22542eca18
function old new delta vgetopt32 1318 1392 +74 runsvdir_main 703 713 +10 bb_make_directory 423 425 +2 collect_cpu 546 545 -1 opt_chars 3 - -3 opt_complementary 4 - -4 tftpd_main 567 562 -5 ntp_init 476 471 -5 zcip_main 1266 1256 -10 xxd_main 428 418 -10 whois_main 140 130 -10 who_main 463 453 -10 which_main 212 202 -10 wget_main 2535 2525 -10 watchdog_main 291 281 -10 watch_main 222 212 -10 vlock_main 399 389 -10 uuencode_main 332 322 -10 uudecode_main 316 306 -10 unlink_main 45 35 -10 udhcpd_main 1482 1472 -10 udhcpc_main 2762 2752 -10 tune2fs_main 290 280 -10 tunctl_main 366 356 -10 truncate_main 218 208 -10 tr_main 518 508 -10 time_main 1134 1124 -10 tftp_main 286 276 -10 telnetd_main 1873 1863 -10 tcpudpsvd_main 1785 1775 -10 taskset_main 521 511 -10 tar_main 1009 999 -10 tail_main 1644 1634 -10 syslogd_main 1967 1957 -10 switch_root_main 368 358 -10 svlogd_main 1454 1444 -10 sv 1296 1286 -10 stat_main 104 94 -10 start_stop_daemon_main 1028 1018 -10 split_main 542 532 -10 sort_main 796 786 -10 slattach_main 624 614 -10 shuf_main 504 494 -10 setsid_main 96 86 -10 setserial_main 1132 1122 -10 setfont_main 388 378 -10 setconsole_main 78 68 -10 sendmail_main 1209 1199 -10 sed_main 677 667 -10 script_main 1077 1067 -10 run_parts_main 325 315 -10 rtcwake_main 454 444 -10 rm_main 175 165 -10 reformime_main 119 109 -10 readlink_main 123 113 -10 rdate_main 246 236 -10 pwdx_main 189 179 -10 pstree_main 317 307 -10 pscan_main 663 653 -10 popmaildir_main 818 808 -10 pmap_main 80 70 -10 nc_main 1042 1032 -10 mv_main 558 548 -10 mountpoint_main 477 467 -10 mount_main 1264 1254 -10 modprobe_main 768 758 -10 modinfo_main 333 323 -10 mktemp_main 200 190 -10 mkswap_main 324 314 -10 mkfs_vfat_main 1489 1479 -10 microcom_main 715 705 -10 md5_sha1_sum_main 521 511 -10 man_main 867 857 -10 makedevs_main 1052 1042 -10 ls_main 563 553 -10 losetup_main 432 422 -10 loadfont_main 89 79 -10 ln_main 524 514 -10 link_main 75 65 -10 ipcalc_main 544 534 -10 iostat_main 2397 2387 -10 install_main 768 758 -10 id_main 480 470 -10 i2cset_main 1239 1229 -10 i2cget_main 380 370 -10 i2cdump_main 1482 1472 -10 i2cdetect_main 682 672 -10 hwclock_main 406 396 -10 httpd_main 741 731 -10 grep_main 837 827 -10 getty_main 1559 1549 -10 fuser_main 297 287 -10 ftpgetput_main 345 335 -10 ftpd_main 2232 2222 -10 fstrim_main 251 241 -10 fsfreeze_main 77 67 -10 fsck_minix_main 2921 2911 -10 flock_main 314 304 -10 flashcp_main 740 730 -10 flash_eraseall_main 833 823 -10 fdformat_main 532 522 -10 expand_main 680 670 -10 eject_main 335 325 -10 dumpleases_main 630 620 -10 du_main 314 304 -10 dos2unix_main 441 431 -10 diff_main 1350 1340 -10 df_main 1064 1054 -10 date_main 1095 1085 -10 cut_main 961 951 -10 cryptpw_main 228 218 -10 crontab_main 575 565 -10 crond_main 1149 1139 -10 cp_main 370 360 -10 common_traceroute_main 3834 3824 -10 common_ping_main 1767 1757 -10 comm_main 239 229 -10 cmp_main 655 645 -10 chrt_main 379 369 -10 chpst_main 704 694 -10 chpasswd_main 308 298 -10 chown_main 171 161 -10 chmod_main 158 148 -10 cat_main 428 418 -10 bzip2_main 120 110 -10 blkdiscard_main 264 254 -10 base64_main 221 211 -10 arping_main 1665 1655 -10 ar_main 556 546 -10 adjtimex_main 406 396 -10 adduser_main 882 872 -10 addgroup_main 411 401 -10 acpid_main 1198 1188 -10 optstring 11 - -11 opt_string 18 - -18 OPT_STR 25 - -25 ubi_tools_main 1288 1258 -30 ls_options 31 - -31 ------------------------------------------------------------------------------ (add/remove: 0/6 grow/shrink: 3/129 up/down: 86/-1383) Total: -1297 bytes text data bss dec hex filename 915428 485 6876 922789 e14a5 busybox_old 914629 485 6872 921986 e1182 busybox_unstripped Signed-off-by: Denys Vlasenko <vda.linux@googlemail.com>
467 lines
14 KiB
C
467 lines
14 KiB
C
/* vi: set sw=4 ts=4: */
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/* 'time' utility to display resource usage of processes.
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Copyright (C) 1990, 91, 92, 93, 96 Free Software Foundation, Inc.
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Licensed under GPLv2, see file LICENSE in this source tree.
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*/
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/* Originally written by David Keppel <pardo@cs.washington.edu>.
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Heavily modified by David MacKenzie <djm@gnu.ai.mit.edu>.
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Heavily modified for busybox by Erik Andersen <andersen@codepoet.org>
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*/
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//config:config TIME
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//config: bool "time (7 kb)"
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//config: default y
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//config: help
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//config: The time command runs the specified program with the given arguments.
