1 /*- 2 * Copyright (c) 2004, 2008, 2009 Silicon Graphics International Corp. 3 * All rights reserved. 4 * 5 * Redistribution and use in source and binary forms, with or without 6 * modification, are permitted provided that the following conditions 7 * are met: 8 * 1. Redistributions of source code must retain the above copyright 9 * notice, this list of conditions, and the following disclaimer, 10 * without modification. 11 * 2. Redistributions in binary form must reproduce at minimum a disclaimer 12 * substantially similar to the "NO WARRANTY" disclaimer below 13 * ("Disclaimer") and any redistribution must be conditioned upon 14 * including a substantially similar Disclaimer requirement for further 15 * binary redistribution. 16 * 17 * NO WARRANTY 18 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 19 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 20 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR 21 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 22 * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 23 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 24 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 25 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, 26 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING 27 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 28 * POSSIBILITY OF SUCH DAMAGES. 29 * 30 * $Id: //depot/users/kenm/FreeBSD-test2/usr.bin/ctlstat/ctlstat.c#4 $ 31 */ 32 /* 33 * CAM Target Layer statistics program 34 * 35 * Authors: Ken Merry <ken@FreeBSD.org>, Will Andrews <will@FreeBSD.org> 36 */ 37 38 #include <sys/cdefs.h> 39 __FBSDID("$FreeBSD$"); 40 41 #include <sys/ioctl.h> 42 #include <sys/types.h> 43 #include <sys/param.h> 44 #include <sys/time.h> 45 #include <sys/sysctl.h> 46 #include <sys/resource.h> 47 #include <sys/queue.h> 48 #include <sys/callout.h> 49 #include <stdint.h> 50 #include <stdio.h> 51 #include <stdlib.h> 52 #include <unistd.h> 53 #include <fcntl.h> 54 #include <getopt.h> 55 #include <string.h> 56 #include <errno.h> 57 #include <err.h> 58 #include <ctype.h> 59 #include <bitstring.h> 60 #include <cam/scsi/scsi_all.h> 61 #include <cam/ctl/ctl.h> 62 #include <cam/ctl/ctl_io.h> 63 #include <cam/ctl/ctl_scsi_all.h> 64 #include <cam/ctl/ctl_util.h> 65 #include <cam/ctl/ctl_backend.h> 66 #include <cam/ctl/ctl_ioctl.h> 67 68 /* 69 * The default amount of space we allocate for LUN storage space. We 70 * dynamically allocate more if needed. 71 */ 72 #define CTL_STAT_NUM_LUNS 30 73 74 /* 75 * The default number of LUN selection bits we allocate. This is large 76 * because we don't currently increase it if the user specifies a LUN 77 * number of 1024 or larger. 78 */ 79 #define CTL_STAT_LUN_BITS 1024L 80 81 static const char *ctlstat_opts = "Cc:Ddhjl:n:tw:"; 82 static const char *ctlstat_usage = "Usage: ctlstat [-CDdjht] [-l lunnum]" 83 "[-c count] [-n numdevs] [-w wait]\n"; 84 85 struct ctl_cpu_stats { 86 uint64_t user; 87 uint64_t nice; 88 uint64_t system; 89 uint64_t intr; 90 uint64_t idle; 91 }; 92 93 typedef enum { 94 CTLSTAT_MODE_STANDARD, 95 CTLSTAT_MODE_DUMP, 96 CTLSTAT_MODE_JSON, 97 } ctlstat_mode_types; 98 99 #define CTLSTAT_FLAG_CPU (1 << 0) 100 #define CTLSTAT_FLAG_HEADER (1 << 1) 101 #define CTLSTAT_FLAG_FIRST_RUN (1 << 2) 102 #define CTLSTAT_FLAG_TOTALS (1 << 3) 103 #define CTLSTAT_FLAG_DMA_TIME (1 << 4) 104 #define CTLSTAT_FLAG_LUN_TIME_VALID (1 << 5) 105 #define F_CPU(ctx) ((ctx)->flags & CTLSTAT_FLAG_CPU) 106 #define F_HDR(ctx) ((ctx)->flags & CTLSTAT_FLAG_HEADER) 107 #define F_FIRST(ctx) ((ctx)->flags & CTLSTAT_FLAG_FIRST_RUN) 108 #define F_TOTALS(ctx) ((ctx)->flags & CTLSTAT_FLAG_TOTALS) 109 #define F_DMA(ctx) ((ctx)->flags & CTLSTAT_FLAG_DMA_TIME) 110 #define F_LUNVAL(ctx) ((ctx)->flags & CTLSTAT_FLAG_LUN_TIME_VALID) 111 112 struct ctlstat_context { 113 ctlstat_mode_types mode; 114 int flags; 115 struct ctl_lun_io_stats *cur_lun_stats, *prev_lun_stats, 116 *tmp_lun_stats; 117 struct ctl_lun_io_stats cur_total_stats[3], prev_total_stats[3]; 118 struct timespec cur_time, prev_time; 119 struct ctl_cpu_stats cur_cpu, prev_cpu; 120 uint64_t cur_total_jiffies, prev_total_jiffies; 121 uint64_t cur_idle, prev_idle; 122 bitstr_t bit_decl(lun_mask, CTL_STAT_LUN_BITS); 123 int num_luns; 124 int numdevs; 125 int header_interval; 126 }; 127 128 #ifndef min 129 #define min(x,y) (((x) < (y)) ? (x) : (y)) 130 #endif 131 132 static void usage(int error); 133 static int getstats(int fd, int *num_luns, struct ctl_lun_io_stats **xlun_stats, 134 struct timespec *cur_time, int *lun_time_valid); 135 static int getcpu(struct ctl_cpu_stats *cpu_stats); 136 static void compute_stats(struct ctl_lun_io_stats *cur_stats, 137 struct ctl_lun_io_stats *prev_stats, 138 long double etime, long double *mbsec, 139 long double *kb_per_transfer, 140 long double *transfers_per_second, 141 long double *ms_per_transfer, 142 long double *ms_per_dma, 143 long double *dmas_per_second); 144 145 static void 146 usage(int error) 147 { 148 fputs(ctlstat_usage, error ? stderr : stdout); 149 } 150 151 static int 152 getstats(int fd, int *num_luns, struct ctl_lun_io_stats **xlun_stats, 153 struct timespec *cur_time, int *flags) 154 { 155 struct ctl_lun_io_stats *lun_stats; 156 struct ctl_stats stats; 157 int more_space_count; 158 159 more_space_count = 0; 160 161 if (*num_luns == 0) 162 *num_luns = CTL_STAT_NUM_LUNS; 163 164 lun_stats = *xlun_stats; 165 retry: 166 167 if (lun_stats == NULL) { 168 lun_stats = (struct ctl_lun_io_stats *)malloc( 169 sizeof(*lun_stats) * *num_luns); 170 } 171 172 memset(&stats, 0, sizeof(stats)); 173 stats.alloc_len = *num_luns * sizeof(*lun_stats); 174 memset(lun_stats, 0, stats.alloc_len); 175 stats.lun_stats = lun_stats; 176 177 if (ioctl(fd, CTL_GETSTATS, &stats) == -1) 178 err(1, "error returned from CTL_GETSTATS ioctl"); 179 180 switch (stats.status) { 181 case CTL_SS_OK: 182 break; 183 case CTL_SS_ERROR: 184 err(1, "CTL_SS_ERROR returned from CTL_GETSTATS ioctl"); 185 break; 186 case CTL_SS_NEED_MORE_SPACE: 187 if (more_space_count > 0) { 188 errx(1, "CTL_GETSTATS returned NEED_MORE_SPACE again"); 189 } 190 *num_luns = stats.num_luns; 191 free(lun_stats); 192 lun_stats = NULL; 