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944 lines
27 KiB
944 lines
27 KiB
/* |
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** |
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** Copyright 2015, The Android Open Source Project |
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** |
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** Licensed under the Apache License, Version 2.0 (the "License"); |
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** you may not use this file except in compliance with the License. |
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** You may obtain a copy of the License at |
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** |
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** http://www.apache.org/licenses/LICENSE-2.0 |
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** |
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** Unless required by applicable law or agreed to in writing, software |
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** distributed under the License is distributed on an "AS IS" BASIS, |
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** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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** See the License for the specific language governing permissions and |
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** limitations under the License. |
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*/ |
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#include <assert.h> |
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#include <dirent.h> |
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#include <errno.h> |
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#include <fcntl.h> |
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#include <signal.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <sys/stat.h> |
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#include <sys/types.h> |
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#include <sys/wait.h> |
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#include <time.h> |
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#include <unistd.h> |
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#include <string> |
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#include <sstream> |
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#include <map> |
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#include <set> |
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#include <cctype> |
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#include <android-base/file.h> |
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#include <android-base/stringprintf.h> |
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#include <cutils/properties.h> |
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#include "perfprofdcore.h" |
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#include "perfprofdutils.h" |
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#include "perf_data_converter.h" |
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#include "cpuconfig.h" |
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#include "configreader.h" |
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// |
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// Perf profiling daemon -- collects system-wide profiles using |
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// |
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// simpleperf record -a |
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// |
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// and encodes them so that they can be uploaded by a separate service. |
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// |
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//...................................................................... |
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// |
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// Output file from 'perf record'. |
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// |
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#define PERF_OUTPUT "perf.data" |
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// |
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// This enum holds the results of the "should we profile" configuration check. |
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// |
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typedef enum { |
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// All systems go for profile collection. |
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DO_COLLECT_PROFILE, |
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// The selected configuration directory doesn't exist. |
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DONT_PROFILE_MISSING_CONFIG_DIR, |
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// Destination directory does not contain the semaphore file that |
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// the perf profile uploading service creates when it determines |
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// that the user has opted "in" for usage data collection. No |
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// semaphore -> no user approval -> no profiling. |
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DONT_PROFILE_MISSING_SEMAPHORE, |
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// No perf executable present |
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DONT_PROFILE_MISSING_PERF_EXECUTABLE, |
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// We're running in the emulator, perf won't be able to do much |
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DONT_PROFILE_RUNNING_IN_EMULATOR |
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} CKPROFILE_RESULT; |
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// |
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// Are we running in the emulator? If so, stub out profile collection |
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// Starts as uninitialized (-1), then set to 1 or 0 at init time. |
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// |
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static int running_in_emulator = -1; |
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// |
