entry.S 33 KB

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  1. /*
  2. * arch/s390/kernel/entry.S
  3. * S390 low-level entry points.
  4. *
  5. * S390 version
  6. * Copyright (C) 1999,2000 IBM Deutschland Entwicklung GmbH, IBM Corporation
  7. * Author(s): Martin Schwidefsky (schwidefsky@de.ibm.com),
  8. * Hartmut Penner (hp@de.ibm.com),
  9. * Denis Joseph Barrow (djbarrow@de.ibm.com,barrow_dj@yahoo.com),
  10. * Heiko Carstens <heiko.carstens@de.ibm.com>
  11. */
  12. #include <linux/sys.h>
  13. #include <linux/linkage.h>
  14. #include <linux/config.h>
  15. #include <asm/cache.h>
  16. #include <asm/lowcore.h>
  17. #include <asm/errno.h>
  18. #include <asm/ptrace.h>
  19. #include <asm/thread_info.h>
  20. #include <asm/asm-offsets.h>
  21. #include <asm/unistd.h>
  22. #include <asm/page.h>
  23. /*
  24. * Stack layout for the system_call stack entry.
  25. * The first few entries are identical to the user_regs_struct.
  26. */
  27. SP_PTREGS = STACK_FRAME_OVERHEAD
  28. SP_ARGS = STACK_FRAME_OVERHEAD + __PT_ARGS
  29. SP_PSW = STACK_FRAME_OVERHEAD + __PT_PSW
  30. SP_R0 = STACK_FRAME_OVERHEAD + __PT_GPRS
  31. SP_R1 = STACK_FRAME_OVERHEAD + __PT_GPRS + 4
  32. SP_R2 = STACK_FRAME_OVERHEAD + __PT_GPRS + 8
  33. SP_R3 = STACK_FRAME_OVERHEAD + __PT_GPRS + 12
  34. SP_R4 = STACK_FRAME_OVERHEAD + __PT_GPRS + 16
  35. SP_R5 = STACK_FRAME_OVERHEAD + __PT_GPRS + 20
  36. SP_R6 = STACK_FRAME_OVERHEAD + __PT_GPRS + 24
  37. SP_R7 = STACK_FRAME_OVERHEAD + __PT_GPRS + 28
  38. SP_R8 = STACK_FRAME_OVERHEAD + __PT_GPRS + 32
  39. SP_R9 = STACK_FRAME_OVERHEAD + __PT_GPRS + 36
  40. SP_R10 = STACK_FRAME_OVERHEAD + __PT_GPRS + 40
  41. SP_R11 = STACK_FRAME_OVERHEAD + __PT_GPRS + 44
  42. SP_R12 = STACK_FRAME_OVERHEAD + __PT_GPRS + 48
  43. SP_R13 = STACK_FRAME_OVERHEAD + __PT_GPRS + 52
  44. SP_R14 = STACK_FRAME_OVERHEAD + __PT_GPRS + 56
  45. SP_R15 = STACK_FRAME_OVERHEAD + __PT_GPRS + 60
  46. SP_ORIG_R2 = STACK_FRAME_OVERHEAD + __PT_ORIG_GPR2
  47. SP_ILC = STACK_FRAME_OVERHEAD + __PT_ILC
  48. SP_TRAP = STACK_FRAME_OVERHEAD + __PT_TRAP
  49. SP_SIZE = STACK_FRAME_OVERHEAD + __PT_SIZE
  50. _TIF_WORK_SVC = (_TIF_SIGPENDING | _TIF_NEED_RESCHED | _TIF_MCCK_PENDING | \
  51. _TIF_RESTART_SVC | _TIF_SINGLE_STEP )
  52. _TIF_WORK_INT = (_TIF_SIGPENDING | _TIF_NEED_RESCHED | _TIF_MCCK_PENDING)
  53. STACK_SHIFT = PAGE_SHIFT + THREAD_ORDER
  54. STACK_SIZE = 1 << STACK_SHIFT
  55. #define BASED(name) name-system_call(%r13)
  56. /*
  57. * Register usage in interrupt handlers:
  58. * R9 - pointer to current task structure
  59. * R13 - pointer to literal pool
  60. * R14 - return register for function calls
  61. * R15 - kernel stack pointer
  62. */
  63. .macro STORE_TIMER lc_offset
  64. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  65. stpt \lc_offset
  66. #endif
  67. .endm
  68. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  69. .macro UPDATE_VTIME lc_from,lc_to,lc_sum
  70. lm %r10,%r11,\lc_from
  71. sl %r10,\lc_to
  72. sl %r11,\lc_to+4
  73. bc 3,BASED(0f)
  74. sl %r10,BASED(.Lc_1)
  75. 0: al %r10,\lc_sum
  76. al %r11,\lc_sum+4
  77. bc 12,BASED(1f)
  78. al %r10,BASED(.Lc_1)
  79. 1: stm %r10,%r11,\lc_sum
  80. .endm
  81. #endif
  82. .macro SAVE_ALL_BASE savearea
  83. stm %r12,%r15,\savearea
  84. l %r13,__LC_SVC_NEW_PSW+4 # load &system_call to %r13
  85. .endm
  86. .macro SAVE_ALL psworg,savearea,sync
  87. la %r12,\psworg
  88. .if \sync
  89. tm \psworg+1,0x01 # test problem state bit
  90. bz BASED(2f) # skip stack setup save
  91. l %r15,__LC_KERNEL_STACK # problem state -> load ksp
  92. .else
  93. tm \psworg+1,0x01 # test problem state bit
  94. bnz BASED(1f) # from user -> load async stack
  95. clc \psworg+4(4),BASED(.Lcritical_end)
  96. bhe BASED(0f)
  97. clc \psworg+4(4),BASED(.Lcritical_start)
  98. bl BASED(0f)
  99. l %r14,BASED(.Lcleanup_critical)
  100. basr %r14,%r14
  101. tm 0(%r12),0x01 # retest problem state after cleanup
  102. bnz BASED(1f)
  103. 0: l %r14,__LC_ASYNC_STACK # are we already on the async stack ?
