IR: inline assembly working
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c3b603fdf9
commit
ed31ae8867
250
src/codegen.cpp
250
src/codegen.cpp
@ -1544,133 +1544,129 @@ static LLVMValueRef ir_render_struct_field_ptr(CodeGen *g, IrExecutable *executa
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return LLVMBuildStructGEP(g->builder, struct_ptr, field->gen_index, "");
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}
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static LLVMValueRef ir_render_asm(CodeGen *g, IrExecutable *executable, IrInstructionAsm *instruction) {
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zig_panic("TODO render asm");
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static size_t find_asm_index(CodeGen *g, AstNode *node, AsmToken *tok) {
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const char *ptr = buf_ptr(node->data.asm_expr.asm_template) + tok->start + 2;
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size_t len = tok->end - tok->start - 2;
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size_t result = 0;
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for (size_t i = 0; i < node->data.asm_expr.output_list.length; i += 1, result += 1) {
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AsmOutput *asm_output = node->data.asm_expr.output_list.at(i);
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if (buf_eql_mem(asm_output->asm_symbolic_name, ptr, len)) {
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return result;
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}
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}
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for (size_t i = 0; i < node->data.asm_expr.input_list.length; i += 1, result += 1) {
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AsmInput *asm_input = node->data.asm_expr.input_list.at(i);
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if (buf_eql_mem(asm_input->asm_symbolic_name, ptr, len)) {
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return result;
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}
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}
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return SIZE_MAX;
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}
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static LLVMValueRef ir_render_asm(CodeGen *g, IrExecutable *executable, IrInstructionAsm *instruction) {
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AstNode *asm_node = instruction->base.source_node;
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assert(asm_node->type == NodeTypeAsmExpr);
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AstNodeAsmExpr *asm_expr = &asm_node->data.asm_expr;
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Buf *src_template = asm_expr->asm_template;
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Buf llvm_template = BUF_INIT;
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buf_resize(&llvm_template, 0);
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for (size_t token_i = 0; token_i < asm_expr->token_list.length; token_i += 1) {
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AsmToken *asm_token = &asm_expr->token_list.at(token_i);
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switch (asm_token->id) {
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case AsmTokenIdTemplate:
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for (size_t offset = asm_token->start; offset < asm_token->end; offset += 1) {
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uint8_t c = *((uint8_t*)(buf_ptr(src_template) + offset));
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if (c == '$') {
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buf_append_str(&llvm_template, "$$");
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} else {
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buf_append_char(&llvm_template, c);
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}
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}
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break;
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case AsmTokenIdPercent:
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buf_append_char(&llvm_template, '%');
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break;
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case AsmTokenIdVar:
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size_t index = find_asm_index(g, asm_node, asm_token);
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assert(index < SIZE_MAX);
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buf_appendf(&llvm_template, "$%zu", index);
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break;
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}
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}
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Buf constraint_buf = BUF_INIT;
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buf_resize(&constraint_buf, 0);
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assert(instruction->return_count == 0 || instruction->return_count == 1);
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size_t total_constraint_count = asm_expr->output_list.length +
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asm_expr->input_list.length +
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asm_expr->clobber_list.length;
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size_t input_and_output_count = asm_expr->output_list.length +
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asm_expr->input_list.length -
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instruction->return_count;
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size_t total_index = 0;
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size_t param_index = 0;
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LLVMTypeRef *param_types = allocate<LLVMTypeRef>(input_and_output_count);
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LLVMValueRef *param_values = allocate<LLVMValueRef>(input_and_output_count);
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for (size_t i = 0; i < asm_expr->output_list.length; i += 1, total_index += 1) {
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AsmOutput *asm_output = asm_expr->output_list.at(i);
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bool is_return = (asm_output->return_type != nullptr);
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assert(*buf_ptr(asm_output->constraint) == '=');
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if (is_return) {
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buf_appendf(&constraint_buf, "=%s", buf_ptr(asm_output->constraint) + 1);
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} else {
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buf_appendf(&constraint_buf, "=*%s", buf_ptr(asm_output->constraint) + 1);
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}
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if (total_index + 1 < total_constraint_count) {
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buf_append_char(&constraint_buf, ',');
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}
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if (!is_return) {
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VariableTableEntry *variable = asm_output->variable;
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assert(variable);
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param_types[param_index] = LLVMTypeOf(variable->value_ref);
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param_values[param_index] = variable->value_ref;
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param_index += 1;
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}
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}
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for (size_t i = 0; i < asm_expr->input_list.length; i += 1, total_index += 1, param_index += 1) {
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AsmInput *asm_input = asm_expr->input_list.at(i);
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IrInstruction *ir_input = instruction->input_list[i];
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buf_append_buf(&constraint_buf, asm_input->constraint);
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if (total_index + 1 < total_constraint_count) {