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// Is this a debug build ('userdebug' or 'eng')? |
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// Starts as uninitialized (-1), then set to 1 or 0 at init time. |
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// |
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static int is_debug_build = -1; |
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// |
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// Path to the perf file to convert and exit? Empty value is the default, daemon mode. |
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// |
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static std::string perf_file_to_convert = ""; |
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// |
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// Random number generator seed (set at startup time). |
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// |
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static unsigned short random_seed[3]; |
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// |
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// SIGHUP handler. Sending SIGHUP to the daemon can be used to break it |
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// out of a sleep() call so as to trigger a new collection (debugging) |
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// |
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static void sig_hup(int /* signum */) |
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{ |
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W_ALOGW("SIGHUP received"); |
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} |
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// |
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// Parse command line args. Currently supported flags: |
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// * "-c PATH" sets the path of the config file to PATH. |
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// * "-x PATH" reads PATH as a perf data file and saves it as a file in |
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// perf_profile.proto format. ".encoded" suffix is appended to PATH to form |
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// the output file path. |
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// |
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static void parse_args(int argc, char** argv) |
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{ |
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int ac; |
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for (ac = 1; ac < argc; ++ac) { |
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if (!strcmp(argv[ac], "-c")) { |
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if (ac >= argc-1) { |
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W_ALOGE("malformed command line: -c option requires argument)"); |
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continue; |
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} |
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ConfigReader::setConfigFilePath(argv[ac+1]); |
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++ac; |
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} else if (!strcmp(argv[ac], "-x")) { |
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if (ac >= argc-1) { |
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W_ALOGE("malformed command line: -x option requires argument)"); |
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continue; |
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} |
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perf_file_to_convert = argv[ac+1]; |
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++ac; |
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} else { |
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W_ALOGE("malformed command line: unknown option or arg %s)", argv[ac]); |
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continue; |
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} |
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} |
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} |
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// |
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// Convert a CKPROFILE_RESULT to a string |
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// |
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const char *ckprofile_result_to_string(CKPROFILE_RESULT result) |
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{ |
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switch (result) { |
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case DO_COLLECT_PROFILE: |
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return "DO_COLLECT_PROFILE"; |
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case DONT_PROFILE_MISSING_CONFIG_DIR: |
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return "missing config directory"; |
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case DONT_PROFILE_MISSING_SEMAPHORE: |
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return "missing semaphore file"; |
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case DONT_PROFILE_MISSING_PERF_EXECUTABLE: |
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return "missing 'perf' executable"; |
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case DONT_PROFILE_RUNNING_IN_EMULATOR: |
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return "running in emulator"; |
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default: return "unknown"; |
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} |
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return "notreached"; |
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} |
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// |
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// Convert a PROFILE_RESULT to a string |
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// |
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const char *profile_result_to_string(PROFILE_RESULT result) |
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{ |
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switch(result) { |
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case OK_PROFILE_COLLECTION: |
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return "profile collection succeeded"; |
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case ERR_FORK_FAILED: |
