Protocol Buffers - Google's data interchange format (grpc依赖) https://developers.google.com/protocol-buffers/
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/*
* Copyright (c) 2009-2021, Google LLC
* 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 LLC 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 Google LLC 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.
*/
#include "upb/reflection/message.h"
#include <string.h>
#include "upb/collections/map.h"
#include "upb/internal/table.h"
#include "upb/msg.h"
#include "upb/reflection/def_pool.h"
#include "upb/reflection/def_type.h"
#include "upb/reflection/field_def_internal.h"
#include "upb/reflection/message_def.h"
#include "upb/reflection/oneof_def.h"
// Must be last.
#include "upb/port_def.inc"
static size_t get_field_size(const upb_MiniTable_Field* f) {
static unsigned char sizes[] = {
0, /* 0 */
8, /* kUpb_FieldType_Double */
4, /* kUpb_FieldType_Float */
8, /* kUpb_FieldType_Int64 */
8, /* kUpb_FieldType_UInt64 */
4, /* kUpb_FieldType_Int32 */
8, /* kUpb_FieldType_Fixed64 */
4, /* kUpb_FieldType_Fixed32 */
1, /* kUpb_FieldType_Bool */
sizeof(upb_StringView), /* kUpb_FieldType_String */
sizeof(void*), /* kUpb_FieldType_Group */
sizeof(void*), /* kUpb_FieldType_Message */
sizeof(upb_StringView), /* kUpb_FieldType_Bytes */
4, /* kUpb_FieldType_UInt32 */
4, /* kUpb_FieldType_Enum */
4, /* kUpb_FieldType_SFixed32 */
8, /* kUpb_FieldType_SFixed64 */
4, /* kUpb_FieldType_SInt32 */
8, /* kUpb_FieldType_SInt64 */
};
return upb_IsRepeatedOrMap(f) ? sizeof(void*) : sizes[f->descriptortype];
}
static bool in_oneof(const upb_MiniTable_Field* field) {
return field->presence < 0;
}
static upb_MessageValue _upb_Message_Getraw(const upb_Message* msg,
const upb_FieldDef* f) {
const upb_MiniTable_Field* field = upb_FieldDef_MiniTable(f);
const char* mem = UPB_PTR_AT(msg, field->offset, char);
upb_MessageValue val = {0};
memcpy(&val, mem, get_field_size(field));
return val;
}
bool upb_Message_Has(const upb_Message* msg, const upb_FieldDef* f) {
assert(upb_FieldDef_HasPresence(f));
if (upb_FieldDef_IsExtension(f)) {
const upb_MiniTable_Extension* ext = _upb_FieldDef_ExtensionMiniTable(f);
return _upb_Message_Getext(msg, ext) != NULL;
} else {
const upb_MiniTable_Field* field = upb_FieldDef_MiniTable(f);
if (in_oneof(field)) {
return _upb_getoneofcase_field(msg, field) == field->number;
} else if (field->presence > 0) {
return _upb_hasbit_field(msg, field);
} else {
UPB_ASSERT(field->descriptortype == kUpb_FieldType_Message ||
