1 /* vi:set ts=8 sts=4 sw=4 noet: 2 * 3 * VIM - Vi IMproved by Bram Moolenaar 4 * 5 * Do ":help uganda" in Vim to read copying and usage conditions. 6 * Do ":help credits" in Vim to see a list of people who contributed. 7 * See README.txt for an overview of the Vim source code. 8 */ 9 10 /* 11 * time.c: functions related to time and timers 12 */ 13 14 #include "vim.h" 15 16 /* 17 * Cache of the current timezone name as retrieved from TZ, or an empty string 18 * where unset, up to 64 octets long including trailing null byte. 19 */ 20 #if defined(HAVE_LOCALTIME_R) && defined(HAVE_TZSET) 21 static char tz_cache[64]; 22 #endif 23 24 #define FOR_ALL_TIMERS(t) \ 25 for ((t) = first_timer; (t) != NULL; (t) = (t)->tr_next) 26 27 /* 28 * Call either localtime(3) or localtime_r(3) from POSIX libc time.h, with the 29 * latter version preferred for reentrancy. 30 * 31 * If we use localtime_r(3) and we have tzset(3) available, check to see if the 32 * environment variable TZ has changed since the last run, and call tzset(3) to 33 * update the global timezone variables if it has. This is because the POSIX 34 * standard doesn't require localtime_r(3) implementations to do that as it 35 * does with localtime(3), and we don't want to call tzset(3) every time. 36 */ 37 static struct tm * 38 vim_localtime( 39 const time_t *timep, // timestamp for local representation 40 struct tm *result UNUSED) // pointer to caller return buffer 41 { 42 #ifdef HAVE_LOCALTIME_R 43 # ifdef HAVE_TZSET 44 char *tz; // pointer for TZ environment var 45 46 tz = (char *)mch_getenv((char_u *)"TZ"); 47 if (tz == NULL) 48 tz = ""; 49 if (STRNCMP(tz_cache, tz, sizeof(tz_cache) - 1) != 0) 50 { 51 tzset(); 52 vim_strncpy((char_u *)tz_cache, (char_u *)tz, sizeof(tz_cache) - 1); 53 } 54 # endif // HAVE_TZSET 55 return localtime_r(timep, result); 56 #else 57 return localtime(timep); 58 #endif // HAVE_LOCALTIME_R 59 } 60 61 /* 62 * Return the current time in seconds. Calls time(), unless test_settime() 63 * was used. 64 */ 65 time_T 66 vim_time(void) 67 { 68 # ifdef FEAT_EVAL 69 return time_for_testing == 0 ? time(NULL) : time_for_testing; 70 # else 71 return time(NULL); 72 # endif 73 } 74 75 /* 76 * Replacement for ctime(), which is not safe to use. 77 * Requires strftime(), otherwise returns "(unknown)". 78 * If "thetime" is invalid returns "(invalid)". Never returns NULL. 79 * When "add_newline" is TRUE add a newline like ctime() does. 80 * Uses a static buffer. 81 */ 82 char * 83 get_ctime(time_t thetime, int add_newline) 84 { 85 static char buf[50]; 86 #ifdef HAVE_STRFTIME 87 struct tm tmval; 88 struct tm *curtime; 89 90 curtime = vim_localtime(&thetime, &tmval); 91 // MSVC returns NULL for an invalid value of seconds. 92 if (curtime == NULL) 93 vim_strncpy((char_u *)buf, (char_u *)_("(Invalid)"), sizeof(buf) - 1); 94 else 95 { 96 (void)strftime(buf, sizeof(buf) - 1, _("%a %b %d %H:%M:%S %Y"), 97 curtime); 98 # ifdef MSWIN 99 if (enc_codepage >= 0 && (int)GetACP() != enc_codepage) 100 { 101 char_u *to_free = NULL; 102 int len; 103 104 acp_to_enc((char_u *)buf, (int)strlen(buf), &to_free, &len); 105 if (to_free != NULL) 106 { 107 STRCPY(buf, to_free); 108 vim_free(to_free); 109 } 110 } 111 # endif 112 } 113 #else 114 STRCPY(buf, "(unknown)"); 115 #endif 116 if (add_newline) 117 STRCAT(buf, "\n"); 118 return buf; 119 } 120 121 #if defined(FEAT_EVAL) || defined(PROTO) 122 123 #if defined(MACOS_X) 124 # include <time.h> // for time_t 125 #endif 126 127 /* 128 * "localtime()" function 129 */ 130 void 131 f_localtime(typval_T *argvars UNUSED, typval_T *rettv) 132 { 133 rettv->vval.v_number = (varnumber_T)time(NULL); 134 } 135 136 # if defined(FEAT_RELTIME) 137 /* 138 * Convert a List to proftime_T. 139 * Return FAIL when there is something wrong. 