686 lines
19 KiB
C
686 lines
19 KiB
C
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/*
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* Copyright (C) 2008 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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/*
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* Intercepts log messages intended for the Android log device.
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* When running in the context of the simulator, the messages are
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* passed on to the underlying (fake) log device. When not in the
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* simulator, messages are printed to stderr.
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*/
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#include "cutils/logd.h"
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#include <stdlib.h>
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#include <string.h>
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#include <ctype.h>
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#include <errno.h>
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#include <fcntl.h>
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#ifdef HAVE_PTHREADS
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#include <pthread.h>
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#endif
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#define kMaxTagLen 16 /* from the long-dead utils/Log.cpp */
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#define kTagSetSize 16 /* arbitrary */
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#if 0
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#define TRACE(...) printf("fake_log_device: " __VA_ARGS__)
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#else
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#define TRACE(...) ((void)0)
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#endif
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/* from the long-dead utils/Log.cpp */
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typedef enum {
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FORMAT_OFF = 0,
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FORMAT_BRIEF,
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FORMAT_PROCESS,
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FORMAT_TAG,
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FORMAT_THREAD,
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FORMAT_RAW,
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FORMAT_TIME,
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FORMAT_THREADTIME,
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FORMAT_LONG
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} LogFormat;
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/*
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* Log driver state.
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*/
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typedef struct LogState {
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/* the fake fd that's seen by the user */
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int fakeFd;
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/* a printable name for this fake device */
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char *debugName;
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/* nonzero if this is a binary log */
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int isBinary;
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/* global minimum priority */
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int globalMinPriority;
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/* output format */
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LogFormat outputFormat;
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/* tags and priorities */
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struct {
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char tag[kMaxTagLen];
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int minPriority;
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} tagSet[kTagSetSize];
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} LogState;
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#ifdef HAVE_PTHREADS
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/*
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* Locking. Since we're emulating a device, we need to be prepared
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* to have multiple callers at the same time. This lock is used
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* to both protect the fd list and to prevent LogStates from being
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* freed out from under a user.
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*/
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static pthread_mutex_t fakeLogDeviceLock = PTHREAD_MUTEX_INITIALIZER;
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static void lock()
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{
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pthread_mutex_lock(&fakeLogDeviceLock);
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}
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static void unlock()
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{
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pthread_mutex_unlock(&fakeLogDeviceLock);
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}
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#else // !HAVE_PTHREADS
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#define lock() ((void)0)
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#define unlock() ((void)0)
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#endif // !HAVE_PTHREADS
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/*
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* File descriptor management.
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*/
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#define FAKE_FD_BASE 10000
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#define MAX_OPEN_LOGS 16
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static LogState *openLogTable[MAX_OPEN_LOGS];
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/*
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* Allocate an fd and associate a new LogState with it.
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* The fd is available via the fakeFd field of the return value.
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*/
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static LogState *createLogState()
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{
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size_t i;
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for (i = 0; i < sizeof(openLogTable); i++) {
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if (openLogTable[i] == NULL) {
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openLogTable[i] = calloc(1, sizeof(LogState));
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openLogTable[i]->fakeFd = FAKE_FD_BASE + i;
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return openLogTable[i];
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}
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}
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return NULL;
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}
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/*
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* Translate an fd to a LogState.
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*/
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static LogState *fdToLogState(int fd)
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{
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if (fd >= FAKE_FD_BASE && fd < FAKE_FD_BASE + MAX_OPEN_LOGS) {
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return openLogTable[fd - FAKE_FD_BASE];
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}
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return NULL;
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}
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/*
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* Unregister the fake fd and free the memory it pointed to.
