JitArm64_Tables: Use C++20 features
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@ -5,19 +5,19 @@
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#include <array>
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#include "Common/Assert.h"
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#include "Common/TypeUtils.h"
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#include "Core/PowerPC/Gekko.h"
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#include "Core/PowerPC/PPCTables.h"
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namespace
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{
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struct GekkoOPTemplate
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struct JitArm64OpTemplate
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{
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int opcode;
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u32 opcode;
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JitArm64::Instruction fn;
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// GekkoOPInfo opinfo; // Doesn't need opinfo, Interpreter fills it out
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};
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constexpr std::array<GekkoOPTemplate, 54> primarytable{{
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constexpr std::array<JitArm64OpTemplate, 54> s_primary_table{{
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{4, &JitArm64::DynaRunTable4}, // RunTable4
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{19, &JitArm64::DynaRunTable19}, // RunTable19
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{31, &JitArm64::DynaRunTable31}, // RunTable31
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@ -87,7 +87,7 @@ constexpr std::array<GekkoOPTemplate, 54> primarytable{{
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// missing: 0, 1, 2, 5, 6, 9, 22, 30, 58, 62
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}};
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constexpr std::array<GekkoOPTemplate, 13> table4{{
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constexpr std::array<JitArm64OpTemplate, 13> s_table4{{
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// SUBOP10
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{0, &JitArm64::ps_cmpXX}, // ps_cmpu0
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{32, &JitArm64::ps_cmpXX}, // ps_cmpo0
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@ -105,7 +105,7 @@ constexpr std::array<GekkoOPTemplate, 13> table4{{
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{1014, &JitArm64::FallBackToInterpreter}, // dcbz_l
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}};
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constexpr std::array<GekkoOPTemplate, 17> table4_2{{
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constexpr std::array<JitArm64OpTemplate, 17> s_table4_2{{
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{10, &JitArm64::ps_sumX}, // ps_sum0
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{11, &JitArm64::ps_sumX}, // ps_sum1
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{12, &JitArm64::ps_arith}, // ps_muls0
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@ -125,14 +125,14 @@ constexpr std::array<GekkoOPTemplate, 17> table4_2{{
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{31, &JitArm64::ps_arith}, // ps_nmadd
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}};
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constexpr std::array<GekkoOPTemplate, 4> table4_3{{
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constexpr std::array<JitArm64OpTemplate, 4> s_table4_3{{
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{6, &JitArm64::psq_lXX}, // psq_lx
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{7, &JitArm64::psq_stXX}, // psq_stx
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{38, &JitArm64::psq_lXX}, // psq_lux
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{39, &JitArm64::psq_stXX}, // psq_stux
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}};
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constexpr std::array<GekkoOPTemplate, 13> table19{{
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constexpr std::array<JitArm64OpTemplate, 13> s_table19{{
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{528, &JitArm64::bcctrx}, // bcctrx
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{16, &JitArm64::bclrx}, // bclrx
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{257, &JitArm64::crXXX}, // crand
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@ -150,7 +150,7 @@ constexpr std::array<GekkoOPTemplate, 13> table19{{
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{50, &JitArm64::rfi}, // rfi
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}};
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constexpr std::array<GekkoOPTemplate, 107> table31{{
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constexpr std::array<JitArm64OpTemplate, 107> s_table31{{
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{266, &JitArm64::addx}, // addx
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{778, &JitArm64::addx}, // addox
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{10, &JitArm64::addcx}, // addcx
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@ -292,7 +292,7 @@ constexpr std::array<GekkoOPTemplate, 107> table31{{
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{566, &JitArm64::DoNothing}, // tlbsync
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}};
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constexpr std::array<GekkoOPTemplate, 9> table59{{
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constexpr std::array<JitArm64OpTemplate, 9> s_table59{{
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{18, &JitArm64::fp_arith}, // fdivsx
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{20, &JitArm64::fp_arith}, // fsubsx
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{21, &JitArm64::fp_arith}, // faddsx
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@ -304,7 +304,7 @@ constexpr std::array<GekkoOPTemplate, 9> table59{{
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{31, &JitArm64::fp_arith}, // fnmaddsx
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}};
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constexpr std::array<GekkoOPTemplate, 15> table63{{
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constexpr std::array<JitArm64OpTemplate, 15> s_table63{{
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{264, &JitArm64::fp_logic}, // fabsx
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{32, &JitArm64::fcmpX}, // fcmpo
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{0, &JitArm64::fcmpX}, // fcmpu
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@ -323,7 +323,7 @@ constexpr std::array<GekkoOPTemplate, 15> table63{{
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{711, &JitArm64::mtfsfx}, // mtfsfx
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}};
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constexpr std::array<GekkoOPTemplate, 10> table63_2{{
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constexpr std::array<JitArm64OpTemplate, 10> s_table63_2{{
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{18, &JitArm64::fp_arith}, // fdivx
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{20, &JitArm64::fp_arith}, // fsubx
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{21, &JitArm64::fp_arith}, // faddx
