Standard setup for writing C inspired by Casey Muratori, Ryan Fleury, Mr. 4th Programmer, and others in the handmade community.
No puede seleccionar más de 25 temas Los temas deben comenzar con una letra o número, pueden incluir guiones ('-') y pueden tener hasta 35 caracteres de largo.
 
 
 
 

518 líneas
14 KiB

  1. #include <math.h>
  2. #include <string.h>
  3. #include <unistd.h>
  4. #include "core.h"
  5. #include "os.cpp"
  6. #define STB_SPRINTF_IMPLEMENTATION
  7. #include "vendor/stb_sprintf.h"
  8. void *pushSize(Arena *arena, size_t bytes) {
  9. if (arena->capacity - arena->head >= bytes) {
  10. void *ptr = (char *)arena->memory + arena->head;
  11. arena->head += bytes;
  12. return ptr;
  13. }
  14. return 0;
  15. }
  16. Arena *arenaAlloc(size_t capacity) {
  17. Arena *result = (Arena *)os_alloc(sizeof(Arena) + capacity);
  18. result->memory = result + sizeof(Arena);
  19. result->capacity = capacity;
  20. result->head = 0;
  21. return result;
  22. }
  23. void arenaFree(Arena *arena) {
  24. os_free(arena, arena->capacity);
  25. }
  26. void arenaFreeFrom(Arena *arena, size_t position) {
  27. arena->head = position;
  28. }
  29. void arenaPopTo(Arena *arena, void *position) {
  30. arena->head = (byte *)position - (byte *)arena->memory;
  31. }
  32. Arena *scratchArenas[2];
  33. void initialiseCore() {
  34. for (EachInArray(scratchArenas, i)) {
  35. scratchArenas[i] = arenaAlloc(Megabytes(64));
  36. }
  37. }
  38. Scratch scratchStart(Arena **conflicts, size_t conflictCount) {
  39. Scratch scratch = {0};
  40. for (size_t i = 0; i < ArrayCount(scratchArenas); i += 1) {
  41. bool conflicted = false;
  42. for (Arena **conflict = conflicts; conflict < conflicts + conflictCount; conflict += 1) {
  43. if (*conflict == scratchArenas[i]) {
  44. conflicted = true;
  45. break;
  46. }
  47. }
  48. if (conflicted == false) {
  49. scratch.arena = scratchArenas[i];
  50. scratch.start = scratch.arena->head;
  51. break;
  52. }
  53. }
  54. return scratch;
  55. }
  56. #define DeferLoop(begin_stmnt, end_stmnt) for(int __defer_i = ((begin_stmnt), 0); __defer_i < 1; (++__defer_i, (end_stmnt)))
  57. #define WithScratch(scratchName) Scratch scratchName; DeferLoop(scratchName = scratchStart(0, 0), scratchEnd(scratchName))
  58. void scratchEnd(Scratch scratch) {
  59. arenaFreeFrom(scratch.arena, scratch.start);
  60. }
  61. template <typename T>
  62. T *appendList(list<T> *list, T element) {
  63. if (list->head < list->length) {
  64. list->data[list->head] = element;
  65. list->head++;
  66. return &(list->data[list->head - 1]);
  67. } else {
  68. return 0;
  69. }
  70. }
  71. template <typename T>
  72. void zeroListFull(list<T> *list) {
  73. memset(list->data, 0, list->head * sizeof(T));
  74. }
  75. template <typename T>
  76. void zeroList(list<T> *list) {
  77. list->head = 0;
  78. memset(list->data, 0, list->head * sizeof(T));
  79. }
  80. inline string operator""_s(const char *cstrLiteral, size_t length) {
  81. return {
  82. (char *)cstrLiteral,
  83. length,
  84. };
  85. }
  86. const char *cstring(Arena *arena, list<char> buf) {
  87. char *arr = PushArray(arena, char, buf.length + 1);
  88. memmove(arr, buf.data, buf.length);
  89. arr[buf.length] = '\0';
  90. return arr;
  91. }
  92. const char *cstring(Arena *arena, string str) {
  93. char *arr = PushArray(arena, char, str.length + 1);
  94. memmove(arr, str.str, str.length);
  95. arr[str.length] = '\0';
  96. return arr;
  97. }
  98. bool strEql(string s1, string s2) {
  99. if (s1.length != s2.length) {
  100. return false;
  101. }
  102. for (size_t i = 0; i < s1.length; i++) {
  103. if (s1.str[i] != s2.str[i]) {
  104. return false;
  105. }
  106. }
  107. return true;
  108. }
  109. size_t calcStringLen(const char *str) {
  110. size_t size = 0;
  111. if (str == NULL) {
  112. return size;
  113. }
  114. while (str[size] != '\0') {
  115. size++;
  116. }
  117. return size;
  118. }
