exceptions-64s.S 44 KB

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  1. /*
  2. * This file contains the 64-bit "server" PowerPC variant
  3. * of the low level exception handling including exception
  4. * vectors, exception return, part of the slb and stab
  5. * handling and other fixed offset specific things.
  6. *
  7. * This file is meant to be #included from head_64.S due to
  8. * position dependent assembly.
  9. *
  10. * Most of this originates from head_64.S and thus has the same
  11. * copyright history.
  12. *
  13. */
  14. #include <asm/hw_irq.h>
  15. #include <asm/exception-64s.h>
  16. #include <asm/ptrace.h>
  17. #include <asm/cpuidle.h>
  18. #include <asm/head-64.h>
  19. /*
  20. * There are a few constraints to be concerned with.
  21. * - Real mode exceptions code/data must be located at their physical location.
  22. * - Virtual mode exceptions must be mapped at their 0xc000... location.
  23. * - Fixed location code must not call directly beyond the __end_interrupts
  24. * area when built with CONFIG_RELOCATABLE. LOAD_HANDLER / bctr sequence
  25. * must be used.
  26. * - LOAD_HANDLER targets must be within first 64K of physical 0 /
  27. * virtual 0xc00...
  28. * - Conditional branch targets must be within +/-32K of caller.
  29. *
  30. * "Virtual exceptions" run with relocation on (MSR_IR=1, MSR_DR=1), and
  31. * therefore don't have to run in physically located code or rfid to
  32. * virtual mode kernel code. However on relocatable kernels they do have
  33. * to branch to KERNELBASE offset because the rest of the kernel (outside
  34. * the exception vectors) may be located elsewhere.
  35. *
  36. * Virtual exceptions correspond with physical, except their entry points
  37. * are offset by 0xc000000000000000 and also tend to get an added 0x4000
  38. * offset applied. Virtual exceptions are enabled with the Alternate
  39. * Interrupt Location (AIL) bit set in the LPCR. However this does not
  40. * guarantee they will be delivered virtually. Some conditions (see the ISA)
  41. * cause exceptions to be delivered in real mode.
  42. *
  43. * It's impossible to receive interrupts below 0x300 via AIL.
  44. *
  45. * KVM: None of the virtual exceptions are from the guest. Anything that
  46. * escalated to HV=1 from HV=0 is delivered via real mode handlers.
  47. *
  48. *
  49. * We layout physical memory as follows:
  50. * 0x0000 - 0x00ff : Secondary processor spin code
  51. * 0x0100 - 0x18ff : Real mode pSeries interrupt vectors
  52. * 0x1900 - 0x3fff : Real mode trampolines
  53. * 0x4000 - 0x58ff : Relon (IR=1,DR=1) mode pSeries interrupt vectors
  54. * 0x5900 - 0x6fff : Relon mode trampolines
  55. * 0x7000 - 0x7fff : FWNMI data area
  56. * 0x8000 - .... : Common interrupt handlers, remaining early
  57. * setup code, rest of kernel.
  58. *
  59. * We could reclaim 0x4000-0x42ff for real mode trampolines if the space
  60. * is necessary. Until then it's more consistent to explicitly put VIRT_NONE
  61. * vectors there.
  62. */
  63. OPEN_FIXED_SECTION(real_vectors, 0x0100, 0x1900)
  64. OPEN_FIXED_SECTION(real_trampolines, 0x1900, 0x4000)
  65. OPEN_FIXED_SECTION(virt_vectors, 0x4000, 0x5900)
  66. OPEN_FIXED_SECTION(virt_trampolines, 0x5900, 0x7000)
  67. #if defined(CONFIG_PPC_PSERIES) || defined(CONFIG_PPC_POWERNV)
  68. /*
  69. * Data area reserved for FWNMI option.
  70. * This address (0x7000) is fixed by the RPA.
  71. * pseries and powernv need to keep the whole page from
  72. * 0x7000 to 0x8000 free for use by the firmware
  73. */
  74. ZERO_FIXED_SECTION(fwnmi_page, 0x7000, 0x8000)
  75. OPEN_TEXT_SECTION(0x8000)
  76. #else
  77. OPEN_TEXT_SECTION(0x7000)
  78. #endif
  79. USE_FIXED_SECTION(real_vectors)
  80. /*
  81. * This is the start of the interrupt handlers for pSeries
  82. * This code runs with relocation off.
  83. * Code from here to __end_interrupts gets copied down to real
  84. * address 0x100 when we are running a relocatable kernel.
  85. * Therefore any relative branches in this section must only
  86. * branch to labels in this section.
  87. */
  88. .globl __start_interrupts
  89. __start_interrupts:
  90. /* No virt vectors corresponding with 0x0..0x100 */
  91. EXC_VIRT_NONE(0x4000, 0x4100)
  92. #ifdef CONFIG_PPC_P7_NAP
  93. /*
  94. * If running native on arch 2.06 or later, check if we are waking up
  95. * from nap/sleep/winkle, and branch to idle handler.
  96. */
  97. #define IDLETEST(n) \
  98. BEGIN_FTR_SECTION ; \
  99. mfspr r10,SPRN_SRR1 ; \
  100. rlwinm. r10,r10,47-31,30,31 ; \
  101. beq- 1f ; \
  102. cmpwi cr3,r10,2 ; \
  103. BRANCH_TO_COMMON(r10, system_reset_idle_common) ; \
  104. 1: \
  105. END_FTR_SECTION_IFSET(CPU_FTR_HVMODE | CPU_FTR_ARCH_206)
  106. #else
  107. #define IDLETEST NOTEST
  108. #endif
  109. EXC_REAL_BEGIN(system_reset, 0x100, 0x200)
  110. SET_SCRATCH0(r13)
  111. GET_PACA(r13)
  112. clrrdi r13,r13,1 /* Last bit of HSPRG0 is set if waking from winkle */
  113. EXCEPTION_PROLOG_PSERIES_PACA(PACA_EXGEN, system_reset_common, EXC_STD,
  114. IDLETEST, 0x100)
  115. EXC_REAL_END(system_reset, 0x100, 0x200)
  116. EXC_VIRT_NONE(0x4100, 0x4200)
  117. #ifdef CONFIG_PPC_P7_NAP
  118. EXC_COMMON_BEGIN(system_reset_idle_common)
  119. BEGIN_FTR_SECTION
  120. GET_PACA(r13) /* Restore HSPRG0 to get the winkle bit in r13 */
  121. END_FTR_SECTION_IFCLR(CPU_FTR_ARCH_300)
  122. bl pnv_restore_hyp_resource
  123. li r0,PNV_THREAD_RUNNING
  124. stb r0,PACA_THREAD_IDLE_STATE(r13) /* Clear thread state */
  125. #ifdef CONFIG_KVM_BOOK3S_HV_POSSIBLE
  126. li r0,KVM_HWTHREAD_IN_KERNEL
  127. stb r0,HSTATE_HWTHREAD_STATE(r13)
  128. /* Order setting hwthread_state vs. testing hwthread_req */
  129. sync
  130. lbz r0,HSTATE_HWTHREAD_REQ(r13)
  131. cmpwi r0,0
  132. beq 1f
  133. b kvm_start_guest
  134. 1:
  135. #endif
  136. /* Return SRR1 from power7_nap() */
  137. mfspr r3,SPRN_SRR1
  138. blt cr3,2f
  139. b pnv_wakeup_loss
  140. 2: b pnv_wakeup_noloss
  141. #endif
  142. EXC_COMMON(system_reset_common, 0x100, system_reset_exception)
  143. #ifdef CONFIG_PPC_PSERIES
  144. /*
  145. * Vectors for the FWNMI option. Share common code.
  146. */
  147. TRAMP_REAL_BEGIN(system_reset_fwnmi)
  148. SET_SCRATCH0(r13) /* save r13 */
  149. EXCEPTION_PROLOG_PSERIES(PACA_EXGEN, system_reset_common, EXC_STD,
  150. NOTEST, 0x100)
  151. #endif /* CONFIG_PPC_PSERIES */
  152. EXC_REAL_BEGIN(machine_check, 0x200, 0x300)
  153. /* This is moved out of line as it can be patched by FW, but
  154. * some code path might still want to branch into the original
  155. * vector
  156. */
  157. SET_SCRATCH0(r13) /* save r13 */
  158. /*
  159. * Running native on arch 2.06 or later, we may wakeup from winkle
  160. * inside machine check. If yes, then last bit of HSPRG0 would be set
  161. * to 1. Hence clear it unconditionally.
  162. */
  163. GET_PACA(r13)
  164. clrrdi r13,r13,1
  165. SET_PACA(r13)
  166. EXCEPTION_PROLOG_0(PACA_EXMC)
  167. BEGIN_FTR_SECTION
  168. b machine_check_powernv_early
  169. FTR_SECTION_ELSE
  170. b machine_check_pSeries_0
  171. ALT_FTR_SECTION_END_IFSET(CPU_FTR_HVMODE)
  172. EXC_REAL_END(machine_check, 0x200, 0x300)
  173. EXC_VIRT_NONE(0x4200, 0x4300)
  174. TRAMP_REAL_BEGIN(machine_check_powernv_early)
  175. BEGIN_FTR_SECTION
  176. EXCEPTION_PROLOG_1(PACA_EXMC, NOTEST, 0x200)
  177. /*
  178. * Register contents:
  179. * R13 = PACA
  180. * R9 = CR
  181. * Original R9 to R13 is saved on PACA_EXMC
  182. *
  183. * Switch to mc_emergency stack and handle re-entrancy (we limit
  184. * the nested MCE upto level 4 to avoid stack overflow).
