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1 /*
2  * Copyright (c) 2021 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 #include "init_utils.h"
16 
17 #include <ctype.h>
18 #include <errno.h>
19 #include <dirent.h>
20 #include <fcntl.h>
21 #include <grp.h>
22 #include <limits.h>
23 #include <pwd.h>
24 #include <stdlib.h>
25 #include <string.h>
26 #include <sys/ioctl.h>
27 #include <sys/stat.h>
28 #include <unistd.h>
29 #include <time.h>
30 
31 #include "init_log.h"
32 #include "securec.h"
33 #include "service_control.h"
34 
35 #define MAX_BUF_SIZE  1024
36 #define MAX_SMALL_BUFFER 4096
37 
38 #define MAX_JSON_FILE_LEN 102400    // max init.cfg size 100KB
39 #define CONVERT_MICROSEC_TO_SEC(x) ((x) / 1000 / 1000.0)
40 #ifndef DT_DIR
41 #define DT_DIR 4
42 #endif
43 
44 #define THOUSAND_UNIT_FLOAT 1000.0
45 
46 #ifndef OHOS_LITE
47 bool g_isBootCompleted = false;
48 
IsBootCompleted(void)49 bool IsBootCompleted(void)
50 {
51     return g_isBootCompleted;
52 }
53 
SetBootCompleted(bool isBootCompleted)54 void SetBootCompleted(bool isBootCompleted)
55 {
56     g_isBootCompleted = isBootCompleted;
57 }
58 #endif
59 
ConvertMicrosecondToSecond(int x)60 float ConvertMicrosecondToSecond(int x)
61 {
62     return ((x / THOUSAND_UNIT_FLOAT) / THOUSAND_UNIT_FLOAT);
63 }
64 
65 #ifndef __LITEOS_M__
CheckDigit(const char * name)66 static bool CheckDigit(const char *name)
67 {
68     size_t nameLen = strlen(name);
69     for (size_t i = 0; i < nameLen; ++i) {
70         if (!isdigit(name[i])) {
71             return false;
72         }
73     }
74     return true;
75 }
76 #endif
77 
StringToUint(const char * name,unsigned int * value)78 int StringToUint(const char *name, unsigned int *value)
79 {
80     errno = 0;
81     *value = (unsigned int)strtoul(name, 0, DECIMAL_BASE);
82     INIT_CHECK_RETURN_VALUE(errno == 0, -1);
83     return 0;
84 }
85 
DecodeUid(const char * name)86 uid_t DecodeUid(const char *name)
87 {
88 #ifndef __LITEOS_M__
89     INIT_CHECK_RETURN_VALUE(name != NULL, -1);
90     uid_t uid = -1;
91     if (CheckDigit(name)) {
92         if (!StringToUint(name, &uid)) {
93             return uid;
94         } else {
95             return -1;
96         }
97     }
98     struct passwd *p = getpwnam(name);
99     if (p == NULL) {
100         return -1;
101     }
102     return p->pw_uid;
103 #else
104     (void)name;
105     return -1;
106 #endif
107 }
108 
DecodeGid(const char * name)109 gid_t DecodeGid(const char *name)
110 {
111 #ifndef __LITEOS_M__
112     INIT_CHECK_RETURN_VALUE(name != NULL, -1);
113     gid_t gid = -1;
114     if (CheckDigit(name)) {
115         if (!StringToUint(name, &gid)) {
116             return gid;
117         } else {
118             return -1;
119         }
120     }
121     struct group *data = getgrnam(name);
122     if (data != NULL) {
123         return data->gr_gid;
124     }
125     while ((data = getgrent()) != NULL) {
126         if ((data->gr_name != NULL) && (strcmp(data->gr_name, name) == 0)) {
127             gid = data->gr_gid;
128             break;
129         }
130     }
131     endgrent();
132     return gid;
133 #else
134     (void)name;
135     return -1;
136 #endif
137 }
138 
ReadFileToBuf(const char * configFile)139 char *ReadFileToBuf(const char *configFile)
140 {
141     char *buffer = NULL;
142     FILE *fd = NULL;
143     struct stat fileStat = {0};
144     INIT_CHECK_RETURN_VALUE(configFile != NULL && *configFile != '\0', NULL);
145     do {
146         if (stat(configFile, &fileStat) != 0 ||
147             fileStat.st_size <= 0 || fileStat.st_size > MAX_JSON_FILE_LEN) {