140 */ 141 static int 142 list2proftime(typval_T *arg, proftime_T *tm) 143 { 144 long n1, n2; 145 int error = FALSE; 146 147 if (arg->v_type != VAR_LIST || arg->vval.v_list == NULL 148 || arg->vval.v_list->lv_len != 2) 149 return FAIL; 150 n1 = list_find_nr(arg->vval.v_list, 0L, &error); 151 n2 = list_find_nr(arg->vval.v_list, 1L, &error); 152 # ifdef MSWIN 153 tm->HighPart = n1; 154 tm->LowPart = n2; 155 # else 156 tm->tv_sec = n1; 157 tm->tv_usec = n2; 158 # endif 159 return error ? FAIL : OK; 160 } 161 # endif // FEAT_RELTIME 162 163 /* 164 * "reltime()" function 165 */ 166 void 167 f_reltime(typval_T *argvars UNUSED, typval_T *rettv UNUSED) 168 { 169 # ifdef FEAT_RELTIME 170 proftime_T res; 171 proftime_T start; 172 173 if (argvars[0].v_type == VAR_UNKNOWN) 174 { 175 // No arguments: get current time. 176 profile_start(&res); 177 } 178 else if (argvars[1].v_type == VAR_UNKNOWN) 179 { 180 if (list2proftime(&argvars[0], &res) == FAIL) 181 return; 182 profile_end(&res); 183 } 184 else 185 { 186 // Two arguments: compute the difference. 187 if (list2proftime(&argvars[0], &start) == FAIL 188 || list2proftime(&argvars[1], &res) == FAIL) 189 return; 190 profile_sub(&res, &start); 191 } 192 193 if (rettv_list_alloc(rettv) == OK) 194 { 195 long n1, n2; 196 197 # ifdef MSWIN 198 n1 = res.HighPart; 199 n2 = res.LowPart; 200 # else 201 n1 = res.tv_sec; 202 n2 = res.tv_usec; 203 # endif 204 list_append_number(rettv->vval.v_list, (varnumber_T)n1); 205 list_append_number(rettv->vval.v_list, (varnumber_T)n2); 206 } 207 # endif 208 } 209 210 # ifdef FEAT_FLOAT 211 /* 212 * "reltimefloat()" function 213 */ 214 void 215 f_reltimefloat(typval_T *argvars UNUSED, typval_T *rettv) 216 { 217 # ifdef FEAT_RELTIME 218 proftime_T tm; 219 # endif 220 221 rettv->v_type = VAR_FLOAT; 222 rettv->vval.v_float = 0; 223 # ifdef FEAT_RELTIME 224 if (list2proftime(&argvars[0], &tm) == OK) 225 rettv->vval.v_float = profile_float(&tm); 226 # endif 227 } 228 # endif 229 230 /* 231 * "reltimestr()" function 232 */ 233 void 234 f_reltimestr(typval_T *argvars UNUSED, typval_T *rettv) 235 { 236 # ifdef FEAT_RELTIME 237 proftime_T tm; 238 # endif 239 240 rettv->v_type = VAR_STRING; 241 rettv->vval.v_string = NULL; 242 # ifdef FEAT_RELTIME 243 if (list2proftime(&argvars[0], &tm) == OK) 244 rettv->vval.v_string = vim_strsave((char_u *)profile_msg(&tm)); 245 # endif 246 } 247 248 # if defined(HAVE_STRFTIME) || defined(PROTO) 249 /* 250 * "strftime({format}[, {time}])" function 251 */ 252 void 253 f_strftime(typval_T *argvars, typval_T *rettv) 254 { 255 struct tm tmval; 256 struct tm *curtime; 257 time_t seconds; 258 char_u *p; 259 260 rettv->v_type = VAR_STRING; 261 262 p = tv_get_string(&argvars[0]); 263 if (argvars[1].v_type == VAR_UNKNOWN) 264 seconds = time(NULL); 265 else 266 seconds = (time_t)tv_get_number(&argvars[1]); 267 curtime = vim_localtime(&seconds, &tmval); 268 // MSVC returns NULL for an invalid value of seconds. 