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https://github.com/Atmosphere-NX/Atmosphere.git
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kern: KPageTable: remove MapFirst operation, replace with MapFirstGroup
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7b523cfc8d
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@ -208,8 +208,8 @@ namespace ams::kern::arch::arm64 {
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}
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}
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Result MapContiguous(KProcessAddress virt_addr, KPhysicalAddress phys_addr, size_t num_pages, PageTableEntry entry_template, bool disable_head_merge, bool not_first, PageLinkedList *page_list, bool reuse_ll);
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Result MapGroup(KProcessAddress virt_addr, const KPageGroup &pg, size_t num_pages, PageTableEntry entry_template, bool disable_head_merge, PageLinkedList *page_list, bool reuse_ll);
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Result MapContiguous(KProcessAddress virt_addr, KPhysicalAddress phys_addr, size_t num_pages, PageTableEntry entry_template, bool disable_head_merge, PageLinkedList *page_list, bool reuse_ll);
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Result MapGroup(KProcessAddress virt_addr, const KPageGroup &pg, size_t num_pages, PageTableEntry entry_template, bool disable_head_merge, bool not_first, PageLinkedList *page_list, bool reuse_ll);
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bool MergePages(KProcessAddress virt_addr, PageLinkedList *page_list);
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@ -158,8 +158,16 @@ namespace ams::kern {
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private:
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const KPageGroup *m_pg;
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public:
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explicit ALWAYS_INLINE KScopedPageGroup(const KPageGroup *gp) : m_pg(gp) { if (m_pg) { m_pg->Open(); } }
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explicit ALWAYS_INLINE KScopedPageGroup(const KPageGroup &gp) : KScopedPageGroup(std::addressof(gp)) { /* ... */ }
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explicit ALWAYS_INLINE KScopedPageGroup(const KPageGroup *gp, bool not_first = true) : m_pg(gp) {
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if (m_pg) {
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if (not_first) {
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m_pg->Open();
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} else {
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m_pg->OpenFirst();
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}
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}
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}
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explicit ALWAYS_INLINE KScopedPageGroup(const KPageGroup &gp, bool not_first = true) : KScopedPageGroup(std::addressof(gp), not_first) { /* ... */ }
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ALWAYS_INLINE ~KScopedPageGroup() { if (m_pg) { m_pg->Close(); } }
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ALWAYS_INLINE void CancelClose() {
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@ -88,8 +88,8 @@ namespace ams::kern {
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enum OperationType {
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OperationType_Map = 0,
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OperationType_MapFirst = 1,
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OperationType_MapGroup = 2,
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OperationType_MapFirstGroup = 1,
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OperationType_Unmap = 3,
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OperationType_ChangePermissions = 4,
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OperationType_ChangePermissionsAndRefresh = 5,
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@ -351,7 +351,7 @@ namespace ams::kern::arch::arm64 {
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MESOSPHERE_ASSERT(util::IsAligned(GetInteger(virt_addr), PageSize));
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MESOSPHERE_ASSERT(this->ContainsPages(virt_addr, num_pages));
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if (operation == OperationType_Map || operation == OperationType_MapFirst) {
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if (operation == OperationType_Map) {
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MESOSPHERE_ABORT_UNLESS(is_pa_valid);
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MESOSPHERE_ASSERT(util::IsAligned(GetInteger(phys_addr), PageSize));
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} else {
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@ -378,8 +378,7 @@ namespace ams::kern::arch::arm64 {
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switch (operation) {
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case OperationType_Map:
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case OperationType_MapFirst:
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R_RETURN(this->MapContiguous(virt_addr, phys_addr, num_pages, entry_template, properties.disable_merge_attributes == DisableMergeAttribute_DisableHead, operation != OperationType_MapFirst, page_list, reuse_ll));
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R_RETURN(this->MapContiguous(virt_addr, phys_addr, num_pages, entry_template, properties.disable_merge_attributes == DisableMergeAttribute_DisableHead, page_list, reuse_ll));
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case OperationType_ChangePermissions:
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R_RETURN(this->ChangePermissions(virt_addr, num_pages, entry_template, properties.disable_merge_attributes, false, false, page_list, reuse_ll));
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case OperationType_ChangePermissionsAndRefresh:
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@ -402,7 +401,8 @@ namespace ams::kern::arch::arm64 {
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auto entry_template = this->GetEntryTemplate(properties);
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switch (operation) {
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case OperationType_MapGroup:
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R_RETURN(this->MapGroup(virt_addr, page_group, num_pages, entry_template, properties.disable_merge_attributes == DisableMergeAttribute_DisableHead, page_list, reuse_ll));
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case OperationType_MapFirstGroup:
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R_RETURN(this->MapGroup(virt_addr, page_group, num_pages, entry_template, properties.disable_merge_attributes == DisableMergeAttribute_DisableHead, operation != OperationType_MapFirstGroup, page_list, reuse_ll));
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MESOSPHERE_UNREACHABLE_DEFAULT_CASE();
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}
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}
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@ -759,7 +759,7 @@ namespace ams::kern::arch::arm64 {
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R_SUCCEED();
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}
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Result KPageTable::MapContiguous(KProcessAddress virt_addr, KPhysicalAddress phys_addr, size_t num_pages, PageTableEntry entry_template, bool disable_head_merge, bool not_first, PageLinkedList *page_list, bool reuse_ll) {