148             break;
149         }
150         fd = fopen(configFile, "r");
151         if (fd == NULL) {
152             INIT_LOGE("Open %s failed. err = %d", configFile, errno);
153             break;
154         }
155         buffer = (char*)calloc((size_t)(fileStat.st_size + 1), sizeof(char));
156         if (buffer == NULL) {
157             INIT_LOGE("Failed to allocate memory for config file, err = %d", errno);
158             break;
159         }
160 
161         if (fread(buffer, fileStat.st_size, 1, fd) != 1) {
162             free(buffer);
163             buffer = NULL;
164             break;
165         }
166         buffer[fileStat.st_size] = '\0';
167     } while (0);
168 
169     if (fd != NULL) {
170         (void)fclose(fd);
171         fd = NULL;
172     }
173     return buffer;
174 }
175 
CloseStdio(void)176 void CloseStdio(void)
177 {
178 #ifndef STARTUP_INIT_TEST
179 #ifndef __LITEOS_M__
180     int fd = open("/dev/null", O_RDWR);
181     if (fd < 0) {
182         return;
183     }
184     dup2(fd, 0);
185     dup2(fd, 1);
186     dup2(fd, STDERR_HANDLE);
187     if (fd > STDERR_HANDLE) {
188         close(fd);
189     }
190 #endif
191 #endif
192 }
193 
ReadFileData(const char * fileName)194 char *ReadFileData(const char *fileName)
195 {
196     if (fileName == NULL) {
197         return NULL;
198     }
199     char *buffer = NULL;
200     int fd = -1;
201     fd = open(fileName, O_RDONLY);
202     INIT_ERROR_CHECK(fd >= 0, return NULL, "Failed to read file %s errno:%d", fileName, errno);
203     buffer = (char *)calloc(1, MAX_SMALL_BUFFER); // fsmanager not create, can not get fileStat st_size
204     INIT_ERROR_CHECK(buffer != NULL, close(fd);
205         return NULL, "Failed to allocate memory for %s", fileName);
206     ssize_t readLen = read(fd, buffer, MAX_SMALL_BUFFER - 1);
207     INIT_ERROR_CHECK((readLen > 0) && (readLen <= (MAX_SMALL_BUFFER - 1)), close(fd);
208         free(buffer);
209         return NULL, "Failed to read data for %s", fileName);
210     buffer[readLen] = '\0';
211     if (fd != -1) {
212         close(fd);
213     }
214     return buffer;
215 }
216 
IterateNameValuePairs(const char * src,void (* iterator)(const NAME_VALUE_PAIR * nv,void * context),void * context)217 int IterateNameValuePairs(const char *src, void (*iterator)(const NAME_VALUE_PAIR *nv, void *context), void *context)
218 {
219     int cnt = 0;
220     const char *seperator;
221     const char *tmp = src;
222     NAME_VALUE_PAIR nv;
223     if ((src == NULL) || (iterator == NULL)) {
224         return -1;
225     }
226 
227     do {
228         // Find space seperator
229         nv.name = tmp;
230         seperator = strchr(tmp, ' ');
231         if (seperator == NULL) {
232             // Last nv
233             nv.valueEnd = tmp + strlen(tmp);
234             tmp = NULL;
235         } else {
236             nv.valueEnd = seperator;
237             tmp = seperator + 1;
238         }
239 
240         // Find equal seperator
241         seperator = strchr(nv.name, '=');
242         if (seperator == NULL) {
243             // Invalid name value pair
244             continue;
245         }
246         if (seperator > nv.valueEnd) {
247             // name without value, just ignore
248             continue;
249         }
250         nv.nameEnd = seperator;
251         nv.value = seperator + 1;
252 
253         iterator(&nv, context);
254         cnt += 1;
255     } while (tmp != NULL);
256 
257     return cnt;
258 }
259 
