blob: d8d757c8d98a301b174ecc027080349ed2206f79 [file] [log] [blame]
/*
* Copyright (C) 2017 The Android Open Source Project
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
/*******************************************************************************
* AUTOGENERATED - DO NOT EDIT
*******************************************************************************
* This file has been generated from the protobuf message
* protos/perfetto/config/profiling/java_hprof_config.proto
* by
* ../../tools/proto_to_cpp/proto_to_cpp.cc.
* If you need to make changes here, change the .proto file and then run
* ./tools/gen_tracing_cpp_headers_from_protos
*/
#include "src/profiling/memory/java_hprof_config.h"
#include "protos/perfetto/config/profiling/java_hprof_config.pb.h"
namespace perfetto {
JavaHprofConfig::JavaHprofConfig() = default;
JavaHprofConfig::~JavaHprofConfig() = default;
JavaHprofConfig::JavaHprofConfig(const JavaHprofConfig&) = default;
JavaHprofConfig& JavaHprofConfig::operator=(const JavaHprofConfig&) = default;
JavaHprofConfig::JavaHprofConfig(JavaHprofConfig&&) noexcept = default;
JavaHprofConfig& JavaHprofConfig::operator=(JavaHprofConfig&&) = default;
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wfloat-equal"
bool JavaHprofConfig::operator==(const JavaHprofConfig& other) const {
return (process_cmdline_ == other.process_cmdline_) && (pid_ == other.pid_) &&
(continuous_dump_config_ == other.continuous_dump_config_);
}
#pragma GCC diagnostic pop
void JavaHprofConfig::ParseRawProto(const std::string& raw) {
perfetto::protos::JavaHprofConfig proto;
proto.ParseFromString(raw);
FromProto(proto);
}
void JavaHprofConfig::FromProto(
const perfetto::protos::JavaHprofConfig& proto) {
process_cmdline_.clear();
for (const auto& field : proto.process_cmdline()) {
process_cmdline_.emplace_back();
static_assert(
sizeof(process_cmdline_.back()) == sizeof(proto.process_cmdline(0)),
"size mismatch");
process_cmdline_.back() =
static_cast<decltype(process_cmdline_)::value_type>(field);
}
pid_.clear();
for (const auto& field : proto.pid()) {
pid_.emplace_back();
static_assert(sizeof(pid_.back()) == sizeof(proto.pid(0)), "size mismatch");
pid_.back() = static_cast<decltype(pid_)::value_type>(field);
}
continuous_dump_config_->FromProto(proto.continuous_dump_config());
unknown_fields_ = proto.unknown_fields();
}
void JavaHprofConfig::ToProto(perfetto::protos::JavaHprofConfig* proto) const {
proto->Clear();
for (const auto& it : process_cmdline_) {
proto->add_process_cmdline(
static_cast<decltype(proto->process_cmdline(0))>(it));
static_assert(sizeof(it) == sizeof(proto->process_cmdline(0)),
"size mismatch");
}
for (const auto& it : pid_) {
proto->add_pid(static_cast<decltype(proto->pid(0))>(it));
static_assert(sizeof(it) == sizeof(proto->pid(0)), "size mismatch");
}
continuous_dump_config_->ToProto(proto->mutable_continuous_dump_config());
*(proto->mutable_unknown_fields()) = unknown_fields_;
}
JavaHprofConfig::ContinuousDumpConfig::ContinuousDumpConfig() = default;
JavaHprofConfig::ContinuousDumpConfig::~ContinuousDumpConfig() = default;
JavaHprofConfig::ContinuousDumpConfig::ContinuousDumpConfig(
const JavaHprofConfig::ContinuousDumpConfig&) = default;
JavaHprofConfig::ContinuousDumpConfig& JavaHprofConfig::ContinuousDumpConfig::
operator=(const JavaHprofConfig::ContinuousDumpConfig&) = default;
JavaHprofConfig::ContinuousDumpConfig::ContinuousDumpConfig(
JavaHprofConfig::ContinuousDumpConfig&&) noexcept = default;
JavaHprofConfig::ContinuousDumpConfig& JavaHprofConfig::ContinuousDumpConfig::
operator=(JavaHprofConfig::ContinuousDumpConfig&&) = default;
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wfloat-equal"
bool JavaHprofConfig::ContinuousDumpConfig::operator==(
const JavaHprofConfig::ContinuousDumpConfig& other) const {
return (dump_phase_ms_ == other.dump_phase_ms_) &&
(dump_interval_ms_ == other.dump_interval_ms_);
}
#pragma GCC diagnostic pop
void JavaHprofConfig::ContinuousDumpConfig::ParseRawProto(
const std::string& raw) {
perfetto::protos::JavaHprofConfig_ContinuousDumpConfig proto;
proto.ParseFromString(raw);
FromProto(proto);
}
void JavaHprofConfig::ContinuousDumpConfig::FromProto(
const perfetto::protos::JavaHprofConfig_ContinuousDumpConfig& proto) {
static_assert(sizeof(dump_phase_ms_) == sizeof(proto.dump_phase_ms()),
"size mismatch");
dump_phase_ms_ = static_cast<decltype(dump_phase_ms_)>(proto.dump_phase_ms());
static_assert(sizeof(dump_interval_ms_) == sizeof(proto.dump_interval_ms()),
"size mismatch");
dump_interval_ms_ =
static_cast<decltype(dump_interval_ms_)>(proto.dump_interval_ms());
unknown_fields_ = proto.unknown_fields();
}
void JavaHprofConfig::ContinuousDumpConfig::ToProto(
perfetto::protos::JavaHprofConfig_ContinuousDumpConfig* proto) const {
proto->Clear();
static_assert(sizeof(dump_phase_ms_) == sizeof(proto->dump_phase_ms()),
"size mismatch");
proto->set_dump_phase_ms(
static_cast<decltype(proto->dump_phase_ms())>(dump_phase_ms_));
static_assert(sizeof(dump_interval_ms_) == sizeof(proto->dump_interval_ms()),
"size mismatch");
proto->set_dump_interval_ms(
static_cast<decltype(proto->dump_interval_ms())>(dump_interval_ms_));
*(proto->mutable_unknown_fields()) = unknown_fields_;
}
} // namespace perfetto