15a0015d6SChris Zankel /* 25a0015d6SChris Zankel * arch/xtensa/kernel/traps.c 35a0015d6SChris Zankel * 45a0015d6SChris Zankel * Exception handling. 55a0015d6SChris Zankel * 65a0015d6SChris Zankel * Derived from code with the following copyrights: 75a0015d6SChris Zankel * Copyright (C) 1994 - 1999 by Ralf Baechle 85a0015d6SChris Zankel * Modified for R3000 by Paul M. Antoine, 1995, 1996 95a0015d6SChris Zankel * Complete output from die() by Ulf Carlsson, 1998 105a0015d6SChris Zankel * Copyright (C) 1999 Silicon Graphics, Inc. 115a0015d6SChris Zankel * 125a0015d6SChris Zankel * Essentially rewritten for the Xtensa architecture port. 135a0015d6SChris Zankel * 145a0015d6SChris Zankel * Copyright (C) 2001 - 2005 Tensilica Inc. 155a0015d6SChris Zankel * 165a0015d6SChris Zankel * Joe Taylor <joe@tensilica.com, joetylr@yahoo.com> 175a0015d6SChris Zankel * Chris Zankel <chris@zankel.net> 185a0015d6SChris Zankel * Marc Gauthier<marc@tensilica.com, marc@alumni.uwaterloo.ca> 195a0015d6SChris Zankel * Kevin Chea 205a0015d6SChris Zankel * 215a0015d6SChris Zankel * This file is subject to the terms and conditions of the GNU General Public 225a0015d6SChris Zankel * License. See the file "COPYING" in the main directory of this archive 235a0015d6SChris Zankel * for more details. 245a0015d6SChris Zankel */ 255a0015d6SChris Zankel 265a0015d6SChris Zankel #include <linux/kernel.h> 275a0015d6SChris Zankel #include <linux/sched.h> 285a0015d6SChris Zankel #include <linux/init.h> 295a0015d6SChris Zankel #include <linux/module.h> 305a0015d6SChris Zankel #include <linux/stringify.h> 315a0015d6SChris Zankel #include <linux/kallsyms.h> 325c888d53SNishanth Aravamudan #include <linux/delay.h> 335a891ed5SAlexey Dobriyan #include <linux/hardirq.h> 345a0015d6SChris Zankel 355a0015d6SChris Zankel #include <asm/ptrace.h> 365a0015d6SChris Zankel #include <asm/timex.h> 375a0015d6SChris Zankel #include <asm/uaccess.h> 385a0015d6SChris Zankel #include <asm/pgtable.h> 395a0015d6SChris Zankel #include <asm/processor.h> 402d6f82feSMax Filippov #include <asm/traps.h> 415a0015d6SChris Zankel 425a0015d6SChris Zankel #ifdef CONFIG_KGDB 435a0015d6SChris Zankel extern int gdb_enter; 445a0015d6SChris Zankel extern int return_from_debug_flag; 455a0015d6SChris Zankel #endif 465a0015d6SChris Zankel 475a0015d6SChris Zankel /* 485a0015d6SChris Zankel * Machine specific interrupt handlers 495a0015d6SChris Zankel */ 505a0015d6SChris Zankel 515a0015d6SChris Zankel extern void kernel_exception(void); 525a0015d6SChris Zankel extern void user_exception(void); 535a0015d6SChris Zankel 545a0015d6SChris Zankel extern void fast_syscall_kernel(void); 555a0015d6SChris Zankel extern void fast_syscall_user(void); 565a0015d6SChris Zankel extern void fast_alloca(void); 575a0015d6SChris Zankel extern void fast_unaligned(void); 585a0015d6SChris Zankel extern void fast_second_level_miss(void); 595a0015d6SChris Zankel extern void fast_store_prohibited(void); 605a0015d6SChris Zankel extern void fast_coprocessor(void); 615a0015d6SChris Zankel 625a0015d6SChris Zankel extern void do_illegal_instruction (struct pt_regs*); 635a0015d6SChris Zankel extern void do_interrupt (struct pt_regs*); 645a0015d6SChris Zankel extern void do_unaligned_user (struct pt_regs*); 