GetProcCmdlineValue(const char * name,const char * buffer,char * value,int length)260 int GetProcCmdlineValue(const char *name, const char *buffer, char *value, int length)
261 {
262     INIT_ERROR_CHECK(name != NULL && buffer != NULL && value != NULL, return -1, "Failed get parameters");
263     char *endData = (char *)buffer + strlen(buffer);
264     char *tmp = strstr(buffer, name);
265     do {
266         if (tmp == NULL) {
267             return -1;
268         }
269         tmp = tmp + strlen(name);
270         while (tmp < endData && *tmp == ' ') {
271             tmp++;
272         }
273         if (tmp >= endData) {
274             return -1;
275         }
276         if (*tmp == '=') {
277             break;
278         }
279         tmp = strstr(tmp + 1, name);
280     } while (tmp < endData);
281     tmp++;
282     size_t i = 0;
283     size_t endIndex = 0;
284     while (tmp < endData && *tmp == ' ') {
285         tmp++;
286     }
287     for (; i < (size_t)length; tmp++) {
288         if (tmp >= endData || *tmp == ' ' || *tmp == '\n' || *tmp == '\r' || *tmp == '\t') {
289             endIndex = i;
290             break;
291         }
292         if (*tmp == '=') {
293             if (endIndex != 0) { // for root=uuid=xxxx
294                 break;
295             }
296             i = 0;
297             endIndex = 0;
298             continue;
299         }
300         value[i++] = *tmp;
301     }
302     if (i >= (size_t)length) {
303         return -1;
304     }
305     value[endIndex] = '\0';
306     return 0;
307 }
308 
SplitString(char * srcPtr,const char * del,char ** dstPtr,int maxNum)309 int SplitString(char *srcPtr, const char *del, char **dstPtr, int maxNum)
310 {
311     INIT_CHECK_RETURN_VALUE(srcPtr != NULL && dstPtr != NULL && del != NULL, -1);
312     char *buf = NULL;
313     dstPtr[0] = strtok_r(srcPtr, del, &buf);
314     int counter = 0;
315     while ((counter < maxNum) && (dstPtr[counter] != NULL)) {
316         counter++;
317         if (counter >= maxNum) {
318             break;
319         }
320         dstPtr[counter] = strtok_r(NULL, del, &buf);
321     }
322     return counter;
323 }
324 
FreeStringVector(char ** vector,int count)325 void FreeStringVector(char **vector, int count)
326 {
327     if (vector != NULL) {
328         for (int i = 0; i < count; i++) {
329             if (vector[i] != NULL) {
330                 free(vector[i]);
331             }
332         }
333         free(vector);
334     }
335 }
336 
SplitStringExt(char * buffer,const char * del,int * returnCount,int maxItemCount)337 char **SplitStringExt(char *buffer, const char *del, int *returnCount, int maxItemCount)
338 {
339     INIT_CHECK_RETURN_VALUE((maxItemCount >= 0) && (buffer != NULL) && (del != NULL) && (returnCount != NULL), NULL);
340     // Why is this number?
341     // Now we use this function to split a string with a given delimiter
342     // We do not know how many sub-strings out there after splitting.
343     // 50 is just a guess value.
344     const int defaultItemCounts = 50;
345     int itemCounts = maxItemCount;
346 
347     if (maxItemCount > defaultItemCounts) {
348         itemCounts = defaultItemCounts;
349     }
350     char **items = (char **)malloc(sizeof(char*) * itemCounts);
351     INIT_ERROR_CHECK(items != NULL, return NULL, "No enough memory to store items");
352     char *rest = NULL;
353     char *p = strtok_r(buffer, del, &rest);
354     int count = 0;
355     while (p != NULL) {
356         if (count > itemCounts - 1) {
357             itemCounts += (itemCounts / 2) + 1; // 2 Request to increase the original memory by half.