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buf_append_char(&constraint_buf, ',');
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}
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param_types[param_index] = ir_input->type_entry->type_ref;
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param_values[param_index] = ir_llvm_value(g, ir_input);
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}
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for (size_t i = 0; i < asm_expr->clobber_list.length; i += 1, total_index += 1) {
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Buf *clobber_buf = asm_expr->clobber_list.at(i);
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buf_appendf(&constraint_buf, "~{%s}", buf_ptr(clobber_buf));
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if (total_index + 1 < total_constraint_count) {
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buf_append_char(&constraint_buf, ',');
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}
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}
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LLVMTypeRef ret_type;
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if (instruction->return_count == 0) {
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ret_type = LLVMVoidType();
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} else {
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ret_type = instruction->base.type_entry->type_ref;
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}
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LLVMTypeRef function_type = LLVMFunctionType(ret_type, param_types, input_and_output_count, false);
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bool is_volatile = asm_expr->is_volatile || (asm_expr->output_list.length == 0);
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LLVMValueRef asm_fn = LLVMConstInlineAsm(function_type, buf_ptr(&llvm_template),
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buf_ptr(&constraint_buf), is_volatile, false);
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set_debug_source_node(g, asm_node);
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return LLVMBuildCall(g->builder, asm_fn, param_values, input_and_output_count, "");
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}
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//static size_t find_asm_index(CodeGen *g, AstNode *node, AsmToken *tok) {
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// const char *ptr = buf_ptr(node->data.asm_expr.asm_template) + tok->start + 2;
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// size_t len = tok->end - tok->start - 2;
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// size_t result = 0;
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// for (size_t i = 0; i < node->data.asm_expr.output_list.length; i += 1, result += 1) {
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// AsmOutput *asm_output = node->data.asm_expr.output_list.at(i);
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// if (buf_eql_mem(asm_output->asm_symbolic_name, ptr, len)) {
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// return result;
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// }
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// }
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// for (size_t i = 0; i < node->data.asm_expr.input_list.length; i += 1, result += 1) {
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// AsmInput *asm_input = node->data.asm_expr.input_list.at(i);
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// if (buf_eql_mem(asm_input->asm_symbolic_name, ptr, len)) {
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// return result;
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// }
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// }
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// return SIZE_MAX;
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//}
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//
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//static LLVMValueRef gen_asm_expr(CodeGen *g, AstNode *node) {
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// assert(node->type == NodeTypeAsmExpr);
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//
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// AstNodeAsmExpr *asm_expr = &node->data.asm_expr;
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//
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// Buf *src_template = asm_expr->asm_template;
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//
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// Buf llvm_template = BUF_INIT;
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// buf_resize(&llvm_template, 0);
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//
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// for (size_t token_i = 0; token_i < asm_expr->token_list.length; token_i += 1) {
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// AsmToken *asm_token = &asm_expr->token_list.at(token_i);
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// switch (asm_token->id) {
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// case AsmTokenIdTemplate:
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// for (size_t offset = asm_token->start; offset < asm_token->end; offset += 1) {
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// uint8_t c = *((uint8_t*)(buf_ptr(src_template) + offset));
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// if (c == '$') {
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// buf_append_str(&llvm_template, "$$");
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// } else {
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// buf_append_char(&llvm_template, c);
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// }
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// }
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// break;
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// case AsmTokenIdPercent:
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// buf_append_char(&llvm_template, '%');
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// break;
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// case AsmTokenIdVar:
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// size_t index = find_asm_index(g, node, asm_token);
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// assert(index < SIZE_MAX);
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// buf_appendf(&llvm_template, "$%zu", index);
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// break;
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// }
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// }
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//
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// Buf constraint_buf = BUF_INIT;
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// buf_resize(&constraint_buf, 0);
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//
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// assert(asm_expr->return_count == 0 || asm_expr->return_count == 1);
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//
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// size_t total_constraint_count = asm_expr->output_list.length +
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// asm_expr->input_list.length +
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// asm_expr->clobber_list.length;
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// size_t input_and_output_count = asm_expr->output_list.length +
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// asm_expr->input_list.length -
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// asm_expr->return_count;
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// size_t total_index = 0;
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// size_t param_index = 0;
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// LLVMTypeRef *param_types = allocate<LLVMTypeRef>(input_and_output_count);
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// LLVMValueRef *param_values = allocate<LLVMValueRef>(input_and_output_count);
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// for (size_t i = 0; i < asm_expr->output_list.length; i += 1, total_index += 1) {
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// AsmOutput *asm_output = asm_expr->output_list.at(i);
