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https://github.com/Zenithsiz/ftmemsim-valgrind.git
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381 lines
12 KiB
C
381 lines
12 KiB
C
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/*--------------------------------------------------------------------*/
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/*--- For when the client advises Valgrind about permissions. ---*/
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/*--- vg_clientperms.c ---*/
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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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Julian_Seward@muraroa.demon.co.uk
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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_include.h"
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#include "vg_constants.h"
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#include "valgrind.h" /* for VG_USERREQ__* */
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/*------------------------------------------------------------*/
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/*--- General client block management. ---*/
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/*------------------------------------------------------------*/
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/* This is managed as an expanding array of client block descriptors.
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Indices of live descriptors are issued to the client, so it can ask
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to free them later. Therefore we cannot slide live entries down
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over dead ones. Instead we must use free/inuse flags and scan for
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an empty slot at allocation time. This in turn means allocation is
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relatively expensive, so we hope this does not happen too often.
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*/
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typedef
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enum { CG_NotInUse, CG_NoAccess, CG_Writable, CG_Readable }
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CGenBlockKind;
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typedef
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struct {
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Addr start;
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UInt size;
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ExeContext* where;
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CGenBlockKind kind;
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}
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CGenBlock;
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/* This subsystem is self-initialising. */
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static UInt vg_cgb_size = 0;
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static UInt vg_cgb_used = 0;
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static CGenBlock* vg_cgbs = NULL;
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/* Stats for this subsystem. */
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static UInt vg_cgb_used_MAX = 0; /* Max in use. */
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static UInt vg_cgb_allocs = 0; /* Number of allocs. */
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static UInt vg_cgb_discards = 0; /* Number of discards. */
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static UInt vg_cgb_search = 0; /* Number of searches. */
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static
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Int vg_alloc_client_block ( void )
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{
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Int i, sz_new;
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CGenBlock* cgbs_new;
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vg_cgb_allocs++;
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for (i = 0; i < vg_cgb_used; i++) {
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vg_cgb_search++;
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if (vg_cgbs[i].kind == CG_NotInUse)
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return i;
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}
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/* Not found. Try to allocate one at the end. */
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if (vg_cgb_used < vg_cgb_size) {
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vg_cgb_used++;
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return vg_cgb_used-1;
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}
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/* Ok, we have to allocate a new one. */
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vg_assert(vg_cgb_used == vg_cgb_size);
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sz_new = (vg_cgbs == NULL) ? 10 : (2 * vg_cgb_size);
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cgbs_new = VG_(malloc)( VG_AR_PRIVATE, sz_new * sizeof(CGenBlock) );
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for (i = 0; i < vg_cgb_used; i++)
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cgbs_new[i] = vg_cgbs[i];
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if (vg_cgbs != NULL)
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VG_(free)( VG_AR_PRIVATE, vg_cgbs );
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vg_cgbs = cgbs_new;
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vg_cgb_size = sz_new;
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vg_cgb_used++;
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if (vg_cgb_used > vg_cgb_used_MAX)
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vg_cgb_used_MAX = vg_cgb_used;
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return vg_cgb_used-1;
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}
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/*------------------------------------------------------------*/
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/*--- Stack block management. ---*/
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/*------------------------------------------------------------*/
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/* This is managed as an expanding array of CStackBlocks. They are
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packed up against the left-hand end of the array, with no holes.
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They are kept sorted by the start field, with the [0] having the
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highest value. This means it's pretty cheap to put new blocks at
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the end, corresponding to stack pushes, since the additions put
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blocks on in what is presumably fairly close to strictly descending
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order. If this assumption doesn't hold the performance
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consequences will be horrible.
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When the client's %ESP jumps back upwards as the result of a RET
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insn, we shrink the array backwards from the end, in a
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guaranteed-cheap linear scan.