655a0015d6SChris Zankel extern void do_multihit (struct pt_regs*, unsigned long); 665a0015d6SChris Zankel extern void do_page_fault (struct pt_regs*, unsigned long); 675a0015d6SChris Zankel extern void do_debug (struct pt_regs*); 685a0015d6SChris Zankel extern void system_call (struct pt_regs*); 695a0015d6SChris Zankel 705a0015d6SChris Zankel /* 715a0015d6SChris Zankel * The vector table must be preceded by a save area (which 725a0015d6SChris Zankel * implies it must be in RAM, unless one places RAM immediately 735a0015d6SChris Zankel * before a ROM and puts the vector at the start of the ROM (!)) 745a0015d6SChris Zankel */ 755a0015d6SChris Zankel 765a0015d6SChris Zankel #define KRNL 0x01 775a0015d6SChris Zankel #define USER 0x02 785a0015d6SChris Zankel 795a0015d6SChris Zankel #define COPROCESSOR(x) \ 80173d6681SChris Zankel { EXCCAUSE_COPROCESSOR ## x ## _DISABLED, USER, fast_coprocessor } 815a0015d6SChris Zankel 825a0015d6SChris Zankel typedef struct { 835a0015d6SChris Zankel int cause; 845a0015d6SChris Zankel int fast; 855a0015d6SChris Zankel void* handler; 865a0015d6SChris Zankel } dispatch_init_table_t; 875a0015d6SChris Zankel 88b91dc336SChris Zankel static dispatch_init_table_t __initdata dispatch_init_table[] = { 895a0015d6SChris Zankel 90173d6681SChris Zankel { EXCCAUSE_ILLEGAL_INSTRUCTION, 0, do_illegal_instruction}, 91173d6681SChris Zankel { EXCCAUSE_SYSTEM_CALL, KRNL, fast_syscall_kernel }, 92173d6681SChris Zankel { EXCCAUSE_SYSTEM_CALL, USER, fast_syscall_user }, 93173d6681SChris Zankel { EXCCAUSE_SYSTEM_CALL, 0, system_call }, 94173d6681SChris Zankel /* EXCCAUSE_INSTRUCTION_FETCH unhandled */ 95173d6681SChris Zankel /* EXCCAUSE_LOAD_STORE_ERROR unhandled*/ 96173d6681SChris Zankel { EXCCAUSE_LEVEL1_INTERRUPT, 0, do_interrupt }, 97173d6681SChris Zankel { EXCCAUSE_ALLOCA, USER|KRNL, fast_alloca }, 98173d6681SChris Zankel /* EXCCAUSE_INTEGER_DIVIDE_BY_ZERO unhandled */ 99173d6681SChris Zankel /* EXCCAUSE_PRIVILEGED unhandled */ 1005a0015d6SChris Zankel #if XCHAL_UNALIGNED_LOAD_EXCEPTION || XCHAL_UNALIGNED_STORE_EXCEPTION 1014ded6282SMax Filippov #ifdef CONFIG_XTENSA_UNALIGNED_USER 102173d6681SChris Zankel { EXCCAUSE_UNALIGNED, USER, fast_unaligned }, 1035a0015d6SChris Zankel #else 104173d6681SChris Zankel { EXCCAUSE_UNALIGNED, 0, do_unaligned_user }, 1055a0015d6SChris Zankel #endif 106173d6681SChris Zankel { EXCCAUSE_UNALIGNED, KRNL, fast_unaligned }, 1075a0015d6SChris Zankel #endif 108e5083a63SJohannes Weiner #ifdef CONFIG_MMU 109173d6681SChris Zankel { EXCCAUSE_ITLB_MISS, 0, do_page_fault }, 110173d6681SChris Zankel { EXCCAUSE_ITLB_MISS, USER|KRNL, fast_second_level_miss}, 111173d6681SChris Zankel { EXCCAUSE_ITLB_MULTIHIT, 0, do_multihit }, 112173d6681SChris Zankel { EXCCAUSE_ITLB_PRIVILEGE, 0, do_page_fault }, 113173d6681SChris Zankel /* EXCCAUSE_SIZE_RESTRICTION unhandled */ 114173d6681SChris Zankel { EXCCAUSE_FETCH_CACHE_ATTRIBUTE, 0, do_page_fault }, 115173d6681SChris Zankel { EXCCAUSE_DTLB_MISS, USER|KRNL, fast_second_level_miss}, 116173d6681SChris Zankel { EXCCAUSE_DTLB_MISS, 0, do_page_fault }, 117173d6681SChris Zankel { EXCCAUSE_DTLB_MULTIHIT, 0, do_multihit }, 118173d6681SChris Zankel { EXCCAUSE_DTLB_PRIVILEGE, 0, do_page_fault }, 119173d6681SChris Zankel /* EXCCAUSE_DTLB_SIZE_RESTRICTION