mirror of
https://github.com/Atmosphere-NX/Atmosphere.git
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96f95b9f95
* result: try out some experimental shenanigans * result: sketch out some more shenanigans * result: see what it looks like to convert kernel to use result conds instead of guards * make rest of kernel use experimental new macro-ing
214 lines
9.6 KiB
C++
214 lines
9.6 KiB
C++
/*
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* Copyright (c) Atmosphère-NX
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <mesosphere.hpp>
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namespace ams::kern::svc {
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/* ============================= Common ============================= */
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namespace {
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#if defined(AMS_SVC_IO_POOL_NOT_SUPPORTED)
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constexpr bool IsIoPoolApiSupported = false;
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#else
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constexpr bool IsIoPoolApiSupported = true;
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#endif
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[[maybe_unused]] constexpr bool IsValidIoRegionMapping(ams::svc::MemoryMapping mapping) {
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switch (mapping) {
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case ams::svc::MemoryMapping_IoRegister:
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case ams::svc::MemoryMapping_Uncached:
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case ams::svc::MemoryMapping_Memory:
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return true;
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default:
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return false;
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}
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}
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[[maybe_unused]] constexpr bool IsValidIoRegionPermission(ams::svc::MemoryPermission perm) {
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switch (perm) {
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case ams::svc::MemoryPermission_Read:
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case ams::svc::MemoryPermission_ReadWrite:
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return true;
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default:
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return false;
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}
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}
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Result CreateIoPool(ams::svc::Handle *out, ams::svc::IoPoolType pool_type) {
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if constexpr (IsIoPoolApiSupported) {
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/* Validate that we're allowed to create a pool for the given type. */
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R_UNLESS(KIoPool::IsValidIoPoolType(pool_type), svc::ResultNotFound());
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/* Create the io pool. */
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KIoPool *io_pool = KIoPool::Create();
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R_UNLESS(io_pool != nullptr, svc::ResultOutOfResource());
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/* Ensure the only reference is in the handle table when we're done. */
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ON_SCOPE_EXIT { io_pool->Close(); };
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/* Initialize the io pool. */
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R_TRY(io_pool->Initialize(pool_type));
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/* Register the io pool. */
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KIoPool::Register(io_pool);
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/* Add the io pool to the handle table. */
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R_TRY(GetCurrentProcess().GetHandleTable().Add(out, io_pool));
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R_SUCCEED();
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} else {
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MESOSPHERE_UNUSED(out, pool_type);
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R_THROW(svc::ResultNotImplemented());
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}
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}
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Result CreateIoRegion(ams::svc::Handle *out, ams::svc::Handle io_pool_handle, uint64_t phys_addr, size_t size, ams::svc::MemoryMapping mapping, ams::svc::MemoryPermission perm) {
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if constexpr (IsIoPoolApiSupported) {
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/* Validate the address/size. */
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R_UNLESS(size > 0, svc::ResultInvalidSize());
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R_UNLESS(util::IsAligned(size, PageSize), svc::ResultInvalidSize());
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R_UNLESS(util::IsAligned(phys_addr, PageSize), svc::ResultInvalidAddress());
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R_UNLESS((phys_addr < phys_addr + size), svc::ResultInvalidMemoryRegion());
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/* Validate the mapping/permissions. */
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R_UNLESS(IsValidIoRegionMapping(mapping), svc::ResultInvalidEnumValue());
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R_UNLESS(IsValidIoRegionPermission(perm), svc::ResultInvalidEnumValue());
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/* Get the current handle table. */
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auto &handle_table = GetCurrentProcess().GetHandleTable();
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/* Get the io pool. */
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KScopedAutoObject io_pool = handle_table.GetObject<KIoPool>(io_pool_handle);
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R_UNLESS(io_pool.IsNotNull(), svc::ResultInvalidHandle());
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/* Create the io region. */
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KIoRegion *io_region = KIoRegion::Create();
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R_UNLESS(io_region != nullptr, svc::ResultOutOfResource());
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/* Ensure the only reference is in the handle table when we're done. */
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ON_SCOPE_EXIT { io_region->Close(); };
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/* Initialize the io region. */
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R_TRY(io_region->Initialize(io_pool.GetPointerUnsafe(), phys_addr, size, mapping, perm));
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/* Register the io region. */
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KIoRegion::Register(io_region);
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/* Add the io region to the handle table. */
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R_TRY(handle_table.Add(out, io_region));
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R_SUCCEED();
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} else {
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MESOSPHERE_UNUSED(out, io_pool_handle, phys_addr, size, mapping, perm);
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R_THROW(svc::ResultNotImplemented());
