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On PowerMac G5 (PPC970, CONFIG_PPC_970_NAP) the system panics shortly
after boot with symptoms including instruction fetch faults, kernel data
access faults, and stack corruption, predominantly on SMP and always
somewhere inside softirq processing.
The PPC970 idle path works by setting _TLF_NAPPING in the current
thread's local flags before entering the MSR_POW nap loop. When any
async interrupt wakes the CPU, nap_adjust_return() is expected to detect
_TLF_NAPPING, clear it, and rewrite regs->NIP to power4_idle_nap_return
so that the interrupt returns cleanly to the caller of power4_idle_nap()
rather than back into the nap spin loop.
DEFINE_INTERRUPT_HANDLER_ASYNC generates the following sequence:
irq_enter_rcu();
____func(regs); /* timer_interrupt / do_IRQ body */
irq_exit_rcu(); /* softirqs run here, irqs re-enabled */
arch_interrupt_async_exit_prepare(regs); /* nap_adjust_return was here */
irqentry_exit(regs, state);
irq_exit_rcu() calls invoke_softirq() -> do_softirq_own_stack(), which
runs softirqs with hardware interrupts re-enabled. A nested async
interrupt can therefore arrive while _TLF_NAPPING is still set. That
nested interrupt reaches nap_adjust_return() in its own
arch_interrupt_async_exit_prepare() call, finds _TLF_NAPPING set, and
redirects *its own* regs->NIP to power4_idle_nap_return. Returning via
that blr with an unrelated LR on the softirq stack jumps to a garbage
address, causing the observed crashes.
The comment that previously lived in arch_interrupt_async_exit_prepare()
even described this exact hazard ("must come before irq_exit()"), but
nap_adjust_return() was placed after irq_exit_rcu() in the macro, so
the protection was never effective.
Fix this by calling nap_adjust_return() inside DEFINE_INTERRUPT_HANDLER_ASYNC
immediately before irq_exit_rcu(), ensuring _TLF_NAPPING is cleared and
regs->NIP is adjusted before any code that can re-enable interrupts or
invoke softirqs runs. Move the explanatory comment into
nap_adjust_return() itself and remove it from arch_interrupt_async_exit_prepare().
Fixes: bee25f97ad ("powerpc: Enable GENERIC_ENTRY feature")
Closes: https://lore.kernel.org/all/87wlvazrdy.fsf@igel.home/
Reported-by: Andreas Schwab <schwab@linux-m68k.org>
Signed-off-by: Mukesh Kumar Chaurasiya (IBM) <mkchauras@gmail.com>
Tested-by: John Ogness <john.ogness@linutronix.de>
Signed-off-by: Madhavan Srinivasan <maddy@linux.ibm.com>
Link: https://patch.msgid.link/20260707172430.790040-1-mkchauras@gmail.com
534 lines
15 KiB
C
534 lines
15 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef _ASM_PPC_ENTRY_COMMON_H
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#define _ASM_PPC_ENTRY_COMMON_H
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#include <asm/cputime.h>
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#include <asm/interrupt.h>
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#include <asm/runlatch.h>
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#include <asm/stacktrace.h>
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#include <asm/switch_to.h>
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#include <asm/tm.h>
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#ifdef CONFIG_PPC_IRQ_SOFT_MASK_DEBUG
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/*
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* WARN/BUG is handled with a program interrupt so minimise checks here to
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* avoid recursion and maximise the chance of getting the first oops handled.
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*/
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#define INT_SOFT_MASK_BUG_ON(regs, cond) \
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do { \
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if ((user_mode(regs) || (TRAP(regs) != INTERRUPT_PROGRAM))) \
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BUG_ON(cond); \
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} while (0)
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#else
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#define INT_SOFT_MASK_BUG_ON(regs, cond)
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#endif
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#ifdef CONFIG_PPC_BOOK3S_64
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extern char __end_soft_masked[];
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bool search_kernel_soft_mask_table(unsigned long addr);
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unsigned long search_kernel_restart_table(unsigned long addr);
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DECLARE_STATIC_KEY_FALSE(interrupt_exit_not_reentrant);
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static inline bool is_implicit_soft_masked(struct pt_regs *regs)
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{
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if (user_mode(regs))
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return false;
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if (regs->nip >= (unsigned long)__end_soft_masked)
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return false;
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return search_kernel_soft_mask_table(regs->nip);
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}
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static inline void srr_regs_clobbered(void)
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{
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local_paca->srr_valid = 0;
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local_paca->hsrr_valid = 0;
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}
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#else
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static inline unsigned long search_kernel_restart_table(unsigned long addr)
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{
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return 0;
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}
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static inline bool is_implicit_soft_masked(struct pt_regs *regs)
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{
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return false;
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}
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static inline void srr_regs_clobbered(void)
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{
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}
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#endif
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static inline void nap_adjust_return(struct pt_regs *regs)
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{
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#ifdef CONFIG_PPC_970_NAP
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/*
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* Adjust the nap return address before irq_exit_rcu(). irq_exit_rcu()
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* may invoke softirqs with interrupts re-enabled, allowing a nested
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* async interrupt to arrive. If _TLF_NAPPING is still set at that
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* point, the nested interrupt would erroneously redirect its own
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* return address to power4_idle_nap_return, corrupting the stack.
