progress.c 17 KB

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  1. /***************************************************************************
  2. * _ _ ____ _
  3. * Project ___| | | | _ \| |
  4. * / __| | | | |_) | |
  5. * | (__| |_| | _ <| |___
  6. * \___|\___/|_| \_\_____|
  7. *
  8. * Copyright (C) 1998 - 2012, Daniel Stenberg, <daniel@haxx.se>, et al.
  9. *
  10. * This software is licensed as described in the file COPYING, which
  11. * you should have received as part of this distribution. The terms
  12. * are also available at http://curl.haxx.se/docs/copyright.html.
  13. *
  14. * You may opt to use, copy, modify, merge, publish, distribute and/or sell
  15. * copies of the Software, and permit persons to whom the Software is
  16. * furnished to do so, under the terms of the COPYING file.
  17. *
  18. * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
  19. * KIND, either express or implied.
  20. *
  21. ***************************************************************************/
  22. #include "setup.h"
  23. #include "urldata.h"
  24. #include "sendf.h"
  25. #include "progress.h"
  26. #define _MPRINTF_REPLACE /* use our functions only */
  27. #include <curl/mprintf.h>
  28. /* Provide a string that is 2 + 1 + 2 + 1 + 2 = 8 letters long (plus the zero
  29. byte) */
  30. static void time2str(char *r, curl_off_t seconds)
  31. {
  32. curl_off_t d, h, m, s;
  33. if(seconds <= 0) {
  34. strcpy(r, "--:--:--");
  35. return;
  36. }
  37. h = seconds / CURL_OFF_T_C(3600);
  38. if(h <= CURL_OFF_T_C(99)) {
  39. m = (seconds - (h*CURL_OFF_T_C(3600))) / CURL_OFF_T_C(60);
  40. s = (seconds - (h*CURL_OFF_T_C(3600))) - (m*CURL_OFF_T_C(60));
  41. snprintf(r, 9, "%2" FORMAT_OFF_T ":%02" FORMAT_OFF_T ":%02" FORMAT_OFF_T,
  42. h, m, s);
  43. }
  44. else {
  45. /* this equals to more than 99 hours, switch to a more suitable output
  46. format to fit within the limits. */
  47. d = seconds / CURL_OFF_T_C(86400);
  48. h = (seconds - (d*CURL_OFF_T_C(86400))) / CURL_OFF_T_C(3600);
  49. if(d <= CURL_OFF_T_C(999))
  50. snprintf(r, 9, "%3" FORMAT_OFF_T "d %02" FORMAT_OFF_T "h", d, h);
  51. else
  52. snprintf(r, 9, "%7" FORMAT_OFF_T "d", d);
  53. }
  54. }
  55. /* The point of this function would be to return a string of the input data,
  56. but never longer than 5 columns (+ one zero byte).
  57. Add suffix k, M, G when suitable... */
  58. static char *max5data(curl_off_t bytes, char *max5)
  59. {
  60. #define ONE_KILOBYTE CURL_OFF_T_C(1024)
  61. #define ONE_MEGABYTE (CURL_OFF_T_C(1024) * ONE_KILOBYTE)
  62. #define ONE_GIGABYTE (CURL_OFF_T_C(1024) * ONE_MEGABYTE)
  63. #define ONE_TERABYTE (CURL_OFF_T_C(1024) * ONE_GIGABYTE)
  64. #define ONE_PETABYTE (CURL_OFF_T_C(1024) * ONE_TERABYTE)
  65. if(bytes < CURL_OFF_T_C(100000))
  66. snprintf(max5, 6, "%5" FORMAT_OFF_T, bytes);
  67. else if(bytes < CURL_OFF_T_C(10000) * ONE_KILOBYTE)
  68. snprintf(max5, 6, "%4" FORMAT_OFF_T "k", bytes/ONE_KILOBYTE);
  69. else if(bytes < CURL_OFF_T_C(100) * ONE_MEGABYTE)
  70. /* 'XX.XM' is good as long as we're less than 100 megs */
  71. snprintf(max5, 6, "%2" FORMAT_OFF_T ".%0" FORMAT_OFF_T "M",
  72. bytes/ONE_MEGABYTE,
  73. (bytes%ONE_MEGABYTE) / (ONE_MEGABYTE/CURL_OFF_T_C(10)) );
  74. #if (CURL_SIZEOF_CURL_OFF_T > 4)
  75. else if(bytes < CURL_OFF_T_C(10000) * ONE_MEGABYTE)
  76. /* 'XXXXM' is good until we're at 10000MB or above */
  77. snprintf(max5, 6, "%4" FORMAT_OFF_T "M", bytes/ONE_MEGABYTE);
  78. else if(bytes < CURL_OFF_T_C(100) * ONE_GIGABYTE)