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*/
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static void deleteFakeFd(int fd)
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{
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LogState *ls;
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lock();
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ls = fdToLogState(fd);
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if (ls != NULL) {
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openLogTable[fd - FAKE_FD_BASE] = NULL;
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free(ls->debugName);
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free(ls);
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}
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unlock();
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}
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/*
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* Configure logging based on ANDROID_LOG_TAGS environment variable. We
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* need to parse a string that looks like
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*
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* *:v jdwp:d dalvikvm:d dalvikvm-gc:i dalvikvmi:i
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*
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* The tag (or '*' for the global level) comes first, followed by a colon
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* and a letter indicating the minimum priority level we're expected to log.
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* This can be used to reveal or conceal logs with specific tags.
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*
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* We also want to check ANDROID_PRINTF_LOG to determine how the output
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* will look.
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*/
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static void configureInitialState(const char* pathName, LogState* logState)
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{
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static const int kDevLogLen = sizeof("/dev/log/") - 1;
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logState->debugName = strdup(pathName);
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/* identify binary logs */
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if (strcmp(pathName + kDevLogLen, "events") == 0) {
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logState->isBinary = 1;
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}
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/* global min priority defaults to "info" level */
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logState->globalMinPriority = ANDROID_LOG_INFO;
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/*
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* This is based on the the long-dead utils/Log.cpp code.
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*/
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const char* tags = getenv("ANDROID_LOG_TAGS");
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TRACE("Found ANDROID_LOG_TAGS='%s'\n", tags);
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if (tags != NULL) {
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int entry = 0;
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while (*tags != '\0') {
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char tagName[kMaxTagLen];
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int i, minPrio;
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while (isspace(*tags))
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tags++;
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i = 0;
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while (*tags != '\0' && !isspace(*tags) && *tags != ':' &&
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i < kMaxTagLen)
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{
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tagName[i++] = *tags++;
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}
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if (i == kMaxTagLen) {
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TRACE("ERROR: env tag too long (%d chars max)\n", kMaxTagLen-1);
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return;
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}
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tagName[i] = '\0';
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/* default priority, if there's no ":" part; also zero out '*' */
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minPrio = ANDROID_LOG_VERBOSE;
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if (tagName[0] == '*' && tagName[1] == '\0') {
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minPrio = ANDROID_LOG_DEBUG;
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tagName[0] = '\0';
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}
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if (*tags == ':') {
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tags++;
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if (*tags >= '0' && *tags <= '9') {
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if (*tags >= ('0' + ANDROID_LOG_SILENT))
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minPrio = ANDROID_LOG_VERBOSE;
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else
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minPrio = *tags - '\0';
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} else {
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switch (*tags) {
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case 'v': minPrio = ANDROID_LOG_VERBOSE; break;
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case 'd': minPrio = ANDROID_LOG_DEBUG; break;
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case 'i': minPrio = ANDROID_LOG_INFO; break;
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case 'w': minPrio = ANDROID_LOG_WARN; break;
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case 'e': minPrio = ANDROID_LOG_ERROR; break;
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case 'f': minPrio = ANDROID_LOG_FATAL; break;
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case 's': minPrio = ANDROID_LOG_SILENT; break;
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default: minPrio = ANDROID_LOG_DEFAULT; break;
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}
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}
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tags++;
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if (*tags != '\0' && !isspace(*tags)) {
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TRACE("ERROR: garbage in tag env; expected whitespace\n");
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TRACE(" env='%s'\n", tags);
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return;
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}
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}
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if (tagName[0] == 0) {
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logState->globalMinPriority = minPrio;
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TRACE("+++ global min prio %d\n", logState->globalMinPriority);
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} else {
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logState->tagSet[entry].minPriority = minPrio;
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strcpy(logState->tagSet[entry].tag, tagName);
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TRACE("+++ entry %d: %s:%d\n",
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entry,
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logState->tagSet[entry].tag,
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logState->tagSet[entry].minPriority);
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entry++;
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}
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}
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}
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/*
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* Taken from the long-dead utils/Log.cpp
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*/
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const char* fstr = getenv("ANDROID_PRINTF_LOG");
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LogFormat format;
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if (fstr == NULL) {
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format = FORMAT_BRIEF;
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} else {
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if (strcmp(fstr, "brief") == 0)
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format = FORMAT_BRIEF;
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else if (strcmp(fstr, "process") == 0)
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format = FORMAT_PROCESS;
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else if (strcmp(fstr, "tag") == 0)
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format = FORMAT_PROCESS;
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else if (strcmp(fstr, "thread") == 0)
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format = FORMAT_PROCESS;
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else if (strcmp(fstr, "raw") == 0)
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format = FORMAT_PROCESS;
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else if (strcmp(fstr, "time") == 0)
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format = FORMAT_PROCESS;
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else if (strcmp(fstr, "long") == 0)
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format = FORMAT_PROCESS;
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else
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format = (LogFormat) atoi(fstr); // really?!