  104. slr %r14,%r15
  105. sra %r14,STACK_SHIFT
  106. be BASED(2f)
  107. 1: l %r15,__LC_ASYNC_STACK
  108. .endif
  109. #ifdef CONFIG_CHECK_STACK
  110. b BASED(3f)
  111. 2: tml %r15,STACK_SIZE - CONFIG_STACK_GUARD
  112. bz BASED(stack_overflow)
  113. 3:
  114. #endif
  115. 2:
  116. .endm
  117. .macro CREATE_STACK_FRAME psworg,savearea
  118. s %r15,BASED(.Lc_spsize) # make room for registers & psw
  119. mvc SP_PSW(8,%r15),0(%r12) # move user PSW to stack
  120. la %r12,\psworg
  121. st %r2,SP_ORIG_R2(%r15) # store original content of gpr 2
  122. icm %r12,12,__LC_SVC_ILC
  123. stm %r0,%r11,SP_R0(%r15) # store gprs %r0-%r11 to kernel stack
  124. st %r12,SP_ILC(%r15)
  125. mvc SP_R12(16,%r15),\savearea # move %r12-%r15 to stack
  126. la %r12,0
  127. st %r12,__SF_BACKCHAIN(%r15) # clear back chain
  128. .endm
  129. .macro RESTORE_ALL psworg,sync
  130. mvc \psworg(8),SP_PSW(%r15) # move user PSW to lowcore
  131. .if !\sync
  132. ni \psworg+1,0xfd # clear wait state bit
  133. .endif
  134. lm %r0,%r15,SP_R0(%r15) # load gprs 0-15 of user
  135. STORE_TIMER __LC_EXIT_TIMER
  136. lpsw \psworg # back to caller
  137. .endm
  138. /*
  139. * Scheduler resume function, called by switch_to
  140. * gpr2 = (task_struct *) prev
  141. * gpr3 = (task_struct *) next
  142. * Returns:
  143. * gpr2 = prev
  144. */
  145. .globl __switch_to
  146. __switch_to:
  147. basr %r1,0
  148. __switch_to_base:
  149. tm __THREAD_per(%r3),0xe8 # new process is using per ?
  150. bz __switch_to_noper-__switch_to_base(%r1) # if not we're fine
  151. stctl %c9,%c11,__SF_EMPTY(%r15) # We are using per stuff
  152. clc __THREAD_per(12,%r3),__SF_EMPTY(%r15)
  153. be __switch_to_noper-__switch_to_base(%r1) # we got away w/o bashing TLB's
  154. lctl %c9,%c11,__THREAD_per(%r3) # Nope we didn't
  155. __switch_to_noper:
  156. l %r4,__THREAD_info(%r2) # get thread_info of prev
  157. tm __TI_flags+3(%r4),_TIF_MCCK_PENDING # machine check pending?
  158. bz __switch_to_no_mcck-__switch_to_base(%r1)
  159. ni __TI_flags+3(%r4),255-_TIF_MCCK_PENDING # clear flag in prev
  160. l %r4,__THREAD_info(%r3) # get thread_info of next
  161. oi __TI_flags+3(%r4),_TIF_MCCK_PENDING # set it in next
  162. __switch_to_no_mcck:
  163. stm %r6,%r15,__SF_GPRS(%r15)# store __switch_to registers of prev task
  164. st %r15,__THREAD_ksp(%r2) # store kernel stack to prev->tss.ksp
  165. l %r15,__THREAD_ksp(%r3) # load kernel stack from next->tss.ksp
  166. lm %r6,%r15,__SF_GPRS(%r15)# load __switch_to registers of next task
  167. st %r3,__LC_CURRENT # __LC_CURRENT = current task struct
  168. lctl %c4,%c4,__TASK_pid(%r3) # load pid to control reg. 4
  169. l %r3,__THREAD_info(%r3) # load thread_info from task struct
  170. st %r3,__LC_THREAD_INFO
  171. ahi %r3,STACK_SIZE
  172. st %r3,__LC_KERNEL_STACK # __LC_KERNEL_STACK = new kernel stack
  173. br %r14
  174. __critical_start:
  175. /*
  176. * SVC interrupt handler routine. System calls are synchronous events and
  177. * are executed with interrupts enabled.
  178. */
  179. .globl system_call
  180. system_call:
  181. STORE_TIMER __LC_SYNC_ENTER_TIMER
  182. sysc_saveall:
  183. SAVE_ALL_BASE __LC_SAVE_AREA
  184. SAVE_ALL __LC_SVC_OLD_PSW,__LC_SAVE_AREA,1
  185. CREATE_STACK_FRAME __LC_SVC_OLD_PSW,__LC_SAVE_AREA
  186. lh %r7,0x8a # get svc number from lowcore
  187. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  188. sysc_vtime:
  189. tm SP_PSW+1(%r15),0x01 # interrupting from user ?
  190. bz BASED(sysc_do_svc)
  191. UPDATE_VTIME __LC_EXIT_TIMER,__LC_SYNC_ENTER_TIMER,__LC_USER_TIMER
  192. sysc_stime:
  193. UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
  194. sysc_update:
  195. mvc __LC_LAST_UPDATE_TIMER(8),__LC_SYNC_ENTER_TIMER
  196. #endif
  197. sysc_do_svc:
  198. l %r9,__LC_THREAD_INFO # load pointer to thread_info struct
  199. sla %r7,2 # *4 and test for svc 0
  200. bnz BASED(sysc_nr_ok) # svc number > 0
  201. # svc 0: system call number in %r1
  202. cl %r1,BASED(.Lnr_syscalls)
  203. bnl BASED(sysc_nr_ok)
  204. lr %r7,%r1 # copy svc number to %r7
  205. sla %r7,2 # *4
  206. sysc_nr_ok:
  207. mvc SP_ARGS(4,%r15),SP_R7(%r15)
  208. sysc_do_restart:
  209. tm __TI_flags+3(%r9),(_TIF_SYSCALL_TRACE|_TIF_SYSCALL_AUDIT)
  210. l %r8,sys_call_table-system_call(%r7,%r13) # get system call addr.
  211. bnz BASED(sysc_tracesys)
  212. basr %r14,%r8 # call sys_xxxx
  213. st %r2,SP_R2(%r15) # store return value (change R2 on stack)
  214. # ATTENTION: check sys_execve_glue before
  215. # changing anything here !!
  216. sysc_return:
  217. tm SP_PSW+1(%r15),0x01 # returning to user ?
  218. bno BASED(sysc_leave)
  219. tm __TI_flags+3(%r9),_TIF_WORK_SVC
  220. bnz BASED(sysc_work) # there is work to do (signals etc.)
  221. sysc_leave:
  222. RESTORE_ALL __LC_RETURN_PSW,1
  223. #
  224. # recheck if there is more work to do
  225. #
  226. sysc_work_loop:
  227. tm __TI_flags+3(%r9),_TIF_WORK_SVC
  228. bz BASED(sysc_leave) # there is no work to do
  229. #
  230. # One of the work bits is on. Find out which one.