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*/
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if (unlikely(test_thread_local_flags(_TLF_NAPPING))) {
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/* Can avoid a test-and-clear because NMIs do not call this */
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clear_thread_local_flags(_TLF_NAPPING);
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regs_set_return_ip(regs, (unsigned long)power4_idle_nap_return);
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}
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#endif
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}
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static __always_inline void booke_load_dbcr0(void)
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{
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#ifdef CONFIG_PPC_ADV_DEBUG_REGS
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unsigned long dbcr0 = current->thread.debug.dbcr0;
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if (likely(!(dbcr0 & DBCR0_IDM)))
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return;
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/*
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* Check to see if the dbcr0 register is set up to debug.
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* Use the internal debug mode bit to do this.
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*/
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mtmsr(mfmsr() & ~MSR_DE);
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if (IS_ENABLED(CONFIG_PPC32)) {
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isync();
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global_dbcr0[smp_processor_id()] = mfspr(SPRN_DBCR0);
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}
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mtspr(SPRN_DBCR0, dbcr0);
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mtspr(SPRN_DBSR, -1);
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#endif
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}
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static inline void booke_restore_dbcr0(void)
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{
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#ifdef CONFIG_PPC_ADV_DEBUG_REGS
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unsigned long dbcr0 = current->thread.debug.dbcr0;
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if (IS_ENABLED(CONFIG_PPC32) && unlikely(dbcr0 & DBCR0_IDM)) {
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mtspr(SPRN_DBSR, -1);
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mtspr(SPRN_DBCR0, global_dbcr0[smp_processor_id()]);
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}
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#endif
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}
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static inline void check_return_regs_valid(struct pt_regs *regs)
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{
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#ifdef CONFIG_PPC_BOOK3S_64
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unsigned long trap, srr0, srr1;
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static bool warned;
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u8 *validp;
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char *h;
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if (trap_is_scv(regs))
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return;
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trap = TRAP(regs);
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// EE in HV mode sets HSRRs like 0xea0
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if (cpu_has_feature(CPU_FTR_HVMODE) && trap == INTERRUPT_EXTERNAL)
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trap = 0xea0;
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switch (trap) {
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case 0x980:
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case INTERRUPT_H_DATA_STORAGE:
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case 0xe20:
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case 0xe40:
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case INTERRUPT_HMI:
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case 0xe80:
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case 0xea0:
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case INTERRUPT_H_FAC_UNAVAIL:
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case 0x1200:
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case 0x1500:
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case 0x1600:
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case 0x1800:
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validp = &local_paca->hsrr_valid;
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if (!READ_ONCE(*validp))
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return;
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srr0 = mfspr(SPRN_HSRR0);
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srr1 = mfspr(SPRN_HSRR1);
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h = "H";
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break;
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default:
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validp = &local_paca->srr_valid;
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if (!READ_ONCE(*validp))
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return;
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srr0 = mfspr(SPRN_SRR0);
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srr1 = mfspr(SPRN_SRR1);
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h = "";
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break;
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}
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if (srr0 == regs->nip && srr1 == regs->msr)
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return;
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/*
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* A NMI / soft-NMI interrupt may have come in after we found
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* srr_valid and before the SRRs are loaded. The interrupt then
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* comes in and clobbers SRRs and clears srr_valid. Then we load
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* the SRRs here and test them above and find they don't match.
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*
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* Test validity again after that, to catch such false positives.
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*
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* This test in general will have some window for false negatives
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* and may not catch and fix all such cases if an NMI comes in
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* later and clobbers SRRs without clearing srr_valid, but hopefully
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* such things will get caught most of the time, statistically
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* enough to be able to get a warning out.
