178 lines
4.0 KiB
Markdown
178 lines
4.0 KiB
Markdown
# 03 - 变量声明与赋值
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Viper 的变量声明使用 Python 的类型注解语法,通过 `t` 模块指定 C 级别的类型信息。
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## 带注解的变量声明
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使用 `变量名: 类型` 语法声明变量:
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```python
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x: t.CInt = 0 # int x = 0;
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y: t.CUInt32T = 42 # uint32_t y = 42;
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name: list[t.CChar, 64] # char name[64];
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ptr: t.CVoid | t.CPtr # void* ptr;
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msg: t.CConst | str = "Hello" # const char* msg = "Hello";
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```
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### 无初始值的声明
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未赋值的变量声明会生成零初始化的变量,此处是未定义行为,即在不同环境位置可能会覆盖0,也可能不会,最好预先复制或用 memset 清除:
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```python
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count: t.CInt # int count = 0;
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buffer: list[t.CChar, 256] # char buffer[256] = {0};
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```
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### 延迟赋值
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变量可以先声明后赋值:
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```python
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x: t.CInt
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x = 10
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```
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### 指针变量
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```python
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p: t.CInt | t.CPtr # int* p;
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fb: t.CVoid | t.CPtr # void* fb;
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str_ptr: t.CConst | t.CChar | t.CPtr # const char* str_ptr;
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```
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### 指针变量的特殊初始化
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使用 `t.CVoid(0, t.CPtr)` 初始化指针为 NULL:
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```python
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p: t.CVoid | t.CPtr = t.CVoid(0, t.CPtr) # void* p = NULL;
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```
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或使用 `None`:
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```python
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p: t.CVoid | t.CPtr = None # void* p = NULL;
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```
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## 普通赋值
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```python
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x: t.CInt = 0
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x = 42 # x = 42;
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```
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## 增强赋值
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支持所有 Python 增强赋值运算符:
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```python
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x: t.CInt = 0
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x += 1 # x += 1;
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x -= 1 # x -= 1;
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x *= 2 # x *= 2;
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x //= 3 # x /= 3; (整数除法)
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x %= 5 # x %= 5;
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x <<= 1 # x <<= 1;
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x >>= 1 # x >>= 1;
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x |= 0xFF # x |= 0xFF;
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x &= 0x0F # x &= 0x0F;
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x ^= 0xAA # x ^= 0xAA;
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```
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## 全局变量
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模块顶层声明的变量即为全局变量:
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```python
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kbd_tid: t.CInt = -1 # 全局 int kbd_tid = -1;
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BootInfo: bootinfo | t.CPtr # 全局 struct bootinfo* BootInfo;
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```
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### 静态全局变量
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```python
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x: t.CStatic | t.CInt = 0 # static int x = 0;
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```
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### 外部声明
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```python
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x: t.CExtern | t.CInt # extern int x;
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```
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## 常量定义
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使用 `t.CDefine` 定义编译时常量。`t.CDefine` 不是数据类型,而是编译时元指令——常量在 LLVM IR 中不生成全局变量,而是在引用处直接内联展开。详见 [01-overview.md 中 t.CDefine 深度解析](01-overview.md#tcdefine-深度解析)。
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```python
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MAX_SIZE: t.CDefine = 1024
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PAGE_SIZE: t.CDefine = 4096
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FA_READ: t.CDefine = 0x01
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FA_WRITE: t.CDefine = 0x02
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```
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## 字符串常量
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Viper 中的字符串字面量编译为 C 的字符串常量(`const char*`):
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```python
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msg: t.CConst | str = "Hello, World!"
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serial.puts(msg)
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```
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也可以直接传递字符串字面量:
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```python
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serial.puts("Hello, World!")
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```
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## 类型转换
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使用类型构造函数进行显式类型转换:
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```python
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x: t.CInt = 42
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y: t.CUInt32T = t.CUInt32T(x) # (uint32_t)x
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f: t.CFloat = float(x) # (float)x
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i: t.CInt = int(f) # (int)f
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```
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### 指针类型转换
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```python
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ptr: t.CVoid | t.CPtr = some_ptr
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int_val: t.CUInt64T = t.CUInt64T(ptr) # (uint64_t)ptr — 指针转整数
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```
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## 结构体实例化
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> 此处不理解参见 ([05-classes.md 中 结构体实例化与初始化](05-classes.md#结构体实例化与初始化))
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直接使用类名作为构造函数:
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```python
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info: fat32_types.fat32_fileinfo
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dp: fat32_types.fat32_dirobj
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```
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带初始化的实例化:
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```python
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obj: MyClass = MyClass(arg1, arg2)
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```
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使用 `c.Addr` 获取实例指针:
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```python
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obj_ptr: MyClass | t.CPtr = c.Addr(MyClass(arg1, arg2))
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```
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## delete 语句
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`del` 语句可用于调用对象的 `__del__` 或 `__delete__` 方法:
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```python
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del obj # 调用 obj.__del__() 或 obj.__delete__()
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del arr[idx] # 调用 arr.__delitem__(idx)
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```
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