diff options
Diffstat (limited to 'arch/mips/kernel/traps.c')
| -rw-r--r-- | arch/mips/kernel/traps.c | 483 |
1 files changed, 346 insertions, 137 deletions
diff --git a/arch/mips/kernel/traps.c b/arch/mips/kernel/traps.c index a75ae40184a..51706d6dd5b 100644 --- a/arch/mips/kernel/traps.c +++ b/arch/mips/kernel/traps.c @@ -10,9 +10,12 @@ * Kevin D. Kissell, kevink@mips.com and Carsten Langgaard, carstenl@mips.com * Copyright (C) 2002, 2003, 2004, 2005, 2007 Maciej W. Rozycki * Copyright (C) 2000, 2001, 2012 MIPS Technologies, Inc. All rights reserved. + * Copyright (C) 2014, Imagination Technologies Ltd. */ #include <linux/bug.h> #include <linux/compiler.h> +#include <linux/context_tracking.h> +#include <linux/cpu_pm.h> #include <linux/kexec.h> #include <linux/init.h> #include <linux/kernel.h> @@ -38,6 +41,7 @@ #include <asm/break.h> #include <asm/cop2.h> #include <asm/cpu.h> +#include <asm/cpu-type.h> #include <asm/dsp.h> #include <asm/fpu.h> #include <asm/fpu_emulator.h> @@ -45,6 +49,7 @@ #include <asm/mipsregs.h> #include <asm/mipsmtregs.h> #include <asm/module.h> +#include <asm/msa.h> #include <asm/pgtable.h> #include <asm/ptrace.h> #include <asm/sections.h> @@ -75,7 +80,10 @@ extern asmlinkage void handle_ri_rdhwr(void); extern asmlinkage void handle_cpu(void); extern asmlinkage void handle_ov(void); extern asmlinkage void handle_tr(void); +extern asmlinkage void handle_msa_fpe(void); extern asmlinkage void handle_fpe(void); +extern asmlinkage void handle_ftlb(void); +extern asmlinkage void handle_msa(void); extern asmlinkage void handle_mdmx(void); extern asmlinkage void handle_watch(void); extern asmlinkage void handle_mt(void); @@ -89,7 +97,7 @@ void (*board_nmi_handler_setup)(void); void (*board_ejtag_handler_setup)(void); void (*board_bind_eic_interrupt)(int irq, int regset); void (*board_ebase_setup)(void); -void __cpuinitdata(*board_cache_error_setup)(void); +void(*board_cache_error_setup)(void); static void show_raw_backtrace(unsigned long reg29) { @@ -264,7 +272,7 @@ static void __show_regs(const struct pt_regs *regs) printk("Status: %08x ", (uint32_t) regs->cp0_status); - if (current_cpu_data.isa_level == MIPS_CPU_ISA_I) { + if (cpu_has_3kex) { if (regs->cp0_status & ST0_KUO) printk("KUo "); if (regs->cp0_status & ST0_IEO) @@ -277,7 +285,7 @@ static void __show_regs(const struct pt_regs *regs) printk("KUc "); if (regs->cp0_status & ST0_IEC) printk("IEc "); - } else { + } else if (cpu_has_4kex) { if (regs->cp0_status & ST0_KX) printk("KX "); if (regs->cp0_status & ST0_SX) @@ -328,6 +336,7 @@ void show_regs(struct pt_regs *regs) void show_registers(struct pt_regs *regs) { const int field = 2 * sizeof(unsigned long); + mm_segment_t old_fs = get_fs(); __show_regs(regs); print_modules(); @@ -342,9 +351,13 @@ void show_registers(struct pt_regs *regs) printk("*HwTLS: %0*lx\n", field, tls); } + if (!user_mode(regs)) + /* Necessary for getting the correct stack content */ + set_fs(KERNEL_DS); show_stacktrace(current, regs); show_code((unsigned int __user *) regs->cp0_epc); printk("\n"); + set_fs(old_fs); } static int regs_to_trapnr(struct pt_regs *regs) @@ -358,24 +371,16 @@ void __noreturn die(const char *str, struct pt_regs *regs) { static int die_counter; int sig = SIGSEGV; -#ifdef CONFIG_MIPS_MT_SMTC - unsigned long dvpret; -#endif /* CONFIG_MIPS_MT_SMTC */ oops_enter(); - if (notify_die(DIE_OOPS, str, regs, 0, regs_to_trapnr(regs), SIGSEGV) == NOTIFY_STOP) + if (notify_die(DIE_OOPS, str, regs, 