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  1. /*
  2. * Low-level system-call handling, trap handlers and context-switching
  3. *
  4. * Copyright (C) 2008-2009 Michal Simek <monstr@monstr.eu>
  5. * Copyright (C) 2008-2009 PetaLogix
  6. * Copyright (C) 2003 John Williams <jwilliams@itee.uq.edu.au>
  7. * Copyright (C) 2001,2002 NEC Corporation
  8. * Copyright (C) 2001,2002 Miles Bader <miles@gnu.org>
  9. *
  10. * This file is subject to the terms and conditions of the GNU General
  11. * Public License. See the file COPYING in the main directory of this
  12. * archive for more details.
  13. *
  14. * Written by Miles Bader <miles@gnu.org>
  15. * Heavily modified by John Williams for Microblaze
  16. */
  17. #include <linux/sys.h>
  18. #include <linux/linkage.h>
  19. #include <asm/entry.h>
  20. #include <asm/current.h>
  21. #include <asm/processor.h>
  22. #include <asm/exceptions.h>
  23. #include <asm/asm-offsets.h>
  24. #include <asm/thread_info.h>
  25. #include <asm/page.h>
  26. #include <asm/unistd.h>
  27. #include <linux/errno.h>
  28. #include <asm/signal.h>
  29. #undef DEBUG
  30. /* The size of a state save frame. */
  31. #define STATE_SAVE_SIZE (PT_SIZE + STATE_SAVE_ARG_SPACE)
  32. /* The offset of the struct pt_regs in a `state save frame' on the stack. */
  33. #define PTO STATE_SAVE_ARG_SPACE /* 24 the space for args */
  34. #define C_ENTRY(name) .globl name; .align 4; name
  35. /*
  36. * Various ways of setting and clearing BIP in flags reg.
  37. * This is mucky, but necessary using microblaze version that
  38. * allows msr ops to write to BIP
  39. */
  40. #if CONFIG_XILINX_MICROBLAZE0_USE_MSR_INSTR
  41. .macro clear_bip
  42. msrclr r0, MSR_BIP
  43. nop
  44. .endm
  45. .macro set_bip
  46. msrset r0, MSR_BIP
  47. nop
  48. .endm
  49. .macro clear_eip
  50. msrclr r0, MSR_EIP
  51. nop
  52. .endm
  53. .macro set_ee
  54. msrset r0, MSR_EE
  55. nop
  56. .endm
  57. .macro disable_irq
  58. msrclr r0, MSR_IE
  59. nop
  60. .endm
  61. .macro enable_irq
  62. msrset r0, MSR_IE
  63. nop
  64. .endm
  65. .macro set_ums
  66. msrset r0, MSR_UMS
  67. nop
  68. msrclr r0, MSR_VMS
  69. nop
  70. .endm
  71. .macro set_vms
  72. msrclr r0, MSR_UMS
  73. nop
  74. msrset r0, MSR_VMS
  75. nop
  76. .endm
  77. .macro clear_ums
  78. msrclr r0, MSR_UMS
  79. nop
  80. .endm
  81. .macro clear_vms_ums
  82. msrclr r0, MSR_VMS | MSR_UMS
  83. nop
  84. .endm
  85. #else
  86. .macro clear_bip
  87. mfs r11, rmsr
  88. nop
  89. andi r11, r11, ~MSR_BIP
  90. mts rmsr, r11
  91. nop
  92. .endm
  93. .macro set_bip
  94. mfs r11, rmsr
  95. nop
  96. ori r11, r11, MSR_BIP
  97. mts rmsr, r11
  98. nop
  99. .endm
  100. .macro clear_eip
  101. mfs r11, rmsr
  102. nop
  103. andi r11, r11, ~MSR_EIP
  104. mts rmsr, r11
  105. nop
  106. .endm
  107. .macro set_ee
  108. mfs r11, rmsr
  109. nop
  110. ori r11, r11, MSR_EE
  111. mts rmsr, r11
  112. nop
  113. .endm
  114. .macro disable_irq
  115. mfs r11, rmsr
  116. nop
  117. andi r11, r11, ~MSR_IE
  118. mts rmsr, r11
  119. nop
  120. .endm
  121. .macro enable_irq
  122. mfs r11, rmsr
  123. nop
  124. ori r11, r11, MSR_IE
  125. mts rmsr, r11
  126. nop
  127. .endm
  128. .macro set_ums
  129. mfs r11, rmsr
  130. nop
  131. ori r11, r11, MSR_VMS
  132. andni r11, r11, MSR_UMS
  133. mts rmsr, r11
  134. nop
  135. .endm
  136. .macro set_vms
  137. mfs r11, rmsr
  138. nop
  139. ori r11, r11, MSR_VMS
  140. andni r11, r11, MSR_UMS
  141. mts rmsr, r11
  142. nop
  143. .endm
  144. .macro clear_ums
  145. mfs r11, rmsr
  146. nop
  147. andni r11, r11, MSR_UMS
  148. mts rmsr,r11
  149. nop
  150. .endm
  151. .macro clear_vms_ums
  152. mfs r11, rmsr
  153. nop
  154. andni r11, r11, (MSR_VMS|MSR_UMS)
  155. mts rmsr,r11
  156. nop
  157. .endm
  158. #endif
  159. /* Define how to call high-level functions. With MMU, virtual mode must be
  160. * enabled when calling the high-level function. Clobbers R11.
