err != nil {
return err
}
if s.tm, err = i.Add(s.tm, core.TextMatcher); err != nil {
return err
}
s.ids = append(s.ids, i)
return nil
}
// Save persists a Siegfried struct to disk (path)
func (s *Siegfried) Save(path string) error {
f, err := os.Create(path)
if err != nil {
return err
}
err = s.SaveWriter(f)
if err != nil {
return err
}
return f.Close()
}
// SaveWriter persists a Siegfried struct to an io.Writer
func (s *Siegfried) SaveWriter(w io.Writer) error {
// sprinkle magic
_, err := w.Write(append(config.Magic(), byte(config.Version()[0]), byte(config.Version()[1])))
if err != nil {
return err
}
// persist the siegfried
ls := persist.NewLoadSaver(nil)
ls.SaveTime(s.C)
namematcher.Save(s.nm, ls)
mimematcher.Save(s.mm, ls)
containermatcher.Save(s.cm, ls)
xmlmatcher.Save(s.xm, ls)
riffmatcher.Save(s.rm, ls)
bytematcher.Save(s.bm, ls)
textmatcher.Save(s.tm, ls)
ls.SaveTinyUInt(len(s.ids))
for _, i := range s.ids {
i.Save(ls)
}
if ls.Err != nil {
return ls.Err
}
// compress
z, err := flate.NewWriter(w, 1)
if err != nil {
return err
}
_, err = z.Write(ls.Bytes())
if err != nil {
return err
}
return z.Close()
}
// Load creates a Siegfried struct and loads content from path
func Load(path string) (*Siegfried, error) {
f, err := os.Open(path)
if err != nil {
return nil, fmt.Errorf("error opening signature file, got %v; try running `sf -update`", err)
}
sf, err := LoadReader(f)
if err != nil {
return nil, err
}
return sf, f.Close()
}
// LoadReader creates a Siegfried struct and loads content from a reader
func LoadReader(r io.Reader) (*Siegfried, error) {
errReading := "error reading signature file, got %v; try running `sf -update`"
errNotSig := "not a siegfried signature file; try running `sf -update`"
errUpdateSig := "signature file is incompatible with this version of sf; try running `sf -update`"
fbuf, err := ioutil.ReadAll(r)
if err != nil {
return nil, err
}
if len(fbuf) < len(config.Magic())+2 {
return nil, fmt.Errorf(errNotSig)
}
if string(fbuf[:len(config.Magic())]) != string(config.Magic()) {
return nil, fmt.Errorf(errNotSig)
}
if major, minor := fbuf[len(config.Magic())], fbuf[len(config.Magic())+1]; major < byte(config.Version()[0]) || (major == byte(config.Version()[0]) && minor < byte(config.Version()[1])) {
return nil, fmt.Errorf(errUpdateSig)
}
rb := bytes.NewBuffer(fbuf[len(config.Magic())+2:])
rc := flate.NewReader(rb)
buf, err := ioutil.ReadAll(rc)
rc.Close()
if err != nil {
return nil, fmt.Errorf(errReading, err)
}
return load(buf)
}
func load(buf []byte) (*Siegfried, error) {
ls := persist.NewLoadSaver(buf)
return &Siegfried{
C: ls.LoadTime(),
nm: namematcher.Load(ls),
mm: mimematcher.Load(ls),
cm: containermatcher.Load(ls),
xm: xmlmatcher.Load(ls),
rm: riffmatcher.Load(ls),
bm: bytematcher.Load(ls),
tm: textmatcher.Load(ls),
ids: func() []core.Identifier {
ids := make([]core.Identifier, ls.LoadTinyUInt())
for i := range ids {
ids[i] = core.LoadIdentifier(ls)
}
return ids
}(),
buffers: siegreader.New(),
}, ls.Err
}
// Identifiers returns a slice of the names and details of each identifier.
func (s *Siegfried) Identifiers() [][2]string {
ret := make([][2]string, len(s.ids))
for i, v := range s.ids {
ret[i][0] = v.Name()
ret[i][1] = v.Details()
}
return ret
}
// Fields returns a slice of the names of the fields in each identifier.