358             INIT_LOGV("Too many items,expand size");
359             char **expand = (char **)(realloc(items, sizeof(char *) * itemCounts));
360             INIT_ERROR_CHECK(expand != NULL, FreeStringVector(items, count);
361                 return NULL, "Failed to expand memory");
362             items = expand;
363         }
364         size_t len = strlen(p);
365         items[count] = (char *)calloc(len + 1, sizeof(char));
366         INIT_CHECK(items[count] != NULL, FreeStringVector(items, count);
367             return NULL);
368         if (strncpy_s(items[count], len + 1, p, len) != EOK) {
369             INIT_LOGE("Copy string failed");
370             FreeStringVector(items, count);
371             return NULL;
372         }
373         count++;
374         p = strtok_r(NULL, del, &rest);
375     }
376     *returnCount = count;
377     return items;
378 }
379 
InitDiffTime(INIT_TIMING_STAT * stat)380 long long InitDiffTime(INIT_TIMING_STAT *stat)
381 {
382     long long diff = (long long)(stat->endTime.tv_sec - stat->startTime.tv_sec) * 1000000; // 1000000 1000ms
383     if (stat->endTime.tv_nsec > stat->startTime.tv_nsec) {
384         diff += (stat->endTime.tv_nsec - stat->startTime.tv_nsec) / BASE_MS_UNIT;
385     } else {
386         diff -= (stat->startTime.tv_nsec - stat->endTime.tv_nsec) / BASE_MS_UNIT;
387     }
388     return diff;
389 }
390 
WaitForFile(const char * source,unsigned int maxSecond)391 void WaitForFile(const char *source, unsigned int maxSecond)
392 {
393     INIT_ERROR_CHECK(maxSecond <= WAIT_MAX_SECOND, maxSecond = WAIT_MAX_SECOND,
394         "WaitForFile max time is %us", WAIT_MAX_SECOND);
395     struct stat sourceInfo = {0};
396     unsigned int waitTime = 10 * BASE_MS_UNIT; // 10ms
397     long long maxDuration = maxSecond * BASE_MS_UNIT * BASE_MS_UNIT; // 5s
398 #ifdef STARTUP_INIT_TEST
399     maxDuration = 0;
400 #endif
401     long long duration = 0;
402     INIT_TIMING_STAT cmdTimer;
403     (void)clock_gettime(CLOCK_MONOTONIC, &cmdTimer.startTime);
404     while (1) {
405         if (stat(source, &sourceInfo) >= 0) {
406             break;
407         }
408         if (errno != ENOENT) {
409             INIT_LOGE("stat file err: %d", errno);
410             break;
411         }
412 
413         usleep(waitTime);
414         (void)clock_gettime(CLOCK_MONOTONIC, &cmdTimer.endTime);
415         duration = InitDiffTime(&cmdTimer);
416 
417         if (duration >= maxDuration) {
418             INIT_LOGE("wait for file:%s failed after %d second.", source, maxSecond);
419             break;
420         }
421     }
422 }
423 
WriteAll(int fd,const char * buffer,size_t size)424 size_t WriteAll(int fd, const char *buffer, size_t size)
425 {
426     INIT_CHECK_RETURN_VALUE(buffer != NULL && fd >= 0 && *buffer != '\0', 0);
427     const char *p = buffer;
428     size_t left = size;
429     ssize_t written;
430     while (left > 0) {
431         do {
432             written = write(fd, p, left);
433         } while (written < 0 && errno == EINTR);
434         if (written < 0) {
435             INIT_LOGE("Failed to write %lu bytes, err = %d", left, errno);
436             break;
437         }
438         p += written;
439         left -= written;
440     }
441     return size - left;
442 }
443 
GetRealPath(const char * source)444 char *GetRealPath(const char *source)
445 {
446     INIT_CHECK_RETURN_VALUE(source != NULL, NULL);
447     char *path = realpath(source, NULL);
448     if (path == NULL) {
449         INIT_ERROR_CHECK(errno == ENOENT, return NULL, "Failed to resolve %s real path err=%d", source, errno);
450     }
451     return path;
452 }
453 
MakeDir(const char * dir,mode_t mode)454 int MakeDir(const char *dir, mode_t mode)
455 {
456     int rc = -1;
457     if (dir == NULL || *dir == '\0') {
458         errno = EINVAL;
459         return rc;
460     }
461     rc = mkdir(dir, mode);
462     INIT_ERROR_CHECK(!(rc < 0 && errno != EEXIST), return rc,
463         "Create directory \" %s \" failed, err = %d", dir, errno);
464     // create dir success or it already exist.