  161. * VM_ON, VM_OFF, DO_JUMP_BIPCLR, DO_CALL
  162. */
  163. /* turn on virtual protected mode save */
  164. #define VM_ON \
  165. set_ums; \
  166. rted r0, 2f; \
  167. nop; \
  168. 2:
  169. /* turn off virtual protected mode save and user mode save*/
  170. #define VM_OFF \
  171. clear_vms_ums; \
  172. rted r0, TOPHYS(1f); \
  173. nop; \
  174. 1:
  175. #define SAVE_REGS \
  176. swi r2, r1, PTO+PT_R2; /* Save SDA */ \
  177. swi r3, r1, PTO+PT_R3; \
  178. swi r4, r1, PTO+PT_R4; \
  179. swi r5, r1, PTO+PT_R5; \
  180. swi r6, r1, PTO+PT_R6; \
  181. swi r7, r1, PTO+PT_R7; \
  182. swi r8, r1, PTO+PT_R8; \
  183. swi r9, r1, PTO+PT_R9; \
  184. swi r10, r1, PTO+PT_R10; \
  185. swi r11, r1, PTO+PT_R11; /* save clobbered regs after rval */\
  186. swi r12, r1, PTO+PT_R12; \
  187. swi r13, r1, PTO+PT_R13; /* Save SDA2 */ \
  188. swi r14, r1, PTO+PT_PC; /* PC, before IRQ/trap */ \
  189. swi r15, r1, PTO+PT_R15; /* Save LP */ \
  190. swi r18, r1, PTO+PT_R18; /* Save asm scratch reg */ \
  191. swi r19, r1, PTO+PT_R19; \
  192. swi r20, r1, PTO+PT_R20; \
  193. swi r21, r1, PTO+PT_R21; \
  194. swi r22, r1, PTO+PT_R22; \
  195. swi r23, r1, PTO+PT_R23; \
  196. swi r24, r1, PTO+PT_R24; \
  197. swi r25, r1, PTO+PT_R25; \
  198. swi r26, r1, PTO+PT_R26; \
  199. swi r27, r1, PTO+PT_R27; \
  200. swi r28, r1, PTO+PT_R28; \
  201. swi r29, r1, PTO+PT_R29; \
  202. swi r30, r1, PTO+PT_R30; \
  203. swi r31, r1, PTO+PT_R31; /* Save current task reg */ \
  204. mfs r11, rmsr; /* save MSR */ \
  205. nop; \
  206. swi r11, r1, PTO+PT_MSR;
  207. #define RESTORE_REGS \
  208. lwi r11, r1, PTO+PT_MSR; \
  209. mts rmsr , r11; \
  210. nop; \
  211. lwi r2, r1, PTO+PT_R2; /* restore SDA */ \
  212. lwi r3, r1, PTO+PT_R3; \
  213. lwi r4, r1, PTO+PT_R4; \
  214. lwi r5, r1, PTO+PT_R5; \
  215. lwi r6, r1, PTO+PT_R6; \
  216. lwi r7, r1, PTO+PT_R7; \
  217. lwi r8, r1, PTO+PT_R8; \
  218. lwi r9, r1, PTO+PT_R9; \
  219. lwi r10, r1, PTO+PT_R10; \
  220. lwi r11, r1, PTO+PT_R11; /* restore clobbered regs after rval */\
  221. lwi r12, r1, PTO+PT_R12; \
  222. lwi r13, r1, PTO+PT_R13; /* restore SDA2 */ \
  223. lwi r14, r1, PTO+PT_PC; /* RESTORE_LINK PC, before IRQ/trap */\
  224. lwi r15, r1, PTO+PT_R15; /* restore LP */ \
  225. lwi r18, r1, PTO+PT_R18; /* restore asm scratch reg */ \
  226. lwi r19, r1, PTO+PT_R19; \
  227. lwi r20, r1, PTO+PT_R20; \
  228. lwi r21, r1, PTO+PT_R21; \
  229. lwi r22, r1, PTO+PT_R22; \
  230. lwi r23, r1, PTO+PT_R23; \
  231. lwi r24, r1, PTO+PT_R24; \
  232. lwi r25, r1, PTO+PT_R25; \
  233. lwi r26, r1, PTO+PT_R26; \
  234. lwi r27, r1, PTO+PT_R27; \
  235. lwi r28, r1, PTO+PT_R28; \
  236. lwi r29, r1, PTO+PT_R29; \
  237. lwi r30, r1, PTO+PT_R30; \
  238. lwi r31, r1, PTO+PT_R31; /* Restore cur task reg */
  239. #define SAVE_STATE \
  240. swi r1, r0, TOPHYS(PER_CPU(ENTRY_SP)); /* save stack */ \
  241. /* See if already in kernel mode.*/ \
  242. mfs r1, rmsr; \
  243. nop; \
  244. andi r1, r1, MSR_UMS; \
  245. bnei r1, 1f; \
  246. /* Kernel-mode state save. */ \
  247. /* Reload kernel stack-ptr. */ \
  248. lwi r1, r0, TOPHYS(PER_CPU(ENTRY_SP)); \
  249. tophys(r1,r1); \
  250. addik r1, r1, -STATE_SAVE_SIZE; /* Make room on the stack. */\
  251. SAVE_REGS \
  252. brid 2f; \
  253. swi r1, r1, PTO+PT_MODE; \
  254. 1: /* User-mode state save. */ \
  255. lwi r1, r0, TOPHYS(PER_CPU(CURRENT_SAVE)); /* get saved current */\
  256. tophys(r1,r1); \
  257. lwi r1, r1, TS_THREAD_INFO; /* get the thread info */ \
  258. addik r1, r1, THREAD_SIZE; /* calculate kernel stack pointer */\
  259. tophys(r1,r1); \
  260. addik r1, r1, -STATE_SAVE_SIZE; /* Make room on the stack. */\
  261. SAVE_REGS \
  262. lwi r11, r0, TOPHYS(PER_CPU(ENTRY_SP)); \
  263. swi r11, r1, PTO+PT_R1; /* Store user SP. */ \
  264. swi r0, r1, PTO + PT_MODE; /* Was in user-mode. */ \
  265. /* MS: I am clearing UMS even in case when I come from kernel space */ \
  266. clear_ums; \
  267. 2: lwi CURRENT_TASK, r0, TOPHYS(PER_CPU(CURRENT_SAVE));
  268. .text
  269. /*
  270. * User trap.
  271. *
  272. * System calls are handled here.
