fsys.S 30 KB

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  1. /*
  2. * This file contains the light-weight system call handlers (fsyscall-handlers).
  3. *
  4. * Copyright (C) 2003 Hewlett-Packard Co
  5. * David Mosberger-Tang <davidm@hpl.hp.com>
  6. *
  7. * 25-Sep-03 davidm Implement fsys_rt_sigprocmask().
  8. * 18-Feb-03 louisk Implement fsys_gettimeofday().
  9. * 28-Feb-03 davidm Fixed several bugs in fsys_gettimeofday(). Tuned it some more,
  10. * probably broke it along the way... ;-)
  11. * 13-Jul-04 clameter Implement fsys_clock_gettime and revise fsys_gettimeofday to make
  12. * it capable of using memory based clocks without falling back to C code.
  13. * 08-Feb-07 Fenghua Yu Implement fsys_getcpu.
  14. *
  15. */
  16. #include <asm/asmmacro.h>
  17. #include <asm/errno.h>
  18. #include <asm/asm-offsets.h>
  19. #include <asm/percpu.h>
  20. #include <asm/thread_info.h>
  21. #include <asm/sal.h>
  22. #include <asm/signal.h>
  23. #include <asm/system.h>
  24. #include <asm/unistd.h>
  25. #include "entry.h"
  26. /*
  27. * See Documentation/ia64/fsys.txt for details on fsyscalls.
  28. *
  29. * On entry to an fsyscall handler:
  30. * r10 = 0 (i.e., defaults to "successful syscall return")
  31. * r11 = saved ar.pfs (a user-level value)
  32. * r15 = system call number
  33. * r16 = "current" task pointer (in normal kernel-mode, this is in r13)
  34. * r32-r39 = system call arguments
  35. * b6 = return address (a user-level value)
  36. * ar.pfs = previous frame-state (a user-level value)
  37. * PSR.be = cleared to zero (i.e., little-endian byte order is in effect)
  38. * all other registers may contain values passed in from user-mode
  39. *
  40. * On return from an fsyscall handler:
  41. * r11 = saved ar.pfs (as passed into the fsyscall handler)
  42. * r15 = system call number (as passed into the fsyscall handler)
  43. * r32-r39 = system call arguments (as passed into the fsyscall handler)
  44. * b6 = return address (as passed into the fsyscall handler)
  45. * ar.pfs = previous frame-state (as passed into the fsyscall handler)
  46. */
  47. ENTRY(fsys_ni_syscall)
  48. .prologue
  49. .altrp b6
  50. .body
  51. mov r8=ENOSYS
  52. mov r10=-1
  53. FSYS_RETURN
  54. END(fsys_ni_syscall)
  55. ENTRY(fsys_getpid)
  56. .prologue
  57. .altrp b6
  58. .body
  59. add r17=IA64_TASK_GROUP_LEADER_OFFSET,r16
  60. ;;
  61. ld8 r17=[r17] // r17 = current->group_leader
  62. add r9=TI_FLAGS+IA64_TASK_SIZE,r16
  63. ;;
  64. ld4 r9=[r9]
  65. add r17=IA64_TASK_TGIDLINK_OFFSET,r17
  66. ;;
  67. and r9=TIF_ALLWORK_MASK,r9
  68. ld8 r17=[r17] // r17 = current->group_leader->pids[PIDTYPE_PID].pid
  69. ;;
  70. add r8=IA64_PID_LEVEL_OFFSET,r17
  71. ;;
  72. ld4 r8=[r8] // r8 = pid->level
  73. add r17=IA64_PID_UPID_OFFSET,r17 // r17 = &pid->numbers[0]
  74. ;;
  75. shl r8=r8,IA64_UPID_SHIFT
  76. ;;
  77. add r17=r17,r8 // r17 = &pid->numbers[pid->level]
  78. ;;
  79. ld4 r8=[r17] // r8 = pid->numbers[pid->level].nr
  80. ;;
  81. mov r17=0
  82. ;;
  83. cmp.ne p8,p0=0,r9
  84. (p8) br.spnt.many fsys_fallback_syscall
  85. FSYS_RETURN
  86. END(fsys_getpid)
  87. ENTRY(fsys_getppid)
  88. .prologue
  89. .altrp b6
  90. .body
  91. add r17=IA64_TASK_GROUP_LEADER_OFFSET,r16
  92. ;;
  93. ld8 r17=[r17] // r17 = current->group_leader
  94. add r9=TI_FLAGS+IA64_TASK_SIZE,r16
  95. ;;
  96. ld4 r9=[r9]
  97. add r17=IA64_TASK_REAL_PARENT_OFFSET,r17 // r17 = &current->group_leader->real_parent
  98. ;;
  99. and r9=TIF_ALLWORK_MASK,r9
  100. 1: ld8 r18=[r17] // r18 = current->group_leader->real_parent
  101. ;;
  102. cmp.ne p8,p0=0,r9
  103. add r8=IA64_TASK_TGID_OFFSET,r18 // r8 = &current->group_leader->real_parent->tgid
  104. ;;
  105. /*
  106. * The .acq is needed to ensure that the read of tgid has returned its data before
  107. * we re-check "real_parent".
  108. */
  109. ld4.acq r8=[r8] // r8 = current->group_leader->real_parent->tgid
  110. #ifdef CONFIG_SMP
  111. /*
  112. * Re-read current->group_leader->real_parent.
  113. */
  114. ld8 r19=[r17] // r19 = current->group_leader->real_parent
  115. (p8) br.spnt.many fsys_fallback_syscall
  116. ;;
  117. cmp.ne p6,p0=r18,r19 // did real_parent change?
  118. mov r19=0 // i must not leak kernel bits...
  119. (p6) br.cond.spnt.few 1b // yes -> redo the read of tgid and the check
  120. ;;
  121. mov r17=0 // i must not leak kernel bits...
