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169 lines
11 KiB
C++
169 lines
11 KiB
C++
/*
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* Copyright (c) 2018-2020 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 <exosphere.hpp>
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#include "../secmon_setup.hpp"
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#include "secmon_boot.hpp"
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namespace ams::secmon::boot {
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namespace {
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using namespace ams::mmu;
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constexpr inline PageTableMappingAttribute MappingAttributesEl3SecureRoCode = AddMappingAttributeIndex(PageTableMappingAttributes_El3SecureRoCode, MemoryAttributeIndexNormal);
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constexpr inline PageTableMappingAttribute MappingAttributesEl3SecureRwCode = AddMappingAttributeIndex(PageTableMappingAttributes_El3SecureRwCode, MemoryAttributeIndexNormal);
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constexpr inline PageTableMappingAttribute MappingAttributesEl3SecureRoData = AddMappingAttributeIndex(PageTableMappingAttributes_El3SecureRoData, MemoryAttributeIndexNormal);
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constexpr inline PageTableMappingAttribute MappingAttributesEl3SecureRwData = AddMappingAttributeIndex(PageTableMappingAttributes_El3SecureRwData, MemoryAttributeIndexNormal);
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constexpr inline PageTableMappingAttribute MappingAttributesEl3NonSecureRwData = AddMappingAttributeIndex(PageTableMappingAttributes_El3NonSecureRwData, MemoryAttributeIndexNormal);
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constexpr inline PageTableMappingAttribute MappingAttributesEl3SecureDevice = AddMappingAttributeIndex(PageTableMappingAttributes_El3SecureRwData, MemoryAttributeIndexDevice);
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constexpr inline PageTableMappingAttribute MappingAttributesEl3NonSecureDevice = AddMappingAttributeIndex(PageTableMappingAttributes_El3NonSecureRwData, MemoryAttributeIndexDevice);
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constexpr void ClearMemory(volatile u64 *start, size_t size) {
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volatile u64 * const end = start + (size / sizeof(u64));
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for (volatile u64 *cur = start; cur < end; ++cur) {
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*cur = 0;
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}
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}
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constexpr void MakePageTablesImpl(u64 *l1, u64 *l2, u64 *l3) {
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/* Setup the L1 table. */
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{
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ClearMemory(l1, MemoryRegionPhysicalTzramL1PageTable.GetSize());
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/* Create an L1 table entry for the physical region. */
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SetL1TableEntry(l1, MemoryRegionPhysical.GetAddress(), MemoryRegionPhysicalTzramL2L3PageTable.GetAddress(), PageTableTableAttributes_El3SecureCode);
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static_assert(GetL1EntryIndex(MemoryRegionPhysical.GetAddress()) == 1);
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/* Create an L1 mapping entry for dram. */
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SetL1BlockEntry(l1, MemoryRegionDram.GetAddress(), MemoryRegionDram.GetAddress(), MemoryRegionDram.GetSize(), MappingAttributesEl3NonSecureRwData);
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/* Create an L1 table entry for the virtual region. */
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SetL1TableEntry(l1, MemoryRegionVirtual.GetAddress(), MemoryRegionPhysicalTzramL2L3PageTable.GetAddress(), PageTableTableAttributes_El3SecureCode);
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}
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/* Setup the L2 table. */
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{
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ClearMemory(l2, MemoryRegionPhysicalTzramL2L3PageTable.GetSize());
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/* Create an L2 table entry for the virtual region. */
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SetL2TableEntry(l2, MemoryRegionVirtualL2.GetAddress(), MemoryRegionPhysicalTzramL2L3PageTable.GetAddress(), PageTableTableAttributes_El3SecureCode);
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/* Create an L2 table entry for the physical iram region. */