  273. *
  274. * Syscall protocol:
  275. * Syscall number in r12, args in r5-r10
  276. * Return value in r3
  277. *
  278. * Trap entered via brki instruction, so BIP bit is set, and interrupts
  279. * are masked. This is nice, means we don't have to CLI before state save
  280. */
  281. C_ENTRY(_user_exception):
  282. swi r1, r0, TOPHYS(PER_CPU(ENTRY_SP)) /* save stack */
  283. addi r14, r14, 4 /* return address is 4 byte after call */
  284. mfs r1, rmsr
  285. nop
  286. andi r1, r1, MSR_UMS
  287. bnei r1, 1f
  288. /* Kernel-mode state save - kernel execve */
  289. lwi r1, r0, TOPHYS(PER_CPU(ENTRY_SP)); /* Reload kernel stack-ptr*/
  290. tophys(r1,r1);
  291. addik r1, r1, -STATE_SAVE_SIZE; /* Make room on the stack. */
  292. SAVE_REGS
  293. swi r1, r1, PTO + PT_MODE; /* pt_regs -> kernel mode */
  294. brid 2f;
  295. nop; /* Fill delay slot */
  296. /* User-mode state save. */
  297. 1:
  298. lwi r1, r0, TOPHYS(PER_CPU(CURRENT_SAVE)); /* get saved current */
  299. tophys(r1,r1);
  300. lwi r1, r1, TS_THREAD_INFO; /* get stack from task_struct */
  301. /* calculate kernel stack pointer from task struct 8k */
  302. addik r1, r1, THREAD_SIZE;
  303. tophys(r1,r1);
  304. addik r1, r1, -STATE_SAVE_SIZE; /* Make room on the stack. */
  305. SAVE_REGS
  306. swi r0, r1, PTO + PT_MODE; /* Was in user-mode. */
  307. lwi r11, r0, TOPHYS(PER_CPU(ENTRY_SP));
  308. swi r11, r1, PTO+PT_R1; /* Store user SP. */
  309. 2: lwi CURRENT_TASK, r0, TOPHYS(PER_CPU(CURRENT_SAVE));
  310. /* Save away the syscall number. */
  311. swi r12, r1, PTO+PT_R0;
  312. tovirt(r1,r1)
  313. /* where the trap should return need -8 to adjust for rtsd r15, 8*/
  314. /* Jump to the appropriate function for the system call number in r12
  315. * (r12 is not preserved), or return an error if r12 is not valid. The LP
  316. * register should point to the location where
  317. * the called function should return. [note that MAKE_SYS_CALL uses label 1] */
  318. # Step into virtual mode.
  319. set_vms;
  320. addik r11, r0, 3f
  321. rtid r11, 0
  322. nop
  323. 3:
  324. lwi r11, CURRENT_TASK, TS_THREAD_INFO /* get thread info */
  325. lwi r11, r11, TI_FLAGS /* get flags in thread info */
  326. andi r11, r11, _TIF_WORK_SYSCALL_MASK
  327. beqi r11, 4f
  328. addik r3, r0, -ENOSYS
  329. swi r3, r1, PTO + PT_R3
  330. brlid r15, do_syscall_trace_enter
  331. addik r5, r1, PTO + PT_R0
  332. # do_syscall_trace_enter returns the new syscall nr.
  333. addk r12, r0, r3
  334. lwi r5, r1, PTO+PT_R5;
  335. lwi r6, r1, PTO+PT_R6;
  336. lwi r7, r1, PTO+PT_R7;
  337. lwi r8, r1, PTO+PT_R8;
  338. lwi r9, r1, PTO+PT_R9;
  339. lwi r10, r1, PTO+PT_R10;
  340. 4:
  341. /* Jump to the appropriate function for the system call number in r12
  342. * (r12 is not preserved), or return an error if r12 is not valid.
  343. * The LP register should point to the location where the called function
  344. * should return. [note that MAKE_SYS_CALL uses label 1] */
  345. /* See if the system call number is valid */
  346. addi r11, r12, -__NR_syscalls;
  347. bgei r11,5f;
  348. /* Figure out which function to use for this system call. */
  349. /* Note Microblaze barrel shift is optional, so don't rely on it */
  350. add r12, r12, r12; /* convert num -> ptr */
  351. add r12, r12, r12;
  352. #ifdef DEBUG
  353. /* Trac syscalls and stored them to r0_ram */
  354. lwi r3, r12, 0x400 + r0_ram
  355. addi r3, r3, 1
  356. swi r3, r12, 0x400 + r0_ram
  357. #endif
  358. # Find and jump into the syscall handler.