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@ -336,161 +336,160 @@ constexpr std::array<GekkoOPTemplate, 10> table63_2{{
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{31, &JitArm64::fp_arith}, // fnmaddx
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}};
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constexpr std::array<JitArm64::Instruction, 64> dynaOpTable = [] {
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constexpr std::array<JitArm64::Instruction, 64> s_dyna_op_table = []() consteval
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{
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std::array<JitArm64::Instruction, 64> table{};
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Common::Fill(table, &JitArm64::FallBackToInterpreter);
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for (auto& tpl : table)
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{
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tpl = &JitArm64::FallBackToInterpreter;
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}
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for (const auto& tpl : primarytable)
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for (auto& tpl : s_primary_table)
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{
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ASSERT(table[tpl.opcode] == &JitArm64::FallBackToInterpreter);
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table[tpl.opcode] = tpl.fn;
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}
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return table;
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}();
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}
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();
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constexpr std::array<JitArm64::Instruction, 1024> dynaOpTable4 = [] {
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constexpr std::array<JitArm64::Instruction, 1024> s_dyna_op_table4 = []() consteval
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{
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std::array<JitArm64::Instruction, 1024> table{};
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Common::Fill(table, &JitArm64::FallBackToInterpreter);
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for (auto& entry : table)
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for (u32 i = 0; i < 32; i++)
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{
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entry = &JitArm64::FallBackToInterpreter;
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}
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for (int i = 0; i < 32; i++)
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{
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const int fill = i << 5;
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for (const auto& tpl : table4_2)
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const u32 fill = i << 5;
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for (const auto& tpl : s_table4_2)
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{
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const int op = fill + tpl.opcode;
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const u32 op = fill + tpl.opcode;
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ASSERT(table[op] == &JitArm64::FallBackToInterpreter);
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table[op] = tpl.fn;
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}
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}
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for (int i = 0; i < 16; i++)
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for (u32 i = 0; i < 16; i++)
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{
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const int fill = i << 6;
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for (const auto& tpl : table4_3)
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const u32 fill = i << 6;
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for (const auto& tpl : s_table4_3)
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{
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const int op = fill + tpl.opcode;
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const u32 op = fill + tpl.opcode;
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ASSERT(table[op] == &JitArm64::FallBackToInterpreter);
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table[op] = tpl.fn;
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}
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}
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for (const auto& tpl : table4)
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for (const auto& tpl : s_table4)
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{
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table[tpl.opcode] = tpl.fn;
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const u32 op = tpl.opcode;
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ASSERT(table[op] == &JitArm64::FallBackToInterpreter);
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table[op] = tpl.fn;
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}
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return table;
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}();
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}
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();
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constexpr std::array<JitArm64::Instruction, 1024> dynaOpTable19 = [] {
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constexpr std::array<JitArm64::Instruction, 1024> s_dyna_op_table19 = []() consteval
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{
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std::array<JitArm64::Instruction, 1024> table{};
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Common::Fill(table, &JitArm64::FallBackToInterpreter);
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for (auto& entry : table)
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{
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entry = &JitArm64::FallBackToInterpreter;
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}
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for (const auto& tpl : table19)
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for (const auto& tpl : s_table19)
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{
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ASSERT(table[tpl.opcode] == &JitArm64::FallBackToInterpreter);
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table[tpl.opcode] = tpl.fn;
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}
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return table;
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}();
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}
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();
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constexpr std::array<JitArm64::Instruction, 1024> dynaOpTable31 = [] {
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constexpr std::array<JitArm64::Instruction, 1024> s_dyna_op_table31 = []() consteval
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{
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std::array<JitArm64::Instruction, 1024> table{};
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Common::Fill(table, &JitArm64::FallBackToInterpreter);
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for (auto& entry : table)
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{
