Protocol Buffers - Google's data interchange format (grpc依赖)
https://developers.google.com/protocol-buffers/
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633 lines
22 KiB
633 lines
22 KiB
12 years ago
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//
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// upb - a minimalist implementation of protocol buffers.
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//
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// Copyright (c) 2011-2012 Google Inc. See LICENSE for details.
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// Author: Josh Haberman <jhaberman@gmail.com>
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//
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// Note that we have received an exception from c-style-artiters regarding
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// dynamic_cast<> in this file:
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// https://groups.google.com/a/google.com/d/msg/c-style/7Zp_XCX0e7s/I6dpzno4l-MJ
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//
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// IMPORTANT NOTE! This file is compiled TWICE, once with UPB_GOOGLE3 defined
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// and once without! This allows us to provide functionality against proto2
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// and protobuf opensource both in a single binary without the two conflicting.
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// However we must be careful not to violate the ODR.
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#include "upb/google/proto2.h"
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#include "upb/google/proto1.h"
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#include "upb/bytestream.h"
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#include "upb/def.h"
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#include "upb/handlers.h"
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namespace upb {
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namespace proto2_bridge_google3 { class FieldAccessor; }
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namespace proto2_bridge_opensource { class FieldAccessor; }
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} // namespace upb
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// BEGIN DOUBLE COMPILATION TRICKERY. //////////////////////////////////////////
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#ifdef UPB_GOOGLE3
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// TODO(haberman): friend upb so that this isn't required.
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#define protected public
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#include "net/proto2/public/repeated_field.h"
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#undef protected
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#define private public
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#include "net/proto2/public/generated_message_reflection.h"
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#undef private
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#include "net/proto2/proto/descriptor.pb.h"
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#include "net/proto2/public/descriptor.h"
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#include "net/proto2/public/lazy_field.h"
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#include "net/proto2/public/message.h"
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#include "net/proto2/public/string_piece_field_support.h"
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#include "upb/google/cord.h"
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namespace goog = ::proto2;
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namespace me = ::upb::proto2_bridge_google3;
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#else
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// TODO(haberman): friend upb so that this isn't required.
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#define protected public
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#include "google/protobuf/repeated_field.h"
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#undef protected
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#define private public
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#include "google/protobuf/generated_message_reflection.h"
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#undef private
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#include "google/protobuf/descriptor.h"
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#include "google/protobuf/descriptor.pb.h"
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#include "google/protobuf/message.h"
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namespace goog = ::google::protobuf;
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namespace me = ::upb::proto2_bridge_opensource;
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#endif // ifdef UPB_GOOGLE3
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// END DOUBLE COMPILATION TRICKERY. ////////////////////////////////////////////
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// Have to define this manually since older versions of proto2 didn't define
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// an enum value for STRING.
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#define UPB_CTYPE_STRING 0
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template<class T> static T* GetPointer(void *message, size_t offset) {
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return reinterpret_cast<T*>(static_cast<char*>(message) + offset);
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}
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// This class contains handlers that can write into a proto2 class whose
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// reflection class is GeneratedMessageReflection. (Despite the name, even
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// DynamicMessage uses GeneratedMessageReflection, so this covers all proto2
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// messages generated by the compiler.) To do this it must break the
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// encapsulation of GeneratedMessageReflection and therefore depends on
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// internal interfaces that are not guaranteed to be stable. This class will
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// need to be updated if any non-backward-compatible changes are made to
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// GeneratedMessageReflection.
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//
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// TODO(haberman): change class name? In retrospect, "FieldAccessor" isn't the
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// best (something more specific like GeneratedMessageReflectionHandlers or
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// GMR_Handlers would be better) but we're depending on a "friend" declaration
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// in proto2 that already specifies "FieldAccessor." No versions of proto2 have
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// been released that include the "friend FieldAccessor" declaration, so there's
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// still time to change this. On the other hand, perhaps it's simpler to just
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// rely on "#define private public" since it may be a long time before new
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// versions of proto2 open source are pervasive enough that we can remove this
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// anyway.
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class me::FieldAccessor {
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public:
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// Returns true if we were able to set an accessor and any other properties
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// of the FieldDef that are necessary to read/write this field to a
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// proto2::Message.
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static bool TrySet(const goog::FieldDescriptor* proto2_f,
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const goog::Message& m,
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const upb::FieldDef* upb_f, upb::Handlers* h) {
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const goog::Reflection* base_r = m.GetReflection();
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// See file comment re: dynamic_cast.