  359. lwi r12, r12, sys_call_table
  360. /* where the trap should return need -8 to adjust for rtsd r15, 8 */
  361. addi r15, r0, ret_from_trap-8
  362. bra r12
  363. /* The syscall number is invalid, return an error. */
  364. 5:
  365. addi r3, r0, -ENOSYS;
  366. rtsd r15,8; /* looks like a normal subroutine return */
  367. or r0, r0, r0
  368. /* Entry point used to return from a syscall/trap */
  369. /* We re-enable BIP bit before state restore */
  370. C_ENTRY(ret_from_trap):
  371. swi r3, r1, PTO + PT_R3
  372. swi r4, r1, PTO + PT_R4
  373. lwi r11, r1, PTO + PT_MODE;
  374. /* See if returning to kernel mode, if so, skip resched &c. */
  375. bnei r11, 2f;
  376. /* We're returning to user mode, so check for various conditions that
  377. * trigger rescheduling. */
  378. /* FIXME: Restructure all these flag checks. */
  379. lwi r11, CURRENT_TASK, TS_THREAD_INFO; /* get thread info */
  380. lwi r11, r11, TI_FLAGS; /* get flags in thread info */
  381. andi r11, r11, _TIF_WORK_SYSCALL_MASK
  382. beqi r11, 1f
  383. brlid r15, do_syscall_trace_leave
  384. addik r5, r1, PTO + PT_R0
  385. 1:
  386. /* We're returning to user mode, so check for various conditions that
  387. * trigger rescheduling. */
  388. /* get thread info from current task */
  389. lwi r11, CURRENT_TASK, TS_THREAD_INFO;
  390. lwi r11, r11, TI_FLAGS; /* get flags in thread info */
  391. andi r11, r11, _TIF_NEED_RESCHED;
  392. beqi r11, 5f;
  393. bralid r15, schedule; /* Call scheduler */
  394. nop; /* delay slot */
  395. /* Maybe handle a signal */
  396. 5: /* get thread info from current task*/
  397. lwi r11, CURRENT_TASK, TS_THREAD_INFO;
  398. lwi r11, r11, TI_FLAGS; /* get flags in thread info */
  399. andi r11, r11, _TIF_SIGPENDING;
  400. beqi r11, 1f; /* Signals to handle, handle them */
  401. addik r5, r1, PTO; /* Arg 1: struct pt_regs *regs */
  402. addi r7, r0, 1; /* Arg 3: int in_syscall */
  403. bralid r15, do_signal; /* Handle any signals */
  404. add r6, r0, r0; /* Arg 2: sigset_t *oldset */
  405. /* Finally, return to user state. */
  406. 1: set_bip; /* Ints masked for state restore */
  407. swi CURRENT_TASK, r0, PER_CPU(CURRENT_SAVE); /* save current */
  408. VM_OFF;
  409. tophys(r1,r1);
  410. RESTORE_REGS;
  411. addik r1, r1, STATE_SAVE_SIZE /* Clean up stack space. */
  412. lwi r1, r1, PT_R1 - PT_SIZE;/* Restore user stack pointer. */
  413. bri 6f;
  414. /* Return to kernel state. */
  415. 2: set_bip; /* Ints masked for state restore */
  416. VM_OFF;
  417. tophys(r1,r1);
  418. RESTORE_REGS;
  419. addik r1, r1, STATE_SAVE_SIZE /* Clean up stack space. */
  420. tovirt(r1,r1);
  421. 6:
  422. TRAP_return: /* Make global symbol for debugging */
  423. rtbd r14, 0; /* Instructions to return from an IRQ */
  424. nop;
  425. /* These syscalls need access to the struct pt_regs on the stack, so we
  426. implement them in assembly (they're basically all wrappers anyway). */
  427. C_ENTRY(sys_fork_wrapper):
  428. addi r5, r0, SIGCHLD /* Arg 0: flags */
  429. lwi r6, r1, PTO+PT_R1 /* Arg 1: child SP (use parent's) */
  430. addik r7, r1, PTO /* Arg 2: parent context */
  431. add r8. r0, r0 /* Arg 3: (unused) */
  432. add r9, r0, r0; /* Arg 4: (unused) */
  433. add r10, r0, r0; /* Arg 5: (unused) */
  434. brid do_fork /* Do real work (tail-call) */
  435. nop;
  436. /* This the initial entry point for a new child thread, with an appropriate
  437. stack in place that makes it look the the child is in the middle of an
  438. syscall. This function is actually `returned to' from switch_thread
  439. (copy_thread makes ret_from_fork the return address in each new thread's
  440. saved context). */
  441. C_ENTRY(ret_from_fork):
  442. bralid r15, schedule_tail; /* ...which is schedule_tail's arg */
  443. add r3, r5, r0; /* switch_thread returns the prev task */
  444. /* ( in the delay slot ) */
  445. add r3, r0, r0; /* Child's fork call should return 0. */
  446. brid ret_from_trap; /* Do normal trap return */
  447. nop;
  448. C_ENTRY(sys_vfork):
  449. brid microblaze_vfork /* Do real work (tail-call) */
  450. addik r5, r1, PTO
  451. C_ENTRY(sys_clone):
  452. bnei r6, 1f; /* See if child SP arg (arg 1) is 0. */
  453. lwi r6, r1, PTO + PT_R1; /* If so, use paret's stack ptr */
  454. 1: addik r7, r1, PTO; /* Arg 2: parent context */
  455. add r8, r0, r0; /* Arg 3: (unused) */
  456. add r9, r0, r0; /* Arg 4: (unused) */
  457. add r10, r0, r0; /* Arg 5: (unused) */
  458. brid do_fork /* Do real work (tail-call) */
  459. nop;
  460. C_ENTRY(sys_execve):
  461. addik r8, r1, PTO; /* add user context as 4th arg */
  462. brid microblaze_execve; /* Do real work (tail-call).*/
  463. nop;
  464. C_ENTRY(sys_rt_sigreturn_wrapper):
  465. swi r3, r1, PTO+PT_R3; /* restore saved r3, r4 registers */
  466. swi r4, r1, PTO+PT_R4;
  467. addik r5, r1, PTO; /* add user context as 1st arg */
  468. brlid r15, sys_rt_sigreturn /* Do real work */
  469. nop;
  470. lwi r3, r1, PTO+PT_R3; /* restore saved r3, r4 registers */
  471. lwi r4, r1, PTO+PT_R4;
  472. bri ret_from_trap /* fall through will not work here due to align */
  473. nop;
  474. /*
  475. * HW EXCEPTION rutine start
  476. */
  477. C_ENTRY(full_exception_trap):
  478. /* adjust exception address for privileged instruction
  479. * for finding where is it */
  480. addik r17, r17, -4
  481. SAVE_STATE /* Save registers */
  482. /* PC, before IRQ/trap - this is one instruction above */
  483. swi r17, r1, PTO+PT_PC;
  484. tovirt(r1,r1)
  485. /* FIXME this can be store directly in PT_ESR reg.