465     return 0;
466 }
467 
MakeDirRecursive(const char * dir,mode_t mode)468 int MakeDirRecursive(const char *dir, mode_t mode)
469 {
470     int rc = -1;
471     char buffer[PATH_MAX] = {0};
472     const char *p = NULL;
473     if (dir == NULL || *dir == '\0') {
474         errno = EINVAL;
475         return rc;
476     }
477     p = dir;
478     char *slash = strchr(dir, '/');
479     while (slash != NULL) {
480         int gap = slash - p;
481         p = slash + 1;
482         if (gap == 0) {
483             slash = strchr(p, '/');
484             continue;
485         }
486         if (gap < 0) { // end with '/'
487             break;
488         }
489         INIT_CHECK_RETURN_VALUE(memcpy_s(buffer, PATH_MAX, dir, p - dir - 1) == 0, -1);
490         rc = MakeDir(buffer, mode);
491         INIT_CHECK_RETURN_VALUE(rc >= 0, rc);
492         slash = strchr(p, '/');
493     }
494     return MakeDir(dir, mode);
495 }
496 
CheckAndCreateDir(const char * fileName)497 void CheckAndCreateDir(const char *fileName)
498 {
499 #ifndef __LITEOS_M__
500     if (fileName == NULL || *fileName == '\0') {
501         return;
502     }
503     char *path = strndup(fileName, strrchr(fileName, '/') - fileName);
504     if (path == NULL) {
505         return;
506     }
507     if (access(path, F_OK) == 0) {
508         free(path);
509         return;
510     }
511     MakeDirRecursive(path, S_IRWXU | S_IRGRP | S_IXGRP | S_IROTH | S_IXOTH);
512     free(path);
513 #else
514     (void)fileName;
515 #endif
516 }
517 
CheckAndCreatFile(const char * file,mode_t mode)518 int CheckAndCreatFile(const char *file, mode_t mode)
519 {
520     if (access(file, F_OK) == 0) {
521         BEGET_LOGW("File \' %s \' already exist", file);
522         return 0;
523     } else {
524         if (errno == ENOENT) {
525             CheckAndCreateDir(file);
526             int fd = open(file, O_CREAT, mode);
527             if (fd < 0) {
528                 BEGET_LOGE("Failed create %s, err=%d", file, errno);
529                 return -1;
530             } else {
531                 close(fd);
532             }
533         } else {
534             BEGET_LOGW("Failed to access \' %s \', err = %d", file, errno);
535             return -1;
536         }
537     }
538     return 0;
539 }
540 
StringToInt(const char * str,int defaultValue)541 int StringToInt(const char *str, int defaultValue)
542 {
543     if (str == NULL || *str == '\0') {
544         return defaultValue;
545     }
546     errno = 0;
547     int value = (int)strtoul(str, NULL, DECIMAL_BASE);
548     return (errno != 0) ? defaultValue : value;
549 }
550 
ReadFileInDir(const char * dirPath,const char * includeExt,int (* processFile)(const char * fileName,void * context),void * context)551 int ReadFileInDir(const char *dirPath, const char *includeExt,
552     int (*processFile)(const char *fileName, void *context), void *context)
553 {
554     INIT_CHECK_RETURN_VALUE(dirPath != NULL && processFile != NULL, -1);
555     DIR *pDir = opendir(dirPath);
556     INIT_ERROR_CHECK(pDir != NULL, return -1, "Read dir :%s failed.%d", dirPath, errno);
557     char *fileName = calloc(1, MAX_BUF_SIZE);
558     INIT_ERROR_CHECK(fileName != NULL, closedir(pDir);
559         return -1, "Failed to malloc for %s", dirPath);
560 
561     struct dirent *dp;
562     uint32_t count = 0;
563     while ((dp = readdir(pDir)) != NULL) {
564         if (dp->d_type == DT_DIR) {
565             continue;
566         }
567         if (includeExt != NULL) {
568             char *tmp = strstr(dp->d_name, includeExt);
569             if (tmp == NULL) {
570                 continue;
571             }
572             if (strcmp(tmp, includeExt) != 0) {
573                 continue;
574             }
575         }
576         int ret = snprintf_s(fileName, MAX_BUF_SIZE, MAX_BUF_SIZE - 1, "%s/%s", dirPath, dp->d_name);
577         if (ret <= 0) {
578             INIT_LOGE("Failed to get file name for %s", dp->d_name);
579             continue;
580         }
581         struct stat st;
582         if (stat(fileName, &st) == 0) {
583             count++;
584             processFile(fileName, context);
585         }
586     }
587     INIT_LOGV("ReadFileInDir dirPath %s %d", dirPath, count);
588     free(fileName);
589     closedir(pDir);
590     return 0;
591 }
592 
593 // Check if in updater mode.