  185. * Save MCE registers srr1, srr0, dar and dsisr and then set ME=1
  186. *
  187. * We use paca->in_mce to check whether this is the first entry or
  188. * nested machine check. We increment paca->in_mce to track nested
  189. * machine checks.
  190. *
  191. * If this is the first entry then set stack pointer to
  192. * paca->mc_emergency_sp, otherwise r1 is already pointing to
  193. * stack frame on mc_emergency stack.
  194. *
  195. * NOTE: We are here with MSR_ME=0 (off), which means we risk a
  196. * checkstop if we get another machine check exception before we do
  197. * rfid with MSR_ME=1.
  198. */
  199. mr r11,r1 /* Save r1 */
  200. lhz r10,PACA_IN_MCE(r13)
  201. cmpwi r10,0 /* Are we in nested machine check */
  202. bne 0f /* Yes, we are. */
  203. /* First machine check entry */
  204. ld r1,PACAMCEMERGSP(r13) /* Use MC emergency stack */
  205. 0: subi r1,r1,INT_FRAME_SIZE /* alloc stack frame */
  206. addi r10,r10,1 /* increment paca->in_mce */
  207. sth r10,PACA_IN_MCE(r13)
  208. /* Limit nested MCE to level 4 to avoid stack overflow */
  209. cmpwi r10,4
  210. bgt 2f /* Check if we hit limit of 4 */
  211. std r11,GPR1(r1) /* Save r1 on the stack. */
  212. std r11,0(r1) /* make stack chain pointer */
  213. mfspr r11,SPRN_SRR0 /* Save SRR0 */
  214. std r11,_NIP(r1)
  215. mfspr r11,SPRN_SRR1 /* Save SRR1 */
  216. std r11,_MSR(r1)
  217. mfspr r11,SPRN_DAR /* Save DAR */
  218. std r11,_DAR(r1)
  219. mfspr r11,SPRN_DSISR /* Save DSISR */
  220. std r11,_DSISR(r1)
  221. std r9,_CCR(r1) /* Save CR in stackframe */
  222. /* Save r9 through r13 from EXMC save area to stack frame. */
  223. EXCEPTION_PROLOG_COMMON_2(PACA_EXMC)
  224. mfmsr r11 /* get MSR value */
  225. ori r11,r11,MSR_ME /* turn on ME bit */
  226. ori r11,r11,MSR_RI /* turn on RI bit */
  227. LOAD_HANDLER(r12, machine_check_handle_early)
  228. 1: mtspr SPRN_SRR0,r12
  229. mtspr SPRN_SRR1,r11
  230. rfid
  231. b . /* prevent speculative execution */
  232. 2:
  233. /* Stack overflow. Stay on emergency stack and panic.
  234. * Keep the ME bit off while panic-ing, so that if we hit
  235. * another machine check we checkstop.
  236. */
  237. addi r1,r1,INT_FRAME_SIZE /* go back to previous stack frame */
  238. ld r11,PACAKMSR(r13)
  239. LOAD_HANDLER(r12, unrecover_mce)
  240. li r10,MSR_ME
  241. andc r11,r11,r10 /* Turn off MSR_ME */
  242. b 1b
  243. b . /* prevent speculative execution */
  244. END_FTR_SECTION_IFSET(CPU_FTR_HVMODE)
  245. TRAMP_REAL_BEGIN(machine_check_pSeries)
  246. .globl machine_check_fwnmi
  247. machine_check_fwnmi:
  248. SET_SCRATCH0(r13) /* save r13 */
  249. EXCEPTION_PROLOG_0(PACA_EXMC)
  250. machine_check_pSeries_0:
  251. EXCEPTION_PROLOG_1(PACA_EXMC, KVMTEST_PR, 0x200)
  252. /*
  253. * The following is essentially EXCEPTION_PROLOG_PSERIES_1 with the
  254. * difference that MSR_RI is not enabled, because PACA_EXMC is being
  255. * used, so nested machine check corrupts it. machine_check_common
  256. * enables MSR_RI.
  257. */
  258. ld r10,PACAKMSR(r13)
  259. xori r10,r10,MSR_RI
  260. mfspr r11,SPRN_SRR0
  261. LOAD_HANDLER(r12, machine_check_common)
  262. mtspr SPRN_SRR0,r12
  263. mfspr r12,SPRN_SRR1
  264. mtspr SPRN_SRR1,r10
  265. rfid
  266. b . /* prevent speculative execution */
  267. TRAMP_KVM_SKIP(PACA_EXMC, 0x200)
  268. EXC_COMMON_BEGIN(machine_check_common)
  269. /*
  270. * Machine check is different because we use a different
  271. * save area: PACA_EXMC instead of PACA_EXGEN.
  272. */
  273. mfspr r10,SPRN_DAR
  274. std r10,PACA_EXMC+EX_DAR(r13)
  275. mfspr r10,SPRN_DSISR
  276. stw r10,PACA_EXMC+EX_DSISR(r13)
  277. EXCEPTION_PROLOG_COMMON(0x200, PACA_EXMC)
  278. FINISH_NAP
  279. RECONCILE_IRQ_STATE(r10, r11)
  280. ld r3,PACA_EXMC+EX_DAR(r13)
  281. lwz r4,PACA_EXMC+EX_DSISR(r13)
  282. /* Enable MSR_RI when finished with PACA_EXMC */
  283. li r10,MSR_RI
  284. mtmsrd r10,1
  285. std r3,_DAR(r1)
  286. std r4,_DSISR(r1)
  287. bl save_nvgprs
  288. addi r3,r1,STACK_FRAME_OVERHEAD
  289. bl machine_check_exception
  290. b ret_from_except
  291. #define MACHINE_CHECK_HANDLER_WINDUP \
  292. /* Clear MSR_RI before setting SRR0 and SRR1. */\
  293. li r0,MSR_RI; \
  294. mfmsr r9; /* get MSR value */ \
  295. andc r9,r9,r0; \
  296. mtmsrd r9,1; /* Clear MSR_RI */ \
  297. /* Move original SRR0 and SRR1 into the respective regs */ \
  298. ld r9,_MSR(r1); \
  299. mtspr SPRN_SRR1,r9; \
  300. ld r3,_NIP(r1); \
  301. mtspr SPRN_SRR0,r3; \
  302. ld r9,_CTR(r1); \
  303. mtctr r9; \
  304. ld r9,_XER(r1); \
  305. mtxer r9; \
  306. ld r9,_LINK(r1); \
  307. mtlr r9; \
  308. REST_GPR(0, r1); \
  309. REST_8GPRS(2, r1); \
  310. REST_GPR(10, r1); \
  311. ld r11,_CCR(r1); \
  312. mtcr r11; \
  313. /* Decrement paca->in_mce. */ \
  314. lhz r12,PACA_IN_MCE(r13); \
  315. subi r12,r12,1; \
  316. sth r12,PACA_IN_MCE(r13); \
  317. REST_GPR(11, r1); \
  318. REST_2GPRS(12, r1); \
  319. /* restore original r1. */ \
  320. ld r1,GPR1(r1)
  321. /*
  322. * Handle machine check early in real mode. We come here with
  323. * ME=1, MMU (IR=0 and DR=0) off and using MC emergency stack.
  324. */
  325. EXC_COMMON_BEGIN(machine_check_handle_early)
  326. std r0,GPR0(r1) /* Save r0 */
  327. EXCEPTION_PROLOG_COMMON_3(0x200)
  328. bl save_nvgprs
  329. addi r3,r1,STACK_FRAME_OVERHEAD
  330. bl machine_check_early
  331. std r3,RESULT(r1) /* Save result */
  332. ld r12,_MSR(r1)
  333. #ifdef CONFIG_PPC_P7_NAP
  334. /*
  335. * Check if thread was in power saving mode. We come here when any
  336. * of the following is true:
  337. * a. thread wasn't in power saving mode
  338. * b. thread was in power saving mode with no state loss,
  339. * supervisor state loss or hypervisor state loss.
  340. *
  341. * Go back to nap/sleep/winkle mode again if (b) is true.
  342. */
  343. rlwinm. r11,r12,47-31,30,31 /* Was it in power saving mode? */
  344. beq 4f /* No, it wasn;t */
  345. /* Thread was in power saving mode. Go back to nap again. */
  346. cmpwi r11,2
  347. blt 3f
  348. /* Supervisor/Hypervisor state loss */
  349. li r0,1
  350. stb r0,PACA_NAPSTATELOST(r13)
  351. 3: bl machine_check_queue_event
  352. MACHINE_CHECK_HANDLER_WINDUP
  353. GET_PACA(r13)
  354. ld r1,PACAR1(r13)
  355. /*
  356. * Check what idle state this CPU was in and go back to same mode
  357. * again.
  358. */
  359. lbz r3,PACA_THREAD_IDLE_STATE(r13)
  360. cmpwi r3,PNV_THREAD_NAP
  361. bgt 10f
  362. IDLE_STATE_ENTER_SEQ(PPC_NAP)
  363. /* No return */
  364. 10:
  365. cmpwi r3,PNV_THREAD_SLEEP
  366. bgt 2f
  367. IDLE_STATE_ENTER_SEQ(PPC_SLEEP)
  368. /* No return */
  369. 2:
  370. /*
  371. * Go back to winkle. Please note that this thread was woken up in
  372. * machine check from winkle and have not restored the per-subcore
  373. * state. Hence before going back to winkle, set last bit of HSPRG0
  374. * to 1. This will make sure that if this thread gets woken up
  375. * again at reset vector 0x100 then it will get chance to restore
  376. * the subcore state.
  377. */
  378. ori r13,r13,1
  379. SET_PACA(r13)
  380. IDLE_STATE_ENTER_SEQ(PPC_WINKLE)
  381. /* No return */
  382. 4:
  383. #endif
  384. /*
  385. * Check if we are coming from hypervisor userspace. If yes then we
  386. * continue in host kernel in V mode to deliver the MC event.
