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Most Crashpad builds use Microsoft's armasm64.exe macro assembler for .asm source files. When building in Chromium, clang-cl is used as the assembler instead. Since the two assemblers recognize different assembly dialects, the same .asm file can't be used for each. As a workaround, use a prebuilt .obj file when the Microsoft-dialect assembler isn't available. The obj file is generated from the capture_context_win_arm64.asm by armasm64 macro assembler. If this asm file is modified, the obj file needs to be updated. Change-Id: Id5a4a949997a27b04815aeb79b2540d30a52d34c Reviewed-on: https://chromium-review.googlesource.com/c/crashpad/crashpad/+/1632749 Reviewed-by: Mark Mentovai <mark@chromium.org> Commit-Queue: Mark Mentovai <mark@chromium.org>
174 lines
5.7 KiB
ArmAsm
174 lines
5.7 KiB
ArmAsm
// Copyright 2018 The Crashpad Authors. All rights reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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// namespace crashpad {
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// void CaptureContext(ucontext_t* context);
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// } // namespace crashpad
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#define CAPTURECONTEXT_SYMBOL _ZN8crashpad14CaptureContextEP8ucontext
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.text
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.globl CAPTURECONTEXT_SYMBOL
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#if defined(__x86_64__)
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.balign 16, 0x90
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#elif defined(__aarch64__)
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.balign 4, 0x0
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#endif
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CAPTURECONTEXT_SYMBOL:
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#if defined(__x86_64__)
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.cfi_startproc
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pushq %rbp
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.cfi_def_cfa_offset 16
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.cfi_offset %rbp, -16
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movq %rsp, %rbp
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.cfi_def_cfa_register %rbp
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// Note that 16-byte stack alignment is not maintained because this function
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// does not call out to any other.
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// pushfq first, because some instructions (but probably none used here)
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// affect %rflags. %rflags will be in -8(%rbp).
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pushfq
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// General-purpose registers whose values haven’t changed can be captured
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// directly.
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movq %r8, 0x28(%rdi) // context->uc_mcontext.r8
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movq %r9, 0x30(%rdi) // context->uc_mcontext.r9
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movq %r10, 0x38(%rdi) // context->uc_mcontext.r10
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movq %r11, 0x40(%rdi) // context->uc_mcontext.r11
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movq %r12, 0x48(%rdi) // context->uc_mcontext.r12
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movq %r13, 0x50(%rdi) // context->uc_mcontext.r13
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movq %r14, 0x58(%rdi) // context->uc_mcontext.r14
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movq %r15, 0x60(%rdi) // context->uc_mcontext.r15
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// Because of the calling convention, there’s no way to recover the value of
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// the caller’s %rdi as it existed prior to calling this function. This
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// function captures a snapshot of the register state at its return, which
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// involves %rdi containing a pointer to its first argument. Callers that
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// require the value of %rdi prior to calling this function should obtain it
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// separately. For example:
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// uint64_t rdi;
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// asm("movq %%rdi, %0" : "=m"(rdi));
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movq %rdi, 0x68(%rdi) // context->uc_mcontext.rdi
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movq %rsi, 0x70(%rdi) // context->uc_mcontext.rsi
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// Use %r8 as a scratch register now that it has been saved.
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// The original %rbp was saved on the stack in this function’s prologue.
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movq (%rbp), %r8
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movq %r8, 0x78(%rdi) // context->uc_mcontext.rbp
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// Save the remaining general-purpose registers.
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movq %rbx, 0x80(%rdi) // context->uc_mcontext.rbx
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movq %rdx, 0x88(%rdi) // context->uc_mcontext.rdx
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movq %rax, 0x90(%rdi) // context->uc_mcontext.rax
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movq %rcx, 0x98(%rdi) // context->uc_mcontext.rcx
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// %rsp was saved in %rbp in this function’s prologue, but the caller’s %rsp
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// is 16 more than this value: 8 for the original %rbp saved on the stack in
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// this function’s prologue, and 8 for the return address saved on the stack
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// by the call instruction that reached this function.
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leaq 16(%rbp), %r8
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movq %r8, 0xa0(%rdi) // context->uc_mcontext.rsp
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// The return address saved on the stack used by the call of this function is
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// likely more useful than the current RIP here.
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movq 8(%rbp), %r8
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movq %r8, 0xa8(%rdi) // context->uc_mcontext.rip
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// The original %rflags was saved on the stack above.
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movq -8(%rbp), %r8
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movq %r8, 0xb0(%rdi) // context->uc_mcontext.eflags
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// Save the segment registers
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movw %cs, 0xb8(%rdi) // context->uc_mcontext.cs
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movw %gs, 0xba(%rdi) // context->uc_mcontext.gs
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movw %fs, 0xbc(%rdi) // context->uc_mcontext.fs
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xorw %ax, %ax
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movw %ax, 0xbe(%rdi) // context->uc_mcontext.padding
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// Zero out the remainder of the unused pseudo-registers
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xorq %r8, %r8
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movq %r8, 0xc0(%rdi) // context->uc_mcontext.err
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movq %r8, 0xc8(%rdi) // context->uc_mcontext.trapno
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movq %r8, 0xd0(%rdi) // context->uc_mcontext.oldmask
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movq %r8, 0xd8(%rdi) // context->uc_mcontext.cr2
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// Clean up by restoring clobbered registers, even those considered volatile
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// by the ABI, so that the captured context represents the state at this
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// function’s exit.
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movq 0x90(%rdi), %rax
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movq 0x28(%rdi), %r8
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// TODO(https://crashpad.chromium.org/bug/300): save floating-point registers.
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popfq
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popq %rbp
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ret
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.cfi_endproc
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#elif defined(__aarch64__)
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// Zero out fault_address, which is unused.
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str x31, [x0, #0xb0] // context->uc_mcontext.fault_address
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// Save general purpose registers in context->uc_mcontext.regs[i].
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// The original x0 can't be recovered.
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stp x0, x1, [x0, #0xb8]
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stp x2, x3, [x0, #0xc8]
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stp x4, x5, [x0, #0xd8]
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stp x6, x7, [x0, #0xe8]
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stp x8, x9, [x0, #0xf8]
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stp x10, x11, [x0, #0x108]
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stp x12, x13, [x0, #0x118]
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stp x14, x15, [x0, #0x128]
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stp x16, x17, [x0, #0x138]
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stp x18, x19, [x0, #0x148]
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stp x20, x21, [x0, #0x158]
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stp x22, x23, [x0, #0x168]
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stp x24, x25, [x0, #0x178]
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stp x26, x27, [x0, #0x188]
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stp x28, x29, [x0, #0x198]
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// The original LR can't be recovered.
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str LR, [x0, #0x1a8]
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// Use x1 as a scratch register.
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mov x1, SP
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str x1, [x0, #0x1b0] // context->uc_mcontext.sp
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// The link register holds the return address for this function.
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str LR, [x0, #0x1b8] // context->uc_mcontext.pc
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// pstate should hold SPSR but NZCV are the only bits we know about.
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mrs x1, NZCV
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str x1, [x0, #0x1c0] // context->uc_mcontext.pstate
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// Restore x1 from the saved context.
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ldr x1, [x0, #0xc0]
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// TODO(https://crashpad.chromium.org/bug/300): save floating-point registers.
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ret
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#endif // __x86_64__
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