field->descriptortype == kUpb_FieldType_Group);
return _upb_Message_Getraw(msg, f).msg_val != NULL;
}
}
}
const upb_FieldDef* upb_Message_WhichOneof(const upb_Message* msg,
const upb_OneofDef* o) {
const upb_FieldDef* f = upb_OneofDef_Field(o, 0);
if (upb_OneofDef_IsSynthetic(o)) {
UPB_ASSERT(upb_OneofDef_FieldCount(o) == 1);
return upb_Message_Has(msg, f) ? f : NULL;
} else {
const upb_MiniTable_Field* field = upb_FieldDef_MiniTable(f);
uint32_t oneof_case = _upb_getoneofcase_field(msg, field);
f = oneof_case ? upb_OneofDef_LookupNumber(o, oneof_case) : NULL;
UPB_ASSERT((f != NULL) == (oneof_case != 0));
return f;
}
}
upb_MessageValue upb_Message_Get(const upb_Message* msg,
const upb_FieldDef* f) {
if (upb_FieldDef_IsExtension(f)) {
const upb_Message_Extension* ext =
_upb_Message_Getext(msg, _upb_FieldDef_ExtensionMiniTable(f));
if (ext) {
upb_MessageValue val;
memcpy(&val, &ext->data, sizeof(val));
return val;
} else if (upb_FieldDef_IsRepeated(f)) {
return (upb_MessageValue){.array_val = NULL};
}
} else if (!upb_FieldDef_HasPresence(f) || upb_Message_Has(msg, f)) {
return _upb_Message_Getraw(msg, f);
}
return upb_FieldDef_Default(f);
}
upb_MutableMessageValue upb_Message_Mutable(upb_Message* msg,
const upb_FieldDef* f,
upb_Arena* a) {
UPB_ASSERT(upb_FieldDef_IsSubMessage(f) || upb_FieldDef_IsRepeated(f));
if (upb_FieldDef_HasPresence(f) && !upb_Message_Has(msg, f)) {
// We need to skip the upb_Message_Get() call in this case.
goto make;
}
upb_MessageValue val = upb_Message_Get(msg, f);
if (val.array_val) {
return (upb_MutableMessageValue){.array = (upb_Array*)val.array_val};
}
upb_MutableMessageValue ret;
make:
if (!a) return (upb_MutableMessageValue){.array = NULL};
if (upb_FieldDef_IsMap(f)) {
const upb_MessageDef* entry = upb_FieldDef_MessageSubDef(f);
const upb_FieldDef* key =
upb_MessageDef_FindFieldByNumber(entry, kUpb_MapEntry_KeyFieldNumber);
const upb_FieldDef* value =
upb_MessageDef_FindFieldByNumber(entry, kUpb_MapEntry_ValueFieldNumber);
ret.map =
upb_Map_New(a, upb_FieldDef_CType(key), upb_FieldDef_CType(value));
} else if (upb_FieldDef_IsRepeated(f)) {
ret.array = upb_Array_New(a, upb_FieldDef_CType(f));
} else {
UPB_ASSERT(upb_FieldDef_IsSubMessage(f));
const upb_MessageDef* m = upb_FieldDef_MessageSubDef(f);
ret.msg = upb_Message_New(upb_MessageDef_MiniTable(m), a);
}
val.array_val = ret.array;
upb_Message_Set(msg, f, val, a);
return ret;
}
bool upb_Message_Set(upb_Message* msg, const upb_FieldDef* f,
upb_MessageValue val, upb_Arena* a) {