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}
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logState->outputFormat = format;
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}
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/*
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* Return a human-readable string for the priority level. Always returns
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* a valid string.
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*/
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static const char* getPriorityString(int priority)
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{
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/* the first character of each string should be unique */
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static const char* priorityStrings[] = {
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"Verbose", "Debug", "Info", "Warn", "Error", "Assert"
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};
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int idx;
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idx = (int) priority - (int) ANDROID_LOG_VERBOSE;
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if (idx < 0 ||
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idx >= (int) (sizeof(priorityStrings) / sizeof(priorityStrings[0])))
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return "?unknown?";
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return priorityStrings[idx];
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}
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#ifndef HAVE_WRITEV
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/*
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* Some platforms like WIN32 do not have writev().
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* Make up something to replace it.
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*/
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static ssize_t fake_writev(int fd, const struct iovec *iov, int iovcnt) {
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int result = 0;
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struct iovec* end = iov + iovcnt;
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for (; iov < end; iov++) {
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int w = write(fd, iov->iov_base, iov->iov_len);
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if (w != iov->iov_len) {
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if (w < 0)
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return w;
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return result + w;
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}
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result += w;
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}
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return result;
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}
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#define writev fake_writev
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#endif
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/*
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* Write a filtered log message to stderr.
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*
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* Log format parsing taken from the long-dead utils/Log.cpp.
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*/
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static void showLog(LogState *state,
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int logPrio, const char* tag, const char* msg)
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{
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#if defined(HAVE_LOCALTIME_R)
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struct tm tmBuf;
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#endif
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struct tm* ptm;
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char timeBuf[32];
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char prefixBuf[128], suffixBuf[128];
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char priChar;
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time_t when;
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pid_t pid, tid;
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TRACE("LOG %d: %s %s", logPrio, tag, msg);
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priChar = getPriorityString(logPrio)[0];
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when = time(NULL);
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pid = tid = getpid(); // find gettid()?
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/*
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* Get the current date/time in pretty form
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*
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* It's often useful when examining a log with "less" to jump to
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* a specific point in the file by searching for the date/time stamp.
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* For this reason it's very annoying to have regexp meta characters
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* in the time stamp. Don't use forward slashes, parenthesis,
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* brackets, asterisks, or other special chars here.
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*/
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#if defined(HAVE_LOCALTIME_R)
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ptm = localtime_r(&when, &tmBuf);
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#else
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ptm = localtime(&when);
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#endif
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//strftime(timeBuf, sizeof(timeBuf), "%Y-%m-%d %H:%M:%S", ptm);
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strftime(timeBuf, sizeof(timeBuf), "%m-%d %H:%M:%S", ptm);
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/*
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* Construct a buffer containing the log header and log message.
