Tests about a simple python3 fastcgi runner using libfcgi and the Python-C API.
python
c
wsgi
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stats.c 7.8KB

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  1. #include "stats.h"
  2. static pyfcgi_stats_t pyfcgi_stats;
  3. static void pyfcgi_stats_add_sample(pyfcgi_stats_sample_t* samples, int sample)
  4. {
  5. samples->samples[samples->cur] = sample;
  6. samples->cur++;
  7. samples->cur %= PYFCGI_STATS_SZ;
  8. }
  9. int pyfcgi_stats_init()
  10. {
  11. struct sigaction act;
  12. struct itimerspec timeout;
  13. struct sigevent sev;
  14. memset(&pyfcgi_stats, 0, sizeof(pyfcgi_stats_t));
  15. sev.sigev_notify = SIGEV_SIGNAL;
  16. sev.sigev_signo = PYFCGI_STATS_SIGALRM;
  17. sev.sigev_value.sival_int = 0;
  18. if(timer_create(CLOCK_REALTIME, &sev, &(pyfcgi_stats.timerid)) < 0)
  19. {
  20. pyfcgi_log(LOG_ERR,
  21. "Unable to create timer for stats collecting : %s",
  22. strerror(errno));
  23. goto err;
  24. }
  25. act.sa_handler = pyfcgi_stats_collector;
  26. sigemptyset(&act.sa_mask);
  27. act.sa_flags = 0;
  28. act.sa_restorer = NULL;
  29. if(sigaction(PYFCGI_STATS_SIGALRM, &act, &(pyfcgi_stats.oldact)) < 0)
  30. {
  31. pyfcgi_log(LOG_ERR,
  32. "Unable to register signal handler for stats collecting : %s",
  33. strerror(errno));
  34. goto err_deltimer;
  35. }
  36. timeout.it_value.tv_sec = 1;
  37. timeout.it_value.tv_nsec = 0;
  38. timeout.it_interval = timeout.it_value;
  39. if(timer_settime(pyfcgi_stats.timerid, 0, &timeout, NULL) < 0)
  40. {
  41. pyfcgi_log(LOG_ERR,
  42. "Unable to start timer for stats collecting : %s",
  43. strerror(errno));
  44. goto err_sigrestore;
  45. }
  46. return 0;
  47. err_sigrestore:
  48. sigaction(SIGALRM, &(pyfcgi_stats.oldact), NULL);
  49. err_deltimer:
  50. timer_delete(pyfcgi_stats.timerid);
  51. err:
  52. memset(&pyfcgi_stats, 0, sizeof(pyfcgi_stats_t));
  53. return -1;
  54. }
  55. void pyfcgi_stats_collector(int signum)
  56. {
  57. int ret;
  58. pyfcgi_stats_t *stats;
  59. pyfcgi_stats_shm_t shm_data;
  60. stats = &pyfcgi_stats;
  61. stats->reqs.samples[stats->reqs.cur] = 0;
  62. while( !(ret = sem_trywait(PyFCGI_SEM(SEM_WREQS).sem)) )
  63. {
  64. stats->reqs.samples[stats->reqs.cur]++;
  65. }
  66. stats->reqs.cur++;
  67. stats->reqs.cur %= PYFCGI_STATS_SZ;
  68. if(pyfcgi_stats_get_shm(&shm_data) < 0)
  69. {
  70. kill(getpid(), SIGTERM);
  71. }
  72. pyfcgi_stats_add_sample(&(stats->wcount), shm_data.nworker);
  73. pyfcgi_stats_add_sample(&(stats->load),
  74. shm_data.nworker - shm_data.pool_load);
  75. return;
  76. }
  77. size_t pyfcgi_stats_format()
  78. {
  79. char uptime[80], since[80];
  80. char ds[18], hs[5], ms[5], ss[5];
  81. unsigned long diff, d;
  82. short s, m, h;
  83. struct tm *tm;
  84. tm = localtime(&PyFCGI_conf.context.uptime);
  85. if(!strftime(since, 80, "%F %H:%M:%S%z", tm))
  86. {
  87. pyfcgi_log(LOG_WARNING, "Date too long !");
  88. strcpy(since, "???");
  89. }
  90. diff = (unsigned long)difftime(time(NULL), PyFCGI_conf.context.uptime);
  91. s = diff%60;
  92. diff /= 60;
  93. m = diff % 60;
  94. diff /= 60;
  95. h = diff % 24;
  96. diff /=24;
  97. d = diff;
  98. if(d) { snprintf(ds, 18, "%02ldd ", d); }
  99. else { ds[0] = '\0'; }
  100. if(h || *ds) { snprintf(hs, 5, "%02dh ", h); }