if (upb_FieldDef_IsExtension(f)) {
upb_Message_Extension* ext = _upb_Message_GetOrCreateExtension(
msg, _upb_FieldDef_ExtensionMiniTable(f), a);
if (!ext) return false;
memcpy(&ext->data, &val, sizeof(val));
} else {
const upb_MiniTable_Field* field = upb_FieldDef_MiniTable(f);
Treat unlinked sub-messages in the MiniTable as unknown This is an observable behavior change in the decoder. After submitting this CL, clients of the decoder can assume that any unlinked sub-messages will be treated as unknown, rather than crashing. Unlinked sub-messages must never have values present in the message. We can verify this with asserts. Since the values are never set, the encoder should never encounter data for any unlinked sub-message. ``` name old cpu/op new cpu/op delta BM_ArenaOneAlloc 18.3ns ± 9% 17.9ns ± 2% ~ (p=0.690 n=5+5) BM_ArenaInitialBlockOneAlloc 6.40ns ± 1% 6.68ns ±10% ~ (p=0.730 n=4+5) BM_LoadAdsDescriptor_Upb<NoLayout> 5.09ms ± 2% 5.03ms ± 3% ~ (p=0.222 n=5+5) BM_LoadAdsDescriptor_Upb<WithLayout> 5.45ms ± 3% 5.43ms ± 1% ~ (p=0.905 n=5+4) BM_LoadAdsDescriptor_Proto2<NoLayout> 10.9ms ± 1% 10.8ms ± 1% -1.09% (p=0.016 n=5+4) BM_LoadAdsDescriptor_Proto2<WithLayout> 11.3ms ± 9% 11.1ms ± 3% ~ (p=0.841 n=5+5) BM_Parse_Upb_FileDesc<UseArena, Copy> 11.2µs ± 3% 11.3µs ± 3% ~ (p=0.222 n=5+5) BM_Parse_Upb_FileDesc<UseArena, Alias> 10.3µs ± 5% 10.5µs ± 5% ~ (p=0.310 n=5+5) BM_Parse_Upb_FileDesc<InitBlock, Copy> 11.4µs ±18% 11.0µs ± 2% ~ (p=1.000 n=5+5) BM_Parse_Upb_FileDesc<InitBlock, Alias> 10.5µs ±17% 10.6µs ±19% ~ (p=0.421 n=5+5) BM_Parse_Proto2<FileDesc, NoArena, Copy> 20.5µs ± 2% 20.2µs ± 2% ~ (p=0.222 n=5+5) BM_Parse_Proto2<FileDesc, UseArena, Copy> 10.8µs ± 2% 10.9µs ± 4% ~ (p=0.841 n=5+5) BM_Parse_Proto2<FileDesc, InitBlock, Copy> 10.5µs ± 3% 10.6µs ± 3% ~ (p=0.690 n=5+5) BM_Parse_Proto2<FileDescSV, InitBlock, Alias> 9.22µs ± 2% 9.23µs ± 3% ~ (p=1.000 n=5+5) BM_SerializeDescriptor_Proto2 6.05µs ± 3% 5.90µs ± 3% ~ (p=0.222 n=5+5) BM_SerializeDescriptor_Upb 10.2µs ± 3% 10.6µs ±14% ~ (p=0.841 n=5+5) name old time/op new time/op delta BM_ArenaOneAlloc 18.3ns ± 9% 17.9ns ± 2% ~ (p=0.841 n=5+5) BM_ArenaInitialBlockOneAlloc 6.42ns ± 1% 6.69ns ±10% ~ (p=0.730 n=4+5) BM_LoadAdsDescriptor_Upb<NoLayout> 5.10ms ± 2% 5.05ms ± 3% ~ (p=0.222 n=5+5) BM_LoadAdsDescriptor_Upb<WithLayout> 5.47ms ± 3% 5.45ms ± 1% ~ (p=0.905 n=5+4) BM_LoadAdsDescriptor_Proto2<NoLayout> 10.9ms ± 1% 10.8ms ± 1% -1.11% (p=0.016 n=5+4) BM_LoadAdsDescriptor_Proto2<WithLayout> 11.4ms ± 