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// bool is_return = (asm_output->return_type != nullptr);
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// assert(*buf_ptr(asm_output->constraint) == '=');
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// if (is_return) {
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// buf_appendf(&constraint_buf, "=%s", buf_ptr(asm_output->constraint) + 1);
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// } else {
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// buf_appendf(&constraint_buf, "=*%s", buf_ptr(asm_output->constraint) + 1);
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// }
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// if (total_index + 1 < total_constraint_count) {
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// buf_append_char(&constraint_buf, ',');
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// }
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//
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// if (!is_return) {
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// VariableTableEntry *variable = asm_output->variable;
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// assert(variable);
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// param_types[param_index] = LLVMTypeOf(variable->value_ref);
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// param_values[param_index] = variable->value_ref;
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// param_index += 1;
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// }
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// }
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// for (size_t i = 0; i < asm_expr->input_list.length; i += 1, total_index += 1, param_index += 1) {
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// AsmInput *asm_input = asm_expr->input_list.at(i);
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// buf_append_buf(&constraint_buf, asm_input->constraint);
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// if (total_index + 1 < total_constraint_count) {
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// buf_append_char(&constraint_buf, ',');
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// }
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//
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// TypeTableEntry *expr_type = get_expr_type(asm_input->expr);
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// param_types[param_index] = expr_type->type_ref;
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// param_values[param_index] = gen_expr(g, asm_input->expr);
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// }
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// for (size_t i = 0; i < asm_expr->clobber_list.length; i += 1, total_index += 1) {
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// Buf *clobber_buf = asm_expr->clobber_list.at(i);
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// buf_appendf(&constraint_buf, "~{%s}", buf_ptr(clobber_buf));
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// if (total_index + 1 < total_constraint_count) {
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// buf_append_char(&constraint_buf, ',');
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// }
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// }
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//
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// LLVMTypeRef ret_type;
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// if (asm_expr->return_count == 0) {
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// ret_type = LLVMVoidType();
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// } else {
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// ret_type = get_expr_type(node)->type_ref;
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// }
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// LLVMTypeRef function_type = LLVMFunctionType(ret_type, param_types, input_and_output_count, false);
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//
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// bool is_volatile = asm_expr->is_volatile || (asm_expr->output_list.length == 0);
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// LLVMValueRef asm_fn = LLVMConstInlineAsm(function_type, buf_ptr(&llvm_template),
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// buf_ptr(&constraint_buf), is_volatile, false);
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//
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// set_debug_source_node(g, node);
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// return LLVMBuildCall(g->builder, asm_fn, param_values, input_and_output_count, "");
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//}
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//
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@ -3307,7 +3303,7 @@ void codegen_generate_h_file(CodeGen *g) {
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continue;
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Buf return_type_c = BUF_INIT;
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get_c_type_node(g, fn_proto->return_type, &return_type_c);
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get_c_type(g, fn_table_entry->type_entry->data.fn.fn_type_id.return_type, &return_type_c);
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buf_appendf(&h_buf, "%s %s %s(",
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buf_ptr(export_macro),
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src/ir.cpp
16
src/ir.cpp
@ -4095,18 +4095,28 @@ static TypeTableEntry *ir_analyze_instruction_asm(IrAnalyze *ira, IrInstructionA
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AstNodeAsmExpr *asm_expr = &asm_instruction->base.source_node->data.asm_expr;
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IrInstruction **input_list = allocate<IrInstruction *>(asm_expr->input_list.length);
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IrInstruction **output_types = allocate<IrInstruction *>(asm_expr->output_list.length);
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TypeTableEntry *return_type = ira->codegen->builtin_types.entry_void;
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for (size_t i = 0; i < asm_expr->output_list.length; i += 1) {
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AsmOutput *asm_output = asm_expr->output_list.at(i);
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if (asm_output->return_type) {
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return_type = ir_resolve_type(ira, asm_instruction->output_types[i]);
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output_types[i] = asm_instruction->output_types[i]->other;
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return_type = ir_resolve_type(ira, output_types[i]);
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if (return_type->id == TypeTableEntryIdInvalid)
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return ira->codegen->builtin_types.entry_invalid;
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}
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}
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ir_build_asm_from(&ira->new_irb, &asm_instruction->base, asm_instruction->input_list,
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asm_instruction->output_types, asm_instruction->return_count, asm_instruction->has_side_effects);
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for (size_t i = 0; i < asm_expr->input_list.length; i += 1) {
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input_list[i] = asm_instruction->input_list[i]->other;
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if (input_list[i]->type_entry->id == TypeTableEntryIdInvalid)
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return ira->codegen->builtin_types.entry_invalid;
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}
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ir_build_asm_from(&ira->new_irb, &asm_instruction->base, input_list, output_types,
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asm_instruction->return_count, asm_instruction->has_side_effects);
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return return_type;
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}
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