  387. */
  388. rldicl. r11,r12,4,63 /* See if MC hit while in HV mode. */
  389. beq 5f
  390. andi. r11,r12,MSR_PR /* See if coming from user. */
  391. bne 9f /* continue in V mode if we are. */
  392. 5:
  393. #ifdef CONFIG_KVM_BOOK3S_64_HANDLER
  394. /*
  395. * We are coming from kernel context. Check if we are coming from
  396. * guest. if yes, then we can continue. We will fall through
  397. * do_kvm_200->kvmppc_interrupt to deliver the MC event to guest.
  398. */
  399. lbz r11,HSTATE_IN_GUEST(r13)
  400. cmpwi r11,0 /* Check if coming from guest */
  401. bne 9f /* continue if we are. */
  402. #endif
  403. /*
  404. * At this point we are not sure about what context we come from.
  405. * Queue up the MCE event and return from the interrupt.
  406. * But before that, check if this is an un-recoverable exception.
  407. * If yes, then stay on emergency stack and panic.
  408. */
  409. andi. r11,r12,MSR_RI
  410. bne 2f
  411. 1: mfspr r11,SPRN_SRR0
  412. LOAD_HANDLER(r10,unrecover_mce)
  413. mtspr SPRN_SRR0,r10
  414. ld r10,PACAKMSR(r13)
  415. /*
  416. * We are going down. But there are chances that we might get hit by
  417. * another MCE during panic path and we may run into unstable state
  418. * with no way out. Hence, turn ME bit off while going down, so that
  419. * when another MCE is hit during panic path, system will checkstop
  420. * and hypervisor will get restarted cleanly by SP.
  421. */
  422. li r3,MSR_ME
  423. andc r10,r10,r3 /* Turn off MSR_ME */
  424. mtspr SPRN_SRR1,r10
  425. rfid
  426. b .
  427. 2:
  428. /*
  429. * Check if we have successfully handled/recovered from error, if not
  430. * then stay on emergency stack and panic.
  431. */
  432. ld r3,RESULT(r1) /* Load result */
  433. cmpdi r3,0 /* see if we handled MCE successfully */
  434. beq 1b /* if !handled then panic */
  435. /*
  436. * Return from MC interrupt.
  437. * Queue up the MCE event so that we can log it later, while
  438. * returning from kernel or opal call.
  439. */
  440. bl machine_check_queue_event
  441. MACHINE_CHECK_HANDLER_WINDUP
  442. rfid
  443. 9:
  444. /* Deliver the machine check to host kernel in V mode. */
  445. MACHINE_CHECK_HANDLER_WINDUP
  446. b machine_check_pSeries
  447. EXC_COMMON_BEGIN(unrecover_mce)
  448. /* Invoke machine_check_exception to print MCE event and panic. */
  449. addi r3,r1,STACK_FRAME_OVERHEAD
  450. bl machine_check_exception
  451. /*
  452. * We will not reach here. Even if we did, there is no way out. Call
  453. * unrecoverable_exception and die.
  454. */
  455. 1: addi r3,r1,STACK_FRAME_OVERHEAD
  456. bl unrecoverable_exception
  457. b 1b
  458. EXC_REAL(data_access, 0x300, 0x380)
  459. EXC_VIRT(data_access, 0x4300, 0x4380, 0x300)
  460. TRAMP_KVM_SKIP(PACA_EXGEN, 0x300)
  461. EXC_COMMON_BEGIN(data_access_common)
  462. /*
  463. * Here r13 points to the paca, r9 contains the saved CR,
  464. * SRR0 and SRR1 are saved in r11 and r12,
  465. * r9 - r13 are saved in paca->exgen.
  466. */
  467. mfspr r10,SPRN_DAR
  468. std r10,PACA_EXGEN+EX_DAR(r13)
  469. mfspr r10,SPRN_DSISR
  470. stw r10,PACA_EXGEN+EX_DSISR(r13)
  471. EXCEPTION_PROLOG_COMMON(0x300, PACA_EXGEN)
  472. RECONCILE_IRQ_STATE(r10, r11)
  473. ld r12,_MSR(r1)
  474. ld r3,PACA_EXGEN+EX_DAR(r13)
  475. lwz r4,PACA_EXGEN+EX_DSISR(r13)
  476. li r5,0x300
  477. std r3,_DAR(r1)
  478. std r4,_DSISR(r1)
  479. BEGIN_MMU_FTR_SECTION
  480. b do_hash_page /* Try to handle as hpte fault */
  481. MMU_FTR_SECTION_ELSE
  482. b handle_page_fault
  483. ALT_MMU_FTR_SECTION_END_IFCLR(MMU_FTR_TYPE_RADIX)
  484. EXC_REAL_BEGIN(data_access_slb, 0x380, 0x400)
  485. SET_SCRATCH0(r13)
  486. EXCEPTION_PROLOG_0(PACA_EXSLB)
  487. EXCEPTION_PROLOG_1(PACA_EXSLB, KVMTEST_PR, 0x380)
  488. std r3,PACA_EXSLB+EX_R3(r13)
  489. mfspr r3,SPRN_DAR
  490. mfspr r12,SPRN_SRR1
  491. crset 4*cr6+eq
  492. #ifndef CONFIG_RELOCATABLE
  493. b slb_miss_realmode
  494. #else
  495. /*
  496. * We can't just use a direct branch to slb_miss_realmode
  497. * because the distance from here to there depends on where
  498. * the kernel ends up being put.
  499. */
  500. mfctr r11
  501. LOAD_HANDLER(r10, slb_miss_realmode)
  502. mtctr r10
  503. bctr
  504. #endif
  505. EXC_REAL_END(data_access_slb, 0x380, 0x400)
  506. EXC_VIRT_BEGIN(data_access_slb, 0x4380, 0x4400)
  507. SET_SCRATCH0(r13)
  508. EXCEPTION_PROLOG_0(PACA_EXSLB)
  509. EXCEPTION_PROLOG_1(PACA_EXSLB, NOTEST, 0x380)
  510. std r3,PACA_EXSLB+EX_R3(r13)
  511. mfspr r3,SPRN_DAR
  512. mfspr r12,SPRN_SRR1
  513. crset 4*cr6+eq
  514. #ifndef CONFIG_RELOCATABLE
  515. b slb_miss_realmode
  516. #else
  517. /*
  518. * We can't just use a direct branch to slb_miss_realmode
  519. * because the distance from here to there depends on where
  520. * the kernel ends up being put.
  521. */
  522. mfctr r11
  523. LOAD_HANDLER(r10, slb_miss_realmode)
  524. mtctr r10
  525. bctr
  526. #endif
  527. EXC_VIRT_END(data_access_slb, 0x4380, 0x4400)
  528. TRAMP_KVM_SKIP(PACA_EXSLB, 0x380)
  529. EXC_REAL(instruction_access, 0x400, 0x480)
  530. EXC_VIRT(instruction_access, 0x4400, 0x4480, 0x400)
  531. TRAMP_KVM(PACA_EXGEN, 0x400)
  532. EXC_COMMON_BEGIN(instruction_access_common)
  533. EXCEPTION_PROLOG_COMMON(0x400, PACA_EXGEN)
  534. RECONCILE_IRQ_STATE(r10, r11)
  535. ld r12,_MSR(r1)
  536. ld r3,_NIP(r1)
  537. andis. r4,r12,0x5820
  538. li r5,0x400
  539. std r3,_DAR(r1)
  540. std r4,_DSISR(r1)
  541. BEGIN_MMU_FTR_SECTION
  542. b do_hash_page /* Try to handle as hpte fault */
  543. MMU_FTR_SECTION_ELSE
  544. b handle_page_fault
  545. ALT_MMU_FTR_SECTION_END_IFCLR(MMU_FTR_TYPE_RADIX)
  546. EXC_REAL_BEGIN(instruction_access_slb, 0x480, 0x500)
  547. SET_SCRATCH0(r13)
  548. EXCEPTION_PROLOG_0(PACA_EXSLB)
  549. EXCEPTION_PROLOG_1(PACA_EXSLB, KVMTEST_PR, 0x480)
  550. std r3,PACA_EXSLB+EX_R3(r13)
  551. mfspr r3,SPRN_SRR0 /* SRR0 is faulting address */
  552. mfspr r12,SPRN_SRR1
  553. crclr 4*cr6+eq
  554. #ifndef CONFIG_RELOCATABLE
  555. b slb_miss_realmode
  556. #else
  557. mfctr r11
  558. LOAD_HANDLER(r10, slb_miss_realmode)
  559. mtctr r10
  560. bctr
  561. #endif
  562. EXC_REAL_END(instruction_access_slb, 0x480, 0x500)
  563. EXC_VIRT_BEGIN(instruction_access_slb, 0x4480, 0x4500)
  564. SET_SCRATCH0(r13)
  565. EXCEPTION_PROLOG_0(PACA_EXSLB)
  566. EXCEPTION_PROLOG_1(PACA_EXSLB, NOTEST, 0x480)
  567. std r3,PACA_EXSLB+EX_R3(r13)
  568. mfspr r3,SPRN_SRR0 /* SRR0 is faulting address */
  569. mfspr r12,SPRN_SRR1
  570. crclr 4*cr6+eq
  571. #ifndef CONFIG_RELOCATABLE
  572. b slb_miss_realmode
  573. #else
  574. mfctr r11
  575. LOAD_HANDLER(r10, slb_miss_realmode)
  576. mtctr r10
  577. bctr
  578. #endif
  579. EXC_VIRT_END(instruction_access_slb, 0x4480, 0x4500)
  580. TRAMP_KVM(PACA_EXSLB, 0x480)
  581. /* This handler is used by both 0x380 and 0x480 slb miss interrupts */
  582. EXC_COMMON_BEGIN(slb_miss_realmode)
  583. /*
  584. * r13 points to the PACA, r9 contains the saved CR,
  585. * r12 contain the saved SRR1, SRR0 is still ready for return
  586. * r3 has the faulting address
  587. * r9 - r13 are saved in paca->exslb.