269 if (curtime == NULL) 270 rettv->vval.v_string = vim_strsave((char_u *)_("(Invalid)")); 271 else 272 { 273 # ifdef MSWIN 274 WCHAR result_buf[256]; 275 WCHAR *wp; 276 277 wp = enc_to_utf16(p, NULL); 278 if (wp != NULL) 279 (void)wcsftime(result_buf, ARRAY_LENGTH(result_buf), wp, curtime); 280 else 281 result_buf[0] = NUL; 282 rettv->vval.v_string = utf16_to_enc(result_buf, NULL); 283 vim_free(wp); 284 # else 285 char_u result_buf[256]; 286 vimconv_T conv; 287 char_u *enc; 288 289 conv.vc_type = CONV_NONE; 290 enc = enc_locale(); 291 convert_setup(&conv, p_enc, enc); 292 if (conv.vc_type != CONV_NONE) 293 p = string_convert(&conv, p, NULL); 294 if (p != NULL) 295 (void)strftime((char *)result_buf, sizeof(result_buf), 296 (char *)p, curtime); 297 else 298 result_buf[0] = NUL; 299 300 if (conv.vc_type != CONV_NONE) 301 vim_free(p); 302 convert_setup(&conv, enc, p_enc); 303 if (conv.vc_type != CONV_NONE) 304 rettv->vval.v_string = string_convert(&conv, result_buf, NULL); 305 else 306 rettv->vval.v_string = vim_strsave(result_buf); 307 308 // Release conversion descriptors 309 convert_setup(&conv, NULL, NULL); 310 vim_free(enc); 311 # endif 312 } 313 } 314 # endif 315 316 # if defined(HAVE_STRPTIME) || defined(PROTO) 317 /* 318 * "strptime({format}, {timestring})" function 319 */ 320 void 321 f_strptime(typval_T *argvars, typval_T *rettv) 322 { 323 struct tm tmval; 324 char_u *fmt; 325 char_u *str; 326 vimconv_T conv; 327 char_u *enc; 328 329 CLEAR_FIELD(tmval); 330 tmval.tm_isdst = -1; 331 fmt = tv_get_string(&argvars[0]); 332 str = tv_get_string(&argvars[1]); 333 334 conv.vc_type = CONV_NONE; 335 enc = enc_locale(); 336 convert_setup(&conv, p_enc, enc); 337 if (conv.vc_type != CONV_NONE) 338 fmt = string_convert(&conv, fmt, NULL); 339 if (fmt == NULL 340 || strptime((char *)str, (char *)fmt, &tmval) == NULL 341 || (rettv->vval.v_number = mktime(&tmval)) == -1) 342 rettv->vval.v_number = 0; 343 344 if (conv.vc_type != CONV_NONE) 345 vim_free(fmt); 346 convert_setup(&conv, NULL, NULL); 347 vim_free(enc); 348 } 349 # endif 350 351 # if defined(FEAT_TIMERS) || defined(PROTO) 352 static timer_T *first_timer = NULL; 353 static long last_timer_id = 0; 354 355 /* 356 * Return time left until "due". Negative if past "due". 357 */ 358 long 359 proftime_time_left(proftime_T *due, proftime_T *now) 360 { 361 # ifdef MSWIN 362 LARGE_INTEGER fr; 363 364 if (now->QuadPart > due->QuadPart) 365 return 0; 366 QueryPerformanceFrequency(&fr); 367 return (long)(((double)(due->QuadPart - now->QuadPart) 368 / (double)fr.QuadPart) * 1000); 369 # else 370 if (now->tv_sec > due->tv_sec) 371 return 0; 372 return (due->tv_sec - now->tv_sec) * 1000 373 + (due->tv_usec - now->tv_usec) / 1000; 374 # endif 375 } 376 377 /* 378 * Insert a timer in the list of timers. 379 */ 380 static void 381 insert_timer(timer_T *timer) 382 { 383 timer->tr_next = first_timer; 384 timer->tr_prev = NULL; 385 if (first_timer != NULL) 386 first_timer->tr_prev = timer; 387 first_timer = timer; 388 did_add_timer = TRUE; 389 } 390 391 /* 392 * Take a timer out of the list of timers. 