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return "fork() system call failed"; |
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case ERR_PERF_RECORD_FAILED: |
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return "perf record returned bad exit status"; |
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case ERR_PERF_ENCODE_FAILED: |
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return "failure encoding perf.data to protobuf"; |
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case ERR_OPEN_ENCODED_FILE_FAILED: |
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return "failed to open encoded perf file"; |
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case ERR_WRITE_ENCODED_FILE_FAILED: |
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return "write to encoded perf file failed"; |
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default: return "unknown"; |
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} |
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return "notreached"; |
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} |
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// |
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// Check to see whether we should perform a profile collection |
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// |
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static CKPROFILE_RESULT check_profiling_enabled(ConfigReader &config) |
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{ |
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// |
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// Profile collection in the emulator doesn't make sense |
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// |
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assert(running_in_emulator != -1); |
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if (running_in_emulator) { |
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return DONT_PROFILE_RUNNING_IN_EMULATOR; |
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} |
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// |
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// Check for existence of semaphore file in config directory |
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// |
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if (access(config.getStringValue("config_directory").c_str(), F_OK) == -1) { |
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W_ALOGW("unable to open config directory %s: (%s)", |
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config.getStringValue("config_directory").c_str(), strerror(errno)); |
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return DONT_PROFILE_MISSING_CONFIG_DIR; |
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} |
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// Check for existence of semaphore file |
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std::string semaphore_filepath = config.getStringValue("config_directory") |
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+ "/" + SEMAPHORE_FILENAME; |
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if (access(semaphore_filepath.c_str(), F_OK) == -1) { |
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return DONT_PROFILE_MISSING_SEMAPHORE; |
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} |
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// Check for existence of simpleperf/perf executable |
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std::string pp = config.getStringValue("perf_path"); |
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if (access(pp.c_str(), R_OK|X_OK) == -1) { |
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W_ALOGW("unable to access/execute %s", pp.c_str()); |
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return DONT_PROFILE_MISSING_PERF_EXECUTABLE; |
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} |
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// |
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// We are good to go |
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// |
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return DO_COLLECT_PROFILE; |
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} |
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bool get_booting() |
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{ |
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char propBuf[PROPERTY_VALUE_MAX]; |
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propBuf[0] = '\0'; |
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property_get("sys.boot_completed", propBuf, ""); |
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return (propBuf[0] != '1'); |
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} |
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// |
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// Constructor takes a timeout (in seconds) and a child pid; If an |
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// alarm set for the specified number of seconds triggers, then a |
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// SIGKILL is sent to the child. Destructor resets alarm. Example: |
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// |
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// pid_t child_pid = ...; |
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// { AlarmHelper h(10, child_pid); |
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// ... = read_from_child(child_pid, ...); |
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// } |
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// |
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// NB: this helper is not re-entrant-- avoid nested use or |
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// use by multiple threads |
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// |
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class AlarmHelper { |
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public: |
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AlarmHelper(unsigned num_seconds, pid_t child) |
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{ |
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struct sigaction sigact; |
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assert(child); |
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assert(child_ == 0); |
