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Rob Pikeaaa3a622010-03-20 22:32:34 -07001// Go support for Protocol Buffers - Google's data interchange format
2//
3// Copyright 2010 Google Inc. All rights reserved.
4// http://code.google.com/p/goprotobuf/
5//
6// Redistribution and use in source and binary forms, with or without
7// modification, are permitted provided that the following conditions are
8// met:
9//
10// * Redistributions of source code must retain the above copyright
11// notice, this list of conditions and the following disclaimer.
12// * Redistributions in binary form must reproduce the above
13// copyright notice, this list of conditions and the following disclaimer
14// in the documentation and/or other materials provided with the
15// distribution.
16// * Neither the name of Google Inc. nor the names of its
17// contributors may be used to endorse or promote products derived from
18// this software without specific prior written permission.
19//
20// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
21// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
22// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
23// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
24// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
25// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
26// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
30// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31
32package proto
33
34/*
35 * Routines for decoding protocol buffer data to construct in-memory representations.
36 */
37
38import (
Rob Pikeaaa3a622010-03-20 22:32:34 -070039 "fmt"
40 "io"
41 "os"
42 "reflect"
43 "runtime"
44 "unsafe"
45)
46
47// ErrWrongType occurs when the wire encoding for the field disagrees with
48// that specified in the type being decoded. This is usually caused by attempting
49// to convert an encoded protocol buffer into a struct of the wrong type.
50var ErrWrongType = os.NewError("field/encoding mismatch: wrong type for field")
51
52// The fundamental decoders that interpret bytes on the wire.
53// Those that take integer types all return uint64 and are
54// therefore of type valueDecoder.
55
56// DecodeVarint reads a varint-encoded integer from the slice.
57// It returns the integer and the number of bytes consumed, or
58// zero if there is not enough.
59// This is the format for the
60// int32, int64, uint32, uint64, bool, and enum
61// protocol buffer types.
62func DecodeVarint(buf []byte) (x uint64, n int) {
63 // x, n already 0
64 for shift := uint(0); ; shift += 7 {
65 if n >= len(buf) {
66 return 0, 0
67 }
68 b := uint64(buf[n])
69 n++
70 x |= (b & 0x7F) << shift
71 if (b & 0x80) == 0 {
72 break
73 }
74 }
75 return x, n
76}
77
78// DecodeVarint reads a varint-encoded integer from the Buffer.
79// This is the format for the
80// int32, int64, uint32, uint64, bool, and enum
81// protocol buffer types.
82func (p *Buffer) DecodeVarint() (x uint64, err os.Error) {
83 // x, err already 0
84
85 i := p.index
86 l := len(p.buf)
87
88 for shift := uint(0); ; shift += 7 {
89 if i >= l {
90 err = io.ErrUnexpectedEOF
91 return
92 }
93 b := p.buf[i]
94 i++
95 x |= (uint64(b) & 0x7F) << shift
96 if b < 0x80 {
97 break
98 }
99 }
100 p.index = i
101 return
102}
103
104// DecodeFixed64 reads a 64-bit integer from the Buffer.
105// This is the format for the
106// fixed64, sfixed64, and double protocol buffer types.
107func (p *Buffer) DecodeFixed64() (x uint64, err os.Error) {
108 // x, err already 0
109 i := p.index + 8
110 if i > len(p.buf) {
111 err = io.ErrUnexpectedEOF
112 return
113 }
114 p.index = i
115
116 x = uint64(p.buf[i-8])
117 x |= uint64(p.buf[i-7]) << 8
118 x |= uint64(p.buf[i-6]) << 16
119 x |= uint64(p.buf[i-5]) << 24
120 x |= uint64(p.buf[i-4]) << 32
121 x |= uint64(p.buf[i-3]) << 40
122 x |= uint64(p.buf[i-2]) << 48
123 x |= uint64(p.buf[i-1]) << 56
124 return
125}
126
127// DecodeFixed32 reads a 32-bit integer from the Buffer.
128// This is the format for the
129// fixed32, sfixed32, and float protocol buffer types.
