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https://github.com/Zenithsiz/ftmemsim-valgrind.git
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213 lines
6.0 KiB
ArmAsm
213 lines
6.0 KiB
ArmAsm
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##--------------------------------------------------------------------##
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##--- The core dispatch loop, for jumping to a code address. ---##
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##--- vg_dispatch.S ---##
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##--------------------------------------------------------------------##
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/*
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This file is part of Valgrind, an x86 protected-mode emulator
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designed for debugging and profiling binaries on x86-Unixes.
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Copyright (C) 2000-2002 Julian Seward
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jseward@acm.org
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the
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License, or (at your option) any later version.
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This program 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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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
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02111-1307, USA.
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The GNU General Public License is contained in the file LICENSE.
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*/
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#include "vg_constants.h"
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/*------------------------------------------------------------*/
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/*--- The normal-case dispatch machinery. ---*/
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/*------------------------------------------------------------*/
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/* To transfer to an (original) code address, load it into %eax and
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jump to vg_dispatch. This fragment of code tries to find the
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address of the corresponding translation by searching the translation
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table. If it fails, a new translation is made, added to the
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translation table, and then jumped to. Almost all the hard
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work is done by C routines; this code simply handles the
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common case fast -- when the translation address is found in
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the translation cache.
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At entry, %eax is the only live (real-machine) register; the
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entire simulated state is tidily saved in vg_m_state.
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*/
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/* The C world needs a way to get started simulating. So we provide
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a function void vg_run_innerloop ( void ), which starts running
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from vg_m_eip, and exits when the counter reaches zero. This loop
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can also exit if vg_oursignalhandler() catches a non-resumable
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signal, for example SIGSEGV. It then longjmp()s back past here.
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*/
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.globl VG_(run_innerloop)
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VG_(run_innerloop):
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#OYNK(1000)
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# ----- entry point to VG_(run_innerloop) -----
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pushl %ebx
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pushl %ecx
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pushl %edx
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pushl %esi
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pushl %edi
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pushl %ebp
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# Set up the baseBlock pointer
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movl $VG_(baseBlock), %ebp
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# fetch m_eip into %eax
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movl VGOFF_(m_eip), %esi
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movl (%ebp, %esi, 4), %eax
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# Start off dispatching paranoically, since we no longer have
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# any indication whether or not this might be a special call/ret
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# transfer.
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jmp dispatch_stkadj
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dispatch_main:
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# Jump here to do a new dispatch.
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# %eax holds destination (original) address.
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# %ebp indicates further details of the control transfer
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# requested to the address in %eax.
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#
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# If ebp == & VG_(baseBlock), just jump next to %eax.
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#
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# If ebp == VG_EBP_JMP_SYSCALL, do a system call before
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# continuing at eax.
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#
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# If ebp == VG_EBP_JMP_CLIENTREQ, do a client request before
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# continuing at eax.
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#
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# If %ebp has any other value, we panic.
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cmpl $VG_(baseBlock), %ebp
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jnz dispatch_exceptional
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dispatch_boring:
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# save the jump address at VG_(baseBlock)[VGOFF_(m_eip)],
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movl VGOFF_(m_eip), %esi
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movl %eax, (%ebp, %esi, 4)
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# do a timeslice check.
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# are we out of timeslice? If yes, defer to scheduler.
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#OYNK(1001)
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decl VG_(dispatch_ctr)
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jz counter_is_zero
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#OYNK(1002)
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# try a fast lookup in the translation cache
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movl %eax, %ebx
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andl $VG_TT_FAST_MASK, %ebx
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# ebx = tt_fast index
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movl VG_(tt_fast)(,%ebx,4), %ebx
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# ebx points at a tt entry
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# now compare target with the tte.orig_addr field (+0)
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cmpl %eax, (%ebx)
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jnz fast_lookup_failed
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# Found a match. Set the tte.mru_epoch field (+8)
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# and call the tte.trans_addr field (+4)
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movl VG_(current_epoch), %ecx
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movl %ecx, 8(%ebx)
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call *4(%ebx)
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jmp dispatch_main
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fast_lookup_failed:
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# %EIP is up to date here since dispatch_boring dominates
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movl $VG_TRC_INNER_FASTMISS, %eax
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jmp run_innerloop_exit
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counter_is_zero:
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# %EIP is up to date here since dispatch_boring dominates
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movl $VG_TRC_INNER_COUNTERZERO, %eax
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jmp run_innerloop_exit
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run_innerloop_exit:
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popl %ebp
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popl %edi
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popl %esi
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popl %edx
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popl %ecx
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popl %ebx
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ret
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/* Other ways of getting out of the inner loop. Placed out-of-line to
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make it look cleaner.
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*/
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dispatch_exceptional:
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# this is jumped to only, not fallen-through from above
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cmpl $VG_TRC_EBP_JMP_STKADJ, %ebp
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jz dispatch_stkadj
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cmpl $VG_TRC_EBP_JMP_SYSCALL, %ebp
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jz dispatch_syscall
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cmpl $VG_TRC_EBP_JMP_CLIENTREQ, %ebp
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jz dispatch_clientreq
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# ebp has an invalid value ... crap out.
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pushl $panic_msg_ebp
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call VG_(panic)
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# (never returns)
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dispatch_syscall:
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# save %eax in %EIP and defer to sched
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movl $VG_(baseBlock), %ebp
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movl VGOFF_(m_eip), %esi
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movl %eax, (%ebp, %esi, 4)
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movl $VG_TRC_EBP_JMP_SYSCALL, %eax
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jmp run_innerloop_exit
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dispatch_clientreq:
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# save %eax in %EIP and defer to sched
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movl $VG_(baseBlock), %ebp
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movl VGOFF_(m_eip), %esi
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movl %eax, (%ebp, %esi, 4)
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movl $VG_TRC_EBP_JMP_CLIENTREQ, %eax
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jmp run_innerloop_exit
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dispatch_stkadj:
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# save %eax in %EIP
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movl $VG_(baseBlock), %ebp
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movl VGOFF_(m_eip), %esi
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movl %eax, (%ebp, %esi, 4)
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# see if we need to mess with stack blocks
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pushl %eax
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call VG_(delete_client_stack_blocks_following_ESP_change)
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popl %eax
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movl $VG_(baseBlock), %ebp
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# ok, its not interesting. Handle the normal way.
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jmp dispatch_boring
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.data
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panic_msg_ebp:
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.ascii "vg_dispatch: %ebp has invalid value!"
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.byte 0
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.text
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##--------------------------------------------------------------------##
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##--- end vg_dispatch.S ---##
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##--------------------------------------------------------------------##
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