  486. * I tested it but there is a fault */
  487. /* where the trap should return need -8 to adjust for rtsd r15, 8 */
  488. addik r15, r0, ret_from_exc - 8
  489. addik r5, r1, PTO /* parameter struct pt_regs * regs */
  490. mfs r6, resr
  491. nop
  492. mfs r7, rfsr; /* save FSR */
  493. nop
  494. mts rfsr, r0; /* Clear sticky fsr */
  495. nop
  496. rted r0, full_exception
  497. nop
  498. /*
  499. * Unaligned data trap.
  500. *
  501. * Unaligned data trap last on 4k page is handled here.
  502. *
  503. * Trap entered via exception, so EE bit is set, and interrupts
  504. * are masked. This is nice, means we don't have to CLI before state save
  505. *
  506. * The assembler routine is in "arch/microblaze/kernel/hw_exception_handler.S"
  507. */
  508. C_ENTRY(unaligned_data_trap):
  509. /* MS: I have to save r11 value and then restore it because
  510. * set_bit, clear_eip, set_ee use r11 as temp register if MSR
  511. * instructions are not used. We don't need to do if MSR instructions
  512. * are used and they use r0 instead of r11.
  513. * I am using ENTRY_SP which should be primary used only for stack
  514. * pointer saving. */
  515. swi r11, r0, TOPHYS(PER_CPU(ENTRY_SP));
  516. set_bip; /* equalize initial state for all possible entries */
  517. clear_eip;
  518. set_ee;
  519. lwi r11, r0, TOPHYS(PER_CPU(ENTRY_SP));
  520. SAVE_STATE /* Save registers.*/
  521. /* PC, before IRQ/trap - this is one instruction above */
  522. swi r17, r1, PTO+PT_PC;
  523. tovirt(r1,r1)
  524. /* where the trap should return need -8 to adjust for rtsd r15, 8 */
  525. addik r15, r0, ret_from_exc-8
  526. mfs r3, resr /* ESR */
  527. nop
  528. mfs r4, rear /* EAR */
  529. nop
  530. rtbd r0, _unaligned_data_exception
  531. addik r7, r1, PTO /* parameter struct pt_regs * regs */
  532. /*
  533. * Page fault traps.
  534. *
  535. * If the real exception handler (from hw_exception_handler.S) didn't find
  536. * the mapping for the process, then we're thrown here to handle such situation.
  537. *
  538. * Trap entered via exceptions, so EE bit is set, and interrupts
  539. * are masked. This is nice, means we don't have to CLI before state save
  540. *
  541. * Build a standard exception frame for TLB Access errors. All TLB exceptions
  542. * will bail out to this point if they can't resolve the lightweight TLB fault.
  543. *
  544. * The C function called is in "arch/microblaze/mm/fault.c", declared as:
  545. * void do_page_fault(struct pt_regs *regs,
  546. * unsigned long address,
  547. * unsigned long error_code)
  548. */
  549. /* data and intruction trap - which is choose is resolved int fault.c */
  550. C_ENTRY(page_fault_data_trap):
  551. SAVE_STATE /* Save registers.*/
  552. /* PC, before IRQ/trap - this is one instruction above */
  553. swi r17, r1, PTO+PT_PC;
  554. tovirt(r1,r1)
  555. /* where the trap should return need -8 to adjust for rtsd r15, 8 */
  556. addik r15, r0, ret_from_exc-8
  557. addik r5, r1, PTO /* parameter struct pt_regs * regs */
  558. mfs r6, rear /* parameter unsigned long address */
  559. nop
  560. mfs r7, resr /* parameter unsigned long error_code */
  561. nop
  562. rted r0, do_page_fault
  563. nop
  564. C_ENTRY(page_fault_instr_trap):
  565. SAVE_STATE /* Save registers.*/
  566. /* PC, before IRQ/trap - this is one instruction above */
  567. swi r17, r1, PTO+PT_PC;
  568. tovirt(r1,r1)
  569. /* where the trap should return need -8 to adjust for rtsd r15, 8 */
  570. addik r15, r0, ret_from_exc-8
  571. addik r5, r1, PTO /* parameter struct pt_regs * regs */
  572. mfs r6, rear /* parameter unsigned long address */
  573. nop
  574. rted r0, do_page_fault
  575. ori r7, r0, 0 /* parameter unsigned long error_code */
  576. /* Entry point used to return from an exception. */
  577. C_ENTRY(ret_from_exc):
  578. lwi r11, r1, PTO + PT_MODE;
  579. bnei r11, 2f; /* See if returning to kernel mode, */
  580. /* ... if so, skip resched &c. */
  581. /* We're returning to user mode, so check for various conditions that
  582. trigger rescheduling. */
  583. lwi r11, CURRENT_TASK, TS_THREAD_INFO; /* get thread info */
  584. lwi r11, r11, TI_FLAGS; /* get flags in thread info */
  585. andi r11, r11, _TIF_NEED_RESCHED;
  586. beqi r11, 5f;
  587. /* Call the scheduler before returning from a syscall/trap. */
  588. bralid r15, schedule; /* Call scheduler */
  589. nop; /* delay slot */
  590. /* Maybe handle a signal */
  591. 5: lwi r11, CURRENT_TASK, TS_THREAD_INFO; /* get thread info */
  592. lwi r11, r11, TI_FLAGS; /* get flags in thread info */
  593. andi r11, r11, _TIF_SIGPENDING;
  594. beqi r11, 1f; /* Signals to handle, handle them */
  595. /*
  596. * Handle a signal return; Pending signals should be in r18.