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memset(&sigact, 0, sizeof(sigact)); |
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sigact.sa_sigaction = handler; |
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sigaction(SIGALRM, &sigact, &oldsigact_); |
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child_ = child; |
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alarm(num_seconds); |
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} |
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~AlarmHelper() |
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{ |
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alarm(0); |
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child_ = 0; |
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sigaction(SIGALRM, &oldsigact_, NULL); |
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} |
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static void handler(int, siginfo_t *, void *); |
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private: |
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struct sigaction oldsigact_; |
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static pid_t child_; |
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}; |
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pid_t AlarmHelper::child_; |
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void AlarmHelper::handler(int, siginfo_t *, void *) |
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{ |
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W_ALOGW("SIGALRM timeout"); |
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kill(child_, SIGKILL); |
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} |
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// |
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// This implementation invokes "dumpsys media.camera" and inspects the |
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// output to determine if any camera clients are active. NB: this is |
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// currently disable (via config option) until the selinux issues can |
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// be sorted out. Another possible implementation (not yet attempted) |
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// would be to use the binder to call into the native camera service |
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// via "ICameraService". |
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// |
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bool get_camera_active() |
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{ |
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int pipefds[2]; |
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if (pipe2(pipefds, O_CLOEXEC) != 0) { |
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W_ALOGE("pipe2() failed (%s)", strerror(errno)); |
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return false; |
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} |
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pid_t pid = fork(); |
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if (pid == -1) { |
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W_ALOGE("fork() failed (%s)", strerror(errno)); |
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close(pipefds[0]); |
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close(pipefds[1]); |
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return false; |
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} else if (pid == 0) { |
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// child |
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close(pipefds[0]); |
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dup2(pipefds[1], fileno(stderr)); |
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dup2(pipefds[1], fileno(stdout)); |
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const char *argv[10]; |
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unsigned slot = 0; |
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argv[slot++] = "/system/bin/dumpsys"; |
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argv[slot++] = "media.camera"; |
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argv[slot++] = nullptr; |
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execvp(argv[0], (char * const *)argv); |
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W_ALOGE("execvp() failed (%s)", strerror(errno)); |
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return false; |
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} |
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// parent |
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AlarmHelper helper(10, pid); |
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close(pipefds[1]); |
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// read output |
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bool have_cam = false; |
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bool have_clients = true; |
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std::string dump_output; |
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bool result = android::base::ReadFdToString(pipefds[0], &dump_output); |
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close(pipefds[0]); |
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if (result) { |
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std::stringstream ss(dump_output); |
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std::string line; |
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while (std::getline(ss,line,'\n')) { |
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if (line.find("Camera module API version:") != |
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std::string::npos) { |
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have_cam = true; |
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} |
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if (line.find("No camera module available") != |
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std::string::npos || |
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line.find("No active camera clients yet") != |
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std::string::npos) { |
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have_clients = false; |
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} |