  119. string strFromCString(Arena *arena, const char *str) {
  120. string result = PushString(arena, calcStringLen(str));
  121. memcpy(result.str, str, result.length);
  122. return result;
  123. }
  124. string strReverse(Arena *arena, string str) {
  125. string reversed = PushString(arena, str.length);
  126. for (
  127. size_t mainIndex = str.length - 1, reversedIndex = 0;
  128. mainIndex < str.length;
  129. mainIndex--, reversedIndex++
  130. ) {
  131. reversed.str[reversedIndex] = str.str[mainIndex];
  132. }
  133. return reversed;
  134. }
  135. string strPrintfv(Arena *arena, const char *fmt, va_list args) {
  136. string result = {0};
  137. va_list argsCopy;
  138. va_copy(argsCopy, args);
  139. uint64 bufSize = stb_vsnprintf(0, 0, fmt, args) + 1;
  140. result.str = PushArray(arena, char, bufSize);
  141. result.length = bufSize - 1;
  142. stb_vsnprintf((char *)result.str, (int)bufSize, fmt, argsCopy);
  143. return result;
  144. }
  145. string strPrintf(Arena *arena, const char *fmt, ...) {
  146. string result = {0};
  147. va_list args;
  148. va_start(args, fmt);
  149. result = strPrintfv(arena, fmt, args);
  150. va_end(args);
  151. return result;
  152. }
  153. template <typename T>
  154. list<T> listSlice(list<T> l, size_t start, size_t stop) {
  155. if (stop == 0) {
  156. stop = l.head;
  157. }
  158. // TODO(djledda): maybe assert instead
  159. if (stop > l.head || start > stop) {
  160. return {0};
  161. }
  162. return {
  163. l.data + start,
  164. stop - start,
  165. stop - start,
  166. };
  167. }
  168. string strSlice(string str, size_t start, size_t stop) {
  169. if (stop == 0) {
  170. stop = str.length;
  171. }
  172. // TODO(djledda): maybe assert instead
  173. if (stop > str.length || start > stop) {
  174. return {0};
  175. }
  176. return {
  177. str.str + start,
  178. stop - start,
  179. };
  180. }
  181. string strSlice(char *data, size_t start, size_t stop) {
  182. return {
  183. data + start,
  184. stop - start,
  185. };
  186. }
  187. bool stringContains(string str, char c) {
  188. for (size_t i = 0; i < str.length; i++) {
  189. if (str.str[i] == c) {
  190. return true;
  191. }
  192. }
  193. return false;
  194. }
  195. string NUMERIC_CHARS = "0123456789"_s;
  196. inline bool isNumeric(char c) {
  197. return stringContains(NUMERIC_CHARS, c);
  198. }
  199. list<string> strSplit(Arena *arena, string splitStr, string inputStr) {
  200. list<string> result = {0};
  201. if (inputStr.length > 0) {
  202. size_t splitCount = 0;
  203. size_t c = 0;
  204. size_t start = 0;
  205. void *beginning = (char *)arena->memory + arena->head;
  206. while (c < inputStr.length - splitStr.length) {
  207. if (strEql(strSlice(inputStr, c, c + splitStr.length), splitStr)) {
  208. string *splitString = PushStruct(arena, string);
  209. splitString->str = inputStr.str + start;
  210. splitString->length = c - start;
  211. splitCount++;
  212. start = c + 1;
  213. }
  214. c++;
  215. }
  216. string *splitString = PushStruct(arena, string);
  217. splitString->str = inputStr.str + start;
  218. splitString->length = inputStr.length - start;
  219. splitCount++;
  220. result.data = (string *)beginning,
  221. result.head = splitCount,
  222. result.length = splitCount;
  223. }
  224. return result;
  225. }
  226. int8 parsePositiveInt(string str, size_t *lengthPointer) {
  227. size_t numEnd = 0;
  228. char currChar = str.str[numEnd];
  229. while (numEnd < str.length && isNumeric(currChar)) {
  230. currChar = str.str[++numEnd];
  231. *lengthPointer += 1;
  232. }
  233. *lengthPointer -= 1;
  234. if (numEnd > 0) {
  235. uint8 result = 0;
  236. for (size_t i = 0; i < numEnd; i++) {
  237. result *= 10;
  238. result += str.str[i] - '0';
  239. }
  240. return result;
  241. } else {
  242. return -1;
  243. }
  244. }
  245. real32 parsePositiveReal32(string str, size_t *lengthPointer) {
  246. real32 result = NAN;
  247. string wholePartStr = string{0};
  248. string fractionalPartStr = string{0};
