WTFStopW : a simple stopwatch
x86-64
nasm
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wtfstopw.asm 11KB

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  1. ; WTFStopW : a simple stopwatch
  2. ; Copyright (C) 2018 Weber Yann
  3. ;
  4. ; This program is free software; you can redistribute it and/or modify
  5. ; it under the terms of the GNU General Public License as published by
  6. ; the Free Software Foundation; either version 3 of the License, or
  7. ; any later version.
  8. ;
  9. ; This program is distributed in the hope that it will be useful,
  10. ; but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. ; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. ; GNU General Public License for more details.
  13. ;
  14. ; You should have received a copy of the GNU General Public License
  15. ; along with this program. If not, see <http://www.gnu.org/licenses/>.
  16. ;
  17. ; A simple precise stopwatch
  18. ; Build : nasm -felf64 wtfstopw.asm && ld -s -melf_x86_64 wtfstopw.o -o wtfstopw
  19. ; Build Debug : nasm -g -F dwarf -felf64 -l wtfstopw.lst wtfstopw.asm && ld -melf_x86_64 wtfstopw.o -o wtfstopw
  20. ;
  21. ; ./wtfstopw [-h] [-r NDIGITS]
  22. ; Options :
  23. ; -h print this help and exit
  24. ; -r number of digits bellow seconds to display, default is 2
  25. ; Interact :
  26. ; press enter to exit
  27. ; send SIGINT (with kill -2 ir ctrl + c) for a new lap
  28. [bits 64]
  29. STRUC TIMESPEC_STRUC
  30. .tv_sec: resq 1
  31. .tv_nsec: resq 1
  32. ENDSTRUC
  33. %macro TIMESPEC 3
  34. %1: ISTRUC TIMESPEC_STRUC
  35. at TIMESPEC_STRUC.tv_sec, dq %2
  36. at TIMESPEC_STRUC.tv_nsec, dq %3
  37. IEND
  38. %define %1.tv_sec %1+TIMESPEC_STRUC.tv_sec
  39. %define %1.tv_nsec %1+TIMESPEC_STRUC.tv_nsec
  40. %endmacro
  41. STRUC SIGACTION_STRUC
  42. .sa_handler: resq 1
  43. .sa_flags: resq 1
  44. .sa_restorer: resq 1
  45. .sa_mask: resb 128
  46. ENDSTRUC
  47. section .data
  48. sigaction: ISTRUC SIGACTION_STRUC
  49. at SIGACTION_STRUC.sa_handler, dq 0
  50. at SIGACTION_STRUC.sa_flags, dq 0
  51. at SIGACTION_STRUC.sa_restorer, dq 0
  52. at SIGACTION_STRUC.sa_mask, times 128 db 0
  53. IEND
  54. %define sigaction.sa_handler sigaction+SIGACTION_STRUC.sa_handler
  55. %define sigaction.sa_flags sigaction+SIGACTION_STRUC.sa_flags
  56. %define sigaction.sa_restorer sigaction+SIGACTION_STRUC.sa_restorer
  57. %define sigaction.sa_mask sigaction+SIGACTION_STRUC.sa_mask
  58. TIMESPEC ts_start, 0, 0
  59. TIMESPEC ts_cur, 0, 0
  60. TIMESPEC ts_sleep, 0, 100000000 ; set before mainloop
  61. faultmsg: db "Fault !", 0xA
  62. faultmsglen: equ $ - faultmsg
  63. startmsg: db "Press Enter or ctrl+d to exit and ctrl+c for new lap."