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*/
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if (!READ_ONCE(*validp))
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return;
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if (!data_race(warned)) {
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data_race(warned = true);
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pr_warn("%sSRR0 was: %lx should be: %lx\n", h, srr0, regs->nip);
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pr_warn("%sSRR1 was: %lx should be: %lx\n", h, srr1, regs->msr);
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show_regs(regs);
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}
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WRITE_ONCE(*validp, 0); /* fixup */
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#endif
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}
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static inline void arch_interrupt_enter_prepare(struct pt_regs *regs)
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{
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#ifdef CONFIG_PPC64
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irq_soft_mask_set(IRQS_ALL_DISABLED);
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/*
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* If the interrupt was taken with HARD_DIS clear, then enable MSR[EE].
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* Asynchronous interrupts get here with HARD_DIS set (see below), so
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* this enables MSR[EE] for synchronous interrupts. IRQs remain
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* soft-masked. The interrupt handler may later call
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* interrupt_cond_local_irq_enable() to achieve a regular process
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* context.
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*/
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if (!(local_paca->irq_happened & PACA_IRQ_HARD_DIS)) {
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INT_SOFT_MASK_BUG_ON(regs, !(regs->msr & MSR_EE));
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__hard_irq_enable();
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} else {
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__hard_RI_enable();
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}
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/* Enable MSR[RI] early, to support kernel SLB and hash faults */
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#endif
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if (!regs_irqs_disabled(regs))
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trace_hardirqs_off();
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if (user_mode(regs)) {
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kuap_lock();
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account_cpu_user_entry();
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account_stolen_time();
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} else {
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kuap_save_and_lock(regs);
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/*
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* CT_WARN_ON comes here via program_check_exception,
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* so avoid recursion.
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*/
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if (TRAP(regs) != INTERRUPT_PROGRAM)
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CT_WARN_ON(ct_state() != CT_STATE_KERNEL &&
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ct_state() != CT_STATE_IDLE);
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INT_SOFT_MASK_BUG_ON(regs, is_implicit_soft_masked(regs));
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INT_SOFT_MASK_BUG_ON(regs, regs_irqs_disabled(regs) &&
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search_kernel_restart_table(regs->nip));
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}
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INT_SOFT_MASK_BUG_ON(regs, !regs_irqs_disabled(regs) &&
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!(regs->msr & MSR_EE));
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booke_restore_dbcr0();
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}
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/*
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* Care should be taken to note that arch_interrupt_exit_prepare and
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* arch_interrupt_async_exit_prepare do not necessarily return immediately to
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* regs context (e.g., if regs is usermode, we don't necessarily return to
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* user mode). Other interrupts might be taken between here and return,
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* context switch / preemption may occur in the exit path after this, or a
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* signal may be delivered, etc.
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*
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* The real interrupt exit code is platform specific, e.g.,
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* interrupt_exit_user_prepare / interrupt_exit_kernel_prepare for 64s.
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*
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* However arch_interrupt_nmi_exit_prepare does return directly to regs, because
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* NMIs do not do "exit work" or replay soft-masked interrupts.
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*/
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static inline void arch_interrupt_exit_prepare(struct pt_regs *regs)
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{
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if (user_mode(regs)) {
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BUG_ON(regs_is_unrecoverable(regs));
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BUG_ON(regs_irqs_disabled(regs));
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/*
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* We don't need to restore AMR on the way back to userspace for KUAP.
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* AMR can only have been unlocked if we interrupted the kernel.
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*/
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kuap_assert_locked();
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}
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/* irqentry_exit expects to be called with interrupts disabled */
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local_irq_disable();
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}
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static inline void arch_interrupt_async_enter_prepare(struct pt_regs *regs)
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{
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#ifdef CONFIG_PPC64
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/* Ensure arch_interrupt_enter_prepare does not enable MSR[EE] */
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local_paca->irq_happened |= PACA_IRQ_HARD_DIS;
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#endif
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arch_interrupt_enter_prepare(regs);
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#ifdef CONFIG_PPC_BOOK3S_64
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/*
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* RI=1 is set by arch_interrupt_enter_prepare, so this thread flags access
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* has to come afterward (it can cause SLB faults).
