1 /*
2 * Copyright (c) 2020 Huawei Device Co., Ltd.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15
16 #include "hiview_output_log.h"
17 #include "hiview_cache.h"
18 #include "hiview_config.h"
19 #include "hiview_def.h"
20 #include "hiview_file.h"
21 #include "hiview_log.h"
22 #include "hiview_log_limit.h"
23 #include "hiview_service.h"
24 #include "hiview_util.h"
25 #include "message.h"
26 #include "ohos_types.h"
27 #include "securec.h"
28
29 #include <time.h>
30
31 #define SINGLE_FMT_MAX_LEN 8
32 #define FMT_CONVERT_TRMINATOR 2
33
34 static char g_logLevelInfo[HILOG_LV_MAX] = {
35 'N', // "NONE"
36 'D', // "DEBUG"
37 'I', // "INFO"
38 'W', // "WARN"
39 'E', // "ERROR"
40 'F' // "FATAL"
41 };
42
43 #ifndef DISABLE_HILOG_CACHE
44 static uint8 g_logCacheBuffer[LOG_STATIC_CACHE_SIZE];
45 #endif
46 static HiviewCache g_logCache = {
47 .size = 0,
48 .buffer = NULL,
49 };
50 static HiviewFile g_logFile = {
51 .path = HIVIEW_FILE_PATH_LOG,
52 .outPath = HIVIEW_FILE_OUT_PATH_LOG,
53 .pFunc = NULL,
54 .mutex = NULL,
55 .fhandle = -1,
56 .configSize = 0,
57 };
58
59 typedef struct LogFlushInfo LogFlushInfo;
60 struct LogFlushInfo {
61 HiviewMutexId_t mutex;
62 };
63 static LogFlushInfo g_logFlushInfo;
64 static HilogProc g_hilogOutputProc = NULL;
65
66 typedef struct OutputLogInfo OutputLogInfo;
67 struct OutputLogInfo {
68 HiviewMutexId_t mutex;
69 };
70 static OutputLogInfo g_outputLogInfo;
71
72 static int32 g_retryInitCount = 0;
73 #define MAX_RETRY_COUNT 100
74
75 /* Output the log to UART using plaintext. */
76 static void OutputLogRealtime(const Request *req);
77 /* Output the log to FLASH using text. */
78 static void OutputLog2TextFile(const Request *req);
79 /* Output the log to FLASH using binary. */
80 static void OutputLog2BinFile(const Request *req);
81 static int32 LogCommonFmt(char *outStr, int32 outStrlen, const HiLogCommon *commonContentPtr);
82 static int32 LogValuesFmt(char *desStrPtr, int32 desLen, const HiLogContent *logContentPtr);
83 static int32 LogDebugValuesFmt(char *desStrPtr, int32 desLen, const HiLogContent *logContentPtr);
84 static int32 LogValuesFmtHash(char *desStrPtr, int32 desLen, const HiLogContent *logContentPtr);
85
InitCoreLogOutput(void)86 void InitCoreLogOutput(void)
87 {
88 g_logFlushInfo.mutex = HIVIEW_MutexInit();
89 g_outputLogInfo.mutex = HIVIEW_MutexInit();
90 #ifndef DISABLE_HILOG_CACHE
91 InitHiviewStaticCache(&g_logCache, LOG_CACHE, g_logCacheBuffer, sizeof(g_logCacheBuffer));
92 #endif
93 HiviewRegisterMsgHandle(HIVIEW_MSG_OUTPUT_LOG_TEXT_FILE, OutputLog2TextFile);
94 HiviewRegisterMsgHandle(HIVIEW_MSG_OUTPUT_LOG_BIN_FILE, OutputLog2BinFile);
95 HiviewRegisterMsgHandle(HIVIEW_MSG_OUTPUT_LOG_FLOW, OutputLogRealtime);
96 }
97
InitLogOutput(void)98 void InitLogOutput(void)
99 {
100 int8 opt = GETOPTION(g_hiviewConfig.outputOption);