  588. * r3 is saved in paca->slb_r3
  589. * cr6.eq is set for a D-SLB miss, clear for a I-SLB miss
  590. * We assume we aren't going to take any exceptions during this
  591. * procedure.
  592. */
  593. mflr r10
  594. #ifdef CONFIG_RELOCATABLE
  595. mtctr r11
  596. #endif
  597. stw r9,PACA_EXSLB+EX_CCR(r13) /* save CR in exc. frame */
  598. std r10,PACA_EXSLB+EX_LR(r13) /* save LR */
  599. std r3,PACA_EXSLB+EX_DAR(r13)
  600. crset 4*cr0+eq
  601. #ifdef CONFIG_PPC_STD_MMU_64
  602. BEGIN_MMU_FTR_SECTION
  603. bl slb_allocate_realmode
  604. END_MMU_FTR_SECTION_IFCLR(MMU_FTR_TYPE_RADIX)
  605. #endif
  606. ld r10,PACA_EXSLB+EX_LR(r13)
  607. ld r3,PACA_EXSLB+EX_R3(r13)
  608. lwz r9,PACA_EXSLB+EX_CCR(r13) /* get saved CR */
  609. mtlr r10
  610. beq 8f /* if bad address, make full stack frame */
  611. andi. r10,r12,MSR_RI /* check for unrecoverable exception */
  612. beq- 2f
  613. /* All done -- return from exception. */
  614. .machine push
  615. .machine "power4"
  616. mtcrf 0x80,r9
  617. mtcrf 0x02,r9 /* I/D indication is in cr6 */
  618. mtcrf 0x01,r9 /* slb_allocate uses cr0 and cr7 */
  619. .machine pop
  620. RESTORE_PPR_PACA(PACA_EXSLB, r9)
  621. ld r9,PACA_EXSLB+EX_R9(r13)
  622. ld r10,PACA_EXSLB+EX_R10(r13)
  623. ld r11,PACA_EXSLB+EX_R11(r13)
  624. ld r12,PACA_EXSLB+EX_R12(r13)
  625. ld r13,PACA_EXSLB+EX_R13(r13)
  626. rfid
  627. b . /* prevent speculative execution */
  628. 2: mfspr r11,SPRN_SRR0
  629. LOAD_HANDLER(r10,unrecov_slb)
  630. mtspr SPRN_SRR0,r10
  631. ld r10,PACAKMSR(r13)
  632. mtspr SPRN_SRR1,r10
  633. rfid
  634. b .
  635. 8: mfspr r11,SPRN_SRR0
  636. LOAD_HANDLER(r10,bad_addr_slb)
  637. mtspr SPRN_SRR0,r10
  638. ld r10,PACAKMSR(r13)
  639. mtspr SPRN_SRR1,r10
  640. rfid
  641. b .
  642. EXC_COMMON_BEGIN(unrecov_slb)
  643. EXCEPTION_PROLOG_COMMON(0x4100, PACA_EXSLB)
  644. RECONCILE_IRQ_STATE(r10, r11)
  645. bl save_nvgprs
  646. 1: addi r3,r1,STACK_FRAME_OVERHEAD
  647. bl unrecoverable_exception
  648. b 1b
  649. EXC_COMMON_BEGIN(bad_addr_slb)
  650. EXCEPTION_PROLOG_COMMON(0x380, PACA_EXSLB)
  651. RECONCILE_IRQ_STATE(r10, r11)
  652. ld r3, PACA_EXSLB+EX_DAR(r13)
  653. std r3, _DAR(r1)
  654. beq cr6, 2f
  655. li r10, 0x480 /* fix trap number for I-SLB miss */
  656. std r10, _TRAP(r1)
  657. 2: bl save_nvgprs
  658. addi r3, r1, STACK_FRAME_OVERHEAD
  659. bl slb_miss_bad_addr
  660. b ret_from_except
  661. EXC_REAL_BEGIN(hardware_interrupt, 0x500, 0x600)
  662. .globl hardware_interrupt_hv;
  663. hardware_interrupt_hv:
  664. BEGIN_FTR_SECTION
  665. _MASKABLE_EXCEPTION_PSERIES(0x500, hardware_interrupt_common,
  666. EXC_HV, SOFTEN_TEST_HV)
  667. do_kvm_H0x500:
  668. KVM_HANDLER(PACA_EXGEN, EXC_HV, 0x502)
  669. FTR_SECTION_ELSE
  670. _MASKABLE_EXCEPTION_PSERIES(0x500, hardware_interrupt_common,
  671. EXC_STD, SOFTEN_TEST_PR)
  672. do_kvm_0x500:
  673. KVM_HANDLER(PACA_EXGEN, EXC_STD, 0x500)
  674. ALT_FTR_SECTION_END_IFSET(CPU_FTR_HVMODE | CPU_FTR_ARCH_206)
  675. EXC_REAL_END(hardware_interrupt, 0x500, 0x600)
  676. EXC_VIRT_BEGIN(hardware_interrupt, 0x4500, 0x4600)
  677. .globl hardware_interrupt_relon_hv;
  678. hardware_interrupt_relon_hv:
  679. BEGIN_FTR_SECTION
  680. _MASKABLE_RELON_EXCEPTION_PSERIES(0x500, hardware_interrupt_common, EXC_HV, SOFTEN_TEST_HV)
  681. FTR_SECTION_ELSE
  682. _MASKABLE_RELON_EXCEPTION_PSERIES(0x500, hardware_interrupt_common, EXC_STD, SOFTEN_TEST_PR)
  683. ALT_FTR_SECTION_END_IFSET(CPU_FTR_HVMODE)
  684. EXC_VIRT_END(hardware_interrupt, 0x4500, 0x4600)
  685. EXC_COMMON_ASYNC(hardware_interrupt_common, 0x500, do_IRQ)
  686. EXC_REAL(alignment, 0x600, 0x700)
  687. EXC_VIRT(alignment, 0x4600, 0x4700, 0x600)
  688. TRAMP_KVM(PACA_EXGEN, 0x600)
  689. EXC_COMMON_BEGIN(alignment_common)
  690. mfspr r10,SPRN_DAR
  691. std r10,PACA_EXGEN+EX_DAR(r13)
  692. mfspr r10,SPRN_DSISR
  693. stw r10,PACA_EXGEN+EX_DSISR(r13)
  694. EXCEPTION_PROLOG_COMMON(0x600, PACA_EXGEN)
  695. ld r3,PACA_EXGEN+EX_DAR(r13)
  696. lwz r4,PACA_EXGEN+EX_DSISR(r13)
  697. std r3,_DAR(r1)
  698. std r4,_DSISR(r1)
  699. bl save_nvgprs
  700. RECONCILE_IRQ_STATE(r10, r11)
  701. addi r3,r1,STACK_FRAME_OVERHEAD
  702. bl alignment_exception
  703. b ret_from_except
  704. EXC_REAL(program_check, 0x700, 0x800)
  705. EXC_VIRT(program_check, 0x4700, 0x4800, 0x700)
  706. TRAMP_KVM(PACA_EXGEN, 0x700)
  707. EXC_COMMON_BEGIN(program_check_common)
  708. EXCEPTION_PROLOG_COMMON(0x700, PACA_EXGEN)
  709. bl save_nvgprs
  710. RECONCILE_IRQ_STATE(r10, r11)
  711. addi r3,r1,STACK_FRAME_OVERHEAD
  712. bl program_check_exception
  713. b ret_from_except
  714. EXC_REAL(fp_unavailable, 0x800, 0x900)
  715. EXC_VIRT(fp_unavailable, 0x4800, 0x4900, 0x800)
  716. TRAMP_KVM(PACA_EXGEN, 0x800)
  717. EXC_COMMON_BEGIN(fp_unavailable_common)
  718. EXCEPTION_PROLOG_COMMON(0x800, PACA_EXGEN)
  719. bne 1f /* if from user, just load it up */
  720. bl save_nvgprs
  721. RECONCILE_IRQ_STATE(r10, r11)
  722. addi r3,r1,STACK_FRAME_OVERHEAD
  723. bl kernel_fp_unavailable_exception
  724. BUG_OPCODE
  725. 1:
  726. #ifdef CONFIG_PPC_TRANSACTIONAL_MEM
  727. BEGIN_FTR_SECTION
  728. /* Test if 2 TM state bits are zero. If non-zero (ie. userspace was in
  729. * transaction), go do TM stuff
  730. */
  731. rldicl. r0, r12, (64-MSR_TS_LG), (64-2)
  732. bne- 2f
  733. END_FTR_SECTION_IFSET(CPU_FTR_TM)
  734. #endif
  735. bl load_up_fpu
  736. b fast_exception_return
  737. #ifdef CONFIG_PPC_TRANSACTIONAL_MEM
  738. 2: /* User process was in a transaction */
  739. bl save_nvgprs
  740. RECONCILE_IRQ_STATE(r10, r11)
  741. addi r3,r1,STACK_FRAME_OVERHEAD
  742. bl fp_unavailable_tm
  743. b ret_from_except
  744. #endif
  745. EXC_REAL_MASKABLE(decrementer, 0x900, 0x980)
  746. EXC_VIRT_MASKABLE(decrementer, 0x4900, 0x4980, 0x900)
  747. TRAMP_KVM(PACA_EXGEN, 0x900)
  748. EXC_COMMON_ASYNC(decrementer_common, 0x900, timer_interrupt)
  749. EXC_REAL_HV(hdecrementer, 0x980, 0xa00)
  750. EXC_VIRT_HV(hdecrementer, 0x4980, 0x4a00, 0x980)
  751. TRAMP_KVM_HV(PACA_EXGEN, 0x980)
  752. EXC_COMMON(hdecrementer_common, 0x980, hdec_interrupt)
  753. EXC_REAL_MASKABLE(doorbell_super, 0xa00, 0xb00)