  64. db 0xA
  65. startmsglen: equ $ - startmsg
  66. usage_pre: db "Usage : "
  67. usage_prelen: equ $ - usage_pre
  68. usage_post: db " [-h] [-r NDIGITS]", 0xA
  69. db "Options :", 0xA
  70. db 0x9, "-h print this help and exit", 0xA
  71. db 0x9, "-r Number of digits bellow seconds, between [1..8]"
  72. db 0xA
  73. db "Interactions :", 0xA
  74. db 0x9, "Press enter or close stdin to exit", 0xA
  75. db 0x9, "Send SIGINT (with kill -2 or ctrl + c) for a new lap"
  76. db 0xA
  77. db 0x9, "Elapsed time is sent on stderr and laps infos on stdout"
  78. db 0xA
  79. usage_postlen: equ $ - usage_post
  80. badarg_msg: db "Unexpected argument : "
  81. badarg_msglen: equ $ - badarg_msg
  82. badval_msg: db "Value for -r should be in [1..8] but got "
  83. badval_msglen: equ $ - badval_msg
  84. hours: db "000000000" ; increase size of this string to increase hours max
  85. timestr: db ":00:00.0 ", 0
  86. timestrlen: equ $ - timestr
  87. hourslen: equ timestr - hours ; hours len -> the max number of digits
  88. time_res: dq 2 ; 2 digits bellow seconds can grow to 8
  89. nl: db 0x0A
  90. cr: db 0xd
  91. buf: db 0
  92. lapsmsg: db "Lap : "
  93. lapsmsglen: equ $ - lapsmsg
  94. lapcount: db "00000000"
  95. lapcountlen: equ $ - lapcount
  96. laplen: dq 2
  97. fcntl_flag: dq 0
  98. section .text
  99. global _start
  100. _start:
  101. ; parse arguments and set time_res value
  102. jmp arg_parse
  103. arg_ok:
  104. ; set stdin non blocking
  105. xor rdx, rdx
  106. xor rdi, rdi
  107. mov rax, 72 ; fcntl
  108. mov rsi, 3 ; F_GETFL
  109. syscall
  110. mov [fcntl_flag], rax
  111. mov rdx, rax
  112. or rdx, 0x800 ; O_NONBLOCK
  113. mov rax, 72 ; fcntl
  114. mov rsi, 4 ; F_SETFL
  115. syscall
  116. cmp rax, 0
  117. jne fault
  118. ; preparing SIGINT catch
  119. mov rax, proc_lap_handler
  120. mov qword [sigaction.sa_handler], rax
  121. mov eax, 0x14000000 ; SA_RESTART | SA_RESTORER
  122. mov dword [sigaction.sa_flags], eax
  123. mov rax, sig_restorer
  124. mov qword [sigaction.sa_restorer], rax
  125. mov rax, 13 ; sys_rt_sigaction
  126. mov rdi, 2 ; SIGINT
  127. mov rsi, sigaction
  128. mov rdx, 0 ; NULL
  129. mov r10, 8 ; sig_size
  130. syscall
  131. cmp rax, 0
  132. jne fault
  133. mov rax, 228 ; clock_gettime
  134. mov rdi, 0 ; CLOCK_REALTIME
  135. mov rsi, ts_start
  136. syscall
  137. mov rax, 1 ; write
  138. mov rdi, 2 ; stderr
  139. mov rsi, startmsg
  140. mov rdx, startmsglen
  141. syscall
  142. ; set value for ts_sleep.tv_nsec given time_res
  143. ; div sleep time by 10 for each digits added bellow seconds
  144. mov rax, 100000000
  145. mov r8, [time_res]
  146. mov r9, 10
  147. xor rdx, rdx
  148. setsleep_loop:
  149. cmp r8, 1
  150. jle setsleep_endloop
  151. div r9
  152. sub r8, 1
  153. jmp setsleep_loop
  154. setsleep_endloop:
  155. mov [ts_sleep.tv_nsec], rax
  156. std ; set DF for string operations
  157. main_loop:
  158. push 2 ; stderr
  159. push 0xD ; \r
  160. call proc_print_time
  161. ; Attempt to read from stdin
  162. ; if something read, enter has been pressed
  163. mov rax, 0
  164. mov rdi, 0
  165. mov rsi, buf
  166. mov rdx, 1
  167. syscall
  168. cmp rax, 0
  169. jge flush_stdin ; flush stdin and exit
  170. mov rax, 35 ; nanosleep
  171. mov rdi, ts_sleep
  172. mov rsi, 0
  173. syscall
  174. jmp main_loop ; main_loop
  175. flush_stdin:
  176. mov rax, 0
  177. mov rdi, 0
  178. mov rsi, buf
  179. mov rdx, 1
  180. syscall
  181. cmp rax, 0
  182. je newline_exit
  183. jg flush_stdin
  184. mov rdi, 0 ; EXIT OK
  185. ;
  186. ; Expect rdi to be the return code
  187. ;
  188. exit:
  189. push rdi
  190. ; restoring stdin state
  191. mov rax, 72 ; fcntl
  192. xor rdi, rdi