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//config: When the command finishes, time writes a message to standard output
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//config: giving timing statistics about this program run.
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//applet:IF_TIME(APPLET(time, BB_DIR_USR_BIN, BB_SUID_DROP))
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//kbuild:lib-$(CONFIG_TIME) += time.o
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//usage:#define time_trivial_usage
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//usage: "[-vpa] [-o FILE] PROG ARGS"
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//usage:#define time_full_usage "\n\n"
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//usage: "Run PROG, display resource usage when it exits\n"
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//usage: "\n -v Verbose"
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//usage: "\n -p POSIX output format"
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//usage: "\n -f FMT Custom format"
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//usage: "\n -o FILE Write result to FILE"
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//usage: "\n -a Append (else overwrite)"
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#include "libbb.h"
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#include <sys/resource.h> /* getrusage */
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/* Information on the resources used by a child process. */
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typedef struct {
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int waitstatus;
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struct rusage ru;
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unsigned elapsed_ms; /* Wallclock time of process. */
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} resource_t;
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/* msec = milliseconds = 1/1,000 (1*10e-3) second.
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usec = microseconds = 1/1,000,000 (1*10e-6) second. */
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#define UL unsigned long
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static const char default_format[] ALIGN1 = "real\t%E\nuser\t%u\nsys\t%T";
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/* The output format for the -p option .*/
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static const char posix_format[] ALIGN1 = "real %e\nuser %U\nsys %S";
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/* Format string for printing all statistics verbosely.
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Keep this output to 24 lines so users on terminals can see it all.*/
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static const char long_format[] ALIGN1 =
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"\tCommand being timed: \"%C\"\n"
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"\tUser time (seconds): %U\n"
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"\tSystem time (seconds): %S\n"
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"\tPercent of CPU this job got: %P\n"
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"\tElapsed (wall clock) time (h:mm:ss or m:ss): %E\n"
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"\tAverage shared text size (kbytes): %X\n"
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"\tAverage unshared data size (kbytes): %D\n"
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"\tAverage stack size (kbytes): %p\n"
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"\tAverage total size (kbytes): %K\n"
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"\tMaximum resident set size (kbytes): %M\n"
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"\tAverage resident set size (kbytes): %t\n"
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"\tMajor (requiring I/O) page faults: %F\n"
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"\tMinor (reclaiming a frame) page faults: %R\n"
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"\tVoluntary context switches: %w\n"
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"\tInvoluntary context switches: %c\n"
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"\tSwaps: %W\n"
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"\tFile system inputs: %I\n"
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"\tFile system outputs: %O\n"
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"\tSocket messages sent: %s\n"
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"\tSocket messages received: %r\n"
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"\tSignals delivered: %k\n"
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"\tPage size (bytes): %Z\n"
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"\tExit status: %x";
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/* Wait for and fill in data on child process PID.