func (s *Siegfried) Fields() [][]string {
ret := make([][]string, len(s.ids))
for i, v := range s.ids {
ret[i] = v.Fields()
}
return ret
}
// Buffer gets a siegreader buffer from the pool
func (s *Siegfried) Buffer(r io.Reader) (*siegreader.Buffer, error) {
buffer, err := s.buffers.Get(r)
if err == io.EOF {
err = nil
}
return buffer, err
}
// Put returns a siegreader buffer to the pool
func (s *Siegfried) Put(buffer *siegreader.Buffer) {
s.buffers.Put(buffer)
}
func satisfied(mt core.MatcherType, recs []core.Recorder) (bool, []core.Hint) {
sat := true
var hints []core.Hint
if mt == core.ByteMatcher || mt == core.ContainerMatcher {
hints = make([]core.Hint, 0, len(recs))
}
for _, rec := range recs {
ok, h := rec.Satisfied(mt)
if mt == core.ByteMatcher || mt == core.ContainerMatcher {
if !ok {
sat = false
if len(h.Pivot) > 0 {
hints = append(hints, h)
}
} else { // if this matcher is satisfied, append a hint with a nil Pivot (which priority knows is satisifed)
hints = append(hints, h)
}
} else if !ok {
sat = false
break
}
}
return sat, hints
}
// IdentifyBuffer identifies a siegreader buffer. Supply the error from Get as the second argument.
func (s *Siegfried) IdentifyBuffer(buffer *siegreader.Buffer, err error, name, mime string) ([]core.Identification, error) {
if err != nil && err != siegreader.ErrEmpty {
return nil, fmt.Errorf("siegfried: error reading file; got %v", err)
}
recs := make([]core.Recorder, len(s.ids))
for i, v := range s.ids {
recs[i] = v.Recorder()
if name != "" {
recs[i].Active(core.NameMatcher)
}
if mime != "" {
recs[i].Active(core.MIMEMatcher)
}
if err == nil {
recs[i].Active(core.XMLMatcher)
recs[i].Active(core.TextMatcher)
}
}
// Log name for debug/slow
if config.Debug() || config.Slow() {
fmt.Fprintf(config.Out(), "[FILE] %s\n", name)
}
// Name Matcher
if len(name) > 0 && s.nm != nil {
nms, _ := s.nm.Identify(name, nil) // we don't care about an error here
for v := range nms {
for _, rec := range recs {
if rec.Record(core.NameMatcher, v) {
break
}
}
}
}
// MIME Matcher
if len(mime) > 0 && s.mm != nil {
mms, _ := s.mm.Identify(mime, nil) // we don't care about an error here
for v := range mms {
for _, rec := range recs {
if rec.Record(core.MIMEMatcher, v) {
break
}
}
}
}
// Container Matcher
_, hints := satisfied(core.ContainerMatcher, recs)
if s.cm != nil {
if config.Debug() {
fmt.Fprintln(config.Out(), ">>START CONTAINER MATCHER")
}
cms, cerr := s.cm.Identify(name, buffer, hints...)
for v := range cms {
for _, rec := range recs {
if rec.Record(core.ContainerMatcher, v) {
break
}
}
}
if err == nil {
err = cerr
}
}
sat, _ := satisfied(core.XMLMatcher, recs)
// XML Matcher
if s.xm != nil && !sat {
if config.Debug() {
fmt.Fprintln(config.Out(), ">>START XML MATCHER")
}
xms, xerr := s.xm.Identify("", buffer)
for v := range xms {
for _, rec := range recs {
if rec.Record(core.XMLMatcher, v) {
break
}
}
}
if err == nil {
err = xerr
}
}
sat, _ = satisfied(core.RIFFMatcher, recs)
// RIFF Matcher
if s.rm != nil && !sat {
if config.Debug() {
fmt.Fprintln(config.Out(), ">>START RIFF MATCHER")
}
rms, rerr := s.rm.Identify("", buffer)
for v := range rms {
for _, rec := range recs {
if rec.Record(core.RIFFMatcher, v) {
break
}
}
}
if err == nil {
err = rerr
}
}
sat, hints = satisfied(core.ByteMatcher, recs)
// Byte Matcher
if s.bm != nil && !sat {
if config.Debug() {
fmt.Fprintln(config.Out(), ">>START BYTE MATCHER")
}
ids, _ := s.bm.Identify("", buffer, hints...) // we don't care about an error here
for v := range ids {
for _, rec := range recs {
if rec.Record(core.ByteMatcher, v) {
break
}
}
}
}
sat, _ = satisfied(core.TextMatcher, recs)
// Text Matcher
if s.tm != nil && !sat {
ids, _ := s.tm.Identify("", buffer) // we don't care about an error here
for v := range ids {
for _, rec := range recs {
if rec.Record(core.TextMatcher, v) {
break
}
}
}
}
if len(recs) < 2 {
return recs[0].Report(), err
}
var res []core.Identification
for idx, rec := range recs {
if config.Slow() || config.Debug() {
for _, id := range rec.Report() {
fmt.Fprintf(config.Out(), "matched: %s\n", id.String())
}
}
if idx == 0 {
res = rec.Report()
continue
}
res = append(res, rec.Report()...)
}
return res, err
}
// Identify identifies a stream or file object.
