use simpler REGPARM convention - make CPUTLBEntry size a power of two
git-svn-id: svn://svn.savannah.nongnu.org/qemu/trunk@3935 c046a42c-6fe2-441c-8c8c-71466251a162
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16
cpu-defs.h
16
cpu-defs.h
@ -102,6 +102,12 @@ typedef unsigned long ram_addr_t;
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#define CPU_TLB_BITS 8
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#define CPU_TLB_SIZE (1 << CPU_TLB_BITS)
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#if TARGET_PHYS_ADDR_BITS == 32 && TARGET_LONG_BITS == 32
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#define CPU_TLB_ENTRY_BITS 4
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#else
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#define CPU_TLB_ENTRY_BITS 5
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#endif
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typedef struct CPUTLBEntry {
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/* bit 31 to TARGET_PAGE_BITS : virtual address
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bit TARGET_PAGE_BITS-1..IO_MEM_SHIFT : if non zero, memory io
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@ -113,7 +119,17 @@ typedef struct CPUTLBEntry {
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target_ulong addr_write;
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target_ulong addr_code;
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/* addend to virtual address to get physical address */
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#if TARGET_PHYS_ADDR_BITS == 64
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/* on i386 Linux make sure it is aligned */
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target_phys_addr_t addend __attribute__((aligned(8)));
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#else
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target_phys_addr_t addend;
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#endif
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/* padding to get a power of two size */
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uint8_t dummy[(1 << CPU_TLB_ENTRY_BITS) -
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(sizeof(target_ulong) * 3 +
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((-sizeof(target_ulong) * 3) & (sizeof(target_phys_addr_t) - 1)) +
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sizeof(target_phys_addr_t))];
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} CPUTLBEntry;
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#define CPU_COMMON \
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4
osdep.h
4
osdep.h
@ -36,9 +36,9 @@
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#define inline always_inline
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#ifdef __i386__
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#define REGPARM(n) __attribute((regparm(n)))
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#define REGPARM __attribute((regparm(3)))
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#else
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#define REGPARM(n)
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#define REGPARM
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#endif
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#define qemu_printf printf
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@ -70,15 +70,13 @@
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#define ADDR_READ addr_read
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#endif
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DATA_TYPE REGPARM(1) glue(glue(__ld, SUFFIX), MMUSUFFIX)(target_ulong addr,
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DATA_TYPE REGPARM glue(glue(__ld, SUFFIX), MMUSUFFIX)(target_ulong addr,
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int mmu_idx);
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void REGPARM(2) glue(glue(__st, SUFFIX), MMUSUFFIX)(target_ulong addr, DATA_TYPE v, int mmu_idx);
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void REGPARM glue(glue(__st, SUFFIX), MMUSUFFIX)(target_ulong addr, DATA_TYPE v, int mmu_idx);
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#if (DATA_SIZE <= 4) && (TARGET_LONG_BITS == 32) && defined(__i386__) && \
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(ACCESS_TYPE < NB_MMU_MODES) && defined(ASM_SOFTMMU)
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#define CPU_TLB_ENTRY_BITS 4
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static inline RES_TYPE glue(glue(ld, USUFFIX), MEMSUFFIX)(target_ulong ptr)
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{
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int res;
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@ -92,9 +90,8 @@ static inline RES_TYPE glue(glue(ld, USUFFIX), MEMSUFFIX)(target_ulong ptr)
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"cmpl (%%edx), %%eax\n"
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"movl %1, %%eax\n"
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"je 1f\n"
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"pushl %6\n"
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"movl %6, %%edx\n"
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"call %7\n"
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"popl %%edx\n"
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"movl %%eax, %0\n"
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"jmp 2f\n"
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"1:\n"
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@ -135,9 +132,8 @@ static inline int glue(glue(lds, SUFFIX), MEMSUFFIX)(target_ulong ptr)
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"cmpl (%%edx), %%eax\n"
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"movl %1, %%eax\n"
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"je 1f\n"
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"pushl %6\n"
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"movl %6, %%edx\n"
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"call %7\n"
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"popl %%edx\n"
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#if DATA_SIZE == 1
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"movsbl %%al, %0\n"
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#elif DATA_SIZE == 2
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@ -189,9 +185,8 @@ static inline void glue(glue(st, SUFFIX), MEMSUFFIX)(target_ulong ptr, RES_TYPE
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#else
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#error unsupported size
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#endif
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"pushl %6\n"
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"movl %6, %%ecx\n"
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"call %7\n"
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"popl %%eax\n"
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"jmp 2f\n"
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"1:\n"
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"addl 8(%%edx), %%eax\n"
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@ -75,8 +75,8 @@ static inline DATA_TYPE glue(io_read, SUFFIX)(target_phys_addr_t physaddr,
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}
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/* handle all cases except unaligned access which span two pages */
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DATA_TYPE REGPARM(1) glue(glue(__ld, SUFFIX), MMUSUFFIX)(target_ulong addr,
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int mmu_idx)
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DATA_TYPE REGPARM glue(glue(__ld, SUFFIX), MMUSUFFIX)(target_ulong addr,
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int mmu_idx)
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{
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DATA_TYPE res;
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int index;
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@ -209,9 +209,9 @@ static inline void glue(io_write, SUFFIX)(target_phys_addr_t physaddr,
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#endif
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}
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void REGPARM(2) glue(glue(__st, SUFFIX), MMUSUFFIX)(target_ulong addr,
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DATA_TYPE val,
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int mmu_idx)
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void REGPARM glue(glue(__st, SUFFIX), MMUSUFFIX)(target_ulong addr,
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DATA_TYPE val,
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int mmu_idx)
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{
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target_phys_addr_t physaddr;
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target_ulong tlb_addr;
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