  231. #
  232. sysc_work:
  233. tm __TI_flags+3(%r9),_TIF_MCCK_PENDING
  234. bo BASED(sysc_mcck_pending)
  235. tm __TI_flags+3(%r9),_TIF_NEED_RESCHED
  236. bo BASED(sysc_reschedule)
  237. tm __TI_flags+3(%r9),_TIF_SIGPENDING
  238. bo BASED(sysc_sigpending)
  239. tm __TI_flags+3(%r9),_TIF_RESTART_SVC
  240. bo BASED(sysc_restart)
  241. tm __TI_flags+3(%r9),_TIF_SINGLE_STEP
  242. bo BASED(sysc_singlestep)
  243. b BASED(sysc_leave)
  244. #
  245. # _TIF_NEED_RESCHED is set, call schedule
  246. #
  247. sysc_reschedule:
  248. l %r1,BASED(.Lschedule)
  249. la %r14,BASED(sysc_work_loop)
  250. br %r1 # call scheduler
  251. #
  252. # _TIF_MCCK_PENDING is set, call handler
  253. #
  254. sysc_mcck_pending:
  255. l %r1,BASED(.Ls390_handle_mcck)
  256. la %r14,BASED(sysc_work_loop)
  257. br %r1 # TIF bit will be cleared by handler
  258. #
  259. # _TIF_SIGPENDING is set, call do_signal
  260. #
  261. sysc_sigpending:
  262. ni __TI_flags+3(%r9),255-_TIF_SINGLE_STEP # clear TIF_SINGLE_STEP
  263. la %r2,SP_PTREGS(%r15) # load pt_regs
  264. sr %r3,%r3 # clear *oldset
  265. l %r1,BASED(.Ldo_signal)
  266. basr %r14,%r1 # call do_signal
  267. tm __TI_flags+3(%r9),_TIF_RESTART_SVC
  268. bo BASED(sysc_restart)
  269. tm __TI_flags+3(%r9),_TIF_SINGLE_STEP
  270. bo BASED(sysc_singlestep)
  271. b BASED(sysc_leave) # out of here, do NOT recheck
  272. #
  273. # _TIF_RESTART_SVC is set, set up registers and restart svc
  274. #
  275. sysc_restart:
  276. ni __TI_flags+3(%r9),255-_TIF_RESTART_SVC # clear TIF_RESTART_SVC
  277. l %r7,SP_R2(%r15) # load new svc number
  278. sla %r7,2
  279. mvc SP_R2(4,%r15),SP_ORIG_R2(%r15) # restore first argument
  280. lm %r2,%r6,SP_R2(%r15) # load svc arguments
  281. b BASED(sysc_do_restart) # restart svc
  282. #
  283. # _TIF_SINGLE_STEP is set, call do_single_step
  284. #
  285. sysc_singlestep:
  286. ni __TI_flags+3(%r9),255-_TIF_SINGLE_STEP # clear TIF_SINGLE_STEP
  287. mvi SP_TRAP+1(%r15),0x28 # set trap indication to pgm check
  288. la %r2,SP_PTREGS(%r15) # address of register-save area
  289. l %r1,BASED(.Lhandle_per) # load adr. of per handler
  290. la %r14,BASED(sysc_return) # load adr. of system return
  291. br %r1 # branch to do_single_step
  292. #
  293. # call trace before and after sys_call
  294. #
  295. sysc_tracesys:
  296. l %r1,BASED(.Ltrace)
  297. la %r2,SP_PTREGS(%r15) # load pt_regs
  298. la %r3,0
  299. srl %r7,2
  300. st %r7,SP_R2(%r15)
  301. basr %r14,%r1
  302. clc SP_R2(4,%r15),BASED(.Lnr_syscalls)
  303. bnl BASED(sysc_tracenogo)
  304. l %r7,SP_R2(%r15) # strace might have changed the
  305. sll %r7,2 # system call
  306. l %r8,sys_call_table-system_call(%r7,%r13)
  307. sysc_tracego:
  308. lm %r3,%r6,SP_R3(%r15)
  309. l %r2,SP_ORIG_R2(%r15)
  310. basr %r14,%r8 # call sys_xxx
  311. st %r2,SP_R2(%r15) # store return value
  312. sysc_tracenogo:
  313. tm __TI_flags+3(%r9),(_TIF_SYSCALL_TRACE|_TIF_SYSCALL_AUDIT)
  314. bz BASED(sysc_return)
  315. l %r1,BASED(.Ltrace)
  316. la %r2,SP_PTREGS(%r15) # load pt_regs
  317. la %r3,1
  318. la %r14,BASED(sysc_return)
  319. br %r1
  320. #
  321. # a new process exits the kernel with ret_from_fork
  322. #
  323. .globl ret_from_fork
  324. ret_from_fork:
  325. l %r13,__LC_SVC_NEW_PSW+4
  326. l %r9,__LC_THREAD_INFO # load pointer to thread_info struct
  327. tm SP_PSW+1(%r15),0x01 # forking a kernel thread ?
  328. bo BASED(0f)
  329. st %r15,SP_R15(%r15) # store stack pointer for new kthread
  330. 0: l %r1,BASED(.Lschedtail)
  331. basr %r14,%r1
  332. stosm __SF_EMPTY(%r15),0x03 # reenable interrupts
  333. b BASED(sysc_return)
  334. #
  335. # clone, fork, vfork, exec and sigreturn need glue,
  336. # because they all expect pt_regs as parameter,
  337. # but are called with different parameter.
  338. # return-address is set up above
  339. #
  340. sys_clone_glue:
  341. la %r2,SP_PTREGS(%r15) # load pt_regs
  342. l %r1,BASED(.Lclone)
  343. br %r1 # branch to sys_clone
  344. sys_fork_glue:
  345. la %r2,SP_PTREGS(%r15) # load pt_regs
  346. l %r1,BASED(.Lfork)
  347. br %r1 # branch to sys_fork
  348. sys_vfork_glue:
  349. la %r2,SP_PTREGS(%r15) # load pt_regs
  350. l %r1,BASED(.Lvfork)
  351. br %r1 # branch to sys_vfork
  352. sys_execve_glue:
  353. la %r2,SP_PTREGS(%r15) # load pt_regs
  354. l %r1,BASED(.Lexecve)
  355. lr %r12,%r14 # save return address
  356. basr %r14,%r1 # call sys_execve
  357. ltr %r2,%r2 # check if execve failed
  358. bnz 0(%r12) # it did fail -> store result in gpr2
  359. b 4(%r12) # SKIP ST 2,SP_R2(15) after BASR 14,8
  360. # in system_call/sysc_tracesys
  361. sys_sigreturn_glue:
  362. la %r2,SP_PTREGS(%r15) # load pt_regs as parameter
  363. l %r1,BASED(.Lsigreturn)
  364. br %r1 # branch to sys_sigreturn
  365. sys_rt_sigreturn_glue:
  366. la %r2,SP_PTREGS(%r15) # load pt_regs as parameter
  367. l %r1,BASED(.Lrt_sigreturn)
  368. br %r1 # branch to sys_sigreturn
  369. #
  370. # sigsuspend and rt_sigsuspend need pt_regs as an additional
  371. # parameter and they have to skip the store of %r2 into the
  372. # user register %r2 because the return value was set in
  373. # sigsuspend and rt_sigsuspend already and must not be overwritten!
