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190 lines
6.7 KiB
190 lines
6.7 KiB
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#include "perf_data_converter.h" |
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#include "quipper/perf_parser.h" |
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#include <map> |
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using std::map; |
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namespace wireless_android_logging_awp { |
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typedef quipper::ParsedEvent::DSOAndOffset DSOAndOffset; |
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typedef std::vector<DSOAndOffset> callchain; |
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struct callchain_lt { |
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bool operator()(const callchain *c1, const callchain *c2) const { |
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if (c1->size() != c2->size()) { |
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return c1->size() < c2->size(); |
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} |
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for (unsigned idx = 0; idx < c1->size(); ++idx) { |
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const DSOAndOffset *do1 = &(*c1)[idx]; |
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const DSOAndOffset *do2 = &(*c2)[idx]; |
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if (do1->offset() != do2->offset()) { |
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return do1->offset() < do2->offset(); |
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} |
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int rc = do1->dso_name().compare(do2->dso_name()); |
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if (rc) { |
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return rc < 0; |
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} |
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} |
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return false; |
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} |
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}; |
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struct RangeTarget { |
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RangeTarget(uint64 start, uint64 end, uint64 to) |
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: start(start), end(end), to(to) {} |
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bool operator<(const RangeTarget &r) const { |
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if (start != r.start) { |
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return start < r.start; |
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} else if (end != r.end) { |
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return end < r.end; |
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} else { |
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return to < r.to; |
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} |
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} |
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uint64 start; |
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uint64 end; |
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uint64 to; |
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}; |
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struct BinaryProfile { |
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map<uint64, uint64> address_count_map; |
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map<RangeTarget, uint64> range_count_map; |
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map<const callchain *, uint64, callchain_lt> callchain_count_map; |
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}; |
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wireless_android_play_playlog::AndroidPerfProfile |
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RawPerfDataToAndroidPerfProfile(const string &perf_file) { |
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wireless_android_play_playlog::AndroidPerfProfile ret; |
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quipper::PerfParser parser; |
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if (!parser.ReadFile(perf_file) || !parser.ParseRawEvents()) { |
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return ret; |
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} |
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typedef map<string, BinaryProfile> ModuleProfileMap; |
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typedef map<string, ModuleProfileMap> ProgramProfileMap; |
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// Note: the callchain_count_map member in BinaryProfile contains |
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// pointers into callchains owned by "parser" above, meaning |
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// that once the parser is destroyed, callchain pointers in |
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// name_profile_map will become stale (e.g. keep these two |
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// together in the same region). |
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ProgramProfileMap name_profile_map; |
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uint64 total_samples = 0; |
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bool seen_branch_stack = false; |
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bool seen_callchain = false; |
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for (const auto &event : parser.parsed_events()) { |
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if (!event.raw_event || |
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event.raw_event->header.type != PERF_RECORD_SAMPLE) { |
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continue; |
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} |
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string dso_name = event.dso_and_offset.dso_name(); |
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string program_name = event.command(); |
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const string kernel_name = "[kernel.kallsyms]"; |
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if (dso_name.substr(0, kernel_name.length()) == kernel_name) { |
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dso_name = kernel_name; |
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if (program_name == "") { |
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program_name = "kernel"; |
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} |
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} else if (program_name == "") { |
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program_name = "unknown_program"; |
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} |
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total_samples++; |
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// We expect to see either all callchain events, all branch stack |
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// events, or all flat sample events, not a mix. For callchains, |
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// however, it can be the case that none of the IPs in a chain |
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// are mappable, in which case the parsed/mapped chain will appear |
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// empty (appearing as a flat sample). |
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if (!event.callchain.empty()) { |
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CHECK(!seen_branch_stack && "examining callchain"); |
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seen_callchain = true; |
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const callchain *cc = &event.callchain; |
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name_profile_map[program_name][dso_name].callchain_count_map[cc]++; |
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} else if (!event.branch_stack.empty()) { |
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CHECK(!seen_callchain && "examining branch stack"); |
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seen_branch_stack = true; |
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name_profile_map[program_name][dso_name].address_count_map[ |
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event.dso_and_offset.offset()]++; |
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} else { |
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name_profile_map[program_name][dso_name].address_count_map[ |
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event.dso_and_offset.offset()]++; |
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} |
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for (size_t i = 1; i < event.branch_stack.size(); i++) { |
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if (dso_name == event.branch_stack[i - 1].to.dso_name()) { |
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uint64 start = event.branch_stack[i].to.offset(); |
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uint64 end = event.branch_stack[i - 1].from.offset(); |
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uint64 to = event.branch_stack[i - 1].to.offset(); |
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// The interval between two taken branches should not be too large. |
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if (end < start || end - start > (1 << 20)) { |
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LOG(WARNING) << "Bogus LBR data: " << start << "->" << end; |
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continue; |
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} |
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name_profile_map[program_name][dso_name].range_count_map[ |
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RangeTarget(start, end, to)]++; |
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} |
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} |
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} |
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map<string, int> name_id_map; |
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for (const auto &program_profile : name_profile_map) { |
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for (const auto &module_profile : program_profile.second) { |
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name_id_map[module_profile.first] = 0; |
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} |
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} |
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int current_index = 0; |
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for (auto iter = name_id_map.begin(); iter != name_id_map.end(); ++iter) { |
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iter->second = current_index++; |
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} |
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map<string, string> name_buildid_map; |
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parser.GetFilenamesToBuildIDs(&name_buildid_map); |
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ret.set_total_samples(total_samples); |
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for (const auto &name_id : name_id_map) { |
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auto load_module = ret.add_load_modules(); |
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load_module->set_name(name_id.first); |
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auto nbmi = name_buildid_map.find(name_id.first); |
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if (nbmi != name_buildid_map.end()) { |
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const std::string &build_id = nbmi->second; |
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if (build_id.size() == 40 && build_id.substr(32) == "00000000") { |
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load_module->set_build_id(build_id.substr(0, 32)); |
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} else { |
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load_module->set_build_id(build_id); |
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} |
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} |
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} |
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for (const auto &program_profile : name_profile_map) { |
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auto program = ret.add_programs(); |
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program->set_name(program_profile.first); |
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for (const auto &module_profile : program_profile.second) { |
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int32 module_id = name_id_map[module_profile.first]; |
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auto module = program->add_modules(); |
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module->set_load_module_id(module_id); |
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for (const auto &addr_count : module_profile.second.address_count_map) { |
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auto address_samples = module->add_address_samples(); |
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address_samples->add_address(addr_count.first); |
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address_samples->set_count(addr_count.second); |
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} |
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for (const auto &range_count : module_profile.second.range_count_map) { |
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auto range_samples = module->add_range_samples(); |
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range_samples->set_start(range_count.first.start); |
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range_samples->set_end(range_count.first.end); |
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range_samples->set_to(range_count.first.to); |
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range_samples->set_count(range_count.second); |
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} |
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for (const auto &callchain_count : |
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module_profile.second.callchain_count_map) { |
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auto address_samples = module->add_address_samples(); |
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address_samples->set_count(callchain_count.second); |
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for (const auto &d_o : *callchain_count.first) { |
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int32 module_id = name_id_map[d_o.dso_name()]; |
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address_samples->add_load_module_id(module_id); |
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address_samples->add_address(d_o.offset()); |
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} |
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} |
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} |
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} |
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return ret; |
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} |
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} // namespace wireless_android_logging_awp
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