// It takes an io.Reader and the name and mimetype of the file/stream (if unknown, give empty strings).
// It returns a slice of identifications and an error.
func (s *Siegfried) Identify(r io.Reader, name, mime string) ([]core.Identification, error) {
buffer, err := s.Buffer(r)
defer s.buffers.Put(buffer)
return s.IdentifyBuffer(buffer, err, name, mime)
}
// Label takes the values of a core.Identification and returns a slice that pairs these values with the
// relevant identifier's field labels.
func (s *Siegfried) Label(id core.Identification) [][2]string {
ret := make([][2]string, len(id.Values()))
for i, p := range s.Identifiers() {
if p[0] == id.Values()[0] {
for j, l := range s.Fields()[i] {
ret[j][0] = l
ret[j][1] = id.Values()[j]
}
return ret
}
}
return nil
}
// Blame checks with the byte matcher to see what identification results subscribe to a particular result or test
// tree index. It can be used when identifying in a debug mode to check which identification results trigger
// which strikes.
func (s *Siegfried) Blame(idx, ct int, cn string) string {
toID := func(i int, typ core.MatcherType) string {
for _, id := range s.ids {
if ok, str := id.Recognise(typ, i); ok {
return str
}
}
return ""
}
toIDs := func(iis []int, typ core.MatcherType) []string {
res := make([]string, len(iis))
for i, v := range iis {
res[i] = toID(v, typ)
}
return res
}
if idx < 0 {
buf := &bytes.Buffer{}
if idx < -1 {
fmt.Fprint(buf, "KEY FRAMES\n")
bm := s.bm.(*bytematcher.Matcher)
for i := 0; i < bm.KeyFramesLen(); i++ {
fmt.Fprintf(buf, "---\n%s\n%s\n", toID(i, core.ByteMatcher), strings.Join(bm.DescribeKeyFrames(i), "\n"))
}
} else {
fmt.Fprint(buf, "TEST TREES\n")
bm := s.bm.(*bytematcher.Matcher)
for i := 0; i < bm.TestTreeLen(); i++ {
cres, ires, maxL, maxR, maxLM, maxRM := bm.DescribeTestTree(i)
fmt.Fprintf(buf, "---\nTest Tree %d\nCompletes: %s\nIncompletes: %s\nMax Left Distance: %d\nMax Right Distance: %d\nMax Left Matches: %d\nMax Right Matches: %d\n",
i, strings.Join(toIDs(cres, core.ByteMatcher), ", "), strings.Join(toIDs(ires, core.ByteMatcher), ", "), maxL, maxR, maxLM, maxRM)
}
}
return buf.String()
}
matcher := "BYTE MATCHER"
var ttis []int
if cn != "" {
matcher = "CONTAINER MATCHER"
cm := s.cm.(containermatcher.Matcher)
ttis = cm.InspectTestTree(ct, cn, idx)
res := toIDs(ttis, core.ContainerMatcher)
ttiNames := "not recognised"
if len(res) > 0 {
ttiNames = strings.Join(res, ",")
}
return fmt.Sprintf("%s\nHits at %d: %s (identifies hits reported by -debug)", matcher, idx, ttiNames)
}
bm := s.bm.(*bytematcher.Matcher)
resName := "not recognised"
for _, id := range s.ids {
if ok, str := id.Recognise(core.ByteMatcher, idx); ok {
resName = str
break
}
}
ttiNames := "not recognised"
res := toIDs(bm.InspectTestTree(idx), core.ByteMatcher)
if len(res) > 0 {
ttiNames = strings.Join(res, ",")
}
return fmt.Sprintf("%s\nResults at %d: %s (identifies results reported by -slow)\nHits at %d: %s (identifies hits reported by -debug)", matcher, idx, resName, idx, ttiNames)
}
// Inspect returns a string containing detail about the various matchers in the Siegfried struct.
func (s *Siegfried) Inspect(t core.MatcherType) string {
switch t {
case core.ByteMatcher:
if s.bm != nil {
return s.bm.String()
}
case core.NameMatcher:
if s.nm != nil {
return s.nm.String()
}
case core.MIMEMatcher:
if s.mm != nil {
return s.mm.String()
}
case core.ContainerMatcher:
if s.cm != nil {
return s.cm.String()
}
case core.RIFFMatcher:
if s.rm != nil {
return s.rm.String()
}
case core.TextMatcher:
if s.tm != nil {
return s.tm.String()
}
case core.XMLMatcher:
if s.xm != nil {
return s.xm.String()
}
default:
return fmt.Sprintf("Identifiers\n%s",
func() string {
var str string
for _, i := range s.ids {
str += i.String()
}
return str
}())
}
return "matcher not present in this signature"
}