  374. #
  375. sys_sigsuspend_glue:
  376. lr %r5,%r4 # move mask back
  377. lr %r4,%r3 # move history1 parameter
  378. lr %r3,%r2 # move history0 parameter
  379. la %r2,SP_PTREGS(%r15) # load pt_regs as first parameter
  380. l %r1,BASED(.Lsigsuspend)
  381. la %r14,4(%r14) # skip store of return value
  382. br %r1 # branch to sys_sigsuspend
  383. sys_rt_sigsuspend_glue:
  384. lr %r4,%r3 # move sigsetsize parameter
  385. lr %r3,%r2 # move unewset parameter
  386. la %r2,SP_PTREGS(%r15) # load pt_regs as first parameter
  387. l %r1,BASED(.Lrt_sigsuspend)
  388. la %r14,4(%r14) # skip store of return value
  389. br %r1 # branch to sys_rt_sigsuspend
  390. sys_sigaltstack_glue:
  391. la %r4,SP_PTREGS(%r15) # load pt_regs as parameter
  392. l %r1,BASED(.Lsigaltstack)
  393. br %r1 # branch to sys_sigreturn
  394. /*
  395. * Program check handler routine
  396. */
  397. .globl pgm_check_handler
  398. pgm_check_handler:
  399. /*
  400. * First we need to check for a special case:
  401. * Single stepping an instruction that disables the PER event mask will
  402. * cause a PER event AFTER the mask has been set. Example: SVC or LPSW.
  403. * For a single stepped SVC the program check handler gets control after
  404. * the SVC new PSW has been loaded. But we want to execute the SVC first and
  405. * then handle the PER event. Therefore we update the SVC old PSW to point
  406. * to the pgm_check_handler and branch to the SVC handler after we checked
  407. * if we have to load the kernel stack register.
  408. * For every other possible cause for PER event without the PER mask set
  409. * we just ignore the PER event (FIXME: is there anything we have to do
  410. * for LPSW?).
  411. */
  412. STORE_TIMER __LC_SYNC_ENTER_TIMER
  413. SAVE_ALL_BASE __LC_SAVE_AREA
  414. tm __LC_PGM_INT_CODE+1,0x80 # check whether we got a per exception
  415. bnz BASED(pgm_per) # got per exception -> special case
  416. SAVE_ALL __LC_PGM_OLD_PSW,__LC_SAVE_AREA,1
  417. CREATE_STACK_FRAME __LC_PGM_OLD_PSW,__LC_SAVE_AREA
  418. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  419. tm SP_PSW+1(%r15),0x01 # interrupting from user ?
  420. bz BASED(pgm_no_vtime)
  421. UPDATE_VTIME __LC_EXIT_TIMER,__LC_SYNC_ENTER_TIMER,__LC_USER_TIMER
  422. UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
  423. mvc __LC_LAST_UPDATE_TIMER(8),__LC_SYNC_ENTER_TIMER
  424. pgm_no_vtime:
  425. #endif
  426. l %r9,__LC_THREAD_INFO # load pointer to thread_info struct
  427. l %r3,__LC_PGM_ILC # load program interruption code
  428. la %r8,0x7f
  429. nr %r8,%r3
  430. pgm_do_call:
  431. l %r7,BASED(.Ljump_table)
  432. sll %r8,2
  433. l %r7,0(%r8,%r7) # load address of handler routine
  434. la %r2,SP_PTREGS(%r15) # address of register-save area
  435. la %r14,BASED(sysc_return)
  436. br %r7 # branch to interrupt-handler
  437. #
  438. # handle per exception
  439. #
  440. pgm_per:
  441. tm __LC_PGM_OLD_PSW,0x40 # test if per event recording is on
  442. bnz BASED(pgm_per_std) # ok, normal per event from user space
  443. # ok its one of the special cases, now we need to find out which one
  444. clc __LC_PGM_OLD_PSW(8),__LC_SVC_NEW_PSW
  445. be BASED(pgm_svcper)
  446. # no interesting special case, ignore PER event
  447. lm %r12,%r15,__LC_SAVE_AREA
  448. lpsw 0x28
  449. #
  450. # Normal per exception
  451. #
  452. pgm_per_std:
  453. SAVE_ALL __LC_PGM_OLD_PSW,__LC_SAVE_AREA,1
  454. CREATE_STACK_FRAME __LC_PGM_OLD_PSW,__LC_SAVE_AREA
  455. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  456. tm SP_PSW+1(%r15),0x01 # interrupting from user ?
  457. bz BASED(pgm_no_vtime2)
  458. UPDATE_VTIME __LC_EXIT_TIMER,__LC_SYNC_ENTER_TIMER,__LC_USER_TIMER
  459. UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
  460. mvc __LC_LAST_UPDATE_TIMER(8),__LC_SYNC_ENTER_TIMER
  461. pgm_no_vtime2:
  462. #endif
  463. l %r9,__LC_THREAD_INFO # load pointer to thread_info struct
  464. l %r1,__TI_task(%r9)
  465. mvc __THREAD_per+__PER_atmid(2,%r1),__LC_PER_ATMID
  466. mvc __THREAD_per+__PER_address(4,%r1),__LC_PER_ADDRESS
  467. mvc __THREAD_per+__PER_access_id(1,%r1),__LC_PER_ACCESS_ID
  468. oi __TI_flags+3(%r9),_TIF_SINGLE_STEP # set TIF_SINGLE_STEP
  469. l %r3,__LC_PGM_ILC # load program interruption code
  470. la %r8,0x7f
  471. nr %r8,%r3 # clear per-event-bit and ilc
  472. be BASED(sysc_return) # only per or per+check ?
