2003-06-15 20:02:25 +00:00
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/*
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* defines common to all virtual CPUs
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2007-09-16 21:08:06 +00:00
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*
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2003-06-15 20:02:25 +00:00
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* Copyright (c) 2003 Fabrice Bellard
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but 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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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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2009-07-16 20:47:01 +00:00
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* License along with this library; if not, see <http://www.gnu.org/licenses/>.
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2003-06-15 20:02:25 +00:00
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*/
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#ifndef CPU_ALL_H
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#define CPU_ALL_H
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2009-01-14 19:00:36 +00:00
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#include "qemu-common.h"
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2012-12-17 17:19:49 +00:00
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#include "exec/cpu-common.h"
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2013-10-08 14:14:39 +00:00
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#include "exec/memory.h"
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2011-08-17 07:01:33 +00:00
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#include "qemu/thread.h"
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2013-06-29 17:40:58 +00:00
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#include "qom/cpu.h"
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2004-01-04 15:44:17 +00:00
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2007-09-16 21:08:06 +00:00
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/* some important defines:
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*
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2004-01-04 15:44:17 +00:00
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* WORDS_ALIGNED : if defined, the host cpu can only make word aligned
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* memory accesses.
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2007-09-16 21:08:06 +00:00
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*
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2009-07-27 14:13:06 +00:00
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* HOST_WORDS_BIGENDIAN : if defined, the host cpu is big endian and
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2004-01-04 15:44:17 +00:00
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* otherwise little endian.
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2007-09-16 21:08:06 +00:00
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*
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2004-01-04 15:44:17 +00:00
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* (TARGET_WORDS_ALIGNED : same for target cpu (not supported yet))
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2007-09-16 21:08:06 +00:00
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*
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2004-01-04 15:44:17 +00:00
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* TARGET_WORDS_BIGENDIAN : same for target cpu
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*/
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2009-07-27 14:13:06 +00:00
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#if defined(HOST_WORDS_BIGENDIAN) != defined(TARGET_WORDS_BIGENDIAN)
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2004-03-21 17:06:25 +00:00
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#define BSWAP_NEEDED
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#endif
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#ifdef BSWAP_NEEDED
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static inline uint16_t tswap16(uint16_t s)
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{
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return bswap16(s);
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}
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static inline uint32_t tswap32(uint32_t s)
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{
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return bswap32(s);
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}
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static inline uint64_t tswap64(uint64_t s)
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{
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return bswap64(s);
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}
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static inline void tswap16s(uint16_t *s)
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{
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*s = bswap16(*s);
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}
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static inline void tswap32s(uint32_t *s)
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{
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*s = bswap32(*s);
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}
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static inline void tswap64s(uint64_t *s)
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{
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*s = bswap64(*s);
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}
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#else
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static inline uint16_t tswap16(uint16_t s)
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{
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return s;
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}
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static inline uint32_t tswap32(uint32_t s)
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{
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return s;
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}
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static inline uint64_t tswap64(uint64_t s)
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{
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return s;
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}
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static inline void tswap16s(uint16_t *s)
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{
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}
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static inline void tswap32s(uint32_t *s)
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{
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}
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static inline void tswap64s(uint64_t *s)
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{
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}
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#endif
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#if TARGET_LONG_SIZE == 4
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#define tswapl(s) tswap32(s)
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#define tswapls(s) tswap32s((uint32_t *)(s))
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2005-02-10 22:00:27 +00:00
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#define bswaptls(s) bswap32s(s)
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2004-03-21 17:06:25 +00:00
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#else
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#define tswapl(s) tswap64(s)
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#define tswapls(s) tswap64s((uint64_t *)(s))