  101. else { hs[0] = '\0'; }
  102. if(m || *hs) { snprintf(ms, 5, "%02dm ", m); }
  103. else { ms[0] = '\0'; }
  104. if(s || *ms) { snprintf(ss, 5, "%02ds ", s); }
  105. else { ss[0] = '\0'; }
  106. snprintf(uptime, 80, "%s%s%s%s", ds, hs, ms, ss);
  107. pyfcgi_stats.buff_ptr = 0;
  108. pyfcgi_stats_buffprintf("%s\nUptime : %s since %s\n",
  109. PACKAGE_STRING, uptime, since);
  110. // Request counter stats formating
  111. double avgs[4];
  112. int last_rs, ret;
  113. do
  114. {
  115. last_rs = pyfcgi_stats.reqs.cur;
  116. ret = pyfcgi_stats_avg(pyfcgi_stats.reqs.samples,
  117. &(pyfcgi_stats.reqs.cur), &last_rs, avgs);
  118. } while(ret < 0 && errno == EINTR);
  119. pyfcgi_stats_buffprintf("Requests stats :\n1s:%dr/s 1m:%.2fr/s 5m:%.2fr/s 10m:%.2fr/s 15m:%.2fr/s\n",
  120. last_rs, avgs[0], avgs[1], avgs[2], avgs[3]);
  121. // Worker counter stats formating
  122. do
  123. {
  124. last_rs = pyfcgi_stats.wcount.cur;
  125. pyfcgi_stats_avg(pyfcgi_stats.wcount.samples,&(pyfcgi_stats.wcount.cur),
  126. &(last_rs), avgs);
  127. } while(ret < 0 && errno == EINTR);
  128. pyfcgi_stats_buffprintf("Worker count :\n1s:%d 1m:%.2f 5m:%.2f 10m:%.2f 15m:%.2f\n",
  129. last_rs, avgs[0], avgs[1], avgs[2], avgs[3]);
  130. // Load stats formating
  131. do
  132. {
  133. last_rs = pyfcgi_stats.load.cur;
  134. pyfcgi_stats_avg(pyfcgi_stats.load.samples,&(pyfcgi_stats.load.cur),
  135. &(last_rs), avgs);
  136. } while(ret < 0 && errno == EINTR);
  137. pyfcgi_stats_buffprintf("Load average :\n1s:%d 1m:%.2f 5m:%.2f 10m:%.2f 15m:%.2f\n",
  138. last_rs, avgs[0], avgs[1], avgs[2], avgs[3]);
  139. return pyfcgi_stats.buff_ptr;
  140. }
  141. int pyfcgi_stats_avg(const int data[PYFCGI_STATS_SZ], int *idx_nxt, int *last,
  142. double avgs[4])
  143. {
  144. double r15, r10, r5, r1, rtmp;
  145. unsigned long stmp; // stores a 60s req sum
  146. int i, cur, idx, first;
  147. r15 = r10 = r5 = r1 = stmp = 0;
  148. first = *idx_nxt;
  149. //Block interrupt/ALARM ??
  150. for(i=0; i<PYFCGI_STATS_SZ; i++)
  151. {
  152. if(first != *idx_nxt)
  153. {
  154. errno = EINTR;
  155. return -1;
  156. }
  157. idx = (*idx_nxt- i - 1);
  158. idx = (idx<0)?PYFCGI_STATS_SZ + idx:idx;
  159. idx %= PYFCGI_STATS_SZ;
  160. cur = data[idx];
  161. if(!i || i%60)
  162. {
  163. stmp += cur;
  164. continue;
  165. }
  166. rtmp = (long double)stmp / 60;
  167. if(i==60) { r1 = rtmp; }
  168. if(i<=5*60) { r5 += rtmp; }
  169. if(i<=10*60) { r10 += rtmp; }
  170. if(i<=15*60) { r15 += rtmp; }
  171. stmp = cur;
  172. }
  173. r15 += (long double)stmp / 60;
  174. //Restore interrupt/ALARM ??
  175. r5 /= 5;
  176. r10 /= 10;
  177. r15 /= 15;
  178. *last = data[*idx_nxt-1];
  179. avgs[0] = r1;
  180. avgs[1] = r5;
  181. avgs[2] = r10;
  182. avgs[3] = r15;
  183. return 0;
  184. }
  185. int pyfcgi_stats_avg_const(const int data[PYFCGI_STATS_SZ], int *idx_nxt, int *last,
  186. double avgs[4])
  187. {
  188. double r15, r10, r5, r1, rtmp, dmax;
  189. unsigned long stmp; // stores a 60s req sum
  190. int i, cur, idx, first;
  191. int uptime, max;
  192. uptime = time(NULL) - PyFCGI_conf.context.uptime;
  193. max = (uptime > PYFCGI_STATS_SZ) ? PYFCGI_STATS_SZ:uptime;
  194. r15 = r10 = r5 = r1 = stmp = rtmp = 0;
  195. first = *idx_nxt;
  196. //Block interrupt/ALARM ??