  193. mov rsi, 4 ; F_SETFL
  194. mov rdx, [fcntl_flag]
  195. syscall
  196. cmp rax, 0
  197. je exit_end
  198. pop rdi ; failed to restore
  199. push 1 ; exit FAIL
  200. exit_end:
  201. mov rax, 60 ; sys_exit
  202. pop rdi ; return code
  203. syscall
  204. fault:
  205. mov rdi, 2 ; stderr
  206. call proc_nl
  207. mov rax, 1
  208. mov rsi, faultmsg
  209. mov rdx, faultmsglen
  210. syscall
  211. mov rdi, 1 ; failure
  212. jmp exit
  213. newline_exit:
  214. mov rdi, 1
  215. call proc_nl
  216. mov rdi, 0 ; exit OK
  217. jmp exit
  218. ;
  219. ; Print current time on FD and add a leading char CHR
  220. ; push FD & push CHR to set arguments
  221. ; Warning : DF must be set
  222. ;
  223. proc_print_time:
  224. mov rax, 228 ; clock_gettime
  225. mov rdi, 0 ; CLOCK_REALTIME
  226. mov rsi, ts_cur
  227. syscall ; updating ts_cur time
  228. mov rax, [ts_cur.tv_nsec]
  229. sub rax, [ts_start.tv_nsec]
  230. cmp rax, 0 ; Calculating elapsed ns
  231. jge print_time_us_cont
  232. add rax, 1000000000 ; negativ result
  233. sub qword [ts_cur.tv_sec], 1
  234. print_time_us_cont:
  235. ; set the nanosec chars (time_res chars) in timestr
  236. xor rdx, rdx
  237. div qword [ts_sleep.tv_nsec] ; Divide result given time_res
  238. mov rdi, timestr + 6
  239. mov rsi, rdi ; rsi points on 1st nanosec digit
  240. add rdi, [time_res] ; rdi points on last nanosec digit
  241. mov r8, 10
  242. print_time_us_loop:
  243. xor rdx, rdx
  244. div r8
  245. xchg al, dl
  246. add al, 0x30
  247. stosb
  248. mov al, dl
  249. cmp rsi, rdi
  250. loopne print_time_us_loop
  251. ; filling timestr with seconds & minutes chars
  252. mov rax, [ts_cur.tv_sec]
  253. sub rax, [ts_start.tv_sec] ; rax now contain elapsed seconds
  254. mov r8, 10
  255. mov r9, 6
  256. xor rdx, rdx
  257. div r8
  258. add dl, 0x30
  259. mov byte [timestr + 5], dl
  260. xor dl, dl
  261. div r9
  262. add dl, 0x30
  263. mov byte [timestr + 4], dl
  264. xor dl, dl
  265. div r8
  266. add dl, 0x30
  267. mov byte [timestr + 2], dl
  268. xor dl, dl
  269. div r9
  270. add dl, 0x30
  271. mov byte[timestr + 1], dl
  272. ; filling the hours buffer
  273. ; rcx will contain max_digits - digits_count
  274. ; digits max is hourslen - 1
  275. mov rcx, hourslen - 1
  276. mov rdi, hours + hourslen - 1
  277. mov r10, 10
  278. procpt_loop:
  279. xor dl, dl
  280. div r10
  281. cmp rax, 0
  282. jne procpt_loopcont
  283. cmp dl, 0
  284. je procpt_loop_end
  285. procpt_loopcont:
  286. xchg al, dl
  287. add al, 0x30
  288. stosb
  289. mov al, dl
  290. cmp rcx, 0
  291. je fault
  292. cmp rax, 0
  293. loopne procpt_loop
  294. procpt_loop_end:
  295. ; set rcx for 2 digits at least for hours
  296. mov r9, hourslen - 2
  297. add rcx, 1
  298. cmp rcx, r9
  299. cmovnle rcx, r9
  300. mov r10, [rsp + 8] ; leading chr as 1st argument
  301. mov byte [timestr+timestrlen-1], r10b
  302. mov rax, 1 ; write
  303. mov rdi, [rsp + 16] ; fd as 2nd argument
  304. mov rdx, timestrlen + 9
  305. sub rdx, rcx ; timestr + hours len
  306. lea rsi, [hours + rcx] ; hours start pointer
  307. syscall
  308. ret 16
  309. ;
  310. ; sig handler for SIGINT displaying lap count and time on stdout
  311. ;
  312. proc_lap_handler:
  313. mov rax, 1
  314. mov rdi, 2
  315. mov rsi, cr
  316. mov rdx, 1
  317. syscall ; \r on stderr
  318. mov rax, 1
  319. mov rdi, 1
  320. mov rsi, lapsmsg
  321. mov rdx, 4 ; "Lap "
  322. syscall
  323. ; increment the lapcount str directly
  324. mov rbx, lapcount ; first digit ptr
  325. add rbx, lapcountlen ; rightmost digit ptr
  326. sub rbx, 1
  327. mov r8, 1 ; counter
  328. lap_handler_inc_lap:
  329. mov r10b, [rbx]
  330. cmp r10b, 0x39 ; '9'
  331. jl lap_handler_inc_end
