memory: Switch memory from using AddressSpace to FlatView
FlatView's will be shared between AddressSpace's and subpage_t and MemoryRegionSection cannot store AS anymore, hence this change. In particular, for: typedef struct subpage_t { MemoryRegion iomem; - AddressSpace *as; + FlatView *fv; hwaddr base; uint16_t sub_section[]; } subpage_t; struct MemoryRegionSection { MemoryRegion *mr; - AddressSpace *address_space; + FlatView *fv; hwaddr offset_within_region; Int128 size; hwaddr offset_within_address_space; bool readonly; }; This should cause no behavioural change. Signed-off-by: Alexey Kardashevskiy <aik@ozlabs.ru> Message-Id: <20170921085110.25598-7-aik@ozlabs.ru> Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
This commit is contained in:
parent
c775252378
commit
166206845f
180
exec.c
180
exec.c
@ -198,7 +198,7 @@ struct AddressSpaceDispatch {
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#define SUBPAGE_IDX(addr) ((addr) & ~TARGET_PAGE_MASK)
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typedef struct subpage_t {
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MemoryRegion iomem;
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AddressSpace *as;
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FlatView *fv;
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hwaddr base;
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uint16_t sub_section[];
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} subpage_t;
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@ -468,13 +468,13 @@ address_space_translate_internal(AddressSpaceDispatch *d, hwaddr addr, hwaddr *x
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}
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/* Called from RCU critical section */
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static MemoryRegionSection address_space_do_translate(AddressSpace *as,
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hwaddr addr,
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hwaddr *xlat,
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hwaddr *plen,
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bool is_write,
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bool is_mmio,
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AddressSpace **target_as)
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static MemoryRegionSection flatview_do_translate(FlatView *fv,
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hwaddr addr,
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hwaddr *xlat,
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hwaddr *plen,
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bool is_write,
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bool is_mmio,
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AddressSpace **target_as)
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{
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IOMMUTLBEntry iotlb;
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MemoryRegionSection *section;
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@ -482,8 +482,9 @@ static MemoryRegionSection address_space_do_translate(AddressSpace *as,
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IOMMUMemoryRegionClass *imrc;
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for (;;) {
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AddressSpaceDispatch *d = address_space_to_dispatch(as);
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section = address_space_translate_internal(d, addr, &addr, plen, is_mmio);
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section = address_space_translate_internal(
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flatview_to_dispatch(fv), addr, &addr,
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plen, is_mmio);
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iommu_mr = memory_region_get_iommu(section->mr);
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if (!iommu_mr) {
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@ -500,7 +501,7 @@ static MemoryRegionSection address_space_do_translate(AddressSpace *as,
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goto translate_fail;
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}
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as = iotlb.target_as;
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fv = address_space_to_flatview(iotlb.target_as);
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*target_as = iotlb.target_as;
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}
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@ -523,8 +524,8 @@ IOMMUTLBEntry address_space_get_iotlb_entry(AddressSpace *as, hwaddr addr,
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plen = (hwaddr)-1;
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/* This can never be MMIO. */
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section = address_space_do_translate(as, addr, &xlat, &plen,
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is_write, false, &as);
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section = flatview_do_translate(address_space_to_flatview(as), addr,
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&xlat, &plen, is_write, false, &as);
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/* Illegal translation */
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if (section.mr == &io_mem_unassigned) {
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@ -560,16 +561,15 @@ iotlb_fail:
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}
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/* Called from RCU critical section */
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MemoryRegion *address_space_translate(AddressSpace *as, hwaddr addr,
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hwaddr *xlat, hwaddr *plen,
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bool is_write)
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MemoryRegion *flatview_translate(FlatView *fv, hwaddr addr, hwaddr *xlat,