InUpdaterMode(void)594 int InUpdaterMode(void)
595 {
596 #ifdef OHOS_LITE
597     return 0;
598 #else
599     const char * const updaterExecutableFile = "/bin/updater";
600     if (access(updaterExecutableFile, X_OK) == 0) {
601         return 1;
602     } else {
603         return 0;
604     }
605 #endif
606 }
607 
608 // Check if in rescue mode.
InRescueMode(void)609 int InRescueMode(void)
610 {
611 #ifdef OHOS_LITE
612     return 1;
613 #else
614     char value[MAX_BUFFER_LEN] = {0};
615     int ret = GetParameterFromCmdLine("rescue_mode", value, MAX_BUFFER_LEN);
616     if (ret == 0 && strcmp(value, "true") == 0) {
617         return 0;
618     }
619     return 1;
620 #endif
621 }
622 
StringReplaceChr(char * strl,char oldChr,char newChr)623 int StringReplaceChr(char *strl, char oldChr, char newChr)
624 {
625     INIT_ERROR_CHECK(strl != NULL, return -1, "Invalid parament");
626     char *p = strl;
627     while (*p != '\0') {
628         if (*p == oldChr) {
629             *p = newChr;
630         }
631         p++;
632     }
633     INIT_LOGV("strl is %s", strl);
634     return 0;
635 }
636 
637 #ifndef __LITEOS_M__
RedirectStdio(int fd)638 static void RedirectStdio(int fd)
639 {
640     const int stdError = 2;
641     dup2(fd, 0);
642     dup2(fd, 1);
643     dup2(fd, stdError); // Redirect fd to 0, 1, 2
644 }
645 #endif
646 
647 #ifndef __LITEOS_M__
OpenStdioDevice(const char * dev,int flag)648 static int OpenStdioDevice(const char *dev, int flag)
649 {
650     setsid();
651     WaitForFile(dev, WAIT_MAX_SECOND);
652     int fd = open(dev, O_RDWR | O_NOCTTY | O_CLOEXEC);
653     if (fd >= 0) {
654         ioctl(fd, TIOCSCTTY, flag);
655         RedirectStdio(fd);
656         if (fd > 2) {
657             close(fd);
658         }
659     } else {
660         return errno;
661     }
662     return 0;
663 }
664 #endif
665 
OpenConsole(void)666 int OpenConsole(void)
667 {
668 #ifndef __LITEOS_M__
669     return OpenStdioDevice("/dev/console", 1);
670 #else
671     return 0;
672 #endif
673 }
674 
OpenKmsg(void)675 int OpenKmsg(void)
676 {
677 #ifndef __LITEOS_M__
678     return OpenStdioDevice("/dev/kmsg", 0);
679 #else
680     return 0;
681 #endif
682 }
683 
StringToLL(const char * str,long long int * out)684 INIT_LOCAL_API int StringToLL(const char *str, long long int *out)
685 {
686     INIT_ERROR_CHECK(str != NULL && out != NULL, return -1, "Invalid parament");
687     const char *s = str;
688     while (isspace(*s)) {
689         s++;
690     }
691 
692     size_t len = strlen(s);
693     int positiveHex = (len > 1 && s[0] == '0' && (s[1] == 'x' || s[1] == 'X'));
694     int negativeHex = (len > 2 && s[0] == '-' && s[1] == '0' && (s[2] == 'x' || s[2] == 'X')); // 2: shorttest
695     int base = (positiveHex || negativeHex) ? HEX_BASE : DECIMAL_BASE;
696     char *end = NULL;
697     errno = 0;
698     *out = strtoll(s, &end, base);
699     if (errno != 0) {
700         INIT_LOGE("StringToLL %s err = %d", str, errno);
701         return -1;
702     }
703     BEGET_CHECK(!(s == end || *end != '\0'), return -1);
704     return 0;
705 }
706 
StringToULL(const char * str,unsigned long long int * out)707 INIT_LOCAL_API int StringToULL(const char *str, unsigned long long int *out)
708 {
709     INIT_ERROR_CHECK(str != NULL && out != NULL, return -1, "Invalid parament");
710     const char *s = str;
711     while (isspace(*s)) {
712         s++;
713     }
714     BEGET_CHECK(s[0] != '-', return -1);
715     int base = (s[0] == '0' && (s[1] == 'x' || s[1] == 'X')) ? HEX_BASE : DECIMAL_BASE;
716     char *end = NULL;
717     errno = 0;
718     *out = strtoull(s, &end, base);
719     if (errno != 0) {