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Result KPageTable::MapContiguous(KProcessAddress virt_addr, KPhysicalAddress phys_addr, size_t num_pages, PageTableEntry entry_template, bool disable_head_merge, PageLinkedList *page_list, bool reuse_ll) {
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MESOSPHERE_ASSERT(this->IsLockedByCurrentThread());
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/* Cache initial addresses for use on cleanup. */
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@ -830,21 +830,17 @@ namespace ams::kern::arch::arm64 {
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/* Open references to the pages, if we should. */
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if (IsHeapPhysicalAddress(orig_phys_addr)) {
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if (not_first) {
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Kernel::GetMemoryManager().Open(orig_phys_addr, num_pages);
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} else {
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Kernel::GetMemoryManager().OpenFirst(orig_phys_addr, num_pages);
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}
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Kernel::GetMemoryManager().Open(orig_phys_addr, num_pages);
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}
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R_SUCCEED();
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}
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Result KPageTable::MapGroup(KProcessAddress virt_addr, const KPageGroup &pg, size_t num_pages, PageTableEntry entry_template, bool disable_head_merge, PageLinkedList *page_list, bool reuse_ll) {
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Result KPageTable::MapGroup(KProcessAddress virt_addr, const KPageGroup &pg, size_t num_pages, PageTableEntry entry_template, bool disable_head_merge, bool not_first, PageLinkedList *page_list, bool reuse_ll) {
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MESOSPHERE_ASSERT(this->IsLockedByCurrentThread());
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/* We want to maintain a new reference to every page in the group. */
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KScopedPageGroup spg(pg);
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KScopedPageGroup spg(pg, not_first);
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/* Cache initial address for use on cleanup. */
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const KProcessAddress orig_virt_addr = virt_addr;
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@ -4435,32 +4435,44 @@ namespace ams::kern {
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/* If it's unmapped, we need to map it. */
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if (info.GetState() == KMemoryState_Free) {
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/* Determine the range to map. */
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const KPageProperties map_properties = { KMemoryPermission_UserReadWrite, false, false, DisableMergeAttribute_None };
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const KPageProperties map_properties = { KMemoryPermission_UserReadWrite, false, false, cur_address == this->GetAliasRegionStart() ? DisableMergeAttribute_DisableHead : DisableMergeAttribute_None };
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size_t map_pages = std::min(KProcessAddress(info.GetEndAddress()) - cur_address, last_address + 1 - cur_address) / PageSize;
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/* While we have pages to map, map them. */
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while (map_pages > 0) {
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/* Check if we're at the end of the physical block. */
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if (pg_pages == 0) {
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/* Ensure there are more pages to map. */
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MESOSPHERE_ASSERT(pg_it != pg.end());
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{
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/* Create a page group for the current mapping range. */
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KPageGroup cur_pg(m_block_info_manager);
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{
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ON_RESULT_FAILURE {
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cur_pg.OpenFirst();
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cur_pg.Close();
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};
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/* Advance our physical block. */
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++pg_it;
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pg_phys_addr = pg_it->GetAddress();
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pg_pages = pg_it->GetNumPages();
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size_t remain_pages = map_pages;
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while (remain_pages > 0) {
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/* Check if we're at the end of the physical block. */
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if (pg_pages == 0) {
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/* Ensure there are more pages to map. */
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MESOSPHERE_ASSERT(pg_it != pg.end());
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/* Advance our physical block. */
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++pg_it;
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pg_phys_addr = pg_it->GetAddress();
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pg_pages = pg_it->GetNumPages();
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}
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/* Add whatever we can to the current block. */
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const size_t cur_pages = std::min(pg_pages, remain_pages);
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R_TRY(cur_pg.AddBlock(pg_phys_addr + ((pg_pages - cur_pages) * PageSize), cur_pages));
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/* Advance. */
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remain_pages -= cur_pages;
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pg_pages -= cur_pages;
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}
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}
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/* Map whatever we can. */
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const size_t cur_pages = std::min(pg_pages, map_pages);
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R_TRY(this->Operate(updater.GetPageList(), cur_address, cur_pages, pg_phys_addr, true, map_properties, OperationType_MapFirst, false));
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/* Advance. */
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cur_address += cur_pages * PageSize;
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map_pages -= cur_pages;
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pg_phys_addr += cur_pages * PageSize;
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pg_pages -= cur_pages;
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/* Map the papges. */
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R_TRY(this->Operate(updater.GetPageList(), cur_address, map_pages, cur_pg, map_properties, OperationType_MapFirstGroup, false));
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}
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}
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