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const goog::internal::GeneratedMessageReflection* r =
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dynamic_cast<const goog::internal::GeneratedMessageReflection*>(base_r);
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if (!r) return false;
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// Extensions not supported yet.
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if (proto2_f->is_extension()) return false;
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switch (proto2_f->cpp_type()) {
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#define PRIMITIVE_TYPE(cpptype, cident) \
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case goog::FieldDescriptor::cpptype: \
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SetPrimitiveHandlers<cident>(proto2_f, r, upb_f, h); return true;
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PRIMITIVE_TYPE(CPPTYPE_INT32, int32_t);
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PRIMITIVE_TYPE(CPPTYPE_INT64, int64_t);
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PRIMITIVE_TYPE(CPPTYPE_UINT32, uint32_t);
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PRIMITIVE_TYPE(CPPTYPE_UINT64, uint64_t);
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PRIMITIVE_TYPE(CPPTYPE_DOUBLE, double);
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PRIMITIVE_TYPE(CPPTYPE_FLOAT, float);
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PRIMITIVE_TYPE(CPPTYPE_BOOL, bool);
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#undef PRIMITIVE_TYPE
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case goog::FieldDescriptor::CPPTYPE_ENUM:
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SetEnumHandlers(proto2_f, r, upb_f, h);
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return true;
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case goog::FieldDescriptor::CPPTYPE_STRING: {
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// Old versions of the open-source protobuf release erroneously default
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// to Cord even though that has never been supported in the open-source
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// release.
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int32_t ctype = proto2_f->options().has_ctype() ?
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proto2_f->options().ctype() : UPB_CTYPE_STRING;
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switch (ctype) {
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#ifdef UPB_GOOGLE3
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case goog::FieldOptions::STRING:
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SetStringHandlers<string>(proto2_f, m, r, upb_f, h);
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return true;
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case goog::FieldOptions::CORD:
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SetCordHandlers(proto2_f, r, upb_f, h);
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return true;
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case goog::FieldOptions::STRING_PIECE:
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SetStringPieceHandlers(proto2_f, r, upb_f, h);
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return true;
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#else
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case UPB_CTYPE_STRING:
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SetStringHandlers<std::string>(proto2_f, m, r, upb_f, h);
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return true;
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#endif
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default:
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return false;
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}
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}
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case goog::FieldDescriptor::CPPTYPE_MESSAGE:
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#ifdef UPB_GOOGLE3
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if (proto2_f->options().lazy()) {
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return false; // Not yet implemented.
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} else {
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SetSubMessageHandlers(proto2_f, m, r, upb_f, h);
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return true;
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}
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#else
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SetSubMessageHandlers(proto2_f, m, r, upb_f, h);
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return true;
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#endif
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default:
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return false;
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}
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}
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static const goog::Message* GetFieldPrototype(
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const goog::Message& m,
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const goog::FieldDescriptor* f) {
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// We assume that all submessages (and extensions) will be constructed
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// using the same MessageFactory as this message. This doesn't cover the
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// case of CodedInputStream::SetExtensionRegistry().
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// See file comment re: dynamic_cast.
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const goog::internal::GeneratedMessageReflection* r =
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dynamic_cast<const goog::internal::GeneratedMessageReflection*>(
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m.GetReflection());
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if (!r) return NULL;
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return r->message_factory_->GetPrototype(f->message_type());
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}
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private:
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static upb_selector_t GetSelector(const upb::FieldDef* f,
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upb::Handlers::Type type) {
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upb::Handlers::Selector selector;
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bool ok = upb::Handlers::GetSelector(f, type, &selector);
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UPB_ASSERT_VAR(ok, ok);
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return selector;
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}
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static int64_t GetHasbit(
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const goog::FieldDescriptor* f,
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const goog::internal::GeneratedMessageReflection* r) {
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// proto2 does not store hasbits for repeated fields.
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assert(!f->is_repeated());
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return (r->has_bits_offset_ * 8) + f->index();
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}
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static uint16_t GetOffset(
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const goog::FieldDescriptor* f,
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const goog::internal::GeneratedMessageReflection* r) {
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return r->offsets_[f->index()];
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}
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class FieldOffset {
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public:
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FieldOffset(
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const goog::FieldDescriptor* f,
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const goog::internal::GeneratedMessageReflection* r)
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: offset_(GetOffset(f, r)),
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is_repeated_(f->is_repeated()) {
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if (!is_repeated_) {
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int64_t hasbit = GetHasbit(f, r);
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hasbyte_ = hasbit / 8;
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mask_ = 1 << (hasbit % 8);
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}
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}
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template<class T> T* GetFieldPointer(void *message) const {
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return GetPointer<T>(message, offset_);
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}
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void SetHasbit(void* m) const {
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assert(!is_repeated_);
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uint8_t* byte = GetPointer<uint8_t>(m, hasbyte_);
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*byte |= mask_;
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}
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private:
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const size_t offset_;
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bool is_repeated_;
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// Only for non-repeated fields.
