tinyrl.c 16 KB

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  1. /*
  2. * tinyrl.c
  3. */
  4. #include <assert.h>
  5. #include <stdio.h>
  6. #include <stdlib.h>
  7. #include <string.h>
  8. #include <ctype.h>
  9. #include <errno.h>
  10. #include <unistd.h>
  11. #include <faux/faux.h>
  12. #include <faux/str.h>
  13. #include "private.h"
  14. #define LINE_CHUNK 80
  15. tinyrl_t *tinyrl_new(FILE *istream, FILE *ostream,
  16. const char *hist_fname, size_t hist_stifle)
  17. {
  18. tinyrl_t *tinyrl = NULL;
  19. int i = 0;
  20. tinyrl = faux_zmalloc(sizeof(tinyrl_t));
  21. if (!tinyrl)
  22. return NULL;
  23. // Line
  24. faux_bzero(&tinyrl->line, sizeof(tinyrl->line));
  25. tinyrl_line_extend(tinyrl, LINE_CHUNK);
  26. // Last line
  27. tinyrl_reset_line_state(tinyrl);
  28. // Input processing vars
  29. tinyrl->utf8_cont = 0;
  30. tinyrl->esc_cont = BOOL_FALSE;
  31. tinyrl->esc_seq[0] = '\0';
  32. tinyrl->esc_p = tinyrl->esc_seq;
  33. // Prompt
  34. tinyrl_set_prompt(tinyrl, "> ");
  35. // Key handlers
  36. for (i = 0; i < NUM_HANDLERS; i++) {
  37. tinyrl->handlers[i] = tinyrl_key_default;
  38. }
  39. tinyrl->handlers[KEY_CR] = tinyrl_key_crlf;
  40. tinyrl->handlers[KEY_LF] = tinyrl_key_crlf;
  41. tinyrl->handlers[KEY_ETX] = tinyrl_key_interrupt;
  42. tinyrl->handlers[KEY_DEL] = tinyrl_key_backspace;
  43. tinyrl->handlers[KEY_BS] = tinyrl_key_backspace;
  44. tinyrl->handlers[KEY_EOT] = tinyrl_key_delete;
  45. tinyrl->handlers[KEY_FF] = tinyrl_key_clear_screen;
  46. tinyrl->handlers[KEY_NAK] = tinyrl_key_erase_line;
  47. tinyrl->handlers[KEY_SOH] = tinyrl_key_start_of_line;
  48. tinyrl->handlers[KEY_ENQ] = tinyrl_key_end_of_line;
  49. tinyrl->handlers[KEY_VT] = tinyrl_key_kill;
  50. tinyrl->handlers[KEY_EM] = tinyrl_key_yank;
  51. tinyrl->handlers[KEY_HT] = tinyrl_key_tab;
  52. tinyrl->handlers[KEY_ETB] = tinyrl_key_backword;
  53. tinyrl->hotkey_fn = NULL;
  54. tinyrl->utf8 = BOOL_TRUE;
  55. tinyrl->busy = BOOL_FALSE;
  56. // VT100 terminal
  57. tinyrl->term = vt100_new(istream, ostream);
  58. // To save terminal settings
  59. tinyrl_set_istream(tinyrl, istream);
  60. tinyrl->width = vt100_width(tinyrl->term);
  61. // History object
  62. tinyrl->hist = hist_new(hist_fname, hist_stifle);
  63. tinyrl_hist_restore(tinyrl);
  64. tty_raw_mode(tinyrl);
  65. return tinyrl;
  66. }
  67. void tinyrl_free(tinyrl_t *tinyrl)
  68. {
  69. assert(tinyrl);
  70. if (!tinyrl)
  71. return;
  72. tty_restore_mode(tinyrl);
  73. tinyrl_hist_save(tinyrl);
  74. hist_free(tinyrl->hist);
  75. vt100_free(tinyrl->term);
  76. faux_str_free(tinyrl->prompt);
  77. tinyrl_reset_line_state(tinyrl); // It's really reset 'last' string