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} |
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} |
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// reap child (no zombies please) |
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int st = 0; |
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TEMP_FAILURE_RETRY(waitpid(pid, &st, 0)); |
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return have_cam && have_clients; |
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} |
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bool get_charging() |
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{ |
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std::string psdir("/sys/class/power_supply"); |
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DIR* dir = opendir(psdir.c_str()); |
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if (dir == NULL) { |
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W_ALOGE("Failed to open dir %s (%s)", psdir.c_str(), strerror(errno)); |
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return false; |
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} |
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struct dirent* e; |
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bool result = false; |
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while ((e = readdir(dir)) != 0) { |
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if (e->d_name[0] != '.') { |
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std::string online_path = psdir + "/" + e->d_name + "/online"; |
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std::string contents; |
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int value = 0; |
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if (android::base::ReadFileToString(online_path.c_str(), &contents) && |
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sscanf(contents.c_str(), "%d", &value) == 1) { |
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if (value) { |
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result = true; |
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break; |
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} |
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} |
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} |
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} |
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closedir(dir); |
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return result; |
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} |
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bool postprocess_proc_stat_contents(const std::string &pscontents, |
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long unsigned *idleticks, |
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long unsigned *remainingticks) |
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{ |
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long unsigned usertime, nicetime, systime, idletime, iowaittime; |
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long unsigned irqtime, softirqtime; |
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|
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int rc = sscanf(pscontents.c_str(), "cpu %lu %lu %lu %lu %lu %lu %lu", |
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&usertime, &nicetime, &systime, &idletime, |
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&iowaittime, &irqtime, &softirqtime); |
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if (rc != 7) { |
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return false; |
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} |
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*idleticks = idletime; |
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*remainingticks = usertime + nicetime + systime + iowaittime + irqtime + softirqtime; |
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return true; |
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} |
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|
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unsigned collect_cpu_utilization() |
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{ |
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std::string contents; |
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long unsigned idle[2]; |
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long unsigned busy[2]; |
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for (unsigned iter = 0; iter < 2; ++iter) { |
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if (!android::base::ReadFileToString("/proc/stat", &contents)) { |
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return 0; |
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} |
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if (!postprocess_proc_stat_contents(contents, &idle[iter], &busy[iter])) { |
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return 0; |
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} |
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if (iter == 0) { |
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sleep(1); |
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} |
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} |
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long unsigned total_delta = (idle[1] + busy[1]) - (idle[0] + busy[0]); |
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long unsigned busy_delta = busy[1] - busy[0]; |
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return busy_delta * 100 / total_delta; |
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} |
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static void annotate_encoded_perf_profile(wireless_android_play_playlog::AndroidPerfProfile *profile, |
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const ConfigReader &config, |
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unsigned cpu_utilization) |
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{ |
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// |
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// Incorporate cpu utilization (collected prior to perf run) |
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// |
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if (config.getUnsignedValue("collect_cpu_utilization")) { |
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profile->set_cpu_utilization(cpu_utilization); |