  597. *
  598. * Not all registers are saved by the normal trap/interrupt entry
  599. * points (for instance, call-saved registers (because the normal
  600. * C-compiler calling sequence in the kernel makes sure they're
  601. * preserved), and call-clobbered registers in the case of
  602. * traps), but signal handlers may want to examine or change the
  603. * complete register state. Here we save anything not saved by
  604. * the normal entry sequence, so that it may be safely restored
  605. * (in a possibly modified form) after do_signal returns. */
  606. addik r5, r1, PTO; /* Arg 1: struct pt_regs *regs */
  607. addi r7, r0, 0; /* Arg 3: int in_syscall */
  608. bralid r15, do_signal; /* Handle any signals */
  609. add r6, r0, r0; /* Arg 2: sigset_t *oldset */
  610. /* Finally, return to user state. */
  611. 1: set_bip; /* Ints masked for state restore */
  612. swi CURRENT_TASK, r0, PER_CPU(CURRENT_SAVE); /* save current */
  613. VM_OFF;
  614. tophys(r1,r1);
  615. RESTORE_REGS;
  616. addik r1, r1, STATE_SAVE_SIZE /* Clean up stack space. */
  617. lwi r1, r1, PT_R1 - PT_SIZE; /* Restore user stack pointer. */
  618. bri 6f;
  619. /* Return to kernel state. */
  620. 2: set_bip; /* Ints masked for state restore */
  621. VM_OFF;
  622. tophys(r1,r1);
  623. RESTORE_REGS;
  624. addik r1, r1, STATE_SAVE_SIZE /* Clean up stack space. */
  625. tovirt(r1,r1);
  626. 6:
  627. EXC_return: /* Make global symbol for debugging */
  628. rtbd r14, 0; /* Instructions to return from an IRQ */
  629. nop;
  630. /*
  631. * HW EXCEPTION rutine end
  632. */
  633. /*
  634. * Hardware maskable interrupts.
  635. *
  636. * The stack-pointer (r1) should have already been saved to the memory
  637. * location PER_CPU(ENTRY_SP).
  638. */
  639. C_ENTRY(_interrupt):
  640. /* MS: we are in physical address */
  641. /* Save registers, switch to proper stack, convert SP to virtual.*/
  642. swi r1, r0, TOPHYS(PER_CPU(ENTRY_SP))
  643. /* MS: See if already in kernel mode. */
  644. mfs r1, rmsr
  645. nop
  646. andi r1, r1, MSR_UMS
  647. bnei r1, 1f
  648. /* Kernel-mode state save. */
  649. lwi r1, r0, TOPHYS(PER_CPU(ENTRY_SP))
  650. tophys(r1,r1); /* MS: I have in r1 physical address where stack is */
  651. /* save registers */
  652. /* MS: Make room on the stack -> activation record */
  653. addik r1, r1, -STATE_SAVE_SIZE;
  654. SAVE_REGS
  655. swi r1, r1, PTO + PT_MODE; /* 0 - user mode, 1 - kernel mode */
  656. brid 2f;
  657. nop; /* MS: Fill delay slot */
  658. 1:
  659. /* User-mode state save. */
  660. /* MS: get the saved current */
  661. lwi r1, r0, TOPHYS(PER_CPU(CURRENT_SAVE));
  662. tophys(r1,r1);
  663. lwi r1, r1, TS_THREAD_INFO;
  664. addik r1, r1, THREAD_SIZE;
  665. tophys(r1,r1);
  666. /* save registers */
  667. addik r1, r1, -STATE_SAVE_SIZE;
  668. SAVE_REGS
  669. /* calculate mode */
  670. swi r0, r1, PTO + PT_MODE;
  671. lwi r11, r0, TOPHYS(PER_CPU(ENTRY_SP));
  672. swi r11, r1, PTO+PT_R1;
  673. 2:
  674. lwi CURRENT_TASK, r0, TOPHYS(PER_CPU(CURRENT_SAVE));
  675. tovirt(r1,r1)
  676. addik r5, r1, PTO;
  677. set_vms;
  678. addik r11, r0, do_IRQ;
  679. addik r15, r0, irq_call;
  680. irq_call:rtbd r11, 0;
  681. nop;
  682. /* MS: we are in virtual mode */
  683. ret_from_irq:
  684. lwi r11, r1, PTO + PT_MODE;
  685. bnei r11, 2f;
  686. lwi r11, CURRENT_TASK, TS_THREAD_INFO;
  687. lwi r11, r11, TI_FLAGS; /* MS: get flags from thread info */
  688. andi r11, r11, _TIF_NEED_RESCHED;
  689. beqi r11, 5f
  690. bralid r15, schedule;
  691. nop; /* delay slot */
  692. /* Maybe handle a signal */
  693. 5: lwi r11, CURRENT_TASK, TS_THREAD_INFO; /* MS: get thread info */
  694. lwi r11, r11, TI_FLAGS; /* get flags in thread info */
  695. andi r11, r11, _TIF_SIGPENDING;
  696. beqid r11, no_intr_resched
  697. /* Handle a signal return; Pending signals should be in r18. */
  698. addi r7, r0, 0; /* Arg 3: int in_syscall */
  699. addik r5, r1, PTO; /* Arg 1: struct pt_regs *regs */
  700. bralid r15, do_signal; /* Handle any signals */
  701. add r6, r0, r0; /* Arg 2: sigset_t *oldset */
  702. /* Finally, return to user state. */
  703. no_intr_resched:
  704. /* Disable interrupts, we are now committed to the state restore */
  705. disable_irq
  706. swi CURRENT_TASK, r0, PER_CPU(CURRENT_SAVE);
  707. VM_OFF;
  708. tophys(r1,r1);
  709. RESTORE_REGS
  710. addik r1, r1, STATE_SAVE_SIZE /* MS: Clean up stack space. */
  711. lwi r1, r1, PT_R1 - PT_SIZE;
  712. bri 6f;
  713. /* MS: Return to kernel state. */
  714. 2:
  715. #ifdef CONFIG_PREEMPT
  716. lwi r11, CURRENT_TASK, TS_THREAD_INFO;
  717. /* MS: get preempt_count from thread info */
  718. lwi r5, r11, TI_PREEMPT_COUNT;
  719. bgti r5, restore;
  720. lwi r5, r11, TI_FLAGS; /* get flags in thread info */
  721. andi r5, r5, _TIF_NEED_RESCHED;
  722. beqi r5, restore /* if zero jump over */
  723. preempt:
  724. /* interrupts are off that's why I am calling preempt_chedule_irq */
  725. bralid r15, preempt_schedule_irq
  726. nop
  727. lwi r11, CURRENT_TASK, TS_THREAD_INFO; /* get thread info */
  728. lwi r5, r11, TI_FLAGS; /* get flags in thread info */
  729. andi r5, r5, _TIF_NEED_RESCHED;
  730. bnei r5, preempt /* if non zero jump to resched */
  731. restore:
  732. #endif
  733. VM_OFF /* MS: turn off MMU */
  734. tophys(r1,r1)
  735. RESTORE_REGS
  736. addik r1, r1, STATE_SAVE_SIZE /* MS: Clean up stack space. */
  737. tovirt(r1,r1);
  738. 6:
  739. IRQ_return: /* MS: Make global symbol for debugging */
  740. rtid r14, 0
  741. nop
  742. /*
  743. * `Debug' trap
  744. * We enter dbtrap in "BIP" (breakpoint) mode.