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hwaddr *plen, bool is_write)
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{
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MemoryRegion *mr;
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MemoryRegionSection section;
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AddressSpace *as = NULL;
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/* This can be MMIO, so setup MMIO bit. */
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section = address_space_do_translate(as, addr, xlat, plen, is_write, true,
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&as);
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section = flatview_do_translate(fv, addr, xlat, plen, is_write, true, &as);
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mr = section.mr;
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if (xen_enabled() && memory_access_is_direct(mr, is_write)) {
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@ -1219,7 +1219,7 @@ hwaddr memory_region_section_get_iotlb(CPUState *cpu,
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} else {
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AddressSpaceDispatch *d;
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d = address_space_to_dispatch(section->address_space);
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d = flatview_to_dispatch(section->fv);
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iotlb = section - d->map.sections;
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iotlb += xlat;
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}
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@ -1245,7 +1245,7 @@ hwaddr memory_region_section_get_iotlb(CPUState *cpu,
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static int subpage_register (subpage_t *mmio, uint32_t start, uint32_t end,
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uint16_t section);
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static subpage_t *subpage_init(AddressSpace *as, hwaddr base);
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static subpage_t *subpage_init(FlatView *fv, hwaddr base);
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static void *(*phys_mem_alloc)(size_t size, uint64_t *align) =
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qemu_anon_ram_alloc;
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@ -1302,7 +1302,7 @@ static void phys_sections_free(PhysPageMap *map)
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g_free(map->nodes);
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}
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static void register_subpage(AddressSpace *as, AddressSpaceDispatch *d,
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static void register_subpage(FlatView *fv, AddressSpaceDispatch *d,
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MemoryRegionSection *section)
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{
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subpage_t *subpage;
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@ -1318,8 +1318,8 @@ static void register_subpage(AddressSpace *as, AddressSpaceDispatch *d,
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assert(existing->mr->subpage || existing->mr == &io_mem_unassigned);
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if (!(existing->mr->subpage)) {
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subpage = subpage_init(as, base);
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subsection.address_space = as;
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subpage = subpage_init(fv, base);
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subsection.fv = fv;
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subsection.mr = &subpage->iomem;
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phys_page_set(d, base >> TARGET_PAGE_BITS, 1,
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phys_section_add(&d->map, &subsection));
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@ -1345,7 +1345,7 @@ static void register_multipage(AddressSpaceDispatch *d,
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phys_page_set(d, start_addr >> TARGET_PAGE_BITS, num_pages, section_index);
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}
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void mem_add(AddressSpace *as, FlatView *fv, MemoryRegionSection *section)
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void mem_add(FlatView *fv, MemoryRegionSection *section)
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{
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AddressSpaceDispatch *d = flatview_to_dispatch(fv);
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MemoryRegionSection now = *section, remain = *section;
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@ -1356,7 +1356,7 @@ void mem_add(AddressSpace *as, FlatView *fv, MemoryRegionSection *section)
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- now.offset_within_address_space;
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now.size = int128_min(int128_make64(left), now.size);
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register_subpage(as, d, &now);
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register_subpage(fv, d, &now);
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} else {
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now.size = int128_zero();
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}
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@ -1366,10 +1366,10 @@ void mem_add(AddressSpace *as, FlatView *fv, MemoryRegionSection *section)
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remain.offset_within_region += int128_get64(now.size);
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now = remain;
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if (int128_lt(remain.size, page_size)) {
