2020-01-27 14:52:25 -08:00
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#include "ast.hpp"
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#include <iostream>
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#include "binop.hpp"
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#include "definition.hpp"
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#include "instruction.hpp"
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#include "llvm_context.hpp"
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#include "parser.hpp"
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#include "error.hpp"
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#include "type.hpp"
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#include "llvm/IR/LegacyPassManager.h"
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#include "llvm/IR/Verifier.h"
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#include "llvm/Support/TargetSelect.h"
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#include "llvm/Support/TargetRegistry.h"
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#include "llvm/Support/raw_ostream.h"
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#include "llvm/Support/FileSystem.h"
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#include "llvm/Target/TargetOptions.h"
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#include "llvm/Target/TargetMachine.h"
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void yy::parser::error(const std::string& msg) {
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std::cout << "An error occured: " << msg << std::endl;
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}
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extern std::vector<definition_ptr> program;
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void typecheck_program(
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const std::vector<definition_ptr>& prog,
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type_mgr& mgr, type_env& env) {
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type_ptr int_type = type_ptr(new type_base("Int"));
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type_ptr binop_type = type_ptr(new type_arr(
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int_type,
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type_ptr(new type_arr(int_type, int_type))));
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env.bind("+", binop_type);
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env.bind("-", binop_type);
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env.bind("*", binop_type);
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env.bind("/", binop_type);
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for(auto& def : prog) {
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def->typecheck_first(mgr, env);
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}
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for(auto& def : prog) {
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def->typecheck_second(mgr, env);
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}
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for(auto& pair : env.names) {
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std::cout << pair.first << ": ";
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pair.second->print(mgr, std::cout);
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std::cout << std::endl;
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}
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for(auto& def : prog) {
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def->resolve(mgr);
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}
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}
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void compile_program(const std::vector<definition_ptr>& prog) {
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for(auto& def : prog) {
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def->compile();
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definition_defn* defn = dynamic_cast<definition_defn*>(def.get());
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if(!defn) continue;
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for(auto& instruction : defn->instructions) {
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instruction->print(0, std::cout);
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}
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std::cout << std::endl;
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}
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}
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void gen_llvm_internal_op(llvm_context& ctx, binop op) {
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auto new_function = ctx.create_custom_function(op_action(op), 2);
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std::vector<instruction_ptr> instructions;
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instructions.push_back(instruction_ptr(new instruction_push(1)));
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instructions.push_back(instruction_ptr(new instruction_eval()));
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instructions.push_back(instruction_ptr(new instruction_push(1)));
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instructions.push_back(instruction_ptr(new instruction_eval()));
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instructions.push_back(instruction_ptr(new instruction_binop(op)));
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2020-01-27 20:29:01 -08:00
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instructions.push_back(instruction_ptr(new instruction_update(2)));
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instructions.push_back(instruction_ptr(new instruction_pop(2)));
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2020-01-27 14:52:25 -08:00
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ctx.builder.SetInsertPoint(&new_function->getEntryBlock());
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for(auto& instruction : instructions) {
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instruction->gen_llvm(ctx, new_function);
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}
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ctx.builder.CreateRetVoid();
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}
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void output_llvm(llvm_context& ctx, const std::string& filename) {
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std::string targetTriple = llvm::sys::getDefaultTargetTriple();
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llvm::InitializeNativeTarget();
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llvm::InitializeNativeTargetAsmParser();
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llvm::InitializeNativeTargetAsmPrinter();
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std::string error;
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const llvm::Target* target =
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llvm::TargetRegistry::lookupTarget(targetTriple, error);
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if (!target) {
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std::cerr << error << std::endl;
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} else {
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std::string cpu = "generic";
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std::string features = "";
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llvm::TargetOptions options;
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llvm::TargetMachine* targetMachine =
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target->createTargetMachine(targetTriple, cpu, features,
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options, llvm::Optional<llvm::Reloc::Model>());
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ctx.module.setDataLayout(targetMachine->createDataLayout());
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ctx.module.setTargetTriple(targetTriple);
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std::error_code ec;
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llvm::raw_fd_ostream file(filename, ec, llvm::sys::fs::F_None);
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if (ec) {
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throw 0;
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} else {
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llvm::TargetMachine::CodeGenFileType type = llvm::TargetMachine::CGFT_ObjectFile;
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llvm::legacy::PassManager pm;
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if (targetMachine->addPassesToEmitFile(pm, file, NULL, type)) {
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throw 0;
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} else {
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pm.run(ctx.module);
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file.close();
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}
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}
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}
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}
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void gen_llvm(const std::vector<definition_ptr>& prog) {
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llvm_context ctx;
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gen_llvm_internal_op(ctx, PLUS);
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gen_llvm_internal_op(ctx, MINUS);
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gen_llvm_internal_op(ctx, TIMES);
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gen_llvm_internal_op(ctx, DIVIDE);
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for(auto& definition : prog) {
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definition->gen_llvm_first(ctx);
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}
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for(auto& definition : prog) {
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definition->gen_llvm_second(ctx);
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}
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ctx.module.print(llvm::outs(), nullptr);
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output_llvm(ctx, "program.o");
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}
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int main() {
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yy::parser parser;
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type_mgr mgr;
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type_env env;
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parser.parse();
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for(auto& definition : program) {
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definition_defn* def = dynamic_cast<definition_defn*>(definition.get());
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if(!def) continue;
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std::cout << def->name;
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for(auto& param : def->params) std::cout << " " << param;
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std::cout << ":" << std::endl;
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def->body->print(1, std::cout);
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}
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try {
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typecheck_program(program, mgr, env);
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compile_program(program);
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gen_llvm(program);
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} catch(unification_error& err) {
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std::cout << "failed to unify types: " << std::endl;
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std::cout << " (1) \033[34m";
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err.left->print(mgr, std::cout);
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std::cout << "\033[0m" << std::endl;
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std::cout << " (2) \033[32m";
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err.right->print(mgr, std::cout);
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std::cout << "\033[0m" << std::endl;
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} catch(type_error& err) {
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std::cout << "failed to type check program: " << err.description << std::endl;
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}
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}
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