  122. mov r18=0 // i must not leak kernel bits...
  123. #else
  124. mov r17=0 // i must not leak kernel bits...
  125. mov r18=0 // i must not leak kernel bits...
  126. mov r19=0 // i must not leak kernel bits...
  127. #endif
  128. FSYS_RETURN
  129. END(fsys_getppid)
  130. ENTRY(fsys_set_tid_address)
  131. .prologue
  132. .altrp b6
  133. .body
  134. add r9=TI_FLAGS+IA64_TASK_SIZE,r16
  135. add r17=IA64_TASK_TGIDLINK_OFFSET,r16
  136. ;;
  137. ld4 r9=[r9]
  138. tnat.z p6,p7=r32 // check argument register for being NaT
  139. ld8 r17=[r17] // r17 = current->pids[PIDTYPE_PID].pid
  140. ;;
  141. and r9=TIF_ALLWORK_MASK,r9
  142. add r8=IA64_PID_LEVEL_OFFSET,r17
  143. add r18=IA64_TASK_CLEAR_CHILD_TID_OFFSET,r16
  144. ;;
  145. ld4 r8=[r8] // r8 = pid->level
  146. add r17=IA64_PID_UPID_OFFSET,r17 // r17 = &pid->numbers[0]
  147. ;;
  148. shl r8=r8,IA64_UPID_SHIFT
  149. ;;
  150. add r17=r17,r8 // r17 = &pid->numbers[pid->level]
  151. ;;
  152. ld4 r8=[r17] // r8 = pid->numbers[pid->level].nr
  153. ;;
  154. cmp.ne p8,p0=0,r9
  155. mov r17=-1
  156. ;;
  157. (p6) st8 [r18]=r32
  158. (p7) st8 [r18]=r17
  159. (p8) br.spnt.many fsys_fallback_syscall
  160. ;;
  161. mov r17=0 // i must not leak kernel bits...
  162. mov r18=0 // i must not leak kernel bits...
  163. FSYS_RETURN
  164. END(fsys_set_tid_address)
  165. #if IA64_GTOD_LOCK_OFFSET !=0
  166. #error fsys_gettimeofday incompatible with changes to struct fsyscall_gtod_data_t
  167. #endif
  168. #if IA64_ITC_JITTER_OFFSET !=0
  169. #error fsys_gettimeofday incompatible with changes to struct itc_jitter_data_t
  170. #endif
  171. #define CLOCK_REALTIME 0
  172. #define CLOCK_MONOTONIC 1
  173. #define CLOCK_DIVIDE_BY_1000 0x4000
  174. #define CLOCK_ADD_MONOTONIC 0x8000
  175. ENTRY(fsys_gettimeofday)
  176. .prologue
  177. .altrp b6
  178. .body
  179. mov r31 = r32
  180. tnat.nz p6,p0 = r33 // guard against NaT argument
  181. (p6) br.cond.spnt.few .fail_einval
  182. mov r30 = CLOCK_DIVIDE_BY_1000
  183. ;;
  184. .gettime:
  185. // Register map
  186. // Incoming r31 = pointer to address where to place result
  187. // r30 = flags determining how time is processed
  188. // r2,r3 = temp r4-r7 preserved
  189. // r8 = result nanoseconds
  190. // r9 = result seconds
  191. // r10 = temporary storage for clock difference
  192. // r11 = preserved: saved ar.pfs
  193. // r12 = preserved: memory stack
  194. // r13 = preserved: thread pointer
  195. // r14 = address of mask / mask value
  196. // r15 = preserved: system call number
  197. // r16 = preserved: current task pointer
  198. // r17 = (not used)
  199. // r18 = (not used)
  200. // r19 = address of itc_lastcycle
  201. // r20 = struct fsyscall_gtod_data (= address of gtod_lock.sequence)
  202. // r21 = address of mmio_ptr
  203. // r22 = address of wall_time or monotonic_time
  204. // r23 = address of shift / value
  205. // r24 = address mult factor / cycle_last value
  206. // r25 = itc_lastcycle value
  207. // r26 = address clocksource cycle_last
  208. // r27 = (not used)
  209. // r28 = sequence number at the beginning of critcal section
  210. // r29 = address of itc_jitter
  211. // r30 = time processing flags / memory address
  212. // r31 = pointer to result
  213. // Predicates
  214. // p6,p7 short term use
  215. // p8 = timesource ar.itc
  216. // p9 = timesource mmio64
  217. // p10 = timesource mmio32 - not used
  218. // p11 = timesource not to be handled by asm code
  219. // p12 = memory time source ( = p9 | p10) - not used
  220. // p13 = do cmpxchg with itc_lastcycle
  221. // p14 = Divide by 1000
  222. // p15 = Add monotonic
  223. //
  224. // Note that instructions are optimized for McKinley. McKinley can
  225. // process two bundles simultaneously and therefore we continuously
  226. // try to feed the CPU two bundles and then a stop.
  227. add r2 = TI_FLAGS+IA64_TASK_SIZE,r16
  228. tnat.nz p6,p0 = r31 // guard against Nat argument
  229. (p6) br.cond.spnt.few .fail_einval
  230. movl r20 = fsyscall_gtod_data // load fsyscall gettimeofday data address
  231. ;;
  232. ld4 r2 = [r2] // process work pending flags
  233. movl r29 = itc_jitter_data // itc_jitter
  234. add r22 = IA64_GTOD_WALL_TIME_OFFSET,r20 // wall_time
  235. add r21 = IA64_CLKSRC_MMIO_OFFSET,r20
  236. mov pr = r30,0xc000 // Set predicates according to function
  237. ;;
  238. and r2 = TIF_ALLWORK_MASK,r2
  239. add r19 = IA64_ITC_LASTCYCLE_OFFSET,r29
  240. (p15) add r22 = IA64_GTOD_MONO_TIME_OFFSET,r20 // monotonic_time
  241. ;;
  242. add r26 = IA64_CLKSRC_CYCLE_LAST_OFFSET,r20 // clksrc_cycle_last
  243. cmp.ne p6, p0 = 0, r2 // Fallback if work is scheduled
  244. (p6) br.cond.spnt.many fsys_fallback_syscall
  245. ;;
  246. // Begin critical section
  247. .time_redo:
  248. ld4.acq r28 = [r20] // gtod_lock.sequence, Must take first
  249. ;;
  250. and r28 = ~1,r28 // And make sequence even to force retry if odd
  251. ;;
  252. ld8 r30 = [r21] // clocksource->mmio_ptr
  253. add r24 = IA64_CLKSRC_MULT_OFFSET,r20
  254. ld4 r2 = [r29] // itc_jitter value
  255. add r23 = IA64_CLKSRC_SHIFT_OFFSET,r20
  256. add r14 = IA64_CLKSRC_MASK_OFFSET,r20
  257. ;;
  258. ld4 r3 = [r24] // clocksource mult value
  259. ld8 r14 = [r14] // clocksource mask value
  260. cmp.eq p8,p9 = 0,r30 // use cpu timer if no mmio_ptr
  261. ;;
  262. setf.sig f7 = r3 // Setup for mult scaling of counter
  263. (p8) cmp.ne p13,p0 = r2,r0 // need itc_jitter compensation, set p13
  264. ld4 r23 = [r23] // clocksource shift value
  265. ld8 r24 = [r26] // get clksrc_cycle_last value
  266. (p9) cmp.eq p13,p0 = 0,r30 // if mmio_ptr, clear p13 jitter control
  267. ;;
  268. .pred.rel.mutex p8,p9
  269. (p8) mov r2 = ar.itc // CPU_TIMER. 36 clocks latency!!!
  270. (p9) ld8 r2 = [r30] // MMIO_TIMER. Could also have latency issues..
  271. (p13) ld8 r25 = [r19] // get itc_lastcycle value
  272. ld8 r9 = [r22],IA64_TIMESPEC_TV_NSEC_OFFSET // tv_sec
  273. ;;
  274. ld8 r8 = [r22],-IA64_TIMESPEC_TV_NSEC_OFFSET // tv_nsec
  275. (p13) sub r3 = r25,r2 // Diff needed before comparison (thanks davidm)
  276. ;;
  277. (p13) cmp.gt.unc p6,p7 = r3,r0 // check if it is less than last. p6,p7 cleared
  278. sub r10 = r2,r24 // current_cycle - last_cycle
  279. ;;
  280. (p6) sub r10 = r25,r24 // time we got was less than last_cycle
  281. (p7) mov ar.ccv = r25 // more than last_cycle. Prep for cmpxchg
  282. ;;
  283. (p7) cmpxchg8.rel r3 = [r19],r2,ar.ccv
  284. ;;
  285. (p7) cmp.ne p7,p0 = r25,r3 // if cmpxchg not successful
  286. ;;
  287. (p7) sub r10 = r3,r24 // then use new last_cycle instead
  288. ;;
  289. and r10 = r10,r14 // Apply mask
  290. ;;
  291. setf.sig f8 = r10
  292. nop.i 123
  293. ;;
  294. // fault check takes 5 cycles and we have spare time
  295. EX(.fail_efault, probe.w.fault r31, 3)
  296. xmpy.l f8 = f8,f7 // nsec_per_cyc*(counter-last_counter)
  297. ;;
  298. getf.sig r2 = f8
  299. mf
  300. ;;
  301. ld4 r10 = [r20] // gtod_lock.sequence
  302. shr.u r2 = r2,r23 // shift by factor
  303. ;;
  304. add r8 = r8,r2 // Add xtime.nsecs
  305. cmp4.ne p7,p0 = r28,r10
  306. (p7) br.cond.dpnt.few .time_redo // sequence number changed, redo
  307. // End critical section.
  308. // Now r8=tv->tv_nsec and r9=tv->tv_sec
  309. mov r10 = r0
  310. movl r2 = 1000000000
  311. add r23 = IA64_TIMESPEC_TV_NSEC_OFFSET, r31
  312. (p14) movl r3 = 2361183241434822607 // Prep for / 1000 hack
  313. ;;
  314. .time_normalize:
  315. mov r21 = r8
  316. cmp.ge p6,p0 = r8,r2
  317. (p14) shr.u r20 = r8, 3 // We can repeat this if necessary just wasting time
  318. ;;
  319. (p14) setf.sig f8 = r20
  320. (p6) sub r8 = r8,r2
  321. (p6) add r9 = 1,r9 // two nops before the branch.
  322. (p14) setf.sig f7 = r3 // Chances for repeats are 1 in 10000 for gettod
  323. (p6) br.cond.dpnt.few .time_normalize
  324. ;;
  325. // Divided by 8 though shift. Now divide by 125
  326. // The compiler was able to do that with a multiply
  327. // and a shift and we do the same
  328. EX(.fail_efault, probe.w.fault r23, 3) // This also costs 5 cycles
  329. (p14) xmpy.hu f8 = f8, f7 // xmpy has 5 cycles latency so use it
  330. ;;
  331. (p14) getf.sig r2 = f8
  332. ;;
  333. mov r8 = r0
  334. (p14) shr.u r21 = r2, 4
  335. ;;
  336. EX(.fail_efault, st8 [r31] = r9)
  337. EX(.fail_efault, st8 [r23] = r21)
  338. FSYS_RETURN
  339. .fail_einval:
  340. mov r8 = EINVAL
  341. mov r10 = -1
  342. FSYS_RETURN
  343. .fail_efault:
  344. mov r8 = EFAULT
  345. mov r10 = -1
  346. FSYS_RETURN
  347. END(fsys_gettimeofday)
  348. ENTRY(fsys_clock_gettime)
  349. .prologue
  350. .altrp b6
  351. .body
  352. cmp4.ltu p6, p0 = CLOCK_MONOTONIC, r32
  353. // Fallback if this is not CLOCK_REALTIME or CLOCK_MONOTONIC
  354. (p6) br.spnt.few fsys_fallback_syscall
  355. mov r31 = r33
  356. shl r30 = r32,15
  357. br.many .gettime
  358. END(fsys_clock_gettime)
  359. /*
  360. * long fsys_rt_sigprocmask (int how, sigset_t *set, sigset_t *oset, size_t sigsetsize).