  249. bool split = false;
  250. size_t c = 0;
  251. while (c < str.length) {
  252. if (str.str[c] == '.') {
  253. wholePartStr.str = str.str;
  254. wholePartStr.length = c;
  255. fractionalPartStr.str = str.str + c + 1;
  256. fractionalPartStr.length = str.length - c - 1;
  257. split = true;
  258. break;
  259. }
  260. c++;
  261. }
  262. if (split) {
  263. int wholePart = parsePositiveInt(wholePartStr, lengthPointer);
  264. *lengthPointer += 1;
  265. int fractionalPart = parsePositiveInt(fractionalPartStr, lengthPointer);
  266. if (wholePart >= 0 && fractionalPart >= 0) {
  267. // TODO(dledda): implement powf with intrinsics? or just custom
  268. real32 fractionalPartMultiplier = 1.0f / powf(10.0f, (real32)fractionalPartStr.length);
  269. result = (real32)wholePart + (real32)fractionalPart * (real32)fractionalPartMultiplier;
  270. }
  271. } else if (c > 0) {
  272. result = (real32)parsePositiveInt(str, lengthPointer);
  273. }
  274. return result;
  275. }
  276. string readEntireFile(Arena *arena, string filename) {
  277. #if OS_WINDOWS
  278. string result = {0};
  279. HANDLE fileHandle = CreateFileA(cstring(arena, filename), GENERIC_READ, FILE_SHARE_READ, NULL, OPEN_EXISTING, NULL, NULL);
  280. if (fileHandle != INVALID_HANDLE_VALUE) {
  281. LARGE_INTEGER fileSize;
  282. if (GetFileSizeEx(fileHandle, &fileSize)) {
  283. string readfile = PushString(arena, (size_t)fileSize.QuadPart);
  284. if (readfile.str) {
  285. DWORD bytesRead;
  286. if (ReadFile(fileHandle, readfile.str, (DWORD)fileSize.QuadPart, &bytesRead, NULL) && (fileSize.QuadPart == bytesRead)) {
  287. result = readfile;
  288. }
  289. }
  290. }
  291. CloseHandle(fileHandle);
  292. }
  293. return result;
  294. #elif OS_LINUX
  295. FILE *input = fopen((char *)filename.str, "r");
  296. struct stat st;
  297. stat((char *)filename.str, &st);
  298. size_t fsize = st.st_size;
  299. string readBuffer = PushString(arena, fsize);
  300. fread(readBuffer.str, sizeof(byte), readBuffer.length, input);
  301. fclose(input);
  302. return readBuffer;
  303. #endif
  304. }
  305. bool writeEntireFile(Arena *arena, string filename, const byte *contents, size_t contentsLength) {
  306. bool result = false;
  307. #if OS_WINDOWS
  308. HANDLE fileHandle = CreateFileA(cstring(arena, filename), GENERIC_WRITE, FILE_SHARE_READ, NULL, CREATE_ALWAYS, NULL, NULL);
  309. if (fileHandle != INVALID_HANDLE_VALUE) {
  310. DWORD bytesWritten;
  311. if (WriteFile(fileHandle, contents, (DWORD)contentsLength, &bytesWritten, NULL)) {
  312. // file written successfully
  313. result = bytesWritten == contentsLength;
  314. }
  315. CloseHandle(fileHandle);
  316. }
  317. #elif OS_LINUX
  318. Assert(false);
  319. #endif
  320. return result;
  321. }
  322. bool fileAppend(Arena *arena, string filename, const byte *contents, size_t contentsLength) {
  323. bool result = false;
  324. #if OS_WINDOWS
  325. HANDLE fileHandle = CreateFileA(cstring(arena, filename), FILE_APPEND_DATA | FILE_GENERIC_READ, FILE_SHARE_READ, NULL, OPEN_ALWAYS, FILE_ATTRIBUTE_NORMAL, NULL);
  326. if (fileHandle != INVALID_HANDLE_VALUE) {
  327. DWORD bytesWritten;
  328. DWORD position = SetFilePointer(fileHandle, 0, NULL, FILE_END);
  329. if (WriteFile(fileHandle, contents, (DWORD)contentsLength, &bytesWritten, NULL)) {
  330. // file written successfully
  331. result = bytesWritten == contentsLength;
  332. }
  333. CloseHandle(fileHandle);
  334. }
  335. #elif OS_LINUX
  336. Assert(false);
  337. #endif
  338. return result;
  339. }
  340. list<string> getArgs(Arena *arena, int argc, char **argv) {
  341. list<string> args = PushList(arena, string, (size_t)argc);
  342. for (int i = 1; i < argc; i++) {
  343. appendList(&args, strFromCString(arena, argv[i]));
  344. }
  345. return args;
  346. }
  347. UnixTimestamp getSystemUnixTime() {
  348. time_t now;
  349. time(&now);
  350. return (UnixTimestamp)now;
  351. }
  352. Timestamp timestampFromUnixTime(UnixTimestamp *unixTimestamp) {