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register_subpage(as, d, &now);
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register_subpage(fv, d, &now);
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} else if (remain.offset_within_address_space & ~TARGET_PAGE_MASK) {
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now.size = page_size;
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register_subpage(as, d, &now);
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register_subpage(fv, d, &now);
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} else {
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now.size = int128_and(now.size, int128_neg(page_size));
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register_multipage(d, &now);
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@ -2500,6 +2500,11 @@ static const MemoryRegionOps watch_mem_ops = {
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.endianness = DEVICE_NATIVE_ENDIAN,
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};
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static MemTxResult flatview_write(FlatView *fv, hwaddr addr, MemTxAttrs attrs,
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const uint8_t *buf, int len);
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static bool flatview_access_valid(FlatView *fv, hwaddr addr, int len,
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bool is_write);
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static MemTxResult subpage_read(void *opaque, hwaddr addr, uint64_t *data,
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unsigned len, MemTxAttrs attrs)
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{
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@ -2511,8 +2516,7 @@ static MemTxResult subpage_read(void *opaque, hwaddr addr, uint64_t *data,
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printf("%s: subpage %p len %u addr " TARGET_FMT_plx "\n", __func__,
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subpage, len, addr);
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#endif
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res = address_space_read(subpage->as, addr + subpage->base,
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attrs, buf, len);
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res = flatview_read(subpage->fv, addr + subpage->base, attrs, buf, len);
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if (res) {
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return res;
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}
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@ -2561,8 +2565,7 @@ static MemTxResult subpage_write(void *opaque, hwaddr addr,
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default:
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abort();
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}
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return address_space_write(subpage->as, addr + subpage->base,
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attrs, buf, len);
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return flatview_write(subpage->fv, addr + subpage->base, attrs, buf, len);
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}
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static bool subpage_accepts(void *opaque, hwaddr addr,
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@ -2574,8 +2577,8 @@ static bool subpage_accepts(void *opaque, hwaddr addr,
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__func__, subpage, is_write ? 'w' : 'r', len, addr);
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#endif
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return address_space_access_valid(subpage->as, addr + subpage->base,
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len, is_write);
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return flatview_access_valid(subpage->fv, addr + subpage->base,
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len, is_write);
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}
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static const MemoryRegionOps subpage_ops = {
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@ -2609,12 +2612,12 @@ static int subpage_register (subpage_t *mmio, uint32_t start, uint32_t end,
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return 0;
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}
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static subpage_t *subpage_init(AddressSpace *as, hwaddr base)
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static subpage_t *subpage_init(FlatView *fv, hwaddr base)
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{
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subpage_t *mmio;
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mmio = g_malloc0(sizeof(subpage_t) + TARGET_PAGE_SIZE * sizeof(uint16_t));
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mmio->as = as;
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mmio->fv = fv;
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mmio->base = base;
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memory_region_init_io(&mmio->iomem, NULL, &subpage_ops, mmio,
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NULL, TARGET_PAGE_SIZE);
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@ -2628,12 +2631,11 @@ static subpage_t *subpage_init(AddressSpace *as, hwaddr base)
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return mmio;
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}
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static uint16_t dummy_section(PhysPageMap *map, AddressSpace *as,
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MemoryRegion *mr)
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static uint16_t dummy_section(PhysPageMap *map, FlatView *fv, MemoryRegion *mr)
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{