101 if (opt == OUTPUT_OPTION_DEBUG || opt == OUTPUT_OPTION_FLOW) {
102 return;
103 }
104 HiviewFileType type = HIVIEW_LOG_TEXT_FILE;
105 if (opt == OUTPUT_OPTION_BIN_FILE) {
106 type = HIVIEW_LOG_BIN_FILE;
107 }
108 if (InitHiviewFile(&g_logFile, type,
109 (HIVIEW_LOG_FILE_SIZE / sizeof(HiLogContent)) * sizeof(HiLogContent)) == FALSE) {
110 HIVIEW_UartPrint("Open file[HIVIEW_LOG_BIN_FILE] failed.");
111 }
112 g_logFile.mutex = g_outputLogInfo.mutex;
113 }
114
ClearLogOutput(void)115 void ClearLogOutput(void)
116 {
117 int8 opt = GETOPTION(g_hiviewConfig.outputOption);
118 if (g_logCache.usedSize > 0) {
119 if (opt == OUTPUT_OPTION_TEXT_FILE) {
120 OutputLog2TextFile(NULL);
121 } else if (opt == OUTPUT_OPTION_BIN_FILE) {
122 OutputLog2BinFile(NULL);
123 }
124 }
125 CloseHiviewFile(&g_logFile);
126 }
127
OutputLog(const uint8 * data,uint32 len)128 void OutputLog(const uint8 *data, uint32 len)
129 {
130 if (data == NULL) {
131 return;
132 }
133
134 HiLogContent *hiLogContent = (HiLogContent *)data;
135 if (g_hilogOutputProc != NULL) {
136 if (g_hilogOutputProc(hiLogContent, len) == TRUE) {
137 return;
138 }
139 }
140
141 #ifdef DISABLE_HILOG_CACHE
142 boolean isDisableCache = TRUE;
143 #else
144 boolean isDisableCache = FALSE;
145 #endif
146
147 #ifdef DISABLE_HILOG_LITE_PRINT_LIMIT
148 boolean isDisablePrintLimited = TRUE;
149 #else
150 boolean isDisablePrintLimited = FALSE;
151 #endif
152 boolean isLogLimited = LogIsLimited(hiLogContent->commonContent.module);
153
154 if (!isDisablePrintLimited && isLogLimited) {
155 // The console output adopts the same restriction strategy as the file output,
156 // and the log output to the file is restricted.
157 return;
158 }
159
160 int8 opt = GETOPTION(g_hiviewConfig.outputOption);
161 boolean isPrint = g_hiviewConfig.outputOption >= OUTPUT_OPTION_PRINT;
162 if (opt == OUTPUT_OPTION_DEBUG || isPrint || isDisableCache) {
163 char tempOutStr[LOG_FMT_MAX_LEN] = {0};
164 if (LogContentFmt(tempOutStr, sizeof(tempOutStr), data) > 0) {
165 HIVIEW_UartPrint(tempOutStr);
166 }
167 }
168
169 if (opt == OUTPUT_OPTION_DEBUG || isDisableCache || isLogLimited) {
170 return;
171 }
172
173 /* When the init of kernel is not finished, data is cached in the cache. */
174 if (g_hiviewConfig.hiviewInited == FALSE) {
175 if (WriteToCache(&g_logCache, data, len) != (int32)len) {
176 HIVIEW_UartPrint("Write log to cache failed.");
177 }
178 return;
179 }
180
181 boolean writeFail = FALSE;
182 if (WriteToCache(&g_logCache, (uint8 *)data, len) != (int32)len) {
183 HIVIEW_UartPrint("Hilog writeToCache error!\n");
184 writeFail = TRUE;
185 }
186 if (g_logCache.usedSize >= HIVIEW_HILOG_FILE_BUF_SIZE) {
187 switch (opt) {
188 case OUTPUT_OPTION_TEXT_FILE:
189 HiviewSendMessage(HIVIEW_SERVICE, HIVIEW_MSG_OUTPUT_LOG_TEXT_FILE, 0);