  361. */
  362. #if _NSIG_WORDS != 1
  363. # error Sorry, fsys_rt_sigprocmask() needs to be updated for _NSIG_WORDS != 1.
  364. #endif
  365. ENTRY(fsys_rt_sigprocmask)
  366. .prologue
  367. .altrp b6
  368. .body
  369. add r2=IA64_TASK_BLOCKED_OFFSET,r16
  370. add r9=TI_FLAGS+IA64_TASK_SIZE,r16
  371. cmp4.ltu p6,p0=SIG_SETMASK,r32
  372. cmp.ne p15,p0=r0,r34 // oset != NULL?
  373. tnat.nz p8,p0=r34
  374. add r31=IA64_TASK_SIGHAND_OFFSET,r16
  375. ;;
  376. ld8 r3=[r2] // read/prefetch current->blocked
  377. ld4 r9=[r9]
  378. tnat.nz.or p6,p0=r35
  379. cmp.ne.or p6,p0=_NSIG_WORDS*8,r35
  380. tnat.nz.or p6,p0=r32
  381. (p6) br.spnt.few .fail_einval // fail with EINVAL
  382. ;;
  383. #ifdef CONFIG_SMP
  384. ld8 r31=[r31] // r31 <- current->sighand
  385. #endif
  386. and r9=TIF_ALLWORK_MASK,r9
  387. tnat.nz.or p8,p0=r33
  388. ;;
  389. cmp.ne p7,p0=0,r9
  390. cmp.eq p6,p0=r0,r33 // set == NULL?
  391. add r31=IA64_SIGHAND_SIGLOCK_OFFSET,r31 // r31 <- current->sighand->siglock
  392. (p8) br.spnt.few .fail_efault // fail with EFAULT
  393. (p7) br.spnt.many fsys_fallback_syscall // got pending kernel work...
  394. (p6) br.dpnt.many .store_mask // -> short-circuit to just reading the signal mask
  395. /* Argh, we actually have to do some work and _update_ the signal mask: */
  396. EX(.fail_efault, probe.r.fault r33, 3) // verify user has read-access to *set
  397. EX(.fail_efault, ld8 r14=[r33]) // r14 <- *set
  398. mov r17=(1 << (SIGKILL - 1)) | (1 << (SIGSTOP - 1))
  399. ;;
  400. rsm psr.i // mask interrupt delivery
  401. mov ar.ccv=0
  402. andcm r14=r14,r17 // filter out SIGKILL & SIGSTOP
  403. #ifdef CONFIG_SMP
  404. mov r17=1
  405. ;;
  406. cmpxchg4.acq r18=[r31],r17,ar.ccv // try to acquire the lock
  407. mov r8=EINVAL // default to EINVAL
  408. ;;
  409. ld8 r3=[r2] // re-read current->blocked now that we hold the lock
  410. cmp4.ne p6,p0=r18,r0
  411. (p6) br.cond.spnt.many .lock_contention
  412. ;;
  413. #else
  414. ld8 r3=[r2] // re-read current->blocked now that we hold the lock
  415. mov r8=EINVAL // default to EINVAL
  416. #endif
  417. add r18=IA64_TASK_PENDING_OFFSET+IA64_SIGPENDING_SIGNAL_OFFSET,r16
  418. add r19=IA64_TASK_SIGNAL_OFFSET,r16
  419. cmp4.eq p6,p0=SIG_BLOCK,r32
  420. ;;
  421. ld8 r19=[r19] // r19 <- current->signal
  422. cmp4.eq p7,p0=SIG_UNBLOCK,r32
  423. cmp4.eq p8,p0=SIG_SETMASK,r32
  424. ;;
  425. ld8 r18=[r18] // r18 <- current->pending.signal
  426. .pred.rel.mutex p6,p7,p8
  427. (p6) or r14=r3,r14 // SIG_BLOCK
  428. (p7) andcm r14=r3,r14 // SIG_UNBLOCK
  429. (p8) mov r14=r14 // SIG_SETMASK
  430. (p6) mov r8=0 // clear error code
  431. // recalc_sigpending()
  432. add r17=IA64_SIGNAL_GROUP_STOP_COUNT_OFFSET,r19
  433. add r19=IA64_SIGNAL_SHARED_PENDING_OFFSET+IA64_SIGPENDING_SIGNAL_OFFSET,r19
  434. ;;
  435. ld4 r17=[r17] // r17 <- current->signal->group_stop_count
  436. (p7) mov r8=0 // clear error code
  437. ld8 r19=[r19] // r19 <- current->signal->shared_pending
  438. ;;
  439. cmp4.gt p6,p7=r17,r0 // p6/p7 <- (current->signal->group_stop_count > 0)?
  440. (p8) mov r8=0 // clear error code
  441. or r18=r18,r19 // r18 <- current->pending | current->signal->shared_pending
  442. ;;
  443. // r18 <- (current->pending | current->signal->shared_pending) & ~current->blocked:
  444. andcm r18=r18,r14
  445. add r9=TI_FLAGS+IA64_TASK_SIZE,r16
  446. ;;
  447. (p7) cmp.ne.or.andcm p6,p7=r18,r0 // p6/p7 <- signal pending
  448. mov r19=0 // i must not leak kernel bits...