  79. /* 10000 MB - 100 GB, we show it as XX.XG */
  80. snprintf(max5, 6, "%2" FORMAT_OFF_T ".%0" FORMAT_OFF_T "G",
  81. bytes/ONE_GIGABYTE,
  82. (bytes%ONE_GIGABYTE) / (ONE_GIGABYTE/CURL_OFF_T_C(10)) );
  83. else if(bytes < CURL_OFF_T_C(10000) * ONE_GIGABYTE)
  84. /* up to 10000GB, display without decimal: XXXXG */
  85. snprintf(max5, 6, "%4" FORMAT_OFF_T "G", bytes/ONE_GIGABYTE);
  86. else if(bytes < CURL_OFF_T_C(10000) * ONE_TERABYTE)
  87. /* up to 10000TB, display without decimal: XXXXT */
  88. snprintf(max5, 6, "%4" FORMAT_OFF_T "T", bytes/ONE_TERABYTE);
  89. else
  90. /* up to 10000PB, display without decimal: XXXXP */
  91. snprintf(max5, 6, "%4" FORMAT_OFF_T "P", bytes/ONE_PETABYTE);
  92. /* 16384 petabytes (16 exabytes) is the maximum a 64 bit unsigned number
  93. can hold, but our data type is signed so 8192PB will be the maximum. */
  94. #else
  95. else
  96. snprintf(max5, 6, "%4" FORMAT_OFF_T "M", bytes/ONE_MEGABYTE);
  97. #endif
  98. return max5;
  99. }
  100. /*
  101. New proposed interface, 9th of February 2000:
  102. pgrsStartNow() - sets start time
  103. pgrsSetDownloadSize(x) - known expected download size
  104. pgrsSetUploadSize(x) - known expected upload size
  105. pgrsSetDownloadCounter() - amount of data currently downloaded
  106. pgrsSetUploadCounter() - amount of data currently uploaded
  107. pgrsUpdate() - show progress
  108. pgrsDone() - transfer complete
  109. */
  110. int Curl_pgrsDone(struct connectdata *conn)
  111. {
  112. int rc;
  113. struct SessionHandle *data = conn->data;
  114. data->progress.lastshow=0;
  115. rc = Curl_pgrsUpdate(conn); /* the final (forced) update */
  116. if(rc)
  117. return rc;
  118. if(!(data->progress.flags & PGRS_HIDE) &&
  119. !data->progress.callback)
  120. /* only output if we don't use a progress callback and we're not
  121. * hidden */
  122. fprintf(data->set.err, "\n");
  123. data->progress.speeder_c = 0; /* reset the progress meter display */
  124. return 0;
  125. }
  126. /* reset all times except redirect, and reset the known transfer sizes */
  127. void Curl_pgrsResetTimesSizes(struct SessionHandle *data)
  128. {
  129. data->progress.t_nslookup = 0.0;
  130. data->progress.t_connect = 0.0;
  131. data->progress.t_pretransfer = 0.0;
  132. data->progress.t_starttransfer = 0.0;
  133. Curl_pgrsSetDownloadSize(data, 0);
  134. Curl_pgrsSetUploadSize(data, 0);
  135. }
  136. void Curl_pgrsTime(struct SessionHandle *data, timerid timer)
  137. {
  138. struct timeval now = Curl_tvnow();
  139. switch(timer) {
  140. default:
  141. case TIMER_NONE:
  142. /* mistake filter */
  143. break;
  144. case TIMER_STARTSINGLE:
  145. /* This is set at the start of a single fetch */
  146. data->progress.t_startsingle = now;
  147. break;
  148. case TIMER_STARTACCEPT:
  149. data->progress.t_acceptdata = Curl_tvnow();
  150. break;
  151. case TIMER_NAMELOOKUP:
  152. data->progress.t_nslookup =
  153. Curl_tvdiff_secs(now, data->progress.t_startsingle);
  154. break;
  155. case TIMER_CONNECT:
  156. data->progress.t_connect =
  157. Curl_tvdiff_secs(now, data->progress.t_startsingle);
  158. break;
  159. case TIMER_APPCONNECT:
  160. data->progress.t_appconnect =
  161. Curl_tvdiff_secs(now, data->progress.t_startsingle);
  162. break;
  163. case TIMER_PRETRANSFER:
  164. data->progress.t_pretransfer =
  165. Curl_tvdiff_secs(now, data->progress.t_startsingle);
  166. break;
  167. case TIMER_STARTTRANSFER:
  168. data->progress.t_starttransfer =
  169. Curl_tvdiff_secs(now, data->progress.t_startsingle);
  170. break;
  171. case TIMER_POSTRANSFER:
  172. /* this is the normal end-of-transfer thing */
  173. break;
  174. case TIMER_REDIRECT:
  175. data->progress.t_redirect = Curl_tvdiff_secs(now, data->progress.start);
  176. break;
  177. }
  178. }
  179. void Curl_pgrsStartNow(struct SessionHandle *data)
  180. {
  181. data->progress.speeder_c = 0; /* reset the progress meter display */
  182. data->progress.start = Curl_tvnow();
  183. /* clear all bits except HIDE and HEADERS_OUT */
  184. data->progress.flags &= PGRS_HIDE|PGRS_HEADERS_OUT;
  185. }
  186. void Curl_pgrsSetDownloadCounter(struct SessionHandle *data, curl_off_t size)
  187. {
  188. data->progress.downloaded = size;
  189. }
  190. void Curl_pgrsSetUploadCounter(struct SessionHandle *data, curl_off_t size)
  191. {
  192. data->progress.uploaded = size;
  193. }
  194. void Curl_pgrsSetDownloadSize(struct SessionHandle *data, curl_off_t size)
  195. {
  196. data->progress.size_dl = size;
  197. if(size >= 0)
  198. data->progress.flags |= PGRS_DL_SIZE_KNOWN;
  199. else
  200. data->progress.flags &= ~PGRS_DL_SIZE_KNOWN;
  201. }
  202. void Curl_pgrsSetUploadSize(struct SessionHandle *data, curl_off_t size)
  203. {
  204. data->progress.size_ul = size;
  205. if(size >= 0)
  206. data->progress.flags |= PGRS_UL_SIZE_KNOWN;
  207. else
  208. data->progress.flags &= ~PGRS_UL_SIZE_KNOWN;
  209. }
  210. /*
  211. * Curl_pgrsUpdate() returns 0 for success or the value returned by the
  212. * progress callback!
  213. */
  214. int Curl_pgrsUpdate(struct connectdata *conn)
  215. {
  216. struct timeval now;
  217. int result;
  218. char max5[6][10];
  219. curl_off_t dlpercen=0;
  220. curl_off_t ulpercen=0;
  221. curl_off_t total_percen=0;
  222. curl_off_t total_transfer;
  223. curl_off_t total_expected_transfer;
  224. curl_off_t timespent;
  225. struct SessionHandle *data = conn->data;
  226. int nowindex = data->progress.speeder_c% CURR_TIME;
  227. int checkindex;
  228. int countindex; /* amount of seconds stored in the speeder array */
  229. char time_left[10];
  230. char time_total[10];
  231. char time_spent[10];
  232. curl_off_t ulestimate=0;
  233. curl_off_t dlestimate=0;
  234. curl_off_t total_estimate;
  235. bool shownow=FALSE;
  236. now = Curl_tvnow(); /* what time is it */
  237. /* The time spent so far (from the start) */
  238. data->progress.timespent =
  239. (double)(now.tv_sec - data->progress.start.tv_sec) +
  240. (double)(now.tv_usec - data->progress.start.tv_usec)/1000000.0;
  241. timespent = (curl_off_t)data->progress.timespent;
  242. /* The average download speed this far */
  243. data->progress.dlspeed = (curl_off_t)
  244. ((double)data->progress.downloaded/
  245. (data->progress.timespent>0?data->progress.timespent:1));
  246. /* The average upload speed this far */
  247. data->progress.ulspeed = (curl_off_t)
  248. ((double)data->progress.uploaded/
  249. (data->progress.timespent>0?data->progress.timespent:1));
  250. /* Calculations done at most once a second, unless end is reached */
  251. if(data->progress.lastshow != (long)now.tv_sec) {
  252. shownow = TRUE;
  253. data->progress.lastshow = now.tv_sec;
  254. /* Let's do the "current speed" thing, which should use the fastest
  255. of the dl/ul speeds. Store the faster speed at entry 'nowindex'. */
  256. data->progress.speeder[ nowindex ] =
  257. data->progress.downloaded>data->progress.uploaded?