  745. * So we exit the breakpoint mode with an 'rtbd' and proceed with the
  746. * original dbtrap.
  747. * however, wait to save state first
  748. */
  749. C_ENTRY(_debug_exception):
  750. /* BIP bit is set on entry, no interrupts can occur */
  751. swi r1, r0, TOPHYS(PER_CPU(ENTRY_SP))
  752. mfs r1, rmsr
  753. nop
  754. andi r1, r1, MSR_UMS
  755. bnei r1, 1f
  756. /* Kernel-mode state save. */
  757. lwi r1, r0, TOPHYS(PER_CPU(ENTRY_SP)); /* Reload kernel stack-ptr*/
  758. tophys(r1,r1);
  759. addik r1, r1, -STATE_SAVE_SIZE; /* Make room on the stack. */
  760. SAVE_REGS;
  761. swi r1, r1, PTO + PT_MODE;
  762. brid 2f;
  763. nop; /* Fill delay slot */
  764. 1: /* User-mode state save. */
  765. lwi r1, r0, TOPHYS(PER_CPU(CURRENT_SAVE)); /* get saved current */
  766. tophys(r1,r1);
  767. lwi r1, r1, TS_THREAD_INFO; /* get the thread info */
  768. addik r1, r1, THREAD_SIZE; /* calculate kernel stack pointer */
  769. tophys(r1,r1);
  770. addik r1, r1, -STATE_SAVE_SIZE; /* Make room on the stack. */
  771. SAVE_REGS;
  772. swi r0, r1, PTO + PT_MODE; /* Was in user-mode. */
  773. lwi r11, r0, TOPHYS(PER_CPU(ENTRY_SP));
  774. swi r11, r1, PTO+PT_R1; /* Store user SP. */
  775. 2:
  776. tovirt(r1,r1)
  777. set_vms;
  778. addi r5, r0, SIGTRAP /* send the trap signal */
  779. add r6, r0, CURRENT_TASK; /* Get current task ptr into r11 */
  780. addk r7, r0, r0 /* 3rd param zero */
  781. dbtrap_call: rtbd r0, send_sig;
  782. addik r15, r0, dbtrap_call;
  783. set_bip; /* Ints masked for state restore*/
  784. lwi r11, r1, PTO + PT_MODE;
  785. bnei r11, 2f;
  786. /* Get current task ptr into r11 */
  787. lwi r11, CURRENT_TASK, TS_THREAD_INFO; /* get thread info */
  788. lwi r11, r11, TI_FLAGS; /* get flags in thread info */
  789. andi r11, r11, _TIF_NEED_RESCHED;
  790. beqi r11, 5f;
  791. /* Call the scheduler before returning from a syscall/trap. */
  792. bralid r15, schedule; /* Call scheduler */
  793. nop; /* delay slot */
  794. /* XXX Is PT_DTRACE handling needed here? */
  795. /* XXX m68knommu also checks TASK_STATE & TASK_COUNTER here. */
  796. /* Maybe handle a signal */
  797. 5: lwi r11, CURRENT_TASK, TS_THREAD_INFO; /* get thread info */
  798. lwi r11, r11, TI_FLAGS; /* get flags in thread info */
  799. andi r11, r11, _TIF_SIGPENDING;
  800. beqi r11, 1f; /* Signals to handle, handle them */
  801. /* Handle a signal return; Pending signals should be in r18. */
  802. /* Not all registers are saved by the normal trap/interrupt entry
  803. points (for instance, call-saved registers (because the normal
  804. C-compiler calling sequence in the kernel makes sure they're
  805. preserved), and call-clobbered registers in the case of
  806. traps), but signal handlers may want to examine or change the
  807. complete register state. Here we save anything not saved by
  808. the normal entry sequence, so that it may be safely restored
  809. (in a possibly modified form) after do_signal returns. */
  810. addik r5, r1, PTO; /* Arg 1: struct pt_regs *regs */
  811. addi r7, r0, 0; /* Arg 3: int in_syscall */
  812. bralid r15, do_signal; /* Handle any signals */
  813. add r6, r0, r0; /* Arg 2: sigset_t *oldset */
  814. /* Finally, return to user state. */
  815. 1:
  816. swi CURRENT_TASK, r0, PER_CPU(CURRENT_SAVE); /* save current */
  817. VM_OFF;
  818. tophys(r1,r1);
  819. RESTORE_REGS
  820. addik r1, r1, STATE_SAVE_SIZE /* Clean up stack space. */
  821. lwi r1, r1, PT_R1 - PT_SIZE;
  822. /* Restore user stack pointer. */
  823. bri 6f;
  824. /* Return to kernel state. */
  825. 2: VM_OFF;
  826. tophys(r1,r1);
  827. RESTORE_REGS
  828. addik r1, r1, STATE_SAVE_SIZE /* Clean up stack space. */
  829. tovirt(r1,r1);
  830. 6:
  831. DBTRAP_return: /* Make global symbol for debugging */
  832. rtbd r14, 0; /* Instructions to return from an IRQ */
  833. nop;
  834. ENTRY(_switch_to)
  835. /* prepare return value */
  836. addk r3, r0, CURRENT_TASK
  837. /* save registers in cpu_context */
  838. /* use r11 and r12, volatile registers, as temp register */
  839. /* give start of cpu_context for previous process */
  840. addik r11, r5, TI_CPU_CONTEXT
  841. swi r1, r11, CC_R1
  842. swi r2, r11, CC_R2
  843. /* skip volatile registers.