  754. EXC_VIRT_MASKABLE(doorbell_super, 0x4a00, 0x4b00, 0xa00)
  755. TRAMP_KVM(PACA_EXGEN, 0xa00)
  756. #ifdef CONFIG_PPC_DOORBELL
  757. EXC_COMMON_ASYNC(doorbell_super_common, 0xa00, doorbell_exception)
  758. #else
  759. EXC_COMMON_ASYNC(doorbell_super_common, 0xa00, unknown_exception)
  760. #endif
  761. EXC_REAL(trap_0b, 0xb00, 0xc00)
  762. EXC_VIRT(trap_0b, 0x4b00, 0x4c00, 0xb00)
  763. TRAMP_KVM(PACA_EXGEN, 0xb00)
  764. EXC_COMMON(trap_0b_common, 0xb00, unknown_exception)
  765. #define LOAD_SYSCALL_HANDLER(reg) \
  766. __LOAD_HANDLER(reg, system_call_common)
  767. /* Syscall routine is used twice, in reloc-off and reloc-on paths */
  768. #define SYSCALL_PSERIES_1 \
  769. BEGIN_FTR_SECTION \
  770. cmpdi r0,0x1ebe ; \
  771. beq- 1f ; \
  772. END_FTR_SECTION_IFSET(CPU_FTR_REAL_LE) \
  773. mr r9,r13 ; \
  774. GET_PACA(r13) ; \
  775. mfspr r11,SPRN_SRR0 ; \
  776. 0:
  777. #define SYSCALL_PSERIES_2_RFID \
  778. mfspr r12,SPRN_SRR1 ; \
  779. LOAD_SYSCALL_HANDLER(r10) ; \
  780. mtspr SPRN_SRR0,r10 ; \
  781. ld r10,PACAKMSR(r13) ; \
  782. mtspr SPRN_SRR1,r10 ; \
  783. rfid ; \
  784. b . ; /* prevent speculative execution */
  785. #define SYSCALL_PSERIES_3 \
  786. /* Fast LE/BE switch system call */ \
  787. 1: mfspr r12,SPRN_SRR1 ; \
  788. xori r12,r12,MSR_LE ; \
  789. mtspr SPRN_SRR1,r12 ; \
  790. rfid ; /* return to userspace */ \
  791. b . ; /* prevent speculative execution */
  792. #if defined(CONFIG_RELOCATABLE)
  793. /*
  794. * We can't branch directly so we do it via the CTR which
  795. * is volatile across system calls.
  796. */
  797. #define SYSCALL_PSERIES_2_DIRECT \
  798. LOAD_SYSCALL_HANDLER(r12) ; \
  799. mtctr r12 ; \
  800. mfspr r12,SPRN_SRR1 ; \
  801. li r10,MSR_RI ; \
  802. mtmsrd r10,1 ; \
  803. bctr ;
  804. #else
  805. /* We can branch directly */
  806. #define SYSCALL_PSERIES_2_DIRECT \
  807. mfspr r12,SPRN_SRR1 ; \
  808. li r10,MSR_RI ; \
  809. mtmsrd r10,1 ; /* Set RI (EE=0) */ \
  810. b system_call_common ;
  811. #endif
  812. EXC_REAL_BEGIN(system_call, 0xc00, 0xd00)
  813. /*
  814. * If CONFIG_KVM_BOOK3S_64_HANDLER is set, save the PPR (on systems
  815. * that support it) before changing to HMT_MEDIUM. That allows the KVM
  816. * code to save that value into the guest state (it is the guest's PPR
  817. * value). Otherwise just change to HMT_MEDIUM as userspace has
  818. * already saved the PPR.
  819. */
  820. #ifdef CONFIG_KVM_BOOK3S_64_HANDLER
  821. SET_SCRATCH0(r13)
  822. GET_PACA(r13)
  823. std r9,PACA_EXGEN+EX_R9(r13)
  824. OPT_GET_SPR(r9, SPRN_PPR, CPU_FTR_HAS_PPR);
  825. HMT_MEDIUM;
  826. std r10,PACA_EXGEN+EX_R10(r13)
  827. OPT_SAVE_REG_TO_PACA(PACA_EXGEN+EX_PPR, r9, CPU_FTR_HAS_PPR);
  828. mfcr r9
  829. KVMTEST_PR(0xc00)
  830. GET_SCRATCH0(r13)
  831. #else
  832. HMT_MEDIUM;
  833. #endif
  834. SYSCALL_PSERIES_1
  835. SYSCALL_PSERIES_2_RFID
  836. SYSCALL_PSERIES_3
  837. EXC_REAL_END(system_call, 0xc00, 0xd00)
  838. EXC_VIRT_BEGIN(system_call, 0x4c00, 0x4d00)
  839. HMT_MEDIUM
  840. SYSCALL_PSERIES_1
  841. SYSCALL_PSERIES_2_DIRECT
  842. SYSCALL_PSERIES_3
  843. EXC_VIRT_END(system_call, 0x4c00, 0x4d00)
  844. TRAMP_KVM(PACA_EXGEN, 0xc00)
  845. EXC_REAL(single_step, 0xd00, 0xe00)
  846. EXC_VIRT(single_step, 0x4d00, 0x4e00, 0xd00)
  847. TRAMP_KVM(PACA_EXGEN, 0xd00)
  848. EXC_COMMON(single_step_common, 0xd00, single_step_exception)
  849. EXC_REAL_OOL_HV(h_data_storage, 0xe00, 0xe20)
  850. EXC_VIRT_NONE(0x4e00, 0x4e20)
  851. TRAMP_KVM_HV_SKIP(PACA_EXGEN, 0xe00)
  852. EXC_COMMON_BEGIN(h_data_storage_common)
  853. mfspr r10,SPRN_HDAR
  854. std r10,PACA_EXGEN+EX_DAR(r13)
  855. mfspr r10,SPRN_HDSISR
  856. stw r10,PACA_EXGEN+EX_DSISR(r13)
  857. EXCEPTION_PROLOG_COMMON(0xe00, PACA_EXGEN)
  858. bl save_nvgprs
  859. RECONCILE_IRQ_STATE(r10, r11)
  860. addi r3,r1,STACK_FRAME_OVERHEAD
  861. bl unknown_exception
  862. b ret_from_except
  863. EXC_REAL_OOL_HV(h_instr_storage, 0xe20, 0xe40)
  864. EXC_VIRT_NONE(0x4e20, 0x4e40)
  865. TRAMP_KVM_HV(PACA_EXGEN, 0xe20)
  866. EXC_COMMON(h_instr_storage_common, 0xe20, unknown_exception)
  867. EXC_REAL_OOL_HV(emulation_assist, 0xe40, 0xe60)
  868. EXC_VIRT_OOL_HV(emulation_assist, 0x4e40, 0x4e60, 0xe40)
  869. TRAMP_KVM_HV(PACA_EXGEN, 0xe40)
  870. EXC_COMMON(emulation_assist_common, 0xe40, emulation_assist_interrupt)
  871. /*
  872. * hmi_exception trampoline is a special case. It jumps to hmi_exception_early
  873. * first, and then eventaully from there to the trampoline to get into virtual
  874. * mode.
  875. */
  876. __EXC_REAL_OOL_HV_DIRECT(hmi_exception, 0xe60, 0xe80, hmi_exception_early)
  877. __TRAMP_REAL_REAL_OOL_MASKABLE_HV(hmi_exception, 0xe60)
  878. EXC_VIRT_NONE(0x4e60, 0x4e80)
  879. TRAMP_KVM_HV(PACA_EXGEN, 0xe60)
  880. TRAMP_REAL_BEGIN(hmi_exception_early)
  881. EXCEPTION_PROLOG_1(PACA_EXGEN, KVMTEST_HV, 0xe60)
  882. mr r10,r1 /* Save r1 */
  883. ld r1,PACAEMERGSP(r13) /* Use emergency stack */
  884. subi r1,r1,INT_FRAME_SIZE /* alloc stack frame */
  885. std r9,_CCR(r1) /* save CR in stackframe */
  886. mfspr r11,SPRN_HSRR0 /* Save HSRR0 */
  887. std r11,_NIP(r1) /* save HSRR0 in stackframe */
  888. mfspr r12,SPRN_HSRR1 /* Save SRR1 */
  889. std r12,_MSR(r1) /* save SRR1 in stackframe */
  890. std r10,0(r1) /* make stack chain pointer */
  891. std r0,GPR0(r1) /* save r0 in stackframe */
  892. std r10,GPR1(r1) /* save r1 in stackframe */
  893. EXCEPTION_PROLOG_COMMON_2(PACA_EXGEN)
  894. EXCEPTION_PROLOG_COMMON_3(0xe60)
  895. addi r3,r1,STACK_FRAME_OVERHEAD
  896. bl hmi_exception_realmode
  897. /* Windup the stack. */
  898. /* Move original HSRR0 and HSRR1 into the respective regs */
  899. ld r9,_MSR(r1)
  900. mtspr SPRN_HSRR1,r9
  901. ld r3,_NIP(r1)
  902. mtspr SPRN_HSRR0,r3
  903. ld r9,_CTR(r1)
  904. mtctr r9
  905. ld r9,_XER(r1)
  906. mtxer r9
  907. ld r9,_LINK(r1)
  908. mtlr r9
  909. REST_GPR(0, r1)
  910. REST_8GPRS(2, r1)
  911. REST_GPR(10, r1)
  912. ld r11,_CCR(r1)
  913. mtcr r11
  914. REST_GPR(11, r1)
  915. REST_2GPRS(12, r1)
  916. /* restore original r1. */
  917. ld r1,GPR1(r1)
  918. /*
  919. * Go to virtual mode and pull the HMI event information from
  920. * firmware.