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*/
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if (cpu_has_feature(CPU_FTR_CTRL) &&
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!test_thread_local_flags(_TLF_RUNLATCH))
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__ppc64_runlatch_on();
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#endif
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}
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static inline void arch_interrupt_async_exit_prepare(struct pt_regs *regs)
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{
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arch_interrupt_exit_prepare(regs);
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}
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struct interrupt_nmi_state {
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#ifdef CONFIG_PPC64
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u8 irq_soft_mask;
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u8 irq_happened;
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u8 ftrace_enabled;
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u64 softe;
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#endif
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};
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static inline bool nmi_disables_ftrace(struct pt_regs *regs)
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{
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/* Allow DEC and PMI to be traced when they are soft-NMI */
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if (IS_ENABLED(CONFIG_PPC_BOOK3S_64)) {
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if (TRAP(regs) == INTERRUPT_DECREMENTER)
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return false;
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if (TRAP(regs) == INTERRUPT_PERFMON)
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return false;
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}
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if (IS_ENABLED(CONFIG_PPC_BOOK3E_64)) {
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if (TRAP(regs) == INTERRUPT_PERFMON)
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return false;
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}
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return true;
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}
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static inline void arch_interrupt_nmi_enter_prepare(struct pt_regs *regs,
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struct interrupt_nmi_state *state)
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{
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#ifdef CONFIG_PPC64
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state->irq_soft_mask = local_paca->irq_soft_mask;
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state->irq_happened = local_paca->irq_happened;
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state->softe = regs->softe;
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/*
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* Set IRQS_ALL_DISABLED unconditionally so irqs_disabled() does
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* the right thing, and set IRQ_HARD_DIS. We do not want to reconcile
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* because that goes through irq tracing which we don't want in NMI.
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*/
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local_paca->irq_soft_mask = IRQS_ALL_DISABLED;
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local_paca->irq_happened |= PACA_IRQ_HARD_DIS;
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if (!(regs->msr & MSR_EE) || is_implicit_soft_masked(regs)) {
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/*
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* Adjust regs->softe to be soft-masked if it had not been
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* reconcied (e.g., interrupt entry with MSR[EE]=0 but softe
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* not yet set disabled), or if it was in an implicit soft
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* masked state. This makes regs_irqs_disabled(regs)
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* behave as expected.
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*/
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regs->softe = IRQS_ALL_DISABLED;
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}
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__hard_RI_enable();
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/* Don't do any per-CPU operations until interrupt state is fixed */
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if (nmi_disables_ftrace(regs)) {
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state->ftrace_enabled = this_cpu_get_ftrace_enabled();
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this_cpu_set_ftrace_enabled(0);
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}
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#endif
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}
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static inline void arch_interrupt_nmi_exit_prepare(struct pt_regs *regs,
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struct interrupt_nmi_state *state)
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{
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/*
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* nmi does not call nap_adjust_return because nmi should not create
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* new work to do (must use irq_work for that).
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*/
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#ifdef CONFIG_PPC64
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#ifdef CONFIG_PPC_BOOK3S
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if (regs_irqs_disabled(regs)) {
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unsigned long rst = search_kernel_restart_table(regs->nip);
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if (rst)
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regs_set_return_ip(regs, rst);
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}
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#endif
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if (nmi_disables_ftrace(regs))
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this_cpu_set_ftrace_enabled(state->ftrace_enabled);
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/* Check we didn't change the pending interrupt mask. */
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WARN_ON_ONCE((state->irq_happened | PACA_IRQ_HARD_DIS) != local_paca->irq_happened);
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regs->softe = state->softe;
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local_paca->irq_happened = state->irq_happened;
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local_paca->irq_soft_mask = state->irq_soft_mask;
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#endif
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}
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static __always_inline void arch_enter_from_user_mode(struct pt_regs *regs)
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{
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kuap_lock();
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if (IS_ENABLED(CONFIG_PPC_IRQ_SOFT_MASK_DEBUG))
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BUG_ON(irq_soft_mask_return() != IRQS_ALL_DISABLED);
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BUG_ON(regs_is_unrecoverable(regs));
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BUG_ON(!user_mode(regs));
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BUG_ON(regs_irqs_disabled(regs));
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#ifdef CONFIG_PPC_PKEY
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if (mmu_has_feature(MMU_FTR_PKEY) && trap_is_syscall(regs)) {
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unsigned long amr, iamr;
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bool flush_needed = false;
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/*
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* When entering from userspace we mostly have the AMR/IAMR
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* different from kernel default values. Hence don't compare.
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*/
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amr = mfspr(SPRN_AMR);
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iamr = mfspr(SPRN_IAMR);
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regs->amr = amr;
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regs->iamr = iamr;
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if (mmu_has_feature(MMU_FTR_KUAP)) {
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mtspr(SPRN_AMR, AMR_KUAP_BLOCKED);
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flush_needed = true;
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}
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if (mmu_has_feature(MMU_FTR_BOOK3S_KUEP)) {
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mtspr(SPRN_IAMR, AMR_KUEP_BLOCKED);
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flush_needed = true;
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}
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if (flush_needed)
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isync();
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}
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#endif
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kuap_assert_locked();
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booke_restore_dbcr0();
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account_cpu_user_entry();
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account_stolen_time();
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/*
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* This is not required for the syscall exit path, but makes the
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* stack frame look nicer. If this was initialised in the first stack
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* frame, or if the unwinder was taught the first stack frame always
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* returns to user with IRQS_ENABLED, this store could be avoided!