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Return 0 on error, 1 if ok. */
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/* pid_t is short on BSDI, so don't try to promote it. */
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static void resuse_end(pid_t pid, resource_t *resp)
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{
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pid_t caught;
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/* Ignore signals, but don't ignore the children. When wait3
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* returns the child process, set the time the command finished. */
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while ((caught = wait3(&resp->waitstatus, 0, &resp->ru)) != pid) {
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if (caught == -1 && errno != EINTR) {
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bb_perror_msg("wait");
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return;
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}
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}
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resp->elapsed_ms = monotonic_ms() - resp->elapsed_ms;
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}
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static void printargv(char *const *argv)
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{
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const char *fmt = " %s" + 1;
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do {
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printf(fmt, *argv);
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fmt = " %s";
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} while (*++argv);
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}
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/* Return the number of kilobytes corresponding to a number of pages PAGES.
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(Actually, we use it to convert pages*ticks into kilobytes*ticks.)
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Try to do arithmetic so that the risk of overflow errors is minimized.
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This is funky since the pagesize could be less than 1K.
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Note: Some machines express getrusage statistics in terms of K,
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others in terms of pages. */
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static unsigned long ptok(const unsigned pagesize, const unsigned long pages)
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{
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unsigned long tmp;
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/* Conversion. */
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if (pages > (LONG_MAX / pagesize)) { /* Could overflow. */
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tmp = pages / 1024; /* Smaller first, */
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return tmp * pagesize; /* then larger. */
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}
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/* Could underflow. */
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tmp = pages * pagesize; /* Larger first, */
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return tmp / 1024; /* then smaller. */
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}
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/* summarize: Report on the system use of a command.
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Print the FMT argument except that '%' sequences
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have special meaning, and '\n' and '\t' are translated into
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newline and tab, respectively, and '\\' is translated into '\'.
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The character following a '%' can be:
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(* means the tcsh time builtin also recognizes it)
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% == a literal '%'
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C == command name and arguments
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* D == average unshared data size in K (ru_idrss+ru_isrss)
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* E == elapsed real (wall clock) time in [hour:]min:sec
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* F == major page faults (required physical I/O) (ru_majflt)
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* I == file system inputs (ru_inblock)
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* K == average total mem usage (ru_idrss+ru_isrss+ru_ixrss)
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* M == maximum resident set size in K (ru_maxrss)
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* O == file system outputs (ru_oublock)
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* P == percent of CPU this job got (total cpu time / elapsed time)
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* R == minor page faults (reclaims; no physical I/O involved) (ru_minflt)
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* S == system (kernel) time (seconds) (ru_stime)
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* T == system time in [hour:]min:sec
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* U == user time (seconds) (ru_utime)
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* u == user time in [hour:]min:sec
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* W == times swapped out (ru_nswap)
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* X == average amount of shared text in K (ru_ixrss)
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Z == page size
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* c == involuntary context switches (ru_nivcsw)
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e == elapsed real time in seconds
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* k == signals delivered (ru_nsignals)
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p == average unshared stack size in K (ru_isrss)
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* r == socket messages received (ru_msgrcv)
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* s == socket messages sent (ru_msgsnd)
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t == average resident set size in K (ru_idrss)
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* w == voluntary context switches (ru_nvcsw)
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x == exit status of command
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Various memory usages are found by converting from page-seconds
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to kbytes by multiplying by the page size, dividing by 1024,
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and dividing by elapsed real time.