  449. (p6) br.cond.dpnt.many .sig_pending
  450. ;;
  451. 1: ld4 r17=[r9] // r17 <- current->thread_info->flags
  452. ;;
  453. mov ar.ccv=r17
  454. and r18=~_TIF_SIGPENDING,r17 // r18 <- r17 & ~(1 << TIF_SIGPENDING)
  455. ;;
  456. st8 [r2]=r14 // update current->blocked with new mask
  457. cmpxchg4.acq r8=[r9],r18,ar.ccv // current->thread_info->flags <- r18
  458. ;;
  459. cmp.ne p6,p0=r17,r8 // update failed?
  460. (p6) br.cond.spnt.few 1b // yes -> retry
  461. #ifdef CONFIG_SMP
  462. st4.rel [r31]=r0 // release the lock
  463. #endif
  464. ssm psr.i
  465. ;;
  466. srlz.d // ensure psr.i is set again
  467. mov r18=0 // i must not leak kernel bits...
  468. .store_mask:
  469. EX(.fail_efault, (p15) probe.w.fault r34, 3) // verify user has write-access to *oset
  470. EX(.fail_efault, (p15) st8 [r34]=r3)
  471. mov r2=0 // i must not leak kernel bits...
  472. mov r3=0 // i must not leak kernel bits...
  473. mov r8=0 // return 0
  474. mov r9=0 // i must not leak kernel bits...
  475. mov r14=0 // i must not leak kernel bits...
  476. mov r17=0 // i must not leak kernel bits...
  477. mov r31=0 // i must not leak kernel bits...
  478. FSYS_RETURN
  479. .sig_pending:
  480. #ifdef CONFIG_SMP
  481. st4.rel [r31]=r0 // release the lock
  482. #endif
  483. ssm psr.i
  484. ;;
  485. srlz.d
  486. br.sptk.many fsys_fallback_syscall // with signal pending, do the heavy-weight syscall
  487. #ifdef CONFIG_SMP
  488. .lock_contention:
  489. /* Rather than spinning here, fall back on doing a heavy-weight syscall. */
  490. ssm psr.i
  491. ;;
  492. srlz.d
  493. br.sptk.many fsys_fallback_syscall
  494. #endif
  495. END(fsys_rt_sigprocmask)
  496. /*
  497. * fsys_getcpu doesn't use the third parameter in this implementation. It reads
  498. * current_thread_info()->cpu and corresponding node in cpu_to_node_map.
  499. */
  500. ENTRY(fsys_getcpu)
  501. .prologue
  502. .altrp b6
  503. .body
  504. ;;
  505. add r2=TI_FLAGS+IA64_TASK_SIZE,r16
  506. tnat.nz p6,p0 = r32 // guard against NaT argument
  507. add r3=TI_CPU+IA64_TASK_SIZE,r16
  508. ;;
  509. ld4 r3=[r3] // M r3 = thread_info->cpu
  510. ld4 r2=[r2] // M r2 = thread_info->flags
  511. (p6) br.cond.spnt.few .fail_einval // B
  512. ;;
  513. tnat.nz p7,p0 = r33 // I guard against NaT argument
  514. (p7) br.cond.spnt.few .fail_einval // B
  515. #ifdef CONFIG_NUMA
  516. movl r17=cpu_to_node_map
  517. ;;
  518. EX(.fail_efault, probe.w.fault r32, 3) // M This takes 5 cycles
  519. EX(.fail_efault, probe.w.fault r33, 3) // M This takes 5 cycles
  520. shladd r18=r3,1,r17
  521. ;;
  522. ld2 r20=[r18] // r20 = cpu_to_node_map[cpu]
  523. and r2 = TIF_ALLWORK_MASK,r2
  524. ;;
  525. cmp.ne p8,p0=0,r2
  526. (p8) br.spnt.many fsys_fallback_syscall
  527. ;;
  528. ;;
  529. EX(.fail_efault, st4 [r32] = r3)
  530. EX(.fail_efault, st2 [r33] = r20)
  531. mov r8=0
  532. ;;
  533. #else
  534. EX(.fail_efault, probe.w.fault r32, 3) // M This takes 5 cycles
  535. EX(.fail_efault, probe.w.fault r33, 3) // M This takes 5 cycles
  536. and r2 = TIF_ALLWORK_MASK,r2
  537. ;;
  538. cmp.ne p8,p0=0,r2
  539. (p8) br.spnt.many fsys_fallback_syscall
  540. ;;
  541. EX(.fail_efault, st4 [r32] = r3)
  542. EX(.fail_efault, st2 [r33] = r0)
  543. mov r8=0
  544. ;;
  545. #endif
  546. FSYS_RETURN
  547. END(fsys_getcpu)
  548. ENTRY(fsys_fallback_syscall)
  549. .prologue
  550. .altrp b6
  551. .body
  552. /*
  553. * We only get here from light-weight syscall handlers. Thus, we already
  554. * know that r15 contains a valid syscall number. No need to re-check.
  555. */
  556. adds r17=-1024,r15
  557. movl r14=sys_call_table
  558. ;;
  559. rsm psr.i
  560. shladd r18=r17,3,r14
  561. ;;
  562. ld8 r18=[r18] // load normal (heavy-weight) syscall entry-point
  563. mov r29=psr // read psr (12 cyc load latency)
  564. mov r27=ar.rsc
  565. mov r21=ar.fpsr
  566. mov r26=ar.pfs
  567. END(fsys_fallback_syscall)
  568. /* FALL THROUGH */
  569. GLOBAL_ENTRY(fsys_bubble_down)
  570. .prologue
  571. .altrp b6
  572. .body
  573. /*
  574. * We get here for syscalls that don't have a lightweight
  575. * handler. For those, we need to bubble down into the kernel
  576. * and that requires setting up a minimal pt_regs structure,
  577. * and initializing the CPU state more or less as if an
  578. * interruption had occurred. To make syscall-restarts work,
  579. * we setup pt_regs such that cr_iip points to the second
  580. * instruction in syscall_via_break. Decrementing the IP
  581. * hence will restart the syscall via break and not
  582. * decrementing IP will return us to the caller, as usual.