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assert(as);
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assert(fv);
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MemoryRegionSection section = {
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.address_space = as,
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.fv = fv,
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.mr = mr,
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.offset_within_address_space = 0,
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.offset_within_region = 0,
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@ -2672,16 +2674,17 @@ static void io_mem_init(void)
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AddressSpaceDispatch *mem_begin(AddressSpace *as)
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{
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FlatView *fv = address_space_to_flatview(as);
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AddressSpaceDispatch *d = g_new0(AddressSpaceDispatch, 1);
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uint16_t n;
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n = dummy_section(&d->map, as, &io_mem_unassigned);
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n = dummy_section(&d->map, fv, &io_mem_unassigned);
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assert(n == PHYS_SECTION_UNASSIGNED);
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n = dummy_section(&d->map, as, &io_mem_notdirty);
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n = dummy_section(&d->map, fv, &io_mem_notdirty);
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assert(n == PHYS_SECTION_NOTDIRTY);
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n = dummy_section(&d->map, as, &io_mem_rom);
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n = dummy_section(&d->map, fv, &io_mem_rom);
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assert(n == PHYS_SECTION_ROM);
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n = dummy_section(&d->map, as, &io_mem_watch);
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n = dummy_section(&d->map, fv, &io_mem_watch);
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assert(n == PHYS_SECTION_WATCH);
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d->phys_map = (PhysPageEntry) { .ptr = PHYS_MAP_NODE_NIL, .skip = 1 };
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@ -2861,11 +2864,11 @@ static bool prepare_mmio_access(MemoryRegion *mr)
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}
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/* Called within RCU critical section. */
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static MemTxResult address_space_write_continue(AddressSpace *as, hwaddr addr,
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MemTxAttrs attrs,
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const uint8_t *buf,
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int len, hwaddr addr1,
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hwaddr l, MemoryRegion *mr)
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static MemTxResult flatview_write_continue(FlatView *fv, hwaddr addr,
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MemTxAttrs attrs,
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const uint8_t *buf,
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int len, hwaddr addr1,
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hwaddr l, MemoryRegion *mr)
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{
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uint8_t *ptr;
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uint64_t val;
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@ -2927,14 +2930,14 @@ static MemTxResult address_space_write_continue(AddressSpace *as, hwaddr addr,
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}
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l = len;
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mr = address_space_translate(as, addr, &addr1, &l, true);
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mr = flatview_translate(fv, addr, &addr1, &l, true);
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}
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return result;
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}
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MemTxResult address_space_write(AddressSpace *as, hwaddr addr, MemTxAttrs attrs,
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const uint8_t *buf, int len)
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static MemTxResult flatview_write(FlatView *fv, hwaddr addr, MemTxAttrs attrs,
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const uint8_t *buf, int len)
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{
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hwaddr l;
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hwaddr addr1;
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@ -2944,20 +2947,27 @@ MemTxResult address_space_write(AddressSpace *as, hwaddr addr, MemTxAttrs attrs,
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if (len > 0) {
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rcu_read_lock();
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l = len;
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mr = address_space_translate(as, addr, &addr1, &l, true);
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result = address_space_write_continue(as, addr, attrs, buf, len,
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addr1, l, mr);
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mr = flatview_translate(fv, addr, &addr1, &l, true);
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result = flatview_write_continue(fv, addr, attrs, buf, len,
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addr1, l, mr);
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rcu_read_unlock();