unhandled */ 120173d6681SChris Zankel { EXCCAUSE_STORE_CACHE_ATTRIBUTE, USER|KRNL, fast_store_prohibited }, 121173d6681SChris Zankel { EXCCAUSE_STORE_CACHE_ATTRIBUTE, 0, do_page_fault }, 122173d6681SChris Zankel { EXCCAUSE_LOAD_CACHE_ATTRIBUTE, 0, do_page_fault }, 123e5083a63SJohannes Weiner #endif /* CONFIG_MMU */ 1245a0015d6SChris Zankel /* XCCHAL_EXCCAUSE_FLOATING_POINT unhandled */ 125c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSOR(0) 1265a0015d6SChris Zankel COPROCESSOR(0), 1275a0015d6SChris Zankel #endif 128c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSOR(1) 1295a0015d6SChris Zankel COPROCESSOR(1), 1305a0015d6SChris Zankel #endif 131c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSOR(2) 1325a0015d6SChris Zankel COPROCESSOR(2), 1335a0015d6SChris Zankel #endif 134c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSOR(3) 1355a0015d6SChris Zankel COPROCESSOR(3), 1365a0015d6SChris Zankel #endif 137c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSOR(4) 1385a0015d6SChris Zankel COPROCESSOR(4), 1395a0015d6SChris Zankel #endif 140c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSOR(5) 1415a0015d6SChris Zankel COPROCESSOR(5), 1425a0015d6SChris Zankel #endif 143c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSOR(6) 1445a0015d6SChris Zankel COPROCESSOR(6), 1455a0015d6SChris Zankel #endif 146c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSOR(7) 1475a0015d6SChris Zankel COPROCESSOR(7), 1485a0015d6SChris Zankel #endif 1495a0015d6SChris Zankel { EXCCAUSE_MAPPED_DEBUG, 0, do_debug }, 1505a0015d6SChris Zankel { -1, -1, 0 } 1515a0015d6SChris Zankel 1525a0015d6SChris Zankel }; 1535a0015d6SChris Zankel 1545a0015d6SChris Zankel /* The exception table <exc_table> serves two functions: 1555a0015d6SChris Zankel * 1. it contains three dispatch tables (fast_user, fast_kernel, default-c) 1565a0015d6SChris Zankel * 2. it is a temporary memory buffer for the exception handlers. 1575a0015d6SChris Zankel */ 1585a0015d6SChris Zankel 1595a0015d6SChris Zankel unsigned long exc_table[EXC_TABLE_SIZE/4]; 1605a0015d6SChris Zankel 1615a0015d6SChris Zankel void die(const char*, struct pt_regs*, long); 1625a0015d6SChris Zankel 1635a0015d6SChris Zankel static inline void 1645a0015d6SChris Zankel __die_if_kernel(const char *str, struct pt_regs *regs, long err) 1655a0015d6SChris Zankel { 1665a0015d6SChris Zankel if (!user_mode(regs)) 1675a0015d6SChris Zankel die(str, regs, err); 1685a0015d6SChris Zankel } 1695a0015d6SChris Zankel 1705a0015d6SChris Zankel /* 1715a0015d6SChris Zankel * Unhandled Exceptions. Kill user task or panic if in kernel space. 1725a0015d6SChris Zankel */ 1735a0015d6SChris Zankel 1745a0015d6SChris Zankel void do_unhandled(struct pt_regs *regs, unsigned long exccause) 1755a0015d6SChris Zankel { 1765a0015d6SChris Zankel __die_if_kernel("Caught unhandled exception - should not happen", 1775a0015d6SChris Zankel regs, SIGKILL); 1785a0015d6SChris Zankel 1795a0015d6SChris Zankel /* If in user mode, send SIGILL signal to current process */ 1805a0015d6SChris Zankel printk("Caught unhandled exception in '%s' " 1815a0015d6SChris Zankel "(pid = %d, pc = %#010lx) - should not happen\n" 1825a0015d6SChris Zankel "\tEXCCAUSE is %ld\n", 18319c5870cSAlexey Dobriyan current->comm, task_pid_nr(current), regs->pc, exccause); 1845a0015d6SChris Zankel force_sig(SIGILL, current); 1855a0015d6SChris Zankel } 1865a0015d6SChris Zankel 1875a0015d6SChris Zankel /* 1885a0015d6SChris Zankel * Multi-hit exception. This if fatal! 