720         INIT_LOGE("StringToULL %s err = %d", str, errno);
721         return -1;
722     }
723     BEGET_CHECK(end != s, return -1);
724     BEGET_CHECK(*end == '\0', return -1);
725     return 0;
726 }
727 
TrimTail(char * str,char c)728 void TrimTail(char *str, char c)
729 {
730     char *end = str + strlen(str) - 1;
731     while (end >= str && *end == c) {
732         *end = '\0';
733         end--;
734     }
735 }
736 
TrimHead(char * str,char c)737 char *TrimHead(char *str, char c)
738 {
739     char *head = str;
740     const char *end = str + strlen(str);
741     while (head < end && *head == c) {
742         *head = '\0';
743         head++;
744     }
745     return head;
746 }
747 
GetCmdlineValueByName(const char * name,const char * buffer,const char * endData)748 static const char *GetCmdlineValueByName(const char *name, const char *buffer, const char *endData)
749 {
750     const char *tmp = buffer;
751     do {
752         tmp = strstr(tmp, name);
753         if (tmp == NULL) {
754             return NULL;
755         }
756         if (tmp > buffer && *(tmp - 1) != ' ') {
757             tmp++;
758             continue;
759         }
760         tmp = tmp + strlen(name);
761         if (tmp >= endData) {
762             return NULL;
763         }
764         if (*tmp == '=') {
765             tmp++;
766             return tmp;
767         }
768     } while (tmp < endData);
769     return NULL;
770 }
771 
GetExactProcCmdlineValue(const char * name,const char * buffer,char * value,int length)772 static int GetExactProcCmdlineValue(const char *name, const char *buffer, char *value, int length)
773 {
774     INIT_ERROR_CHECK(name != NULL && buffer != NULL && value != NULL, return -1, "Failed get parameters");
775     const char *endData = buffer + strlen(buffer);
776     const char *tmp = GetCmdlineValueByName(name, buffer, endData);
777     if (tmp == NULL) {
778         return -1;
779     }
780 
781     const char *temp = GetCmdlineValueByName(name, tmp, endData);
782     if (temp == NULL) { // 无冲突
783         int i = 0;
784         while (i < length && tmp < endData && *tmp != ' ') {
785             value[i++] = *tmp;
786             tmp++;
787         }
788         if (i >= length) {
789             BEGET_LOGE("value is too long");
790             for (int j = 0; j < length; ++j) {
791                 value[j] = '\0';
792             }
793             return -1;
794         }
795         value[i] = '\0';
796         return 0;
797     }
798     // 有冲突直接返回1, 不取任何一个值
799     return 1;
800 }
801 
GetExactParameterFromCmdLine(const char * paramName,char * value,size_t valueLen)802 int GetExactParameterFromCmdLine(const char *paramName, char *value, size_t valueLen)
803 {
804     char *buffer = ReadFileData(BOOT_CMD_LINE);
805     BEGET_ERROR_CHECK(buffer != NULL, return -1, "Failed to read /proc/cmdline");
806     int ret = GetExactProcCmdlineValue(paramName, buffer, value, valueLen);
807     BEGET_LOGI("GetExactParameterFromCmdLine: ret=%d,paramName=%s,value=%s", ret, paramName, value);
808     free(buffer);
809     return ret;
810 }
811 
GetParameterFromCmdLine(const char * paramName,char * value,size_t valueLen)812 int GetParameterFromCmdLine(const char *paramName, char *value, size_t valueLen)
813 {
814     char *buffer = ReadFileData(BOOT_CMD_LINE);
815     BEGET_ERROR_CHECK(buffer != NULL, return -1, "Failed to read /proc/cmdline");
816     int ret = GetProcCmdlineValue(paramName, buffer, value, valueLen);
817     BEGET_LOGI("GetParameterFromCmdLine: ret=%d,paramName=%s,value=%s", ret, paramName, value);
818     free(buffer);
819     return ret;
820 }
821 