130func (p *Buffer) DecodeFixed32() (x uint64, err os.Error) {
131 // x, err already 0
132 i := p.index + 4
133 if i > len(p.buf) {
134 err = io.ErrUnexpectedEOF
135 return
136 }
137 p.index = i
138
139 x = uint64(p.buf[i-4])
140 x |= uint64(p.buf[i-3]) << 8
141 x |= uint64(p.buf[i-2]) << 16
142 x |= uint64(p.buf[i-1]) << 24
143 return
144}
145
146// DecodeZigzag64 reads a zigzag-encoded 64-bit integer
147// from the Buffer.
148// This is the format used for the sint64 protocol buffer type.
149func (p *Buffer) DecodeZigzag64() (x uint64, err os.Error) {
150 x, err = p.DecodeVarint()
151 if err != nil {
152 return
153 }
154 x = (x >> 1) ^ uint64((int64(x&1)<<63)>>63)
155 return
156}
157
158// DecodeZigzag32 reads a zigzag-encoded 32-bit integer
159// from the Buffer.
160// This is the format used for the sint32 protocol buffer type.
161func (p *Buffer) DecodeZigzag32() (x uint64, err os.Error) {
162 x, err = p.DecodeVarint()
163 if err != nil {
164 return
165 }
166 x = uint64((uint32(x) >> 1) ^ uint32((int32(x&1)<<31)>>31))
167 return
168}
169
170// These are not ValueDecoders: they produce an array of bytes or a string.
171// bytes, embedded messages
172
173// DecodeRawBytes reads a count-delimited byte buffer from the Buffer.
174// This is the format used for the bytes protocol buffer
175// type and for embedded messages.
176func (p *Buffer) DecodeRawBytes(alloc bool) (buf []byte, err os.Error) {
177 n, err := p.DecodeVarint()
178 if err != nil {
179 return
180 }
181
182 nb := int(n)
183 if p.index+nb > len(p.buf) {
184 err = io.ErrUnexpectedEOF
185 return
186 }
187
188 if !alloc {
189 // todo: check if can get more uses of alloc=false
190 buf = p.buf[p.index : p.index+nb]
191 p.index += nb
192 return
193 }
194
195 buf = make([]byte, nb)
196 copy(buf, p.buf[p.index:])
197 p.index += nb
198 return
199}
200
201// DecodeStringBytes reads an encoded string from the Buffer.
202// This is the format used for the proto2 string type.
203func (p *Buffer) DecodeStringBytes() (s string, err os.Error) {
204 buf, err := p.DecodeRawBytes(false)
205 if err != nil {
206 return
207 }
208 return string(buf), nil
209}
210
211// Skip the next item in the buffer. Its wire type is decoded and presented as an argument.
212// If the protocol buffer has extensions, and the field matches, add it as an extension.
213// Otherwise, if the XXX_unrecognized field exists, append the skipped data there.
Rob Pike97e934d2011-04-11 12:52:49 -0700214func (o *Buffer) skipAndSave(t reflect.Type, tag, wire int, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700215
216 oi := o.index
217
218 err := o.skip(t, tag, wire)
219 if err != nil {
220 return err
221 }
222
223 x := fieldIndex(t, "XXX_unrecognized")
224 if x == nil {
225 return nil
226 }
227
228 p := propByIndex(t, x)
229 ptr := (*[]byte)(unsafe.Pointer(base + p.offset))
230
231 if *ptr == nil {
232 // This is the first skipped element,
233 // allocate a new buffer.
234 *ptr = o.bufalloc()
235 }
236
237 // Add the skipped field to struct field
238 obuf := o.buf
239
240 o.buf = *ptr
241 o.EncodeVarint(uint64(tag<<3 | wire))
Rob Pike99fa2b62010-12-02 10:39:42 -0800242 *ptr = append(o.buf, obuf[oi:o.index]...)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700243
244 o.buf = obuf
245
246 return nil
247}
248
249// Skip the next item in the buffer. Its wire type is decoded and presented as an argument.