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int32_t hasbyte_;
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int8_t mask_;
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};
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// StartSequence /////////////////////////////////////////////////////////////
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static void SetStartSequenceHandler(
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const goog::FieldDescriptor* proto2_f,
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const goog::internal::GeneratedMessageReflection* r,
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const upb::FieldDef* f, upb::Handlers* h) {
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assert(f->IsSequence());
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h->SetStartSequenceHandler(
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f, &PushOffset, new FieldOffset(proto2_f, r),
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&upb::DeletePointer<FieldOffset>);
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}
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static void* PushOffset(void *m, void *fval) {
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const FieldOffset* offset = static_cast<FieldOffset*>(fval);
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return offset->GetFieldPointer<void>(m);
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}
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// Primitive Value (numeric, bool) ///////////////////////////////////////////
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template <typename T> static void SetPrimitiveHandlers(
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const goog::FieldDescriptor* proto2_f,
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const goog::internal::GeneratedMessageReflection* r,
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const upb::FieldDef* f,
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upb::Handlers* h) {
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if (f->IsSequence()) {
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SetStartSequenceHandler(proto2_f, r, f, h);
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h->SetValueHandler<T>(f, &AppendPrimitive<T>, NULL, NULL);
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} else {
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upb::SetStoreValueHandler<T>(
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f, GetOffset(proto2_f, r), GetHasbit(proto2_f, r), h);
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}
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}
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template <typename T>
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static bool AppendPrimitive(void *_r, void *fval, T val) {
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UPB_UNUSED(fval);
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goog::RepeatedField<T>* r = static_cast<goog::RepeatedField<T>*>(_r);
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r->Add(val);
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return true;
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}
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// Enum //////////////////////////////////////////////////////////////////////
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class EnumHandlerData : public FieldOffset {
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public:
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EnumHandlerData(
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const goog::FieldDescriptor* proto2_f,
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const goog::internal::GeneratedMessageReflection* r,
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const upb::FieldDef* f)
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: FieldOffset(proto2_f, r),
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field_number_(f->number()),
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unknown_fields_offset_(r->unknown_fields_offset_),
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enum_(upb_downcast_enumdef(f->subdef())) {
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}
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bool IsValidValue(int32_t val) const {
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return enum_->FindValueByNumber(val) != NULL;
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}
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int32_t field_number() const { return field_number_; }
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goog::UnknownFieldSet* mutable_unknown_fields(goog::Message* m) const {
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return GetPointer<goog::UnknownFieldSet>(m, unknown_fields_offset_);
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}
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private:
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int32_t field_number_;
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size_t unknown_fields_offset_;
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const upb::EnumDef* enum_;
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};
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static void SetEnumHandlers(
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const goog::FieldDescriptor* proto2_f,
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const goog::internal::GeneratedMessageReflection* r,
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const upb::FieldDef* f,
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upb::Handlers* h) {
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EnumHandlerData* data = new EnumHandlerData(proto2_f, r, f);
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if (f->IsSequence()) {
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h->SetInt32Handler(
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f, &AppendEnum, data, &upb::DeletePointer<EnumHandlerData>);
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} else {
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h->SetInt32Handler(
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f, &SetEnum, data, &upb::DeletePointer<EnumHandlerData>);
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}
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}
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static bool SetEnum(void *_m, void *fval, int32_t val) {
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goog::Message* m = static_cast<goog::Message*>(_m);
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const EnumHandlerData* data = static_cast<const EnumHandlerData*>(fval);
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if (data->IsValidValue(val)) {
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int32_t* message_val = data->GetFieldPointer<int32_t>(m);
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*message_val = val;
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data->SetHasbit(m);
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} else {
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data->mutable_unknown_fields(m)->AddVarint(data->field_number(), val);
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}
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return true;
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}
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static bool AppendEnum(void *_m, void *fval, int32_t val) {
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// Closure is the enclosing message. We can't use the RepeatedField<> as
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// the closure because we need to go back to the message for unrecognized
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// enum values, which go into the unknown field set.
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goog::Message* m = static_cast<goog::Message*>(_m);
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const EnumHandlerData* data = static_cast<const EnumHandlerData*>(fval);
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if (data->IsValidValue(val)) {
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goog::RepeatedField<int32_t>* r =
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data->GetFieldPointer<goog::RepeatedField<int32_t> >(m);
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r->Add(val);
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} else {
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data->mutable_unknown_fields(m)->AddVarint(data->field_number(), val);
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}
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return true;
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}
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// String ////////////////////////////////////////////////////////////////////
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// For scalar (non-repeated) string fields.
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template<class T>
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class StringHandlerData : public FieldOffset {
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public:
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StringHandlerData(const goog::FieldDescriptor* proto2_f,
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const goog::internal::GeneratedMessageReflection* r,
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const goog::Message& prototype)
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: FieldOffset(proto2_f, r) {
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// "prototype" isn't guaranteed to be empty, so we create a copy to get
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// the default string instance.
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goog::Message* empty = prototype.New();
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prototype_ = &r->GetStringReference(*empty, proto2_f, NULL);
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delete empty;
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}
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const T* prototype() const { return prototype_; }
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T** GetStringPointer(void *message) const {
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return GetFieldPointer<T*>(message);
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}
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private:
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const T* prototype_;
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};
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template <typename T> static void SetStringHandlers(
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const goog::FieldDescriptor* proto2_f,
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const goog::Message& m,
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const goog::internal::GeneratedMessageReflection* r,
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const upb::FieldDef* f,
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upb::Handlers* h) {
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h->SetStringHandler(f, &OnStringBuf<T>, NULL, NULL);
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if (f->IsSequence()) {
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SetStartSequenceHandler(proto2_f, r, f, h);
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h->SetStartStringHandler(f, &StartRepeatedString<T>, NULL, NULL);
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} else {
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StringHandlerData<T>* data = new StringHandlerData<T>(proto2_f, r, m);
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h->SetStartStringHandler(
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f, &StartString<T>, data, &upb::DeletePointer<StringHandlerData<T> >);
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}
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}
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// This needs to be templated because google3 string is not std::string.
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template <typename T> static void* StartString(
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void *m, void *fval, size_t size_hint) {
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UPB_UNUSED(size_hint);
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const StringHandlerData<T>* data =
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static_cast<const StringHandlerData<T>*>(fval);
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T** str = data->GetStringPointer(m);
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data->SetHasbit(m);
|
||
|
// If it points to the default instance, we must create a new instance.
|
||
|
if (*str == data->prototype()) *str = new T();
|
||
|
(*str)->clear();
|
||
|
// reserve() here appears to hurt performance rather than help.
|
||
|
return *str;
|
||
|
}
|
||
|
|
||
|
template <typename T> static size_t OnStringBuf(
|
||
|
void *_str, void *fval, const char *buf, size_t n) {
|
||
|
UPB_UNUSED(fval);
|
||
|
T* str = static_cast<T*>(_str);
|
||
|
str->append(buf, n);
|
||
|
return n;
|
||
|
}
|
||
|
|
||
|
|
||
|
template <typename T>
|
||
|
static void* StartRepeatedString(void *_r, void *fval, size_t size_hint) {
|
||
|
UPB_UNUSED(size_hint);
|
||
|
UPB_UNUSED(fval);
|
||
|
goog::RepeatedPtrField<T>* r = static_cast<goog::RepeatedPtrField<T>*>(_r);
|
||
|
T* str = r->Add();
|
||
|
str->clear();
|
||
|
// reserve() here appears to hurt performance rather than help.