9% 11.1ms ± 3% ~ (p=0.841 n=5+5) BM_Parse_Upb_FileDesc<UseArena, Copy> 11.2µs ± 3% 11.3µs ± 3% ~ (p=0.222 n=5+5) BM_Parse_Upb_FileDesc<UseArena, Alias> 10.3µs ± 5% 10.5µs ± 5% ~ (p=0.151 n=5+5) BM_Parse_Upb_FileDesc<InitBlock, Copy> 11.5µs ±18% 11.0µs ± 2% ~ (p=1.000 n=5+5) BM_Parse_Upb_FileDesc<InitBlock, Alias> 10.5µs ±17% 10.7µs ±19% ~ (p=0.421 n=5+5) BM_Parse_Proto2<FileDesc, NoArena, Copy> 20.6µs ± 2% 20.3µs ± 2% ~ (p=0.222 n=5+5) BM_Parse_Proto2<FileDesc, UseArena, Copy> 10.9µs ± 2% 10.9µs ± 4% ~ (p=0.841 n=5+5) BM_Parse_Proto2<FileDesc, InitBlock, Copy> 10.6µs ± 3% 10.6µs ± 3% ~ (p=0.690 n=5+5) BM_Parse_Proto2<FileDescSV, InitBlock, Alias> 9.24µs ± 2% 9.25µs ± 3% ~ (p=1.000 n=5+5) BM_SerializeDescriptor_Proto2 6.07µs ± 3% 5.91µs ± 3% ~ (p=0.222 n=5+5) BM_SerializeDescriptor_Upb 10.3µs ± 3% 10.6µs ±14% ~ (p=0.841 n=5+5) name old INSTRUCTIONS/op new INSTRUCTIONS/op delta BM_ArenaOneAlloc 201 ± 0% 201 ± 0% ~ (p=0.841 n=5+5) BM_ArenaInitialBlockOneAlloc 69.0 ± 0% 69.0 ± 0% ~ (all samples are equal) BM_LoadAdsDescriptor_Upb<NoLayout> 33.9M ± 0% 34.1M ± 0% +0.66% (p=0.008 n=5+5) BM_LoadAdsDescriptor_Upb<WithLayout> 35.6M ± 0% 35.8M ± 0% +0.64% (p=0.008 n=5+5) BM_LoadAdsDescriptor_Proto2<NoLayout> 70.8M ± 0% 70.8M ± 0% ~ (p=0.548 n=5+5) BM_LoadAdsDescriptor_Proto2<WithLayout> 71.6M ± 0% 71.6M ± 0% ~ (p=0.151 n=5+5) BM_Parse_Upb_FileDesc<UseArena, Copy> 137k ± 0% 141k ± 0% +2.87% (p=0.008 n=5+5) BM_Parse_Upb_FileDesc<UseArena, Alias> 125k ± 0% 128k ± 0% +2.83% (p=0.008 n=5+5) BM_Parse_Upb_FileDesc<InitBlock, Copy> 135k ± 0% 139k ± 0% +2.89% (p=0.008 n=5+5) BM_Parse_Upb_FileDesc<InitBlock, Alias> 124k ± 0% 127k ± 0% +2.85% (p=0.016 n=5+4) BM_Parse_Proto2<FileDesc, NoArena, Copy> 201k ± 0% 201k ± 0% ~ (p=0.222 n=5+5) BM_Parse_Proto2<FileDesc, UseArena, Copy> 107k ± 0% 107k ± 0% ~ (p=1.000 n=5+5) BM_Parse_Proto2<FileDesc, InitBlock, Copy> 105k ± 0% 105k ± 0% ~ (p=0.286 n=5+4) BM_Parse_Proto2<FileDescSV, InitBlock, Alias> 86.5k ± 0% 86.5k ± 0% ~ (p=0.222 n=5+5) BM_SerializeDescriptor_Proto2 60.3k ± 0% 60.3k ± 0% ~ (p=0.071 n=5+5) BM_SerializeDescriptor_Upb 111k ± 0% 111k ± 0% ~ (p=0.841 n=5+5) name old CYCLES/op new CYCLES/op delta BM_ArenaOneAlloc 60.0 ± 7% 58.8 ± 0% -2.15% (p=0.016 n=5+5) BM_ArenaInitialBlockOneAlloc 21.0 ± 0% 21.0 ± 0% ~ (p=1.000 n=5+5) BM_LoadAdsDescriptor_Upb<NoLayout> 16.9M ± 0% 16.9M ± 0% ~ (p=0.056 n=5+5) BM_LoadAdsDescriptor_Upb<WithLayout> 17.9M ± 1% 18.0M ± 1% ~ (p=0.095 n=5+5) BM_LoadAdsDescriptor_Proto2<NoLayout> 35.9M ± 1% 35.8M ± 