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*/
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typedef
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struct {
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Addr start;
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UInt size;
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ExeContext* where;
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}
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CStackBlock;
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/* This subsystem is self-initialising. */
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static UInt vg_csb_size = 0;
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static UInt vg_csb_used = 0;
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static CStackBlock* vg_csbs = NULL;
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/* Stats for this subsystem. */
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static UInt vg_csb_used_MAX = 0; /* Max in use. */
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static UInt vg_csb_allocs = 0; /* Number of allocs. */
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static UInt vg_csb_discards = 0; /* Number of discards. */
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static UInt vg_csb_swaps = 0; /* Number of searches. */
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static
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void vg_add_client_stack_block ( ThreadState* tst, Addr aa, UInt sz )
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{
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UInt i, sz_new;
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CStackBlock* csbs_new;
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vg_csb_allocs++;
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/* Ensure there is space for a new block. */
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if (vg_csb_used >= vg_csb_size) {
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/* No; we have to expand the array. */
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vg_assert(vg_csb_used == vg_csb_size);
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sz_new = (vg_csbs == NULL) ? 10 : (2 * vg_csb_size);
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csbs_new = VG_(malloc)( VG_AR_PRIVATE, sz_new * sizeof(CStackBlock) );
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for (i = 0; i < vg_csb_used; i++)
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csbs_new[i] = vg_csbs[i];
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if (vg_csbs != NULL)
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VG_(free)( VG_AR_PRIVATE, vg_csbs );
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vg_csbs = csbs_new;
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vg_csb_size = sz_new;
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}
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/* Ok, we can use [vg_csb_used]. */
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vg_csbs[vg_csb_used].start = aa;
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vg_csbs[vg_csb_used].size = sz;
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/* Actually running a thread at this point. */
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vg_csbs[vg_csb_used].where
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= VG_(get_ExeContext) ( False, tst->m_eip, tst->m_ebp );
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vg_csb_used++;
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if (vg_csb_used > vg_csb_used_MAX)
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vg_csb_used_MAX = vg_csb_used;
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vg_assert(vg_csb_used <= vg_csb_size);
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/* VG_(printf)("acsb %p %d\n", aa, sz); */
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VGM_(make_noaccess) ( aa, sz );
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/* And make sure that they are in descending order of address. */
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i = vg_csb_used;
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while (i > 0 && vg_csbs[i-1].start < vg_csbs[i].start) {
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CStackBlock tmp = vg_csbs[i-1];
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vg_csbs[i-1] = vg_csbs[i];
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vg_csbs[i] = tmp;
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vg_csb_swaps++;
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}
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# if 1
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for (i = 1; i < vg_csb_used; i++)
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vg_assert(vg_csbs[i-1].start >= vg_csbs[i].start);
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# endif
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}
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/*------------------------------------------------------------*/
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/*--- Externally visible functions. ---*/
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/*------------------------------------------------------------*/
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void VG_(show_client_block_stats) ( void )
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{
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VG_(message)(Vg_DebugMsg,
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"general CBs: %d allocs, %d discards, %d maxinuse, %d search",
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vg_cgb_allocs, vg_cgb_discards, vg_cgb_used_MAX, vg_cgb_search
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);
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VG_(message)(Vg_DebugMsg,
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" stack CBs: %d allocs, %d discards, %d maxinuse, %d swap",
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vg_csb_allocs, vg_csb_discards, vg_csb_used_MAX, vg_csb_swaps
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);
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}
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Bool VG_(client_perm_maybe_describe)( Addr a, AddrInfo* ai )
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{
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Int i;
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/* VG_(printf)("try to identify %d\n", a); */
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/* First see if it's a stack block. We do two passes, one exact
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and one with a bit of slop, so as to try and get the most
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accurate fix. */
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for (i = 0; i < vg_csb_used; i++) {
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if (vg_csbs[i].start <= a
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&& a < vg_csbs[i].start + vg_csbs[i].size) {
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ai->akind = UserS;
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ai->blksize = vg_csbs[i].size;
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ai->rwoffset = (Int)(a) - (Int)(vg_csbs[i].start);
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ai->lastchange = vg_csbs[i].where;
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return True;
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}
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}
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/* No exact match on the stack. Re-do the stack scan with a bit of
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slop. */
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for (i = 0; i < vg_csb_used; i++) {
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if (vg_csbs[i].start - 8 <= a
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&& a < vg_csbs[i].start + vg_csbs[i].size + 8) {
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ai->akind = UserS;
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ai->blksize = vg_csbs[i].size;
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ai->rwoffset = (Int)(a) - (Int)(vg_csbs[i].start);
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ai->lastchange = vg_csbs[i].where;
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return True;
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}
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}
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/* No match on the stack. Perhaps it's a general block ? */
