mirror of https://github.com/PCSX2/pcsx2.git
213 lines
5.5 KiB
C++
213 lines
5.5 KiB
C++
/* PCSX2 - PS2 Emulator for PCs
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* Copyright (C) 2002-2010 PCSX2 Dev Team
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*
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* PCSX2 is free software: you can redistribute it and/or modify it under the terms
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* of the GNU Lesser General Public License as published by the Free Software Found-
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* ation, either version 3 of the License, or (at your option) any later version.
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*
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* PCSX2 is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
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* without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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* PURPOSE. See the GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along with PCSX2.
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* If not, see <http://www.gnu.org/licenses/>.
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*/
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#pragma once
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#include "common/Pcsx2Defs.h"
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enum x86VendorType
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{
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x86Vendor_Intel = 0,
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x86Vendor_AMD = 1,
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x86Vendor_Unknown = 2
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};
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// --------------------------------------------------------------------------------------
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// x86capabilities
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// --------------------------------------------------------------------------------------
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class x86capabilities
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{
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public:
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bool isIdentified;
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public:
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x86VendorType VendorID;
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uint FamilyID; // Processor Family
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uint Model; // Processor Model
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uint TypeID; // Processor Type
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uint StepID; // Stepping ID
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u32 Flags; // Feature Flags
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u32 Flags2; // More Feature Flags
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u32 EFlags; // Extended Feature Flags
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u32 EFlags2; // Extended Feature Flags pg2
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u32 SEFlag; // Structured Extended Feature Flags Enumeration
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char VendorName[16]; // Vendor/Creator ID
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char FamilyName[50]; // the original cpu name
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// ----------------------------------------------------------------------------
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// x86 CPU Capabilities Section (all boolean flags!)
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// ----------------------------------------------------------------------------
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union
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{
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struct
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{
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u32 hasFloatingPointUnit : 1;
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u32 hasVirtual8086ModeEnhancements : 1;
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u32 hasDebuggingExtensions : 1;
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u32 hasPageSizeExtensions : 1;
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u32 hasTimeStampCounter : 1;
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u32 hasModelSpecificRegisters : 1;
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u32 hasPhysicalAddressExtension : 1;
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u32 hasCOMPXCHG8BInstruction : 1;
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u32 hasAdvancedProgrammableInterruptController : 1;
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u32 hasSEPFastSystemCall : 1;
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u32 hasMemoryTypeRangeRegisters : 1;
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u32 hasPTEGlobalFlag : 1;
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u32 hasMachineCheckArchitecture : 1;
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u32 hasConditionalMoveAndCompareInstructions : 1;
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u32 hasFGPageAttributeTable : 1;
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u32 has36bitPageSizeExtension : 1;
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u32 hasProcessorSerialNumber : 1;
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u32 hasCFLUSHInstruction : 1;
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u32 hasDebugStore : 1;
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u32 hasACPIThermalMonitorAndClockControl : 1;
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u32 hasFastStreamingSIMDExtensionsSaveRestore : 1;
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u32 hasStreamingSIMDExtensions : 1;
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u32 hasStreamingSIMD2Extensions : 1;
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u32 hasSelfSnoop : 1;
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// is TRUE for both multi-core and Hyperthreaded CPUs.
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u32 hasMultiThreading : 1;
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u32 hasThermalMonitor : 1;
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u32 hasIntel64BitArchitecture : 1;
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u32 hasStreamingSIMD3Extensions : 1;
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u32 hasSupplementalStreamingSIMD3Extensions : 1;
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u32 hasStreamingSIMD4Extensions : 1;
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u32 hasStreamingSIMD4Extensions2 : 1;
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u32 hasAVX : 1;
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u32 hasAVX2 : 1;
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u32 hasBMI1 : 1;
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u32 hasBMI2 : 1;
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u32 hasFMA : 1;
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// AMD-specific CPU Features
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u32 hasAMD64BitArchitecture : 1;
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u32 hasStreamingSIMD4ExtensionsA : 1;
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};
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u64 AllCapabilities;
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};
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// Core Counts!
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u32 PhysicalCores;
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u32 LogicalCores;
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public:
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x86capabilities();
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void Identify();
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void CountCores();
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const char* GetTypeName() const;
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static u32 CachedMHz();
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u32 CalculateMHz() const;
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void SIMD_EstablishMXCSRmask();
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protected:
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s64 _CPUSpeedHz(u64 time) const;
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void CountLogicalCores();
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};
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enum SSE_RoundMode
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{
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SSE_RoundMode_FIRST = 0,
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SSEround_Nearest = 0,
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SSEround_NegInf,
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SSEround_PosInf,
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SSEround_Chop,
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SSE_RoundMode_COUNT
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};
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ImplementEnumOperators(SSE_RoundMode);
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// Predeclaration for xIndirect32
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namespace x86Emitter
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{
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template <typename T>
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class xIndirect;
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typedef xIndirect<u32> xIndirect32;
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} // namespace x86Emitter
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// --------------------------------------------------------------------------------------
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// SSE_MXCSR - Control/Status Register (bitfield)
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// --------------------------------------------------------------------------------------
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// Bits 0-5 are exception flags; used only if SSE exceptions have been enabled.
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// Bits in this field are "sticky" and, once an exception has occured, must be manually
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// cleared using LDMXCSR or FXRSTOR.
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//
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// Bits 7-12 are the masks for disabling the exceptions in bits 0-5. Cleared bits allow
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// exceptions, set bits mask exceptions from being raised.
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//
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union SSE_MXCSR
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{
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u32 bitmask;
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struct
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{
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u32
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InvalidOpFlag : 1,
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DenormalFlag : 1,
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DivideByZeroFlag : 1,
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OverflowFlag : 1,
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UnderflowFlag : 1,
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PrecisionFlag : 1,
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// This bit is supported only on SSE2 or better CPUs. Setting it to 1 on
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// SSE1 cpus will result in an invalid instruction exception when executing
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// LDMXSCR.
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DenormalsAreZero : 1,
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InvalidOpMask : 1,
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DenormalMask : 1,
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DivideByZeroMask : 1,
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OverflowMask : 1,
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UnderflowMask : 1,
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PrecisionMask : 1,
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RoundingControl : 2,
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FlushToZero : 1;
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};
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SSE_RoundMode GetRoundMode() const;
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SSE_MXCSR& SetRoundMode(SSE_RoundMode mode);
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SSE_MXCSR& ClearExceptionFlags();
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SSE_MXCSR& EnableExceptions();
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SSE_MXCSR& DisableExceptions();
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SSE_MXCSR& ApplyReserveMask();
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bool operator==(const SSE_MXCSR& right) const
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{
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return bitmask == right.bitmask;
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}
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bool operator!=(const SSE_MXCSR& right) const
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{
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return bitmask != right.bitmask;
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}
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operator x86Emitter::xIndirect32() const;
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};
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extern SSE_MXCSR MXCSR_Mask;
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alignas(16) extern x86capabilities x86caps;
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