  78. faux_str_free(tinyrl->line.str);
  79. faux_free(tinyrl);
  80. }
  81. void tty_raw_mode(tinyrl_t *tinyrl)
  82. {
  83. struct termios new_termios = {};
  84. FILE *istream = NULL;
  85. int fd = -1;
  86. if (!tinyrl)
  87. return;
  88. istream = vt100_istream(tinyrl->term);
  89. if (!istream)
  90. return;
  91. fd = fileno(istream);
  92. if (tcgetattr(fd, &new_termios) < 0)
  93. return;
  94. new_termios.c_iflag = 0;
  95. new_termios.c_oflag = OPOST | ONLCR;
  96. // new_termios.c_oflag = ONLCR;
  97. new_termios.c_lflag = 0;
  98. // new_termios.c_cflag = CS8 | CREAD;
  99. // new_termios.c_iflag = IGNPAR | IUTF8;
  100. // new_termios.c_oflag = OPOST | ONLCR | NL0 | CR0 | TAB0 | BS0 | VT0 | FF0;
  101. // new_termios.c_lflag = ECHOCTL | ECHOKE;
  102. new_termios.c_cc[VMIN] = 1;
  103. new_termios.c_cc[VTIME] = 0;
  104. // cfsetospeed(&new_termios, B38400);
  105. // Mode switch
  106. tcsetattr(fd, TCSADRAIN, &new_termios);
  107. }
  108. void tty_restore_mode(tinyrl_t *tinyrl)
  109. {
  110. FILE *istream = NULL;
  111. int fd = -1;
  112. istream = vt100_istream(tinyrl->term);
  113. if (!istream)
  114. return;
  115. fd = fileno(istream);
  116. // Do the mode switch
  117. tcsetattr(fd, TCSADRAIN, &tinyrl->default_termios);
  118. }
  119. bool_t tinyrl_bind_key(tinyrl_t *tinyrl, int key, tinyrl_key_func_t *fn)
  120. {
  121. assert(tinyrl);
  122. if (!tinyrl)
  123. return BOOL_FALSE;
  124. if ((key < 0) || (key > 255))
  125. return BOOL_FALSE;
  126. tinyrl->handlers[key] = fn;
  127. return BOOL_TRUE;
  128. }
  129. void tinyrl_set_hotkey_fn(tinyrl_t *tinyrl, tinyrl_key_func_t *fn)
  130. {
  131. tinyrl->hotkey_fn = fn;
  132. }
  133. void tinyrl_set_istream(tinyrl_t *tinyrl, FILE *istream)
  134. {
  135. assert(tinyrl);
  136. if (!tinyrl)
  137. return;
  138. vt100_set_istream(tinyrl->term, istream);
  139. // Save terminal settings to restore on exit
  140. if (istream)
  141. tcgetattr(fileno(istream), &tinyrl->default_termios);
  142. }
  143. FILE *tinyrl_istream(const tinyrl_t *tinyrl)
  144. {
  145. return vt100_istream(tinyrl->term);
  146. }
  147. void tinyrl_set_ostream(tinyrl_t *tinyrl, FILE *ostream)
  148. {
  149. assert(tinyrl);
  150. if (!tinyrl)
  151. return;
  152. vt100_set_ostream(tinyrl->term, ostream);
  153. }
  154. FILE *tinyrl_ostream(const tinyrl_t *tinyrl)
  155. {
  156. return vt100_ostream(tinyrl->term);
  157. }
  158. bool_t tinyrl_utf8(const tinyrl_t *tinyrl)
  159. {
  160. assert(tinyrl);
  161. if (!tinyrl)
  162. return BOOL_TRUE;
  163. return tinyrl->utf8;
  164. }
  165. void tinyrl_set_utf8(tinyrl_t *tinyrl, bool_t utf8)
  166. {
  167. assert(tinyrl);
  168. if (!tinyrl)
  169. return;
  170. tinyrl->utf8 = utf8;