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2005-02-10 22:00:27 +00:00
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#define bswaptls(s) bswap64s(s)
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2004-03-21 17:06:25 +00:00
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#endif
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2003-10-27 21:22:23 +00:00
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/* CPU memory access without any memory or io remapping */
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2004-02-22 11:53:50 +00:00
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/*
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* the generic syntax for the memory accesses is:
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*
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* load: ld{type}{sign}{size}{endian}_{access_type}(ptr)
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*
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* store: st{type}{size}{endian}_{access_type}(ptr, val)
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*
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* type is:
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* (empty): integer access
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* f : float access
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2007-09-16 21:08:06 +00:00
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*
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2004-02-22 11:53:50 +00:00
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* sign is:
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* (empty): for floats or 32 bit size
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* u : unsigned
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* s : signed
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*
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* size is:
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* b: 8 bits
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* w: 16 bits
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* l: 32 bits
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* q: 64 bits
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2007-09-16 21:08:06 +00:00
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*
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2004-02-22 11:53:50 +00:00
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* endian is:
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* (empty): target cpu endianness or 8 bit access
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* r : reversed target cpu endianness (not implemented yet)
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* be : big endian (not implemented yet)
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* le : little endian (not implemented yet)
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*
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* access_type is:
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* raw : host memory access
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* user : user mode access using soft MMU
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* kernel : kernel mode access using soft MMU
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*/
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2005-11-19 17:47:39 +00:00
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2011-07-28 10:10:30 +00:00
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/* target-endianness CPU memory access functions */
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2005-11-19 17:47:39 +00:00
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#if defined(TARGET_WORDS_BIGENDIAN)
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#define lduw_p(p) lduw_be_p(p)
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#define ldsw_p(p) ldsw_be_p(p)
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#define ldl_p(p) ldl_be_p(p)
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#define ldq_p(p) ldq_be_p(p)
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#define ldfl_p(p) ldfl_be_p(p)
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#define ldfq_p(p) ldfq_be_p(p)
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#define stw_p(p, v) stw_be_p(p, v)
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#define stl_p(p, v) stl_be_p(p, v)
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#define stq_p(p, v) stq_be_p(p, v)
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#define stfl_p(p, v) stfl_be_p(p, v)
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#define stfq_p(p, v) stfq_be_p(p, v)
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#else
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#define lduw_p(p) lduw_le_p(p)
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#define ldsw_p(p) ldsw_le_p(p)
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#define ldl_p(p) ldl_le_p(p)
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#define ldq_p(p) ldq_le_p(p)
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#define ldfl_p(p) ldfl_le_p(p)
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#define ldfq_p(p) ldfq_le_p(p)
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#define stw_p(p, v) stw_le_p(p, v)
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#define stl_p(p, v) stl_le_p(p, v)
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#define stq_p(p, v) stq_le_p(p, v)
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#define stfl_p(p, v) stfl_le_p(p, v)
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#define stfq_p(p, v) stfq_le_p(p, v)
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2003-06-15 20:02:25 +00:00
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#endif
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2003-10-27 21:22:23 +00:00
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/* MMU memory access macros */
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2006-03-25 19:31:22 +00:00
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#if defined(CONFIG_USER_ONLY)
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2008-12-08 18:12:11 +00:00
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#include <assert.h>
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2012-12-17 17:19:49 +00:00
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#include "exec/user/abitypes.h"
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2008-12-08 18:12:11 +00:00
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2006-03-25 19:31:22 +00:00
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/* On some host systems the guest address space is reserved on the host.
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* This allows the guest address space to be offset to a convenient location.
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*/
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2009-07-17 11:48:08 +00:00
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#if defined(CONFIG_USE_GUEST_BASE)
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extern unsigned long guest_base;
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extern int have_guest_base;
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2010-05-29 01:27:35 +00:00
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extern unsigned long reserved_va;
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2009-07-17 11:48:08 +00:00
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#define GUEST_BASE guest_base
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2010-07-30 19:09:10 +00:00
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#define RESERVED_VA reserved_va
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2009-07-17 11:48:08 +00:00
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#else
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#define GUEST_BASE 0ul
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2010-07-30 19:09:10 +00:00