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}
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return result;
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}
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MemTxResult address_space_write(AddressSpace *as, hwaddr addr,
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MemTxAttrs attrs,
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const uint8_t *buf, int len)
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{
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return flatview_write(address_space_to_flatview(as), addr, attrs, buf, len);
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}
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/* Called within RCU critical section. */
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MemTxResult address_space_read_continue(AddressSpace *as, hwaddr addr,
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MemTxAttrs attrs, uint8_t *buf,
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int len, hwaddr addr1, hwaddr l,
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MemoryRegion *mr)
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MemTxResult flatview_read_continue(FlatView *fv, hwaddr addr,
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MemTxAttrs attrs, uint8_t *buf,
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int len, hwaddr addr1, hwaddr l,
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MemoryRegion *mr)
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{
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uint8_t *ptr;
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uint64_t val;
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@ -3017,14 +3027,14 @@ MemTxResult address_space_read_continue(AddressSpace *as, hwaddr addr,
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}
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l = len;
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mr = address_space_translate(as, addr, &addr1, &l, false);
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mr = flatview_translate(fv, addr, &addr1, &l, false);
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}
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return result;
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}
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MemTxResult address_space_read_full(AddressSpace *as, hwaddr addr,
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MemTxAttrs attrs, uint8_t *buf, int len)
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MemTxResult flatview_read_full(FlatView *fv, hwaddr addr,
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MemTxAttrs attrs, uint8_t *buf, int len)
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{
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hwaddr l;
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hwaddr addr1;
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@ -3034,25 +3044,33 @@ MemTxResult address_space_read_full(AddressSpace *as, hwaddr addr,
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if (len > 0) {
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rcu_read_lock();
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l = len;
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mr = address_space_translate(as, addr, &addr1, &l, false);
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result = address_space_read_continue(as, addr, attrs, buf, len,
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addr1, l, mr);
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mr = flatview_translate(fv, addr, &addr1, &l, false);
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result = flatview_read_continue(fv, addr, attrs, buf, len,
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addr1, l, mr);
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rcu_read_unlock();
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}
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return result;
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}
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MemTxResult address_space_rw(AddressSpace *as, hwaddr addr, MemTxAttrs attrs,
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uint8_t *buf, int len, bool is_write)
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static MemTxResult flatview_rw(FlatView *fv, hwaddr addr, MemTxAttrs attrs,
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uint8_t *buf, int len, bool is_write)
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{
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if (is_write) {
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return address_space_write(as, addr, attrs, (uint8_t *)buf, len);
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return flatview_write(fv, addr, attrs, (uint8_t *)buf, len);
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} else {
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return address_space_read(as, addr, attrs, (uint8_t *)buf, len);
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return flatview_read(fv, addr, attrs, (uint8_t *)buf, len);
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}
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}
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MemTxResult address_space_rw(AddressSpace *as, hwaddr addr,
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MemTxAttrs attrs, uint8_t *buf,
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int len, bool is_write)
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{
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return flatview_rw(address_space_to_flatview(as),
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addr, attrs, buf, len, is_write);
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}
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void cpu_physical_memory_rw(hwaddr addr, uint8_t *buf,
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int len, int is_write)