  473. b BASED(pgm_do_call)
  474. #
  475. # it was a single stepped SVC that is causing all the trouble
  476. #
  477. pgm_svcper:
  478. SAVE_ALL __LC_SVC_OLD_PSW,__LC_SAVE_AREA,1
  479. CREATE_STACK_FRAME __LC_SVC_OLD_PSW,__LC_SAVE_AREA
  480. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  481. tm SP_PSW+1(%r15),0x01 # interrupting from user ?
  482. bz BASED(pgm_no_vtime3)
  483. UPDATE_VTIME __LC_EXIT_TIMER,__LC_SYNC_ENTER_TIMER,__LC_USER_TIMER
  484. UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
  485. mvc __LC_LAST_UPDATE_TIMER(8),__LC_SYNC_ENTER_TIMER
  486. pgm_no_vtime3:
  487. #endif
  488. lh %r7,0x8a # get svc number from lowcore
  489. l %r9,__LC_THREAD_INFO # load pointer to thread_info struct
  490. l %r1,__TI_task(%r9)
  491. mvc __THREAD_per+__PER_atmid(2,%r1),__LC_PER_ATMID
  492. mvc __THREAD_per+__PER_address(4,%r1),__LC_PER_ADDRESS
  493. mvc __THREAD_per+__PER_access_id(1,%r1),__LC_PER_ACCESS_ID
  494. oi __TI_flags+3(%r9),_TIF_SINGLE_STEP # set TIF_SINGLE_STEP
  495. stosm __SF_EMPTY(%r15),0x03 # reenable interrupts
  496. b BASED(sysc_do_svc)
  497. /*
  498. * IO interrupt handler routine
  499. */
  500. .globl io_int_handler
  501. io_int_handler:
  502. STORE_TIMER __LC_ASYNC_ENTER_TIMER
  503. stck __LC_INT_CLOCK
  504. SAVE_ALL_BASE __LC_SAVE_AREA+16
  505. SAVE_ALL __LC_IO_OLD_PSW,__LC_SAVE_AREA+16,0
  506. CREATE_STACK_FRAME __LC_IO_OLD_PSW,__LC_SAVE_AREA+16
  507. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  508. tm SP_PSW+1(%r15),0x01 # interrupting from user ?
  509. bz BASED(io_no_vtime)
  510. UPDATE_VTIME __LC_EXIT_TIMER,__LC_ASYNC_ENTER_TIMER,__LC_USER_TIMER
  511. UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
  512. mvc __LC_LAST_UPDATE_TIMER(8),__LC_ASYNC_ENTER_TIMER
  513. io_no_vtime:
  514. #endif
  515. l %r9,__LC_THREAD_INFO # load pointer to thread_info struct
  516. l %r1,BASED(.Ldo_IRQ) # load address of do_IRQ
  517. la %r2,SP_PTREGS(%r15) # address of register-save area
  518. basr %r14,%r1 # branch to standard irq handler
  519. io_return:
  520. tm SP_PSW+1(%r15),0x01 # returning to user ?
  521. #ifdef CONFIG_PREEMPT
  522. bno BASED(io_preempt) # no -> check for preemptive scheduling
  523. #else
  524. bno BASED(io_leave) # no-> skip resched & signal
  525. #endif
  526. tm __TI_flags+3(%r9),_TIF_WORK_INT
  527. bnz BASED(io_work) # there is work to do (signals etc.)
  528. io_leave:
  529. RESTORE_ALL __LC_RETURN_PSW,0
  530. io_done:
  531. #ifdef CONFIG_PREEMPT
  532. io_preempt:
  533. icm %r0,15,__TI_precount(%r9)
  534. bnz BASED(io_leave)
  535. l %r1,SP_R15(%r15)
  536. s %r1,BASED(.Lc_spsize)
  537. mvc SP_PTREGS(__PT_SIZE,%r1),SP_PTREGS(%r15)
  538. xc __SF_BACKCHAIN(4,%r1),__SF_BACKCHAIN(%r1) # clear back chain
  539. lr %r15,%r1
  540. io_resume_loop:
  541. tm __TI_flags+3(%r9),_TIF_NEED_RESCHED
  542. bno BASED(io_leave)
  543. mvc __TI_precount(4,%r9),BASED(.Lc_pactive)
  544. stosm __SF_EMPTY(%r15),0x03 # reenable interrupts
  545. l %r1,BASED(.Lschedule)
  546. basr %r14,%r1 # call schedule
  547. stnsm __SF_EMPTY(%r15),0xfc # disable I/O and ext. interrupts
  548. xc __TI_precount(4,%r9),__TI_precount(%r9)
  549. b BASED(io_resume_loop)
  550. #endif
  551. #
  552. # switch to kernel stack, then check the TIF bits
  553. #
  554. io_work:
  555. l %r1,__LC_KERNEL_STACK
  556. s %r1,BASED(.Lc_spsize)
  557. mvc SP_PTREGS(__PT_SIZE,%r1),SP_PTREGS(%r15)
  558. xc __SF_BACKCHAIN(4,%r1),__SF_BACKCHAIN(%r1) # clear back chain
  559. lr %r15,%r1
  560. #
  561. # One of the work bits is on. Find out which one.