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#define RESERVED_VA 0ul
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2009-07-17 11:48:08 +00:00
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#endif
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2006-03-25 19:31:22 +00:00
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2014-08-05 13:33:51 +00:00
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#define GUEST_ADDR_MAX (RESERVED_VA ? RESERVED_VA : \
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(1ul << TARGET_VIRT_ADDR_SPACE_BITS) - 1)
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2006-03-25 19:31:22 +00:00
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#endif
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2003-06-15 20:02:25 +00:00
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/* page related stuff */
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2008-04-22 20:45:18 +00:00
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#define TARGET_PAGE_SIZE (1 << TARGET_PAGE_BITS)
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2003-06-15 20:02:25 +00:00
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#define TARGET_PAGE_MASK ~(TARGET_PAGE_SIZE - 1)
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#define TARGET_PAGE_ALIGN(addr) (((addr) + TARGET_PAGE_SIZE - 1) & TARGET_PAGE_MASK)
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2012-03-16 19:23:49 +00:00
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/* ??? These should be the larger of uintptr_t and target_ulong. */
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extern uintptr_t qemu_real_host_page_size;
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extern uintptr_t qemu_host_page_size;
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extern uintptr_t qemu_host_page_mask;
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2003-06-15 20:02:25 +00:00
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2004-07-05 21:25:26 +00:00
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#define HOST_PAGE_ALIGN(addr) (((addr) + qemu_host_page_size - 1) & qemu_host_page_mask)
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2003-06-15 20:02:25 +00:00
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/* same as PROT_xxx */
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#define PAGE_READ 0x0001
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#define PAGE_WRITE 0x0002
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#define PAGE_EXEC 0x0004
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#define PAGE_BITS (PAGE_READ | PAGE_WRITE | PAGE_EXEC)
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#define PAGE_VALID 0x0008
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/* original state of the write flag (used when tracking self-modifying
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code */
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2007-09-16 21:08:06 +00:00
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#define PAGE_WRITE_ORG 0x0010
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2010-05-05 15:32:59 +00:00
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#if defined(CONFIG_BSD) && defined(CONFIG_USER_ONLY)
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/* FIXME: Code that sets/uses this is broken and needs to go away. */
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2007-12-12 01:16:23 +00:00
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#define PAGE_RESERVED 0x0020
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2010-05-05 15:32:59 +00:00
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#endif
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2003-06-15 20:02:25 +00:00
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2010-03-12 23:23:29 +00:00
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#if defined(CONFIG_USER_ONLY)
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2003-06-15 20:02:25 +00:00
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void page_dump(FILE *f);
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2010-03-10 23:53:37 +00:00
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2010-03-12 23:23:29 +00:00
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typedef int (*walk_memory_regions_fn)(void *, abi_ulong,
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abi_ulong, unsigned long);
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2010-03-10 23:53:37 +00:00
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int walk_memory_regions(void *, walk_memory_regions_fn);
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2006-03-25 19:31:22 +00:00
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int page_get_flags(target_ulong address);
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void page_set_flags(target_ulong start, target_ulong end, int flags);
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2007-11-02 19:02:07 +00:00
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int page_check_range(target_ulong start, target_ulong len, int flags);
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2010-03-12 23:23:29 +00:00
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#endif
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2003-06-15 20:02:25 +00:00
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2012-03-14 00:38:32 +00:00
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CPUArchState *cpu_copy(CPUArchState *env);
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2007-02-28 20:20:53 +00:00
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2011-05-04 20:34:24 +00:00
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/* Flags for use in ENV->INTERRUPT_PENDING.
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The numbers assigned here are non-sequential in order to preserve
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binary compatibility with the vmstate dump. Bit 0 (0x0001) was
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previously used for CPU_INTERRUPT_EXIT, and is cleared when loading
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the vmstate dump. */
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/* External hardware interrupt pending. This is typically used for
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interrupts from devices. */
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#define CPU_INTERRUPT_HARD 0x0002
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/* Exit the current TB. This is typically used when some system-level device
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makes some change to the memory mapping. E.g. the a20 line change. */
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#define CPU_INTERRUPT_EXITTB 0x0004
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/* Halt the CPU. */
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#define CPU_INTERRUPT_HALT 0x0020
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/* Debug event pending. */
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#define CPU_INTERRUPT_DEBUG 0x0080
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|
2013-03-05 14:35:17 +00:00
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/* Reset signal. */
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#define CPU_INTERRUPT_RESET 0x0400
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2011-05-04 20:34:24 +00:00
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/* Several target-specific external hardware interrupts. Each target/cpu.h
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should define proper names based on these defines. */
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#define CPU_INTERRUPT_TGT_EXT_0 0x0008
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#define CPU_INTERRUPT_TGT_EXT_1 0x0010
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#define CPU_INTERRUPT_TGT_EXT_2 0x0040
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#define CPU_INTERRUPT_TGT_EXT_3 0x0200