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FMT is the format string, interpreted as described above.
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COMMAND is the command and args that are being summarized.
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RESP is resource information on the command. */
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#ifndef TICKS_PER_SEC
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#define TICKS_PER_SEC 100
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#endif
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static void summarize(const char *fmt, char **command, resource_t *resp)
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{
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unsigned vv_ms; /* Elapsed virtual (CPU) milliseconds */
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unsigned cpu_ticks; /* Same, in "CPU ticks" */
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unsigned pagesize = getpagesize();
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/* Impossible: we do not use WUNTRACED flag in wait()...
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if (WIFSTOPPED(resp->waitstatus))
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printf("Command stopped by signal %u\n",
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WSTOPSIG(resp->waitstatus));
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else */
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if (WIFSIGNALED(resp->waitstatus))
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printf("Command terminated by signal %u\n",
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WTERMSIG(resp->waitstatus));
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else if (WIFEXITED(resp->waitstatus) && WEXITSTATUS(resp->waitstatus))
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printf("Command exited with non-zero status %u\n",
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WEXITSTATUS(resp->waitstatus));
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vv_ms = (resp->ru.ru_utime.tv_sec + resp->ru.ru_stime.tv_sec) * 1000
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+ (resp->ru.ru_utime.tv_usec + resp->ru.ru_stime.tv_usec) / 1000;
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#if (1000 / TICKS_PER_SEC) * TICKS_PER_SEC == 1000
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/* 1000 is exactly divisible by TICKS_PER_SEC (typical) */
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cpu_ticks = vv_ms / (1000 / TICKS_PER_SEC);
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#else
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cpu_ticks = vv_ms * (unsigned long long)TICKS_PER_SEC / 1000;
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#endif
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if (!cpu_ticks) cpu_ticks = 1; /* we divide by it, must be nonzero */
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while (*fmt) {
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/* Handle leading literal part */
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int n = strcspn(fmt, "%\\");
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if (n) {
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printf("%.*s", n, fmt);
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fmt += n;
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continue;
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}
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switch (*fmt) {
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#ifdef NOT_NEEDED
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/* Handle literal char */
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/* Usually we optimize for size, but there is a limit
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* for everything. With this we do a lot of 1-byte writes */
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default:
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bb_putchar(*fmt);
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break;
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#endif
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case '%':
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switch (*++fmt) {
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#ifdef NOT_NEEDED_YET
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/* Our format strings do not have these */
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/* and we do not take format str from user */
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default:
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bb_putchar('%');
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/*FALLTHROUGH*/
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case '%':
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if (!*fmt) goto ret;
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bb_putchar(*fmt);
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break;
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#endif
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case 'C': /* The command that got timed. */
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printargv(command);
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break;
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case 'D': /* Average unshared data size. */
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printf("%lu",
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(ptok(pagesize, (UL) resp->ru.ru_idrss) +
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ptok(pagesize, (UL) resp->ru.ru_isrss)) / cpu_ticks);
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break;
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case 'E': { /* Elapsed real (wall clock) time. */
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unsigned seconds = resp->elapsed_ms / 1000;
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if (seconds >= 3600) /* One hour -> h:m:s. */
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printf("%uh %um %02us",
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seconds / 3600,
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(seconds % 3600) / 60,
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seconds % 60);
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else
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printf("%um %u.%02us", /* -> m:s. */
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seconds / 60,
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seconds % 60,
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(unsigned)(resp->elapsed_ms / 10) % 100);
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break;
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}
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case 'F': /* Major page faults. */
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printf("%lu", resp->ru.ru_majflt);
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break;
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case 'I': /* Inputs. */
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printf("%lu", resp->ru.ru_inblock);
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break;
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case 'K': /* Average mem usage == data+stack+text. */
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printf("%lu",
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(ptok(pagesize, (UL) resp->ru.ru_idrss) +
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ptok(pagesize, (UL) resp->ru.ru_isrss) +
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ptok(pagesize, (UL) resp->ru.ru_ixrss)) / cpu_ticks);
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break;
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case 'M': /* Maximum resident set size. */
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printf("%lu", ptok(pagesize, (UL) resp->ru.ru_maxrss));
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break;
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case 'O': /* Outputs. */
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printf("%lu", resp->ru.ru_oublock);
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break;
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case 'P': /* Percent of CPU this job got. */
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/* % cpu is (total cpu time)/(elapsed time). */