0, regs_to_trapnr(regs), + SIGSEGV) == NOTIFY_STOP) sig = 0; console_verbose(); raw_spin_lock_irq(&die_lock); -#ifdef CONFIG_MIPS_MT_SMTC - dvpret = dvpe(); -#endif /* CONFIG_MIPS_MT_SMTC */ bust_spinlocks(1); -#ifdef CONFIG_MIPS_MT_SMTC - mips_mt_regdump(dvpret); -#endif /* CONFIG_MIPS_MT_SMTC */ printk("%s[#%d]:\n", str, ++die_counter); show_registers(regs); @@ -423,7 +428,9 @@ asmlinkage void do_be(struct pt_regs *regs) const struct exception_table_entry *fixup = NULL; int data = regs->cp0_cause & 4; int action = MIPS_BE_FATAL; + enum ctx_state prev_state; + prev_state = exception_enter(); /* XXX For now. Fixme, this searches the wrong table ... */ if (data && !user_mode(regs)) fixup = search_dbe_tables(exception_epc(regs)); @@ -436,11 +443,11 @@ asmlinkage void do_be(struct pt_regs *regs) switch (action) { case MIPS_BE_DISCARD: - return; + goto out; case MIPS_BE_FIXUP: if (fixup) { regs->cp0_epc = fixup->nextinsn; - return; + goto out; } break; default: @@ -453,12 +460,15 @@ asmlinkage void do_be(struct pt_regs *regs) printk(KERN_ALERT "%s bus error, epc == %0*lx, ra == %0*lx\n", data ? "Data" : "Instruction", field, regs->cp0_epc, field, regs->regs[31]); - if (notify_die(DIE_OOPS, "bus error", regs, 0, regs_to_trapnr(regs), SIGBUS) - == NOTIFY_STOP) - return; + if (notify_die(DIE_OOPS, "bus error", regs, 0, regs_to_trapnr(regs), + SIGBUS) == NOTIFY_STOP) + goto out; die_if_kernel("Oops", regs); force_sig(SIGBUS, current); + +out: + exception_exit(prev_state); } /* @@ -616,7 +626,7 @@ static int simulate_rdhwr(struct pt_regs *regs, int rd, int rt) regs->regs[rt] = read_c0_count(); return 0; case 3: /* Count register resolution */ - switch (current_cpu_data.cputype) { + switch (current_cpu_type()) { case CPU_20KC: case CPU_25KF: regs->regs[rt] = 1; @@ -673,8 +683,10 @@ static int simulate_sync(struct pt_regs *regs, unsigned int opcode) asmlinkage void do_ov(struct pt_regs *regs) { + enum ctx_state prev_state; siginfo_t info; + prev_state = exception_enter(); die_if_kernel("Integer overflow", regs); info.si_code = FPE_INTOVF; @@ -682,6 +694,7 @@ asmlinkage void do_ov(struct pt_regs *regs) info.si_errno = 0; info.si_addr = (void __user *) regs->cp0_epc; force_sig_info(SIGFPE, &info, current); + exception_exit(prev_state); } int process_fpemu_return(int sig, void __user *fault_addr) @@ -691,10 +704,12 @@ int process_fpemu_return(int sig, void __user *fault_addr) si.si_addr = fault_addr; si.si_signo = sig; if (sig == SIGSEGV) { + down_read(¤t->mm->mmap_sem); if (find_vma(current->mm, (unsigned long)fault_addr)) si.si_code = SEGV_ACCERR; else si.si_code = SEGV_MAPERR; + up_read(¤t->mm->mmap_sem); } else { si.si_code = BUS_ADRERR; } @@ -713,11 +728,13 @@ int process_fpemu_return(int sig, void __user *fault_addr) */ asmlinkage void do_fpe(struct pt_regs *regs, unsigned long fcr31) { + enum ctx_state prev_state; siginfo_t info = {0}; - if (notify_die(DIE_FP, "FP exception", regs, 0, regs_to_trapnr(regs), SIGFPE) - == NOTIFY_STOP) - return; + prev_state = exception_enter(); + if (notify_die(DIE_FP, "FP exception", regs, 0, regs_to_trapnr(regs), + SIGFPE) == NOTIFY_STOP) + goto out; die_if_kernel("FP exception in kernel code", regs); if (fcr31 & FPU_CSR_UNI_X) { @@ -753,7 +770,7 @@ asmlinkage void do_fpe(struct pt_regs *regs, unsigned long fcr31) /* If something went wrong, signal */ process_fpemu_return(sig, fault_addr); - return; + goto out; } else if (fcr31 & FPU_CSR_INV_X) info.si_code = FPE_FLTINV; else