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*/
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size_t prefixLen, suffixLen;
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switch (state->outputFormat) {
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case FORMAT_TAG:
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prefixLen = snprintf(prefixBuf, sizeof(prefixBuf),
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"%c/%-8s: ", priChar, tag);
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strcpy(suffixBuf, "\n"); suffixLen = 1;
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break;
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case FORMAT_PROCESS:
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prefixLen = snprintf(prefixBuf, sizeof(prefixBuf),
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"%c(%5d) ", priChar, pid);
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suffixLen = snprintf(suffixBuf, sizeof(suffixBuf),
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" (%s)\n", tag);
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break;
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case FORMAT_THREAD:
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prefixLen = snprintf(prefixBuf, sizeof(prefixBuf),
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"%c(%5d:%p) ", priChar, pid, (void*)tid);
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strcpy(suffixBuf, "\n"); suffixLen = 1;
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break;
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case FORMAT_RAW:
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prefixBuf[0] = 0; prefixLen = 0;
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strcpy(suffixBuf, "\n"); suffixLen = 1;
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break;
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case FORMAT_TIME:
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prefixLen = snprintf(prefixBuf, sizeof(prefixBuf),
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"%s %-8s\n\t", timeBuf, tag);
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strcpy(suffixBuf, "\n"); suffixLen = 1;
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break;
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case FORMAT_THREADTIME:
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prefixLen = snprintf(prefixBuf, sizeof(prefixBuf),
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"%s %5d %5d %c %-8s \n\t", timeBuf, pid, tid, priChar, tag);
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strcpy(suffixBuf, "\n"); suffixLen = 1;
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break;
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case FORMAT_LONG:
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prefixLen = snprintf(prefixBuf, sizeof(prefixBuf),
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"[ %s %5d:%p %c/%-8s ]\n",
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timeBuf, pid, (void*)tid, priChar, tag);
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strcpy(suffixBuf, "\n\n"); suffixLen = 2;
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break;
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default:
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prefixLen = snprintf(prefixBuf, sizeof(prefixBuf),
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"%c/%-8s(%5d): ", priChar, tag, pid);
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strcpy(suffixBuf, "\n"); suffixLen = 1;
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break;
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}
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/*
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* Figure out how many lines there will be.
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*/
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const char* end = msg + strlen(msg);
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size_t numLines = 0;
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const char* p = msg;
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while (p < end) {
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if (*p++ == '\n') numLines++;
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}
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if (p > msg && *(p-1) != '\n') numLines++;
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/*
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* Create an array of iovecs large enough to write all of
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* the lines with a prefix and a suffix.
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*/
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const size_t INLINE_VECS = 6;
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const size_t MAX_LINES = ((size_t)~0)/(3*sizeof(struct iovec*));
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||
|
struct iovec stackVec[INLINE_VECS];
|
||
|
struct iovec* vec = stackVec;
|
||
|
size_t numVecs;
|
||
|
|
||
|
if (numLines > MAX_LINES)
|
||
|
numLines = MAX_LINES;
|
||
|
|
||
|
numVecs = numLines*3; // 3 iovecs per line.
|
||
|
if (numVecs > INLINE_VECS) {
|
||
|
vec = (struct iovec*)malloc(sizeof(struct iovec)*numVecs);
|
||
|
if (vec == NULL) {
|
||
|
msg = "LOG: write failed, no memory";
|
||
|
numVecs = 3;
|
||
|
numLines = 1;
|
||
|
vec = stackVec;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Fill in the iovec pointers.
|
||
|
*/
|
||
|
p = msg;
|
||
|
struct iovec* v = vec;
|
||
|
int totalLen = 0;
|
||
|
while (numLines > 0 && p < end) {
|
||
|
if (prefixLen > 0) {
|
||
|
v->iov_base = prefixBuf;
|
||
|
v->iov_len = prefixLen;
|
||
|
totalLen += prefixLen;
|
||
|
v++;
|
||
|
}
|
||
|
const char* start = p;
|
||
|
while (p < end && *p != '\n') p++;
|
||
|
if ((p-start) > 0) {
|
||
|
v->iov_base = (void*)start;
|
||
|
v->iov_len = p-start;
|
||
|
totalLen += p-start;
|
||
|
v++;
|
||
|
}
|
||
|
if (*p == '\n') p++;
|
||
|
if (suffixLen > 0) {
|
||
|
v->iov_base = suffixBuf;
|
||
|
v->iov_len = suffixLen;
|
||
|
totalLen += suffixLen;
|
||
|
v++;
|
||
|
}
|
||
|
numLines -= 1;
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Write the entire message to the log file with a single writev() call.