193 more_space_count++; 194 goto retry; 195 break; /* NOTREACHED */ 196 default: 197 errx(1, "unknown status %d returned from CTL_GETSTATS ioctl", 198 stats.status); 199 break; 200 } 201 202 *xlun_stats = lun_stats; 203 *num_luns = stats.num_luns; 204 cur_time->tv_sec = stats.timestamp.tv_sec; 205 cur_time->tv_nsec = stats.timestamp.tv_nsec; 206 if (stats.flags & CTL_STATS_FLAG_TIME_VALID) 207 *flags |= CTLSTAT_FLAG_LUN_TIME_VALID; 208 else 209 *flags &= ~CTLSTAT_FLAG_LUN_TIME_VALID; 210 211 return (0); 212 } 213 214 static int 215 getcpu(struct ctl_cpu_stats *cpu_stats) 216 { 217 long cp_time[CPUSTATES]; 218 size_t cplen; 219 220 cplen = sizeof(cp_time); 221 222 if (sysctlbyname("kern.cp_time", &cp_time, &cplen, NULL, 0) == -1) { 223 warn("sysctlbyname(kern.cp_time...) failed"); 224 return (1); 225 } 226 227 cpu_stats->user = cp_time[CP_USER]; 228 cpu_stats->nice = cp_time[CP_NICE]; 229 cpu_stats->system = cp_time[CP_SYS]; 230 cpu_stats->intr = cp_time[CP_INTR]; 231 cpu_stats->idle = cp_time[CP_IDLE]; 232 233 return (0); 234 } 235 236 static void 237 compute_stats(struct ctl_lun_io_stats *cur_stats, 238 struct ctl_lun_io_stats *prev_stats, long double etime, 239 long double *mbsec, long double *kb_per_transfer, 240 long double *transfers_per_second, long double *ms_per_transfer, 241 long double *ms_per_dma, long double *dmas_per_second) 242 { 243 uint64_t total_bytes = 0, total_operations = 0, total_dmas = 0; 244 uint32_t port; 245 struct bintime total_time_bt, total_dma_bt; 246 struct timespec total_time_ts, total_dma_ts; 247 int i; 248 249 bzero(&total_time_bt, sizeof(total_time_bt)); 250 bzero(&total_dma_bt, sizeof(total_dma_bt)); 251 bzero(&total_time_ts, sizeof(total_time_ts)); 252 bzero(&total_dma_ts, sizeof(total_dma_ts)); 253 for (port = 0; port < CTL_MAX_PORTS; port++) { 254 for (i = 0; i < CTL_STATS_NUM_TYPES; i++) { 255 total_bytes += cur_stats->ports[port].bytes[i]; 256 total_operations += 257 cur_stats->ports[port].operations[i]; 258 total_dmas += cur_stats->ports[port].num_dmas[i]; 259 bintime_add(&total_time_bt, 260 &cur_stats->ports[port].time[i]); 261 bintime_add(&total_dma_bt, 262 &cur_stats->ports[port].dma_time[i]); 263 if (prev_stats != NULL) { 264 total_bytes -= 265 prev_stats->ports[port].bytes[i]; 266 total_operations -= 267 prev_stats->ports[port].operations[i]; 268 total_dmas -= 269 prev_stats->ports[port].num_dmas[i]; 270 bintime_sub(&total_time_bt, 271 &prev_stats->ports[port].time[i]); 272 bintime_sub(&total_dma_bt, 273 &prev_stats->ports[port].dma_time[i]); 274 } 275 } 276 } 277 278 *mbsec = total_bytes; 279 *mbsec /= 1024 * 1024; 280 if (etime > 0.0) 281 *mbsec /= etime; 282 else 283 *mbsec = 0; 284 *kb_per_transfer = total_bytes; 285 *kb_per_transfer /= 1024; 286 if (total_operations > 0) 287 *kb_per_transfer /= total_operations; 288 else 289 *kb_per_transfer = 0; 290 *transfers_per_second = total_operations; 291 *dmas_per_second = total_dmas; 292 if (etime > 0.0) { 293 *transfers_per_second /= etime; 294 *dmas_per_second /= etime; 295 } else { 296 *transfers_per_second = 0; 297 *dmas_per_second = 0; 298 } 299 300 bintime2timespec(&total_time_bt, &total_time_ts); 301 bintime2timespec(&total_dma_bt, &total_dma_ts); 302 if (total_operations > 0) { 303 /* 304 * Convert the timespec to milliseconds. 