Rob Pike97e934d2011-04-11 12:52:49 -0700250func (o *Buffer) skip(t reflect.Type, tag, wire int) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700251
252 var u uint64
253 var err os.Error
254
255 switch wire {
256 case WireVarint:
257 _, err = o.DecodeVarint()
258 case WireFixed64:
259 _, err = o.DecodeFixed64()
260 case WireBytes:
261 _, err = o.DecodeRawBytes(false)
262 case WireFixed32:
263 _, err = o.DecodeFixed32()
264 case WireStartGroup:
265 for {
266 u, err = o.DecodeVarint()
267 if err != nil {
268 break
269 }
270 fwire := int(u & 0x7)
271 if fwire == WireEndGroup {
272 break
273 }
274 ftag := int(u >> 3)
275 err = o.skip(t, ftag, fwire)
276 if err != nil {
277 break
278 }
279 }
280 default:
281 fmt.Fprintf(os.Stderr, "proto: can't skip wire type %d for %s\n", wire, t)
282 }
283 return err
284}
285
286// Unmarshaler is the interface representing objects that can unmarshal themselves.
287type Unmarshaler interface {
288 Unmarshal([]byte) os.Error
289}
290
291// Unmarshal parses the protocol buffer representation in buf and places the
292// decoded result in pb. If the struct underlying pb does not match
293// the data in buf, the results can be unpredictable.
294func Unmarshal(buf []byte, pb interface{}) os.Error {
295 // If the object can unmarshal itself, let it.
296 if u, ok := pb.(Unmarshaler); ok {
297 return u.Unmarshal(buf)
298 }
299
300 return NewBuffer(buf).Unmarshal(pb)
301}
302
303// Unmarshal parses the protocol buffer representation in the
304// Buffer and places the decoded result in pb. If the struct
305// underlying pb does not match the data in the buffer, the results can be
306// unpredictable.
307func (p *Buffer) Unmarshal(pb interface{}) os.Error {
308 // If the object can unmarshal itself, let it.
309 if u, ok := pb.(Unmarshaler); ok {
310 err := u.Unmarshal(p.buf[p.index:])
311 p.index = len(p.buf)
312 return err
313 }
314
315 mstat := runtime.MemStats.Mallocs
316
317 typ, base, err := getbase(pb)
318 if err != nil {
319 return err
320 }
321
322 err = p.unmarshalType(typ, false, base)
323
324 mstat = runtime.MemStats.Mallocs - mstat
325 stats.Dmalloc += mstat
326 stats.Decode++
327
328 return err
329}
330
331// unmarshalType does the work of unmarshaling a structure.
Rob Pike97e934d2011-04-11 12:52:49 -0700332func (o *Buffer) unmarshalType(t reflect.Type, is_group bool, base uintptr) os.Error {
333 st := t.Elem()
Rob Pikeaaa3a622010-03-20 22:32:34 -0700334 prop := GetProperties(st)
Rob Pikec6d8e4a2010-07-28 15:34:32 -0700335 required, reqFields := prop.reqCount, uint64(0)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700336
337 var err os.Error
338 for err == nil && o.index < len(o.buf) {
339 oi := o.index
340 var u uint64
341 u, err = o.DecodeVarint()
342 if err != nil {
343 break
344 }
345 wire := int(u & 0x7)
346 if wire == WireEndGroup {
347 if is_group {
348 return nil // input is satisfied
349 }
350 return ErrWrongType
351 }
352 tag := int(u >> 3)
353 fieldnum, ok := prop.tags[tag]
354 if !ok {
355 // Maybe it's an extension?
Rob Pike76f6ee52011-10-20 12:58:28 -0700356 o.ptr = base // copy the address here to avoid a heap allocation.
Rob Pikeaaa3a622010-03-20 22:32:34 -0700357 iv := unsafe.Unreflect(t, unsafe.Pointer(&o.ptr))
358 if e, ok := iv.(extendableProto); ok && isExtensionField(e, int32(tag)) {
359 if err = o.skip(st, tag, wire); err == nil {
David Symonds1d72f7a2011-08-19 18:28:52 +1000360 e.ExtensionMap()[int32(tag)] = Extension{enc: append([]byte(nil), o.buf[oi:o.index]...)}
Rob Pikeaaa3a622010-03-20 22:32:34 -0700361 }
362 continue
363 }
364 err = o.skipAndSave(st, tag, wire, base)
365 continue
366 }
367 p := prop.Prop[fieldnum]
368
Rob Pikec6d8e4a2010-07-28 15:34:32 -0700369 if p.dec == nil {
370 fmt.Fprintf(os.Stderr, "no protobuf decoder for %s.%s\n", t, st.Field(fieldnum).Name)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700371 continue
372 }
David Symonds5b7775e2010-12-01 10:09:04 +1100373 dec := p.dec
Rob Pikec6d8e4a2010-07-28 15:34:32 -0700374 if wire != WireStartGroup && wire != p.WireType {
David Symonds5b7775e2010-12-01 10:09:04 +1100375 if wire == WireBytes && p.packedDec != nil {
376 // a packable field
377 dec = p.packedDec
378 } else {
379 err = ErrWrongType
380 continue
381 }
Rob Pikec6d8e4a2010-07-28 15:34:32 -0700382 }
Rob Pike76f6ee52011-10-20 12:58:28 -0700383 err = dec(o, p, base)
Rob Pikec6d8e4a2010-07-28 15:34:32 -0700384 if err == nil && p.Required {
385 // Successfully decoded a required field.