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for (i = 0; i < vg_cgb_used; i++) {
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if (vg_cgbs[i].kind == CG_NotInUse)
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continue;
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if (vg_cgbs[i].start - VG_AR_CLIENT_REDZONE_SZB <= a
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&& a < vg_cgbs[i].start + vg_cgbs[i].size + VG_AR_CLIENT_REDZONE_SZB) {
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ai->akind = UserG;
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ai->blksize = vg_cgbs[i].size;
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ai->rwoffset = (Int)(a) - (Int)(vg_cgbs[i].start);
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ai->lastchange = vg_cgbs[i].where;
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return True;
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}
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}
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return False;
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}
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void VG_(delete_client_stack_blocks_following_ESP_change) ( void )
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{
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Addr newESP;
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if (!VG_(clo_client_perms)) return;
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newESP = VG_(baseBlock)[VGOFF_(m_esp)];
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while (vg_csb_used > 0 &&
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vg_csbs[vg_csb_used-1].start + vg_csbs[vg_csb_used-1].size <= newESP) {
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vg_csb_used--;
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vg_csb_discards++;
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if (VG_(clo_verbosity) > 2)
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VG_(printf)("discarding stack block %p for %d\n",
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(void*)vg_csbs[vg_csb_used].start,
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vg_csbs[vg_csb_used].size);
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}
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}
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UInt VG_(handle_client_request) ( ThreadState* tst, UInt* arg_block )
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{
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Int i;
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Bool ok;
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Addr bad_addr;
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UInt* arg = arg_block;
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if (VG_(clo_verbosity) > 2)
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VG_(printf)("client request: code %d, addr %p, len %d\n",
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arg[0], (void*)arg[1], arg[2] );
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vg_assert(VG_(clo_client_perms));
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vg_assert(VG_(clo_instrument));
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switch (arg[0]) {
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case VG_USERREQ__MAKE_NOACCESS: /* make no access */
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i = vg_alloc_client_block();
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/* VG_(printf)("allocated %d %p\n", i, vg_cgbs); */
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vg_cgbs[i].kind = CG_NoAccess;
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vg_cgbs[i].start = arg[1];
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vg_cgbs[i].size = arg[2];
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vg_cgbs[i].where
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= VG_(get_ExeContext) ( False, tst->m_eip, tst->m_ebp );
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VGM_(make_noaccess) ( arg[1], arg[2] );
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return i;
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case VG_USERREQ__MAKE_WRITABLE: /* make writable */
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i = vg_alloc_client_block();
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vg_cgbs[i].kind = CG_Writable;
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vg_cgbs[i].start = arg[1];
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vg_cgbs[i].size = arg[2];
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vg_cgbs[i].where
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= VG_(get_ExeContext) ( False, tst->m_eip, tst->m_ebp );
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VGM_(make_writable) ( arg[1], arg[2] );
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return i;
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case VG_USERREQ__MAKE_READABLE: /* make readable */
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i = vg_alloc_client_block();
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vg_cgbs[i].kind = CG_Readable;
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vg_cgbs[i].start = arg[1];
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vg_cgbs[i].size = arg[2];
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vg_cgbs[i].where
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= VG_(get_ExeContext) ( False, tst->m_eip, tst->m_ebp );
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VGM_(make_readable) ( arg[1], arg[2] );
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return i;
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case VG_USERREQ__CHECK_WRITABLE: /* check writable */
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ok = VGM_(check_writable) ( arg[1], arg[2], &bad_addr );
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if (!ok)
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VG_(record_user_err) ( tst, bad_addr, True );
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return ok ? (UInt)NULL : bad_addr;
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case VG_USERREQ__CHECK_READABLE: /* check readable */
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ok = VGM_(check_readable) ( arg[1], arg[2], &bad_addr );
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if (!ok)
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VG_(record_user_err) ( tst, bad_addr, False );
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return ok ? (UInt)NULL : bad_addr;
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case VG_USERREQ__DISCARD: /* discard */
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if (vg_cgbs == NULL
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|| arg[2] >= vg_cgb_used || vg_cgbs[arg[2]].kind == CG_NotInUse)
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return 1;
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vg_assert(arg[2] >= 0 && arg[2] < vg_cgb_used);
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vg_cgbs[arg[2]].kind = CG_NotInUse;
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vg_cgb_discards++;
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return 0;
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case VG_USERREQ__MAKE_NOACCESS_STACK: /* make noaccess stack block */
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vg_add_client_stack_block ( tst, arg[1], arg[2] );
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return 0;
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case VG_USERREQ__RUNNING_ON_VALGRIND:
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return 1;
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case VG_USERREQ__DO_LEAK_CHECK:
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VG_(detect_memory_leaks)();
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return 0; /* return value is meaningless */
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default:
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VG_(message)(Vg_UserMsg,
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"Warning: unknown client request code %d", arg[0]);
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return 1;
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}
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}
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/*--------------------------------------------------------------------*/
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/*--- end vg_clientperms.c ---*/
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/*--------------------------------------------------------------------*/
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