1% ~ (p=0.421 n=5+5) BM_LoadAdsDescriptor_Proto2<WithLayout> 36.5M ± 0% 36.5M ± 0% ~ (p=0.841 n=5+5) BM_Parse_Upb_FileDesc<UseArena, Copy> 37.2k ± 0% 37.3k ± 0% ~ (p=0.222 n=5+5) BM_Parse_Upb_FileDesc<UseArena, Alias> 34.1k ± 0% 34.7k ± 0% +1.66% (p=0.008 n=5+5) BM_Parse_Upb_FileDesc<InitBlock, Copy> 36.4k ± 0% 36.7k ± 0% +0.83% (p=0.008 n=5+5) BM_Parse_Upb_FileDesc<InitBlock, Alias> 33.3k ± 1% 34.1k ± 1% +2.39% (p=0.008 n=5+5) BM_Parse_Proto2<FileDesc, NoArena, Copy> 68.1k ± 1% 68.0k ± 1% ~ (p=0.421 n=5+5) BM_Parse_Proto2<FileDesc, UseArena, Copy> 36.0k ± 1% 36.1k ± 1% ~ (p=0.841 n=5+5) BM_Parse_Proto2<FileDesc, InitBlock, Copy> 35.3k ± 1% 35.5k ± 1% ~ (p=0.151 n=5+5) BM_Parse_Proto2<FileDescSV, InitBlock, Alias> 30.7k ± 0% 30.9k ± 1% ~ (p=0.151 n=5+5) BM_SerializeDescriptor_Proto2 20.3k ± 2% 19.7k ± 3% ~ (p=0.151 n=5+5) BM_SerializeDescriptor_Upb 33.6k ± 0% 33.7k ± 2% ~ (p=1.000 n=5+5) name old allocs/op new allocs/op delta BM_ArenaOneAlloc 1.19 ± 0% 1.19 ± 0% ~ (all samples are equal) BM_ArenaInitialBlockOneAlloc 0.19 ± 0% 0.19 ± 0% ~ (all samples are equal) BM_LoadAdsDescriptor_Upb<NoLayout> 6.00k ± 0% 6.00k ± 0% ~ (all samples are equal) BM_LoadAdsDescriptor_Upb<WithLayout> 5.99k ± 0% 5.99k ± 0% ~ (all samples are equal) BM_LoadAdsDescriptor_Proto2<NoLayout> 77.8k ± 0% 77.8k ± 0% ~ (all samples are equal) BM_LoadAdsDescriptor_Proto2<WithLayout> 79.0k ± 0% 79.0k ± 0% ~ (all samples are equal) BM_Parse_Upb_FileDesc<UseArena, Copy> 7.19 ± 0% 7.19 ± 0% ~ (all samples are equal) BM_Parse_Upb_FileDesc<UseArena, Alias> 7.19 ± 0% 7.19 ± 0% ~ (all samples are equal) BM_Parse_Upb_FileDesc<InitBlock, Copy> 0.19 ± 0% 0.19 ± 0% ~ (all samples are equal) BM_Parse_Upb_FileDesc<InitBlock, Alias> 0.19 ± 0% 0.19 ± 0% ~ (all samples are equal) BM_Parse_Proto2<FileDesc, NoArena, Copy> 765 ± 0% 765 ± 0% ~ (all samples are equal) BM_Parse_Proto2<FileDesc, UseArena, Copy> 10.2 ± 0% 10.2 ± 0% ~ (all samples are equal) BM_Parse_Proto2<FileDesc, InitBlock, Copy> 1.19 ± 0% 1.19 ± 0% ~ (all samples are equal) BM_Parse_Proto2<FileDescSV, InitBlock, Alias> 1.19 ± 0% 1.19 ± 0% ~ (all samples are equal) BM_SerializeDescriptor_Proto2 0.19 ± 0% 0.19 ± 0% ~ (all samples are equal) BM_SerializeDescriptor_Upb 0.19 ± 0% 0.19 ± 0% ~ (all samples are equal) name old peak-mem(Bytes)/op new peak-mem(Bytes)/op delta BM_ArenaOneAlloc 344 ± 0% 344 ± 0% ~ (all samples are equal) BM_ArenaInitialBlockOneAlloc 112 ± 0% 112 ± 0% ~ (all samples are equal) BM_LoadAdsDescriptor_Upb<NoLayout> 9.64M ± 0% 