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SetL2TableEntry(l2, MemoryRegionPhysicalIramL2.GetAddress(), MemoryRegionPhysicalTzramL2L3PageTable.GetAddress(), PageTableTableAttributes_El3SecureCode);
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/* Create an L2 table entry for the physical tzram region. */
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SetL2TableEntry(l2, MemoryRegionPhysicalTzramL2.GetAddress(), MemoryRegionPhysicalTzramL2L3PageTable.GetAddress(), PageTableTableAttributes_El3SecureCode);
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}
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/* Setup the L3 table. */
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{
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/* L2 and L3 share a page table. */
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if (l2 != l3) {
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ClearMemory(l3, MemoryRegionPhysicalTzramL2L3PageTable.GetSize());
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}
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/* Identity-map TZRAM as rwx. */
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SetL3BlockEntry(l3, MemoryRegionPhysicalTzram.GetAddress(), MemoryRegionPhysicalTzram.GetAddress(), MemoryRegionPhysicalTzram.GetSize(), MappingAttributesEl3SecureRwCode);
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/* Identity-map IRAM boot code as rwx. */
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SetL3BlockEntry(l3, MemoryRegionPhysicalIramBootCode.GetAddress(), MemoryRegionPhysicalIramBootCode.GetAddress(), MemoryRegionPhysicalIramBootCode.GetSize(), MappingAttributesEl3SecureRwCode);
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#if defined(AMS_BUILD_FOR_DEBUGGING) || defined(AMS_BUILD_FOR_AUDITING)
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{
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/* Map the debug code region as rwx. */
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SetL3BlockEntry(l3, MemoryRegionVirtualDebugCode.GetAddress(), MemoryRegionPhysicalDebugCode.GetAddress(), MemoryRegionPhysicalDebugCode.GetSize(), MappingAttributesEl3SecureRwCode);
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/* Map the DRAM debug code store region as rw. */
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SetL3BlockEntry(l3, MemoryRegionVirtualDramDebugDataStore.GetAddress(), MemoryRegionPhysicalDramDebugDataStore.GetAddress(), MemoryRegionPhysicalDramDebugDataStore.GetSize(), MappingAttributesEl3NonSecureRwData);
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}
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#endif
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/* Map all devices. */
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{
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#define MAP_DEVICE_REGION(_NAME_, _PREV_, _ADDRESS_, _SIZE_, _SECURE_) \
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SetL3BlockEntry(l3, MemoryRegionVirtualDevice##_NAME_.GetAddress(), MemoryRegionPhysicalDevice##_NAME_.GetAddress(), MemoryRegionVirtualDevice##_NAME_.GetSize(), _SECURE_ ? MappingAttributesEl3SecureDevice : MappingAttributesEl3NonSecureDevice);
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AMS_SECMON_FOREACH_DEVICE_REGION(MAP_DEVICE_REGION);
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#undef MAP_DEVICE_REGION
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}
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/* Map the IRAM SC7 work region. */
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SetL3BlockEntry(l3, MemoryRegionVirtualIramSc7Work.GetAddress(), MemoryRegionPhysicalIramSc7Work.GetAddress(), MemoryRegionVirtualIramSc7Work.GetSize(), MappingAttributesEl3NonSecureDevice);
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/* Map the IRAM SC7 firmware region. */
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SetL3BlockEntry(l3, MemoryRegionVirtualIramSc7Firmware.GetAddress(), MemoryRegionPhysicalIramSc7Firmware.GetAddress(), MemoryRegionVirtualIramSc7Firmware.GetSize(), MappingAttributesEl3NonSecureDevice);
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/* Map the Debug region. */
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/* NOTE: This region is reserved for debug. By default it will be the last 0x8000 bytes of IRAM, but this is subject to change. */
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/* If you are doing development work for exosphere, feel free to locally change this to whatever is useful. */
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SetL3BlockEntry(l3, MemoryRegionVirtualDebug.GetAddress(), MemoryRegionPhysicalIram.GetEndAddress() - 0x8000, 0x8000, MappingAttributesEl3SecureDevice);
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/* Map the TZRAM ro alias region. */