  171. }
  172. bool_t tinyrl_busy(const tinyrl_t *tinyrl)
  173. {
  174. assert(tinyrl);
  175. if (!tinyrl)
  176. return BOOL_FALSE;
  177. return tinyrl->busy;
  178. }
  179. void tinyrl_set_busy(tinyrl_t *tinyrl, bool_t busy)
  180. {
  181. assert(tinyrl);
  182. if (!tinyrl)
  183. return;
  184. tinyrl->busy = busy;
  185. }
  186. const char *tinyrl_prompt(const tinyrl_t *tinyrl)
  187. {
  188. assert(tinyrl);
  189. if (!tinyrl)
  190. return NULL;
  191. return tinyrl->prompt;
  192. }
  193. void tinyrl_set_prompt(tinyrl_t *tinyrl, const char *prompt)
  194. {
  195. const char *last_cr = NULL;
  196. assert(tinyrl);
  197. if (!tinyrl)
  198. return;
  199. if (tinyrl->prompt)
  200. faux_str_free(tinyrl->prompt);
  201. tinyrl->prompt = faux_str_dup(prompt);
  202. tinyrl->prompt_len = strlen(tinyrl->prompt);
  203. // Prompt can contain '\n' characters so let prompt_chars count symbols
  204. // of last line only.
  205. last_cr = strrchr(tinyrl->prompt, '\n');
  206. if (!last_cr)
  207. last_cr = tinyrl->prompt;
  208. else
  209. last_cr++; // Skip '\n' itself
  210. tinyrl->prompt_chars = utf8_nsyms(last_cr, tinyrl->prompt_len);
  211. }
  212. void *tinyrl_udata(const tinyrl_t *tinyrl)
  213. {
  214. assert(tinyrl);
  215. if (!tinyrl)
  216. return NULL;
  217. return tinyrl->udata;
  218. }
  219. void tinyrl_set_udata(tinyrl_t *tinyrl, void *udata)
  220. {
  221. assert(tinyrl);
  222. if (!tinyrl)
  223. return;
  224. tinyrl->udata = udata;
  225. }
  226. const char *tinyrl_line(const tinyrl_t *tinyrl)
  227. {
  228. assert(tinyrl);
  229. if (!tinyrl)
  230. return NULL;
  231. return tinyrl->line.str;
  232. }
  233. char *tinyrl_line_to_pos(const tinyrl_t *tinyrl)
  234. {
  235. assert(tinyrl);
  236. if (!tinyrl)
  237. return NULL;
  238. return faux_str_dupn(tinyrl->line.str, tinyrl->line.pos);
  239. }
  240. bool_t tinyrl_hist_save(const tinyrl_t *tinyrl)
  241. {
  242. assert(tinyrl);
  243. if (!tinyrl)
  244. return BOOL_FALSE;
  245. return hist_save(tinyrl->hist);
  246. }
  247. bool_t tinyrl_hist_restore(tinyrl_t *tinyrl)
  248. {
  249. assert(tinyrl);
  250. if (!tinyrl)
  251. return BOOL_FALSE;
  252. return hist_restore(tinyrl->hist);
  253. }
  254. static bool_t process_char(tinyrl_t *tinyrl, char key)
  255. {
  256. // Begin of ESC sequence
  257. if (!tinyrl->esc_cont && (KEY_ESC == key)) {
  258. tinyrl->esc_cont = BOOL_TRUE; // Start ESC sequence
  259. tinyrl->esc_p = tinyrl->esc_seq;
  260. // Note: Don't put ESC symbol itself to buffer
  261. return BOOL_TRUE;
  262. }
  263. // Continue ESC sequence
  264. if (tinyrl->esc_cont) {
  265. // Broken sequence. Too long