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#define CPU_INTERRUPT_TGT_EXT_4 0x1000
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/* Several target-specific internal interrupts. These differ from the
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2011-11-22 10:06:26 +00:00
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preceding target-specific interrupts in that they are intended to
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2011-05-04 20:34:24 +00:00
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originate from within the cpu itself, typically in response to some
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instruction being executed. These, therefore, are not masked while
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single-stepping within the debugger. */
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#define CPU_INTERRUPT_TGT_INT_0 0x0100
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2013-03-05 14:35:17 +00:00
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#define CPU_INTERRUPT_TGT_INT_1 0x0800
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#define CPU_INTERRUPT_TGT_INT_2 0x2000
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2011-05-04 20:34:24 +00:00
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2012-02-17 17:31:17 +00:00
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/* First unused bit: 0x4000. */
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2011-05-04 20:34:24 +00:00
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2011-05-04 20:34:25 +00:00
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/* The set of all bits that should be masked when single-stepping. */
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#define CPU_INTERRUPT_SSTEP_MASK \
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(CPU_INTERRUPT_HARD \
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| CPU_INTERRUPT_TGT_EXT_0 \
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| CPU_INTERRUPT_TGT_EXT_1 \
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| CPU_INTERRUPT_TGT_EXT_2 \
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| CPU_INTERRUPT_TGT_EXT_3 \
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| CPU_INTERRUPT_TGT_EXT_4)
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2005-11-26 10:29:22 +00:00
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2010-03-12 16:54:58 +00:00
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#if !defined(CONFIG_USER_ONLY)
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2003-08-10 21:47:01 +00:00
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/* memory API */
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2010-06-11 17:11:42 +00:00
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typedef struct RAMBlock {
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2011-12-21 11:09:49 +00:00
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struct MemoryRegion *mr;
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2010-06-11 17:11:42 +00:00
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uint8_t *host;
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ram_addr_t offset;
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ram_addr_t length;
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2011-03-02 07:56:19 +00:00
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uint32_t flags;
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2010-06-25 17:09:43 +00:00
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char idstr[256];
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2011-08-17 07:01:33 +00:00
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/* Reads can take either the iothread or the ramlist lock.
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* Writes must take both locks.
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*/
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2012-11-14 14:54:48 +00:00
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QTAILQ_ENTRY(RAMBlock) next;
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2010-07-02 17:13:17 +00:00
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int fd;
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2010-06-11 17:11:42 +00:00
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} RAMBlock;
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typedef struct RAMList {
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2011-08-17 07:01:33 +00:00
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QemuMutex mutex;
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/* Protected by the iothread lock. */
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2013-10-08 14:14:39 +00:00
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unsigned long *dirty_memory[DIRTY_MEMORY_NUM];
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2012-11-14 14:45:02 +00:00
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RAMBlock *mru_block;
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2011-08-17 07:01:33 +00:00
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/* Protected by the ramlist lock. */
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2012-11-14 14:54:48 +00:00
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QTAILQ_HEAD(, RAMBlock) blocks;
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2011-08-18 18:41:17 +00:00
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uint32_t version;
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2010-06-11 17:11:42 +00:00
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} RAMList;
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extern RAMList ram_list;
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2004-01-04 17:43:30 +00:00
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2008-06-09 00:20:13 +00:00
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/* Flags stored in the low bits of the TLB virtual address. These are
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defined so that fast path ram access is all zeros. */
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/* Zero if TLB entry is valid. */
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#define TLB_INVALID_MASK (1 << 3)
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/* Set if TLB entry references a clean RAM page. The iotlb entry will
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contain the page physical address. */
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#define TLB_NOTDIRTY (1 << 4)
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/* Set if TLB entry is an IO callback. */
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#define TLB_MMIO (1 << 5)
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2010-10-22 21:03:32 +00:00
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void dump_exec_info(FILE *f, fprintf_function cpu_fprintf);
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2012-07-20 08:37:54 +00:00
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ram_addr_t last_ram_offset(void);
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2011-08-17 07:01:33 +00:00
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void qemu_mutex_lock_ramlist(void);
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void qemu_mutex_unlock_ramlist(void);
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2010-03-12 16:54:58 +00:00
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#endif /* !CONFIG_USER_ONLY */
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2013-06-29 17:40:58 +00:00
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int cpu_memory_rw_debug(CPUState *cpu, target_ulong addr,
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2010-03-12 16:54:58 +00:00
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uint8_t *buf, int len, int is_write);
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2003-06-15 20:02:25 +00:00
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#endif /* CPU_ALL_H */
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