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} |
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// |
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// Load average as reported by the kernel |
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// |
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std::string load; |
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double fload = 0.0; |
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if (android::base::ReadFileToString("/proc/loadavg", &load) && |
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sscanf(load.c_str(), "%lf", &fload) == 1) { |
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int iload = static_cast<int>(fload * 100.0); |
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profile->set_sys_load_average(iload); |
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} else { |
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W_ALOGE("Failed to read or scan /proc/loadavg (%s)", strerror(errno)); |
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} |
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|
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// |
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// Device still booting? Camera in use? Plugged into charger? |
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// |
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bool is_booting = get_booting(); |
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if (config.getUnsignedValue("collect_booting")) { |
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profile->set_booting(is_booting); |
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} |
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if (config.getUnsignedValue("collect_camera_active")) { |
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profile->set_camera_active(is_booting ? false : get_camera_active()); |
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} |
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if (config.getUnsignedValue("collect_charging_state")) { |
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profile->set_on_charger(get_charging()); |
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} |
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|
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// |
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// Examine the contents of wake_unlock to determine whether the |
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// device display is on or off. NB: is this really the only way to |
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// determine this info? |
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// |
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std::string disp; |
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if (android::base::ReadFileToString("/sys/power/wake_unlock", &disp)) { |
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bool ison = (strstr(disp.c_str(), "PowerManagerService.Display") == 0); |
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profile->set_display_on(ison); |
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} else { |
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W_ALOGE("Failed to read /sys/power/wake_unlock (%s)", strerror(errno)); |
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} |
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} |
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|
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inline char* string_as_array(std::string* str) { |
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return str->empty() ? NULL : &*str->begin(); |
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} |
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|
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PROFILE_RESULT encode_to_proto(const std::string &data_file_path, |
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const char *encoded_file_path, |
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const ConfigReader &config, |
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unsigned cpu_utilization) |
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{ |
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// |
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// Open and read perf.data file |
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// |
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const wireless_android_play_playlog::AndroidPerfProfile &encodedProfile = |
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wireless_android_logging_awp::RawPerfDataToAndroidPerfProfile(data_file_path); |
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|
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// |
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// Issue error if no samples |
|
// |
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if (encodedProfile.programs().size() == 0) { |
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return ERR_PERF_ENCODE_FAILED; |
|
} |
|
|
|
// All of the info in 'encodedProfile' is derived from the perf.data file; |
|
// here we tack display status, cpu utilization, system load, etc. |
|
wireless_android_play_playlog::AndroidPerfProfile &prof = |
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const_cast<wireless_android_play_playlog::AndroidPerfProfile&> |
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(encodedProfile); |
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annotate_encoded_perf_profile(&prof, config, cpu_utilization); |
|
|
|
// |
|
// Serialize protobuf to array |
|
// |
|
int size = encodedProfile.ByteSize(); |
|
std::string data; |
|
data.resize(size); |
|
::google::protobuf::uint8* dtarget = |
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reinterpret_cast<::google::protobuf::uint8*>(string_as_array(&data)); |
|
encodedProfile.SerializeWithCachedSizesToArray(dtarget); |
|
|
|
// |
|
// Open file and write encoded data to it |
|
// |
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FILE *fp = fopen(encoded_file_path, "w"); |
|
if (!fp) { |
|
return ERR_OPEN_ENCODED_FILE_FAILED; |
|
} |
|
size_t fsiz = size; |
|
if (fwrite(dtarget, fsiz, 1, fp) != 1) { |
|
fclose(fp); |
|
return ERR_WRITE_ENCODED_FILE_FAILED; |
|
} |
|
fclose(fp); |
|
chmod(encoded_file_path, S_IRUSR | S_IWUSR | S_IRGRP | S_IWGRP | S_IROTH); |
|
|
|
return OK_PROFILE_COLLECTION; |
|
} |