if (fcr31 & FPU_CSR_DIV_X) @@ -770,6 +787,9 @@ asmlinkage void do_fpe(struct pt_regs *regs, unsigned long fcr31) info.si_errno = 0; info.si_addr = (void __user *) regs->cp0_epc; force_sig_info(SIGFPE, &info, current); + +out: + exception_exit(prev_state); } static void do_trap_or_bp(struct pt_regs *regs, unsigned int code, @@ -783,7 +803,8 @@ static void do_trap_or_bp(struct pt_regs *regs, unsigned int code, return; #endif /* CONFIG_KGDB_LOW_LEVEL_TRAP */ - if (notify_die(DIE_TRAP, str, regs, code, regs_to_trapnr(regs), SIGTRAP) == NOTIFY_STOP) + if (notify_die(DIE_TRAP, str, regs, code, regs_to_trapnr(regs), + SIGTRAP) == NOTIFY_STOP) return; /* @@ -835,9 +856,16 @@ static void do_trap_or_bp(struct pt_regs *regs, unsigned int code, asmlinkage void do_bp(struct pt_regs *regs) { unsigned int opcode, bcode; + enum ctx_state prev_state; unsigned long epc; u16 instr[2]; + mm_segment_t seg; + + seg = get_fs(); + if (!user_mode(regs)) + set_fs(KERNEL_DS); + prev_state = exception_enter(); if (get_isa16_mode(regs->cp0_epc)) { /* Calculate EPC. */ epc = exception_epc(regs); @@ -845,17 +873,19 @@ asmlinkage void do_bp(struct pt_regs *regs) if ((__get_user(instr[0], (u16 __user *)msk_isa16_mode(epc)) || (__get_user(instr[1], (u16 __user *)msk_isa16_mode(epc + 2))))) goto out_sigsegv; - opcode = (instr[0] << 16) | instr[1]; + opcode = (instr[0] << 16) | instr[1]; } else { - /* MIPS16e mode */ - if (__get_user(instr[0], (u16 __user *)msk_isa16_mode(epc))) + /* MIPS16e mode */ + if (__get_user(instr[0], + (u16 __user *)msk_isa16_mode(epc))) goto out_sigsegv; - bcode = (instr[0] >> 6) & 0x3f; - do_trap_or_bp(regs, bcode, "Break"); - return; + bcode = (instr[0] >> 6) & 0x3f; + do_trap_or_bp(regs, bcode, "Break"); + goto out; } } else { - if (__get_user(opcode, (unsigned int __user *) exception_epc(regs))) + if (__get_user(opcode, + (unsigned int __user *) exception_epc(regs))) goto out_sigsegv; } @@ -875,13 +905,15 @@ asmlinkage void do_bp(struct pt_regs *regs) */ switch (bcode) { case BRK_KPROBE_BP: - if (notify_die(DIE_BREAK, "debug", regs, bcode, regs_to_trapnr(regs), SIGTRAP) == NOTIFY_STOP) - return; + if (notify_die(DIE_BREAK, "debug", regs, bcode, + regs_to_trapnr(regs), SIGTRAP) == NOTIFY_STOP) + goto out; else break; case BRK_KPROBE_SSTEPBP: - if (notify_die(DIE_SSTEPBP, "single_step", regs, bcode, regs_to_trapnr(regs), SIGTRAP) == NOTIFY_STOP) - return; + if (notify_die(DIE_SSTEPBP, "single_step", regs, bcode, + regs_to_trapnr(regs), SIGTRAP) == NOTIFY_STOP) + goto out; else break; default: @@ -889,18 +921,30 @@ asmlinkage void do_bp(struct pt_regs *regs) } do_trap_or_bp(regs, bcode, "Break"); + +out: + set_fs(seg); + exception_exit(prev_state); return; out_sigsegv: force_sig(SIGSEGV, current); + goto out; } asmlinkage void do_tr(struct pt_regs *regs) { u32 opcode, tcode = 0; + enum ctx_state prev_state; u16 instr[2]; + mm_segment_t seg; unsigned long epc = msk_isa16_mode(exception_epc(regs)); + seg = get_fs(); + if (!user_mode(regs)) + set_fs(get_ds()); + + prev_state = exception_enter(); if (get_isa16_mode(regs->cp0_epc)) { if (__get_user(instr[0], (u16 __user *)(epc + 0)) || __get_user(instr[1], (u16 __user *)(epc + 2))) @@ -918,10 +962,15 @@ asmlinkage void do_tr(struct pt_regs *regs) } do_trap_or_bp(regs, tcode, "Trap"); + +out: + set_fs(seg); + exception_exit(prev_state); return; out_sigsegv: force_sig(SIGSEGV, current); + goto out; } asmlinkage void do_ri(struct pt_regs *regs) @@ -929,17 +978,19 @@ asmlinkage void do_ri(struct pt_regs *regs) unsigned int __user *epc = (unsigned int __user *)exception_epc(regs); unsigned long old_epc = regs->cp0_epc; unsigned long old31 = regs->regs[31]; + enum ctx_state prev_state; unsigned int opcode = 0; int status = -1; - if (notify_die(DIE_RI, "RI Fault", regs, 0, regs_to_trapnr(regs), SIGILL) - == NOTIFY_STOP) - return; + prev_state = exception_enter(); + if (notify_die(DIE_RI, "RI Fault", regs, 0, regs_to_trapnr(regs), + SIGILL) == NOTIFY_STOP) + goto out; die_if_kernel("Reserved instruction in kernel code", regs); if (unlikely(compute_return_epc(regs) < 0)) - return; + goto out; if (get_isa16_mode(regs->cp0_epc)) { unsigned short mmop[2] = { 0 }; @@ -974,6 +1025,9 @@ asmlinkage void do_ri(struct pt_regs *regs) regs->regs[31] = old31; force_sig(status, current); } + +out: + exception_exit(prev_state); } /* @@ -1025,32 +1079,99 @@ static int default_cu2_call(struct notifier_block *nfb, unsigned long action, { struct pt_regs *regs = data; - switch (action) { - default: - die_if_kernel("Unhandled kernel unaligned access or invalid " + die_if_kernel("COP2: Unhandled kernel unaligned access or invalid " "instruction", regs); - /* Fall through */ + force_sig(SIGILL, current); - case CU2_EXCEPTION: - force_sig(SIGILL, current); + return NOTIFY_OK; +} + +static int enable_restore_fp_context(int msa) +{ + int err, was_fpu_owner; + + if (!used_math()) { + /* First time FP context user. */ + err = init_fpu(); + if (msa && !err) + enable_msa(); + if (!err) + set_used_math(); + return err; } - return NOTIFY_OK; + /* + * This task has formerly used the FP context. + * + * If this thread has no live MSA vector context then we can simply + * restore the scalar FP context. If it has live MSA vector context + * (that is, it has or may have used MSA since last performing a + * function call) then we'll need to restore the vector context. This + * applies even if we're currently only executing a scalar FP + * instruction. This is because if we were to later execute an MSA + * instruction then we'd either have to: + * + * - Restore the vector context & clobber any registers modified by + * scalar FP instructions between now & then. + * + * or + * + * - Not restore the vector context & lose the most significant bits + * of all vector registers. + * + * Neither of those options is acceptable. We cannot restore the least + * significant bits of the registers now & only restore the most + * significant bits later because the most significant bits of any + * vector registers whose aliased FP register is modified now will have + * been zeroed. We'd have no way to know that when restoring the vector + * context & thus may load an outdated value for the most significant + * bits of a vector register. + */ + if (!msa && !thread_msa_context_live()) + return own_fpu(1); + + /* + * This task is using or has previously used MSA. Thus we require + * that Status.FR == 1. + */ + was_fpu_owner = is_fpu_owner(); + err = own_fpu(0); + if (err) + return err; + + enable_msa(); + write_msa_csr(current->thread.fpu.msacsr); + set_thread_flag(TIF_USEDMSA); + + /* + * If this is the first time that the task is using MSA and it has + * previously used scalar FP in this time slice then we already nave + * FP context which we shouldn't clobber. + */ + if (!test_and_set_thread_flag(TIF_MSA_CTX_LIVE) && was_fpu_owner) + return 0; + + /* We need to restore the vector context. */ + restore_msa(current); + return 