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*/
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irq_soft_mask_regs_set_state(regs, IRQS_ENABLED);
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/*
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* If system call is called with TM active, set _TIF_RESTOREALL to
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* prevent RFSCV being used to return to userspace, because POWER9
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|
* TM implementation has problems with this instruction returning to
|
|
* transactional state. Final register values are not relevant because
|
|
* the transaction will be aborted upon return anyway. Or in the case
|
|
* of unsupported_scv SIGILL fault, the return state does not much
|
|
* matter because it's an edge case.
|
|
*/
|
|
if (IS_ENABLED(CONFIG_PPC_TRANSACTIONAL_MEM) &&
|
|
unlikely(MSR_TM_TRANSACTIONAL(regs->msr)))
|
|
set_bits(_TIF_RESTOREALL, ¤t_thread_info()->flags);
|
|
|
|
/*
|
|
* If the system call was made with a transaction active, doom it and
|
|
* return without performing the system call. Unless it was an
|
|
* unsupported scv vector, in which case it's treated like an illegal
|
|
* instruction.
|
|
*/
|
|
#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
|
|
if (unlikely(MSR_TM_TRANSACTIONAL(regs->msr)) &&
|
|
!trap_is_unsupported_scv(regs)) {
|
|
/* Enable TM in the kernel, and disable EE (for scv) */
|
|
hard_irq_disable();
|
|
mtmsr(mfmsr() | MSR_TM);
|
|
|
|
/* tabort, this dooms the transaction, nothing else */
|
|
asm volatile(".long 0x7c00071d | ((%0) << 16)"
|
|
:: "r"(TM_CAUSE_SYSCALL | TM_CAUSE_PERSISTENT));
|
|
|
|
/*
|
|
* Userspace will never see the return value. Execution will
|
|
* resume after the tbegin. of the aborted transaction with the
|
|
* checkpointed register state. A context switch could occur
|
|
* or signal delivered to the process before resuming the
|
|
* doomed transaction context, but that should all be handled
|
|
* as expected.
|
|
*/
|
|
return;
|
|
}
|
|
#endif /* CONFIG_PPC_TRANSACTIONAL_MEM */
|
|
}
|
|
|
|
#define arch_enter_from_user_mode arch_enter_from_user_mode
|
|
|
|
static inline void arch_exit_to_user_mode_prepare(struct pt_regs *regs,
|
|
unsigned long ti_work)
|
|
{
|
|
unsigned long mathflags;
|
|
|
|
if (IS_ENABLED(CONFIG_PPC_BOOK3S_64) && IS_ENABLED(CONFIG_PPC_FPU)) {
|
|
if (IS_ENABLED(CONFIG_PPC_TRANSACTIONAL_MEM) &&
|
|
unlikely((ti_work & _TIF_RESTORE_TM))) {
|
|
restore_tm_state(regs);
|
|
} else {
|
|
mathflags = MSR_FP;
|
|
|
|
if (cpu_has_feature(CPU_FTR_VSX))
|
|
mathflags |= MSR_VEC | MSR_VSX;
|
|
else if (cpu_has_feature(CPU_FTR_ALTIVEC))
|
|
mathflags |= MSR_VEC;
|
|
|
|
/*
|
|
* If userspace MSR has all available FP bits set,
|
|
* then they are live and no need to restore. If not,
|
|
* it means the regs were given up and restore_math
|
|
* may decide to restore them (to avoid taking an FP
|
|
* fault).
|
|
*/
|
|
if ((regs->msr & mathflags) != mathflags)
|
|
restore_math(regs);
|
|
}
|
|
}
|
|
|
|
check_return_regs_valid(regs);
|
|
#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
|
|
local_paca->tm_scratch = regs->msr;
|
|
#endif
|
|
/* Restore user access locks last */
|
|
kuap_user_restore(regs);
|
|
}
|
|
|
|
#define arch_exit_to_user_mode_prepare arch_exit_to_user_mode_prepare
|
|
|
|
static __always_inline void arch_exit_to_user_mode(void)
|
|
{
|
|
booke_load_dbcr0();
|
|
|
|
account_cpu_user_exit();
|
|
}
|
|
|
|
#define arch_exit_to_user_mode arch_exit_to_user_mode
|
|
|
|
#endif /* _ASM_PPC_ENTRY_COMMON_H */
|