1895a0015d6SChris Zankel */ 1905a0015d6SChris Zankel 1915a0015d6SChris Zankel void do_multihit(struct pt_regs *regs, unsigned long exccause) 1925a0015d6SChris Zankel { 1935a0015d6SChris Zankel die("Caught multihit exception", regs, SIGKILL); 1945a0015d6SChris Zankel } 1955a0015d6SChris Zankel 1965a0015d6SChris Zankel /* 1972d1c645cSMarc Gauthier * IRQ handler. 1982d1c645cSMarc Gauthier * PS.INTLEVEL is the current IRQ priority level. 1995a0015d6SChris Zankel */ 2005a0015d6SChris Zankel 2015a0015d6SChris Zankel extern void do_IRQ(int, struct pt_regs *); 2025a0015d6SChris Zankel 2035a0015d6SChris Zankel void do_interrupt(struct pt_regs *regs) 2045a0015d6SChris Zankel { 2052d1c645cSMarc Gauthier static const unsigned int_level_mask[] = { 2062d1c645cSMarc Gauthier 0, 2072d1c645cSMarc Gauthier XCHAL_INTLEVEL1_MASK, 2082d1c645cSMarc Gauthier XCHAL_INTLEVEL2_MASK, 2092d1c645cSMarc Gauthier XCHAL_INTLEVEL3_MASK, 2102d1c645cSMarc Gauthier XCHAL_INTLEVEL4_MASK, 2112d1c645cSMarc Gauthier XCHAL_INTLEVEL5_MASK, 2122d1c645cSMarc Gauthier XCHAL_INTLEVEL6_MASK, 2132d1c645cSMarc Gauthier XCHAL_INTLEVEL7_MASK, 2142d1c645cSMarc Gauthier }; 2152d1c645cSMarc Gauthier unsigned level = get_sr(ps) & PS_INTLEVEL_MASK; 2165a0015d6SChris Zankel 2172d1c645cSMarc Gauthier if (WARN_ON_ONCE(level >= ARRAY_SIZE(int_level_mask))) 2182d1c645cSMarc Gauthier return; 2192d1c645cSMarc Gauthier 2202d1c645cSMarc Gauthier for (;;) { 2212d1c645cSMarc Gauthier unsigned intread = get_sr(interrupt); 2222d1c645cSMarc Gauthier unsigned intenable = get_sr(intenable); 2232d1c645cSMarc Gauthier unsigned int_at_level = intread & intenable & 2242d1c645cSMarc Gauthier int_level_mask[level]; 2252d1c645cSMarc Gauthier 2262d1c645cSMarc Gauthier if (!int_at_level) 2272d1c645cSMarc Gauthier return; 2282d1c645cSMarc Gauthier 2292d1c645cSMarc Gauthier /* 2302d1c645cSMarc Gauthier * Clear the interrupt before processing, in case it's 2312d1c645cSMarc Gauthier * edge-triggered or software-generated 2325a0015d6SChris Zankel */ 2332d1c645cSMarc Gauthier while (int_at_level) { 2342d1c645cSMarc Gauthier unsigned i = __ffs(int_at_level); 2352d1c645cSMarc Gauthier unsigned mask = 1 << i; 2365a0015d6SChris Zankel 2372d1c645cSMarc Gauthier int_at_level ^= mask; 238bc5378fcSMax Filippov set_sr(mask, intclear); 2395a0015d6SChris Zankel do_IRQ(i, regs); 2405a0015d6SChris Zankel } 2415a0015d6SChris Zankel } 2425a0015d6SChris Zankel } 2435a0015d6SChris Zankel 2445a0015d6SChris Zankel /* 2455a0015d6SChris Zankel * Illegal instruction. Fatal if in kernel space. 