mirror of
https://github.com/rui314/chibicc
synced 2024-11-26 16:20:21 +03:00
190 lines
3.7 KiB
C
190 lines
3.7 KiB
C
#define _POSIX_C_SOURCE 200809L
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#include <assert.h>
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#include <ctype.h>
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#include <errno.h>
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#include <stdarg.h>
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#include <stdbool.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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typedef struct Type Type;
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typedef struct Node Node;
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//
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// strings.c
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//
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char *format(char *fmt, ...);
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//
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// tokenize.c
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//
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// Token
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typedef enum {
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TK_IDENT, // Identifiers
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TK_PUNCT, // Punctuators
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TK_KEYWORD, // Keywords
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TK_STR, // String literals
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TK_NUM, // Numeric literals
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TK_EOF, // End-of-file markers
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} TokenKind;
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// Token type
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typedef struct Token Token;
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struct Token {
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TokenKind kind; // Token kind
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Token *next; // Next token
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int val; // If kind is TK_NUM, its value
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char *loc; // Token location
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int len; // Token length
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Type *ty; // Used if TK_STR
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char *str; // String literal contents including terminating '\0'
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};
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void error(char *fmt, ...);
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void error_at(char *loc, char *fmt, ...);
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void error_tok(Token *tok, char *fmt, ...);
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bool equal(Token *tok, char *op);
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Token *skip(Token *tok, char *op);
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bool consume(Token **rest, Token *tok, char *str);
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Token *tokenize_file(char *filename);
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//
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// parse.c
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//
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// Variable or function
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typedef struct Obj Obj;
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struct Obj {
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Obj *next;
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char *name; // Variable name
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Type *ty; // Type
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bool is_local; // local or global/function
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// Local variable
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int offset;
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// Global variable or function
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bool is_function;
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// Global variable
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char *init_data;
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// Function
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Obj *params;
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Node *body;
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Obj *locals;
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int stack_size;
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};
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// AST node
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typedef enum {
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ND_ADD, // +
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ND_SUB, // -
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ND_MUL, // *
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ND_DIV, // /
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ND_NEG, // unary -
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ND_EQ, // ==
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ND_NE, // !=
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ND_LT, // <
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ND_LE, // <=
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ND_ASSIGN, // =
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ND_ADDR, // unary &
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ND_DEREF, // unary *
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ND_RETURN, // "return"
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ND_IF, // "if"
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ND_FOR, // "for" or "while"
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ND_BLOCK, // { ... }
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ND_FUNCALL, // Function call
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ND_EXPR_STMT, // Expression statement
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ND_STMT_EXPR, // Statement expression
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ND_VAR, // Variable
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ND_NUM, // Integer
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} NodeKind;
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// AST node type
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struct Node {
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NodeKind kind; // Node kind
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Node *next; // Next node
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Type *ty; // Type, e.g. int or pointer to int
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Token *tok; // Representative token
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Node *lhs; // Left-hand side
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Node *rhs; // Right-hand side
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// "if" or "for" statement
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Node *cond;
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Node *then;
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Node *els;
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Node *init;
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Node *inc;
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// Block or statement expression
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Node *body;
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// Function call
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char *funcname;
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Node *args;
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Obj *var; // Used if kind == ND_VAR
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int val; // Used if kind == ND_NUM
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};
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Obj *parse(Token *tok);
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//
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// type.c
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//
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typedef enum {
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TY_CHAR,
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TY_INT,
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TY_PTR,
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TY_FUNC,
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TY_ARRAY,
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} TypeKind;
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struct Type {
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TypeKind kind;
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int size; // sizeof() value
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// Pointer-to or array-of type. We intentionally use the same member
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// to represent pointer/array duality in C.
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//
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// In many contexts in which a pointer is expected, we examine this
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// member instead of "kind" member to determine whether a type is a
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// pointer or not. That means in many contexts "array of T" is
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// naturally handled as if it were "pointer to T", as required by
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// the C spec.
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Type *base;
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// Declaration
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Token *name;
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// Array
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int array_len;
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// Function type
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Type *return_ty;
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Type *params;
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Type *next;
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};
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extern Type *ty_char;
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extern Type *ty_int;
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bool is_integer(Type *ty);
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Type *copy_type(Type *ty);
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Type *pointer_to(Type *base);
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Type *func_type(Type *return_ty);
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Type *array_of(Type *base, int size);
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void add_type(Node *node);
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//
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// codegen.c
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//
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void codegen(Obj *prog, FILE *out);
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