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https://github.com/Zenithsiz/ftmemsim-valgrind.git
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Valgrind's dependency on the dynamic linker for getting started, and instead takes things into its own hands. This checkin doesn't add much in the way of new functionality, but it is the basis for all future work on Valgrind. It allows us much more flexibility in implementation, and well as increasing the reliability of Valgrind by protecting it more from its clients. This patch requires some changes to tools to update them to the changes in the tool API, but they are straightforward. See the posting "Heads up: Full Virtualization" on valgrind-developers for a more complete description of this change and its effects on you. git-svn-id: svn://svn.valgrind.org/valgrind/trunk@2118
261 lines
12 KiB
C
261 lines
12 KiB
C
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/*
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----------------------------------------------------------------
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Notice that the following BSD-style license applies to this one
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file (memcheck.h) only. The entire rest of Valgrind is licensed
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under the terms of the GNU General Public License, version 2. See
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the COPYING file in the source distribution for details.
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----------------------------------------------------------------
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This file is part of MemCheck, a heavyweight Valgrind tool for
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detecting memory errors.
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Copyright (C) 2002-2003 Julian Seward. All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions
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are met:
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1. Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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2. The origin of this software must not be misrepresented; you must
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not claim that you wrote the original software. If you use this
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software in a product, an acknowledgment in the product
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documentation would be appreciated but is not required.
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3. Altered source versions must be plainly marked as such, and must
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not be misrepresented as being the original software.
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4. The name of the author may not be used to endorse or promote
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products derived from this software without specific prior written
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permission.
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THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
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OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
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DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
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GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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----------------------------------------------------------------
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Notice that the above BSD-style license applies to this one file
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(memcheck.h) only. The entire rest of Valgrind is licensed under
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the terms of the GNU General Public License, version 2. See the
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COPYING file in the source distribution for details.
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----------------------------------------------------------------
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*/
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#ifndef __MEMCHECK_H
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#define __MEMCHECK_H
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/* This file is for inclusion into client (your!) code.
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You can use these macros to manipulate and query memory permissions
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inside your own programs.
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See comment near the top of valgrind.h on how to use them.
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*/
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#include "valgrind.h"
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typedef
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enum {
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VG_USERREQ__MAKE_NOACCESS = VG_USERREQ_SKIN_BASE('M','C'),
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VG_USERREQ__MAKE_WRITABLE,
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VG_USERREQ__MAKE_READABLE,
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VG_USERREQ__DISCARD,
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VG_USERREQ__CHECK_WRITABLE,
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VG_USERREQ__CHECK_READABLE,
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VG_USERREQ__DO_LEAK_CHECK,
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VG_USERREQ__COUNT_LEAKS,
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/* These two have been moved into core, because they are useful for
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any skin that tracks heap blocks. Hence the suffix. But they're
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still here for backwards compatibility, although Valgrind will
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abort with an explanatory message if you use them. */
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VG_USERREQ__MALLOCLIKE_BLOCK__OLD_DO_NOT_USE,
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VG_USERREQ__FREELIKE_BLOCK__OLD_DO_NOT_USE,
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VG_USERREQ__GET_VBITS,
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VG_USERREQ__SET_VBITS,
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/* This is just for memcheck's internal use - don't use it */
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_VG_USERREQ__MEMCHECK_GET_RECORD_OVERLAP = VG_USERREQ_SKIN_BASE('M','C')+256,
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} Vg_MemCheckClientRequest;
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/* Client-code macros to manipulate the state of memory. */
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/* Mark memory at _qzz_addr as unaddressible and undefined for
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_qzz_len bytes. Returns an int handle pertaining to the block
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descriptions Valgrind will use in subsequent error messages. */
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#define VALGRIND_MAKE_NOACCESS(_qzz_addr,_qzz_len) \
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(__extension__({unsigned int _qzz_res; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0 /* default return */, \
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VG_USERREQ__MAKE_NOACCESS, \
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_qzz_addr, _qzz_len, 0, 0); \
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_qzz_res; \
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}))
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/* Similarly, mark memory at _qzz_addr as addressible but undefined
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for _qzz_len bytes. */
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#define VALGRIND_MAKE_WRITABLE(_qzz_addr,_qzz_len) \
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(__extension__({unsigned int _qzz_res; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0 /* default return */, \
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VG_USERREQ__MAKE_WRITABLE, \
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_qzz_addr, _qzz_len, 0, 0); \
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_qzz_res; \
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}))
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/* Similarly, mark memory at _qzz_addr as addressible and defined
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for _qzz_len bytes. */
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#define VALGRIND_MAKE_READABLE(_qzz_addr,_qzz_len) \
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(__extension__({unsigned int _qzz_res; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0 /* default return */, \
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VG_USERREQ__MAKE_READABLE, \
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_qzz_addr, _qzz_len, 0, 0); \
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_qzz_res; \
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}))
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/* Discard a block-description-handle obtained from the above three
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macros. After this, Valgrind will no longer be able to relate
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addressing errors to the user-defined block associated with the
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handle. The permissions settings associated with the handle remain
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in place. Returns 1 for an invalid handle, 0 for a valid
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handle. */
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#define VALGRIND_DISCARD(_qzz_blkindex) \
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(__extension__ ({unsigned int _qzz_res; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0 /* default return */, \
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VG_USERREQ__DISCARD, \
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0, _qzz_blkindex, 0, 0); \
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_qzz_res; \
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}))
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/* Client-code macros to check the state of memory. */
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/* Check that memory at _qzz_addr is addressible for _qzz_len bytes.