  266. if ((tinyrl->esc_p - tinyrl->esc_seq) >= (long int)(sizeof(tinyrl->esc_seq) - 1)) {
  267. tinyrl->esc_cont = BOOL_FALSE;
  268. return BOOL_FALSE;
  269. }
  270. // Save the curren char to sequence buffer
  271. *tinyrl->esc_p = key;
  272. tinyrl->esc_p++;
  273. // ANSI standard control sequences will end
  274. // with a character between 64 - 126
  275. if ((key != '[') && (key > 63)) {
  276. *tinyrl->esc_p = '\0';
  277. tinyrl_esc_seq(tinyrl, tinyrl->esc_seq);
  278. tinyrl->esc_cont = BOOL_FALSE;
  279. //tinyrl_redisplay(tinyrl);
  280. }
  281. return BOOL_TRUE;
  282. }
  283. // Call the handler for key
  284. // Handler (that has no special meaning) will put new char to line buffer
  285. if (!tinyrl->handlers[(unsigned char)key](tinyrl, key))
  286. vt100_ding(tinyrl->term);
  287. // if (tinyrl->done) // Some handler set the done flag
  288. // continue; // It will break the loop
  289. if (tinyrl->utf8) {
  290. // ASCII char (one byte)
  291. if (!(UTF8_7BIT_MASK & key)) {
  292. tinyrl->utf8_cont = 0;
  293. // First byte of multibyte symbol
  294. } else if (UTF8_11 == (key & UTF8_MASK)) {
  295. // Find out number of symbol's bytes
  296. unsigned int b = (unsigned int)key;
  297. tinyrl->utf8_cont = 0;
  298. while ((tinyrl->utf8_cont < 6) && (UTF8_10 != (b & UTF8_MASK))) {
  299. tinyrl->utf8_cont++;
  300. b = b << 1;
  301. }
  302. // Continue of multibyte symbol
  303. } else if ((tinyrl->utf8_cont > 0) && (UTF8_10 == (key & UTF8_MASK))) {
  304. tinyrl->utf8_cont--;
  305. }
  306. }
  307. // For non UTF-8 encoding the utf8_cont is always 0.
  308. // For UTF-8 it's 0 when one-byte symbol or we get
  309. // all bytes for the current multibyte character
  310. // if (!tinyrl->utf8_cont) {
  311. // //tinyrl_redisplay(tinyrl);
  312. // printf("%s\n", tinyrl->line.str);
  313. // }
  314. return BOOL_TRUE;
  315. }
  316. int tinyrl_read(tinyrl_t *tinyrl)
  317. {
  318. int rc = 0;
  319. unsigned char key = 0;
  320. int count = 0;
  321. assert(tinyrl);
  322. while (!tinyrl_busy(tinyrl) &&
  323. ((rc = vt100_getchar(tinyrl->term, &key)) > 0)) {
  324. count++;
  325. process_char(tinyrl, key);
  326. // Some commands can't be processed immediately by handlers and
  327. // need some network exchange for example. In this case we will
  328. // not execute redisplay() here.
  329. if (!tinyrl->utf8_cont && !tinyrl_busy(tinyrl))
  330. tinyrl_redisplay(tinyrl);
  331. }
  332. if ((rc < 0) && (EAGAIN == errno))
  333. return count;
  334. return rc;
  335. }
  336. /*
  337. * Ensure that buffer has enough space to hold len characters,
  338. * possibly reallocating it if necessary. The function returns BOOL_TRUE
  339. * if the line is successfully extended, BOOL_FALSE if not.