  844. * they are saved on stack when we jumped to _switch_to() */
  845. /* dedicated registers */
  846. swi r13, r11, CC_R13
  847. swi r14, r11, CC_R14
  848. swi r15, r11, CC_R15
  849. swi r16, r11, CC_R16
  850. swi r17, r11, CC_R17
  851. swi r18, r11, CC_R18
  852. /* save non-volatile registers */
  853. swi r19, r11, CC_R19
  854. swi r20, r11, CC_R20
  855. swi r21, r11, CC_R21
  856. swi r22, r11, CC_R22
  857. swi r23, r11, CC_R23
  858. swi r24, r11, CC_R24
  859. swi r25, r11, CC_R25
  860. swi r26, r11, CC_R26
  861. swi r27, r11, CC_R27
  862. swi r28, r11, CC_R28
  863. swi r29, r11, CC_R29
  864. swi r30, r11, CC_R30
  865. /* special purpose registers */
  866. mfs r12, rmsr
  867. nop
  868. swi r12, r11, CC_MSR
  869. mfs r12, rear
  870. nop
  871. swi r12, r11, CC_EAR
  872. mfs r12, resr
  873. nop
  874. swi r12, r11, CC_ESR
  875. mfs r12, rfsr
  876. nop
  877. swi r12, r11, CC_FSR
  878. /* update r31, the current-give me pointer to task which will be next */
  879. lwi CURRENT_TASK, r6, TI_TASK
  880. /* stored it to current_save too */
  881. swi CURRENT_TASK, r0, PER_CPU(CURRENT_SAVE)
  882. /* get new process' cpu context and restore */
  883. /* give me start where start context of next task */
  884. addik r11, r6, TI_CPU_CONTEXT
  885. /* non-volatile registers */
  886. lwi r30, r11, CC_R30
  887. lwi r29, r11, CC_R29
  888. lwi r28, r11, CC_R28
  889. lwi r27, r11, CC_R27
  890. lwi r26, r11, CC_R26
  891. lwi r25, r11, CC_R25
  892. lwi r24, r11, CC_R24
  893. lwi r23, r11, CC_R23
  894. lwi r22, r11, CC_R22
  895. lwi r21, r11, CC_R21
  896. lwi r20, r11, CC_R20
  897. lwi r19, r11, CC_R19
  898. /* dedicated registers */
  899. lwi r18, r11, CC_R18
  900. lwi r17, r11, CC_R17
  901. lwi r16, r11, CC_R16
  902. lwi r15, r11, CC_R15
  903. lwi r14, r11, CC_R14
  904. lwi r13, r11, CC_R13
  905. /* skip volatile registers */
  906. lwi r2, r11, CC_R2
  907. lwi r1, r11, CC_R1
  908. /* special purpose registers */
  909. lwi r12, r11, CC_FSR
  910. mts rfsr, r12
  911. nop
  912. lwi r12, r11, CC_MSR
  913. mts rmsr, r12
  914. nop
  915. rtsd r15, 8
  916. nop
  917. ENTRY(_reset)
  918. brai 0x70; /* Jump back to FS-boot */
  919. ENTRY(_break)
  920. mfs r5, rmsr
  921. nop
  922. swi r5, r0, 0x250 + TOPHYS(r0_ram)
  923. mfs r5, resr
  924. nop
  925. swi r5, r0, 0x254 + TOPHYS(r0_ram)
  926. bri 0
  927. /* These are compiled and loaded into high memory, then
  928. * copied into place in mach_early_setup */
  929. .section .init.ivt, "ax"
  930. .org 0x0
  931. /* this is very important - here is the reset vector */
  932. /* in current MMU branch you don't care what is here - it is
  933. * used from bootloader site - but this is correct for FS-BOOT */
  934. brai 0x70
  935. nop
  936. brai TOPHYS(_user_exception); /* syscall handler */
  937. brai TOPHYS(_interrupt); /* Interrupt handler */
  938. brai TOPHYS(_break); /* nmi trap handler */
  939. brai TOPHYS(_hw_exception_handler); /* HW exception handler */
  940. .org 0x60
  941. brai TOPHYS(_debug_exception); /* debug trap handler*/
  942. .section .rodata,"a"
  943. #include "syscall_table.S"
  944. syscall_table_size=(.-sys_call_table)
  945. type_SYSCALL:
  946. .ascii "SYSCALL\0"
  947. type_IRQ:
  948. .ascii "IRQ\0"
  949. type_IRQ_PREEMPT:
  950. .ascii "IRQ (PREEMPTED)\0"
  951. type_SYSCALL_PREEMPT:
  952. .ascii " SYSCALL (PREEMPTED)\0"
  953. /*
  954. * Trap decoding for stack unwinder
  955. * Tuples are (start addr, end addr, string)
  956. * If return address lies on [start addr, end addr],
  957. * unwinder displays 'string'
  958. */
  959. .align 4
  960. .global microblaze_trap_handlers
  961. microblaze_trap_handlers:
  962. /* Exact matches come first */
  963. .word ret_from_trap; .word ret_from_trap ; .word type_SYSCALL
  964. .word ret_from_irq ; .word ret_from_irq ; .word type_IRQ
  965. /* Fuzzy matches go here */
  966. .word ret_from_irq ; .word no_intr_resched ; .word type_IRQ_PREEMPT
  967. .word ret_from_trap; .word TRAP_return ; .word type_SYSCALL_PREEMPT
  968. /* End of table */
  969. .word 0 ; .word 0 ; .word 0