0; } asmlinkage void do_cpu(struct pt_regs *regs) { + enum ctx_state prev_state; unsigned int __user *epc; unsigned long old_epc, old31; unsigned int opcode; unsigned int cpid; - int status; + int status, err; unsigned long __maybe_unused flags; - die_if_kernel("do_cpu invoked from kernel context!", regs); - + prev_state = exception_enter(); cpid = (regs->cp0_cause >> CAUSEB_CE) & 3; + if (cpid != 2) + die_if_kernel("do_cpu invoked from kernel context!", regs); + switch (cpid) { case 0: epc = (unsigned int __user *)exception_epc(regs); @@ -1060,7 +1181,7 @@ asmlinkage void do_cpu(struct pt_regs *regs) status = -1; if (unlikely(compute_return_epc(regs) < 0)) - return; + goto out; if (get_isa16_mode(regs->cp0_epc)) { unsigned short mmop[2] = { 0 }; @@ -1093,7 +1214,7 @@ asmlinkage void do_cpu(struct pt_regs *regs) force_sig(status, current); } - return; + goto out; case 3: /* @@ -1114,36 +1235,69 @@ asmlinkage void do_cpu(struct pt_regs *regs) /* Fall through. */ case 1: - if (used_math()) /* Using the FPU again. */ - own_fpu(1); - else { /* First time FPU user. */ - init_fpu(); - set_used_math(); - } + err = enable_restore_fp_context(0); - if (!raw_cpu_has_fpu) { + if (!raw_cpu_has_fpu || err) { int sig; void __user *fault_addr = NULL; sig = fpu_emulator_cop1Handler(regs, ¤t->thread.fpu, 0, &fault_addr); - if (!process_fpemu_return(sig, fault_addr)) + if (!process_fpemu_return(sig, fault_addr) && !err) mt_ase_fp_affinity(); } - return; + goto out; case 2: raw_notifier_call_chain(&cu2_chain, CU2_EXCEPTION, regs); - return; + goto out; } force_sig(SIGILL, current); + +out: + exception_exit(prev_state); +} + +asmlinkage void do_msa_fpe(struct pt_regs *regs) +{ + enum ctx_state prev_state; + + prev_state = exception_enter(); + die_if_kernel("do_msa_fpe invoked from kernel context!", regs); + force_sig(SIGFPE, current); + exception_exit(prev_state); +} + +asmlinkage void do_msa(struct pt_regs *regs) +{ + enum ctx_state prev_state; + int err; + + prev_state = exception_enter(); + + if (!cpu_has_msa || test_thread_flag(TIF_32BIT_FPREGS)) { + force_sig(SIGILL, current); + goto out; + } + + die_if_kernel("do_msa invoked from kernel context!", regs); + + err = enable_restore_fp_context(1); + if (err) + force_sig(SIGILL, current); +out: + exception_exit(prev_state); } asmlinkage void do_mdmx(struct pt_regs *regs) { + enum ctx_state prev_state; + + prev_state = exception_enter(); force_sig(SIGILL, current); + exception_exit(prev_state); } /* @@ -1151,8 +1305,10 @@ asmlinkage void do_mdmx(struct pt_regs *regs) */ asmlinkage void do_watch(struct pt_regs *regs) { + enum ctx_state prev_state; u32 cause; + prev_state = exception_enter(); /* * Clear WP (bit 22) bit of cause register so we don't loop * forever. @@ -1174,13 +1330,16 @@ asmlinkage void do_watch(struct pt_regs *regs) mips_clear_watch_registers(); local_irq_enable(); } + exception_exit(prev_state); } asmlinkage void do_mcheck(struct pt_regs *regs) { const int field = 2 * sizeof(unsigned long); int multi_match = regs->cp0_status & ST0_TS; + enum ctx_state prev_state; + prev_state = exception_enter(); show_regs(regs); if (multi_match) { @@ -1286,6 +1445,10 @@ static inline void parity_protection_init(void) case CPU_34K: case CPU_74K: case CPU_1004K: + case CPU_1074K: + case CPU_INTERAPTIV: + case CPU_PROAPTIV: + case CPU_P5600: { #define ERRCTL_PE 0x80000000 #define ERRCTL_L2P 0x00800000 @@ -1375,14 +1538,27 @@ asmlinkage void cache_parity_error(void) printk("Decoded c0_cacheerr: %s cache fault in %s reference.