|
||
|
* We need to use this rather than a collection of printf()s on a FILE*
|
||
|
* because of multi-threading and multi-process issues.
|
||
|
*
|
||
|
* If the file was not opened with O_APPEND, this will produce interleaved
|
||
|
* output when called on the same file from multiple processes.
|
||
|
*
|
||
|
* If the file descriptor is actually a network socket, the writev()
|
||
|
* call may return with a partial write. Putting the writev() call in
|
||
|
* a loop can result in interleaved data. This can be alleviated
|
||
|
* somewhat by wrapping the writev call in the Mutex.
|
||
|
*/
|
||
|
|
||
|
for(;;) {
|
||
|
int cc = writev(fileno(stderr), vec, v-vec);
|
||
|
|
||
|
if (cc == totalLen) break;
|
||
|
|
||
|
if (cc < 0) {
|
||
|
if(errno == EINTR) continue;
|
||
|
|
||
|
/* can't really log the failure; for now, throw out a stderr */
|
||
|
fprintf(stderr, "+++ LOG: write failed (errno=%d)\n", errno);
|
||
|
break;
|
||
|
} else {
|
||
|
/* shouldn't happen when writing to file or tty */
|
||
|
fprintf(stderr, "+++ LOG: write partial (%d of %d)\n", cc, totalLen);
|
||
|
break;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
/* if we allocated storage for the iovecs, free it */
|
||
|
if (vec != stackVec)
|
||
|
free(vec);
|
||
|
}
|
||
|
|
||
|
|
||
|
/*
|
||
|
* Receive a log message. We happen to know that "vector" has three parts:
|
||
|
*
|
||
|
* priority (1 byte)
|
||
|
* tag (N bytes -- null-terminated ASCII string)
|
||
|
* message (N bytes -- null-terminated ASCII string)
|
||
|
*/
|
||
|
static ssize_t logWritev(int fd, const struct iovec* vector, int count)
|
||
|
{
|
||
|
LogState* state;
|
||
|
|
||
|
/* Make sure that no-one frees the LogState while we're using it.
|
||
|
* Also guarantees that only one thread is in showLog() at a given
|
||
|
* time (if it matters).
|
||
|
*/
|
||
|
lock();
|
||
|
|
||
|
state = fdToLogState(fd);
|
||
|
if (state == NULL) {
|
||
|
errno = EBADF;
|
||
|
goto error;
|
||
|
}
|
||
|
|
||
|
if (state->isBinary) {
|
||
|
TRACE("%s: ignoring binary log\n", state->debugName);
|
||
|
goto bail;
|
||
|
}
|
||
|
|
||
|
if (count != 3) {
|
||
|
TRACE("%s: writevLog with count=%d not expected\n",
|
||
|
state->debugName, count);
|
||
|
goto error;
|
||
|
}
|
||
|
|
||
|
/* pull out the three fields */
|
||
|
int logPrio = *(const char*)vector[0].iov_base;
|
||
|
const char* tag = (const char*) vector[1].iov_base;
|
||
|
const char* msg = (const char*) vector[2].iov_base;
|
||
|
|
||
|
/* see if this log tag is configured */
|
||
|
int i;
|
||
|
int minPrio = state->globalMinPriority;
|
||
|
for (i = 0; i < kTagSetSize; i++) {
|
||
|
if (state->tagSet[i].minPriority == ANDROID_LOG_UNKNOWN)
|
||
|
break; /* reached end of configured values */
|
||
|
|
||
|
if (strcmp(state->tagSet[i].tag, tag) == 0) {
|
||
|
//TRACE("MATCH tag '%s'\n", tag);
|
||
|
minPrio = state->tagSet[i].minPriority;
|
||
|
break;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
if (logPrio >= minPrio) {
|
||
|
showLog(state, logPrio, tag, msg);
|
||
|
} else {
|
||
|
//TRACE("+++ NOLOG(%d): %s %s", logPrio, tag, msg);
|
||
|
}
|
||
|
|
||
|
bail:
|
||
|
unlock();
|
||
|
return vector[0].iov_len + vector[1].iov_len + vector[2].iov_len;
|
||
|
error:
|
||
|
unlock();
|
||
|
return -1;
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Free up our state and close the fake descriptor.