|
||
|
return str;
|
||
|
}
|
||
|
|
||
|
// SubMessage ////////////////////////////////////////////////////////////////
|
||
|
|
||
|
class SubMessageHandlerData : public FieldOffset {
|
||
|
public:
|
||
|
SubMessageHandlerData(
|
||
|
const goog::FieldDescriptor* f,
|
||
|
const goog::internal::GeneratedMessageReflection* r,
|
||
|
const goog::Message* prototype)
|
||
|
: FieldOffset(f, r),
|
||
|
prototype_(prototype) {
|
||
|
}
|
||
|
|
||
|
const goog::Message* prototype() const { return prototype_; }
|
||
|
|
||
|
private:
|
||
|
const goog::Message* const prototype_;
|
||
|
};
|
||
|
|
||
|
static void SetSubMessageHandlers(
|
||
|
const goog::FieldDescriptor* proto2_f,
|
||
|
const goog::Message& m,
|
||
|
const goog::internal::GeneratedMessageReflection* r,
|
||
|
const upb::FieldDef* f,
|
||
|
upb::Handlers* h) {
|
||
|
SubMessageHandlerData* data =
|
||
|
new SubMessageHandlerData(proto2_f, r, GetFieldPrototype(m, proto2_f));
|
||
|
upb::Handlers::Free* free = &upb::DeletePointer<SubMessageHandlerData>;
|
||
|
if (f->IsSequence()) {
|
||
|
SetStartSequenceHandler(proto2_f, r, f, h);
|
||
|
h->SetStartSubMessageHandler(f, &StartRepeatedSubMessage, data, free);
|
||
|
} else {
|
||
|
h->SetStartSubMessageHandler(f, &StartSubMessage, data, free);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
static void* StartSubMessage(void *m, void *fval) {
|
||
|
const SubMessageHandlerData* data =
|
||
|
static_cast<const SubMessageHandlerData*>(fval);
|
||
|
data->SetHasbit(m);
|
||
|
goog::Message **subm = data->GetFieldPointer<goog::Message*>(m);
|
||
|
if (*subm == NULL || *subm == data->prototype()) {
|
||
|
*subm = data->prototype()->New();
|
||
|
}
|
||
|
return *subm;
|
||
|
}
|
||
|
|
||
|
class RepeatedMessageTypeHandler {
|
||
|
public:
|
||
|
typedef void Type;
|
||
|
// AddAllocated() calls this, but only if other objects are sitting
|
||
|
// around waiting for reuse, which we will not do.
|
||
|
static void Delete(Type* t) {
|
||
|
(void)t;
|
||
|
assert(false);
|
||
|
}
|
||
|
};
|
||
|
|
||
|
// Closure is a RepeatedPtrField<SubMessageType>*, but we access it through
|
||
|
// its base class RepeatedPtrFieldBase*.
|
||
|
static void* StartRepeatedSubMessage(void* _r, void *fval) {
|
||
|
const SubMessageHandlerData* data =
|
||
|
static_cast<const SubMessageHandlerData*>(fval);
|
||
|
goog::internal::RepeatedPtrFieldBase *r =
|
||
|
static_cast<goog::internal::RepeatedPtrFieldBase*>(_r);
|
||
|
void *submsg = r->AddFromCleared<RepeatedMessageTypeHandler>();
|
||
|
if (!submsg) {
|
||
|
submsg = data->prototype()->New();
|
||
|
r->AddAllocated<RepeatedMessageTypeHandler>(submsg);
|
||
|
}
|
||
|
return submsg;
|
||
|
}
|
||
|
|
||
|
// TODO(haberman): handle Extensions, Unknown Fields.
|
||
|
|
||
|
#ifdef UPB_GOOGLE3
|
||
|
// Handlers for types/features only included in internal proto2 release:
|
||
|
// Cord, StringPiece, LazyField, and MessageSet.
|
||
|
// TODO(haberman): LazyField, MessageSet.
|
||
|
|
||
|
// Cord //////////////////////////////////////////////////////////////////////
|
||
|
|
||
|
static void SetCordHandlers(
|
||
|
const proto2::FieldDescriptor* proto2_f,
|
||
|
const proto2::internal::GeneratedMessageReflection* r,
|
||
|
const upb::FieldDef* f, upb::Handlers* h) {
|
||
|
h->SetStringHandler(f, &OnCordBuf, NULL, NULL);
|
||
|
if (f->IsSequence()) {
|
||
|
SetStartSequenceHandler(proto2_f, r, f, h);
|
||
|
h->SetStartStringHandler(f, &StartRepeatedCord, NULL, NULL);
|
||
|
} else {
|
||
|
h->SetStartStringHandler(
|
||
|
f, &StartCord, new FieldOffset(proto2_f, r),
|
||
|
&upb::DeletePointer<FieldOffset*>);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