\n", reg_val & (1<<30) ? "secondary" : "primary", reg_val & (1<<31) ? "data" : "insn"); - printk("Error bits: %s%s%s%s%s%s%s\n", - reg_val & (1<<29) ? "ED " : "", - reg_val & (1<<28) ? "ET " : "", - reg_val & (1<<26) ? "EE " : "", - reg_val & (1<<25) ? "EB " : "", - reg_val & (1<<24) ? "EI " : "", - reg_val & (1<<23) ? "E1 " : "", - reg_val & (1<<22) ? "E0 " : ""); + if (cpu_has_mips_r2 && + ((current_cpu_data.processor_id & 0xff0000) == PRID_COMP_MIPS)) { + pr_err("Error bits: %s%s%s%s%s%s%s%s\n", + reg_val & (1<<29) ? "ED " : "", + reg_val & (1<<28) ? "ET " : "", + reg_val & (1<<27) ? "ES " : "", + reg_val & (1<<26) ? "EE " : "", + reg_val & (1<<25) ? "EB " : "", + reg_val & (1<<24) ? "EI " : "", + reg_val & (1<<23) ? "E1 " : "", + reg_val & (1<<22) ? "E0 " : ""); + } else { + pr_err("Error bits: %s%s%s%s%s%s%s\n", + reg_val & (1<<29) ? "ED " : "", + reg_val & (1<<28) ? "ET " : "", + reg_val & (1<<26) ? "EE " : "", + reg_val & (1<<25) ? "EB " : "", + reg_val & (1<<24) ? "EI " : "", + reg_val & (1<<23) ? "E1 " : "", + reg_val & (1<<22) ? "E0 " : ""); + } printk("IDX: 0x%08x\n", reg_val & ((1<<22)-1)); #if defined(CONFIG_CPU_MIPS32) || defined(CONFIG_CPU_MIPS64) @@ -1396,6 +1572,34 @@ asmlinkage void cache_parity_error(void) panic("Can't handle the cache error!"); } +asmlinkage void do_ftlb(void) +{ + const int field = 2 * sizeof(unsigned long); + unsigned int reg_val; + + /* For the moment, report the problem and hang. */ + if (cpu_has_mips_r2 && + ((current_cpu_data.processor_id & 0xff0000) == PRID_COMP_MIPS)) { + pr_err("FTLB error exception, cp0_ecc=0x%08x:\n", + read_c0_ecc()); + pr_err("cp0_errorepc == %0*lx\n", field, read_c0_errorepc()); + reg_val = read_c0_cacheerr(); + pr_err("c0_cacheerr == %08x\n", reg_val); + + if ((reg_val & 0xc0000000) == 0xc0000000) { + pr_err("Decoded c0_cacheerr: FTLB parity error\n"); + } else { + pr_err("Decoded c0_cacheerr: %s cache fault in %s reference.\n", + reg_val & (1<<30) ? "secondary" : "primary", + reg_val & (1<<31) ? "data" : "insn"); + } + } else { + pr_err("FTLB error exception\n"); + } + /* Just print the cacheerr bits for now */ + cache_parity_error(); +} + /* * SDBBP EJTAG debug exception handler. * We skip the instruction and return to the next instruction. @@ -1447,10 +1651,14 @@ int register_nmi_notifier(struct notifier_block *nb) void __noreturn nmi_exception_handler(struct pt_regs *regs) { + char str[100]; + raw_notifier_call_chain(&nmi_chain, 0, regs); bust_spinlocks(1); - printk("NMI taken!!!!\n"); - die("NMI", regs); + snprintf(str, 100, "CPU%d NMI taken, CP0_EPC=%lx\n", + smp_processor_id(), regs->cp0_epc); + regs->cp0_epc = read_c0_errorepc(); + die(str, regs); } #define VECTORSPACING 0x100 /* for EI/VI mode */ @@ -1513,7 +1721,6 @@ static void *set_vi_srs_handler(int n, vi_handler_t addr, int srs) unsigned char *b; BUG_ON(!cpu_has_veic && !cpu_has_vint); - BUG_ON((n < 0) && (n > 9)); if (addr == NULL) { handler = (unsigned long) do_default_vi; @@ -1546,19 +1753,6 @@ static void *set_vi_srs_handler(int n, vi_handler_t addr, int srs) extern char rollback_except_vec_vi; char *vec_start = using_rollback_handler() ? &rollback_except_vec_vi : &except_vec_vi; -#ifdef CONFIG_MIPS_MT_SMTC - /* - * We need to provide the SMTC vectored interrupt handler - * not only with the address of the handler, but with the - * Status.IM bit to be masked before going there. - */ - extern char except_vec_vi_mori; -#if