9.64M ± 0% ~ (all samples are equal) BM_LoadAdsDescriptor_Upb<WithLayout> 9.70M ± 0% 9.70M ± 0% ~ (all samples are equal) BM_LoadAdsDescriptor_Proto2<NoLayout> 6.38M ± 0% 6.38M ± 0% ~ (all samples are equal) BM_LoadAdsDescriptor_Proto2<WithLayout> 6.44M ± 0% 6.44M ± 0% ~ (all samples are equal) BM_Parse_Upb_FileDesc<UseArena, Copy> 36.5k ± 0% 36.5k ± 0% ~ (all samples are equal) BM_Parse_Upb_FileDesc<UseArena, Alias> 36.5k ± 0% 36.5k ± 0% ~ (all samples are equal) BM_Parse_Upb_FileDesc<InitBlock, Copy> 112 ± 0% 112 ± 0% ~ (all samples are equal) BM_Parse_Upb_FileDesc<InitBlock, Alias> 112 ± 0% 112 ± 0% ~ (all samples are equal) BM_Parse_Proto2<FileDesc, NoArena, Copy> 35.8k ± 0% 35.8k ± 0% ~ (all samples are equal) BM_Parse_Proto2<FileDesc, UseArena, Copy> 40.8k ± 0% 40.8k ± 0% ~ (all samples are equal) BM_Parse_Proto2<FileDesc, InitBlock, Copy> 112 ± 0% 112 ± 0% ~ (all samples are equal) BM_Parse_Proto2<FileDescSV, InitBlock, Alias> 112 ± 0% 112 ± 0% ~ (all samples are equal) BM_SerializeDescriptor_Proto2 112 ± 0% 112 ± 0% ~ (all samples are equal) BM_SerializeDescriptor_Upb 112 ± 0% 112 ± 0% ~ (all samples are equal) name old speed new speed delta BM_LoadAdsDescriptor_Upb<NoLayout> 147MB/s ± 2% 148MB/s ± 3% ~ (p=0.222 n=5+5) BM_LoadAdsDescriptor_Upb<WithLayout> 137MB/s ± 3% 137MB/s ± 1% ~ (p=0.905 n=5+4) BM_LoadAdsDescriptor_Proto2<NoLayout> 68.6MB/s ± 1% 69.3MB/s ± 1% +1.10% (p=0.016 n=5+4) BM_LoadAdsDescriptor_Proto2<WithLayout> 66.0MB/s ± 9% 67.4MB/s ± 3% ~ (p=0.841 n=5+5) BM_Parse_Upb_FileDesc<UseArena, Copy> 675MB/s ± 3% 667MB/s ± 3% ~ (p=0.222 n=5+5) BM_Parse_Upb_FileDesc<UseArena, Alias> 730MB/s ± 5% 718MB/s ± 5% ~ (p=0.310 n=5+5) BM_Parse_Upb_FileDesc<InitBlock, Copy> 663MB/s ±16% 685MB/s ± 2% ~ (p=1.000 n=5+5) BM_Parse_Upb_FileDesc<InitBlock, Alias> 723MB/s ±15% 712MB/s ±16% ~ (p=0.421 n=5+5) BM_Parse_Proto2<FileDesc, NoArena, Copy> 367MB/s ± 2% 372MB/s ± 2% ~ (p=0.222 n=5+5) BM_Parse_Proto2<FileDesc, UseArena, Copy> 694MB/s ± 2% 691MB/s ± 4% ~ (p=0.841 n=5+5) BM_Parse_Proto2<FileDesc, InitBlock, Copy> 714MB/s ± 3% 709MB/s ± 3% ~ (p=0.690 n=5+5) BM_Parse_Proto2<FileDescSV, InitBlock, Alias> 816MB/s ± 2% 816MB/s ± 3% ~ (p=1.000 n=5+5) BM_SerializeDescriptor_Proto2 1.24GB/s ± 3% 1.28GB/s ± 3% ~ (p=0.222 n=5+5) BM_SerializeDescriptor_Upb 734MB/s ± 3% 713MB/s ±13% ~ (p=0.841 n=5+5) ``` PiperOrigin-RevId: 477770562
2 years ago
// Building reflection should always cause all sub-message types to be
// linked, but double-check here just for extra assurance.
