bbc058c76b
Also respect DYNARMIC_ENABLE_NO_EXECUTE_SUPPORT.
168 lines
3.7 KiB
C++
168 lines
3.7 KiB
C++
/* This file is part of the dynarmic project.
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* Copyright (c) 2023 MerryMage
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* SPDX-License-Identifier: 0BSD
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*/
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#include <array>
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#include <exception>
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#include <map>
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#include <catch2/catch_test_macros.hpp>
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#include <mcl/stdint.hpp>
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#include <oaknut/oaknut.hpp>
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#include "dynarmic/interface/A64/a64.h"
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using namespace Dynarmic;
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namespace {
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class MyEnvironment final : public A64::UserCallbacks {
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public:
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u64 ticks_left = 0;
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std::map<u64, u8> memory{};
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u8 MemoryRead8(u64 vaddr) override {
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return memory[vaddr];
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}
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u16 MemoryRead16(u64 vaddr) override {
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return u16(MemoryRead8(vaddr)) | u16(MemoryRead8(vaddr + 1)) << 8;
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}
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u32 MemoryRead32(u64 vaddr) override {
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return u32(MemoryRead16(vaddr)) | u32(MemoryRead16(vaddr + 2)) << 16;
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}
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u64 MemoryRead64(u64 vaddr) override {
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return u64(MemoryRead32(vaddr)) | u64(MemoryRead32(vaddr + 4)) << 32;
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}
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std::array<u64, 2> MemoryRead128(u64 vaddr) override {
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return {MemoryRead64(vaddr), MemoryRead64(vaddr + 8)};
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}
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void MemoryWrite8(u64 vaddr, u8 value) override {
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memory[vaddr] = value;
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}
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void MemoryWrite16(u64 vaddr, u16 value) override {
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MemoryWrite8(vaddr, u8(value));
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MemoryWrite8(vaddr + 1, u8(value >> 8));
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}
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void MemoryWrite32(u64 vaddr, u32 value) override {
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MemoryWrite16(vaddr, u16(value));
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MemoryWrite16(vaddr + 2, u16(value >> 16));
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}
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void MemoryWrite64(u64 vaddr, u64 value) override {
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MemoryWrite32(vaddr, u32(value));
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MemoryWrite32(vaddr + 4, u32(value >> 32));
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}
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void MemoryWrite128(u64 vaddr, std::array<u64, 2> value) override {
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MemoryWrite64(vaddr, value[0]);
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MemoryWrite64(vaddr + 8, value[1]);
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}
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void InterpreterFallback(u64, size_t) override {
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// This is never called in practice.
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std::terminate();
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}
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void CallSVC(u32) override {
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// Do something.
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}
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void ExceptionRaised(u64, A64::Exception) override {
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cpu->HaltExecution();
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}
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void AddTicks(u64) override {
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}
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u64 GetTicksRemaining() override {
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return 1000000000000;
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}
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std::uint64_t GetCNTPCT() override {
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return 0;
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}
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A64::Jit* cpu;
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};
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} // namespace
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TEST_CASE("A64: fibonacci", "[a64]") {
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MyEnvironment env;
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A64::UserConfig user_config;
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user_config.callbacks = &env;
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A64::Jit cpu{user_config};
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env.cpu = &cpu;
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std::vector<u32> instructions(1024);
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oaknut::CodeGenerator code{instructions.data(), nullptr};
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using namespace oaknut::util;
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oaknut::Label start, end, zero, recurse;
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code.l(start);
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code.STP(X29, X30, SP, PRE_INDEXED, -32);
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code.STP(X20, X19, SP, 16);
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code.MOV(X29, SP);
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code.MOV(W19, W0);
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code.SUBS(W0, W0, 1);
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code.B(LT, zero);
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code.B(NE, recurse);
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code.MOV(W0, 1);
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code.B(end);
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code.l(zero);
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code.MOV(W0, WZR);
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code.B(end);
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code.l(recurse);
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code.BL(start);
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code.MOV(W20, W0);
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code.SUB(W0, W19, 2);
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code.BL(start);
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code.ADD(W0, W0, W20);
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code.l(end);
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code.LDP(X20, X19, SP, 16);
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code.LDP(X29, X30, SP, POST_INDEXED, 32);
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code.RET();
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for (size_t i = 0; i < 1024; i++) {
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env.MemoryWrite32(i * 4, instructions[i]);
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}
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env.MemoryWrite32(8888, 0xd4200000);
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cpu.SetRegister(30, 8888);
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cpu.SetRegister(0, 10);
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cpu.SetSP(0xffff0000);
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cpu.SetPC(0);
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cpu.Run();
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REQUIRE(cpu.GetRegister(0) == 55);
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cpu.SetRegister(0, 20);
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cpu.SetSP(0xffff0000);
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cpu.SetPC(0);
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cpu.Run();
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REQUIRE(cpu.GetRegister(0) == 6765);
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cpu.SetRegister(0, 30);
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cpu.SetSP(0xffff0000);
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cpu.SetPC(0);
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cpu.Run();
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REQUIRE(cpu.GetRegister(0) == 832040);
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}
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