  583. * Note that we preserve the value of psr.pp rather than
  584. * initializing it from dcr.pp. This makes it possible to
  585. * distinguish fsyscall execution from other privileged
  586. * execution.
  587. *
  588. * On entry:
  589. * - normal fsyscall handler register usage, except
  590. * that we also have:
  591. * - r18: address of syscall entry point
  592. * - r21: ar.fpsr
  593. * - r26: ar.pfs
  594. * - r27: ar.rsc
  595. * - r29: psr
  596. *
  597. * We used to clear some PSR bits here but that requires slow
  598. * serialization. Fortuntely, that isn't really necessary.
  599. * The rationale is as follows: we used to clear bits
  600. * ~PSR_PRESERVED_BITS in PSR.L. Since
  601. * PSR_PRESERVED_BITS==PSR.{UP,MFL,MFH,PK,DT,PP,SP,RT,IC}, we
  602. * ended up clearing PSR.{BE,AC,I,DFL,DFH,DI,DB,SI,TB}.
  603. * However,
  604. *
  605. * PSR.BE : already is turned off in __kernel_syscall_via_epc()
  606. * PSR.AC : don't care (kernel normally turns PSR.AC on)
  607. * PSR.I : already turned off by the time fsys_bubble_down gets
  608. * invoked
  609. * PSR.DFL: always 0 (kernel never turns it on)
  610. * PSR.DFH: don't care --- kernel never touches f32-f127 on its own
  611. * initiative
  612. * PSR.DI : always 0 (kernel never turns it on)
  613. * PSR.SI : always 0 (kernel never turns it on)
  614. * PSR.DB : don't care --- kernel never enables kernel-level
  615. * breakpoints
  616. * PSR.TB : must be 0 already; if it wasn't zero on entry to
  617. * __kernel_syscall_via_epc, the branch to fsys_bubble_down
  618. * will trigger a taken branch; the taken-trap-handler then
  619. * converts the syscall into a break-based system-call.
  620. */
  621. /*
  622. * Reading psr.l gives us only bits 0-31, psr.it, and psr.mc.
  623. * The rest we have to synthesize.
  624. */
  625. # define PSR_ONE_BITS ((3 << IA64_PSR_CPL0_BIT) \
  626. | (0x1 << IA64_PSR_RI_BIT) \
  627. | IA64_PSR_BN | IA64_PSR_I)
  628. invala // M0|1
  629. movl r14=ia64_ret_from_syscall // X
  630. nop.m 0
  631. movl r28=__kernel_syscall_via_break // X create cr.iip
  632. ;;
  633. mov r2=r16 // A get task addr to addl-addressable register
  634. adds r16=IA64_TASK_THREAD_ON_USTACK_OFFSET,r16 // A
  635. mov r31=pr // I0 save pr (2 cyc)
  636. ;;
  637. st1 [r16]=r0 // M2|3 clear current->thread.on_ustack flag
  638. addl r22=IA64_RBS_OFFSET,r2 // A compute base of RBS
  639. add r3=TI_FLAGS+IA64_TASK_SIZE,r2 // A
  640. ;;
  641. ld4 r3=[r3] // M0|1 r3 = current_thread_info()->flags
  642. lfetch.fault.excl.nt1 [r22] // M0|1 prefetch register backing-store
  643. nop.i 0
  644. ;;
  645. mov ar.rsc=0 // M2 set enforced lazy mode, pl 0, LE, loadrs=0
  646. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  647. mov.m r30=ar.itc // M get cycle for accounting
  648. #else
  649. nop.m 0
  650. #endif
  651. nop.i 0
  652. ;;
  653. mov r23=ar.bspstore // M2 (12 cyc) save ar.bspstore
  654. mov.m r24=ar.rnat // M2 (5 cyc) read ar.rnat (dual-issues!)
  655. nop.i 0
  656. ;;
  657. mov ar.bspstore=r22 // M2 (6 cyc) switch to kernel RBS
  658. movl r8=PSR_ONE_BITS // X
  659. ;;
  660. mov r25=ar.unat // M2 (5 cyc) save ar.unat
  661. mov r19=b6 // I0 save b6 (2 cyc)
  662. mov r20=r1 // A save caller's gp in r20
  663. ;;
  664. or r29=r8,r29 // A construct cr.ipsr value to save
  665. mov b6=r18 // I0 copy syscall entry-point to b6 (7 cyc)
  666. addl r1=IA64_STK_OFFSET-IA64_PT_REGS_SIZE,r2 // A compute base of memory stack
  667. mov r18=ar.bsp // M2 save (kernel) ar.bsp (12 cyc)
  668. cmp.ne pKStk,pUStk=r0,r0 // A set pKStk <- 0, pUStk <- 1
  669. br.call.sptk.many b7=ia64_syscall_setup // B
  670. ;;
  671. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  672. // mov.m r30=ar.itc is called in advance
  673. add r16=TI_AC_STAMP+IA64_TASK_SIZE,r2
  674. add r17=TI_AC_LEAVE+IA64_TASK_SIZE,r2
  675. ;;
  676. ld8 r18=[r16],TI_AC_STIME-TI_AC_STAMP // time at last check in kernel
  677. ld8 r19=[r17],TI_AC_UTIME-TI_AC_LEAVE // time at leave kernel
  678. ;;
  679. ld8 r20=[r16],TI_AC_STAMP-TI_AC_STIME // cumulated stime
  680. ld8 r21=[r17] // cumulated utime
  681. sub r22=r19,r18 // stime before leave kernel
  682. ;;
  683. st8 [r16]=r30,TI_AC_STIME-TI_AC_STAMP // update stamp
  684. sub r18=r30,r19 // elapsed time in user mode
  685. ;;
  686. add r20=r20,r22 // sum stime
  687. add r21=r21,r18 // sum utime
  688. ;;
  689. st8 [r16]=r20 // update stime
  690. st8 [r17]=r21 // update utime