|
|
|
// |
|
// Invoke "perf record". Return value is OK_PROFILE_COLLECTION for |
|
// success, or some other error code if something went wrong. |
|
// |
|
static PROFILE_RESULT invoke_perf(const std::string &perf_path, |
|
unsigned sampling_period, |
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const char *stack_profile_opt, |
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unsigned duration, |
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const std::string &data_file_path, |
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const std::string &perf_stderr_path) |
|
{ |
|
pid_t pid = fork(); |
|
|
|
if (pid == -1) { |
|
return ERR_FORK_FAILED; |
|
} |
|
|
|
if (pid == 0) { |
|
// child |
|
|
|
// Open file to receive stderr/stdout from perf |
|
FILE *efp = fopen(perf_stderr_path.c_str(), "w"); |
|
if (efp) { |
|
dup2(fileno(efp), STDERR_FILENO); |
|
dup2(fileno(efp), STDOUT_FILENO); |
|
} else { |
|
W_ALOGW("unable to open %s for writing", perf_stderr_path.c_str()); |
|
} |
|
|
|
// marshall arguments |
|
constexpr unsigned max_args = 13; |
|
const char *argv[max_args]; |
|
unsigned slot = 0; |
|
argv[slot++] = perf_path.c_str(); |
|
argv[slot++] = "record"; |
|
|
|
// -o perf.data |
|
argv[slot++] = "-o"; |
|
argv[slot++] = data_file_path.c_str(); |
|
|
|
// -c N |
|
argv[slot++] = "-c"; |
|
std::string p_str = android::base::StringPrintf("%u", sampling_period); |
|
argv[slot++] = p_str.c_str(); |
|
|
|
// -g if desired |
|
if (stack_profile_opt) |
|
argv[slot++] = stack_profile_opt; |
|
|
|
// system wide profiling |
|
argv[slot++] = "-a"; |
|
|
|
// no need for kernel symbols |
|
argv[slot++] = "--no-dump-kernel-symbols"; |
|
|
|
// sleep <duration> |
|
argv[slot++] = "/system/bin/sleep"; |
|
std::string d_str = android::base::StringPrintf("%u", duration); |
|
argv[slot++] = d_str.c_str(); |
|
|
|
// terminator |
|
argv[slot++] = nullptr; |
|
assert(slot < max_args); |
|
|
|
// record the final command line in the error output file for |
|
// posterity/debugging purposes |
|
fprintf(stderr, "perf invocation (pid=%d):\n", getpid()); |
|
for (unsigned i = 0; argv[i] != nullptr; ++i) { |
|
fprintf(stderr, "%s%s", i ? " " : "", argv[i]); |
|
} |
|
fprintf(stderr, "\n"); |
|
|
|
// exec |
|
execvp(argv[0], (char * const *)argv); |
|
fprintf(stderr, "exec failed: %s\n", strerror(errno)); |
|
exit(1); |
|
|
|
} else { |
|
// parent |
|
int st = 0; |
|
pid_t reaped = TEMP_FAILURE_RETRY(waitpid(pid, &st, 0)); |
|
|
|
if (reaped == -1) { |
|
W_ALOGW("waitpid failed: %s", strerror(errno)); |
|
} else if (WIFSIGNALED(st)) { |
|
W_ALOGW("perf killed by signal %d", WTERMSIG(st)); |
|
} else if (WEXITSTATUS(st) != 0) { |
|
W_ALOGW("perf bad exit status %d", WEXITSTATUS(st)); |
|
} else { |
|
return OK_PROFILE_COLLECTION; |
|
} |
|
} |
|
|
|
return ERR_PERF_RECORD_FAILED; |
|
} |
|
|
|
// |
|
// Remove all files in the destination directory during initialization |
|
// |
|
static void cleanup_destination_dir(const ConfigReader &config) |
|
{ |
|
std::string dest_dir = config.getStringValue("destination_directory"); |
|
DIR* dir = opendir(dest_dir.c_str()); |
|
if (dir != NULL) { |
|
struct dirent* e; |
|
while ((e = readdir(dir)) != 0) { |
|
if (e->d_name[0] != '.') { |
|
std::string file_path = dest_dir + "/" + e->d_name; |
|
remove(file_path.c_str()); |
|
} |
|
} |
|
closedir(dir); |
|
} else { |
|
W_ALOGW("unable to open destination dir %s for cleanup", |
|
dest_dir.c_str()); |
|
} |
|
} |
|
|
|
// |
|
// Post-processes after profile is collected and converted to protobuf. |
|
// * GMS core stores processed file sequence numbers in |
|
// /data/data/com.google.android.gms/files/perfprofd_processed.txt |
|
// * Update /data/misc/perfprofd/perfprofd_produced.txt to remove the sequence |
|
// numbers that have been processed and append the current seq number |
|
// Returns true if the current_seq should increment. |
|
// |
|
static bool post_process(const ConfigReader &config, int current_seq) |
|
{ |
|
std::string dest_dir = config.getStringValue("destination_directory"); |
|
std::string processed_file_path = |
|
config.getStringValue("config_directory") + "/" + PROCESSED_FILENAME; |
|
std::string produced_file_path = dest_dir + "/" + PRODUCED_FILENAME; |
|
|
|
|
|
std::set<int> processed; |
|
FILE *fp = fopen(processed_file_path.c_str(), "r"); |
|
if (fp != NULL) { |
|
int seq; |
|
while(fscanf(fp, "%d\n", &seq) > 0) { |
|
if (remove(android::base::StringPrintf( |
|
"%s/perf.data.encoded.%d", dest_dir.c_str(),seq).c_str()) == 0) { |
|
processed.insert(seq); |
|
} |
|
} |
|
fclose(fp); |
|
} |
|
|
|
std::set<int> produced; |
|
fp = fopen(produced_file_path.c_str(), "r"); |
|
if (fp != NULL) { |
|
int seq; |
|
while(fscanf(fp, "%d\n", &seq) > 0) { |
|
if (processed.find(seq) == processed.end()) { |
|
produced.insert(seq); |
|
} |
|
} |
|
fclose(fp); |
|
} |
|
|
|
unsigned maxLive = config.getUnsignedValue("max_unprocessed_profiles"); |
|
if (produced.size() >= maxLive) { |
|
return false; |
|
} |
|
|
|
produced.insert(current_seq); |
|
fp = fopen(produced_file_path.c_str(), "w"); |
|
if (fp == NULL) { |
|
W_ALOGW("Cannot write %s", produced_file_path.c_str()); |
|
return false; |
|
} |
|
for (std::set<int>::const_iterator iter = produced.begin(); |
|
iter != produced.end(); ++iter) { |
|
fprintf(fp, "%d\n", *iter); |
|
} |
|
fclose(fp); |
|
chmod(produced_file_path.c_str(), |
|
S_IRUSR | S_IWUSR | S_IRGRP | S_IWGRP | S_IROTH); |
|
return true; |
|
} |
|
|
|
// |
|
// Collect a perf profile. Steps for this operation are: |
|
// - kick off 'perf record' |
|
// - read perf.data, convert to protocol buf |
|
// |
|
static PROFILE_RESULT collect_profile(const ConfigReader &config, int seq) |
|
{ |
|
// |
|
// Collect cpu utilization if enabled |
|
// |
|
unsigned cpu_utilization = 0; |
|
if (config.getUnsignedValue("collect_cpu_utilization")) { |
|
cpu_utilization = collect_cpu_utilization(); |
|
} |
|
|
|
// |
|
// Form perf.data file name, perf error output file name |
|
// |
|
std::string destdir = config.getStringValue("destination_directory"); |
|
std::string data_file_path(destdir); |
|
data_file_path += "/"; |
|
data_file_path += PERF_OUTPUT; |
|
std::string perf_stderr_path(destdir); |
|
perf_stderr_path += "/perferr.txt"; |
|
|
|
// |
|
// Remove any existing perf.data file -- if we don't do this, perf |
|
// will rename the old file and we'll have extra cruft lying around. |
|
// |
|
struct stat statb; |
|
if (stat(data_file_path.c_str(), &statb) == 0) { // if file exists... |
|