2465a0015d6SChris Zankel */ 2475a0015d6SChris Zankel 2485a0015d6SChris Zankel void 2495a0015d6SChris Zankel do_illegal_instruction(struct pt_regs *regs) 2505a0015d6SChris Zankel { 2515a0015d6SChris Zankel __die_if_kernel("Illegal instruction in kernel", regs, SIGKILL); 2525a0015d6SChris Zankel 2535a0015d6SChris Zankel /* If in user mode, send SIGILL signal to current process. */ 2545a0015d6SChris Zankel 2555a0015d6SChris Zankel printk("Illegal Instruction in '%s' (pid = %d, pc = %#010lx)\n", 25619c5870cSAlexey Dobriyan current->comm, task_pid_nr(current), regs->pc); 2575a0015d6SChris Zankel force_sig(SIGILL, current); 2585a0015d6SChris Zankel } 2595a0015d6SChris Zankel 2605a0015d6SChris Zankel 2615a0015d6SChris Zankel /* 2625a0015d6SChris Zankel * Handle unaligned memory accesses from user space. Kill task. 2635a0015d6SChris Zankel * 2645a0015d6SChris Zankel * If CONFIG_UNALIGNED_USER is not set, we don't allow unaligned memory 2655a0015d6SChris Zankel * accesses causes from user space. 2665a0015d6SChris Zankel */ 2675a0015d6SChris Zankel 2685a0015d6SChris Zankel #if XCHAL_UNALIGNED_LOAD_EXCEPTION || XCHAL_UNALIGNED_STORE_EXCEPTION 2694ded6282SMax Filippov #ifndef CONFIG_XTENSA_UNALIGNED_USER 2705a0015d6SChris Zankel void 2715a0015d6SChris Zankel do_unaligned_user (struct pt_regs *regs) 2725a0015d6SChris Zankel { 2735a0015d6SChris Zankel siginfo_t info; 2745a0015d6SChris Zankel 2755a0015d6SChris Zankel __die_if_kernel("Unhandled unaligned exception in kernel", 2765a0015d6SChris Zankel regs, SIGKILL); 2775a0015d6SChris Zankel 2785a0015d6SChris Zankel current->thread.bad_vaddr = regs->excvaddr; 2795a0015d6SChris Zankel current->thread.error_code = -3; 2805a0015d6SChris Zankel printk("Unaligned memory access to %08lx in '%s' " 2815a0015d6SChris Zankel "(pid = %d, pc = %#010lx)\n", 28219c5870cSAlexey Dobriyan regs->excvaddr, current->comm, task_pid_nr(current), regs->pc); 2835a0015d6SChris Zankel info.si_signo = SIGBUS; 2845a0015d6SChris Zankel info.si_errno = 0; 2855a0015d6SChris Zankel info.si_code = BUS_ADRALN; 2865a0015d6SChris Zankel info.si_addr = (void *) regs->excvaddr; 2875a0015d6SChris Zankel force_sig_info(SIGSEGV, &info, current); 2885a0015d6SChris Zankel 2895a0015d6SChris Zankel } 2905a0015d6SChris Zankel #endif 2915a0015d6SChris Zankel #endif 2925a0015d6SChris Zankel 2935a0015d6SChris Zankel void 2945a0015d6SChris Zankel do_debug(struct pt_regs *regs) 2955a0015d6SChris Zankel { 2965a0015d6SChris Zankel #ifdef CONFIG_KGDB 2975a0015d6SChris Zankel /* If remote debugging is configured AND enabled, we give control to 2985a0015d6SChris Zankel * kgdb. Otherwise, we fall through, perhaps giving control to the 2995a0015d6SChris Zankel * native debugger. 3005a0015d6SChris Zankel */ 3015a0015d6SChris Zankel 3025a0015d6SChris Zankel if (gdb_enter) { 3035a0015d6SChris Zankel extern void gdb_handle_exception(struct pt_regs *); 3045a0015d6SChris Zankel gdb_handle_exception(regs); 3055a0015d6SChris Zankel return_from_debug_flag = 1; 3065a0015d6SChris Zankel return; 3075a0015d6SChris Zankel } 3085a0015d6SChris Zankel #endif 3095a0015d6SChris Zankel 3105a0015d6SChris Zankel __die_if_kernel("Breakpoint in kernel", regs, SIGKILL); 3115a0015d6SChris Zankel 3125a0015d6SChris Zankel /* If in user mode, send SIGTRAP signal to current process */ 3135a0015d6SChris Zankel 3145a0015d6SChris Zankel force_sig(SIGTRAP, current); 3155a0015d6SChris Zankel } 3165a0015d6SChris Zankel 3175a0015d6SChris Zankel 31828570e8dSMax Filippov /* Set exception C handler - for temporary use when probing exceptions */ 31928570e8dSMax Filippov 32028570e8dSMax Filippov void * __init trap_set_handler(int cause, void *handler) 32128570e8dSMax Filippov { 32228570e8dSMax Filippov unsigned long *entry = &exc_table[EXC_TABLE_DEFAULT / 4 + cause]; 32328570e8dSMax Filippov void *previous = (void *)*entry; 32428570e8dSMax Filippov *entry = (unsigned long)handler; 32528570e8dSMax Filippov return previous; 32628570e8dSMax Filippov } 32728570e8dSMax Filippov 32828570e8dSMax Filippov 3295a0015d6SChris Zankel /* 3305a0015d6SChris Zankel * Initialize dispatch tables. 