  562. # Checked are: _TIF_SIGPENDING, _TIF_NEED_RESCHED and _TIF_MCCK_PENDING
  563. #
  564. io_work_loop:
  565. tm __TI_flags+3(%r9),_TIF_MCCK_PENDING
  566. bo BASED(io_mcck_pending)
  567. tm __TI_flags+3(%r9),_TIF_NEED_RESCHED
  568. bo BASED(io_reschedule)
  569. tm __TI_flags+3(%r9),_TIF_SIGPENDING
  570. bo BASED(io_sigpending)
  571. b BASED(io_leave)
  572. #
  573. # _TIF_MCCK_PENDING is set, call handler
  574. #
  575. io_mcck_pending:
  576. l %r1,BASED(.Ls390_handle_mcck)
  577. la %r14,BASED(io_work_loop)
  578. br %r1 # TIF bit will be cleared by handler
  579. #
  580. # _TIF_NEED_RESCHED is set, call schedule
  581. #
  582. io_reschedule:
  583. l %r1,BASED(.Lschedule)
  584. stosm __SF_EMPTY(%r15),0x03 # reenable interrupts
  585. basr %r14,%r1 # call scheduler
  586. stnsm __SF_EMPTY(%r15),0xfc # disable I/O and ext. interrupts
  587. tm __TI_flags+3(%r9),_TIF_WORK_INT
  588. bz BASED(io_leave) # there is no work to do
  589. b BASED(io_work_loop)
  590. #
  591. # _TIF_SIGPENDING is set, call do_signal
  592. #
  593. io_sigpending:
  594. stosm __SF_EMPTY(%r15),0x03 # reenable interrupts
  595. la %r2,SP_PTREGS(%r15) # load pt_regs
  596. sr %r3,%r3 # clear *oldset
  597. l %r1,BASED(.Ldo_signal)
  598. basr %r14,%r1 # call do_signal
  599. stnsm __SF_EMPTY(%r15),0xfc # disable I/O and ext. interrupts
  600. b BASED(io_leave) # out of here, do NOT recheck
  601. /*
  602. * External interrupt handler routine
  603. */
  604. .globl ext_int_handler
  605. ext_int_handler:
  606. STORE_TIMER __LC_ASYNC_ENTER_TIMER
  607. stck __LC_INT_CLOCK
  608. SAVE_ALL_BASE __LC_SAVE_AREA+16
  609. SAVE_ALL __LC_EXT_OLD_PSW,__LC_SAVE_AREA+16,0
  610. CREATE_STACK_FRAME __LC_EXT_OLD_PSW,__LC_SAVE_AREA+16
  611. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  612. tm SP_PSW+1(%r15),0x01 # interrupting from user ?
  613. bz BASED(ext_no_vtime)
  614. UPDATE_VTIME __LC_EXIT_TIMER,__LC_ASYNC_ENTER_TIMER,__LC_USER_TIMER
  615. UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
  616. mvc __LC_LAST_UPDATE_TIMER(8),__LC_ASYNC_ENTER_TIMER
  617. ext_no_vtime:
  618. #endif
  619. l %r9,__LC_THREAD_INFO # load pointer to thread_info struct
  620. la %r2,SP_PTREGS(%r15) # address of register-save area
  621. lh %r3,__LC_EXT_INT_CODE # get interruption code
  622. l %r1,BASED(.Ldo_extint)
  623. basr %r14,%r1
  624. b BASED(io_return)
  625. __critical_end:
  626. /*
  627. * Machine check handler routines
  628. */
  629. .globl mcck_int_handler
  630. mcck_int_handler:
  631. spt __LC_CPU_TIMER_SAVE_AREA # revalidate cpu timer
  632. mvc __LC_ASYNC_ENTER_TIMER(8),__LC_CPU_TIMER_SAVE_AREA
  633. lm %r0,%r15,__LC_GPREGS_SAVE_AREA # revalidate gprs
  634. SAVE_ALL_BASE __LC_SAVE_AREA+32
  635. la %r12,__LC_MCK_OLD_PSW
  636. tm __LC_MCCK_CODE,0x80 # system damage?
  637. bo BASED(mcck_int_main) # yes -> rest of mcck code invalid
  638. tm __LC_MCCK_CODE+5,0x02 # stored cpu timer value valid?
  639. bo BASED(0f)
  640. spt __LC_LAST_UPDATE_TIMER # revalidate cpu timer
  641. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  642. mvc __LC_ASYNC_ENTER_TIMER(8),__LC_LAST_UPDATE_TIMER
  643. mvc __LC_SYNC_ENTER_TIMER(8),__LC_LAST_UPDATE_TIMER
  644. mvc __LC_EXIT_TIMER(8),__LC_LAST_UPDATE_TIMER
  645. #endif
  646. 0: tm __LC_MCCK_CODE+2,0x09 # mwp + ia of old psw valid?
  647. bno BASED(mcck_int_main) # no -> skip cleanup critical
  648. tm __LC_MCK_OLD_PSW+1,0x01 # test problem state bit
  649. bnz BASED(mcck_int_main) # from user -> load async stack
  650. clc __LC_MCK_OLD_PSW+4(4),BASED(.Lcritical_end)
  651. bhe BASED(mcck_int_main)
  652. clc __LC_MCK_OLD_PSW+4(4),BASED(.Lcritical_start)
  653. bl BASED(mcck_int_main)
  654. l %r14,BASED(.Lcleanup_critical)
  655. basr %r14,%r14
  656. mcck_int_main:
  657. l %r14,__LC_PANIC_STACK # are we already on the panic stack?
  658. slr %r14,%r15
  659. sra %r14,PAGE_SHIFT
  660. be BASED(0f)
  661. l %r15,__LC_PANIC_STACK # load panic stack
  662. 0: CREATE_STACK_FRAME __LC_MCK_OLD_PSW,__LC_SAVE_AREA+32
  663. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  664. tm __LC_MCCK_CODE+2,0x08 # mwp of old psw valid?
  665. bno BASED(mcck_no_vtime) # no -> skip cleanup critical
  666. tm __LC_MCK_OLD_PSW+1,0x01 # interrupting from user ?
  667. bz BASED(mcck_no_vtime)
  668. UPDATE_VTIME __LC_EXIT_TIMER,__LC_ASYNC_ENTER_TIMER,__LC_USER_TIMER
  669. UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
  670. mvc __LC_LAST_UPDATE_TIMER(8),__LC_ASYNC_ENTER_TIMER
  671. mcck_no_vtime:
  672. #endif
  673. l %r9,__LC_THREAD_INFO # load pointer to thread_info struct
  674. la %r2,SP_PTREGS(%r15) # load pt_regs
  675. l %r1,BASED(.Ls390_mcck)
  676. basr %r14,%r1 # call machine check handler
  677. tm SP_PSW+1(%r15),0x01 # returning to user ?
  678. bno BASED(mcck_return)
  679. l %r1,__LC_KERNEL_STACK # switch to kernel stack
  680. s %r1,BASED(.Lc_spsize)
  681. mvc SP_PTREGS(__PT_SIZE,%r1),SP_PTREGS(%r15)
  682. xc __SF_BACKCHAIN(4,%r1),__SF_BACKCHAIN(%r1) # clear back chain
  683. lr %r15,%r1
  684. stosm __SF_EMPTY(%r15),0x04 # turn dat on
  685. tm __TI_flags+3(%r9),_TIF_MCCK_PENDING
  686. bno BASED(mcck_return)
  687. l %r1,BASED(.Ls390_handle_mcck)
  688. basr %r14,%r1 # call machine check handler
  689. mcck_return:
  690. RESTORE_ALL __LC_RETURN_MCCK_PSW,0
  691. #ifdef CONFIG_SMP
  692. /*
  693. * Restart interruption handler, kick starter for additional CPUs
  694. */
  695. .globl restart_int_handler
  696. restart_int_handler:
  697. l %r15,__LC_SAVE_AREA+60 # load ksp
  698. lctl %c0,%c15,__LC_CREGS_SAVE_AREA # get new ctl regs
  699. lam %a0,%a15,__LC_AREGS_SAVE_AREA
  700. lm %r6,%r15,__SF_GPRS(%r15) # load registers from clone
  701. stosm __SF_EMPTY(%r15),0x04 # now we can turn dat on
  702. basr %r14,0
  703. l %r14,restart_addr-.(%r14)
  704. br %r14 # branch to start_secondary
  705. restart_addr:
  706. .long start_secondary
  707. #else
  708. /*
  709. * If we do not run with SMP enabled, let the new CPU crash ...