UPB_ASSERT(!upb_FieldDef_IsSubMessage(f) ||
upb_MessageDef_MiniTable(upb_FieldDef_ContainingType(f))
->subs[field->submsg_index]
.submsg);
char* mem = UPB_PTR_AT(msg, field->offset, char);
memcpy(mem, &val, get_field_size(field));
if (field->presence > 0) {
_upb_sethas_field(msg, field);
} else if (in_oneof(field)) {
*_upb_oneofcase_field(msg, field) = field->number;
}
}
return true;
}
void upb_Message_ClearField(upb_Message* msg, const upb_FieldDef* f) {
if (upb_FieldDef_IsExtension(f)) {
_upb_Message_Clearext(msg, _upb_FieldDef_ExtensionMiniTable(f));
} else {
const upb_MiniTable_Field* field = upb_FieldDef_MiniTable(f);
char* mem = UPB_PTR_AT(msg, field->offset, char);
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
if (field->presence > 0) {
_upb_clearhas_field(msg, field);
} else if (in_oneof(field)) {
uint32_t* oneof_case = _upb_oneofcase_field(msg, field);
if (*oneof_case != field->number) return;
*oneof_case = 0;
}
memset(mem, 0, get_field_size(field));
}
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
}
void upb_Message_Clear(upb_Message* msg, const upb_MessageDef* m) {
_upb_Message_Clear(msg, upb_MessageDef_MiniTable(m));
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
}
bool upb_Message_Next(const upb_Message* msg, const upb_MessageDef* m,
const upb_DefPool* ext_pool, const upb_FieldDef** out_f,
upb_MessageValue* out_val, size_t* iter) {
size_t i = *iter;
size_t n = upb_MessageDef_FieldCount(m);
const upb_MessageValue zero = {0};
UPB_UNUSED(ext_pool);
/* Iterate over normal fields, returning the first one that is set. */
while (++i < n) {
const upb_FieldDef* f = upb_MessageDef_Field(m, i);
upb_MessageValue val = _upb_Message_Getraw(msg, f);
/* Skip field if unset or empty. */
if (upb_FieldDef_HasPresence(f)) {
if (!upb_Message_Has(msg, f)) continue;
} else {
upb_MessageValue test = val;
if (upb_FieldDef_IsString(f) && !upb_FieldDef_IsRepeated(f)) {
/* Clear string pointer, only size matters (ptr could be non-NULL). */
test.str_val.data = NULL;
}
/* Continue if NULL or 0. */
if (memcmp(&test, &zero, sizeof(test)) == 0) continue;
5 years ago
/* Continue on empty array or map. */
if (upb_FieldDef_IsMap(f)) {
if (upb_Map_Size(test.map_val) == 0) continue;
} else if (upb_FieldDef_IsRepeated(f)) {
if (upb_Array_Size(test.array_val) == 0) continue;
5 years ago
}
}
*out_val = val;
*out_f = f;
*iter = i;
return true;
}
if (ext_pool) {
/* Return any extensions that are set. */
size_t count;
const upb_Message_Extension* ext = _upb_Message_Getexts(msg, &count);
if (i - n < count) {
ext += count - 1 - (i - n);
memcpy(out_val, &ext->data, sizeof(*out_val));
*out_f = upb_DefPool_FindExtensionByMiniTable(ext_pool, ext->ext);
*iter = i;
return true;
}
}
*iter = i;
return false;
}
bool _upb_Message_DiscardUnknown(upb_Message* msg, const upb_MessageDef* m,
int depth) {
size_t iter = kUpb_Message_Begin;
const upb_FieldDef* f;
upb_MessageValue val;
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
bool ret = true;
if (--depth == 0) return false;
_upb_Message_DiscardUnknown_shallow(msg);
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