  921. */
  922. .globl hmi_exception_after_realmode
  923. hmi_exception_after_realmode:
  924. SET_SCRATCH0(r13)
  925. EXCEPTION_PROLOG_0(PACA_EXGEN)
  926. b tramp_real_hmi_exception
  927. EXC_COMMON_ASYNC(hmi_exception_common, 0xe60, handle_hmi_exception)
  928. EXC_REAL_OOL_MASKABLE_HV(h_doorbell, 0xe80, 0xea0)
  929. EXC_VIRT_OOL_MASKABLE_HV(h_doorbell, 0x4e80, 0x4ea0, 0xe80)
  930. TRAMP_KVM_HV(PACA_EXGEN, 0xe80)
  931. #ifdef CONFIG_PPC_DOORBELL
  932. EXC_COMMON_ASYNC(h_doorbell_common, 0xe80, doorbell_exception)
  933. #else
  934. EXC_COMMON_ASYNC(h_doorbell_common, 0xe80, unknown_exception)
  935. #endif
  936. EXC_REAL_OOL_MASKABLE_HV(h_virt_irq, 0xea0, 0xec0)
  937. EXC_VIRT_OOL_MASKABLE_HV(h_virt_irq, 0x4ea0, 0x4ec0, 0xea0)
  938. TRAMP_KVM_HV(PACA_EXGEN, 0xea0)
  939. EXC_COMMON_ASYNC(h_virt_irq_common, 0xea0, do_IRQ)
  940. EXC_REAL_NONE(0xec0, 0xf00)
  941. EXC_VIRT_NONE(0x4ec0, 0x4f00)
  942. EXC_REAL_OOL(performance_monitor, 0xf00, 0xf20)
  943. EXC_VIRT_OOL(performance_monitor, 0x4f00, 0x4f20, 0xf00)
  944. TRAMP_KVM(PACA_EXGEN, 0xf00)
  945. EXC_COMMON_ASYNC(performance_monitor_common, 0xf00, performance_monitor_exception)
  946. EXC_REAL_OOL(altivec_unavailable, 0xf20, 0xf40)
  947. EXC_VIRT_OOL(altivec_unavailable, 0x4f20, 0x4f40, 0xf20)
  948. TRAMP_KVM(PACA_EXGEN, 0xf20)
  949. EXC_COMMON_BEGIN(altivec_unavailable_common)
  950. EXCEPTION_PROLOG_COMMON(0xf20, PACA_EXGEN)
  951. #ifdef CONFIG_ALTIVEC
  952. BEGIN_FTR_SECTION
  953. beq 1f
  954. #ifdef CONFIG_PPC_TRANSACTIONAL_MEM
  955. BEGIN_FTR_SECTION_NESTED(69)
  956. /* Test if 2 TM state bits are zero. If non-zero (ie. userspace was in
  957. * transaction), go do TM stuff
  958. */
  959. rldicl. r0, r12, (64-MSR_TS_LG), (64-2)
  960. bne- 2f
  961. END_FTR_SECTION_NESTED(CPU_FTR_TM, CPU_FTR_TM, 69)
  962. #endif
  963. bl load_up_altivec
  964. b fast_exception_return
  965. #ifdef CONFIG_PPC_TRANSACTIONAL_MEM
  966. 2: /* User process was in a transaction */
  967. bl save_nvgprs
  968. RECONCILE_IRQ_STATE(r10, r11)
  969. addi r3,r1,STACK_FRAME_OVERHEAD
  970. bl altivec_unavailable_tm
  971. b ret_from_except
  972. #endif
  973. 1:
  974. END_FTR_SECTION_IFSET(CPU_FTR_ALTIVEC)
  975. #endif
  976. bl save_nvgprs
  977. RECONCILE_IRQ_STATE(r10, r11)
  978. addi r3,r1,STACK_FRAME_OVERHEAD
  979. bl altivec_unavailable_exception
  980. b ret_from_except
  981. EXC_REAL_OOL(vsx_unavailable, 0xf40, 0xf60)
  982. EXC_VIRT_OOL(vsx_unavailable, 0x4f40, 0x4f60, 0xf40)
  983. TRAMP_KVM(PACA_EXGEN, 0xf40)
  984. EXC_COMMON_BEGIN(vsx_unavailable_common)
  985. EXCEPTION_PROLOG_COMMON(0xf40, PACA_EXGEN)
  986. #ifdef CONFIG_VSX
  987. BEGIN_FTR_SECTION
  988. beq 1f
  989. #ifdef CONFIG_PPC_TRANSACTIONAL_MEM
  990. BEGIN_FTR_SECTION_NESTED(69)
  991. /* Test if 2 TM state bits are zero. If non-zero (ie. userspace was in
  992. * transaction), go do TM stuff
  993. */
  994. rldicl. r0, r12, (64-MSR_TS_LG), (64-2)
  995. bne- 2f
  996. END_FTR_SECTION_NESTED(CPU_FTR_TM, CPU_FTR_TM, 69)
  997. #endif
  998. b load_up_vsx
  999. #ifdef CONFIG_PPC_TRANSACTIONAL_MEM
  1000. 2: /* User process was in a transaction */
  1001. bl save_nvgprs
  1002. RECONCILE_IRQ_STATE(r10, r11)
  1003. addi r3,r1,STACK_FRAME_OVERHEAD
  1004. bl vsx_unavailable_tm
  1005. b ret_from_except
  1006. #endif
  1007. 1:
  1008. END_FTR_SECTION_IFSET(CPU_FTR_VSX)
  1009. #endif
  1010. bl save_nvgprs
  1011. RECONCILE_IRQ_STATE(r10, r11)
  1012. addi r3,r1,STACK_FRAME_OVERHEAD
  1013. bl vsx_unavailable_exception
  1014. b ret_from_except
  1015. EXC_REAL_OOL(facility_unavailable, 0xf60, 0xf80)
  1016. EXC_VIRT_OOL(facility_unavailable, 0x4f60, 0x4f80, 0xf60)
  1017. TRAMP_KVM(PACA_EXGEN, 0xf60)
  1018. EXC_COMMON(facility_unavailable_common, 0xf60, facility_unavailable_exception)
  1019. EXC_REAL_OOL_HV(h_facility_unavailable, 0xf80, 0xfa0)
  1020. EXC_VIRT_OOL_HV(h_facility_unavailable, 0x4f80, 0x4fa0, 0xf80)
  1021. TRAMP_KVM_HV(PACA_EXGEN, 0xf80)
  1022. EXC_COMMON(h_facility_unavailable_common, 0xf80, facility_unavailable_exception)
  1023. EXC_REAL_NONE(0xfa0, 0x1200)
  1024. EXC_VIRT_NONE(0x4fa0, 0x5200)
  1025. #ifdef CONFIG_CBE_RAS
  1026. EXC_REAL_HV(cbe_system_error, 0x1200, 0x1300)
  1027. EXC_VIRT_NONE(0x5200, 0x5300)
  1028. TRAMP_KVM_HV_SKIP(PACA_EXGEN, 0x1200)
  1029. EXC_COMMON(cbe_system_error_common, 0x1200, cbe_system_error_exception)
  1030. #else /* CONFIG_CBE_RAS */
  1031. EXC_REAL_NONE(0x1200, 0x1300)
  1032. EXC_VIRT_NONE(0x5200, 0x5300)
  1033. #endif
  1034. EXC_REAL(instruction_breakpoint, 0x1300, 0x1400)
  1035. EXC_VIRT(instruction_breakpoint, 0x5300, 0x5400, 0x1300)
  1036. TRAMP_KVM_SKIP(PACA_EXGEN, 0x1300)
  1037. EXC_COMMON(instruction_breakpoint_common, 0x1300, instruction_breakpoint_exception)
  1038. EXC_REAL_NONE(0x1400, 0x1500)
  1039. EXC_VIRT_NONE(0x5400, 0x5500)
  1040. EXC_REAL_BEGIN(denorm_exception_hv, 0x1500, 0x1600)
  1041. mtspr SPRN_SPRG_HSCRATCH0,r13
  1042. EXCEPTION_PROLOG_0(PACA_EXGEN)
  1043. EXCEPTION_PROLOG_1(PACA_EXGEN, NOTEST, 0x1500)
  1044. #ifdef CONFIG_PPC_DENORMALISATION
  1045. mfspr r10,SPRN_HSRR1
  1046. mfspr r11,SPRN_HSRR0 /* save HSRR0 */
  1047. andis. r10,r10,(HSRR1_DENORM)@h /* denorm? */
  1048. addi r11,r11,-4 /* HSRR0 is next instruction */
  1049. bne+ denorm_assist
  1050. #endif
  1051. KVMTEST_PR(0x1500)
  1052. EXCEPTION_PROLOG_PSERIES_1(denorm_common, EXC_HV)
  1053. EXC_REAL_END(denorm_exception_hv, 0x1500, 0x1600)
  1054. #ifdef CONFIG_PPC_DENORMALISATION
  1055. EXC_VIRT_BEGIN(denorm_exception, 0x5500, 0x5600)
  1056. b exc_real_0x1500_denorm_exception_hv
  1057. EXC_VIRT_END(denorm_exception, 0x5500, 0x5600)
  1058. #else
  1059. EXC_VIRT_NONE(0x5500, 0x5600)
  1060. #endif
  1061. TRAMP_KVM_SKIP(PACA_EXGEN, 0x1500)
  1062. #ifdef CONFIG_PPC_DENORMALISATION
  1063. TRAMP_REAL_BEGIN(denorm_assist)
  1064. BEGIN_FTR_SECTION
  1065. /*
  1066. * To denormalise we need to move a copy of the register to itself.