  340. */
  341. bool_t tinyrl_line_extend(tinyrl_t *tinyrl, size_t len)
  342. {
  343. char *new_buf = NULL;
  344. size_t new_size = 0;
  345. size_t chunk_num = 0;
  346. if (tinyrl->line.len >= len)
  347. return BOOL_TRUE;
  348. chunk_num = len / LINE_CHUNK;
  349. if ((len % LINE_CHUNK) > 0)
  350. chunk_num++;
  351. new_size = chunk_num * LINE_CHUNK;
  352. // First initialization
  353. if (tinyrl->line.str == NULL) {
  354. tinyrl->line.str = faux_zmalloc(new_size);
  355. if (!tinyrl->line.str)
  356. return BOOL_FALSE;
  357. tinyrl->line.size = new_size;
  358. return BOOL_TRUE;
  359. }
  360. new_buf = realloc(tinyrl->line.str, new_size);
  361. if (!new_buf)
  362. return BOOL_FALSE;
  363. tinyrl->line.str = new_buf;
  364. tinyrl->line.size = new_size;
  365. return BOOL_TRUE;
  366. }
  367. bool_t tinyrl_esc_seq(tinyrl_t *tinyrl, const char *esc_seq)
  368. {
  369. bool_t result = BOOL_FALSE;
  370. switch (vt100_esc_decode(esc_seq)) {
  371. case VT100_CURSOR_UP:
  372. result = tinyrl_key_up(tinyrl, 0);
  373. break;
  374. case VT100_CURSOR_DOWN:
  375. result = tinyrl_key_down(tinyrl, 0);
  376. break;
  377. case VT100_CURSOR_LEFT:
  378. result = tinyrl_key_left(tinyrl, 0);
  379. break;
  380. case VT100_CURSOR_RIGHT:
  381. result = tinyrl_key_right(tinyrl, 0);
  382. break;
  383. case VT100_HOME:
  384. result = tinyrl_key_start_of_line(tinyrl, 0);
  385. break;
  386. case VT100_END:
  387. result = tinyrl_key_end_of_line(tinyrl, 0);
  388. break;
  389. case VT100_DELETE:
  390. result = tinyrl_key_delete(tinyrl, 0);
  391. break;
  392. case VT100_INSERT:
  393. case VT100_PGDOWN:
  394. case VT100_PGUP:
  395. case VT100_UNKNOWN:
  396. break;
  397. }
  398. return result;
  399. }
  400. bool_t tinyrl_line_insert(tinyrl_t *tinyrl, const char *text, size_t len)
  401. {
  402. size_t new_size = tinyrl->line.len + len + 1;
  403. if (len == 0)
  404. return BOOL_TRUE;
  405. tinyrl_line_extend(tinyrl, new_size);
  406. if (tinyrl->line.pos < tinyrl->line.len) {
  407. memmove(tinyrl->line.str + tinyrl->line.pos + len,
  408. tinyrl->line.str + tinyrl->line.pos,
  409. tinyrl->line.len - tinyrl->line.pos);
  410. }
  411. memcpy(tinyrl->line.str + tinyrl->line.pos, text, len);
  412. tinyrl->line.pos += len;
  413. tinyrl->line.len += len;
  414. tinyrl->line.str[tinyrl->line.len] = '\0';
  415. return BOOL_TRUE;
  416. }
  417. bool_t tinyrl_line_delete(tinyrl_t *tinyrl, size_t start, size_t len)
  418. {
  419. if (start >= tinyrl->line.len)
  420. return BOOL_TRUE;
  421. if ((start + len) >= tinyrl->line.len) {
  422. tinyrl->line.len = start;
  423. } else {
  424. memmove(tinyrl->line.str + start,
  425. tinyrl->line.str + start + len,
  426. tinyrl->line.len - (start + len));
  427. tinyrl->line.len -= len;
  428. }
  429. tinyrl->line.pos = start;
  430. tinyrl->line.str[tinyrl->line.len] = '\0';
  431. return BOOL_TRUE;
  432. }
  433. bool_t tinyrl_line_replace(tinyrl_t *tinyrl, const char *text)
  434. {
  435. size_t len = 0;
  436. if (faux_str_is_empty(text)) {
  437. tinyrl_reset_line(tinyrl);
  438. return BOOL_TRUE;
  439. }
  440. len = strlen(text);
  441. tinyrl_line_extend(tinyrl, len + 1);
  442. memcpy(tinyrl->line.str, text, len);
  443. tinyrl->line.pos = len;
  444. tinyrl->line.len = len;
  445. tinyrl->line.str[tinyrl->line.len] = '\0';
  446. return BOOL_TRUE;
  447. }
  448. static void move_cursor(const tinyrl_t *tinyrl, size_t cur_pos, size_t target_pos)
  449. {
  450. int rows = 0;
  451. int cols = 0;
  452. // Note: The '/' is not real math division. It's integer part of division
  453. // so we need separate division for two values.
