阶段 B 步骤 5:类型元数据配置化(TypeInfo)。
- TypeInfo.h/cpp:TypeMeta(配置别名 + 内建基元解析),查询大小写不敏感; 提供 width/is_signed/is_float/tag/has_range/value_in_range - Codegen:layout_data 初值按 type_meta 的基元宽度/浮点写(删除手写宽度分支); const_id 的 tag 改查 type_meta - machine_test:+10 断言(BOOL 1B/range[0,1]/tag0、INT 2B 有符号、TIME 8B、大小写不敏感、未定义空) - 验收:line1 224 字节 hash 0xc3fe4ae74ad45900 不变、ctest 12/12
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@@ -17,7 +17,8 @@ add_library(compiler STATIC
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./src/Codegen.cpp
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./src/MachineConfig.cpp
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./src/Stb.cpp
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./src/Codec.cpp)
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./src/Codec.cpp
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./src/TypeInfo.cpp)
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target_include_directories(compiler PUBLIC ${CMAKE_CURRENT_SOURCE_DIR}/include)
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target_include_directories(compiler PRIVATE ${CMAKE_SOURCE_DIR}/third_party/tomlplusplus/include)
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@@ -0,0 +1,41 @@
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/**
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* @file TypeInfo.h
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* @brief 语言类型元数据(machine.toml 别名 + 内建基元解析)
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* @author
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* @date 2026-08-21
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*
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* @details 类型定义数据化(配置),运算/类型检查语义代码化:
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* - 元数据(宽度/符号/浮点/base/range/tag)全部来自 machine.toml + 内建基元表
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* - 查询大小写不敏感(配置名大写,Linker type_name 小写)
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*/
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#pragma once
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#include <cstdint>
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#include <string>
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#include "compiler/MachineConfig.h"
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namespace compiler {
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// 语言类型元数据
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struct TypeMeta {
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const ConfigType* config = nullptr; // 配置类型行(别名 + range + tag)
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const PrimType* prim = nullptr; // 内建基元(宽度/符号/浮点)
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uint32_t width() const { return prim ? prim->width : 0; }
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bool is_signed() const { return prim ? prim->is_signed : false; }
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bool is_float() const { return prim ? prim->is_float : false; }
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uint32_t tag() const { return config ? config->tag : 0; }
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bool has_range() const { return config ? config->has_range : false; }
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bool value_in_range(int64_t v) const {
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return !config || !config->has_range ||
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(v >= config->range_min && v <= config->range_max);
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}
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explicit operator bool() const { return config != nullptr && prim != nullptr; }
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};
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// 按语言类型名查元数据(大小写不敏感;未找到返回空 TypeMeta)
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TypeMeta type_meta(const MachineConfig& cfg, const std::string& name);
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}
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+10
-10
@@ -42,6 +42,7 @@
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#include "compiler/Codec.h"
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#include "compiler/MachineConfig.h"
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#include "compiler/Stb.h"
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#include "compiler/TypeInfo.h"
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namespace compiler {
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namespace {
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@@ -589,20 +590,19 @@ namespace {
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const int64_t v = has_init ? init : 0;
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const size_t off = static_cast<size_t>(s.address) * 8;
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data_.resize(off + 8, 0);
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// 初值按基元宽度写(类型元数据来自配置别名 → base)
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const ConfigType* ct = cfg_.find_type(uppercase_of(s.type_name));
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if (ct == nullptr) {
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// 初值按类型元数据写(配置别名 → 基元宽度/浮点)
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const TypeMeta tm = type_meta(cfg_, s.type_name);
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if (!tm) {
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return fail("no type in machine.toml for '" + s.type_name + "'");
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}
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const PrimType* prim = MachineConfig::find_prim(ct->base);
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if (prim == nullptr) {
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return fail("no prim '" + ct->base + "' for type '" + ct->name + "'");
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if (tm.is_float()) {
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return fail("float initializer not supported yet");
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}
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if (prim->width == 2 && !prim->is_float) {
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if (tm.width() == 2) {
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const uint16_t iv = static_cast<uint16_t>(v);
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data_[off] = static_cast<uint8_t>(iv & 0xFFu);
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data_[off + 1] = static_cast<uint8_t>((iv >> 8) & 0xFFu);
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} else if (prim->width >= 8 && !prim->is_float) {
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} else if (tm.width() == 8) {
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const uint64_t tv = static_cast<uint64_t>(v);
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for (int i = 0; i < 8; ++i) {
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data_[off + i] = static_cast<uint8_t>((tv >> (8 * i)) & 0xFFu);
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@@ -672,8 +672,8 @@ namespace {
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* @return const_id(u16)
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*/
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uint16_t const_id(const char* type_name, int64_t value) {
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const ConfigType* ct = cfg_.find_type(type_name);
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const uint32_t tag = ct ? ct->tag : 0;
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const TypeMeta tm = type_meta(cfg_, type_name);
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const uint32_t tag = tm ? tm.tag() : 0;
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for (size_t i = 0; i < consts_.size(); ++i) {
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if (consts_[i].tag == tag && consts_[i].value == static_cast<uint64_t>(value)) {
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return static_cast<uint16_t>(i);
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@@ -0,0 +1,41 @@
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/**
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* @file TypeInfo.cpp
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* @brief 语言类型元数据(machine.toml 别名 + 内建基元解析)
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* @author
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* @date 2026-08-21
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*/
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#include "compiler/TypeInfo.h"
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#include <cctype>
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namespace compiler {
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namespace {
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std::string lower(const std::string& s) {
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std::string out = s;
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for (char& ch : out) {
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ch = static_cast<char>(std::tolower(static_cast<unsigned char>(ch)));
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}
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return out;
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}
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} // namespace
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TypeMeta type_meta(const MachineConfig& cfg, const std::string& name) {
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TypeMeta m;
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const std::string key = lower(name);
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for (const ConfigType& t : cfg.types()) {
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if (lower(t.name) == key) {
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m.config = &t;
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break;
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}
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}
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if (m.config != nullptr) {
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m.prim = MachineConfig::find_prim(m.config->base);
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}
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return m;
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}
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} // namespace compiler
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