386 if tag <= 64 {
387 // use bitmap for fields 1-64 to catch field reuse.
388 var mask uint64 = 1 << uint64(tag-1)
389 if reqFields&mask == 0 {
390 // new required field
391 reqFields |= mask
392 required--
393 }
394 } else {
395 // This is imprecise. It can be fooled by a required field
396 // with a tag > 64 that is encoded twice; that's very rare.
397 // A fully correct implementation would require allocating
398 // a data structure, which we would like to avoid.
399 required--
400 }
401 }
Rob Pikeaaa3a622010-03-20 22:32:34 -0700402 }
Rob Pikec6d8e4a2010-07-28 15:34:32 -0700403 if err == nil {
404 if is_group {
405 return io.ErrUnexpectedEOF
406 }
407 if required > 0 {
David Symonds5b7775e2010-12-01 10:09:04 +1100408 return &ErrRequiredNotSet{st}
Rob Pikec6d8e4a2010-07-28 15:34:32 -0700409 }
Rob Pikeaaa3a622010-03-20 22:32:34 -0700410 }
411 return err
412}
413
414// Make *pslice have base address base, length 0, and capacity startSize.
415func initSlice(pslice unsafe.Pointer, base uintptr) {
416 sp := (*reflect.SliceHeader)(pslice)
417 sp.Data = base
418 sp.Len = 0
419 sp.Cap = startSize
420}
421
422// Individual type decoders
423// For each,
424// u is the decoded value,
425// v is a pointer to the field (pointer) in the struct
Rob Pike76f6ee52011-10-20 12:58:28 -0700426
427// Sizes of the pools to allocate inside the Buffer.
428// The goal is modest amortization and allocation on at lest 16-byte boundaries.
429const (
430 boolPoolSize = 16
431 int32PoolSize = 8
432 int64PoolSize = 4
433)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700434
435// Decode a bool.
Rob Pike76f6ee52011-10-20 12:58:28 -0700436func (o *Buffer) dec_bool(p *Properties, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700437 u, err := p.valDec(o)
438 if err != nil {
439 return err
440 }
Rob Pike76f6ee52011-10-20 12:58:28 -0700441 if len(o.bools) == 0 {
442 o.bools = make([]bool, boolPoolSize)
443 }
444 o.bools[0] = u != 0
445 v := (**bool)(unsafe.Pointer(base + p.offset))
446 *v = &o.bools[0]
447 o.bools = o.bools[1:]
Rob Pikeaaa3a622010-03-20 22:32:34 -0700448 return nil
449}
450
451// Decode an int32.
Rob Pike76f6ee52011-10-20 12:58:28 -0700452func (o *Buffer) dec_int32(p *Properties, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700453 u, err := p.valDec(o)
454 if err != nil {
455 return err
456 }
Rob Pike76f6ee52011-10-20 12:58:28 -0700457 if len(o.int32s) == 0 {
458 o.int32s = make([]int32, int32PoolSize)
459 }
460 o.int32s[0] = int32(u)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700461 v := (**int32)(unsafe.Pointer(base + p.offset))
Rob Pike76f6ee52011-10-20 12:58:28 -0700462 *v = &o.int32s[0]
463 o.int32s = o.int32s[1:]
Rob Pikeaaa3a622010-03-20 22:32:34 -0700464 return nil
465}
466
467// Decode an int64.