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{
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@ -3210,7 +3228,8 @@ static void cpu_notify_map_clients(void)
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qemu_mutex_unlock(&map_client_list_lock);
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}
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bool address_space_access_valid(AddressSpace *as, hwaddr addr, int len, bool is_write)
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static bool flatview_access_valid(FlatView *fv, hwaddr addr, int len,
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bool is_write)
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{
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MemoryRegion *mr;
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hwaddr l, xlat;
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@ -3218,7 +3237,7 @@ bool address_space_access_valid(AddressSpace *as, hwaddr addr, int len, bool is_
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rcu_read_lock();
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while (len > 0) {
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l = len;
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mr = address_space_translate(as, addr, &xlat, &l, is_write);
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mr = flatview_translate(fv, addr, &xlat, &l, is_write);
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if (!memory_access_is_direct(mr, is_write)) {
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l = memory_access_size(mr, l, addr);
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if (!memory_region_access_valid(mr, xlat, l, is_write)) {
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@ -3234,8 +3253,16 @@ bool address_space_access_valid(AddressSpace *as, hwaddr addr, int len, bool is_
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return true;
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}
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|
||||
bool address_space_access_valid(AddressSpace *as, hwaddr addr,
|
||||
int len, bool is_write)
|
||||
{
|
||||
return flatview_access_valid(address_space_to_flatview(as),
|
||||
addr, len, is_write);
|
||||
}
|
||||
|
||||
static hwaddr
|
||||
address_space_extend_translation(AddressSpace *as, hwaddr addr, hwaddr target_len,
|
||||
flatview_extend_translation(FlatView *fv, hwaddr addr,
|
||||
hwaddr target_len,
|
||||
MemoryRegion *mr, hwaddr base, hwaddr len,
|
||||
bool is_write)
|
||||
{
|
||||
@ -3252,7 +3279,8 @@ address_space_extend_translation(AddressSpace *as, hwaddr addr, hwaddr target_le
|
||||
}
|
||||
|
||||
len = target_len;
|
||||
this_mr = address_space_translate(as, addr, &xlat, &len, is_write);
|
||||
this_mr = flatview_translate(fv, addr, &xlat,
|
||||
&len, is_write);
|
||||
if (this_mr != mr || xlat != base + done) {
|
||||
return done;
|
||||
}
|
||||
@ -3275,6 +3303,7 @@ void *address_space_map(AddressSpace *as,
|
||||
hwaddr l, xlat;
|
||||
MemoryRegion *mr;
|
||||
void *ptr;
|
||||
FlatView *fv = address_space_to_flatview(as);
|
||||
|
||||
if (len == 0) {
|
||||
return NULL;
|
||||
@ -3282,7 +3311,7 @@ void *address_space_map(AddressSpace *as,
|
||||
|
||||
l = len;
|
||||
rcu_read_lock();
|
||||
mr = address_space_translate(as, addr, &xlat, &l, is_write);
|
||||
mr = flatview_translate(fv, addr, &xlat, &l, is_write);
|
||||
|
||||
if (!memory_access_is_direct(mr, is_write)) {
|
||||
if (atomic_xchg(&bounce.in_use, true)) {
|
||||
@ -3298,7 +3327,7 @@ void *address_space_map(AddressSpace *as,
|
||||
memory_region_ref(mr);
|
||||
bounce.mr = mr;
|
||||
if (!is_write) {
|
||||
address_space_read(as, addr, MEMTXATTRS_UNSPECIFIED,
|
||||
flatview_read(fv, addr, MEMTXATTRS_UNSPECIFIED,
|
||||
bounce.buffer, l);
|
||||
}
|
||||
|
||||
@ -3309,7 +3338,8 @@ void *address_space_map(AddressSpace *as,
|
||||
|
||||
|
||||
memory_region_ref(mr);
|
||||
*plen = address_space_extend_translation(as, addr, len, mr, xlat, l, is_write);
|
||||
*plen = flatview_extend_translation(fv, addr, len, mr, xlat,
|
||||
l, is_write);
|
||||
ptr = qemu_ram_ptr_length(mr->ram_block, xlat, plen, true);
|
||||
rcu_read_unlock();
|
||||
|
||||
|
@ -124,7 +124,7 @@ static void kvm_openpic_region_add(MemoryListener *listener,
|
||||
uint64_t reg_base;
|
||||
int ret;
|
||||
|
||||
if (section->address_space != &address_space_memory) {
|
||||
if (section->fv != address_space_to_flatview(&address_space_memory)) {
|
||||
abort();
|
||||
}
|
||||
|
||||
|
@ -27,7 +27,7 @@ extern const MemoryRegionOps unassigned_mem_ops;
|
||||
bool memory_region_access_valid(MemoryRegion *mr, hwaddr addr,
|
||||
unsigned size, bool is_write);
|
||||
|
||||
void mem_add(AddressSpace *as, FlatView *fv, MemoryRegionSection *section);
|
||||
void mem_add(FlatView *fv, MemoryRegionSection *section);
|
||||
AddressSpaceDispatch *mem_begin(AddressSpace *as);
|
||||
void mem_commit(AddressSpaceDispatch *d);
|
||||
|
||||
|
@ -48,6 +48,7 @@
|
||||
|
||||
typedef struct MemoryRegionOps MemoryRegionOps;
|
||||
typedef struct MemoryRegionMmio MemoryRegionMmio;
|
||||
typedef struct FlatView FlatView;
|
||||
|
||||
struct MemoryRegionMmio {
|
||||
CPUReadMemoryFunc *read[3];
|
||||
@ -320,6 +321,8 @@ struct AddressSpace {
|
||||
QTAILQ_ENTRY(AddressSpace) address_spaces_link;
|
||||
};
|
||||
|
||||
FlatView *address_space_to_flatview(AddressSpace *as);
|
||||
|
||||
/**
|
||||
* MemoryRegionSection: describes a fragment of a #MemoryRegion
|
||||
*
|
||||
@ -333,7 +336,7 @@ struct AddressSpace {
|
||||
*/
|
||||
struct MemoryRegionSection {
|
||||
MemoryRegion *mr;
|
||||
AddressSpace *address_space;
|
||||
FlatView *fv;
|
||||
hwaddr offset_within_region;
|
||||
Int128 size;
|
||||
hwaddr offset_within_address_space;
|
||||
@ -1842,9 +1845,17 @@ IOMMUTLBEntry address_space_get_iotlb_entry(AddressSpace *as, hwaddr addr,
|
||||
* @len: pointer to length
|
||||
* @is_write: indicates the transfer direction
|
||||
*/
|
||||