  258. data->progress.downloaded:data->progress.uploaded;
  259. /* remember the exact time for this moment */
  260. data->progress.speeder_time [ nowindex ] = now;
  261. /* advance our speeder_c counter, which is increased every time we get
  262. here and we expect it to never wrap as 2^32 is a lot of seconds! */
  263. data->progress.speeder_c++;
  264. /* figure out how many index entries of data we have stored in our speeder
  265. array. With N_ENTRIES filled in, we have about N_ENTRIES-1 seconds of
  266. transfer. Imagine, after one second we have filled in two entries,
  267. after two seconds we've filled in three entries etc. */
  268. countindex = ((data->progress.speeder_c>=CURR_TIME)?
  269. CURR_TIME:data->progress.speeder_c) - 1;
  270. /* first of all, we don't do this if there's no counted seconds yet */
  271. if(countindex) {
  272. long span_ms;
  273. /* Get the index position to compare with the 'nowindex' position.
  274. Get the oldest entry possible. While we have less than CURR_TIME
  275. entries, the first entry will remain the oldest. */
  276. checkindex = (data->progress.speeder_c>=CURR_TIME)?
  277. data->progress.speeder_c%CURR_TIME:0;
  278. /* Figure out the exact time for the time span */
  279. span_ms = Curl_tvdiff(now,
  280. data->progress.speeder_time[checkindex]);
  281. if(0 == span_ms)
  282. span_ms=1; /* at least one millisecond MUST have passed */
  283. /* Calculate the average speed the last 'span_ms' milliseconds */
  284. {
  285. curl_off_t amount = data->progress.speeder[nowindex]-
  286. data->progress.speeder[checkindex];
  287. if(amount > CURL_OFF_T_C(4294967) /* 0xffffffff/1000 */)
  288. /* the 'amount' value is bigger than would fit in 32 bits if
  289. multiplied with 1000, so we use the double math for this */
  290. data->progress.current_speed = (curl_off_t)
  291. ((double)amount/((double)span_ms/1000.0));
  292. else
  293. /* the 'amount' value is small enough to fit within 32 bits even
  294. when multiplied with 1000 */
  295. data->progress.current_speed = amount*CURL_OFF_T_C(1000)/span_ms;
  296. }
  297. }
  298. else
  299. /* the first second we use the main average */
  300. data->progress.current_speed =
  301. (data->progress.ulspeed>data->progress.dlspeed)?