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entry = &JitArm64::FallBackToInterpreter;
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}
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for (const auto& tpl : table31)
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for (const auto& tpl : s_table31)
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{
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ASSERT(table[tpl.opcode] == &JitArm64::FallBackToInterpreter);
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table[tpl.opcode] = tpl.fn;
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}
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return table;
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}();
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}
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();
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constexpr std::array<JitArm64::Instruction, 32> dynaOpTable59 = [] {
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constexpr std::array<JitArm64::Instruction, 32> s_dyna_op_table59 = []() consteval
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{
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std::array<JitArm64::Instruction, 32> table{};
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Common::Fill(table, &JitArm64::FallBackToInterpreter);
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for (auto& entry : table)
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{
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entry = &JitArm64::FallBackToInterpreter;
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}
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for (const auto& tpl : table59)
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for (const auto& tpl : s_table59)
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{
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ASSERT(table[tpl.opcode] == &JitArm64::FallBackToInterpreter);
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table[tpl.opcode] = tpl.fn;
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}
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return table;
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}();
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}
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();
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constexpr std::array<JitArm64::Instruction, 1024> dynaOpTable63 = [] {
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constexpr std::array<JitArm64::Instruction, 1024> s_dyna_op_table63 = []() consteval
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{
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std::array<JitArm64::Instruction, 1024> table{};
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Common::Fill(table, &JitArm64::FallBackToInterpreter);
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for (auto& entry : table)
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{
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entry = &JitArm64::FallBackToInterpreter;
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}
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for (const auto& tpl : table63)
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for (const auto& tpl : s_table63)
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{
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ASSERT(table[tpl.opcode] == &JitArm64::FallBackToInterpreter);
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table[tpl.opcode] = tpl.fn;
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}
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for (int i = 0; i < 32; i++)
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for (u32 i = 0; i < 32; i++)
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{
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const int fill = i << 5;
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for (const auto& tpl : table63_2)
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const u32 fill = i << 5;
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for (const auto& tpl : s_table63_2)
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{
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const int op = fill + tpl.opcode;
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const u32 op = fill + tpl.opcode;
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ASSERT(table[op] == &JitArm64::FallBackToInterpreter);
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table[op] = tpl.fn;
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}
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}
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return table;
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}();
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}
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();
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} // Anonymous namespace
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void JitArm64::DynaRunTable4(UGeckoInstruction inst)
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{
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(this->*dynaOpTable4[inst.SUBOP10])(inst);
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(this->*s_dyna_op_table4[inst.SUBOP10])(inst);
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}
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void JitArm64::DynaRunTable19(UGeckoInstruction inst)
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{
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(this->*dynaOpTable19[inst.SUBOP10])(inst);
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(this->*s_dyna_op_table19[inst.SUBOP10])(inst);
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}
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void JitArm64::DynaRunTable31(UGeckoInstruction inst)
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{
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(this->*dynaOpTable31[inst.SUBOP10])(inst);
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(this->*s_dyna_op_table31[inst.SUBOP10])(inst);
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}
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void JitArm64::DynaRunTable59(UGeckoInstruction inst)
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{
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(this->*dynaOpTable59[inst.SUBOP5])(inst);
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(this->*s_dyna_op_table59[inst.SUBOP5])(inst);
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}
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void JitArm64::DynaRunTable63(UGeckoInstruction inst)
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{
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(this->*dynaOpTable63[inst.SUBOP10])(inst);
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(this->*s_dyna_op_table63[inst.SUBOP10])(inst);
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}
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void JitArm64::CompileInstruction(PPCAnalyst::CodeOp& op)
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{
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(this->*dynaOpTable[op.inst.OPCD])(op.inst);
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(this->*s_dyna_op_table[op.inst.OPCD])(op.inst);
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GekkoOPInfo* info = op.opinfo;
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if (info)
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