  710. */
  711. .globl restart_int_handler
  712. restart_int_handler:
  713. basr %r1,0
  714. restart_base:
  715. lpsw restart_crash-restart_base(%r1)
  716. .align 8
  717. restart_crash:
  718. .long 0x000a0000,0x00000000
  719. restart_go:
  720. #endif
  721. #ifdef CONFIG_CHECK_STACK
  722. /*
  723. * The synchronous or the asynchronous stack overflowed. We are dead.
  724. * No need to properly save the registers, we are going to panic anyway.
  725. * Setup a pt_regs so that show_trace can provide a good call trace.
  726. */
  727. stack_overflow:
  728. l %r15,__LC_PANIC_STACK # change to panic stack
  729. sl %r15,BASED(.Lc_spsize)
  730. mvc SP_PSW(8,%r15),0(%r12) # move user PSW to stack
  731. stm %r0,%r11,SP_R0(%r15) # store gprs %r0-%r11 to kernel stack
  732. la %r1,__LC_SAVE_AREA
  733. ch %r12,BASED(.L0x020) # old psw addr == __LC_SVC_OLD_PSW ?
  734. be BASED(0f)
  735. ch %r12,BASED(.L0x028) # old psw addr == __LC_PGM_OLD_PSW ?
  736. be BASED(0f)
  737. la %r1,__LC_SAVE_AREA+16
  738. 0: mvc SP_R12(16,%r15),0(%r1) # move %r12-%r15 to stack
  739. xc __SF_BACKCHAIN(4,%r15),__SF_BACKCHAIN(%r15) # clear back chain
  740. l %r1,BASED(1f) # branch to kernel_stack_overflow
  741. la %r2,SP_PTREGS(%r15) # load pt_regs
  742. br %r1
  743. 1: .long kernel_stack_overflow
  744. #endif
  745. cleanup_table_system_call:
  746. .long system_call + 0x80000000, sysc_do_svc + 0x80000000
  747. cleanup_table_sysc_return:
  748. .long sysc_return + 0x80000000, sysc_leave + 0x80000000
  749. cleanup_table_sysc_leave:
  750. .long sysc_leave + 0x80000000, sysc_work_loop + 0x80000000
  751. cleanup_table_sysc_work_loop:
  752. .long sysc_work_loop + 0x80000000, sysc_reschedule + 0x80000000
  753. cleanup_table_io_leave:
  754. .long io_leave + 0x80000000, io_done + 0x80000000
  755. cleanup_table_io_work_loop:
  756. .long io_work_loop + 0x80000000, io_mcck_pending + 0x80000000
  757. cleanup_critical:
  758. clc 4(4,%r12),BASED(cleanup_table_system_call)
  759. bl BASED(0f)
  760. clc 4(4,%r12),BASED(cleanup_table_system_call+4)
  761. bl BASED(cleanup_system_call)
  762. 0:
  763. clc 4(4,%r12),BASED(cleanup_table_sysc_return)
  764. bl BASED(0f)
  765. clc 4(4,%r12),BASED(cleanup_table_sysc_return+4)
  766. bl BASED(cleanup_sysc_return)
  767. 0:
  768. clc 4(4,%r12),BASED(cleanup_table_sysc_leave)
  769. bl BASED(0f)
  770. clc 4(4,%r12),BASED(cleanup_table_sysc_leave+4)
  771. bl BASED(cleanup_sysc_leave)
  772. 0:
  773. clc 4(4,%r12),BASED(cleanup_table_sysc_work_loop)
  774. bl BASED(0f)
  775. clc 4(4,%r12),BASED(cleanup_table_sysc_work_loop+4)
  776. bl BASED(cleanup_sysc_return)
  777. 0:
  778. clc 4(4,%r12),BASED(cleanup_table_io_leave)
  779. bl BASED(0f)
  780. clc 4(4,%r12),BASED(cleanup_table_io_leave+4)
  781. bl BASED(cleanup_io_leave)
  782. 0:
  783. clc 4(4,%r12),BASED(cleanup_table_io_work_loop)
  784. bl BASED(0f)
  785. clc 4(4,%r12),BASED(cleanup_table_io_work_loop+4)
  786. bl BASED(cleanup_io_return)
  787. 0:
  788. br %r14
  789. cleanup_system_call:
  790. mvc __LC_RETURN_PSW(8),0(%r12)
  791. c %r12,BASED(.Lmck_old_psw)
  792. be BASED(0f)
  793. la %r12,__LC_SAVE_AREA+16
  794. b BASED(1f)
  795. 0: la %r12,__LC_SAVE_AREA+32
  796. 1:
  797. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  798. clc __LC_RETURN_PSW+4(4),BASED(cleanup_system_call_insn+4)
  799. bh BASED(0f)
  800. mvc __LC_SYNC_ENTER_TIMER(8),__LC_ASYNC_ENTER_TIMER
  801. 0: clc __LC_RETURN_PSW+4(4),BASED(cleanup_system_call_insn+8)
  802. bhe BASED(cleanup_vtime)
  803. #endif
  804. clc __LC_RETURN_PSW+4(4),BASED(cleanup_system_call_insn)
  805. bh BASED(0f)
  806. mvc __LC_SAVE_AREA(16),0(%r12)
  807. 0: st %r13,4(%r12)
  808. st %r12,__LC_SAVE_AREA+48 # argh
  809. SAVE_ALL __LC_SVC_OLD_PSW,__LC_SAVE_AREA,1
  810. CREATE_STACK_FRAME __LC_SVC_OLD_PSW,__LC_SAVE_AREA
  811. l %r12,__LC_SAVE_AREA+48 # argh
  812. st %r15,12(%r12)
  813. lh %r7,0x8a
  814. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  815. cleanup_vtime:
  816. clc __LC_RETURN_PSW+4(4),BASED(cleanup_system_call_insn+12)
  817. bhe BASED(cleanup_stime)
  818. tm SP_PSW+1(%r15),0x01 # interrupting from user ?