  691. ;;
  692. #endif
  693. mov ar.rsc=0x3 // M2 set eager mode, pl 0, LE, loadrs=0
  694. mov rp=r14 // I0 set the real return addr
  695. and r3=_TIF_SYSCALL_TRACEAUDIT,r3 // A
  696. ;;
  697. ssm psr.i // M2 we're on kernel stacks now, reenable irqs
  698. cmp.eq p8,p0=r3,r0 // A
  699. (p10) br.cond.spnt.many ia64_ret_from_syscall // B return if bad call-frame or r15 is a NaT
  700. nop.m 0
  701. (p8) br.call.sptk.many b6=b6 // B (ignore return address)
  702. br.cond.spnt ia64_trace_syscall // B
  703. END(fsys_bubble_down)
  704. .rodata
  705. .align 8
  706. .globl fsyscall_table
  707. data8 fsys_bubble_down
  708. fsyscall_table:
  709. data8 fsys_ni_syscall
  710. data8 0 // exit // 1025
  711. data8 0 // read
  712. data8 0 // write
  713. data8 0 // open
  714. data8 0 // close
  715. data8 0 // creat // 1030
  716. data8 0 // link
  717. data8 0 // unlink
  718. data8 0 // execve
  719. data8 0 // chdir
  720. data8 0 // fchdir // 1035
  721. data8 0 // utimes
  722. data8 0 // mknod
  723. data8 0 // chmod
  724. data8 0 // chown
  725. data8 0 // lseek // 1040
  726. data8 fsys_getpid // getpid
  727. data8 fsys_getppid // getppid
  728. data8 0 // mount
  729. data8 0 // umount
  730. data8 0 // setuid // 1045
  731. data8 0 // getuid
  732. data8 0 // geteuid
  733. data8 0 // ptrace
  734. data8 0 // access
  735. data8 0 // sync // 1050
  736. data8 0 // fsync
  737. data8 0 // fdatasync
  738. data8 0 // kill
  739. data8 0 // rename
  740. data8 0 // mkdir // 1055
  741. data8 0 // rmdir
  742. data8 0 // dup
  743. data8 0 // pipe
  744. data8 0 // times
  745. data8 0 // brk // 1060
  746. data8 0 // setgid
  747. data8 0 // getgid
  748. data8 0 // getegid
  749. data8 0 // acct
  750. data8 0 // ioctl // 1065
  751. data8 0 // fcntl
  752. data8 0 // umask
  753. data8 0 // chroot
  754. data8 0 // ustat
  755. data8 0 // dup2 // 1070
  756. data8 0 // setreuid
  757. data8 0 // setregid
  758. data8 0 // getresuid
  759. data8 0 // setresuid
  760. data8 0 // getresgid // 1075
  761. data8 0 // setresgid
  762. data8 0 // getgroups
  763. data8 0 // setgroups
  764. data8 0 // getpgid
  765. data8 0 // setpgid // 1080
  766. data8 0 // setsid
  767. data8 0 // getsid
  768. data8 0 // sethostname
  769. data8 0 // setrlimit
  770. data8 0 // getrlimit // 1085
  771. data8 0 // getrusage
  772. data8 fsys_gettimeofday // gettimeofday
  773. data8 0 // settimeofday
  774. data8 0 // select
  775. data8 0 // poll // 1090
  776. data8 0 // symlink
  777. data8 0 // readlink
  778. data8 0 // uselib
  779. data8 0 // swapon
  780. data8 0 // swapoff // 1095
  781. data8 0 // reboot
  782. data8 0 // truncate
  783. data8 0 // ftruncate
  784. data8 0 // fchmod
  785. data8 0 // fchown // 1100
  786. data8 0 // getpriority
  787. data8 0 // setpriority
  788. data8 0 // statfs
  789. data8 0 // fstatfs
  790. data8 0 // gettid // 1105
  791. data8 0 // semget
  792. data8 0 // semop
  793. data8 0 // semctl
  794. data8 0 // msgget
  795. data8 0 // msgsnd // 1110
  796. data8 0 // msgrcv
  797. data8 0 // msgctl
  798. data8 0 // shmget
  799. data8 0 // shmat
  800. data8 0 // shmdt // 1115
  801. data8 0 // shmctl
  802. data8 0 // syslog
  803. data8 0 // setitimer
  804. data8 0 // getitimer
  805. data8 0 // 1120
  806. data8 0
  807. data8 0
  808. data8 0 // vhangup
  809. data8 0 // lchown
  810. data8 0 // remap_file_pages // 1125
  811. data8 0 // wait4
  812. data8 0 // sysinfo
  813. data8 0 // clone
  814. data8 0 // setdomainname
  815. data8 0 // newuname // 1130
  816. data8 0 // adjtimex
  817. data8 0
  818. data8 0 // init_module
  819. data8 0 // delete_module
  820. data8 0 // 1135
  821. data8 0
  822. data8 0 // quotactl
  823. data8 0 // bdflush
  824. data8 0 // sysfs
  825. data8 0 // personality // 1140
  826. data8 0 // afs_syscall
  827. data8 0 // setfsuid
  828. data8 0 // setfsgid
  829. data8 0 // getdents
  830. data8 0 // flock // 1145
  831. data8 0 // readv
  832. data8 0 // writev
  833. data8 0 // pread64
  834. data8 0 // pwrite64
  835. data8 0 // sysctl // 1150
  836. data8 0 // mmap
  837. data8 0 // munmap
  838. data8 0 // mlock
  839. data8 0 // mlockall
  840. data8 0 // mprotect // 1155
  841. data8 0 // mremap
  842. data8 0 // msync
  843. data8 0 // munlock
  844. data8 0 // munlockall
  845. data8 0 // sched_getparam // 1160
  846. data8 0 // sched_setparam
  847. data8 0 // sched_getscheduler
