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[/] [openrisc/] [trunk/] [gnu-dev/] [or1k-gcc/] [libgo/] [go/] [encoding/] [asn1/] [common.go] - Blame information for rev 747

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1 747 jeremybenn
// Copyright 2009 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package asn1
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import (
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        "reflect"
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        "strconv"
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        "strings"
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)
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// ASN.1 objects have metadata preceding them:
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//   the tag: the type of the object
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//   a flag denoting if this object is compound or not
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//   the class type: the namespace of the tag
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//   the length of the object, in bytes
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// Here are some standard tags and classes
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const (
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        tagBoolean         = 1
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        tagInteger         = 2
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        tagBitString       = 3
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        tagOctetString     = 4
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        tagOID             = 6
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        tagEnum            = 10
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        tagUTF8String      = 12
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        tagSequence        = 16
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        tagSet             = 17
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        tagPrintableString = 19
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        tagT61String       = 20
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        tagIA5String       = 22
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        tagUTCTime         = 23
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        tagGeneralizedTime = 24
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        tagGeneralString   = 27
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)
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const (
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        classUniversal       = 0
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        classApplication     = 1
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        classContextSpecific = 2
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        classPrivate         = 3
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)
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type tagAndLength struct {
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        class, tag, length int
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        isCompound         bool
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}
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// ASN.1 has IMPLICIT and EXPLICIT tags, which can be translated as "instead
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// of" and "in addition to". When not specified, every primitive type has a
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// default tag in the UNIVERSAL class.
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//
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// For example: a BIT STRING is tagged [UNIVERSAL 3] by default (although ASN.1
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// doesn't actually have a UNIVERSAL keyword). However, by saying [IMPLICIT
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// CONTEXT-SPECIFIC 42], that means that the tag is replaced by another.
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//
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// On the other hand, if it said [EXPLICIT CONTEXT-SPECIFIC 10], then an
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// /additional/ tag would wrap the default tag. This explicit tag will have the
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// compound flag set.
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//
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// (This is used in order to remove ambiguity with optional elements.)
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//
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// You can layer EXPLICIT and IMPLICIT tags to an arbitrary depth, however we
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// don't support that here. We support a single layer of EXPLICIT or IMPLICIT
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// tagging with tag strings on the fields of a structure.
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// fieldParameters is the parsed representation of tag string from a structure field.
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type fieldParameters struct {
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        optional     bool   // true iff the field is OPTIONAL
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        explicit     bool   // true iff an EXPLICIT tag is in use.
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        application  bool   // true iff an APPLICATION tag is in use.
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        defaultValue *int64 // a default value for INTEGER typed fields (maybe nil).
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        tag          *int   // the EXPLICIT or IMPLICIT tag (maybe nil).
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        stringType   int    // the string tag to use when marshaling.
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        set          bool   // true iff this should be encoded as a SET
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        // Invariants:
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        //   if explicit is set, tag is non-nil.
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}
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// Given a tag string with the format specified in the package comment,
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// parseFieldParameters will parse it into a fieldParameters structure,
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// ignoring unknown parts of the string.
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func parseFieldParameters(str string) (ret fieldParameters) {
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        for _, part := range strings.Split(str, ",") {
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                switch {
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                case part == "optional":
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                        ret.optional = true
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                case part == "explicit":
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                        ret.explicit = true
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                        if ret.tag == nil {
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                                ret.tag = new(int)
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                        }
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                case part == "ia5":
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                        ret.stringType = tagIA5String
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                case part == "printable":
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                        ret.stringType = tagPrintableString
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                case strings.HasPrefix(part, "default:"):
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                        i, err := strconv.ParseInt(part[8:], 10, 64)
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                        if err == nil {
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                                ret.defaultValue = new(int64)
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                                *ret.defaultValue = i
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                        }
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                case strings.HasPrefix(part, "tag:"):
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                        i, err := strconv.Atoi(part[4:])
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                        if err == nil {
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                                ret.tag = new(int)
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                                *ret.tag = i
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                        }
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                case part == "set":
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                        ret.set = true
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                case part == "application":
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                        ret.application = true
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                        if ret.tag == nil {
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                                ret.tag = new(int)
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                        }
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                }
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        }
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        return
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}
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// Given a reflected Go type, getUniversalType returns the default tag number
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// and expected compound flag.
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func getUniversalType(t reflect.Type) (tagNumber int, isCompound, ok bool) {
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        switch t {
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        case objectIdentifierType:
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                return tagOID, false, true
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        case bitStringType:
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                return tagBitString, false, true
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        case timeType:
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                return tagUTCTime, false, true
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        case enumeratedType:
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                return tagEnum, false, true
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        case bigIntType:
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                return tagInteger, false, true
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        }
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        switch t.Kind() {
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        case reflect.Bool:
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                return tagBoolean, false, true
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        case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64:
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                return tagInteger, false, true
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        case reflect.Struct:
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                return tagSequence, true, true
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        case reflect.Slice:
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                if t.Elem().Kind() == reflect.Uint8 {
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                        return tagOctetString, false, true
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                }
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                if strings.HasSuffix(t.Name(), "SET") {
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                        return tagSet, true, true
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                }
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                return tagSequence, true, true
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        case reflect.String:
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                return tagPrintableString, false, true
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        }
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        return 0, false, false
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}

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