MemoryRegion *address_space_translate(AddressSpace *as, hwaddr addr,
|
||||
hwaddr *xlat, hwaddr *len,
|
||||
bool is_write);
|
||||
MemoryRegion *flatview_translate(FlatView *fv,
|
||||
hwaddr addr, hwaddr *xlat,
|
||||
hwaddr *len, bool is_write);
|
||||
|
||||
static inline MemoryRegion *address_space_translate(AddressSpace *as,
|
||||
hwaddr addr, hwaddr *xlat,
|
||||
hwaddr *len, bool is_write)
|
||||
{
|
||||
return flatview_translate(address_space_to_flatview(as),
|
||||
addr, xlat, len, is_write);
|
||||
}
|
||||
|
||||
/* address_space_access_valid: check for validity of accessing an address
|
||||
* space range
|
||||
@ -1895,12 +1906,13 @@ void address_space_unmap(AddressSpace *as, void *buffer, hwaddr len,
|
||||
|
||||
|
||||
/* Internal functions, part of the implementation of address_space_read. */
|
||||
MemTxResult address_space_read_continue(AddressSpace *as, hwaddr addr,
|
||||
MemTxAttrs attrs, uint8_t *buf,
|
||||
int len, hwaddr addr1, hwaddr l,
|
||||
MemoryRegion *mr);
|
||||
MemTxResult address_space_read_full(AddressSpace *as, hwaddr addr,
|
||||
MemTxAttrs attrs, uint8_t *buf, int len);
|
||||
MemTxResult flatview_read_continue(FlatView *fv, hwaddr addr,
|
||||
MemTxAttrs attrs, uint8_t *buf,
|
||||
int len, hwaddr addr1, hwaddr l,
|
||||
MemoryRegion *mr);
|
||||
|
||||
MemTxResult flatview_read_full(FlatView *fv, hwaddr addr,
|
||||
MemTxAttrs attrs, uint8_t *buf, int len);
|
||||
void *qemu_map_ram_ptr(RAMBlock *ram_block, ram_addr_t addr);
|
||||
|
||||
static inline bool memory_access_is_direct(MemoryRegion *mr, bool is_write)
|
||||
@ -1927,8 +1939,8 @@ static inline bool memory_access_is_direct(MemoryRegion *mr, bool is_write)
|
||||
* @buf: buffer with the data transferred
|
||||
*/
|
||||
static inline __attribute__((__always_inline__))
|
||||
MemTxResult address_space_read(AddressSpace *as, hwaddr addr, MemTxAttrs attrs,
|
||||
uint8_t *buf, int len)
|
||||
MemTxResult flatview_read(FlatView *fv, hwaddr addr, MemTxAttrs attrs,
|
||||
uint8_t *buf, int len)
|
||||
{
|
||||
MemTxResult result = MEMTX_OK;
|
||||
hwaddr l, addr1;
|
||||
@ -1939,22 +1951,29 @@ MemTxResult address_space_read(AddressSpace *as, hwaddr addr, MemTxAttrs attrs,
|
||||
if (len) {
|
||||
rcu_read_lock();
|
||||
l = len;
|
||||
mr = address_space_translate(as, addr, &addr1, &l, false);
|
||||
mr = flatview_translate(fv, addr, &addr1, &l, false);
|
||||
if (len == l && memory_access_is_direct(mr, false)) {
|
||||
ptr = qemu_map_ram_ptr(mr->ram_block, addr1);
|
||||
memcpy(buf, ptr, len);
|
||||
} else {
|
||||
result = address_space_read_continue(as, addr, attrs, buf, len,
|
||||
addr1, l, mr);
|
||||
result = flatview_read_continue(fv, addr, attrs, buf, len,
|
||||
addr1, l, mr);
|
||||
}
|
||||
rcu_read_unlock();
|
||||
}
|
||||
} else {
|
||||
result = address_space_read_full(as, addr, attrs, buf, len);
|
||||
result = flatview_read_full(fv, addr, attrs, buf, len);
|
||||
}
|
||||
return result;
|
||||
}
|
||||
|
||||
static inline MemTxResult address_space_read(AddressSpace *as, hwaddr addr,
|
||||
MemTxAttrs attrs, uint8_t *buf,
|
||||
int len)
|
||||
{
|
||||
return flatview_read(address_space_to_flatview(as), addr, attrs, buf, len);
|
||||
}
|
||||
|
||||
/**
|
||||
* address_space_read_cached: read from a cached RAM region
|
||||
*
|
||||
|
33
memory.c
33
memory.c
@ -154,7 +154,8 @@ enum ListenerDirection { Forward, Reverse };
|
||||
/* No need to ref/unref .mr, the FlatRange keeps it alive. */
|
||||
#define MEMORY_LISTENER_UPDATE_REGION(fr, as, dir, callback, _args...) \
|
||||
do { \
|
||||
MemoryRegionSection mrs = section_from_flat_range(fr, as); \
|
||||
MemoryRegionSection mrs = section_from_flat_range(fr, \
|
||||
address_space_to_flatview(as)); \
|
||||
MEMORY_LISTENER_CALL(as, callback, dir, &mrs, ##_args); \
|
||||
} while(0)
|
||||
|
||||
@ -208,7 +209,6 @@ static bool memory_region_ioeventfd_equal(MemoryRegionIoeventfd a,
|
||||
}
|
||||
|
||||
typedef struct FlatRange FlatRange;
|
||||
typedef struct FlatView FlatView;
|
||||
|
||||
/* Range of memory in the global map. Addresses are absolute. */
|
||||
struct FlatRange {
|
||||
@ -238,11 +238,11 @@ typedef struct AddressSpaceOps AddressSpaceOps;
|
||||
for (var = (view)->ranges; var < (view)->ranges + (view)->nr; ++var)
|
||||
|
||||
static inline MemoryRegionSection
|
||||
section_from_flat_range(FlatRange *fr, AddressSpace *as)
|
||||
section_from_flat_range(FlatRange *fr, FlatView *fv)
|
||||
{
|
||||
return (MemoryRegionSection) {
|
||||
.mr = fr->mr,
|
||||
.address_space = as,
|
||||
.fv = fv,
|
||||
.offset_within_region = fr->offset_in_region,
|
||||
.size = fr->addr.size,
|
||||
.offset_within_address_space = int128_get64(fr->addr.start),
|
||||
@ -312,7 +312,7 @@ static void flatview_unref(FlatView *view)
|
||||
}
|
||||
}
|
||||
|
||||
static FlatView *address_space_to_flatview(AddressSpace *as)
|
||||
FlatView *address_space_to_flatview(AddressSpace *as)
|
||||
{
|
||||
return atomic_rcu_read(&as->current_map);
|
||||
}
|
||||
@ -761,7 +761,7 @@ static void address_space_add_del_ioeventfds(AddressSpace *as,
|
||||
fds_new[inew]))) {
|
||||
fd = &fds_old[iold];
|
||||
section = (MemoryRegionSection) {
|
||||
.address_space = as,
|
||||
.fv = address_space_to_flatview(as),
|
||||
.offset_within_address_space = int128_get64(fd->addr.start),
|
||||
.size = fd->addr.size,
|
||||
};
|
||||
@ -774,7 +774,7 @@ static void address_space_add_del_ioeventfds(AddressSpace *as,
|
||||
fds_old[iold]))) {
|
||||
fd = &fds_new[inew];
|
||||
section = (MemoryRegionSection) {
|
||||
.address_space = as,
|
||||
.fv = address_space_to_flatview(as),
|
||||
.offset_within_address_space = int128_get64(fd->addr.start),
|
||||
.size = fd->addr.size,
|
||||
};
|
||||
@ -794,7 +794,7 @@ static FlatView *address_space_get_flatview(AddressSpace *as)
|
||||
|
||||
rcu_read_lock();
|
||||
do {
|
||||
view = atomic_rcu_read(&as->current_map);
|
||||
view = address_space_to_flatview(as);
|
||||
/* If somebody has replaced as->current_map concurrently,
|
||||
* flatview_ref returns false.