Rob Pike76f6ee52011-10-20 12:58:28 -0700468func (o *Buffer) dec_int64(p *Properties, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700469 u, err := p.valDec(o)
470 if err != nil {
471 return err
472 }
Rob Pike76f6ee52011-10-20 12:58:28 -0700473 if len(o.int64s) == 0 {
474 o.int64s = make([]int64, int64PoolSize)
475 }
476 o.int64s[0] = int64(u)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700477 v := (**int64)(unsafe.Pointer(base + p.offset))
Rob Pike76f6ee52011-10-20 12:58:28 -0700478 *v = &o.int64s[0]
479 o.int64s = o.int64s[1:]
Rob Pikeaaa3a622010-03-20 22:32:34 -0700480 return nil
481}
482
483// Decode a string.
Rob Pike76f6ee52011-10-20 12:58:28 -0700484func (o *Buffer) dec_string(p *Properties, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700485 s, err := o.DecodeStringBytes()
486 if err != nil {
487 return err
488 }
Rob Pike76f6ee52011-10-20 12:58:28 -0700489 sp := new(string)
490 *sp = s
Rob Pikeaaa3a622010-03-20 22:32:34 -0700491 v := (**string)(unsafe.Pointer(base + p.offset))
Rob Pike76f6ee52011-10-20 12:58:28 -0700492 *v = sp
Rob Pikeaaa3a622010-03-20 22:32:34 -0700493 return nil
494}
495
496// Decode a slice of bytes ([]byte).
Rob Pike76f6ee52011-10-20 12:58:28 -0700497func (o *Buffer) dec_slice_byte(p *Properties, base uintptr) os.Error {
498 b, err := o.DecodeRawBytes(true)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700499 if err != nil {
500 return err
501 }
Mikkel Krautzdb488aa2010-11-29 14:15:51 -0800502
Rob Pike76f6ee52011-10-20 12:58:28 -0700503 v := (*[]byte)(unsafe.Pointer(base + p.offset))
504 *v = b
Rob Pikeaaa3a622010-03-20 22:32:34 -0700505 return nil
506}
507
508// Decode a slice of bools ([]bool).
Rob Pike76f6ee52011-10-20 12:58:28 -0700509func (o *Buffer) dec_slice_bool(p *Properties, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700510 u, err := p.valDec(o)
511 if err != nil {
512 return err
513 }
Rob Pike76f6ee52011-10-20 12:58:28 -0700514 v := (*[]bool)(unsafe.Pointer(base + p.offset))
515 *v = append(*v, u != 0)
David Symonds5b7775e2010-12-01 10:09:04 +1100516 return nil
517}
518
519// Decode a slice of bools ([]bool) in packed format.
Rob Pike76f6ee52011-10-20 12:58:28 -0700520func (o *Buffer) dec_slice_packed_bool(p *Properties, base uintptr) os.Error {
521 v := (*[]bool)(unsafe.Pointer(base + p.offset))
David Symonds5b7775e2010-12-01 10:09:04 +1100522
523 nn, err := o.DecodeVarint()
524 if err != nil {
525 return err
Rob Pikeaaa3a622010-03-20 22:32:34 -0700526 }
David Symonds5b7775e2010-12-01 10:09:04 +1100527 nb := int(nn) // number of bytes of encoded bools
528
Rob Pike76f6ee52011-10-20 12:58:28 -0700529 y := *v
David Symonds5b7775e2010-12-01 10:09:04 +1100530 for i := 0; i < nb; i++ {
531 u, err := p.valDec(o)
532 if err != nil {
533 return err
534 }
535 y = append(y, u != 0)
536 }
537
Rob Pike76f6ee52011-10-20 12:58:28 -0700538 *v = y
Rob Pikeaaa3a622010-03-20 22:32:34 -0700539 return nil
540}
541
542// Decode a slice of int32s ([]int32).
Rob Pike76f6ee52011-10-20 12:58:28 -0700543func (o *Buffer) dec_slice_int32(p *Properties, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700544 u, err := p.valDec(o)
545 if err != nil {
546 return err
547 }
Rob Pike76f6ee52011-10-20 12:58:28 -0700548 v := (*[]int32)(unsafe.Pointer(base + p.offset))
549 *v = append(*v, int32(u))
David Symonds5b7775e2010-12-01 10:09:04 +1100550 return nil
551}
552
553// Decode a slice of int32s ([]int32) in packed format.
Rob Pike76f6ee52011-10-20 12:58:28 -0700554func (o *Buffer) dec_slice_packed_int32(p *Properties, base uintptr) os.Error {
555 v := (*[]int32)(unsafe.Pointer(base + p.offset))
David Symonds5b7775e2010-12-01 10:09:04 +1100556
557 nn, err := o.DecodeVarint()
558 if err != nil {
559 return err
Rob Pikeaaa3a622010-03-20 22:32:34 -0700560 }
David Symonds5b7775e2010-12-01 10:09:04 +1100561 nb := int(nn) // number of bytes of encoded int32s
562
Rob Pike76f6ee52011-10-20 12:58:28 -0700563 y := *v
David Symonds5b7775e2010-12-01 10:09:04 +1100564
565 fin := o.index + nb
566 for o.index < fin {
567 u, err := p.valDec(o)
568 if err != nil {
569 return err
570 }
571 y = append(y, int32(u))
572 }
573
Rob Pike76f6ee52011-10-20 12:58:28 -0700574 *v = y
Rob Pikeaaa3a622010-03-20 22:32:34 -0700575 return nil
576}
577
578// Decode a slice of int64s ([]int64).
Rob Pike76f6ee52011-10-20 12:58:28 -0700579func (o *Buffer) dec_slice_int64(p *Properties, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700580 u, err := p.valDec(o)
581 if err != nil {
582 return err
583 }
Rob Pike76f6ee52011-10-20 12:58:28 -0700584 v := (*[]int64)(unsafe.Pointer(base + p.offset))
Rob Pikeaaa3a622010-03-20 22:32:34 -0700585
Rob Pike76f6ee52011-10-20 12:58:28 -0700586 y := *v
587 *v = append(y, int64(u))
David Symonds5b7775e2010-12-01 10:09:04 +1100588 return nil
589}
590
591// Decode a slice of int64s ([]int64) in packed format.
Rob Pike76f6ee52011-10-20 12:58:28 -0700592func (o *Buffer) dec_slice_packed_int64(p *Properties, base uintptr) os.Error {
593 v := (*[]int64)(unsafe.Pointer(base + p.offset))
David Symonds5b7775e2010-12-01 10:09:04 +1100594
595 nn, err := o.DecodeVarint()
596 if err != nil {
597 return err
Rob Pikeaaa3a622010-03-20 22:32:34 -0700598 }
David Symonds5b7775e2010-12-01 10:09:04 +1100599 nb := int(nn) // number of bytes of encoded int64s
600
Rob Pike76f6ee52011-10-20 12:58:28 -0700601 y := *v
David Symonds5b7775e2010-12-01 10:09:04 +1100602 fin := o.index + nb
603 for o.index < fin {
604 u, err := p.valDec(o)
605 if err != nil {
606 return err
607 }
608 y = append(y, int64(u))
609 }
610
Rob Pike76f6ee52011-10-20 12:58:28 -0700611 *v = y
Rob Pikeaaa3a622010-03-20 22:32:34 -0700612 return nil
613}
614
615// Decode a slice of strings ([]string).
Rob Pike76f6ee52011-10-20 12:58:28 -0700616func (o *Buffer) dec_slice_string(p *Properties, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700617 s, err := o.DecodeStringBytes()
618 if err != nil {
619 return err
620 }
Rob Pike76f6ee52011-10-20 12:58:28 -0700621 v := (*[]string)(unsafe.Pointer(base + p.offset))
Rob Pikeaaa3a622010-03-20 22:32:34 -0700622
Rob Pike76f6ee52011-10-20 12:58:28 -0700623 y := *v
624 *v = append(y, s)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700625 return nil
626}
627
628// Decode a slice of slice of bytes ([][]byte).
Rob Pike76f6ee52011-10-20 12:58:28 -0700629func (o *Buffer) dec_slice_slice_byte(p *Properties, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700630 b, err := o.DecodeRawBytes(true)
631 if err != nil {
632 return err
633 }
Rob Pike76f6ee52011-10-20 12:58:28 -0700634 v := (*[][]byte)(unsafe.Pointer(base + p.offset))
Rob Pikeaaa3a622010-03-20 22:32:34 -0700635
Rob Pike76f6ee52011-10-20 12:58:28 -0700636 y := *v
637 *v = append(y, b)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700638 return nil
639}
640
641// Decode a group.