190 break;
191 case OUTPUT_OPTION_BIN_FILE:
192 HiviewSendMessage(HIVIEW_SERVICE, HIVIEW_MSG_OUTPUT_LOG_BIN_FILE, 0);
193 break;
194 case OUTPUT_OPTION_FLOW:
195 HiviewSendMessage(HIVIEW_SERVICE, HIVIEW_MSG_OUTPUT_LOG_FLOW, 0);
196 break;
197 default:
198 break;
199 }
200 }
201
202 /* If the cache fails to be written, write the cache again. */
203 if (writeFail) {
204 WriteToCache(&g_logCache, (uint8 *)data, len);
205 }
206 }
207
OutputLogRealtime(const Request * req)208 static void OutputLogRealtime(const Request *req)
209 {
210 HIVIEW_MutexLock(g_logFlushInfo.mutex);
211 HiLogContent logContent;
212 char tempOutStr[LOG_FMT_MAX_LEN] = {0};
213 int32 len;
214 (void)req;
215
216 while (ReadFromCache(&g_logCache, (uint8 *)&(logContent.commonContent),
217 sizeof(HiLogCommon)) == sizeof(HiLogCommon)) {
218 if (logContent.commonContent.head != LOG_INFO_HEAD) {
219 DiscardCacheData(&g_logCache);
220 HIVIEW_UartPrint("Discard cache[LOG_CACHE] data.");
221 break;
222 }
223 len = logContent.commonContent.valueNumber * sizeof(uint32);
224 if (len > 0 && ReadFromCache(&g_logCache, (uint8 *)&(logContent.values), len) != len) {
225 continue;
226 }
227 len = LogContentFmt(tempOutStr, sizeof(tempOutStr), (uint8 *)&logContent);
228 if (len <= 0) {
229 continue;
230 }
231 HIVIEW_UartPrint(tempOutStr);
232 }
233 HIVIEW_MutexUnlock(g_logFlushInfo.mutex);
234 }
235
OutputLog2TextFile(const Request * req)236 static void OutputLog2TextFile(const Request *req)
237 {
238 HIVIEW_MutexLock(g_logFlushInfo.mutex);
239 HiLogContent logContent;
240 char tempOutStr[LOG_FMT_MAX_LEN] = {0};
241
242 if (g_logCache.usedSize < sizeof(HiLogCommon)) {
243 HIVIEW_MutexUnlock(g_logFlushInfo.mutex);
244 return;
245 }
246
247 int32 len;
248 while (ReadFromCache(&g_logCache, (uint8 *)&(logContent.commonContent),
249 sizeof(HiLogCommon)) == sizeof(HiLogCommon)) {
250 if (logContent.commonContent.head != LOG_INFO_HEAD) {
251 DiscardCacheData(&g_logCache);
252 HIVIEW_UartPrint("Discard cache[LOG_CACHE] data.");
253 break;
254 }
255 len = logContent.commonContent.valueNumber * sizeof(uint32);
256 if (len > 0 && ReadFromCache(&g_logCache, (uint8 *)&(logContent.values), len) != len) {
257 continue;
258 }
259 len = LogContentFmt(tempOutStr, sizeof(tempOutStr), (uint8 *)&logContent);
260 if (len > 0 && tempOutStr[len - 1] == '\0') {
261 // prevent writing '\0' character to file
262 len--;
263 }
264 if (g_logFile.fhandle < 0) {
265 if (g_retryInitCount < MAX_RETRY_COUNT) {
266 InitLogOutput();
267 }
268 g_retryInitCount++;
269 } else {
270 // once success, clean retry count
271 g_retryInitCount = 0;
272 }
273 if (len > 0 && WriteToFile(&g_logFile, (uint8 *)tempOutStr, len) != len) {
274 g_hiviewConfig.writeFailureCount++;
275 }
276 }
277 HIVIEW_MutexUnlock(g_logFlushInfo.mutex);