IntervalTime(struct timespec * startTime,struct timespec * endTime)822 uint32_t IntervalTime(struct timespec *startTime, struct timespec *endTime)
823 {
824     uint32_t diff = 0;
825     if (endTime->tv_sec > startTime->tv_sec) {
826         diff = (uint32_t)(endTime->tv_sec - startTime->tv_sec);
827     } else {
828         diff = (uint32_t)(startTime->tv_sec - endTime->tv_sec);
829     }
830     return diff;
831 }
832 
833 typedef int (*str_compare)(const char *s1, const char *s2);
OH_ExtendableStrArrayGetIndex(const char * strArray[],const char * target,int ignoreCase,const char * extend[])834 int OH_ExtendableStrArrayGetIndex(const char *strArray[], const char *target, int ignoreCase, const char *extend[])
835 {
836     int i;
837     int idx;
838     str_compare cmp = strcmp;
839 
840     if ((strArray == NULL) || (target == NULL) || (target[0] == '\0')) {
841         return -1;
842     }
843 
844     if (ignoreCase) {
845         cmp = strcasecmp;
846     }
847 
848     for (i = 0; strArray[i] != NULL; i++) {
849         if (cmp(strArray[i], target) == 0) {
850             return i;
851         }
852     }
853     if (extend == NULL) {
854         return -1;
855     }
856     idx = 0;
857     while (extend[idx] != NULL) {
858         if (cmp(extend[idx], target) == 0) {
859             return i + idx;
860         }
861         idx++;
862     }
863     return -1;
864 }
865 
OH_StrArrayGetIndex(const char * strArray[],const char * target,int ignoreCase)866 int OH_StrArrayGetIndex(const char *strArray[], const char *target, int ignoreCase)
867 {
868     return OH_ExtendableStrArrayGetIndex(strArray, target, ignoreCase, NULL);
869 }
870 
OH_ExtendableStrDictGet(void ** strDict,int dictSize,const char * target,int ignoreCase,void ** extendStrDict)871 void *OH_ExtendableStrDictGet(void **strDict, int dictSize, const char *target, int ignoreCase, void **extendStrDict)
872 {
873     int i;
874     const char *pos;
875     str_compare cmp = strcmp;
876 
877     if ((strDict == NULL) || dictSize < 0 || ((size_t)dictSize < sizeof(const char *)) ||
878         (target == NULL) || (target[0] == '\0')) {
879         return NULL;
880     }
881 
882     if (ignoreCase) {
883         cmp = strcasecmp;
884     }
885 
886     i = 0;
887     pos = (const char *)strDict;
888     while (*(const char **)pos != NULL) {
889         if (cmp(*(const char **)pos, target) == 0) {
890             return (void *)pos;
891         }
892         i++;
893         pos = pos + dictSize;
894     }
895     if (extendStrDict == NULL) {
896         return NULL;
897     }
898     pos = (const char *)extendStrDict;
899     while (*(const char **)pos != NULL) {
900         if (cmp(*(const char **)pos, target) == 0) {
901             return (void *)pos;
902         }
903         i++;
904         pos = pos + dictSize;
905     }
906     return NULL;
907 }
908 
OH_StrDictGet(void ** strDict,int dictSize,const char * target,int ignoreCase)909 void *OH_StrDictGet(void **strDict, int dictSize, const char *target, int ignoreCase)
910 {
911     return OH_ExtendableStrDictGet(strDict, dictSize, target, ignoreCase, NULL);
912 }
913 
GetUptimeInMicroSeconds(const struct timespec * uptime)914 long long GetUptimeInMicroSeconds(const struct timespec *uptime)
915 {
916     struct timespec now;
917 
918     if (uptime == NULL) {
919         clock_gettime(CLOCK_MONOTONIC, &now);
920         uptime = &now;
921     }
922 
923     #define SECOND_TO_MICRO_SECOND (1000000)
924     #define MICRO_SECOND_TO_NANOSECOND (1000)
925 
926     return ((long long)uptime->tv_sec * SECOND_TO_MICRO_SECOND) +
927             (uptime->tv_nsec / MICRO_SECOND_TO_NANOSECOND);
928 }
929