305 */ 306 *ms_per_transfer = total_time_ts.tv_sec * 1000; 307 *ms_per_transfer += total_time_ts.tv_nsec / 1000000; 308 *ms_per_transfer /= total_operations; 309 } else 310 *ms_per_transfer = 0; 311 312 if (total_dmas > 0) { 313 /* 314 * Convert the timespec to milliseconds. 315 */ 316 *ms_per_dma = total_dma_ts.tv_sec * 1000; 317 *ms_per_dma += total_dma_ts.tv_nsec / 1000000; 318 *ms_per_dma /= total_dmas; 319 } else 320 *ms_per_dma = 0; 321 } 322 323 /* The dump_stats() and json_stats() functions perform essentially the same 324 * purpose, but dump the statistics in different formats. JSON is more 325 * conducive to programming, however. 326 */ 327 328 #define PRINT_BINTIME(prefix, bt) \ 329 printf("%s %jd s %ju frac\n", prefix, (intmax_t)(bt).sec, \ 330 (uintmax_t)(bt).frac) 331 static const char *iotypes[] = {"NO IO", "READ", "WRITE"}; 332 333 static void 334 ctlstat_dump(struct ctlstat_context *ctx) { 335 int iotype, lun, port; 336 struct ctl_lun_io_stats *stats = ctx->cur_lun_stats; 337 338 for (lun = 0; lun < ctx->num_luns;lun++) { 339 printf("lun %d\n", lun); 340 for (port = 0; port < CTL_MAX_PORTS; port++) { 341 printf(" port %d\n", 342 stats[lun].ports[port].targ_port); 343 for (iotype = 0; iotype < CTL_STATS_NUM_TYPES; 344 iotype++) { 345 printf(" io type %d (%s)\n", iotype, 346 iotypes[iotype]); 347 printf(" bytes %ju\n", (uintmax_t) 348 stats[lun].ports[port].bytes[iotype]); 349 printf(" operations %ju\n", (uintmax_t) 350 stats[lun].ports[port].operations[iotype]); 351 PRINT_BINTIME(" io time", 352 stats[lun].ports[port].time[iotype]); 353 printf(" num dmas %ju\n", (uintmax_t) 354 stats[lun].ports[port].num_dmas[iotype]); 355 PRINT_BINTIME(" dma time", 356 stats[lun].ports[port].dma_time[iotype]); 357 } 358 } 359 } 360 } 361 362 #define JSON_BINTIME(prefix, bt) \ 363 printf("\"%s\":{\"sec\":%jd,\"frac\":%ju},", \ 364 prefix, (intmax_t)(bt).sec, (uintmax_t)(bt).frac) 365 366 static void 367 ctlstat_json(struct ctlstat_context *ctx) { 368 int iotype, lun, port; 369 struct ctl_lun_io_stats *stats = ctx->cur_lun_stats; 370 371 printf("{\"luns\":["); 372 for (lun = 0; lun < ctx->num_luns; lun++) { 373 printf("{\"ports\":["); 374 for (port = 0; port < CTL_MAX_PORTS;port++) { 375 printf("{\"num\":%d,\"io\":[", 376 stats[lun].ports[port].targ_port); 377 for (iotype = 0; iotype < CTL_STATS_NUM_TYPES; 378 iotype++) { 379 printf("{\"type\":\"%s\",", iotypes[iotype]); 380 printf("\"bytes\":%ju,", (uintmax_t)stats[ 381 lun].ports[port].bytes[iotype]); 382 printf("\"operations\":%ju,", (uintmax_t)stats[ 383 lun].ports[port].operations[iotype]); 384 JSON_BINTIME("io time", 385 stats[lun].ports[port].time[iotype]); 386 JSON_BINTIME("dma time", 387 stats[lun].ports[port].dma_time[iotype]); 388 printf("\"num dmas\":%ju}", (uintmax_t) 389 stats[lun].ports[port].num_dmas[iotype]); 390 if (iotype < (CTL_STATS_NUM_TYPES - 1)) 391 