  353. tm *timestamp = gmtime((time_t *)&time);
  354. return *timestamp;
  355. }
  356. string formatTimeHms(Arena *arena, UnixTimestamp time) {
  357. local_persist const string format = "HH-MM-SS"_s;
  358. string buf = PushString(arena, format.length);
  359. tm *timestamp = gmtime((time_t *)&time);
  360. strftime(buf.str, buf.length + 1, "%T", timestamp);
  361. return buf;
  362. }
  363. string formatTimeHms(Arena *arena, Timestamp *time) {
  364. local_persist const string format = "HH-MM-SS"_s;
  365. string buf = PushString(arena, format.length);
  366. strftime(buf.str, buf.length + 1, "%T", (tm *)time);
  367. return buf;
  368. }
  369. string formatTimeYmd(Arena *arena, UnixTimestamp time) {
  370. local_persist const string format = "YYYY-mm-dd"_s;
  371. string buf = PushString(arena, format.length);
  372. tm *timestamp = gmtime((time_t *)&time);
  373. strftime(buf.str, buf.length + 1, "%Y-%m-%d", timestamp);
  374. return buf;
  375. }
  376. string formatTimeYmd(Arena *arena, Timestamp *time) {
  377. local_persist const string format = "YYYY-mm-dd"_s;
  378. string buf = PushString(arena, format.length);
  379. strftime(buf.str, buf.length + 1, "%Y-%m-%d", (tm *)time);
  380. return buf;
  381. }
  382. function void __core_log(LogTarget target, const char *fmt, va_list argList) {
  383. Scratch scratch = scratchStart(0, 0);
  384. string result = strPrintfv(scratch.arena, fmt, argList);
  385. #if OS_WINDOWS
  386. DWORD done;
  387. HANDLE stdHandle;
  388. switch (target) {
  389. case LogTarget_stdin:
  390. stdHandle = GetStdHandle(STD_INPUT_HANDLE);
  391. break;
  392. case LogTarget_stdout:
  393. stdHandle = GetStdHandle(STD_ERROR_HANDLE);
  394. break;
  395. case LogTarget_stderr:
  396. stdHandle = GetStdHandle(STD_OUTPUT_HANDLE);
  397. break;
  398. default:
  399. stdHandle = GetStdHandle(STD_OUTPUT_HANDLE);
  400. break;
  401. }
  402. WriteFile(stdHandle, result.str, (DWORD)result.length, &done, 0);
  403. #elif OS_LINUX
  404. // TODO(djledda): finish implementation without cstdlib
  405. switch (target) {
  406. case LogTarget_stdin:
  407. write(0, (const void *)result.str, result.length);
  408. break;
  409. case LogTarget_stderr:
  410. fflush(stderr);
  411. write(2, (const void *)result.str, result.length);
  412. break;
  413. case LogTarget_stdout:
  414. default:
  415. fflush(stdout);
  416. write(1, (const void *)result.str, result.length);
  417. break;
  418. }
  419. #endif
  420. scratchEnd(scratch);
  421. }
  422. void logErr(const char *fmt, ...) {
  423. va_list argList;
  424. va_start(argList, fmt);
  425. __core_log(LogTarget_stdout, fmt, argList);
  426. va_end(argList);
  427. }
  428. function void logStdout(const char *fmt, ...) {
  429. va_list argList;
  430. va_start(argList, fmt);
  431. __core_log(LogTarget_stdout, fmt, argList);
  432. va_end(argList);
  433. }
  434. void log(const char *fmt, ...) {
  435. va_list argList;
  436. va_start(argList, fmt);
  437. __core_log(LogTarget_stdout, fmt, argList);
  438. va_end(argList);
  439. }
  440. void log(list<int> l, LogTarget target) {
  441. void (*logFn)(const char *fmt, ...) = target == LogTarget_stdout ? &logStdout : &logErr;
  442. logFn("{ ");
  443. for (size_t i = 0; i < l.length; i++) {
  444. if (i != 0) {
  445. logFn(", ");
  446. }
  447. logFn("%i", l.data[i]);
  448. }
  449. logFn(" } length: %zu, head: %zu\n", l.length, l.head);
  450. }
  451. void log(list<string> l, LogTarget target) {
  452. void (*logFn)(const char *fmt, ...) = target == LogTarget_stdout ? &logStdout : &logErr;
  453. logFn("{ ");
  454. for (size_t i = 0; i < l.length; i++) {
  455. if (i != 0) {
  456. logFn(", ");
  457. }
  458. logFn("\"%S\"", l.data[i]);
  459. }
  460. logFn(" } length: %zu, head: %zu\n", l.length, l.head);
  461. }
  462. int intCompare(const void *a, const void *b) {
  463. int *x = (int *)a;
  464. int *y = (int *)b;
  465. return (*x > *y) - (*x < *y);
  466. }