  454. rows = (target_pos / tinyrl->width) - (cur_pos / tinyrl->width);
  455. cols = (target_pos % tinyrl->width) - (cur_pos % tinyrl->width);
  456. if (cols > 0)
  457. vt100_cursor_forward(tinyrl->term, cols);
  458. else if (cols < 0)
  459. vt100_cursor_back(tinyrl->term, -cols);
  460. if (rows > 0)
  461. vt100_cursor_down(tinyrl->term, rows);
  462. else if (rows < 0)
  463. vt100_cursor_up(tinyrl->term, -rows);
  464. }
  465. size_t tinyrl_equal_part(const tinyrl_t *tinyrl,
  466. const char *s1, const char *s2)
  467. {
  468. const char *str1 = s1;
  469. const char *str2 = s2;
  470. if (!str1 || !str2)
  471. return 0;
  472. while (*str1 && *str2) {
  473. if (*str1 != *str2)
  474. break;
  475. str1++;
  476. str2++;
  477. }
  478. if (!tinyrl->utf8)
  479. return str1 - s1;
  480. // UTF8
  481. // If UTF8_10 byte (intermediate byte of UTF-8 sequence) is not equal
  482. // then we need to find starting of this UTF-8 character because whole
  483. // UTF-8 character is not equal.
  484. if (UTF8_10 == (*str1 & UTF8_MASK)) {
  485. // Skip intermediate bytes
  486. while ((str1 > s1) && (UTF8_10 == (*str1 & UTF8_MASK)))
  487. str1--;
  488. }
  489. return str1 - s1;
  490. }
  491. void tinyrl_save_last(tinyrl_t *tinyrl)
  492. {
  493. faux_str_free(tinyrl->last.str);
  494. tinyrl->last = tinyrl->line;
  495. tinyrl->last.str = faux_str_dup(tinyrl->line.str);
  496. }
  497. void tinyrl_reset_line_state(tinyrl_t *tinyrl)
  498. {
  499. faux_str_free(tinyrl->last.str);
  500. faux_bzero(&tinyrl->last, sizeof(tinyrl->last));
  501. }
  502. void tinyrl_reset_line(tinyrl_t *tinyrl)
  503. {
  504. tinyrl_line_delete(tinyrl, 0, tinyrl->line.len);
  505. }
  506. void tinyrl_redisplay(tinyrl_t *tinyrl)
  507. {
  508. size_t width = vt100_width(tinyrl->term);
  509. // unsigned int line_size = strlen(tinyrl->line);
  510. unsigned int line_chars = utf8_nsyms(tinyrl->line.str, tinyrl->line.len);
  511. size_t cols = 0;
  512. size_t eq_bytes = 0;
  513. // Prepare print position
  514. if (tinyrl->last.str && (width == tinyrl->width)) {
  515. size_t eq_chars = 0; // Printable symbols
  516. size_t last_pos_chars = 0;
  517. // If line and last line have the equal chars at begining
  518. eq_bytes = tinyrl_equal_part(tinyrl, tinyrl->line.str, tinyrl->last.str);
  519. eq_chars = utf8_nsyms(tinyrl->last.str, eq_bytes);
  520. last_pos_chars = utf8_nsyms(tinyrl->last.str, tinyrl->last.pos);
  521. move_cursor(tinyrl, tinyrl->prompt_chars + last_pos_chars,
  522. tinyrl->prompt_chars + eq_chars);
  523. } else {
  524. // Prepare to resize
  525. if (width != tinyrl->width) {
  526. vt100_next_line(tinyrl->term);
  527. vt100_erase_down(tinyrl->term);