  1067. * For POWER6 do that here for all FP regs.
  1068. */
  1069. mfmsr r10
  1070. ori r10,r10,(MSR_FP|MSR_FE0|MSR_FE1)
  1071. xori r10,r10,(MSR_FE0|MSR_FE1)
  1072. mtmsrd r10
  1073. sync
  1074. #define FMR2(n) fmr (n), (n) ; fmr n+1, n+1
  1075. #define FMR4(n) FMR2(n) ; FMR2(n+2)
  1076. #define FMR8(n) FMR4(n) ; FMR4(n+4)
  1077. #define FMR16(n) FMR8(n) ; FMR8(n+8)
  1078. #define FMR32(n) FMR16(n) ; FMR16(n+16)
  1079. FMR32(0)
  1080. FTR_SECTION_ELSE
  1081. /*
  1082. * To denormalise we need to move a copy of the register to itself.
  1083. * For POWER7 do that here for the first 32 VSX registers only.
  1084. */
  1085. mfmsr r10
  1086. oris r10,r10,MSR_VSX@h
  1087. mtmsrd r10
  1088. sync
  1089. #define XVCPSGNDP2(n) XVCPSGNDP(n,n,n) ; XVCPSGNDP(n+1,n+1,n+1)
  1090. #define XVCPSGNDP4(n) XVCPSGNDP2(n) ; XVCPSGNDP2(n+2)
  1091. #define XVCPSGNDP8(n) XVCPSGNDP4(n) ; XVCPSGNDP4(n+4)
  1092. #define XVCPSGNDP16(n) XVCPSGNDP8(n) ; XVCPSGNDP8(n+8)
  1093. #define XVCPSGNDP32(n) XVCPSGNDP16(n) ; XVCPSGNDP16(n+16)
  1094. XVCPSGNDP32(0)
  1095. ALT_FTR_SECTION_END_IFCLR(CPU_FTR_ARCH_206)
  1096. BEGIN_FTR_SECTION
  1097. b denorm_done
  1098. END_FTR_SECTION_IFCLR(CPU_FTR_ARCH_207S)
  1099. /*
  1100. * To denormalise we need to move a copy of the register to itself.
  1101. * For POWER8 we need to do that for all 64 VSX registers
  1102. */
  1103. XVCPSGNDP32(32)
  1104. denorm_done:
  1105. mtspr SPRN_HSRR0,r11
  1106. mtcrf 0x80,r9
  1107. ld r9,PACA_EXGEN+EX_R9(r13)
  1108. RESTORE_PPR_PACA(PACA_EXGEN, r10)
  1109. BEGIN_FTR_SECTION
  1110. ld r10,PACA_EXGEN+EX_CFAR(r13)
  1111. mtspr SPRN_CFAR,r10
  1112. END_FTR_SECTION_IFSET(CPU_FTR_CFAR)
  1113. ld r10,PACA_EXGEN+EX_R10(r13)
  1114. ld r11,PACA_EXGEN+EX_R11(r13)
  1115. ld r12,PACA_EXGEN+EX_R12(r13)
  1116. ld r13,PACA_EXGEN+EX_R13(r13)
  1117. HRFID
  1118. b .
  1119. #endif
  1120. EXC_COMMON_HV(denorm_common, 0x1500, unknown_exception)
  1121. #ifdef CONFIG_CBE_RAS
  1122. EXC_REAL_HV(cbe_maintenance, 0x1600, 0x1700)
  1123. EXC_VIRT_NONE(0x5600, 0x5700)
  1124. TRAMP_KVM_HV_SKIP(PACA_EXGEN, 0x1600)
  1125. EXC_COMMON(cbe_maintenance_common, 0x1600, cbe_maintenance_exception)
  1126. #else /* CONFIG_CBE_RAS */
  1127. EXC_REAL_NONE(0x1600, 0x1700)
  1128. EXC_VIRT_NONE(0x5600, 0x5700)
  1129. #endif
  1130. EXC_REAL(altivec_assist, 0x1700, 0x1800)
  1131. EXC_VIRT(altivec_assist, 0x5700, 0x5800, 0x1700)
  1132. TRAMP_KVM(PACA_EXGEN, 0x1700)
  1133. #ifdef CONFIG_ALTIVEC
  1134. EXC_COMMON(altivec_assist_common, 0x1700, altivec_assist_exception)
  1135. #else
  1136. EXC_COMMON(altivec_assist_common, 0x1700, unknown_exception)
  1137. #endif
  1138. #ifdef CONFIG_CBE_RAS
  1139. EXC_REAL_HV(cbe_thermal, 0x1800, 0x1900)
  1140. EXC_VIRT_NONE(0x5800, 0x5900)
  1141. TRAMP_KVM_HV_SKIP(PACA_EXGEN, 0x1800)
  1142. EXC_COMMON(cbe_thermal_common, 0x1800, cbe_thermal_exception)
  1143. #else /* CONFIG_CBE_RAS */
  1144. EXC_REAL_NONE(0x1800, 0x1900)
  1145. EXC_VIRT_NONE(0x5800, 0x5900)
  1146. #endif
  1147. /*
  1148. * An interrupt came in while soft-disabled. We set paca->irq_happened, then:
  1149. * - If it was a decrementer interrupt, we bump the dec to max and and return.
  1150. * - If it was a doorbell we return immediately since doorbells are edge
  1151. * triggered and won't automatically refire.
  1152. * - If it was a HMI we return immediately since we handled it in realmode
  1153. * and it won't refire.
  1154. * - else we hard disable and return.
  1155. * This is called with r10 containing the value to OR to the paca field.
  1156. */
  1157. #define MASKED_INTERRUPT(_H) \
  1158. masked_##_H##interrupt: \
  1159. std r11,PACA_EXGEN+EX_R11(r13); \
  1160. lbz r11,PACAIRQHAPPENED(r13); \
  1161. or r11,r11,r10; \
  1162. stb r11,PACAIRQHAPPENED(r13); \
  1163. cmpwi r10,PACA_IRQ_DEC; \
  1164. bne 1f; \
  1165. lis r10,0x7fff; \
  1166. ori r10,r10,0xffff; \
  1167. mtspr SPRN_DEC,r10; \
  1168. b 2f; \
  1169. 1: cmpwi r10,PACA_IRQ_DBELL; \
  1170. beq 2f; \
  1171. cmpwi r10,PACA_IRQ_HMI; \
  1172. beq 2f; \
  1173. mfspr r10,SPRN_##_H##SRR1; \
  1174. rldicl r10,r10,48,1; /* clear MSR_EE */ \
  1175. rotldi r10,r10,16; \
  1176. mtspr SPRN_##_H##SRR1,r10; \
  1177. 2: mtcrf 0x80,r9; \
  1178. ld r9,PACA_EXGEN+EX_R9(r13); \
  1179. ld r10,PACA_EXGEN+EX_R10(r13); \
  1180. ld r11,PACA_EXGEN+EX_R11(r13); \
  1181. GET_SCRATCH0(r13); \
  1182. ##_H##rfid; \
  1183. b .
  1184. /*
  1185. * Real mode exceptions actually use this too, but alternate
  1186. * instruction code patches (which end up in the common .text area)
  1187. * cannot reach these if they are put there.
  1188. */
  1189. USE_FIXED_SECTION(virt_trampolines)
  1190. MASKED_INTERRUPT()
  1191. MASKED_INTERRUPT(H)
  1192. #ifdef CONFIG_KVM_BOOK3S_64_HANDLER
  1193. TRAMP_REAL_BEGIN(kvmppc_skip_interrupt)
  1194. /*
  1195. * Here all GPRs are unchanged from when the interrupt happened
  1196. * except for r13, which is saved in SPRG_SCRATCH0.
  1197. */
  1198. mfspr r13, SPRN_SRR0
  1199. addi r13, r13, 4
  1200. mtspr SPRN_SRR0, r13
  1201. GET_SCRATCH0(r13)
  1202. rfid
  1203. b .
  1204. TRAMP_REAL_BEGIN(kvmppc_skip_Hinterrupt)
  1205. /*
  1206. * Here all GPRs are unchanged from when the interrupt happened
  1207. * except for r13, which is saved in SPRG_SCRATCH0.
  1208. */
  1209. mfspr r13, SPRN_HSRR0
  1210. addi r13, r13, 4
  1211. mtspr SPRN_HSRR0, r13
  1212. GET_SCRATCH0(r13)
  1213. hrfid
  1214. b .
  1215. #endif
  1216. /*
  1217. * Ensure that any handlers that get invoked from the exception prologs
  1218. * above are below the first 64KB (0x10000) of the kernel image because
  1219. * the prologs assemble the addresses of these handlers using the
  1220. * LOAD_HANDLER macro, which uses an ori instruction.
  1221. */
  1222. /*** Common interrupt handlers ***/
  1223. /*
  1224. * Relocation-on interrupts: A subset of the interrupts can be delivered
  1225. * with IR=1/DR=1, if AIL==2 and MSR.HV won't be changed by delivering
  1226. * it. Addresses are the same as the original interrupt addresses, but
  1227. * offset by 0xc000000000004000.