  848. data8 0 // sched_setscheduler
  849. data8 0 // sched_yield
  850. data8 0 // sched_get_priority_max // 1165
  851. data8 0 // sched_get_priority_min
  852. data8 0 // sched_rr_get_interval
  853. data8 0 // nanosleep
  854. data8 0 // nfsservctl
  855. data8 0 // prctl // 1170
  856. data8 0 // getpagesize
  857. data8 0 // mmap2
  858. data8 0 // pciconfig_read
  859. data8 0 // pciconfig_write
  860. data8 0 // perfmonctl // 1175
  861. data8 0 // sigaltstack
  862. data8 0 // rt_sigaction
  863. data8 0 // rt_sigpending
  864. data8 fsys_rt_sigprocmask // rt_sigprocmask
  865. data8 0 // rt_sigqueueinfo // 1180
  866. data8 0 // rt_sigreturn
  867. data8 0 // rt_sigsuspend
  868. data8 0 // rt_sigtimedwait
  869. data8 0 // getcwd
  870. data8 0 // capget // 1185
  871. data8 0 // capset
  872. data8 0 // sendfile
  873. data8 0
  874. data8 0
  875. data8 0 // socket // 1190
  876. data8 0 // bind
  877. data8 0 // connect
  878. data8 0 // listen
  879. data8 0 // accept
  880. data8 0 // getsockname // 1195
  881. data8 0 // getpeername
  882. data8 0 // socketpair
  883. data8 0 // send
  884. data8 0 // sendto
  885. data8 0 // recv // 1200
  886. data8 0 // recvfrom
  887. data8 0 // shutdown
  888. data8 0 // setsockopt
  889. data8 0 // getsockopt
  890. data8 0 // sendmsg // 1205
  891. data8 0 // recvmsg
  892. data8 0 // pivot_root
  893. data8 0 // mincore
  894. data8 0 // madvise
  895. data8 0 // newstat // 1210
  896. data8 0 // newlstat
  897. data8 0 // newfstat
  898. data8 0 // clone2
  899. data8 0 // getdents64
  900. data8 0 // getunwind // 1215
  901. data8 0 // readahead
  902. data8 0 // setxattr
  903. data8 0 // lsetxattr
  904. data8 0 // fsetxattr
  905. data8 0 // getxattr // 1220
  906. data8 0 // lgetxattr
  907. data8 0 // fgetxattr
  908. data8 0 // listxattr
  909. data8 0 // llistxattr
  910. data8 0 // flistxattr // 1225
  911. data8 0 // removexattr
  912. data8 0 // lremovexattr
  913. data8 0 // fremovexattr
  914. data8 0 // tkill
  915. data8 0 // futex // 1230
  916. data8 0 // sched_setaffinity
  917. data8 0 // sched_getaffinity
  918. data8 fsys_set_tid_address // set_tid_address
  919. data8 0 // fadvise64_64
  920. data8 0 // tgkill // 1235
  921. data8 0 // exit_group
  922. data8 0 // lookup_dcookie
  923. data8 0 // io_setup
  924. data8 0 // io_destroy
  925. data8 0 // io_getevents // 1240
  926. data8 0 // io_submit
  927. data8 0 // io_cancel
  928. data8 0 // epoll_create
  929. data8 0 // epoll_ctl
  930. data8 0 // epoll_wait // 1245
  931. data8 0 // restart_syscall
  932. data8 0 // semtimedop
  933. data8 0 // timer_create
  934. data8 0 // timer_settime
  935. data8 0 // timer_gettime // 1250
  936. data8 0 // timer_getoverrun
  937. data8 0 // timer_delete
  938. data8 0 // clock_settime
  939. data8 fsys_clock_gettime // clock_gettime
  940. data8 0 // clock_getres // 1255
  941. data8 0 // clock_nanosleep
  942. data8 0 // fstatfs64
  943. data8 0 // statfs64
  944. data8 0 // mbind
  945. data8 0 // get_mempolicy // 1260
  946. data8 0 // set_mempolicy
  947. data8 0 // mq_open
  948. data8 0 // mq_unlink
  949. data8 0 // mq_timedsend
  950. data8 0 // mq_timedreceive // 1265
  951. data8 0 // mq_notify
  952. data8 0 // mq_getsetattr
  953. data8 0 // kexec_load
  954. data8 0 // vserver
  955. data8 0 // waitid // 1270
  956. data8 0 // add_key
  957. data8 0 // request_key
  958. data8 0 // keyctl
  959. data8 0 // ioprio_set
  960. data8 0 // ioprio_get // 1275
  961. data8 0 // move_pages
  962. data8 0 // inotify_init
  963. data8 0 // inotify_add_watch
  964. data8 0 // inotify_rm_watch
  965. data8 0 // migrate_pages // 1280
  966. data8 0 // openat
  967. data8 0 // mkdirat
  968. data8 0 // mknodat
  969. data8 0 // fchownat
  970. data8 0 // futimesat // 1285
  971. data8 0 // newfstatat
  972. data8 0 // unlinkat
  973. data8 0 // renameat
  974. data8 0 // linkat
  975. data8 0 // symlinkat // 1290
  976. data8 0 // readlinkat
  977. data8 0 // fchmodat
  978. data8 0 // faccessat
  979. data8 0
  980. data8 0 // 1295
  981. data8 0 // unshare
  982. data8 0 // splice
  983. data8 0 // set_robust_list
  984. data8 0 // get_robust_list
  985. data8 0 // sync_file_range // 1300
  986. data8 0 // tee
  987. data8 0 // vmsplice
  988. data8 0
  989. data8 fsys_getcpu // getcpu // 1304
  990. // fill in zeros for the remaining entries
  991. .zero:
  992. .space fsyscall_table + 8*NR_syscalls - .zero, 0