Rob Pike76f6ee52011-10-20 12:58:28 -0700642func (o *Buffer) dec_struct_group(p *Properties, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700643 ptr := (**struct{})(unsafe.Pointer(base + p.offset))
Rob Pike97e934d2011-04-11 12:52:49 -0700644 typ := p.stype.Elem()
Rob Pikeaaa3a622010-03-20 22:32:34 -0700645 structv := unsafe.New(typ)
646 bas := uintptr(structv)
647 *ptr = (*struct{})(structv)
648
649 err := o.unmarshalType(p.stype, true, bas)
650
651 return err
652}
653
654// Decode an embedded message.
Rob Pike76f6ee52011-10-20 12:58:28 -0700655func (o *Buffer) dec_struct_message(p *Properties, base uintptr) (err os.Error) {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700656 raw, e := o.DecodeRawBytes(false)
657 if e != nil {
658 return e
659 }
660
661 ptr := (**struct{})(unsafe.Pointer(base + p.offset))
Rob Pike97e934d2011-04-11 12:52:49 -0700662 typ := p.stype.Elem()
Rob Pikeaaa3a622010-03-20 22:32:34 -0700663 structv := unsafe.New(typ)
664 bas := uintptr(structv)
665 *ptr = (*struct{})(structv)
666
667 // If the object can unmarshal itself, let it.
668 iv := unsafe.Unreflect(p.stype, unsafe.Pointer(ptr))
669 if u, ok := iv.(Unmarshaler); ok {
670 return u.Unmarshal(raw)
671 }
672
673 obuf := o.buf
674 oi := o.index
675 o.buf = raw
676 o.index = 0
677
678 err = o.unmarshalType(p.stype, false, bas)
679 o.buf = obuf
680 o.index = oi
681
682 return err
683}
684
685// Decode a slice of embedded messages.
Rob Pike76f6ee52011-10-20 12:58:28 -0700686func (o *Buffer) dec_slice_struct_message(p *Properties, base uintptr) os.Error {
687 return o.dec_slice_struct(p, false, base)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700688}
689
690// Decode a slice of embedded groups.
Rob Pike76f6ee52011-10-20 12:58:28 -0700691func (o *Buffer) dec_slice_struct_group(p *Properties, base uintptr) os.Error {
692 return o.dec_slice_struct(p, true, base)
Rob Pikeaaa3a622010-03-20 22:32:34 -0700693}
694
695// Decode a slice of structs ([]*struct).
Rob Pike76f6ee52011-10-20 12:58:28 -0700696func (o *Buffer) dec_slice_struct(p *Properties, is_group bool, base uintptr) os.Error {
Rob Pikeaaa3a622010-03-20 22:32:34 -0700697
Rob Pike76f6ee52011-10-20 12:58:28 -0700698 v := (*[]*struct{})(unsafe.Pointer(base + p.offset))
699 y := *v
Rob Pikeaaa3a622010-03-20 22:32:34 -0700700
Rob Pike97e934d2011-04-11 12:52:49 -0700701 typ := p.stype.Elem()
Rob Pikeaaa3a622010-03-20 22:32:34 -0700702 structv := unsafe.New(typ)
703 bas := uintptr(structv)
David Symonds5b7775e2010-12-01 10:09:04 +1100704 y = append(y, (*struct{})(structv))
Rob Pike76f6ee52011-10-20 12:58:28 -0700705 *v = y
Rob Pikeaaa3a622010-03-20 22:32:34 -0700706
707 if is_group {
708 err := o.unmarshalType(p.stype, is_group, bas)
709 return err
710 }
711
712 raw, err := o.DecodeRawBytes(true)
713 if err != nil {
714 return err
715 }
716
717 // If the object can unmarshal itself, let it.
David Symonds5b7775e2010-12-01 10:09:04 +1100718 iv := unsafe.Unreflect(p.stype, unsafe.Pointer(&y[len(y)-1]))
Rob Pikeaaa3a622010-03-20 22:32:34 -0700719 if u, ok := iv.(Unmarshaler); ok {
720 return u.Unmarshal(raw)
721 }
722
723 obuf := o.buf
724 oi := o.index
725 o.buf = raw
726 o.index = 0
727
728 err = o.unmarshalType(p.stype, is_group, bas)
729
730 o.buf = obuf
731 o.index = oi
732
733 return err
734}