278 if (req != NULL && req->msgValue == SYNC_FILE) {
279 HIVIEW_FileSync(g_logFile.fhandle);
280 }
281 }
282
OutputLog2BinFile(const Request * req)283 static void OutputLog2BinFile(const Request *req)
284 {
285 HIVIEW_MutexLock(g_logFlushInfo.mutex);
286 HiLogCommon *pCommonContent = NULL;
287 uint16 len = 0;
288 uint16 valueLen;
289 uint8 *tmpBuffer = NULL;
290 uint16 outputSize = g_logCache.usedSize;
291
292 if (outputSize < sizeof(HiLogCommon)) {
293 HIVIEW_MutexUnlock(g_logFlushInfo.mutex);
294 return;
295 }
296 tmpBuffer = (uint8 *)HIVIEW_MemAlloc(MEM_POOL_HIVIEW_ID, outputSize);
297 if (tmpBuffer == NULL) {
298 HIVIEW_MutexUnlock(g_logFlushInfo.mutex);
299 return;
300 }
301 while (g_logCache.usedSize >= sizeof(HiLogCommon) && outputSize > (len + sizeof(HiLogCommon))) {
302 if (ReadFromCache(&g_logCache, tmpBuffer + len, sizeof(HiLogCommon)) != sizeof(HiLogCommon)) {
303 continue;
304 }
305 pCommonContent = (HiLogCommon *)(tmpBuffer + len);
306 len += sizeof(HiLogCommon);
307 if (pCommonContent->head != LOG_INFO_HEAD) {
308 DiscardCacheData(&g_logCache);
309 HIVIEW_UartPrint("Discard cache[LOG_CACHE] data.");
310 break;
311 }
312 valueLen = pCommonContent->valueNumber * sizeof(uint32);
313 if (valueLen > 0) {
314 if ((int32)len + (int32)valueLen > (int32)outputSize) {
315 DiscardCacheData(&g_logCache);
316 HIVIEW_UartPrint("Discard cache[LOG_CACHE] data.");
317 break;
318 }
319 if (ReadFromCache(&g_logCache, tmpBuffer + len, valueLen) != valueLen) {
320 continue;
321 }
322 len += valueLen;
323 }
324 }
325 if (g_logFile.fhandle < 0) {
326 if (g_retryInitCount < MAX_RETRY_COUNT) {
327 InitLogOutput();
328 }
329 g_retryInitCount++;
330 } else {
331 // once success, clean retry count
332 g_retryInitCount = 0;
333 }
334 if (len > 0 && WriteToFile(&g_logFile, tmpBuffer, len) != len) {
335 g_hiviewConfig.writeFailureCount++;
336 HIVIEW_UartPrint("Failed to write log data.");
337 }
338 HIVIEW_MemFree(MEM_POOL_HIVIEW_ID, tmpBuffer);
339 HIVIEW_MutexUnlock(g_logFlushInfo.mutex);
340 if (req != NULL && req->msgValue == SYNC_FILE) {
341 HIVIEW_FileSync(g_logFile.fhandle);
342 }
343 }
344
GetLogFileSize(void)345 uint32 GetLogFileSize(void)
346 {
347 return GetFileUsedSize(&g_logFile);
348 }
349
ReadLogFile(uint8 * buf,uint32 len)350 uint32 ReadLogFile(uint8 *buf, uint32 len)
351 {
352 if (buf == NULL) {
353 return 0;
354 }
355 uint32 usedSize = GetFileUsedSize(&g_logFile);
356 if (usedSize < len) {
357 len = usedSize;
358 }
359 if (ReadFromFile(&g_logFile, buf, len) != (int32)len) {
360 return 0;
361 }
362
363 return len;
364 }
365
LogContentFmt(char * outStr,int32 outStrLen,const uint8 * pLogContent)366 int32 LogContentFmt(char *outStr, int32 outStrLen, const uint8 *pLogContent)
367 {
368 int32 len;
369 HiLogContent *logContentPtr = (HiLogContent *)pLogContent;
370