  302. data->progress.ulspeed:data->progress.dlspeed;
  303. } /* Calculations end */
  304. if(!(data->progress.flags & PGRS_HIDE)) {
  305. /* progress meter has not been shut off */
  306. if(data->set.fprogress) {
  307. /* There's a callback set, so we call that instead of writing
  308. anything ourselves. This really is the way to go. */
  309. result= data->set.fprogress(data->set.progress_client,
  310. (double)data->progress.size_dl,
  311. (double)data->progress.downloaded,
  312. (double)data->progress.size_ul,
  313. (double)data->progress.uploaded);
  314. if(result)
  315. failf(data, "Callback aborted");
  316. return result;
  317. }
  318. if(!shownow)
  319. /* only show the internal progress meter once per second */
  320. return 0;
  321. /* If there's no external callback set, use internal code to show
  322. progress */
  323. if(!(data->progress.flags & PGRS_HEADERS_OUT)) {
  324. if(data->state.resume_from) {
  325. fprintf(data->set.err,
  326. "** Resuming transfer from byte position %" FORMAT_OFF_T "\n",
  327. data->state.resume_from);
  328. }
  329. fprintf(data->set.err,
  330. " %% Total %% Received %% Xferd Average Speed "
  331. "Time Time Time Current\n"
  332. " Dload Upload "
  333. "Total Spent Left Speed\n");
  334. data->progress.flags |= PGRS_HEADERS_OUT; /* headers are shown */
  335. }
  336. /* Figure out the estimated time of arrival for the upload */
  337. if((data->progress.flags & PGRS_UL_SIZE_KNOWN) &&
  338. (data->progress.ulspeed > CURL_OFF_T_C(0))) {
  339. ulestimate = data->progress.size_ul / data->progress.ulspeed;
  340. if(data->progress.size_ul > CURL_OFF_T_C(10000))
  341. ulpercen = data->progress.uploaded /
  342. (data->progress.size_ul/CURL_OFF_T_C(100));
  343. else if(data->progress.size_ul > CURL_OFF_T_C(0))
  344. ulpercen = (data->progress.uploaded*100) /
  345. data->progress.size_ul;
  346. }
  347. /* ... and the download */
  348. if((data->progress.flags & PGRS_DL_SIZE_KNOWN) &&
  349. (data->progress.dlspeed > CURL_OFF_T_C(0))) {
  350. dlestimate = data->progress.size_dl / data->progress.dlspeed;
  351. if(data->progress.size_dl > CURL_OFF_T_C(10000))
  352. dlpercen = data->progress.downloaded /
  353. (data->progress.size_dl/CURL_OFF_T_C(100));
  354. else if(data->progress.size_dl > CURL_OFF_T_C(0))
  355. dlpercen = (data->progress.downloaded*100) /
  356. data->progress.size_dl;
  357. }
  358. /* Now figure out which of them is slower and use that one for the
  359. total estimate! */
  360. total_estimate = ulestimate>dlestimate?ulestimate:dlestimate;
  361. /* create the three time strings */
  362. time2str(time_left, total_estimate > 0?(total_estimate - timespent):0);
  363. time2str(time_total, total_estimate);
  364. time2str(time_spent, timespent);
  365. /* Get the total amount of data expected to get transferred */
  366. total_expected_transfer =
  367. (data->progress.flags & PGRS_UL_SIZE_KNOWN?
  368. data->progress.size_ul:data->progress.uploaded)+
  369. (data->progress.flags & PGRS_DL_SIZE_KNOWN?
  370. data->progress.size_dl:data->progress.downloaded);
  371. /* We have transferred this much so far */
  372. total_transfer = data->progress.downloaded + data->progress.uploaded;
  373. /* Get the percentage of data transferred so far */
  374. if(total_expected_transfer > CURL_OFF_T_C(10000))
  375. total_percen = total_transfer /
  376. (total_expected_transfer/CURL_OFF_T_C(100));
  377. else if(total_expected_transfer > CURL_OFF_T_C(0))
  378. total_percen = (total_transfer*100) / total_expected_transfer;
  379. fprintf(data->set.err,
  380. "\r"
  381. "%3" FORMAT_OFF_T " %s "
  382. "%3" FORMAT_OFF_T " %s "
  383. "%3" FORMAT_OFF_T " %s %s %s %s %s %s %s",
  384. total_percen, /* 3 letters */ /* total % */
  385. max5data(total_expected_transfer, max5[2]), /* total size */
  386. dlpercen, /* 3 letters */ /* rcvd % */
  387. max5data(data->progress.downloaded, max5[0]), /* rcvd size */
  388. ulpercen, /* 3 letters */ /* xfer % */
  389. max5data(data->progress.uploaded, max5[1]), /* xfer size */
  390. max5data(data->progress.dlspeed, max5[3]), /* avrg dl speed */
  391. max5data(data->progress.ulspeed, max5[4]), /* avrg ul speed */
  392. time_total, /* 8 letters */ /* total time */
  393. time_spent, /* 8 letters */ /* time spent */
  394. time_left, /* 8 letters */ /* time left */
  395. max5data(data->progress.current_speed, max5[5]) /* current speed */
  396. );
  397. /* we flush the output stream to make it appear as soon as possible */
  398. fflush(data->set.err);
  399. } /* !(data->progress.flags & PGRS_HIDE) */
  400. return 0;
  401. }