3315a0015d6SChris Zankel * 3325a0015d6SChris Zankel * The exception vectors are stored compressed the __init section in the 3335a0015d6SChris Zankel * dispatch_init_table. This function initializes the following three tables 3345a0015d6SChris Zankel * from that compressed table: 3355a0015d6SChris Zankel * - fast user first dispatch table for user exceptions 3365a0015d6SChris Zankel * - fast kernel first dispatch table for kernel exceptions 3375a0015d6SChris Zankel * - default C-handler C-handler called by the default fast handler. 3385a0015d6SChris Zankel * 3395a0015d6SChris Zankel * See vectors.S for more details. 3405a0015d6SChris Zankel */ 3415a0015d6SChris Zankel 3425a0015d6SChris Zankel #define set_handler(idx,handler) (exc_table[idx] = (unsigned long) (handler)) 3435a0015d6SChris Zankel 344b91dc336SChris Zankel void __init trap_init(void) 3455a0015d6SChris Zankel { 3465a0015d6SChris Zankel int i; 3475a0015d6SChris Zankel 3485a0015d6SChris Zankel /* Setup default vectors. */ 3495a0015d6SChris Zankel 3505a0015d6SChris Zankel for(i = 0; i < 64; i++) { 3515a0015d6SChris Zankel set_handler(EXC_TABLE_FAST_USER/4 + i, user_exception); 3525a0015d6SChris Zankel set_handler(EXC_TABLE_FAST_KERNEL/4 + i, kernel_exception); 3535a0015d6SChris Zankel set_handler(EXC_TABLE_DEFAULT/4 + i, do_unhandled); 3545a0015d6SChris Zankel } 3555a0015d6SChris Zankel 3565a0015d6SChris Zankel /* Setup specific handlers. */ 3575a0015d6SChris Zankel 3585a0015d6SChris Zankel for(i = 0; dispatch_init_table[i].cause >= 0; i++) { 3595a0015d6SChris Zankel 3605a0015d6SChris Zankel int fast = dispatch_init_table[i].fast; 3615a0015d6SChris Zankel int cause = dispatch_init_table[i].cause; 3625a0015d6SChris Zankel void *handler = dispatch_init_table[i].handler; 3635a0015d6SChris Zankel 3645a0015d6SChris Zankel if (fast == 0) 3655a0015d6SChris Zankel set_handler (EXC_TABLE_DEFAULT/4 + cause, handler); 3665a0015d6SChris Zankel if (fast && fast & USER) 3675a0015d6SChris Zankel set_handler (EXC_TABLE_FAST_USER/4 + cause, handler); 3685a0015d6SChris Zankel if (fast && fast & KRNL) 3695a0015d6SChris Zankel set_handler (EXC_TABLE_FAST_KERNEL/4 + cause, handler); 3705a0015d6SChris Zankel } 3715a0015d6SChris Zankel 3725a0015d6SChris Zankel /* Initialize EXCSAVE_1 to hold the address of the exception table. */ 3735a0015d6SChris Zankel 3745a0015d6SChris Zankel i = (unsigned long)exc_table; 375bc5378fcSMax Filippov __asm__ __volatile__("wsr %0, excsave1\n" : : "a" (i)); 3765a0015d6SChris Zankel } 3775a0015d6SChris Zankel 3785a0015d6SChris Zankel /* 3795a0015d6SChris Zankel * This function dumps the current valid window frame and other base registers. 