if (unlink(data_file_path.c_str())) { // then try to remove |
|
W_ALOGW("unable to unlink previous perf.data file"); |
|
} |
|
} |
|
|
|
// |
|
// The "mpdecision" daemon can cause problems for profile |
|
// collection: if it decides to online a CPU partway through the |
|
// 'perf record' run, the activity on that CPU will be invisible to |
|
// perf, and if it offlines a CPU during the recording this can |
|
// sometimes leave the PMU in an unusable state (dmesg errors of the |
|
// form "perfevents: unable to request IRQXXX for ..."). To avoid |
|
// these issues, if "mpdecision" is running the helper below will |
|
// stop the service and then online all available CPUs. The object |
|
// destructor (invoked when this routine terminates) will then |
|
// restart the service again when needed. |
|
// |
|
unsigned duration = config.getUnsignedValue("sample_duration"); |
|
unsigned hardwire = config.getUnsignedValue("hardwire_cpus"); |
|
unsigned max_duration = config.getUnsignedValue("hardwire_cpus_max_duration"); |
|
bool take_action = (hardwire && duration <= max_duration); |
|
HardwireCpuHelper helper(take_action); |
|
|
|
// |
|
// Invoke perf |
|
// |
|
const char *stack_profile_opt = |
|
(config.getUnsignedValue("stack_profile") != 0 ? "-g" : nullptr); |
|
std::string perf_path = config.getStringValue("perf_path"); |
|
unsigned period = config.getUnsignedValue("sampling_period"); |
|
|
|
PROFILE_RESULT ret = invoke_perf(perf_path.c_str(), |
|
period, |
|
stack_profile_opt, |
|
duration, |
|
data_file_path, |
|
perf_stderr_path); |
|
if (ret != OK_PROFILE_COLLECTION) { |
|
return ret; |
|
} |
|
|
|
// |
|
// Read the resulting perf.data file, encode into protocol buffer, then write |
|
// the result to the file perf.data.encoded |
|
// |
|
std::string path = android::base::StringPrintf( |
|
"%s.encoded.%d", data_file_path.c_str(), seq); |
|
return encode_to_proto(data_file_path, path.c_str(), config, cpu_utilization); |
|
} |
|
|
|
// |
|
// Assuming that we want to collect a profile every N seconds, |
|
// randomly partition N into two sub-intervals. |
|
// |
|
static void determine_before_after(unsigned &sleep_before_collect, |
|
unsigned &sleep_after_collect, |
|
unsigned collection_interval) |
|
{ |
|
double frac = erand48(random_seed); |
|
sleep_before_collect = (unsigned) (((double)collection_interval) * frac); |
|
assert(sleep_before_collect <= collection_interval); |
|
sleep_after_collect = collection_interval - sleep_before_collect; |
|
} |
|
|
|
// |
|
// Set random number generator seed |
|
// |
|
static void set_seed(ConfigReader &config) |
|
{ |
|
unsigned seed = 0; |
|
unsigned use_fixed_seed = config.getUnsignedValue("use_fixed_seed"); |
|
if (use_fixed_seed) { |
|
// |
|
// Use fixed user-specified seed |
|
// |
|
seed = use_fixed_seed; |
|
} else { |
|
// |
|
// Randomized seed |
|
// |
|
seed = arc4random(); |
|
} |
|
W_ALOGI("random seed set to %u", seed); |
|
// Distribute the 32-bit seed into the three 16-bit array |
|
// elements. The specific values being written do not especially |
|
// matter as long as we are setting them to something based on the seed. |
|
random_seed[0] = seed & 0xffff; |
|
random_seed[1] = (seed >> 16); |
|
random_seed[2] = (random_seed[0] ^ random_seed[1]); |
|
} |
|
|
|
// |
|
// Initialization |
|
// |
|
static void init(ConfigReader &config) |
|
{ |
|
if (!config.readFile()) { |
|
W_ALOGE("unable to open configuration file %s", |
|
config.getConfigFilePath()); |
|
} |
|
|
|
// Children of init inherit an artificially low OOM score -- this is not |
|
// desirable for perfprofd (its OOM score should be on par with |
|
// other user processes). |
|
std::stringstream oomscore_path; |
|
oomscore_path << "/proc/" << getpid() << "/oom_score_adj"; |
|
if (!android::base::WriteStringToFile("0", oomscore_path.str())) { |
|
W_ALOGE("unable to write to %s", oomscore_path.str().c_str()); |
|
} |
|
|
|
set_seed(config); |
|
cleanup_destination_dir(config); |
|
|
|
char propBuf[PROPERTY_VALUE_MAX]; |
|
propBuf[0] = '\0'; |
|
property_get("ro.kernel.qemu", propBuf, ""); |
|
running_in_emulator = (propBuf[0] == '1'); |
|
property_get("ro.debuggable", propBuf, ""); |
|
is_debug_build = (propBuf[0] == '1'); |
|
|
|
signal(SIGHUP, sig_hup); |
|
} |
|
|
|
// |
|
// Main routine: |
|
// 1. parse cmd line args |
|
// 2. read config file |
|
// 3. loop: { |
|
// sleep for a while |
|
// perform a profile collection |
|
// } |
|
// |
|
int perfprofd_main(int argc, char** argv) |
|
{ |
|
ConfigReader config; |
|
|
|
W_ALOGI("starting Android Wide Profiling daemon"); |
|
|
|
parse_args(argc, argv); |
|
init(config); |
|
|
|
if (!perf_file_to_convert.empty()) { |
|
std::string encoded_path = perf_file_to_convert + ".encoded"; |
|
encode_to_proto(perf_file_to_convert, encoded_path.c_str(), config, 0); |
|
return 0; |
|
} |
|
|
|
// Early exit if we're not supposed to run on this build flavor |
|
if (is_debug_build != 1 && |
|
config.getUnsignedValue("only_debug_build") == 1) { |
|
W_ALOGI("early exit due to inappropriate build type"); |
|
return 0; |
|
} |
|
|
|
unsigned iterations = 0; |
|
int seq = 0; |
|
while(config.getUnsignedValue("main_loop_iterations") == 0 || |
|
iterations < config.getUnsignedValue("main_loop_iterations")) { |
|
|
|
// Figure out where in the collection interval we're going to actually |
|
// run perf |
|
unsigned sleep_before_collect = 0; |
|
unsigned sleep_after_collect = 0; |
|
determine_before_after(sleep_before_collect, sleep_after_collect, |
|
config.getUnsignedValue("collection_interval")); |
|
perfprofd_sleep(sleep_before_collect); |
|
|
|
// Reread config file -- the uploader may have rewritten it as a result |
|
// of a gservices change |
|
config.readFile(); |
|
|
|
// Check for profiling enabled... |
|
CKPROFILE_RESULT ckresult = check_profiling_enabled(config); |
|
if (ckresult != DO_COLLECT_PROFILE) { |
|
W_ALOGI("profile collection skipped (%s)", |
|
ckprofile_result_to_string(ckresult)); |
|
} else { |
|
// Kick off the profiling run... |
|
W_ALOGI("initiating profile collection"); |
|
PROFILE_RESULT result = collect_profile(config, seq); |
|
if (result != OK_PROFILE_COLLECTION) { |
|
W_ALOGI("profile collection failed (%s)", |
|
profile_result_to_string(result)); |
|
} else { |
|
if (post_process(config, seq)) { |
|
seq++; |
|
} |
|
W_ALOGI("profile collection complete"); |
|
} |
|
} |
|
perfprofd_sleep(sleep_after_collect); |
|
iterations += 1; |
|
} |
|
|
|
W_ALOGI("finishing Android Wide Profiling daemon"); |
|
return 0; |
|
}
|
|
|