while (upb_Message_Next(msg, m, NULL /*ext_pool*/, &f, &val, &iter)) {
const upb_MessageDef* subm = upb_FieldDef_MessageSubDef(f);
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
if (!subm) continue;
if (upb_FieldDef_IsMap(f)) {
const upb_FieldDef* val_f = upb_MessageDef_FindFieldByNumber(subm, 2);
const upb_MessageDef* val_m = upb_FieldDef_MessageSubDef(val_f);
upb_Map* map = (upb_Map*)val.map_val;
size_t iter = kUpb_Map_Begin;
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
if (!val_m) continue;
while (upb_MapIterator_Next(map, &iter)) {
upb_MessageValue map_val = upb_MapIterator_Value(map, iter);
if (!_upb_Message_DiscardUnknown((upb_Message*)map_val.msg_val, val_m,
depth)) {
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
ret = false;
}
}
} else if (upb_FieldDef_IsRepeated(f)) {
const upb_Array* arr = val.array_val;
size_t i, n = upb_Array_Size(arr);
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
for (i = 0; i < n; i++) {
upb_MessageValue elem = upb_Array_Get(arr, i);
if (!_upb_Message_DiscardUnknown((upb_Message*)elem.msg_val, subm,
depth)) {
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
ret = false;
}
}
} else {
if (!_upb_Message_DiscardUnknown((upb_Message*)val.msg_val, subm,
depth)) {
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
ret = false;
}
}
}
return ret;
}
bool upb_Message_DiscardUnknown(upb_Message* msg, const upb_MessageDef* m,
int maxdepth) {
return _upb_Message_DiscardUnknown(msg, m, maxdepth);
Fixes for PHP. (#286) - A new PHP-specific upb amalgamation. It contains everything related to upb_msg, but leaves out all of the old handlers-related interfaces and encoders/decoders. # Schema/Defs Changes - Changed `upb_fielddef_msgsubdef()` and `upb_fielddef_enumsubdef()` to return `NULL` instead of assert-failing if the field is not a message or enum. - Added `upb_msgdef_iswrapper()`, to test whether this is a wrapper well-known type. # Decoder - Decoder bugfix: when we parse a submessage inside a oneof, we need to clear out any previous data, so we don't misinterpret it as a pointer to an existing submessage. # JSON Decoder - Allowed well-known types at the top level to have their special processing. - Fixed a bug that could occur when parsing nested empty lists/objects, eg `[[]]`. - Made the "ignore unknown" option also be permissive about unknown enumerators by setting them to 0. # JSON Encoder - Allowed well-known types at the top level to have their special processing. - Removed all spaces after `:` and `,` characters, to match the old encoder and pass goldenfile tests. # Message / Reflection - Changed `upb_msg_hasoneof()` -> `upb_msg_whichoneof()`. The new function returns the `upb_fielddef*` of whichever oneof is set. - Implemented `upb_msg_clearfield()` and added/implemented `upb_msg_clear()`. - Added `upb_msg_discardunknown()`. Part of me thinks this should go in a util library instead of core reflection since it is a recursive algorithm. # Compiler - Always emit descriptors as an array instead of as a string, to avoid exceeding maximum string lengths. If this becomes a speed issue later we can go back to two separate paths.
5 years ago
}