|
||
|
*/
|
||
|
static int logClose(int fd)
|
||
|
{
|
||
|
deleteFakeFd(fd);
|
||
|
return 0;
|
||
|
}
|
||
|
|
||
|
/*
|
||
|
* Open a log output device and return a fake fd.
|
||
|
*/
|
||
|
static int logOpen(const char* pathName, int flags)
|
||
|
{
|
||
|
LogState *logState;
|
||
|
int fd = -1;
|
||
|
|
||
|
lock();
|
||
|
|
||
|
logState = createLogState();
|
||
|
if (logState != NULL) {
|
||
|
configureInitialState(pathName, logState);
|
||
|
fd = logState->fakeFd;
|
||
|
} else {
|
||
|
errno = ENFILE;
|
||
|
}
|
||
|
|
||
|
unlock();
|
||
|
|
||
|
return fd;
|
||
|
}
|
||
|
|
||
|
|
||
|
/*
|
||
|
* Runtime redirection. If this binary is running in the simulator,
|
||
|
* just pass log messages to the emulated device. If it's running
|
||
|
* outside of the simulator, write the log messages to stderr.
|
||
|
*/
|
||
|
|
||
|
static int (*redirectOpen)(const char *pathName, int flags) = NULL;
|
||
|
static int (*redirectClose)(int fd) = NULL;
|
||
|
static ssize_t (*redirectWritev)(int fd, const struct iovec* vector, int count)
|
||
|
= NULL;
|
||
|
|
||
|
static void setRedirects()
|
||
|
{
|
||
|
const char *ws;
|
||
|
|
||
|
/* Wrapsim sets this environment variable on children that it's
|
||
|
* created using its LD_PRELOAD wrapper.
|
||
|
*/
|
||
|
ws = getenv("ANDROID_WRAPSIM");
|
||
|
if (ws != NULL && strcmp(ws, "1") == 0) {
|
||
|
/* We're running inside wrapsim, so we can just write to the device. */
|
||
|
redirectOpen = (int (*)(const char *pathName, int flags))open;
|
||
|
redirectClose = close;
|
||
|
redirectWritev = writev;
|
||
|
} else {
|
||
|
/* There's no device to delegate to; handle the logging ourselves. */
|
||
|
redirectOpen = logOpen;
|
||
|
redirectClose = logClose;
|
||
|
redirectWritev = logWritev;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
int fakeLogOpen(const char *pathName, int flags)
|
||
|
{
|
||
|
if (redirectOpen == NULL) {
|
||
|
setRedirects();
|
||
|
}
|
||
|
return redirectOpen(pathName, flags);
|
||
|
}
|
||
|
|
||
|
int fakeLogClose(int fd)
|
||
|
{
|
||
|
/* Assume that open() was called first. */
|
||
|
return redirectClose(fd);
|
||
|
}
|
||
|
|
||
|
ssize_t fakeLogWritev(int fd, const struct iovec* vector, int count)
|
||
|
{
|
||
|
/* Assume that open() was called first. */
|
||
|
return redirectWritev(fd, vector, count);
|
||
|
}
|