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SetL3BlockEntry(l3, MemoryRegionVirtualTzramReadOnlyAlias.GetAddress(), MemoryRegionPhysicalTzramReadOnlyAlias.GetAddress(), MemoryRegionVirtualTzramReadOnlyAlias.GetSize(), MappingAttributesEl3SecureRoData);
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/* Map the DRAM secure data store region. */
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SetL3BlockEntry(l3, MemoryRegionVirtualDramSecureDataStore.GetAddress(), MemoryRegionPhysicalDramSecureDataStore.GetAddress(), MemoryRegionVirtualDramSecureDataStore.GetSize(), MappingAttributesEl3NonSecureDevice);
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/* Map the program region as rwx. */
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SetL3BlockEntry(l3, MemoryRegionVirtualTzramProgram.GetAddress(), MemoryRegionPhysicalTzramProgram.GetAddress(), MemoryRegionVirtualTzramProgram.GetSize(), MappingAttributesEl3SecureRwCode);
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/* Map the mariko program region as rwx. */
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SetL3BlockEntry(l3, MemoryRegionVirtualTzramMarikoProgram.GetAddress(), MemoryRegionPhysicalTzramMarikoProgram.GetAddress(), MemoryRegionPhysicalTzramMarikoProgram.GetSize(), MappingAttributesEl3SecureRwCode);
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/* Map the mariko program region as rwx. */
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SetL3BlockEntry(l3, MemoryRegionVirtualTzramMarikoProgramStack.GetAddress(), MemoryRegionPhysicalTzramMarikoProgramStack.GetAddress(), MemoryRegionPhysicalTzramMarikoProgramStack.GetSize(), MappingAttributesEl3SecureRwData);
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/* Map the boot code region. */
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SetL3BlockEntry(l3, MemoryRegionVirtualTzramBootCode.GetAddress(), MemoryRegionPhysicalTzramBootCode.GetAddress(), MemoryRegionVirtualTzramBootCode.GetSize(), MappingAttributesEl3SecureRwCode);
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/* Map the volatile data regions regions. */
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SetL3BlockEntry(l3, MemoryRegionVirtualTzramVolatileData.GetAddress(), MemoryRegionPhysicalTzramVolatileData.GetAddress(), MemoryRegionVirtualTzramVolatileData.GetSize(), MappingAttributesEl3SecureRwData);
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SetL3BlockEntry(l3, MemoryRegionVirtualTzramVolatileStack.GetAddress(), MemoryRegionPhysicalTzramVolatileStack.GetAddress(), MemoryRegionVirtualTzramVolatileStack.GetSize(), MappingAttributesEl3SecureRwData);
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/* Map the configuration data. */
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SetL3BlockEntry(l3, MemoryRegionVirtualTzramConfigurationData.GetAddress(), MemoryRegionPhysicalTzramConfigurationData.GetAddress(), MemoryRegionVirtualTzramConfigurationData.GetSize(), MappingAttributesEl3SecureRwData);
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/* Map the page tables. */
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SetL3BlockEntry(l3, util::AlignDown(MemoryRegionVirtualTzramL1PageTable.GetAddress(), PageSize), util::AlignDown(MemoryRegionPhysicalTzramL1PageTable.GetAddress(), PageSize), PageSize, MappingAttributesEl3SecureRwData);
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SetL3BlockEntry(l3, MemoryRegionVirtualTzramL2L3PageTable.GetAddress(), MemoryRegionPhysicalTzramL2L3PageTable.GetAddress(), MemoryRegionVirtualTzramL2L3PageTable.GetSize(), MappingAttributesEl3SecureRwData);
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}
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}
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constexpr bool ValidateTzramPageTables() {
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u64 l1_table[MemoryRegionPhysicalTzramL1PageTable.GetSize() / sizeof(u64)] = {};
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u64 l2_l3_table[MemoryRegionPhysicalTzramL2L3PageTable.GetSize() / sizeof(u64)] = {};
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MakePageTablesImpl(l1_table, l2_l3_table, l2_l3_table);
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return true;
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}
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static_assert(ValidateTzramPageTables());
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}
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void MakePageTable() {
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u64 * const l1 = MemoryRegionPhysicalTzramL1PageTable.GetPointer<u64>();
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u64 * const l2_l3 = MemoryRegionPhysicalTzramL2L3PageTable.GetPointer<u64>();
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MakePageTablesImpl(l1, l2_l3, l2_l3);
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}
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}
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