mirror of
https://github.com/Atmosphere-NX/Atmosphere
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149 lines
5.9 KiB
C++
149 lines
5.9 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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#pragma once
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#include <mesosphere/kern_common.hpp>
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#include <mesosphere/kern_k_spin_lock.hpp>
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#include <mesosphere/kern_k_slab_heap.hpp>
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#include <mesosphere/kern_k_page_group.hpp>
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#include <mesosphere/kern_k_memory_block.hpp>
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#include <mesosphere/kern_k_page_bitmap.hpp>
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#include <mesosphere/kern_select_interrupt_manager.hpp>
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namespace ams::kern {
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class KDynamicPageManager {
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public:
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class PageBuffer {
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private:
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u8 m_buffer[PageSize];
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};
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static_assert(sizeof(PageBuffer) == PageSize);
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private:
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KSpinLock m_lock;
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KPageBitmap m_page_bitmap;
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size_t m_used;
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size_t m_peak;
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size_t m_count;
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KVirtualAddress m_address;
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KVirtualAddress m_aligned_address;
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size_t m_size;
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public:
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KDynamicPageManager() : m_lock(), m_page_bitmap(), m_used(), m_peak(), m_count(), m_address(Null<KVirtualAddress>), m_aligned_address(Null<KVirtualAddress>), m_size() { /* ... */ }
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Result Initialize(KVirtualAddress memory, size_t size, size_t align) {
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/* We need to have positive size. */
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R_UNLESS(size > 0, svc::ResultOutOfMemory());
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/* Set addresses. */
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m_address = memory;
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m_aligned_address = util::AlignDown(GetInteger(memory), align);
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/* Calculate extents. */
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const size_t managed_size = m_address + size - m_aligned_address;
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const size_t overhead_size = util::AlignUp(KPageBitmap::CalculateManagementOverheadSize(managed_size / sizeof(PageBuffer)), sizeof(PageBuffer));
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R_UNLESS(overhead_size < size, svc::ResultOutOfMemory());
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/* Set tracking fields. */
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m_size = util::AlignDown(size - overhead_size, sizeof(PageBuffer));
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m_count = m_size / sizeof(PageBuffer);
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/* Clear the management region. */
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u64 *management_ptr = GetPointer<u64>(m_address + size - overhead_size);
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std::memset(management_ptr, 0, overhead_size);
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/* Initialize the bitmap. */
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const size_t allocatable_region_size = (GetInteger(m_address) + size - overhead_size) - GetInteger(m_aligned_address);
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MESOSPHERE_ABORT_UNLESS(allocatable_region_size >= sizeof(PageBuffer));
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m_page_bitmap.Initialize(management_ptr, allocatable_region_size / sizeof(PageBuffer));
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/* Free the pages to the bitmap. */
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for (size_t i = 0; i < m_count; i++) {
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/* Ensure the freed page is all-zero. */
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cpu::ClearPageToZero(GetPointer<PageBuffer>(m_address) + i);
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/* Set the bit for the free page. */
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m_page_bitmap.SetBit((GetInteger(m_address) + (i * sizeof(PageBuffer)) - GetInteger(m_aligned_address)) / sizeof(PageBuffer));
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}
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R_SUCCEED();
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}
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constexpr KVirtualAddress GetAddress() const { return m_address; }
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constexpr size_t GetSize() const { return m_size; }
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constexpr size_t GetUsed() const { return m_used; }
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constexpr size_t GetPeak() const { return m_peak; }
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constexpr size_t GetCount() const { return m_count; }
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PageBuffer *Allocate() {
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/* Take the lock. */
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KScopedInterruptDisable di;
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KScopedSpinLock lk(m_lock);
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/* Find a random free block. */
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ssize_t soffset = m_page_bitmap.FindFreeBlock(true);
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if (AMS_UNLIKELY(soffset < 0)) {
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return nullptr;
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}
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const size_t offset = static_cast<size_t>(soffset);
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/* Update our tracking. */
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m_page_bitmap.ClearBit(offset);
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m_peak = std::max(m_peak, (++m_used));
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return GetPointer<PageBuffer>(m_aligned_address) + offset;
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}
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PageBuffer *Allocate(size_t count) {
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/* Take the lock. */
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KScopedInterruptDisable di;
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KScopedSpinLock lk(m_lock);
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/* Find a random free block. */
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ssize_t soffset = m_page_bitmap.FindFreeRange(count);
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if (AMS_UNLIKELY(soffset < 0)) {
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return nullptr;
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}
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const size_t offset = static_cast<size_t>(soffset);
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/* Update our tracking. */
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m_page_bitmap.ClearRange(offset, count);
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m_used += count;
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m_peak = std::max(m_peak, m_used);
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return GetPointer<PageBuffer>(m_aligned_address) + offset;
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}
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void Free(PageBuffer *pb) {
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/* Ensure all pages in the heap are zero. */
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cpu::ClearPageToZero(pb);
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/* Take the lock. */
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KScopedInterruptDisable di;
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KScopedSpinLock lk(m_lock);
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/* Set the bit for the free page. */
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size_t offset = (reinterpret_cast<uintptr_t>(pb) - GetInteger(m_aligned_address)) / sizeof(PageBuffer);
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m_page_bitmap.SetBit(offset);
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/* Decrement our used count. */
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--m_used;
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}
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};
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}
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