|
||||
*/
|
||||
@ -913,8 +913,8 @@ static void address_space_update_topology(AddressSpace *as)
|
||||
new_view->dispatch = mem_begin(as);
|
||||
for (i = 0; i < new_view->nr; i++) {
|
||||
MemoryRegionSection mrs =
|
||||
section_from_flat_range(&new_view->ranges[i], as);
|
||||
mem_add(as, new_view, &mrs);
|
||||
section_from_flat_range(&new_view->ranges[i], new_view);
|
||||
mem_add(new_view, &mrs);
|
||||
}
|
||||
mem_commit(new_view->dispatch);
|
||||
|
||||
@ -1870,7 +1870,7 @@ void memory_region_sync_dirty_bitmap(MemoryRegion *mr)
|
||||
view = address_space_get_flatview(as);
|
||||
FOR_EACH_FLAT_RANGE(fr, view) {
|
||||
if (fr->mr == mr) {
|
||||
MemoryRegionSection mrs = section_from_flat_range(fr, as);
|
||||
MemoryRegionSection mrs = section_from_flat_range(fr, view);
|
||||
listener->log_sync(listener, &mrs);
|
||||
}
|
||||
}
|
||||
@ -1973,7 +1973,7 @@ static void memory_region_update_coalesced_range_as(MemoryRegion *mr, AddressSpa
|
||||
FOR_EACH_FLAT_RANGE(fr, view) {
|
||||
if (fr->mr == mr) {
|
||||
section = (MemoryRegionSection) {
|
||||
.address_space = as,
|
||||
.fv = view,
|
||||
.offset_within_address_space = int128_get64(fr->addr.start),
|
||||
.size = fr->addr.size,
|
||||
};
|
||||
@ -2324,7 +2324,7 @@ static MemoryRegionSection memory_region_find_rcu(MemoryRegion *mr,
|
||||
}
|
||||
range = addrrange_make(int128_make64(addr), int128_make64(size));
|
||||
|
||||
view = atomic_rcu_read(&as->current_map);
|
||||
view = address_space_to_flatview(as);
|
||||
fr = flatview_lookup(view, range);
|
||||
if (!fr) {
|
||||
return ret;
|
||||
@ -2335,7 +2335,7 @@ static MemoryRegionSection memory_region_find_rcu(MemoryRegion *mr,
|
||||
}
|
||||
|
||||
ret.mr = fr->mr;
|
||||
ret.address_space = as;
|
||||
ret.fv = view;
|
||||
range = addrrange_intersection(range, fr->addr);
|
||||
ret.offset_within_region = fr->offset_in_region;
|
||||
ret.offset_within_region += int128_get64(int128_sub(range.start,
|
||||
@ -2384,7 +2384,8 @@ void memory_global_dirty_log_sync(void)
|
||||
view = address_space_get_flatview(as);
|
||||
FOR_EACH_FLAT_RANGE(fr, view) {
|
||||
if (fr->dirty_log_mask) {
|
||||
MemoryRegionSection mrs = section_from_flat_range(fr, as);
|
||||
MemoryRegionSection mrs = section_from_flat_range(fr, view);
|
||||
|
||||
listener->log_sync(listener, &mrs);
|
||||
}
|
||||
}
|
||||
@ -2469,7 +2470,7 @@ static void listener_add_address_space(MemoryListener *listener,
|
||||
FOR_EACH_FLAT_RANGE(fr, view) {
|
||||
MemoryRegionSection section = {
|
||||
.mr = fr->mr,
|
||||
.address_space = as,
|
||||
.fv = view,
|
||||
.offset_within_region = fr->offset_in_region,
|
||||
.size = fr->addr.size,
|
||||
.offset_within_address_space = int128_get64(fr->addr.start),
|
||||
|
Loading…
x
Reference in New Issue
Block a user