static void* StartCord(void *m, void *fval, size_t size_hint) {
|
||
|
UPB_UNUSED(size_hint);
|
||
|
const FieldOffset* offset = static_cast<const FieldOffset*>(fval);
|
||
|
offset->SetHasbit(m);
|
||
|
Cord* field = offset->GetFieldPointer<Cord>(m);
|
||
|
field->Clear();
|
||
|
return field;
|
||
|
}
|
||
|
|
||
|
static size_t OnCordBuf(void *_c, void *fval, const char *buf, size_t n) {
|
||
|
UPB_UNUSED(fval);
|
||
|
Cord* c = static_cast<Cord*>(_c);
|
||
|
c->Append(StringPiece(buf, n));
|
||
|
return n;
|
||
|
}
|
||
|
|
||
|
static void* StartRepeatedCord(void *_r, void *fval, size_t size_hint) {
|
||
|
UPB_UNUSED(size_hint);
|
||
|
UPB_UNUSED(fval);
|
||
|
proto2::RepeatedField<Cord>* r =
|
||
|
static_cast<proto2::RepeatedField<Cord>*>(_r);
|
||
|
return r->Add();
|
||
|
}
|
||
|
|
||
|
// StringPiece ///////////////////////////////////////////////////////////////
|
||
|
|
||
|
static void SetStringPieceHandlers(
|
||
|
const proto2::FieldDescriptor* proto2_f,
|
||
|
const proto2::internal::GeneratedMessageReflection* r,
|
||
|
const upb::FieldDef* f, upb::Handlers* h) {
|
||
|
h->SetStringHandler(f, &OnStringPieceBuf, NULL, NULL);
|
||
|
if (f->IsSequence()) {
|
||
|
SetStartSequenceHandler(proto2_f, r, f, h);
|
||
|
h->SetStartStringHandler(f, &StartRepeatedStringPiece, NULL, NULL);
|
||
|
} else {
|
||
|
h->SetStartStringHandler(
|
||
|
f, &StartStringPiece, new FieldOffset(proto2_f, r),
|
||
|
&upb::DeletePointer<FieldOffset*>);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
static size_t OnStringPieceBuf(void *_f, void *fval,
|
||
|
const char *buf, size_t len) {
|
||
|
UPB_UNUSED(fval);
|
||
|
// TODO(haberman): alias if possible and enabled on the input stream.
|
||
|
// TODO(haberman): add a method to StringPieceField that lets us avoid
|
||
|
// this copy/malloc/free.
|
||
|
proto2::internal::StringPieceField* field =
|
||
|
static_cast<proto2::internal::StringPieceField*>(_f);
|
||
|
size_t new_len = field->size() + len;
|
||
|
char *data = new char[new_len];
|
||
|
memcpy(data, field->data(), field->size());
|
||
|
memcpy(data + field->size(), buf, len);
|
||
|
field->CopyFrom(StringPiece(data, new_len));
|
||
|
delete[] data;
|
||
|
return len;
|
||
|
}
|
||
|
|
||
|
static void* StartStringPiece(void *m, void *fval, size_t size_hint) {
|
||
|
UPB_UNUSED(size_hint);
|
||
|
const FieldOffset* offset = static_cast<const FieldOffset*>(fval);
|
||
|
offset->SetHasbit(m);
|
||
|
proto2::internal::StringPieceField* field =
|
||
|
offset->GetFieldPointer<proto2::internal::StringPieceField>(m);
|
||
|
field->Clear();
|
||
|
return field;
|
||
|
}
|
||
|
|
||
|
static void* StartRepeatedStringPiece(void* _r, void *fval,
|
||
|
size_t size_hint) {
|
||
|
UPB_UNUSED(size_hint);
|
||
|
UPB_UNUSED(fval);
|
||
|
typedef proto2::RepeatedPtrField<proto2::internal::StringPieceField>
|
||
|
RepeatedStringPiece;
|
||
|
RepeatedStringPiece* r = static_cast<RepeatedStringPiece*>(_r);
|
||
|
proto2::internal::StringPieceField* field = r->Add();
|
||
|
field->Clear();
|
||
|
return field;
|
||
|
}
|
||
|
|
||
|
#endif // UPB_GOOGLE3
|
||
|
};
|
||
|
|
||
|
namespace upb {
|
||
|
namespace google {
|
||
|
|
||
|
bool TrySetWriteHandlers(const goog::FieldDescriptor* proto2_f,
|
||
|
const goog::Message& prototype,
|
||
|
const upb::FieldDef* upb_f, upb::Handlers* h) {
|
||
|
return me::FieldAccessor::TrySet(proto2_f, prototype, upb_f, h);
|
||
|
}
|
||
|
|
||
|
const goog::Message* GetFieldPrototype(
|
||
|
const goog::Message& m,
|
||
|
const goog::FieldDescriptor* f) {
|
||
|
return me::FieldAccessor::GetFieldPrototype(m, f);
|
||
|
}
|
||
|
|
||
|
} // namespace google
|
||
|
} // namespace upb
|