393 */ 394 static void 395 remove_timer(timer_T *timer) 396 { 397 if (timer->tr_prev == NULL) 398 first_timer = timer->tr_next; 399 else 400 timer->tr_prev->tr_next = timer->tr_next; 401 if (timer->tr_next != NULL) 402 timer->tr_next->tr_prev = timer->tr_prev; 403 } 404 405 static void 406 free_timer(timer_T *timer) 407 { 408 free_callback(&timer->tr_callback); 409 vim_free(timer); 410 } 411 412 /* 413 * Create a timer and return it. NULL if out of memory. 414 * Caller should set the callback. 415 */ 416 timer_T * 417 create_timer(long msec, int repeat) 418 { 419 timer_T *timer = ALLOC_CLEAR_ONE(timer_T); 420 long prev_id = last_timer_id; 421 422 if (timer == NULL) 423 return NULL; 424 if (++last_timer_id <= prev_id) 425 // Overflow! Might cause duplicates... 426 last_timer_id = 0; 427 timer->tr_id = last_timer_id; 428 insert_timer(timer); 429 if (repeat != 0) 430 timer->tr_repeat = repeat - 1; 431 timer->tr_interval = msec; 432 433 profile_setlimit(msec, &timer->tr_due); 434 return timer; 435 } 436 437 /* 438 * Invoke the callback of "timer". 439 */ 440 static void 441 timer_callback(timer_T *timer) 442 { 443 typval_T rettv; 444 typval_T argv[2]; 445 446 argv[0].v_type = VAR_NUMBER; 447 argv[0].vval.v_number = (varnumber_T)timer->tr_id; 448 argv[1].v_type = VAR_UNKNOWN; 449 450 call_callback(&timer->tr_callback, -1, &rettv, 1, argv); 451 clear_tv(&rettv); 452 } 453 454 /* 455 * Call timers that are due. 456 * Return the time in msec until the next timer is due. 457 * Returns -1 if there are no pending timers. 458 */ 459 long 460 check_due_timer(void) 461 { 462 timer_T *timer; 463 timer_T *timer_next; 464 long this_due; 465 long next_due = -1; 466 proftime_T now; 467 int did_one = FALSE; 468 int need_update_screen = FALSE; 469 long current_id = last_timer_id; 470 471 // Don't run any timers while exiting or dealing with an error. 472 if (exiting || aborting()) 473 return next_due; 474 475 profile_start(&now); 476 for (timer = first_timer; timer != NULL && !got_int; timer = timer_next) 477 { 478 timer_next = timer->tr_next; 479 480 if (timer->tr_id == -1 || timer->tr_firing || timer->tr_paused) 481 continue; 482 this_due = proftime_time_left(&timer->tr_due, &now); 483 if (this_due <= 1) 484 { 485 // Save and restore a lot of flags, because the timer fires while 486 // waiting for a character, which might be halfway a command. 487 int save_timer_busy = timer_busy; 488 int save_vgetc_busy = vgetc_busy; 489 int save_did_emsg = did_emsg; 490 int save_called_emsg = called_emsg; 491 int save_must_redraw = must_redraw; 492 int save_trylevel = trylevel; 493 int save_did_throw = did_throw; 494 int save_need_rethrow = need_rethrow; 495 int save_ex_pressedreturn = get_pressedreturn(); 496 int save_may_garbage_collect = may_garbage_collect; 497 except_T *save_current_exception = current_exception; 498 vimvars_save_T vvsave; 499 500 // Create a scope for running the timer callback, ignoring most of 501 // the current scope, such as being inside a try/catch. 502 timer_busy = timer_busy > 0 || vgetc_busy > 0; 503 vgetc_busy = 0; 504 called_emsg = 0; 505 did_emsg = FALSE; 506 did_uncaught_emsg = FALSE; 507 must_redraw = 0; 508 trylevel = 0; 509 did_throw = FALSE; 510 need_rethrow = FALSE; 511 current_exception = NULL; 512 may_garbage_collect = FALSE; 513 save_vimvars(&vvsave); 514 515 // Invoke the callback. 