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f4512cca0b
* exec/Makefile.in (.SUFFIXES): Include ., then `srcdir'. * exec/loader-aarch64.s (_start): * exec/loader-armeabi.s (_start): * exec/loader-mips64el.s (__start): * exec/loader-mipsel.s (__start): * exec/loader-x86.s (_start): * exec/loader-x86_64.s (_start): Get basename of opened exec file and make it the command name. Fix envp skipping on x86 and various leaks.
188 lines
5.1 KiB
ArmAsm
188 lines
5.1 KiB
ArmAsm
// Copyright (C) 2023 Free Software Foundation, Inc.
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//
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// This file is part of GNU Emacs.
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//
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// GNU Emacs is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published
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// by the Free Software Foundation, either version 3 of the License,
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// or (at your option) any later version.
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//
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// GNU Emacs is distributed in the hope that it will be useful, but
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// WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with GNU Emacs. If not, see <https://www.gnu.org/licenses/>.
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// Notice that aarch64 requires that sp be aligned to 16 bytes while
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// accessing memory from sp, so x20 is used to chase down the load
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// area.
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.section .text
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.global _start
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_start:
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//mov x8, 101 // SYS_nanosleep
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//adr x0, timespec // req
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//mov x1, #0 // rem
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//svc #0 // syscall
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mov x20, sp // x20 = sp
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ldr x10, [x20] // x10 = original SP
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add x20, x20, #16 // x20 = start of load area
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mov x28, #-1 // x28 = secondary fd
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.next_action:
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ldr x11, [x20] // action number
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and x12, x11, #-17 // actual action number
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cbz x12, .open_file // open file?
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cmp x12, #3 // jump?
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beq .rest_of_exec
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cmp x12, #4 // anonymous mmap?
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beq .do_mmap_anon
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.do_mmap:
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ldr x0, [x20, 8] // vm_address
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ldr x1, [x20, 32] // length
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ldr x2, [x20, 24] // protection
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ldr x3, [x20, 40] // flags
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tst x11, #16 // primary fd?
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mov x4, x29 // primary fd
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beq .do_mmap_1
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mov x4, x28 // secondary fd
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.do_mmap_1:
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mov x8, #222 // SYS_mmap
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ldr x5, [x20, 16] // file_offset
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svc #0 // syscall
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ldr x9, [x20, 8] // length
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cmp x0, x9 // mmap result
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bne .perror // print error
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ldr x3, [x20, 48] // clear
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add x1, x1, x0 // x1 = vm_address + end
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sub x3, x1, x3 // x3 = x1 - clear
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mov x0, #0 // x0 = 0
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.fill64:
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sub x2, x1, x3 // x2 = x1 - x3
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cmp x2, #63 // x2 >= 64?
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ble .fillb // start filling bytes
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stp x0, x0, [x3] // x3[0] = 0, x3[1] = 0
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stp x0, x0, [x3, 16] // x3[2] = 0, x3[3] = 0
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stp x0, x0, [x3, 32] // x3[4] = 0, x3[5] = 0
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stp x0, x0, [x3, 48] // x3[6] = 0, x3[7] = 0
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add x3, x3, #64 // x3 += 8
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b .fill64
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.fillb:
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cmp x1, x3 // x1 == x3?
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beq .continue // done
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strb w0, [x3], #1 // ((char *) x3)++ = 0
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b .fillb
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.continue:
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add x20, x20, #56 // next action
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b .next_action
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.do_mmap_anon:
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ldr x0, [x20, 8] // vm_address
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ldr x1, [x20, 32] // length
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ldr x2, [x20, 24] // protection
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ldr x3, [x20, 40] // flags
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mov x4, #-1 // fd
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b .do_mmap_1
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.open_file:
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mov x8, #56 // SYS_openat
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mov x0, #-100 // AT_FDCWD
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add x1, x20, #8 // file name
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mov x2, #0 // O_RDONLY
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mov x3, #0 // mode
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svc #0 // syscall
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cmp x0, #-1 // rc < 0?
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ble .perror
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mov x19, x1 // x19 == x1
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.nextc:
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ldrb w2, [x1], #1 // b = *x1++
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cmp w2, #47 // dir separator?
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bne .nextc1 // not dir separator
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mov x19, x1 // x19 = char past separator
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.nextc1:
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cbnz w2, .nextc // b?
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add x1, x1, #7 // round up x1
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and x20, x1, #-8 // mask for round, set x20
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tst x11, #16 // primary fd?
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bne .secondary // secondary fd
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mov x29, x0 // primary fd
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mov x8, #167 // SYS_prctl
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mov x0, #15 // PR_SET_NAME
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mov x1, x19 // basename
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mov x2, #0 // arg2
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mov x3, #0 // arg3
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mov x4, #0 // arg4
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mov x5, #0 // arg5
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svc #0 // syscall
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b .next_action // next action
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.secondary:
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mov x28, x0 // secondary fd
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b .next_action // next action.
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.perror:
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mov x8, #93 // SYS_exit
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mvn x0, x0 // x1 = ~x0
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add x0, x0, 1 // x1 += 1
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svc #0 // exit
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.rest_of_exec:
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mov x7, x20 // x7 = x20
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mov x20, x10 // x20 = x10
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ldr x9, [x20] // argc
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add x9, x9, #2 // x9 += 2
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lsl x9, x9, #3 // argc * 8
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add x20, x20, x9 // now past argv
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.skipenv:
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ldr x9, [x20], #8 // x9 = *envp++
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cbnz x9, .skipenv // x9?
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.one_auxv:
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ldr x9, [x20], #16 // x9 = *sp, sp += 2
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cbz x9, .cleanup // !x9?
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cmp x9, #3 // is AT_PHDR?
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beq .replace_phdr // replace
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cmp x9, #4 // is AT_PHENT?
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beq .replace_phent // replace
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cmp x9, #5 // is AT_PHNUM?
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beq .replace_phnum // replace
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cmp x9, #9 // is AT_ENTRY?
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beq .replace_entry // replace
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cmp x9, #7 // is AT_BASE?
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beq .replace_base // replace
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b .one_auxv // next auxv
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.replace_phdr:
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ldr x9, [x7, 40] // at_phdr
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str x9, [x20, -8] // store value
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b .one_auxv
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.replace_phent:
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ldr x9, [x7, 24] // at_phent
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str x9, [x20, -8] // store value
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b .one_auxv
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.replace_phnum:
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ldr x9, [x7, 32] // at_phnum
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str x9, [x20, -8] // store value
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b .one_auxv
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.replace_entry:
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ldr x9, [x7, 16] // at_entry
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str x9, [x20, -8] // store value
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b .one_auxv
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.replace_base:
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ldr x9, [x7, 48] // at_base
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str x9, [x20, -8] // store value
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b .one_auxv
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.cleanup:
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cmp x28, #-1 // is secondary fd set?
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bne .cleanup1 // not set
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mov x8, #57 // SYS_close
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mov x0, x28 // secondary fd
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svc #0 // syscall
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.cleanup1:
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mov x8, #57 // SYS_close
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mov x0, x29 // primary fd
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svc #0 // syscall
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.enter:
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mov sp, x10 // restore original SP
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mov x0, #0 // clear rtld_fini
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ldr x1, [x7, 8] // branch to code
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br x1
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timespec:
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.quad 10
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.quad 10
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