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if (resp->elapsed_ms > 0)
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printf("%u%%", (unsigned)(vv_ms * 100 / resp->elapsed_ms));
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else
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printf("?%%");
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break;
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case 'R': /* Minor page faults (reclaims). */
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printf("%lu", resp->ru.ru_minflt);
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break;
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case 'S': /* System time. */
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printf("%u.%02u",
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(unsigned)resp->ru.ru_stime.tv_sec,
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(unsigned)(resp->ru.ru_stime.tv_usec / 10000));
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break;
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case 'T': /* System time. */
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if (resp->ru.ru_stime.tv_sec >= 3600) /* One hour -> h:m:s. */
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printf("%uh %um %02us",
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(unsigned)(resp->ru.ru_stime.tv_sec / 3600),
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(unsigned)(resp->ru.ru_stime.tv_sec % 3600) / 60,
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(unsigned)(resp->ru.ru_stime.tv_sec % 60));
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else
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printf("%um %u.%02us", /* -> m:s. */
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(unsigned)(resp->ru.ru_stime.tv_sec / 60),
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(unsigned)(resp->ru.ru_stime.tv_sec % 60),
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(unsigned)(resp->ru.ru_stime.tv_usec / 10000));
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break;
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case 'U': /* User time. */
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printf("%u.%02u",
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(unsigned)resp->ru.ru_utime.tv_sec,
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(unsigned)(resp->ru.ru_utime.tv_usec / 10000));
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break;
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case 'u': /* User time. */
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if (resp->ru.ru_utime.tv_sec >= 3600) /* One hour -> h:m:s. */
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printf("%uh %um %02us",
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(unsigned)(resp->ru.ru_utime.tv_sec / 3600),
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(unsigned)(resp->ru.ru_utime.tv_sec % 3600) / 60,
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(unsigned)(resp->ru.ru_utime.tv_sec % 60));
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else
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printf("%um %u.%02us", /* -> m:s. */
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(unsigned)(resp->ru.ru_utime.tv_sec / 60),
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(unsigned)(resp->ru.ru_utime.tv_sec % 60),
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(unsigned)(resp->ru.ru_utime.tv_usec / 10000));
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break;
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case 'W': /* Times swapped out. */
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printf("%lu", resp->ru.ru_nswap);
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break;
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case 'X': /* Average shared text size. */
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printf("%lu", ptok(pagesize, (UL) resp->ru.ru_ixrss) / cpu_ticks);
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break;
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case 'Z': /* Page size. */
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printf("%u", pagesize);
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break;
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case 'c': /* Involuntary context switches. */
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printf("%lu", resp->ru.ru_nivcsw);
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break;
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case 'e': /* Elapsed real time in seconds. */
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printf("%u.%02u",
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(unsigned)resp->elapsed_ms / 1000,
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(unsigned)(resp->elapsed_ms / 10) % 100);
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break;
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case 'k': /* Signals delivered. */
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printf("%lu", resp->ru.ru_nsignals);
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break;
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case 'p': /* Average stack segment. */
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printf("%lu", ptok(pagesize, (UL) resp->ru.ru_isrss) / cpu_ticks);
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break;
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case 'r': /* Incoming socket messages received. */
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printf("%lu", resp->ru.ru_msgrcv);
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break;
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case 's': /* Outgoing socket messages sent. */
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printf("%lu", resp->ru.ru_msgsnd);
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break;
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case 't': /* Average resident set size. */
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printf("%lu", ptok(pagesize, (UL) resp->ru.ru_idrss) / cpu_ticks);
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break;
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case 'w': /* Voluntary context switches. */
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printf("%lu", resp->ru.ru_nvcsw);
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break;
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case 'x': /* Exit status. */
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printf("%u", WEXITSTATUS(resp->waitstatus));
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break;
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}
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break;
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#ifdef NOT_NEEDED_YET
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case '\\': /* Format escape. */
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switch (*++fmt) {
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default:
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bb_putchar('\\');
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/*FALLTHROUGH*/
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case '\\':
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if (!*fmt) goto ret;
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bb_putchar(*fmt);
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break;
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case 't':
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bb_putchar('\t');
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break;
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case 'n':
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bb_putchar('\n');
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break;
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}
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break;
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#endif
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}
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++fmt;
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}
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/* ret: */
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bb_putchar('\n');
|
|
}
|
|
|
|
/* Run command CMD and return statistics on it.