516 timer->tr_firing = TRUE; 517 timer_callback(timer); 518 timer->tr_firing = FALSE; 519 520 // Restore stuff. 521 timer_next = timer->tr_next; 522 did_one = TRUE; 523 timer_busy = save_timer_busy; 524 vgetc_busy = save_vgetc_busy; 525 if (did_uncaught_emsg) 526 ++timer->tr_emsg_count; 527 did_emsg = save_did_emsg; 528 called_emsg = save_called_emsg; 529 trylevel = save_trylevel; 530 did_throw = save_did_throw; 531 need_rethrow = save_need_rethrow; 532 current_exception = save_current_exception; 533 restore_vimvars(&vvsave); 534 if (must_redraw != 0) 535 need_update_screen = TRUE; 536 must_redraw = must_redraw > save_must_redraw 537 ? must_redraw : save_must_redraw; 538 set_pressedreturn(save_ex_pressedreturn); 539 may_garbage_collect = save_may_garbage_collect; 540 541 // Only fire the timer again if it repeats and stop_timer() wasn't 542 // called while inside the callback (tr_id == -1). 543 if (timer->tr_repeat != 0 && timer->tr_id != -1 544 && timer->tr_emsg_count < 3) 545 { 546 profile_setlimit(timer->tr_interval, &timer->tr_due); 547 this_due = proftime_time_left(&timer->tr_due, &now); 548 if (this_due < 1) 549 this_due = 1; 550 if (timer->tr_repeat > 0) 551 --timer->tr_repeat; 552 } 553 else 554 { 555 this_due = -1; 556 remove_timer(timer); 557 free_timer(timer); 558 } 559 } 560 if (this_due > 0 && (next_due == -1 || next_due > this_due)) 561 next_due = this_due; 562 } 563 564 if (did_one) 565 redraw_after_callback(need_update_screen); 566 567 #ifdef FEAT_BEVAL_TERM 568 if (bevalexpr_due_set) 569 { 570 this_due = proftime_time_left(&bevalexpr_due, &now); 571 if (this_due <= 1) 572 { 573 bevalexpr_due_set = FALSE; 574 if (balloonEval == NULL) 575 { 576 balloonEval = ALLOC_CLEAR_ONE(BalloonEval); 577 balloonEvalForTerm = TRUE; 578 } 579 if (balloonEval != NULL) 580 { 581 general_beval_cb(balloonEval, 0); 582 setcursor(); 583 out_flush(); 584 } 585 } 586 else if (next_due == -1 || next_due > this_due) 587 next_due = this_due; 588 } 589 #endif 590 #ifdef FEAT_TERMINAL 591 // Some terminal windows may need their buffer updated. 592 next_due = term_check_timers(next_due, &now); 593 #endif 594 595 return current_id != last_timer_id ? 1 : next_due; 596 } 597 598 /* 599 * Find a timer by ID. Returns NULL if not found; 600 */ 601 static timer_T * 602 find_timer(long id) 603 { 604 timer_T *timer; 605 606 if (id >= 0) 607 { 608 FOR_ALL_TIMERS(timer) 609 if (timer->tr_id == id) 610 return timer; 611 } 612 return NULL; 613 } 614 615 616 /* 617 * Stop a timer and delete it. 618 */ 619 void 620 stop_timer(timer_T *timer) 621 { 622 if (timer->tr_firing) 623 // Free the timer after the callback returns. 624 timer->tr_id = -1; 625 else 626 { 627 remove_timer(timer); 628 free_timer(timer); 629 } 630 } 631 632 static void 633 stop_all_timers(void) 634 { 635 timer_T *timer; 636 timer_T *timer_next; 637 638 for (timer = first_timer; timer != NULL; timer = timer_next) 639 { 640 timer_next = timer->tr_next; 641 stop_timer(timer); 642 } 643 } 644 645 static void 646 add_timer_info(typval_T *rettv, timer_T *timer) 647 { 648 list_T *list = rettv->vval.v_list; 649 dict_T *dict = dict_alloc(); 650 dictitem_T *di; 651 long remaining; 652 proftime_T now; 653 654 if (dict == NULL) 655 return; 656 list_append_dict(list, dict); 657 658 