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If suitable addressibility is not established, Valgrind prints an
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error message and returns the address of the first offending byte.
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Otherwise it returns zero. */
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#define VALGRIND_CHECK_WRITABLE(_qzz_addr,_qzz_len) \
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(__extension__({unsigned int _qzz_res; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0, \
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VG_USERREQ__CHECK_WRITABLE, \
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_qzz_addr, _qzz_len, 0, 0); \
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_qzz_res; \
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}))
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/* Check that memory at _qzz_addr is addressible and defined for
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_qzz_len bytes. If suitable addressibility and definedness are not
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established, Valgrind prints an error message and returns the
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address of the first offending byte. Otherwise it returns zero. */
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#define VALGRIND_CHECK_READABLE(_qzz_addr,_qzz_len) \
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(__extension__({unsigned int _qzz_res; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0, \
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VG_USERREQ__CHECK_READABLE, \
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_qzz_addr, _qzz_len, 0, 0); \
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_qzz_res; \
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}))
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/* Use this macro to force the definedness and addressibility of a
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value to be checked. If suitable addressibility and definedness
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are not established, Valgrind prints an error message and returns
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the address of the first offending byte. Otherwise it returns
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zero. */
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#define VALGRIND_CHECK_DEFINED(__lvalue) \
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(void) \
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VALGRIND_CHECK_READABLE( \
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(volatile unsigned char *)&(__lvalue), \
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(unsigned int)(sizeof (__lvalue)))
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/* Do a memory leak check mid-execution. */
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#define VALGRIND_DO_LEAK_CHECK \
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{unsigned int _qzz_res; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0, \
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VG_USERREQ__DO_LEAK_CHECK, \
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0, 0, 0, 0); \
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}
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/* Return number of leaked, dubious, reachable and suppressed bytes found by
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all previous leak checks. They must be lvalues. */
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#define VALGRIND_COUNT_LEAKS(leaked, dubious, reachable, suppressed) \
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{unsigned int _qzz_res; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0, \
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VG_USERREQ__COUNT_LEAKS, \
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&leaked, &dubious, &reachable, &suppressed);\
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}
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/* These two have been moved to valgrind.h; still here so that a warning can
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be printed out for any programs using the old ones. */
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#define VALGRIND_MALLOCLIKE_BLOCK__OLD_DO_NOT_USE(addr, sizeB, rzB, is_zeroed)\
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{unsigned int _qzz_res; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0, \
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VG_USERREQ__MALLOCLIKE_BLOCK, \
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addr, sizeB, rzB, is_zeroed); \
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}
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#define VALGRIND_FREELIKE_BLOCK__OLD_DO_NOT_USE(addr, rzB) \
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{unsigned int _qzz_res; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0, \
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VG_USERREQ__FREELIKE_BLOCK, \
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addr, rzB, 0, 0); \
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}
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/* Get in zzvbits the validity data for the zznbytes starting at
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zzsrc. Return values:
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0 if not running on valgrind
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1 success
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2 if zzsrc/zzvbits arrays are not aligned 0 % 4, or
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zznbytes is not 0 % 4.
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3 if any parts of zzsrc/zzvbits are not addressible.
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The metadata is not copied in cases 0, 2 or 3 so it should be
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impossible to segfault your system by using this call.
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*/
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#define VALGRIND_GET_VBITS(zzsrc,zzvbits,zznbytes) \
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(__extension__({unsigned int _qzz_res; \
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char* czzsrc = (char*)zzsrc; \
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char* czzvbits = (char*)zzvbits; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0, \
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VG_USERREQ__GET_VBITS, \
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czzsrc, czzvbits, zznbytes,0 ); \
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_qzz_res; \
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}))
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/* Apply the validity data in zzvbits to the zznbytes starting at
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zzdst. Return values:
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0 if not running on valgrind
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1 success
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2 if zzdst/zzvbits arrays are not aligned 0 % 4, or
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zznbytes is not 0 % 4.
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3 if any parts of zzdst/zzvbits are not addressible.
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The metadata is not copied in cases 0, 2 or 3 so it should be
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impossible to segfault your system by using this call.
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*/
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#define VALGRIND_SET_VBITS(zzdst,zzvbits,zznbytes) \
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(__extension__({unsigned int _qzz_res; \
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char* czzdst = (char*)zzdst; \
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char* czzvbits = (char*)zzvbits; \
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VALGRIND_MAGIC_SEQUENCE(_qzz_res, 0, \
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VG_USERREQ__SET_VBITS, \
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czzdst, czzvbits, zznbytes,0 ); \
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_qzz_res; \
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}))
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#endif
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