  528. }
  529. vt100_printf(tinyrl->term, "%s", tinyrl->prompt);
  530. }
  531. // Print current line
  532. vt100_printf(tinyrl->term, "%s", tinyrl->line.str + eq_bytes);
  533. cols = (tinyrl->prompt_chars + line_chars) % width;
  534. if ((cols == 0) && (tinyrl->line.len - eq_bytes))
  535. vt100_next_line(tinyrl->term);
  536. // Erase down if current line is shorter than previous one
  537. if (tinyrl->last.len > tinyrl->line.len)
  538. vt100_erase_down(tinyrl->term);
  539. // Move the cursor to the insertion point
  540. if (tinyrl->line.pos < tinyrl->line.len) {
  541. size_t pos_chars = utf8_nsyms(tinyrl->line.str, tinyrl->line.pos);
  542. move_cursor(tinyrl, tinyrl->prompt_chars + line_chars,
  543. tinyrl->prompt_chars + pos_chars);
  544. }
  545. // Update the display
  546. vt100_oflush(tinyrl->term);
  547. // Save the last line buffer
  548. tinyrl_save_last(tinyrl);
  549. tinyrl->width = width;
  550. }
  551. void tinyrl_crlf(const tinyrl_t *tinyrl)
  552. {
  553. vt100_printf(tinyrl->term, "\n");
  554. }
  555. // Jump to first free line after current multiline input
  556. void tinyrl_multi_crlf(const tinyrl_t *tinyrl)
  557. {
  558. size_t full_chars = utf8_nsyms(tinyrl->last.str, tinyrl->last.len);
  559. size_t pos_chars = utf8_nsyms(tinyrl->last.str, tinyrl->last.pos);
  560. move_cursor(tinyrl, tinyrl->prompt_chars + pos_chars,
  561. tinyrl->prompt_chars + full_chars);
  562. tinyrl_crlf(tinyrl);
  563. vt100_oflush(tinyrl->term);
  564. }
  565. void tinyrl_line_to_hist(tinyrl_t *tinyrl)
  566. {
  567. if (tinyrl->line.len == 0)
  568. return;
  569. hist_add(tinyrl->hist, tinyrl->line.str, BOOL_FALSE);
  570. }
  571. void tinyrl_reset_hist_pos(tinyrl_t *tinyrl)
  572. {
  573. hist_pos_reset(tinyrl->hist);
  574. }
  575. void tinyrl_winsize(const tinyrl_t *tinyrl, size_t *width, size_t *height)
  576. {
  577. vt100_t *term = NULL;
  578. if (tinyrl)
  579. term = tinyrl->term;
  580. vt100_winsize(term, width, height);
  581. }
  582. size_t tinyrl_width(const tinyrl_t *tinyrl)
  583. {
  584. vt100_t *term = NULL;
  585. if (tinyrl)
  586. term = tinyrl->term;
  587. return vt100_width(term);
  588. }
  589. size_t tinyrl_height(const tinyrl_t *tinyrl)
  590. {
  591. vt100_t *term = NULL;
  592. if (tinyrl)
  593. term = tinyrl->term;
  594. return vt100_height(term);
  595. }
  596. // Because terminal is in raw mode and standard libc printf() can don't flush()
  597. int tinyrl_printf(const tinyrl_t *tinyrl, const char *fmt, ...)
  598. {
  599. va_list args;
  600. int len = 0;
  601. va_start(args, fmt);
  602. len = vt100_vprintf(tinyrl->term, fmt, args);
  603. va_end(args);
  604. return len;
  605. }