371 len = LogCommonFmt(outStr, outStrLen, &(logContentPtr->commonContent));
372 boolean isHash = CHECK_HASH_FLAG(logContentPtr->commonContent.level);
373 if (len >= 0) {
374 if (isHash) {
375 len += LogValuesFmtHash(outStr + len, outStrLen - len, logContentPtr);
376 } else if (GETOPTION(g_hiviewConfig.outputOption) == OUTPUT_OPTION_DEBUG) {
377 len += LogDebugValuesFmt(outStr + len, outStrLen - len, logContentPtr);
378 } else {
379 len += LogValuesFmt(outStr + len, outStrLen - len, logContentPtr);
380 }
381 }
382
383 if (len < 0) {
384 return len;
385 }
386
387 if (len >= outStrLen - 1) {
388 outStr[outStrLen - TAIL_LINE_BREAK] = '\n';
389 outStr[outStrLen - 1] = '\0';
390 } else {
391 outStr[len++] = '\n';
392 outStr[len++] = '\0';
393 }
394
395 return len;
396 }
397
LogCommonFmt(char * outStr,int32 outStrLen,const HiLogCommon * commonContentPtr)398 static int32 LogCommonFmt(char *outStr, int32 outStrLen, const HiLogCommon *commonContentPtr)
399 {
400 int32 ret;
401 time_t time;
402 uint32 month, day, hour, min, sec;
403 uint8_t level;
404 struct tm nowTime = {0};
405
406 time = commonContentPtr->time;
407 localtime_r(&time, &nowTime);
408 month = nowTime.tm_mon + 1;
409 day = nowTime.tm_mday;
410 hour = nowTime.tm_hour;
411 min = nowTime.tm_min;
412 sec = nowTime.tm_sec;
413 level = CLEAR_HASH_FLAG(commonContentPtr->level);
414 if (level >= HILOG_LV_MAX) {
415 level = 0;
416 }
417 ret = snprintf_s(outStr, outStrLen, outStrLen - 1, "%02d-%02d %02d:%02d:%02d.%03d 0 %d %c %d/%s: ",
418 month, day, hour, min, sec, commonContentPtr->milli, commonContentPtr->task, g_logLevelInfo[level],
419 commonContentPtr->module, HiLogGetModuleName(commonContentPtr->module));
420
421 return ret;
422 }
423
LogValuesFmt(char * desStrPtr,int32 desLen,const HiLogContent * logContentPtr)424 static int32 LogValuesFmt(char *desStrPtr, int32 desLen, const HiLogContent *logContentPtr)
425 {
426 int32 i;
427 int32 outLen = 0;
428 int32 len;
429 char fmtStr[SINGLE_FMT_MAX_LEN];
430 uint32 valNum = logContentPtr->commonContent.valueNumber;
431 const char *fmt = logContentPtr->commonContent.fmt;
432 uint32 valueIndex = 0;
433 for (i = 0; fmt[i] != 0 && outLen < desLen;) {
434 if (fmt[i] != '%') {
435 desStrPtr[outLen++] = fmt[i++];
436 continue;
437 }
438 if (fmt[i + 1] == '%') {
439 desStrPtr[outLen++] = fmt[i++];
440 desStrPtr[outLen++] = fmt[i++];
441 continue;
442 }
443 fmtStr[0] = fmt[i++];
444 uint32 t = 1;
445 while (fmt[i] != 0 && t < sizeof(fmtStr) - 1) {
446 /* %s %ms %-ms %m.ns %-m.ns convert to %p */
447 if ((fmt[i] == 's' || fmt[i] == 'S') &&
448 (fmt[i - 1] == '%' || (fmt[i - 1] >= '0' && fmt[i - 1] <= '9'))) {
449 fmtStr[1] = 'p';
450 fmtStr[FMT_CONVERT_TRMINATOR] = 0;
451 i++;
452 break;
453 }
454 if ((fmt[i] >= 'a' && fmt[i] <= 'z') || (fmt[i] >= 'A' && fmt[i] <= 'Z')) {