  332. add r8, 1
  333. cmp r8, [laplen]
  334. jl lap_handler_laplen_noupd
  335. mov [laplen], r8 ; update laplen
  336. lap_handler_laplen_noupd:
  337. mov byte [rbx], 0x30 ; set current digit to '0'
  338. sub rbx, 1
  339. cmp rbx, lapcount
  340. jl fault
  341. jmp lap_handler_inc_lap
  342. lap_handler_inc_end:
  343. add r10b, 1
  344. mov [rbx], r10b
  345. mov rax, 1
  346. mov rdi, 1 ; stdout
  347. mov rdx, [laplen]
  348. mov rsi, lapcount
  349. add rsi, lapcountlen
  350. sub rsi, rdx ; leftmost digit ptr
  351. syscall
  352. mov rax, 1 ; write
  353. mov rsi, lapsmsg + 4
  354. mov rdx, 3 ; " : "
  355. syscall
  356. std ; set DF for string operations
  357. push 1 ; stdout
  358. push 0xA ; \n
  359. call proc_print_time
  360. ret
  361. sig_restorer:
  362. mov rax, 15 ; sys_rt_sigreturn
  363. xor rdi, rdi
  364. syscall
  365. ;
  366. ; Argument parsing
  367. ;
  368. arg_parse:
  369. ; Checking argument count
  370. mov rax, [rsp]
  371. cmp rax, 1
  372. je arg_ok
  373. cmp rax, 3
  374. jle parse_r
  375. arg_err: ; badval & badarg jmp here too
  376. mov rax, [rsp+8] ; argv[0] program name
  377. mov rdi, -1 ; return status
  378. jmp usage
  379. parse_r:
  380. mov rax, [rsp+16] ; 1st arg should be "-r"
  381. mov bl, [rax]
  382. cmp bl, '-'
  383. jne badarg
  384. mov bl, [rax+1]
  385. cmp bl, 'h' ; -h
  386. je arg_err
  387. cmp bl, 'r'
  388. jne badarg
  389. mov bl, [rax+2]
  390. cmp bl, 0
  391. jne arg_nxt ; the value seems to be just after the -r like -r2
  392. nxt_arg:
  393. ; the 1st argument is -r the second must be the time_res
  394. ; check that the arg exists
  395. mov rax, [rsp]
  396. cmp rax, 3
  397. jne arg_err
  398. mov rax, [rsp+24]
  399. jmp arg_cont
  400. arg_nxt:
  401. ; check that there is no more args
  402. mov rbx, [rsp]
  403. cmp rbx, 2
  404. jne arg_err
  405. add rax, 2
  406. arg_cont:
  407. ; rax should point on the value
  408. mov bl, [rax+1]
  409. cmp bl, 0
  410. jne badval
  411. xor rbx, rbx
  412. mov bl, [rax]
  413. cmp bl, '1'
  414. jl badval
  415. cmp bl, '8'
  416. jg badval
  417. sub bl, '0'
  418. mov [time_res], rbx
  419. jmp arg_ok
  420. ; print an error message, usage and exit with rax pointing the value
  421. badval:
  422. mov rsi, badval_msg
  423. mov rdx, badval_msglen
  424. jmp arg_strerr
  425. ; print an error message, usage and exit
  426. badarg:
  427. mov rsi, badarg_msg
  428. mov rdx, badarg_msglen
  429. mov rax, [rsp+16]
  430. jmp arg_strerr
  431. ; rsi msg ptr, rdx msg len, rax arg ptr
  432. arg_strerr:
  433. mov r8, rax
  434. mov rax, 1
  435. mov rdi, 1
  436. syscall
  437. mov rsi, r8
  438. mov rax, r8
  439. call proc_strlen
  440. mov rax, 1
  441. syscall
  442. call proc_nl
  443. call proc_nl
  444. jmp arg_err
  445. ;
  446. ; Print usage and exit
  447. ; Except rax to point on programm name and rdi to be the return code
  448. ;
  449. usage:
  450. push rdi
  451. push rax
  452. mov rax, 1 ; write
  453. mov rdi, 1 ; stdout
  454. mov rsi, usage_pre
  455. mov rdx, usage_prelen
  456. syscall
  457. pop rsi
  458. mov rax, rsi
  459. call proc_strlen
  460. mov rax, 1
  461. syscall
  462. mov rax, 1
  463. mov rsi, usage_post
  464. mov rdx, usage_postlen
  465. syscall
  466. mov rax, 60
  467. pop rdi
  468. syscall
  469. ; With rax pointing on the string, the result will be in rdx
  470. proc_strlen:
  471. mov r8, rax
  472. mov r9, r8
  473. sub r9, 1
  474. strlen_loop:
  475. add r9, 1
  476. mov al, [r9]
  477. cmp al, 0
  478. jne strlen_loop
  479. sub r9, r8
  480. mov rdx, r9
  481. ret
  482. ; with rdi the fd
  483. proc_nl:
  484. mov rax, 1
  485. mov rsi, nl
  486. mov rdx, 1
  487. syscall
  488. ret
  489. .end: