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JitArm64: Keep track of free code regions and reuse space when possible
JitArm64 port of 306a5e6
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44beaeaff5
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2d1674cd56
@ -9,6 +9,7 @@
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#include "Common/CommonTypes.h"
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#include "Common/Logging/Log.h"
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#include "Common/MathUtil.h"
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#include "Common/MsgHandler.h"
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#include "Common/PerformanceCounter.h"
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#include "Common/StringUtil.h"
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@ -68,6 +69,8 @@ void JitArm64::Init()
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AllocStack();
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GenerateAsm();
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ResetFreeMemoryRanges();
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}
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bool JitArm64::HandleFault(uintptr_t access_address, SContext* ctx)
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@ -125,12 +128,24 @@ void JitArm64::ClearCache()
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m_fault_to_handler.clear();
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blocks.Clear();
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blocks.ClearRangesToFree();
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const Common::ScopedJITPageWriteAndNoExecute enable_jit_page_writes;
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ClearCodeSpace();
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m_far_code.ClearCodeSpace();
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UpdateMemoryAndExceptionOptions();
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GenerateAsm();
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ResetFreeMemoryRanges();
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}
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void JitArm64::ResetFreeMemoryRanges()
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{
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// Set the near and far code regions as unused.
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m_free_ranges_near.clear();
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m_free_ranges_near.insert(GetWritableCodePtr(), GetWritableCodeEnd());
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m_free_ranges_far.clear();
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m_free_ranges_far.insert(m_far_code.GetWritableCodePtr(), m_far_code.GetWritableCodeEnd());
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}
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void JitArm64::Shutdown()
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@ -576,7 +591,12 @@ void JitArm64::SingleStep()
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pExecAddr();
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}
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void JitArm64::Jit(u32)
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void JitArm64::Jit(u32 em_address)
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{
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Jit(em_address, true);
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}
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void JitArm64::Jit(u32 em_address, bool clear_cache_and_retry_on_failure)
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{
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if (m_cleanup_after_stackfault)
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{
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@ -588,14 +608,31 @@ void JitArm64::Jit(u32)
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#endif
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}
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if (IsAlmostFull() || m_far_code.IsAlmostFull() || SConfig::GetInstance().bJITNoBlockCache)
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{
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if (SConfig::GetInstance().bJITNoBlockCache)
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ClearCache();
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// Check if any code blocks have been freed in the block cache and transfer this information to
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// the local rangesets to allow overwriting them with new code.
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for (auto range : blocks.GetRangesToFreeNear())
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{
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auto first_fastmem_area = m_fault_to_handler.upper_bound(range.first);
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auto last_fastmem_area = first_fastmem_area;
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auto end = m_fault_to_handler.end();
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while (last_fastmem_area != end && last_fastmem_area->first <= range.second)
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++last_fastmem_area;
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m_fault_to_handler.erase(first_fastmem_area, last_fastmem_area);
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m_free_ranges_near.insert(range.first, range.second);
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}
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for (auto range : blocks.GetRangesToFreeFar())
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{
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m_free_ranges_far.insert(range.first, range.second);
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}
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blocks.ClearRangesToFree();
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const Common::ScopedJITPageWriteAndNoExecute enable_jit_page_writes;
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std::size_t block_size = m_code_buffer.size();
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const u32 em_address = PowerPC::ppcState.pc;
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if (SConfig::GetInstance().bEnableDebugging)
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{
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@ -618,12 +655,75 @@ void JitArm64::Jit(u32)
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return;
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}
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if (SetEmitterStateToFreeCodeRegion())
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{
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u8* near_start = GetWritableCodePtr();
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u8* far_start = m_far_code.GetWritableCodePtr();
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JitBlock* b = blocks.AllocateBlock(em_address);
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DoJit(em_address, b, nextPC);
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if (DoJit(em_address, b, nextPC))
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{
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// Code generation succeeded.
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// Mark the memory regions that this code block uses as used in the local rangesets.
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u8* near_end = GetWritableCodePtr();
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if (near_start != near_end)
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m_free_ranges_near.erase(near_start, near_end);
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u8* far_end = m_far_code.GetWritableCodePtr();
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if (far_start != far_end)
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m_free_ranges_far.erase(far_start, far_end);
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// Store the used memory regions in the block so we know what to mark as unused when the
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// block gets invalidated.
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b->near_begin = near_start;
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b->near_end = near_end;
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b->far_begin = far_start;
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b->far_end = far_end;
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blocks.FinalizeBlock(*b, jo.enableBlocklink, code_block.m_physical_addresses);
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return;
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}
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}
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void JitArm64::DoJit(u32 em_address, JitBlock* b, u32 nextPC)
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if (clear_cache_and_retry_on_failure)
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{
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// Code generation failed due to not enough free space in either the near or far code regions.
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// Clear the entire JIT cache and retry.
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WARN_LOG(POWERPC, "flushing code caches, please report if this happens a lot");
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ClearCache();
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Jit(em_address, false);
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return;
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}
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PanicAlertT("JIT failed to find code space after a cache clear. This should never happen. Please "
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"report this incident on the bug tracker. Dolphin will now exit.");
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exit(-1);
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}
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bool JitArm64::SetEmitterStateToFreeCodeRegion()
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{
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// Find the largest free memory blocks and set code emitters to point at them.
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// If we can't find a free block return false instead, which will trigger a JIT cache clear.
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auto free_near = m_free_ranges_near.by_size_begin();
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if (free_near == m_free_ranges_near.by_size_end())
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{
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WARN_LOG(POWERPC, "Failed to find free memory region in near code region.");
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return false;
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}
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SetCodePtr(free_near.from(), free_near.to());
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auto free_far = m_free_ranges_far.by_size_begin();
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if (free_far == m_free_ranges_far.by_size_end())
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{
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WARN_LOG(POWERPC, "Failed to find free memory region in far code region.");
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return false;
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}
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m_far_code.SetCodePtr(free_far.from(), free_far.to());
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return true;
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}
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bool JitArm64::DoJit(u32 em_address, JitBlock* b, u32 nextPC)
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{
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js.isLastInstruction = false;
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js.firstFPInstructionFound = false;
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@ -870,9 +970,21 @@ void JitArm64::DoJit(u32 em_address, JitBlock* b, u32 nextPC)
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WriteExit(nextPC);
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}
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if (HasWriteFailed() || m_far_code.HasWriteFailed())
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{
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if (HasWriteFailed())
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WARN_LOG(POWERPC, "JIT ran out of space in near code region during code generation.");
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if (m_far_code.HasWriteFailed())
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WARN_LOG(POWERPC, "JIT ran out of space in far code region during code generation.");
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return false;
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}
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b->codeSize = (u32)(GetCodePtr() - start);
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b->originalSize = code_block.m_num_instructions;
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FlushIcache();
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m_far_code.FlushIcache();
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return true;
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}
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@ -7,6 +7,8 @@
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#include <map>
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#include <tuple>
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#include <rangeset/rangesizeset.h>
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#include "Common/Arm64Emitter.h"
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#include "Core/PowerPC/CPUCoreBase.h"
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@ -39,7 +41,8 @@ public:
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void Run() override;
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void SingleStep() override;
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void Jit(u32) override;
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void Jit(u32 em_address) override;
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void Jit(u32 em_address, bool clear_cache_and_retry_on_failure);
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const char* GetName() const override { return "JITARM64"; }
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@ -226,7 +229,11 @@ protected:
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Arm64Gen::FixupBranch CheckIfSafeAddress(Arm64Gen::ARM64Reg addr, Arm64Gen::ARM64Reg tmp1,
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Arm64Gen::ARM64Reg tmp2);
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void DoJit(u32 em_address, JitBlock* b, u32 nextPC);
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bool DoJit(u32 em_address, JitBlock* b, u32 nextPC);
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// Finds a free memory region and sets the near and far code emitters to point at that region.
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// Returns false if no free memory region can be found for either of the two.
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bool SetEmitterStateToFreeCodeRegion();
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void DoDownCount();
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void Cleanup();
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@ -234,6 +241,8 @@ protected:
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void AllocStack();
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void FreeStack();
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void ResetFreeMemoryRanges();
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// AsmRoutines
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void GenerateAsm();
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void GenerateCommonAsm();
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@ -304,4 +313,7 @@ protected:
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u8* m_stack_base = nullptr;
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u8* m_stack_pointer = nullptr;
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u8* m_saved_stack_pointer = nullptr;
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HyoutaUtilities::RangeSizeSet<u8*> m_free_ranges_near;
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HyoutaUtilities::RangeSizeSet<u8*> m_free_ranges_far;
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};
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@ -12,6 +12,12 @@ JitArm64BlockCache::JitArm64BlockCache(JitBase& jit) : JitBaseBlockCache{jit}
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{
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}
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void JitArm64BlockCache::Init()
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{
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JitBaseBlockCache::Init();
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ClearRangesToFree();
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}
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void JitArm64BlockCache::WriteLinkBlock(Arm64Gen::ARM64XEmitter& emit,
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const JitBlock::LinkData& source, const JitBlock* dest)
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{
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@ -75,3 +81,29 @@ void JitArm64BlockCache::WriteDestroyBlock(const JitBlock& block)
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emit.BRK(0x123);
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emit.FlushIcache();
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}
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void JitArm64BlockCache::DestroyBlock(JitBlock& block)
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{
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JitBaseBlockCache::DestroyBlock(block);
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if (block.near_begin != block.near_end)
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m_ranges_to_free_on_next_codegen_near.emplace_back(block.near_begin, block.near_end);
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if (block.far_begin != block.far_end)
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m_ranges_to_free_on_next_codegen_far.emplace_back(block.far_begin, block.far_end);
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}
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const std::vector<std::pair<u8*, u8*>>& JitArm64BlockCache::GetRangesToFreeNear() const
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{
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return m_ranges_to_free_on_next_codegen_near;
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}
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const std::vector<std::pair<u8*, u8*>>& JitArm64BlockCache::GetRangesToFreeFar() const
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{
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return m_ranges_to_free_on_next_codegen_far;
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}
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void JitArm64BlockCache::ClearRangesToFree()
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{
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m_ranges_to_free_on_next_codegen_near.clear();
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m_ranges_to_free_on_next_codegen_far.clear();
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}
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@ -3,6 +3,8 @@
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#pragma once
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#include <vector>
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#include "Common/Arm64Emitter.h"
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#include "Core/PowerPC/JitCommon/JitCache.h"
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@ -15,10 +17,22 @@ class JitArm64BlockCache : public JitBaseBlockCache
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public:
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explicit JitArm64BlockCache(JitBase& jit);
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void Init() override;
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void DestroyBlock(JitBlock& block) override;
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const std::vector<std::pair<u8*, u8*>>& GetRangesToFreeNear() const;
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const std::vector<std::pair<u8*, u8*>>& GetRangesToFreeFar() const;
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void ClearRangesToFree();
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void WriteLinkBlock(Arm64Gen::ARM64XEmitter& emit, const JitBlock::LinkData& source,
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const JitBlock* dest = nullptr);
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private:
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void WriteLinkBlock(const JitBlock::LinkData& source, const JitBlock* dest) override;
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void WriteDestroyBlock(const JitBlock& block) override;
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std::vector<std::pair<u8*, u8*>> m_ranges_to_free_on_next_codegen_near;
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std::vector<std::pair<u8*, u8*>> m_ranges_to_free_on_next_codegen_far;
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};
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