dict_add_number(dict, "id", timer->tr_id); 659 dict_add_number(dict, "time", (long)timer->tr_interval); 660 661 profile_start(&now); 662 remaining = proftime_time_left(&timer->tr_due, &now); 663 dict_add_number(dict, "remaining", (long)remaining); 664 665 dict_add_number(dict, "repeat", 666 (long)(timer->tr_repeat < 0 ? -1 : timer->tr_repeat + 1)); 667 dict_add_number(dict, "paused", (long)(timer->tr_paused)); 668 669 di = dictitem_alloc((char_u *)"callback"); 670 if (di != NULL) 671 { 672 if (dict_add(dict, di) == FAIL) 673 vim_free(di); 674 else 675 put_callback(&timer->tr_callback, &di->di_tv); 676 } 677 } 678 679 static void 680 add_timer_info_all(typval_T *rettv) 681 { 682 timer_T *timer; 683 684 FOR_ALL_TIMERS(timer) 685 if (timer->tr_id != -1) 686 add_timer_info(rettv, timer); 687 } 688 689 /* 690 * Mark references in partials of timers. 691 */ 692 int 693 set_ref_in_timer(int copyID) 694 { 695 int abort = FALSE; 696 timer_T *timer; 697 typval_T tv; 698 699 for (timer = first_timer; !abort && timer != NULL; timer = timer->tr_next) 700 { 701 if (timer->tr_callback.cb_partial != NULL) 702 { 703 tv.v_type = VAR_PARTIAL; 704 tv.vval.v_partial = timer->tr_callback.cb_partial; 705 } 706 else 707 { 708 tv.v_type = VAR_FUNC; 709 tv.vval.v_string = timer->tr_callback.cb_name; 710 } 711 abort = abort || set_ref_in_item(&tv, copyID, NULL, NULL); 712 } 713 return abort; 714 } 715 716 # if defined(EXITFREE) || defined(PROTO) 717 void 718 timer_free_all() 719 { 720 timer_T *timer; 721 722 while (first_timer != NULL) 723 { 724 timer = first_timer; 725 remove_timer(timer); 726 free_timer(timer); 727 } 728 } 729 # endif 730 731 /* 732 * "timer_info([timer])" function 733 */ 734 void 735 f_timer_info(typval_T *argvars, typval_T *rettv) 736 { 737 timer_T *timer = NULL; 738 739 if (rettv_list_alloc(rettv) != OK) 740 return; 741 if (argvars[0].v_type != VAR_UNKNOWN) 742 { 743 if (argvars[0].v_type != VAR_NUMBER) 744 emsg(_(e_number_exp)); 745 else 746 { 747 timer = find_timer((int)tv_get_number(&argvars[0])); 748 if (timer != NULL) 749 add_timer_info(rettv, timer); 750 } 751 } 752 else 753 add_timer_info_all(rettv); 754 } 755 756 /* 757 * "timer_pause(timer, paused)" function 758 */ 759 void 760 f_timer_pause(typval_T *argvars, typval_T *rettv UNUSED) 761 { 762 timer_T *timer = NULL; 763 int paused = (int)tv_get_bool(&argvars[1]); 764 765 if (argvars[0].v_type != VAR_NUMBER) 766 emsg(_(e_number_exp)); 767 else 768 { 769 timer = find_timer((int)tv_get_number(&argvars[0])); 770 if (timer != NULL) 771 timer->tr_paused = paused; 772 } 773 } 774 775 /* 776 * "timer_start(time, callback [, options])" function 777 */ 778 void 779 f_timer_start(typval_T *argvars, typval_T *rettv) 780 { 781 long msec = (long)tv_get_number(&argvars[0]); 782 timer_T *timer; 783 int repeat = 0; 784 callback_T callback; 785 dict_T *dict; 786 787 rettv->vval.v_number = -1; 788 if (check_secure()) 789 return; 790 if (argvars[2].v_type != VAR_UNKNOWN) 791 { 792 if (argvars[2].v_type != VAR_DICT 793 || (dict = argvars[2].vval.v_dict) == NULL) 794 { 795 semsg(_(e_invarg2), tv_get_string(&argvars[2])); 796 return; 797 } 798 if (dict_find(dict, (char_u *)"repeat", -1) != NULL) 799 repeat = dict_get_number(dict, (char_u *)"repeat"); 800 } 801 802 callback = get_callback(&argvars[1]); 803 if (callback.cb_name == NULL) 804 return; 805 806 timer = create_timer(msec, repeat); 807 if (timer == NULL) 808 free_callback(&callback); 809 else 810 { 811 set_callback(&timer->tr_callback, &callback); 812 rettv->vval.v_number = (varnumber_T)timer->tr_id; 813 } 814 } 815 816 /* 817 * "timer_stop(timer)" function 818 */ 819 void 820 f_timer_stop(typval_T *argvars, typval_T *rettv UNUSED) 821 { 822 timer_T *timer; 823 824 if (argvars[0].v_type != VAR_NUMBER) 825 { 826 emsg(_(e_number_exp)); 827 return; 828 } 829 timer = find_timer((int)tv_get_number(&argvars[0])); 830 if (timer != NULL) 831 stop_timer(timer); 832 } 833 834 /* 835 * "timer_stopall()" function 836 */ 837 void 838 f_timer_stopall(typval_T *argvars UNUSED, typval_T *rettv UNUSED) 839 { 840 stop_all_timers(); 841 } 842 843 # endif // FEAT_TIMERS 844 845 # if defined(STARTUPTIME) || defined(PROTO) 846 static struct timeval prev_timeval; 847 848 # ifdef MSWIN 849 /* 850 * Windows doesn't have gettimeofday(), although it does have struct timeval. 851 */ 852 static int 853 gettimeofday(struct timeval *tv, char *dummy UNUSED) 854 { 855 long t = clock(); 856 tv->tv_sec = t / CLOCKS_PER_SEC; 857 tv->tv_usec = (t - tv->tv_sec * CLOCKS_PER_SEC) * 1000000 / CLOCKS_PER_SEC; 858 return 0; 859 } 860 # endif 861 862 /* 863 * Save the previous time before doing something that could nest. 864 * set "*tv_rel" to the time elapsed so far. 865 */ 866 void 867 time_push(void *tv_rel, void *tv_start) 868 { 869 *((struct timeval *)tv_rel) = prev_timeval; 870 gettimeofday(&prev_timeval, NULL); 871 ((struct timeval *)tv_rel)->tv_usec = prev_timeval.tv_usec 872 - ((struct timeval *)tv_rel)->tv_usec; 873 ((struct timeval *)tv_rel)->tv_sec = prev_timeval.tv_sec 874 - ((struct timeval *)tv_rel)->tv_sec; 875 if (((struct timeval *)tv_rel)->tv_usec < 0) 876 { 877 ((struct timeval *)tv_rel)->tv_usec += 1000000; 878 --((struct timeval *)tv_rel)->tv_sec; 879 } 880 *(struct timeval *)tv_start = prev_timeval; 881 } 882 883 /* 884 * Compute the previous time after doing something that could nest. 885 * Subtract "*tp" from prev_timeval; 886 * Note: The arguments are (void *) to avoid trouble with systems that don't 887 * have struct timeval. 888 */ 889 void 890 time_pop( 891 void *tp) // actually (struct timeval *) 892 { 893 prev_timeval.tv_usec -= ((struct timeval *)tp)->tv_usec; 894 prev_timeval.tv_sec -= ((struct timeval *)tp)->tv_sec; 895 if (prev_timeval.tv_usec < 0) 896 { 897 prev_timeval.tv_usec += 1000000; 898 --prev_timeval.tv_sec; 899 } 900 } 901 902 static void 903 time_diff(struct timeval *then, struct timeval *now) 904 { 905 long usec; 906 long msec; 907 908 usec = now->tv_usec - then->tv_usec; 909 msec = (now->tv_sec - then->tv_sec) * 1000L + usec / 1000L, 910 usec = usec % 1000L; 911 fprintf(time_fd, "%03ld.