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41ee792f95
There are better memleak detection tools. 1) Requires to guard placement new and external libs 2) Doesn't work thoroughly
240 lines
5.0 KiB
C++
240 lines
5.0 KiB
C++
#pragma once
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// Include asmjit with warnings ignored
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#define ASMJIT_EMBED
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#define ASMJIT_DEBUG
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#ifdef _MSC_VER
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#pragma warning(push, 0)
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#include <asmjit/asmjit.h>
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#pragma warning(pop)
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#else
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#pragma GCC diagnostic push
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#pragma GCC diagnostic ignored "-Wall"
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#pragma GCC diagnostic ignored "-Wextra"
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#pragma GCC diagnostic ignored "-Wold-style-cast"
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#include <asmjit/asmjit.h>
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#pragma GCC diagnostic pop
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#endif
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#include <array>
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#include <functional>
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enum class jit_class
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{
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ppu_code,
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ppu_data,
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spu_code,
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spu_data,
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};
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// ASMJIT runtime for emitting code in a single 2G region
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struct jit_runtime final : asmjit::HostRuntime
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{
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jit_runtime();
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~jit_runtime() override;
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// Allocate executable memory
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asmjit::Error _add(void** dst, asmjit::CodeHolder* code) noexcept override;
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// Do nothing (deallocation is delayed)
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asmjit::Error _release(void* p) noexcept override;
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// Allocate memory
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static u8* alloc(usz size, uint align, bool exec = true) noexcept;
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// Should be called at least once after global initialization
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static void initialize();
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// Deallocate all memory
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static void finalize() noexcept;
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};
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namespace asmjit
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{
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// Should only be used to build global functions
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asmjit::Runtime& get_global_runtime();
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// Emit xbegin and adjacent loop, return label at xbegin (don't use xabort please)
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template <typename F>
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[[nodiscard]] inline asmjit::Label build_transaction_enter(asmjit::X86Assembler& c, asmjit::Label fallback, F func)
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{
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Label fall = c.newLabel();
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Label begin = c.newLabel();
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c.jmp(begin);
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c.bind(fall);
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// Don't repeat on zero status (may indicate syscall or interrupt)
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c.test(x86::eax, x86::eax);
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c.jz(fallback);
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// First invoked after failure (can fallback to proceed, or jump anywhere else)
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func();
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// Other bad statuses are ignored regardless of repeat flag (TODO)
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c.align(kAlignCode, 16);
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c.bind(begin);
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return fall;
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// xbegin should be issued manually, allows to add more check before entering transaction
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}
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// Helper to spill RDX (EDX) register for RDTSC
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inline void build_swap_rdx_with(asmjit::X86Assembler& c, std::array<X86Gp, 4>& args, const asmjit::X86Gp& with)
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{
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#ifdef _WIN32
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c.xchg(args[1], with);
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args[1] = with;
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#else
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c.xchg(args[2], with);
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args[2] = with;
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#endif
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}
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// Get full RDTSC value into chosen register (clobbers rax/rdx or saves only rax with other target)
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inline void build_get_tsc(asmjit::X86Assembler& c, const asmjit::X86Gp& to = asmjit::x86::rax)
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{
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if (&to != &x86::rax && &to != &x86::rdx)
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{
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// Swap to save its contents
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c.xchg(x86::rax, to);
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}
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c.rdtsc();
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c.shl(x86::rdx, 32);
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if (&to == &x86::rax)
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{
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c.or_(x86::rax, x86::rdx);
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}
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else if (&to == &x86::rdx)
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{
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c.or_(x86::rdx, x86::rax);
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}
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else
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{
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// Swap back, maybe there is more effective way to do it
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c.xchg(x86::rax, to);
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c.mov(to.r32(), to.r32());
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c.or_(to.r64(), x86::rdx);
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}
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}
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}
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// Build runtime function with asmjit::X86Assembler
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template <typename FT, typename F>
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inline FT build_function_asm(F&& builder)
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{
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using namespace asmjit;
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auto& rt = get_global_runtime();
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CodeHolder code;
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code.init(rt.getCodeInfo());
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code._globalHints = asmjit::CodeEmitter::kHintOptimizedAlign;
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std::array<X86Gp, 4> args;
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#ifdef _WIN32
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args[0] = x86::rcx;
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args[1] = x86::rdx;
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args[2] = x86::r8;
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args[3] = x86::r9;
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#else
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args[0] = x86::rdi;
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args[1] = x86::rsi;
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args[2] = x86::rdx;
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args[3] = x86::rcx;
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#endif
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X86Assembler compiler(&code);
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builder(std::ref(compiler), args);
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ensure(compiler.getLastError() == 0);
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FT result;
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if (rt.add(&result, &code))
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{
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return nullptr;
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}
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return result;
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}
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#ifdef LLVM_AVAILABLE
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#include <memory>
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#include <string>
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#include <string_view>
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#include <unordered_map>
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#include "util/types.hpp"
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#include "mutex.h"
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#ifdef _MSC_VER
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#pragma warning(push, 0)
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#else
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#pragma GCC diagnostic push
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#pragma GCC diagnostic ignored "-Wall"
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#pragma GCC diagnostic ignored "-Wextra"
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#pragma GCC diagnostic ignored "-Wold-style-cast"
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#endif
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#include "llvm/IR/LLVMContext.h"
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#include "llvm/IR/Module.h"
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#include "llvm/ExecutionEngine/ExecutionEngine.h"
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#ifdef _MSC_VER
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#pragma warning(pop)
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#else
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#pragma GCC diagnostic pop
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#endif
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// Temporary compiler interface
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class jit_compiler final
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{
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// Local LLVM context
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llvm::LLVMContext m_context;
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// Execution instance
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std::unique_ptr<llvm::ExecutionEngine> m_engine;
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// Arch
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std::string m_cpu;
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public:
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jit_compiler(const std::unordered_map<std::string, u64>& _link, const std::string& _cpu, u32 flags = 0);
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~jit_compiler();
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// Get LLVM context
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auto& get_context()
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{
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return m_context;
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}
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auto& get_engine() const
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{
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return *m_engine;
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}
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// Add module (path to obj cache dir)
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void add(std::unique_ptr<llvm::Module> _module, const std::string& path);
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// Add module (not cached)
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void add(std::unique_ptr<llvm::Module> _module);
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// Add object (path to obj file)
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void add(const std::string& path);
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// Check object file
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static bool check(const std::string& path);
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// Finalize
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void fin();
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// Get compiled function address
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u64 get(const std::string& name);
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// Get CPU info
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static std::string cpu(const std::string& _cpu);
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};
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#endif
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