455 fmtStr[t++] = fmt[i++];
456 fmtStr[t] = 0;
457 break;
458 }
459 fmtStr[t++] = fmt[i++];
460 }
461 if (valueIndex < valNum) {
462 len = snprintf_s(&desStrPtr[outLen], desLen - outLen, desLen - outLen - 1,
463 fmtStr, logContentPtr->values[valueIndex]);
464 if (len < 0) {
465 break;
466 }
467 outLen += len;
468 valueIndex++;
469 }
470 }
471
472 return outLen;
473 }
474
LogDebugValuesFmt(char * desStrPtr,int32 desLen,const HiLogContent * logContentPtr)475 static int32 LogDebugValuesFmt(char *desStrPtr, int32 desLen, const HiLogContent *logContentPtr)
476 {
477 int32 ret = 0;
478 switch (logContentPtr->commonContent.valueNumber) {
479 case LOG_MULTI_PARA_0:
480 ret = strncpy_s(desStrPtr, desLen, logContentPtr->commonContent.fmt, desLen - 1);
481 if (ret != EOK) {
482 ret = -1;
483 }
484 break;
485 case LOG_MULTI_PARA_1:
486 ret = snprintf_s(desStrPtr, desLen, desLen - 1, logContentPtr->commonContent.fmt,
487 logContentPtr->values[0]);
488 break;
489 case LOG_MULTI_PARA_2:
490 ret = snprintf_s(desStrPtr, desLen, desLen - 1, logContentPtr->commonContent.fmt,
491 logContentPtr->values[0], logContentPtr->values[1]);
492 break;
493 case LOG_MULTI_PARA_3:
494 ret = snprintf_s(desStrPtr, desLen, desLen - 1, logContentPtr->commonContent.fmt,
495 logContentPtr->values[0], logContentPtr->values[1], logContentPtr->values[LOG_MULTI_PARA_2]);
496 break;
497 case LOG_MULTI_PARA_4:
498 ret = snprintf_s(desStrPtr, desLen, desLen - 1, logContentPtr->commonContent.fmt,
499 logContentPtr->values[0], logContentPtr->values[1], logContentPtr->values[LOG_MULTI_PARA_2],
500 logContentPtr->values[LOG_MULTI_PARA_3]);
501 break;
502 case LOG_MULTI_PARA_5:
503 ret = snprintf_s(desStrPtr, desLen, desLen - 1, logContentPtr->commonContent.fmt,
504 logContentPtr->values[0], logContentPtr->values[1], logContentPtr->values[LOG_MULTI_PARA_2],
505 logContentPtr->values[LOG_MULTI_PARA_3], logContentPtr->values[LOG_MULTI_PARA_4]);
506 break;
507 case LOG_MULTI_PARA_MAX:
508 ret = snprintf_s(desStrPtr, desLen, desLen - 1, logContentPtr->commonContent.fmt,
509 logContentPtr->values[0], logContentPtr->values[1], logContentPtr->values[LOG_MULTI_PARA_2],
510 logContentPtr->values[LOG_MULTI_PARA_3], logContentPtr->values[LOG_MULTI_PARA_4],
511 logContentPtr->values[LOG_MULTI_PARA_5]);
512 break;
513 default:
514 break;
515 }
516
517 return (ret < 0) ? 0 : ret;
518 }
519
LogValuesFmtHash(char * desStrPtr,int32 desLen,const HiLogContent * logContentPtr)520 static int32 LogValuesFmtHash(char *desStrPtr, int32 desLen, const HiLogContent *logContentPtr)
521 {
522 int32 outLen = 0;
523 uint32 paraNum = logContentPtr->commonContent.valueNumber;
524 int32 len = snprintf_s(&desStrPtr[outLen], desLen - outLen, desLen - outLen - 1,
525 "hash:%u para:", (uint32)logContentPtr->commonContent.fmt);