printf(","); /* continue io array */ 392 } 393 printf("]}"); /* close port */ 394 if (port < (CTL_MAX_PORTS - 1)) 395 printf(","); /* continue port array */ 396 } 397 printf("]}"); /* close lun */ 398 if (lun < (ctx->num_luns - 1)) 399 printf(","); /* continue lun array */ 400 } 401 printf("]}"); /* close luns and toplevel */ 402 } 403 404 static void 405 ctlstat_standard(struct ctlstat_context *ctx) { 406 long double etime; 407 uint64_t delta_jiffies, delta_idle; 408 uint32_t port; 409 long double cpu_percentage; 410 int i; 411 int j; 412 413 cpu_percentage = 0; 414 415 if (F_CPU(ctx) && (getcpu(&ctx->cur_cpu) != 0)) 416 errx(1, "error returned from getcpu()"); 417 418 etime = ctx->cur_time.tv_sec - ctx->prev_time.tv_sec + 419 (ctx->prev_time.tv_nsec - ctx->cur_time.tv_nsec) * 1e-9; 420 421 if (F_CPU(ctx)) { 422 ctx->prev_total_jiffies = ctx->cur_total_jiffies; 423 ctx->cur_total_jiffies = ctx->cur_cpu.user + 424 ctx->cur_cpu.nice + ctx->cur_cpu.system + 425 ctx->cur_cpu.intr + ctx->cur_cpu.idle; 426 delta_jiffies = ctx->cur_total_jiffies; 427 if (F_FIRST(ctx) == 0) 428 delta_jiffies -= ctx->prev_total_jiffies; 429 ctx->prev_idle = ctx->cur_idle; 430 ctx->cur_idle = ctx->cur_cpu.idle; 431 delta_idle = ctx->cur_idle - ctx->prev_idle; 432 433 cpu_percentage = delta_jiffies - delta_idle; 434 cpu_percentage /= delta_jiffies; 435 cpu_percentage *= 100; 436 } 437 438 if (F_HDR(ctx)) { 439 ctx->header_interval--; 440 if (ctx->header_interval <= 0) { 441 int hdr_devs; 442 443 hdr_devs = 0; 444 445 if (F_TOTALS(ctx)) { 446 fprintf(stdout, "%s System Read %s" 447 "System Write %sSystem Total%s\n", 448 (F_LUNVAL(ctx) != 0) ? " " : "", 449 (F_LUNVAL(ctx) != 0) ? " " : "", 450 (F_LUNVAL(ctx) != 0) ? " " : "", 451 (F_CPU(ctx)) ? " CPU" : ""); 452 hdr_devs = 3; 453 } else { 454 if (F_CPU(ctx)) 455 fprintf(stdout, " CPU "); 456 for (i = 0; i < min(CTL_STAT_LUN_BITS, 457 ctx->num_luns); i++) { 458 int lun; 459 460 /* 461 * Obviously this won't work with 462 * LUN numbers greater than a signed 463 * integer. 464 */ 465 lun = (int)ctx->cur_lun_stats[i 466 ].lun_number; 467 468 if (bit_test(ctx->lun_mask, lun) == 0) 469 continue; 470 fprintf(stdout, "%15.6s%d %s", 471 "lun", lun, 472 (F_LUNVAL(ctx) != 0) ? " " : ""); 473 hdr_devs++; 474 } 475 fprintf(stdout, "\n"); 476 } 477 for (i = 0; i < hdr_devs; i++) 478 fprintf(stdout, "%s %sKB/t %s MB/s ", 479 ((F_CPU(ctx) != 0) && (i == 0) && 480 (F_TOTALS(ctx) == 0)) ? " " : "", 481 (F_LUNVAL(ctx) != 0) ? " ms " : "", 482 (F_DMA(ctx) == 0) ? "tps" : "dps"); 483 fprintf(stdout, "\n"); 484 ctx->header_interval = 20; 485 } 486 } 487 488 if (F_TOTALS(ctx) != 0) { 489 long double mbsec[3]; 490 long double kb_per_transfer[3]; 491 long double transfers_per_sec[3]; 492 long double ms_per_transfer[3]; 493 long double ms_per_dma[3]; 494 long double dmas_per_sec[3]; 495 496 for (i = 0; i < 3; i++) 497 ctx->prev_total_stats[i] = ctx->cur_total_stats[i]; 498 499 memset(&ctx->cur_total_stats, 0, sizeof(ctx->cur_total_stats)); 500 501 /* Use macros to make the next loop more readable. */ 502 #define ADD_STATS_BYTES(st, p, i, j) \ 503 