  1228. * It's impossible to receive interrupts below 0x300 via this mechanism.
  1229. * KVM: None of these traps are from the guest ; anything that escalated
  1230. * to HV=1 from HV=0 is delivered via real mode handlers.
  1231. */
  1232. /*
  1233. * This uses the standard macro, since the original 0x300 vector
  1234. * only has extra guff for STAB-based processors -- which never
  1235. * come here.
  1236. */
  1237. EXC_COMMON_BEGIN(ppc64_runlatch_on_trampoline)
  1238. b __ppc64_runlatch_on
  1239. USE_FIXED_SECTION(virt_trampolines)
  1240. /*
  1241. * The __end_interrupts marker must be past the out-of-line (OOL)
  1242. * handlers, so that they are copied to real address 0x100 when running
  1243. * a relocatable kernel. This ensures they can be reached from the short
  1244. * trampoline handlers (like 0x4f00, 0x4f20, etc.) which branch
  1245. * directly, without using LOAD_HANDLER().
  1246. */
  1247. .align 7
  1248. .globl __end_interrupts
  1249. __end_interrupts:
  1250. DEFINE_FIXED_SYMBOL(__end_interrupts)
  1251. #ifdef CONFIG_PPC_970_NAP
  1252. EXC_COMMON_BEGIN(power4_fixup_nap)
  1253. andc r9,r9,r10
  1254. std r9,TI_LOCAL_FLAGS(r11)
  1255. ld r10,_LINK(r1) /* make idle task do the */
  1256. std r10,_NIP(r1) /* equivalent of a blr */
  1257. blr
  1258. #endif
  1259. CLOSE_FIXED_SECTION(real_vectors);
  1260. CLOSE_FIXED_SECTION(real_trampolines);
  1261. CLOSE_FIXED_SECTION(virt_vectors);
  1262. CLOSE_FIXED_SECTION(virt_trampolines);
  1263. USE_TEXT_SECTION()
  1264. /*
  1265. * Hash table stuff
  1266. */
  1267. .balign IFETCH_ALIGN_BYTES
  1268. do_hash_page:
  1269. #ifdef CONFIG_PPC_STD_MMU_64
  1270. andis. r0,r4,0xa410 /* weird error? */
  1271. bne- handle_page_fault /* if not, try to insert a HPTE */
  1272. andis. r0,r4,DSISR_DABRMATCH@h
  1273. bne- handle_dabr_fault
  1274. CURRENT_THREAD_INFO(r11, r1)
  1275. lwz r0,TI_PREEMPT(r11) /* If we're in an "NMI" */
  1276. andis. r0,r0,NMI_MASK@h /* (i.e. an irq when soft-disabled) */
  1277. bne 77f /* then don't call hash_page now */
  1278. /*
  1279. * r3 contains the faulting address
  1280. * r4 msr
  1281. * r5 contains the trap number
  1282. * r6 contains dsisr
  1283. *
  1284. * at return r3 = 0 for success, 1 for page fault, negative for error
  1285. */
  1286. mr r4,r12
  1287. ld r6,_DSISR(r1)
  1288. bl __hash_page /* build HPTE if possible */
  1289. cmpdi r3,0 /* see if __hash_page succeeded */
  1290. /* Success */
  1291. beq fast_exc_return_irq /* Return from exception on success */
  1292. /* Error */
  1293. blt- 13f
  1294. #endif /* CONFIG_PPC_STD_MMU_64 */
  1295. /* Here we have a page fault that hash_page can't handle. */
  1296. handle_page_fault:
  1297. 11: ld r4,_DAR(r1)
  1298. ld r5,_DSISR(r1)
  1299. addi r3,r1,STACK_FRAME_OVERHEAD
  1300. bl do_page_fault
  1301. cmpdi r3,0
  1302. beq+ 12f
  1303. bl save_nvgprs
  1304. mr r5,r3
  1305. addi r3,r1,STACK_FRAME_OVERHEAD
  1306. lwz r4,_DAR(r1)
  1307. bl bad_page_fault
  1308. b ret_from_except
  1309. /* We have a data breakpoint exception - handle it */
  1310. handle_dabr_fault:
  1311. bl save_nvgprs
  1312. ld r4,_DAR(r1)
  1313. ld r5,_DSISR(r1)
  1314. addi r3,r1,STACK_FRAME_OVERHEAD
  1315. bl do_break
  1316. 12: b ret_from_except_lite
  1317. #ifdef CONFIG_PPC_STD_MMU_64
  1318. /* We have a page fault that hash_page could handle but HV refused
  1319. * the PTE insertion
  1320. */
  1321. 13: bl save_nvgprs
  1322. mr r5,r3
  1323. addi r3,r1,STACK_FRAME_OVERHEAD
  1324. ld r4,_DAR(r1)
  1325. bl low_hash_fault
  1326. b ret_from_except
  1327. #endif
  1328. /*
  1329. * We come here as a result of a DSI at a point where we don't want
  1330. * to call hash_page, such as when we are accessing memory (possibly
  1331. * user memory) inside a PMU interrupt that occurred while interrupts
  1332. * were soft-disabled. We want to invoke the exception handler for
  1333. * the access, or panic if there isn't a handler.
  1334. */
  1335. 77: bl save_nvgprs
  1336. mr r4,r3
  1337. addi r3,r1,STACK_FRAME_OVERHEAD
  1338. li r5,SIGSEGV
  1339. bl bad_page_fault
  1340. b ret_from_except
  1341. /*
  1342. * Here we have detected that the kernel stack pointer is bad.
  1343. * R9 contains the saved CR, r13 points to the paca,
  1344. * r10 contains the (bad) kernel stack pointer,
  1345. * r11 and r12 contain the saved SRR0 and SRR1.
  1346. * We switch to using an emergency stack, save the registers there,
  1347. * and call kernel_bad_stack(), which panics.
  1348. */
  1349. bad_stack:
  1350. ld r1,PACAEMERGSP(r13)
  1351. subi r1,r1,64+INT_FRAME_SIZE
  1352. std r9,_CCR(r1)
  1353. std r10,GPR1(r1)
  1354. std r11,_NIP(r1)
  1355. std r12,_MSR(r1)
  1356. mfspr r11,SPRN_DAR
  1357. mfspr r12,SPRN_DSISR
  1358. std r11,_DAR(r1)
  1359. std r12,_DSISR(r1)
  1360. mflr r10
  1361. mfctr r11
  1362. mfxer r12
  1363. std r10,_LINK(r1)
  1364. std r11,_CTR(r1)
  1365. std r12,_XER(r1)
  1366. SAVE_GPR(0,r1)
  1367. SAVE_GPR(2,r1)
  1368. ld r10,EX_R3(r3)
  1369. std r10,GPR3(r1)
  1370. SAVE_GPR(4,r1)
  1371. SAVE_4GPRS(5,r1)
  1372. ld r9,EX_R9(r3)
  1373. ld r10,EX_R10(r3)
  1374. SAVE_2GPRS(9,r1)
  1375. ld r9,EX_R11(r3)
  1376. ld r10,EX_R12(r3)
  1377. ld r11,EX_R13(r3)
  1378. std r9,GPR11(r1)
  1379. std r10,GPR12(r1)
  1380. std r11,GPR13(r1)
  1381. BEGIN_FTR_SECTION
  1382. ld r10,EX_CFAR(r3)
  1383. std r10,ORIG_GPR3(r1)
  1384. END_FTR_SECTION_IFSET(CPU_FTR_CFAR)
  1385. SAVE_8GPRS(14,r1)
  1386. SAVE_10GPRS(22,r1)
  1387. lhz r12,PACA_TRAP_SAVE(r13)
  1388. std r12,_TRAP(r1)
  1389. addi r11,r1,INT_FRAME_SIZE
  1390. std r11,0(r1)
  1391. li r12,0
  1392. std r12,0(r11)
  1393. ld r2,PACATOC(r13)
  1394. ld r11,exception_marker@toc(r2)
  1395. std r12,RESULT(r1)
  1396. std r11,STACK_FRAME_OVERHEAD-16(r1)
  1397. 1: addi r3,r1,STACK_FRAME_OVERHEAD
  1398. bl kernel_bad_stack
  1399. b 1b
  1400. /*
  1401. * Called from arch_local_irq_enable when an interrupt needs
  1402. * to be resent. r3 contains 0x500, 0x900, 0xa00 or 0xe80 to indicate
  1403. * which kind of interrupt. MSR:EE is already off. We generate a
  1404. * stackframe like if a real interrupt had happened.
  1405. *
  1406. * Note: While MSR:EE is off, we need to make sure that _MSR
  1407. * in the generated frame has EE set to 1 or the exception
  1408. * handler will not properly re-enable them.
  1409. */
  1410. _GLOBAL(__replay_interrupt)
  1411. /* We are going to jump to the exception common code which
  1412. * will retrieve various register values from the PACA which
  1413. * we don't give a damn about, so we don't bother storing them.
  1414. */
  1415. mfmsr r12
  1416. mflr r11
  1417. mfcr r9
  1418. ori r12,r12,MSR_EE
  1419. cmpwi r3,0x900
  1420. beq decrementer_common
  1421. cmpwi r3,0x500
  1422. beq hardware_interrupt_common
  1423. BEGIN_FTR_SECTION
  1424. cmpwi r3,0xe80
  1425. beq h_doorbell_common
  1426. cmpwi r3,0xea0
  1427. beq h_virt_irq_common
  1428. cmpwi r3,0xe60
  1429. beq hmi_exception_common
  1430. FTR_SECTION_ELSE
  1431. cmpwi r3,0xa00
  1432. beq doorbell_super_common
  1433. ALT_FTR_SECTION_END_IFSET(CPU_FTR_HVMODE)
  1434. blr