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}
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}
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Result MapIoRegion(ams::svc::Handle io_region_handle, uintptr_t address, size_t size, ams::svc::MemoryPermission map_perm) {
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if constexpr (IsIoPoolApiSupported) {
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/* Validate the address/size. */
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R_UNLESS(size > 0, svc::ResultInvalidSize());
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R_UNLESS(util::IsAligned(size, PageSize), svc::ResultInvalidSize());
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R_UNLESS(util::IsAligned(address, PageSize), svc::ResultInvalidAddress());
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R_UNLESS((address < address + size), svc::ResultInvalidCurrentMemory());
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/* Verify that the mapping is in range. */
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R_UNLESS(GetCurrentProcess().GetPageTable().CanContain(address, size, KMemoryState_Io), svc::ResultInvalidMemoryRegion());
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/* Validate the map permission. */
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R_UNLESS(IsValidIoRegionPermission(map_perm), svc::ResultInvalidNewMemoryPermission());
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/* Get the io region. */
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KScopedAutoObject io_region = GetCurrentProcess().GetHandleTable().GetObject<KIoRegion>(io_region_handle);
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R_UNLESS(io_region.IsNotNull(), svc::ResultInvalidHandle());
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/* Map the io region. */
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R_TRY(io_region->Map(address, size, map_perm));
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/* We succeeded. */
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R_SUCCEED();
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} else {
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MESOSPHERE_UNUSED(io_region_handle, address, size, map_perm);
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R_THROW(svc::ResultNotImplemented());
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}
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}
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Result UnmapIoRegion(ams::svc::Handle io_region_handle, uintptr_t address, size_t size) {
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if constexpr (IsIoPoolApiSupported) {
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/* Validate the address/size. */
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R_UNLESS(size > 0, svc::ResultInvalidSize());
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R_UNLESS(util::IsAligned(size, PageSize), svc::ResultInvalidSize());
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R_UNLESS(util::IsAligned(address, PageSize), svc::ResultInvalidAddress());
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R_UNLESS((address < address + size), svc::ResultInvalidCurrentMemory());
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/* Verify that the mapping is in range. */
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R_UNLESS(GetCurrentProcess().GetPageTable().CanContain(address, size, KMemoryState_Io), svc::ResultInvalidMemoryRegion());
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/* Get the io region. */
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KScopedAutoObject io_region = GetCurrentProcess().GetHandleTable().GetObject<KIoRegion>(io_region_handle);
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R_UNLESS(io_region.IsNotNull(), svc::ResultInvalidHandle());
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/* Unmap the io region. */
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R_TRY(io_region->Unmap(address, size));
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/* We succeeded. */
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R_SUCCEED();
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} else {
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MESOSPHERE_UNUSED(io_region_handle, address, size);
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R_THROW(svc::ResultNotImplemented());
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}
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}
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}
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/* ============================= 64 ABI ============================= */
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Result CreateIoPool64(ams::svc::Handle *out_handle, ams::svc::IoPoolType pool_type) {
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R_RETURN(CreateIoPool(out_handle, pool_type));
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}
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Result CreateIoRegion64(ams::svc::Handle *out_handle, ams::svc::Handle io_pool, ams::svc::PhysicalAddress physical_address, ams::svc::Size size, ams::svc::MemoryMapping mapping, ams::svc::MemoryPermission perm) {
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R_RETURN(CreateIoRegion(out_handle, io_pool, physical_address, size, mapping, perm));
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}
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Result MapIoRegion64(ams::svc::Handle io_region, ams::svc::Address address, ams::svc::Size size, ams::svc::MemoryPermission perm) {
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R_RETURN(MapIoRegion(io_region, address, size, perm));
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}
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Result UnmapIoRegion64(ams::svc::Handle io_region, ams::svc::Address address, ams::svc::Size size) {
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R_RETURN(UnmapIoRegion(io_region, address, size));
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}
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/* ============================= 64From32 ABI ============================= */
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Result CreateIoPool64From32(ams::svc::Handle *out_handle, ams::svc::IoPoolType pool_type) {
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R_RETURN(CreateIoPool(out_handle, pool_type));
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}
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Result CreateIoRegion64From32(ams::svc::Handle *out_handle, ams::svc::Handle io_pool, ams::svc::PhysicalAddress physical_address, ams::svc::Size size, ams::svc::MemoryMapping mapping, ams::svc::MemoryPermission perm) {
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R_RETURN(CreateIoRegion(out_handle, io_pool, physical_address, size, mapping, perm));
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}
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Result MapIoRegion64From32(ams::svc::Handle io_region, ams::svc::Address address, ams::svc::Size size, ams::svc::MemoryPermission perm) {
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R_RETURN(MapIoRegion(io_region, address, size, perm));
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}
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Result UnmapIoRegion64From32(ams::svc::Handle io_region, ams::svc::Address address, ams::svc::Size size) {
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R_RETURN(UnmapIoRegion(io_region, address, size));
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}
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}
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