ctx->cur_total_stats[st].ports[p].bytes[j] += \ 504 ctx->cur_lun_stats[i].ports[p].bytes[j] 505 #define ADD_STATS_OPERATIONS(st, p, i, j) \ 506 ctx->cur_total_stats[st].ports[p].operations[j] += \ 507 ctx->cur_lun_stats[i].ports[p].operations[j] 508 #define ADD_STATS_NUM_DMAS(st, p, i, j) \ 509 ctx->cur_total_stats[st].ports[p].num_dmas[j] += \ 510 ctx->cur_lun_stats[i].ports[p].num_dmas[j] 511 #define ADD_STATS_TIME(st, p, i, j) \ 512 bintime_add(&ctx->cur_total_stats[st].ports[p].time[j], \ 513 &ctx->cur_lun_stats[i].ports[p].time[j]) 514 #define ADD_STATS_DMA_TIME(st, p, i, j) \ 515 bintime_add(&ctx->cur_total_stats[st].ports[p].dma_time[j], \ 516 &ctx->cur_lun_stats[i].ports[p].dma_time[j]) 517 518 for (i = 0; i < ctx->num_luns; i++) { 519 for (port = 0; port < CTL_MAX_PORTS; port++) { 520 for (j = 0; j < CTL_STATS_NUM_TYPES; j++) { 521 ADD_STATS_BYTES(2, port, i, j); 522 ADD_STATS_OPERATIONS(2, port, i, j); 523 ADD_STATS_NUM_DMAS(2, port, i, j); 524 ADD_STATS_TIME(2, port, i, j); 525 ADD_STATS_DMA_TIME(2, port, i, j); 526 } 527 ADD_STATS_BYTES(0, port, i, CTL_STATS_READ); 528 ADD_STATS_OPERATIONS(0, port, i, 529 CTL_STATS_READ); 530 ADD_STATS_NUM_DMAS(0, port, i, CTL_STATS_READ); 531 ADD_STATS_TIME(0, port, i, CTL_STATS_READ); 532 ADD_STATS_DMA_TIME(0, port, i, CTL_STATS_READ); 533 534 ADD_STATS_BYTES(1, port, i, CTL_STATS_WRITE); 535 ADD_STATS_OPERATIONS(1, port, i, 536 CTL_STATS_WRITE); 537 ADD_STATS_NUM_DMAS(1, port, i, CTL_STATS_WRITE); 538 ADD_STATS_TIME(1, port, i, CTL_STATS_WRITE); 539 ADD_STATS_DMA_TIME(1, port, i, CTL_STATS_WRITE); 540 } 541 } 542 543 for (i = 0; i < 3; i++) { 544 compute_stats(&ctx->cur_total_stats[i], 545 F_FIRST(ctx) ? NULL : &ctx->prev_total_stats[i], 546 etime, &mbsec[i], &kb_per_transfer[i], 547 &transfers_per_sec[i], 548 &ms_per_transfer[i], &ms_per_dma[i], 549 &dmas_per_sec[i]); 550 if (F_DMA(ctx) != 0) 551 fprintf(stdout, " %2.2Lf", 552 ms_per_dma[i]); 553 else if (F_LUNVAL(ctx) != 0) 554 fprintf(stdout, " %2.2Lf", 555 ms_per_transfer[i]); 556 fprintf(stdout, " %5.2Lf %3.0Lf %5.2Lf ", 557 kb_per_transfer[i], 558 (F_DMA(ctx) == 0) ? transfers_per_sec[i] : 559 dmas_per_sec[i], mbsec[i]); 560 } 561 if (F_CPU(ctx)) 562 fprintf(stdout, " %5.1Lf%%", cpu_percentage); 563 } else { 564 if (F_CPU(ctx)) 565 fprintf(stdout, "%5.1Lf%% ", cpu_percentage); 566 567 for (i = 0; i < min(CTL_STAT_LUN_BITS, ctx->num_luns); i++) { 568 long double mbsec, kb_per_transfer; 569 long double transfers_per_sec; 570 long double ms_per_transfer; 571 long double ms_per_dma; 572 long double dmas_per_sec; 573 574 if (bit_test(ctx->lun_mask, 575 (int)ctx->cur_lun_stats[i].lun_number) == 0) 576 continue; 577 compute_stats(&ctx->cur_lun_stats[i], F_FIRST(ctx) ? 578 NULL : &ctx->prev_lun_stats[i], etime, 579 &mbsec, &kb_per_transfer, 580 &transfers_per_sec, &ms_per_transfer, 581 &ms_per_dma, &dmas_per_sec); 582 if (F_DMA(ctx)) 583 fprintf(stdout, " %2.2Lf", 584 ms_per_dma); 585 else if (F_LUNVAL(ctx) != 0) 586 fprintf(stdout, " %2.2Lf", 587 ms_per_transfer); 588 fprintf(stdout, " %5.2Lf %3.0Lf %5.2Lf ", 589 kb_per_transfer, (F_DMA(ctx) == 0) ? 