526 if (len < 0) {
527 return len;
528 }
529 outLen += len;
530
531 for (uint32 i = 0; i < paraNum && i < LOG_MULTI_PARA_MAX; i++) {
532 len = snprintf_s(&desStrPtr[outLen], desLen - outLen, desLen - outLen - 1,
533 "%d ", (int32)logContentPtr->values[i]);
534 if (len < 0) {
535 return len;
536 }
537 outLen += len;
538 }
539 return outLen;
540 }
541
FlushLog(boolean syncFlag)542 void FlushLog(boolean syncFlag)
543 {
544 int8 opt = GETOPTION(g_hiviewConfig.outputOption);
545 if (g_logCache.usedSize > 0) {
546 if (syncFlag == FALSE) {
547 switch (opt) {
548 case OUTPUT_OPTION_TEXT_FILE:
549 HiviewSendMessage(HIVIEW_SERVICE, HIVIEW_MSG_OUTPUT_LOG_TEXT_FILE, SYNC_FILE);
550 break;
551 case OUTPUT_OPTION_BIN_FILE:
552 HiviewSendMessage(HIVIEW_SERVICE, HIVIEW_MSG_OUTPUT_LOG_BIN_FILE, SYNC_FILE);
553 break;
554 case OUTPUT_OPTION_FLOW:
555 HiviewSendMessage(HIVIEW_SERVICE, HIVIEW_MSG_OUTPUT_LOG_FLOW, SYNC_FILE);
556 break;
557 default:
558 break;
559 }
560 } else {
561 Request request = {0};
562 request.msgValue = SYNC_FILE;
563 switch (opt) {
564 case OUTPUT_OPTION_TEXT_FILE:
565 OutputLog2TextFile(&request);
566 break;
567 case OUTPUT_OPTION_BIN_FILE:
568 OutputLog2BinFile(&request);
569 break;
570 case OUTPUT_OPTION_FLOW:
571 OutputLogRealtime(NULL);
572 break;
573 default:
574 break;
575 }
576 }
577 }
578 }
579
HiviewRegisterHilogProc(HilogProc func)580 void HiviewRegisterHilogProc(HilogProc func)
581 {
582 g_hilogOutputProc = func;
583 }
584
HiviewGetConfigOption(void)585 uint32 HiviewGetConfigOption(void)
586 {
587 return GETOPTION(g_hiviewConfig.outputOption);
588 }
589
HiviewUnRegisterHilogProc(HilogProc func)590 void HiviewUnRegisterHilogProc(HilogProc func)
591 {
592 (void)func;
593 if (g_hilogOutputProc != NULL) {
594 g_hilogOutputProc = NULL;
595 }
596 }
597
HiviewRegisterHiLogFileWatcher(FileProc func,const char * path)598 void HiviewRegisterHiLogFileWatcher(FileProc func, const char *path)
599 {
600 if (func == NULL) {
601 return;
602 }
603 RegisterFileWatcher(&g_logFile, func, path);
604 }
605
HiviewUnRegisterHiLogFileWatcher(FileProc func)606 void HiviewUnRegisterHiLogFileWatcher(FileProc func)
607 {
608 if (func == NULL) {
609 return;
610 }
611 UnRegisterFileWatcher(&g_logFile, func);
612 }
613
HiLogFileProcImp(const char * dest,uint8 mode)614 int HiLogFileProcImp(const char* dest, uint8 mode)
615 {
616 FlushLog(TRUE);
617 HIVIEW_MutexLock(g_logFlushInfo.mutex);
618 int ret = ProcFile(&g_logFile, dest, (FileProcMode)mode);
619 HIVIEW_MutexUnlock(g_logFlushInfo.mutex);
620 return ret;
621 }
622
HiLogOutputFileLockImp(void)623 void HiLogOutputFileLockImp(void)
624 {
625 HIVIEW_MutexLock(g_outputLogInfo.mutex);
626 }
627
HiLogOutputFileUnLockImp(void)628 void HiLogOutputFileUnLockImp(void)
629 {
630 HIVIEW_MutexUnlock(g_outputLogInfo.mutex);
631 }
632