|
|
Put the statistics in *RESP. */
|
|
static void run_command(char *const *cmd, resource_t *resp)
|
|
{
|
|
pid_t pid;
|
|
void (*interrupt_signal)(int);
|
|
void (*quit_signal)(int);
|
|
|
|
resp->elapsed_ms = monotonic_ms();
|
|
pid = xvfork();
|
|
if (pid == 0) {
|
|
/* Child */
|
|
BB_EXECVP_or_die((char**)cmd);
|
|
}
|
|
|
|
/* Have signals kill the child but not self (if possible). */
|
|
//TODO: just block all sigs? and re-enable them in the very end in main?
|
|
interrupt_signal = signal(SIGINT, SIG_IGN);
|
|
quit_signal = signal(SIGQUIT, SIG_IGN);
|
|
|
|
resuse_end(pid, resp);
|
|
|
|
/* Re-enable signals. */
|
|
signal(SIGINT, interrupt_signal);
|
|
signal(SIGQUIT, quit_signal);
|
|
}
|
|
|
|
int time_main(int argc, char **argv) MAIN_EXTERNALLY_VISIBLE;
|
|
int time_main(int argc UNUSED_PARAM, char **argv)
|
|
{
|
|
resource_t res;
|
|
/* $TIME has lowest prio (-v,-p,-f FMT overrride it) */
|
|
const char *output_format = getenv("TIME") ? : default_format;
|
|
char *output_filename;
|
|
int output_fd;
|
|
int opt;
|
|
int ex;
|
|
enum {
|
|
OPT_v = (1 << 0),
|
|
OPT_p = (1 << 1),
|
|
OPT_a = (1 << 2),
|
|
OPT_o = (1 << 3),
|
|
OPT_f = (1 << 4),
|
|
};
|
|
|
|
/* "+": stop on first non-option */
|
|
opt = getopt32(argv, "^+" "vpao:f:" "\0" "-1"/*at least one arg*/,
|
|
&output_filename, &output_format
|
|
);
|
|
argv += optind;
|
|
if (opt & OPT_v)
|
|
output_format = long_format;
|
|
if (opt & OPT_p)
|
|
output_format = posix_format;
|
|
output_fd = STDERR_FILENO;
|
|
if (opt & OPT_o) {
|
|
output_fd = xopen(output_filename,
|
|
(opt & OPT_a) /* append? */
|
|
? (O_CREAT | O_WRONLY | O_CLOEXEC | O_APPEND)
|
|
: (O_CREAT | O_WRONLY | O_CLOEXEC | O_TRUNC)
|
|
);
|
|
}
|
|
|
|
run_command(argv, &res);
|
|
|
|
/* Cheat. printf's are shorter :) */
|
|
xdup2(output_fd, STDOUT_FILENO);
|
|
summarize(output_format, argv, &res);
|
|
|
|
ex = WEXITSTATUS(res.waitstatus);
|
|
/* Impossible: we do not use WUNTRACED flag in wait()...
|
|
if (WIFSTOPPED(res.waitstatus))
|
|
ex = WSTOPSIG(res.waitstatus);
|
|
*/
|
|
if (WIFSIGNALED(res.waitstatus))
|
|
ex = WTERMSIG(res.waitstatus);
|
|
|
|
fflush_stdout_and_exit(ex);
|
|
}
|