590 transfers_per_sec : dmas_per_sec, mbsec); 591 } 592 } 593 } 594 595 int 596 main(int argc, char **argv) 597 { 598 int c; 599 int count, waittime; 600 int set_lun; 601 int fd, retval; 602 struct ctlstat_context ctx; 603 604 /* default values */ 605 retval = 0; 606 waittime = 1; 607 count = -1; 608 memset(&ctx, 0, sizeof(ctx)); 609 ctx.numdevs = 3; 610 ctx.mode = CTLSTAT_MODE_STANDARD; 611 ctx.flags |= CTLSTAT_FLAG_CPU; 612 ctx.flags |= CTLSTAT_FLAG_FIRST_RUN; 613 ctx.flags |= CTLSTAT_FLAG_HEADER; 614 615 while ((c = getopt(argc, argv, ctlstat_opts)) != -1) { 616 switch (c) { 617 case 'C': 618 ctx.flags &= ~CTLSTAT_FLAG_CPU; 619 break; 620 case 'c': 621 count = atoi(optarg); 622 break; 623 case 'd': 624 ctx.flags |= CTLSTAT_FLAG_DMA_TIME; 625 break; 626 case 'D': 627 ctx.mode = CTLSTAT_MODE_DUMP; 628 waittime = 30; 629 break; 630 case 'h': 631 ctx.flags &= ~CTLSTAT_FLAG_HEADER; 632 break; 633 case 'j': 634 ctx.mode = CTLSTAT_MODE_JSON; 635 waittime = 30; 636 break; 637 case 'l': { 638 int cur_lun; 639 640 cur_lun = atoi(optarg); 641 if (cur_lun > CTL_STAT_LUN_BITS) 642 errx(1, "Invalid LUN number %d", cur_lun); 643 644 bit_ffs(ctx.lun_mask, CTL_STAT_LUN_BITS, &set_lun); 645 if (set_lun == -1) 646 ctx.numdevs = 1; 647 else 648 ctx.numdevs++; 649 bit_set(ctx.lun_mask, cur_lun); 650 break; 651 } 652 case 'n': 653 ctx.numdevs = atoi(optarg); 654 break; 655 case 't': 656 ctx.flags |= CTLSTAT_FLAG_TOTALS; 657 ctx.numdevs = 3; 658 break; 659 case 'w': 660 waittime = atoi(optarg); 661 break; 662 default: 663 retval = 1; 664 usage(retval); 665 exit(retval); 666 break; 667 } 668 } 669 670 bit_ffs(ctx.lun_mask, CTL_STAT_LUN_BITS, &set_lun); 671 672 if ((F_TOTALS(&ctx)) 673 && (set_lun != -1)) { 674 errx(1, "Total Mode (-t) is incompatible with individual " 675 "LUN mode (-l)"); 676 } else if (set_lun == -1) { 677 /* 678 * Note that this just selects the first N LUNs to display, 679 * but at this point we have no knoweledge of which LUN 680 * numbers actually exist. So we may select LUNs that 681 * aren't there. 682 */ 683 bit_nset(ctx.lun_mask, 0, min(ctx.numdevs - 1, 684 CTL_STAT_LUN_BITS - 1)); 685 } 686 687 if ((fd = open(CTL_DEFAULT_DEV, O_RDWR)) == -1) 688 err(1, "cannot open %s", CTL_DEFAULT_DEV); 689 690 for (;count != 0;) { 691 ctx.tmp_lun_stats = ctx.prev_lun_stats; 692 ctx.prev_lun_stats = ctx.cur_lun_stats; 693 ctx.cur_lun_stats = ctx.tmp_lun_stats; 694 ctx.prev_time = ctx.cur_time; 695 ctx.prev_cpu = ctx.cur_cpu; 696 if (getstats(fd, &ctx.num_luns, &ctx.cur_lun_stats, 697 &ctx.cur_time, &ctx.flags) != 0) 698 errx(1, "error returned from getstats()"); 699 700 switch(ctx.mode) { 701 case CTLSTAT_MODE_STANDARD: 702 ctlstat_standard(&ctx); 703 break; 704 case CTLSTAT_MODE_DUMP: 705 ctlstat_dump(&ctx); 706 break; 707 case CTLSTAT_MODE_JSON: 708 ctlstat_json(&ctx); 709 break; 710 default: 711 break; 712 } 713 714 fprintf(stdout, "\n"); 715 ctx.flags &= ~CTLSTAT_FLAG_FIRST_RUN; 716 if (count != 1) 717 sleep(waittime); 718 if (count > 0) 719 count--; 720 } 721 722 exit (retval); 723 } 724 725 /* 726 * vim: ts=8 727 */ 728