3805a0015d6SChris Zankel */ 3815a0015d6SChris Zankel 3825a0015d6SChris Zankel void show_regs(struct pt_regs * regs) 3835a0015d6SChris Zankel { 3845a0015d6SChris Zankel int i, wmask; 3855a0015d6SChris Zankel 386*a43cb95dSTejun Heo show_regs_print_info(KERN_DEFAULT); 387*a43cb95dSTejun Heo 3885a0015d6SChris Zankel wmask = regs->wmask & ~1; 3895a0015d6SChris Zankel 3908d7e8240SChris Zankel for (i = 0; i < 16; i++) { 3915a0015d6SChris Zankel if ((i % 8) == 0) 392ad361c98SJoe Perches printk(KERN_INFO "a%02d:", i); 393ad361c98SJoe Perches printk(KERN_CONT " %08lx", regs->areg[i]); 3945a0015d6SChris Zankel } 395ad361c98SJoe Perches printk(KERN_CONT "\n"); 3965a0015d6SChris Zankel 3975a0015d6SChris Zankel printk("pc: %08lx, ps: %08lx, depc: %08lx, excvaddr: %08lx\n", 3985a0015d6SChris Zankel regs->pc, regs->ps, regs->depc, regs->excvaddr); 3995a0015d6SChris Zankel printk("lbeg: %08lx, lend: %08lx lcount: %08lx, sar: %08lx\n", 4005a0015d6SChris Zankel regs->lbeg, regs->lend, regs->lcount, regs->sar); 4015a0015d6SChris Zankel if (user_mode(regs)) 4025a0015d6SChris Zankel printk("wb: %08lx, ws: %08lx, wmask: %08lx, syscall: %ld\n", 4035a0015d6SChris Zankel regs->windowbase, regs->windowstart, regs->wmask, 4045a0015d6SChris Zankel regs->syscall); 4055a0015d6SChris Zankel } 4065a0015d6SChris Zankel 407586411dcSJohannes Weiner static __always_inline unsigned long *stack_pointer(struct task_struct *task) 408586411dcSJohannes Weiner { 409586411dcSJohannes Weiner unsigned long *sp; 410586411dcSJohannes Weiner 411586411dcSJohannes Weiner if (!task || task == current) 412586411dcSJohannes Weiner __asm__ __volatile__ ("mov %0, a1\n" : "=a"(sp)); 413586411dcSJohannes Weiner else 414586411dcSJohannes Weiner sp = (unsigned long *)task->thread.sp; 415586411dcSJohannes Weiner 416586411dcSJohannes Weiner return sp; 417586411dcSJohannes Weiner } 418586411dcSJohannes Weiner 4195a0015d6SChris Zankel void show_trace(struct task_struct *task, unsigned long *sp) 4205a0015d6SChris Zankel { 4215a0015d6SChris Zankel unsigned long a0, a1, pc; 4225a0015d6SChris Zankel unsigned long sp_start, sp_end; 4235a0015d6SChris Zankel 42428a0ce7fSJohannes Weiner if (sp) 4255a0015d6SChris Zankel a1 = (unsigned long)sp; 42628a0ce7fSJohannes Weiner else 427586411dcSJohannes Weiner a1 = (unsigned long)stack_pointer(task); 4285a0015d6SChris Zankel 4295a0015d6SChris Zankel sp_start = a1 & ~(THREAD_SIZE-1); 4305a0015d6SChris Zankel sp_end = sp_start + THREAD_SIZE; 4315a0015d6SChris Zankel 4325a0015d6SChris Zankel printk("Call Trace:"); 4335a0015d6SChris Zankel #ifdef CONFIG_KALLSYMS 4345a0015d6SChris Zankel printk("\n"); 4355a0015d6SChris Zankel #endif 4365a0015d6SChris Zankel spill_registers(); 4375a0015d6SChris Zankel 4385a0015d6SChris Zankel while (a1 > sp_start && a1 < sp_end) { 4395a0015d6SChris Zankel sp = (unsigned long*)a1; 4405a0015d6SChris Zankel 4415a0015d6SChris Zankel a0 = *(sp - 4); 4425a0015d6SChris Zankel a1 = *(sp - 3); 4435a0015d6SChris Zankel 4445a0015d6SChris Zankel if (a1 <= (unsigned long) sp) 4455a0015d6SChris Zankel break; 4465a0015d6SChris Zankel 4475a0015d6SChris Zankel pc = MAKE_PC_FROM_RA(a0, a1); 4485a0015d6SChris Zankel 4495a0015d6SChris Zankel if (kernel_text_address(pc)) { 4505a0015d6SChris Zankel printk(" [<%08lx>] ", pc); 4515a0015d6SChris Zankel print_symbol("%s\n", pc); 4525a0015d6SChris Zankel } 4535a0015d6SChris Zankel } 4545a0015d6SChris Zankel printk("\n"); 4555a0015d6SChris Zankel } 4565a0015d6SChris Zankel 4575a0015d6SChris Zankel /* 4585a0015d6SChris Zankel * This routine abuses get_user()/put_user() to reference pointers 4595a0015d6SChris Zankel * with at least a bit of error checking ... 