defined(CONFIG_CPU_MICROMIPS) || defined(CONFIG_CPU_BIG_ENDIAN) - const int mori_offset = &except_vec_vi_mori - vec_start + 2; -#else - const int mori_offset = &except_vec_vi_mori - vec_start; -#endif -#endif /* CONFIG_MIPS_MT_SMTC */ #if defined(CONFIG_CPU_MICROMIPS) || defined(CONFIG_CPU_BIG_ENDIAN) const int lui_offset = &except_vec_vi_lui - vec_start + 2; const int ori_offset = &except_vec_vi_ori - vec_start + 2; @@ -1582,12 +1776,6 @@ static void *set_vi_srs_handler(int n, vi_handler_t addr, int srs) #else handler_len); #endif -#ifdef CONFIG_MIPS_MT_SMTC - BUG_ON(n > 7); /* Vector index %d exceeds SMTC maximum. */ - - h = (u16 *)(b + mori_offset); - *h = (0x100 << n); -#endif /* CONFIG_MIPS_MT_SMTC */ h = (u16 *)(b + lui_offset); *h = (handler >> 16) & 0xffff; h = (u16 *)(b + ori_offset); @@ -1627,7 +1815,6 @@ void *set_vi_handler(int n, vi_handler_t addr) } extern void tlb_init(void); -extern void flush_tlb_handlers(void); /* * Timer interrupt @@ -1642,7 +1829,7 @@ int cp0_compare_irq_shift; int cp0_perfcount_irq; EXPORT_SYMBOL_GPL(cp0_perfcount_irq); -static int __cpuinitdata noulri; +static int noulri; static int __init ulri_disable(char *s) { @@ -1653,32 +1840,16 @@ static int __init ulri_disable(char *s) } __setup("noulri", ulri_disable); -void __cpuinit per_cpu_trap_init(bool is_boot_cpu) +/* configure STATUS register */ +static void configure_status(void) { - unsigned int cpu = smp_processor_id(); - unsigned int status_set = ST0_CU0; - unsigned int hwrena = cpu_hwrena_impl_bits; -#ifdef CONFIG_MIPS_MT_SMTC - int secondaryTC = 0; - int bootTC = (cpu == 0); - - /* - * Only do per_cpu_trap_init() for first TC of Each VPE. - * Note that this hack assumes that the SMTC init code - * assigns TCs consecutively and in ascending order. - */ - - if (((read_c0_tcbind() & TCBIND_CURTC) != 0) && - ((read_c0_tcbind() & TCBIND_CURVPE) == cpu_data[cpu - 1].vpe_id)) - secondaryTC = 1; -#endif /* CONFIG_MIPS_MT_SMTC */ - /* * Disable coprocessors and select 32-bit or 64-bit addressing * and the 16/32 or 32/32 FPR register model. Reset the BEV * flag that some firmware may have left set and the TS bit (for * IP27). Set XX for ISA IV code to work. */ + unsigned int status_set = ST0_CU0; #ifdef CONFIG_64BIT status_set |= ST0_FR|ST0_KX|ST0_SX|ST0_UX; #endif @@ -1689,6 +1860,12 @@ void __cpuinit per_cpu_trap_init(bool is_boot_cpu) change_c0_status(ST0_CU|ST0_MX|ST0_RE|ST0_FR|ST0_BEV|ST0_TS|ST0_KX|ST0_SX|ST0_UX, status_set); +} + +/* configure HWRENA register */ +static void configure_hwrena(void) +{ + unsigned int hwrena = cpu_hwrena_impl_bits; if (cpu_has_mips_r2) hwrena |= 0x0000000f; @@ -1698,11 +1875,10 @@ void __cpuinit per_cpu_trap_init(bool is_boot_cpu) if (hwrena) write_c0_hwrena(hwrena); +} -#ifdef CONFIG_MIPS_MT_SMTC - if (!secondaryTC) { -#endif /* CONFIG_MIPS_MT_SMTC */ - +static void configure_exception_vector(void) +{ if (cpu_has_veic || cpu_has_vint) { unsigned long sr = set_c0_status(ST0_BEV); write_c0_ebase(ebase); @@ -1718,6 +1894,16 @@ void __cpuinit per_cpu_trap_init(bool is_boot_cpu) } else set_c0_cause(CAUSEF_IV); } +} + +void per_cpu_trap_init(bool is_boot_cpu) +{ + unsigned int cpu = smp_processor_id(); + + configure_status(); + configure_hwrena(); + + configure_exception_vector(); /* * Before R2 both interrupt numbers were fixed to 7, so on R2 only: @@ -1737,10 +1923,6 @@ void __cpuinit per_cpu_trap_init(bool is_boot_cpu) cp0_perfcount_irq = -1; } -#ifdef CONFIG_MIPS_MT_SMTC - } -#endif /* CONFIG_MIPS_MT_SMTC */ - if (!cpu_data[cpu].asid_cache) cpu_data[cpu].asid_cache = ASID_FIRST_VERSION; @@ -1749,28 +1931,15 @@ void __cpuinit per_cpu_trap_init(bool is_boot_cpu) BUG_ON(current->mm); enter_lazy_tlb(&init_mm, current); -#ifdef CONFIG_MIPS_MT_SMTC - if (bootTC) { -#endif /* CONFIG_MIPS_MT_SMTC */ /* Boot CPU's cache setup in setup_arch(). */ if (!is_boot_cpu) cpu_cache_init(); tlb_init(); -#ifdef CONFIG_MIPS_MT_SMTC - } else if (!secondaryTC) { - /* - * First TC in non-boot VPE must do subset of tlb_init() - * for MMU countrol registers. - */ - write_c0_pagemask(PM_DEFAULT_MASK); - write_c0_wired(0); - } -#endif /* CONFIG_MIPS_MT_SMTC */ TLBMISS_HANDLER_SETUP(); } /* Install CPU exception handler */ -void __cpuinit set_handler(unsigned long offset, void *addr, unsigned long size) +void set_handler(unsigned long offset, void *addr, unsigned long size) { #ifdef CONFIG_CPU_MICROMIPS memcpy((void *)(ebase + offset), ((unsigned char *)addr - 1), size); @@ -1780,7 +1949,7 @@ void __cpuinit set_handler(unsigned long offset, void *addr, unsigned long size) local_flush_icache_range(ebase + offset, ebase + offset + size); } -static char panic_null_cerr[] __cpuinitdata = +static char panic_null_cerr[] = "Trying to set NULL cache error exception handler"; /* @@ -1788,7 +1957,7 @@ static char panic_null_cerr[] __cpuinitdata = * This is suitable only for the cache error exception which is the only * exception handler that is being run uncached. */ -void __cpuinit set_uncached_handler(unsigned long offset, void *addr, +void set_uncached_handler(unsigned long offset, void *addr, unsigned long size) { unsigned long uncached_ebase = CKSEG1ADDR(ebase); @@ -1837,6 +2006,15 @@ void __init trap_init(void) ebase += (read_c0_ebase() & 0x3ffff000); } + if (cpu_has_mmips) { + unsigned int config3 = read_c0_config3(); + + if (IS_ENABLED(CONFIG_CPU_MICROMIPS)) + write_c0_config3(config3 | MIPS_CONF3_ISA_OE); + else + write_c0_config3(config3 & ~MIPS_CONF3_ISA_OE); + } + if (board_ebase_setup) board_ebase_setup(); per_cpu_trap_init(true); @@ -1912,6 +2090,7 @@ void __init trap_init(void) set_except_vector(11, handle_cpu); set_except_vector(12, handle_ov); set_except_vector(13, handle_tr); + set_except_vector(14, handle_msa_fpe); if (current_cpu_type() == CPU_R6000 || current_cpu_type() == CPU_R6000A) { @@ -1934,6 +2113,8 @@ void __init trap_init(void) if (cpu_has_fpu && !cpu_has_nofpuex) set_except_vector(15, handle_fpe); + set_except_vector(16, handle_ftlb); + set_except_vector(21, handle_msa); set_except_vector(22, handle_mdmx); if (cpu_has_mcheck) @@ -1956,9 +2137,37 @@ void __init trap_init(void) set_handler(0x080, &except_vec3_generic, 0x80); local_flush_icache_range(ebase, ebase + 0x400); - flush_tlb_handlers(); sort_extable(__start___dbe_table, __stop___dbe_table); cu2_notifier(default_cu2_call, 0x80000000); /* Run last */ } + +static int trap_pm_notifier(struct notifier_block *self, unsigned long cmd, + void *v) +{ + switch (cmd) { + case CPU_PM_ENTER_FAILED: + case CPU_PM_EXIT: + configure_status(); + configure_hwrena(); + configure_exception_vector(); + + /* Restore register with CPU number for TLB handlers */ + TLBMISS_HANDLER_RESTORE(); + + break; + } + + return NOTIFY_OK; +} + +static struct notifier_block trap_pm_notifier_block = { + .notifier_call = trap_pm_notifier, +}; + +static int __init trap_pm_init(void) +{ + return cpu_pm_register_notifier(&trap_pm_notifier_block); +} +arch_initcall(trap_pm_init); |