  819. bz BASED(cleanup_novtime)
  820. UPDATE_VTIME __LC_EXIT_TIMER,__LC_SYNC_ENTER_TIMER,__LC_USER_TIMER
  821. cleanup_stime:
  822. clc __LC_RETURN_PSW+4(4),BASED(cleanup_system_call_insn+16)
  823. bh BASED(cleanup_update)
  824. UPDATE_VTIME __LC_LAST_UPDATE_TIMER,__LC_EXIT_TIMER,__LC_SYSTEM_TIMER
  825. cleanup_update:
  826. mvc __LC_LAST_UPDATE_TIMER(8),__LC_SYNC_ENTER_TIMER
  827. cleanup_novtime:
  828. #endif
  829. mvc __LC_RETURN_PSW+4(4),BASED(cleanup_table_system_call+4)
  830. la %r12,__LC_RETURN_PSW
  831. br %r14
  832. cleanup_system_call_insn:
  833. .long sysc_saveall + 0x80000000
  834. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  835. .long system_call + 0x80000000
  836. .long sysc_vtime + 0x80000000
  837. .long sysc_stime + 0x80000000
  838. .long sysc_update + 0x80000000
  839. #endif
  840. cleanup_sysc_return:
  841. mvc __LC_RETURN_PSW(4),0(%r12)
  842. mvc __LC_RETURN_PSW+4(4),BASED(cleanup_table_sysc_return)
  843. la %r12,__LC_RETURN_PSW
  844. br %r14
  845. cleanup_sysc_leave:
  846. clc 4(4,%r12),BASED(cleanup_sysc_leave_insn)
  847. be BASED(2f)
  848. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  849. mvc __LC_EXIT_TIMER(8),__LC_ASYNC_ENTER_TIMER
  850. clc 4(4,%r12),BASED(cleanup_sysc_leave_insn+4)
  851. be BASED(2f)
  852. #endif
  853. mvc __LC_RETURN_PSW(8),SP_PSW(%r15)
  854. c %r12,BASED(.Lmck_old_psw)
  855. bne BASED(0f)
  856. mvc __LC_SAVE_AREA+32(16),SP_R12(%r15)
  857. b BASED(1f)
  858. 0: mvc __LC_SAVE_AREA+16(16),SP_R12(%r15)
  859. 1: lm %r0,%r11,SP_R0(%r15)
  860. l %r15,SP_R15(%r15)
  861. 2: la %r12,__LC_RETURN_PSW
  862. br %r14
  863. cleanup_sysc_leave_insn:
  864. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  865. .long sysc_leave + 14 + 0x80000000
  866. #endif
  867. .long sysc_leave + 10 + 0x80000000
  868. cleanup_io_return:
  869. mvc __LC_RETURN_PSW(4),0(%r12)
  870. mvc __LC_RETURN_PSW+4(4),BASED(cleanup_table_io_work_loop)
  871. la %r12,__LC_RETURN_PSW
  872. br %r14
  873. cleanup_io_leave:
  874. clc 4(4,%r12),BASED(cleanup_io_leave_insn)
  875. be BASED(2f)
  876. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  877. mvc __LC_EXIT_TIMER(8),__LC_ASYNC_ENTER_TIMER
  878. clc 4(4,%r12),BASED(cleanup_io_leave_insn+4)
  879. be BASED(2f)
  880. #endif
  881. mvc __LC_RETURN_PSW(8),SP_PSW(%r15)
  882. c %r12,BASED(.Lmck_old_psw)
  883. bne BASED(0f)
  884. mvc __LC_SAVE_AREA+32(16),SP_R12(%r15)
  885. b BASED(1f)
  886. 0: mvc __LC_SAVE_AREA+16(16),SP_R12(%r15)
  887. 1: lm %r0,%r11,SP_R0(%r15)
  888. l %r15,SP_R15(%r15)
  889. 2: la %r12,__LC_RETURN_PSW
  890. br %r14
  891. cleanup_io_leave_insn:
  892. #ifdef CONFIG_VIRT_CPU_ACCOUNTING
  893. .long io_leave + 18 + 0x80000000
  894. #endif
  895. .long io_leave + 14 + 0x80000000
  896. /*
  897. * Integer constants
  898. */
  899. .align 4
  900. .Lc_spsize: .long SP_SIZE
  901. .Lc_overhead: .long STACK_FRAME_OVERHEAD
  902. .Lc_pactive: .long PREEMPT_ACTIVE
  903. .Lnr_syscalls: .long NR_syscalls
  904. .L0x018: .short 0x018
  905. .L0x020: .short 0x020
  906. .L0x028: .short 0x028
  907. .L0x030: .short 0x030
  908. .L0x038: .short 0x038
  909. .Lc_1: .long 1
  910. /*
  911. * Symbol constants
  912. */
  913. .Ls390_mcck: .long s390_do_machine_check
  914. .Ls390_handle_mcck:
  915. .long s390_handle_mcck
  916. .Lmck_old_psw: .long __LC_MCK_OLD_PSW
  917. .Ldo_IRQ: .long do_IRQ
  918. .Ldo_extint: .long do_extint
  919. .Ldo_signal: .long do_signal
  920. .Lhandle_per: .long do_single_step
  921. .Ljump_table: .long pgm_check_table
  922. .Lschedule: .long schedule
  923. .Lclone: .long sys_clone
  924. .Lexecve: .long sys_execve
  925. .Lfork: .long sys_fork
  926. .Lrt_sigreturn:.long sys_rt_sigreturn
  927. .Lrt_sigsuspend:
  928. .long sys_rt_sigsuspend
  929. .Lsigreturn: .long sys_sigreturn
  930. .Lsigsuspend: .long sys_sigsuspend
  931. .Lsigaltstack: .long sys_sigaltstack
  932. .Ltrace: .long syscall_trace
  933. .Lvfork: .long sys_vfork
  934. .Lschedtail: .long schedule_tail
  935. .Lcritical_start:
  936. .long __critical_start + 0x80000000
  937. .Lcritical_end:
  938. .long __critical_end + 0x80000000
  939. .Lcleanup_critical:
  940. .long cleanup_critical
  941. #define SYSCALL(esa,esame,emu) .long esa
  942. .globl sys_call_table
  943. sys_call_table:
  944. #include "syscalls.S"
  945. #undef SYSCALL