4605a0015d6SChris Zankel */ 4615a0015d6SChris Zankel 4625a0015d6SChris Zankel static int kstack_depth_to_print = 24; 4635a0015d6SChris Zankel 4645a0015d6SChris Zankel void show_stack(struct task_struct *task, unsigned long *sp) 4655a0015d6SChris Zankel { 4665a0015d6SChris Zankel int i = 0; 4675a0015d6SChris Zankel unsigned long *stack; 4685a0015d6SChris Zankel 46928a0ce7fSJohannes Weiner if (!sp) 470586411dcSJohannes Weiner sp = stack_pointer(task); 4715a0015d6SChris Zankel stack = sp; 4725a0015d6SChris Zankel 4735a0015d6SChris Zankel printk("\nStack: "); 4745a0015d6SChris Zankel 4755a0015d6SChris Zankel for (i = 0; i < kstack_depth_to_print; i++) { 4765a0015d6SChris Zankel if (kstack_end(sp)) 4775a0015d6SChris Zankel break; 4785a0015d6SChris Zankel if (i && ((i % 8) == 0)) 4795a0015d6SChris Zankel printk("\n "); 4805a0015d6SChris Zankel printk("%08lx ", *sp++); 4815a0015d6SChris Zankel } 4825a0015d6SChris Zankel printk("\n"); 4835a0015d6SChris Zankel show_trace(task, stack); 4845a0015d6SChris Zankel } 4855a0015d6SChris Zankel 4865a0015d6SChris Zankel void show_code(unsigned int *pc) 4875a0015d6SChris Zankel { 4885a0015d6SChris Zankel long i; 4895a0015d6SChris Zankel 4905a0015d6SChris Zankel printk("\nCode:"); 4915a0015d6SChris Zankel 4925a0015d6SChris Zankel for(i = -3 ; i < 6 ; i++) { 4935a0015d6SChris Zankel unsigned long insn; 4945a0015d6SChris Zankel if (__get_user(insn, pc + i)) { 4955a0015d6SChris Zankel printk(" (Bad address in pc)\n"); 4965a0015d6SChris Zankel break; 4975a0015d6SChris Zankel } 4985a0015d6SChris Zankel printk("%c%08lx%c",(i?' ':'<'),insn,(i?' ':'>')); 4995a0015d6SChris Zankel } 5005a0015d6SChris Zankel } 5015a0015d6SChris Zankel 50234af946aSIngo Molnar DEFINE_SPINLOCK(die_lock); 5035a0015d6SChris Zankel 5045a0015d6SChris Zankel void die(const char * str, struct pt_regs * regs, long err) 5055a0015d6SChris Zankel { 5065a0015d6SChris Zankel static int die_counter; 5075a0015d6SChris Zankel int nl = 0; 5085a0015d6SChris Zankel 5095a0015d6SChris Zankel console_verbose(); 5105a0015d6SChris Zankel spin_lock_irq(&die_lock); 5115a0015d6SChris Zankel 5125a0015d6SChris Zankel printk("%s: sig: %ld [#%d]\n", str, err, ++die_counter); 5135a0015d6SChris Zankel #ifdef CONFIG_PREEMPT 5145a0015d6SChris Zankel printk("PREEMPT "); 5155a0015d6SChris Zankel nl = 1; 5165a0015d6SChris Zankel #endif 5175a0015d6SChris Zankel if (nl) 5185a0015d6SChris Zankel printk("\n"); 5195a0015d6SChris Zankel show_regs(regs); 5205a0015d6SChris Zankel if (!user_mode(regs)) 5215a0015d6SChris Zankel show_stack(NULL, (unsigned long*)regs->areg[1]); 5225a0015d6SChris Zankel 523373d4d09SRusty Russell add_taint(TAINT_DIE, LOCKDEP_NOW_UNRELIABLE); 5245a0015d6SChris Zankel spin_unlock_irq(&die_lock); 5255a0015d6SChris Zankel 5265a0015d6SChris Zankel if (in_interrupt()) 5275a0015d6SChris Zankel panic("Fatal exception in interrupt"); 5285a0015d6SChris Zankel 529cea6a4baSHorms if (panic_on_oops) 530012c437dSHorms panic("Fatal exception"); 531cea6a4baSHorms 5325a0015d6SChris Zankel do_exit(err); 5335a0015d6SChris Zankel } 534