%03ld", msec, usec >= 0 ? usec : usec + 1000L); 912 } 913 914 void 915 time_msg( 916 char *mesg, 917 void *tv_start) // only for do_source: start time; actually 918 // (struct timeval *) 919 { 920 static struct timeval start; 921 struct timeval now; 922 923 if (time_fd != NULL) 924 { 925 if (strstr(mesg, "STARTING") != NULL) 926 { 927 gettimeofday(&start, NULL); 928 prev_timeval = start; 929 fprintf(time_fd, "\n\ntimes in msec\n"); 930 fprintf(time_fd, " clock self+sourced self: sourced script\n"); 931 fprintf(time_fd, " clock elapsed: other lines\n\n"); 932 } 933 gettimeofday(&now, NULL); 934 time_diff(&start, &now); 935 if (((struct timeval *)tv_start) != NULL) 936 { 937 fprintf(time_fd, " "); 938 time_diff(((struct timeval *)tv_start), &now); 939 } 940 fprintf(time_fd, " "); 941 time_diff(&prev_timeval, &now); 942 prev_timeval = now; 943 fprintf(time_fd, ": %s\n", mesg); 944 } 945 } 946 # endif // STARTUPTIME 947 #endif // FEAT_EVAL 948 949 #if defined(FEAT_SPELL) || defined(FEAT_PERSISTENT_UNDO) || defined(PROTO) 950 /* 951 * Read 8 bytes from "fd" and turn them into a time_T, MSB first. 952 * Returns -1 when encountering EOF. 953 */ 954 time_T 955 get8ctime(FILE *fd) 956 { 957 int c; 958 time_T n = 0; 959 int i; 960 961 for (i = 0; i < 8; ++i) 962 { 963 c = getc(fd); 964 if (c == EOF) return -1; 965 n = (n << 8) + c; 966 } 967 return n; 968 } 969 970 #ifdef _MSC_VER 971 # if (_MSC_VER <= 1200) 972 // This line is required for VC6 without the service pack. Also see the 973 // matching #pragma below. 974 # pragma optimize("", off) 975 # endif 976 #endif 977 978 /* 979 * Write time_T to file "fd" in 8 bytes. 980 * Returns FAIL when the write failed. 981 */ 982 int 983 put_time(FILE *fd, time_T the_time) 984 { 985 char_u buf[8]; 986 987 time_to_bytes(the_time, buf); 988 return fwrite(buf, (size_t)8, (size_t)1, fd) == 1 ? OK : FAIL; 989 } 990 991 /* 992 * Write time_T to "buf[8]". 993 */ 994 void 995 time_to_bytes(time_T the_time, char_u *buf) 996 { 997 int c; 998 int i; 999 int bi = 0; 1000 time_T wtime = the_time; 1001 1002 // time_T can be up to 8 bytes in size, more than long_u, thus we 1003 // can't use put_bytes() here. 1004 // Another problem is that ">>" may do an arithmetic shift that keeps the 1005 // sign. This happens for large values of wtime. A cast to long_u may 1006 // truncate if time_T is 8 bytes. So only use a cast when it is 4 bytes, 1007 // it's safe to assume that long_u is 4 bytes or more and when using 8 1008 // bytes the top bit won't be set. 1009 for (i = 7; i >= 0; --i) 1010 { 1011 if (i + 1 > (int)sizeof(time_T)) 1012 // ">>" doesn't work well when shifting more bits than avail 1013 buf[bi++] = 0; 1014 else 1015 { 1016 #if defined(SIZEOF_TIME_T) && SIZEOF_TIME_T > 4 1017 c = (int)(wtime >> (i * 8)); 1018 #else 1019 c = (int)((long_u)wtime >> (i * 8)); 1020 #endif 1021 buf[bi++] = c; 1022 } 1023 } 1024 } 1025 1026 #ifdef _MSC_VER 1027 # if (_MSC_VER <= 1200) 1028 # pragma optimize("", on) 1029 # endif 1030 #endif 1031 1032 #endif 1033 1034 /* 1035 * Put timestamp "tt" in "buf[buflen]" in a nice format. 1036 */ 1037 void 1038 add_time(char_u *buf, size_t buflen, time_t tt) 1039 { 1040 #ifdef HAVE_STRFTIME 1041 struct tm tmval; 1042 struct tm *curtime; 1043 1044 if (vim_time() - tt >= 100) 1045 { 1046 curtime = vim_localtime(&tt, &tmval); 1047 if (vim_time() - tt < (60L * 60L * 12L)) 1048 // within 12 hours 1049 (void)strftime((char *)buf, buflen, "%H:%M:%S", curtime); 1050 else 1051 // longer ago 1052 (void)strftime((char *)buf, buflen, "%Y/%m/%d %H:%M:%S", curtime); 1053 } 1054 else 1055 #endif 1056 { 1057 long seconds = (long)(vim_time() - tt); 1058 1059 vim_snprintf((char *)buf, buflen, 1060 NGETTEXT("%ld second ago", "%ld seconds ago", seconds), 1061 seconds); 1062 } 1063 } 1064