forked from Minki/linux
MIPS: IRQ Stack: Unwind IRQ stack onto task stack
When the separate IRQ stack was introduced, stack unwinding only proceeded as far as the top of the IRQ stack, leading to kernel backtraces being less useful, lacking the trace of what was interrupted. Fix this by providing a means for the kernel to unwind the IRQ stack onto the interrupted task stack. The processor state is saved to the kernel task stack on interrupt. The IRQ_STACK_START macro reserves an unsigned long at the top of the IRQ stack where the interrupted task stack pointer can be saved. After the active stack is switched to the IRQ stack, save the interrupted tasks stack pointer to the reserved location. Fix the stack unwinding code to look for the frame being the top of the IRQ stack and if so get the next frame from the saved location. The existing test does not work with the separate stack since the ra is no longer pointed at ret_from_{irq,exception}. The test to stop unwinding the stack 32 bytes from the top of a stack must be modified to allow unwinding to continue up to the location of the saved task stack pointer when on the IRQ stack. The low / high marks of the stack are set depending on whether the sp is on an irq stack or not. Signed-off-by: Matt Redfearn <matt.redfearn@imgtec.com> Cc: Paolo Bonzini <pbonzini@redhat.com> Cc: Marcin Nowakowski <marcin.nowakowski@imgtec.com> Cc: Masanari Iida <standby24x7@gmail.com> Cc: Chris Metcalf <cmetcalf@mellanox.com> Cc: James Hogan <james.hogan@imgtec.com> Cc: Paul Burton <paul.burton@imgtec.com> Cc: Ingo Molnar <mingo@kernel.org> Cc: Jason A. Donenfeld <jason@zx2c4.com> Cc: Andrew Morton <akpm@linux-foundation.org> Cc: linux-mips@linux-mips.org Cc: linux-kernel@vger.kernel.org Patchwork: https://patchwork.linux-mips.org/patch/15788/ Signed-off-by: Ralf Baechle <ralf@linux-mips.org>
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@ -18,9 +18,24 @@
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#include <irq.h>
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#define IRQ_STACK_SIZE THREAD_SIZE
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#define IRQ_STACK_START (IRQ_STACK_SIZE - sizeof(unsigned long))
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extern void *irq_stack[NR_CPUS];
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/*
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* The highest address on the IRQ stack contains a dummy frame put down in
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* genex.S (handle_int & except_vec_vi_handler) which is structured as follows:
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*
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* top ------------
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* | task sp | <- irq_stack[cpu] + IRQ_STACK_START
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* ------------
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* | | <- First frame of IRQ context
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* ------------
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*
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* task sp holds a copy of the task stack pointer where the struct pt_regs
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* from exception entry can be found.
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*/
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static inline bool on_irq_stack(int cpu, unsigned long sp)
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{
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unsigned long low = (unsigned long)irq_stack[cpu];
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@ -102,6 +102,7 @@ void output_thread_info_defines(void)
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DEFINE(_THREAD_SIZE, THREAD_SIZE);
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DEFINE(_THREAD_MASK, THREAD_MASK);
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DEFINE(_IRQ_STACK_SIZE, IRQ_STACK_SIZE);
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DEFINE(_IRQ_STACK_START, IRQ_STACK_START);
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BLANK();
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}
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@ -215,9 +215,11 @@ NESTED(handle_int, PT_SIZE, sp)
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beq t0, t1, 2f
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/* Switch to IRQ stack */
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li t1, _IRQ_STACK_SIZE
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li t1, _IRQ_STACK_START
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PTR_ADD sp, t0, t1
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/* Save task's sp on IRQ stack so that unwinding can follow it */
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LONG_S s1, 0(sp)
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2:
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jal plat_irq_dispatch
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@ -325,9 +327,11 @@ NESTED(except_vec_vi_handler, 0, sp)
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beq t0, t1, 2f
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/* Switch to IRQ stack */
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li t1, _IRQ_STACK_SIZE
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li t1, _IRQ_STACK_START
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PTR_ADD sp, t0, t1
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/* Save task's sp on IRQ stack so that unwinding can follow it */
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LONG_S s1, 0(sp)
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2:
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jalr v0
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@ -488,31 +488,52 @@ unsigned long notrace unwind_stack_by_address(unsigned long stack_page,
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unsigned long pc,
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unsigned long *ra)
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{
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unsigned long low, high, irq_stack_high;
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struct mips_frame_info info;
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unsigned long size, ofs;
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struct pt_regs *regs;
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int leaf;
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extern void ret_from_irq(void);
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extern void ret_from_exception(void);
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if (!stack_page)
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return 0;
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/*
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* If we reached the bottom of interrupt context,
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* return saved pc in pt_regs.
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* IRQ stacks start at IRQ_STACK_START
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* task stacks at THREAD_SIZE - 32
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*/
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if (pc == (unsigned long)ret_from_irq ||
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pc == (unsigned long)ret_from_exception) {
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struct pt_regs *regs;
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if (*sp >= stack_page &&
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*sp + sizeof(*regs) <= stack_page + THREAD_SIZE - 32) {
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regs = (struct pt_regs *)*sp;
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pc = regs->cp0_epc;
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if (!user_mode(regs) && __kernel_text_address(pc)) {
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*sp = regs->regs[29];
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*ra = regs->regs[31];
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return pc;
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}
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low = stack_page;
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if (!preemptible() && on_irq_stack(raw_smp_processor_id(), *sp)) {
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high = stack_page + IRQ_STACK_START;
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irq_stack_high = high;
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} else {
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high = stack_page + THREAD_SIZE - 32;
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irq_stack_high = 0;
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}
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/*
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* If we reached the top of the interrupt stack, start unwinding
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* the interrupted task stack.
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*/
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if (unlikely(*sp == irq_stack_high)) {
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unsigned long task_sp = *(unsigned long *)*sp;
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/*
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* Check that the pointer saved in the IRQ stack head points to
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* something within the stack of the current task
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*/
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if (!object_is_on_stack((void *)task_sp))
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return 0;
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/*
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* Follow pointer to tasks kernel stack frame where interrupted
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* state was saved.
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*/
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regs = (struct pt_regs *)task_sp;
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pc = regs->cp0_epc;
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if (!user_mode(regs) && __kernel_text_address(pc)) {
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*sp = regs->regs[29];
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*ra = regs->regs[31];
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return pc;
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}
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return 0;
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}
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@ -533,8 +554,7 @@ unsigned long notrace unwind_stack_by_address(unsigned long stack_page,
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if (leaf < 0)
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return 0;
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if (*sp < stack_page ||
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*sp + info.frame_size > stack_page + THREAD_SIZE - 32)
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if (*sp < low || *sp + info.frame_size > high)
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return 0;
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if (leaf)
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