  197. i = 0;
  198. do
  199. {
  200. if(first != *idx_nxt)
  201. {
  202. errno = EINTR;
  203. return -1;
  204. }
  205. idx = (*idx_nxt- i - 1);
  206. idx = (idx<0)?PYFCGI_STATS_SZ + idx:idx;
  207. idx %= PYFCGI_STATS_SZ;
  208. cur = data[idx];
  209. if((!i || i%60) && i < max-1)
  210. {
  211. stmp += cur;
  212. i++;
  213. continue;
  214. }
  215. rtmp = (long double)stmp / ((i%60)?i%60:60);
  216. if(i<=60) { r1 = rtmp; }
  217. else if(i%60) { rtmp = (double)rtmp / (60.0 / (i%60)); }
  218. if(i<=5*60) { r5 += rtmp; }
  219. if(i<=10*60) { r10 += rtmp; }
  220. if(i<=15*60) { r15 += rtmp; }
  221. stmp = cur;
  222. i++;
  223. }while(i<max);
  224. //Restore interrupt/ALARM ??
  225. *last = data[*idx_nxt-1];
  226. dmax = (max<=60)?1:(double)max/60;
  227. r5 /= (max >= 300)?5:dmax;
  228. r10 /= (max >= 600)?10:dmax;
  229. r15 /= (max >= 900)?15:dmax;
  230. avgs[0] = r1;
  231. avgs[1] = r5;
  232. avgs[2] = r10;
  233. avgs[3] = r15;
  234. return 0;
  235. }
  236. void pyfcgi_stats_buffprintf(const char *fmt, ...)
  237. {
  238. va_list ap;
  239. size_t fsz, left;
  240. while(1)
  241. {
  242. left = pyfcgi_stats.buff_len - pyfcgi_stats.buff_ptr;
  243. va_start(ap, fmt);
  244. fsz = vsnprintf(pyfcgi_stats.buff + pyfcgi_stats.buff_ptr,
  245. left, fmt, ap);
  246. va_end(ap);
  247. if(fsz >= left)
  248. {
  249. if(pyfcgi_stats_reqbuff(pyfcgi_stats.buff_ptr + fsz) < 0)
  250. {
  251. exit(PYFCGI_ERR);
  252. }
  253. continue;
  254. }
  255. pyfcgi_stats.buff_ptr += fsz;
  256. break;
  257. }
  258. }
  259. int pyfcgi_stats_reqbuff(size_t sz)
  260. {
  261. void *tmp;
  262. if(sz <= pyfcgi_stats.buff_len) { return 0; }
  263. sz = ((sz>>11)+1)<<11;
  264. if( !(tmp = realloc(pyfcgi_stats.buff, sz)) )
  265. {
  266. pyfcgi_log(LOG_ALERT, "Unable to reallocate stats buffer : %s",
  267. strerror(errno));
  268. return -1;
  269. }
  270. pyfcgi_stats.buff_len = sz;
  271. pyfcgi_stats.buff = tmp;
  272. return 0;
  273. }
  274. const char *pyfcgi_stats_buff(const char **buff, size_t* len)
  275. {
  276. *buff = pyfcgi_stats.buff;
  277. *len = pyfcgi_stats.buff_ptr;
  278. return *buff;
  279. }
  280. int pyfcgi_stats_get_shm(pyfcgi_stats_shm_t *res)
  281. {
  282. short retry;
  283. int err;
  284. struct timespec req;
  285. req.tv_sec = 0;
  286. req.tv_nsec = 10000000; //0.01s
  287. retry = 0;
  288. while(1)
  289. {
  290. if(sem_trywait(PyFCGI_SEM(SEM_STATS).sem) < 0)
  291. {
  292. err = errno;
  293. if(err == EAGAIN)
  294. {
  295. if(retry >= 5)
  296. {
  297. pyfcgi_log(LOG_ALERT,
  298. "Deadlock on SEM_STATS");
  299. return -1;
  300. }
  301. nanosleep(&req, NULL);
  302. continue;
  303. }
  304. pyfcgi_log(LOG_ALERT,
  305. "Unable to wait stats semaphore : %s",
  306. strerror(err));
  307. return -1;
  308. }
  309. break;
  310. }
  311. *res = *(pyfcgi_stats_shm_t*)PyFCGI_conf.shm.ptr;
  312. if(sem_post(PyFCGI_SEM(SEM_STATS).sem) < 0)
  313. {
  314. pyfcgi_log(LOG_ALERT, "Unable to post sem at shm update : %s",
  315. strerror(errno));
  316. return -1;
  317. }
  318. return 0;
  319. }