Files
cig/scanner.c
T

347 lines
6.8 KiB
C

#include "cig.h"
#include <ctype.h>
#include <string.h>
#include <errno.h>
scan_t make_scan(const char *name, const char *buffer, allocator_t allocator) {
scan_t s = {
.name = name,
.start = buffer,
.cur = buffer,
.allocator = allocator
};
return s;
}
void scan_next_line(scan_t *s) {
while (*s->cur && *s->cur != '\n') {
s->cur++;
}
if (*s->cur == '\n')
s->cur++; // move *past* the newline
}
scan_error_t scan_error(const scan_t *s, const char *message) {
const char *error_pos = s->cur; // use current scanner position
// Compute line + column (1-based)
int line = 1, col = 1;
for (const char *p = s->start; p < error_pos; p++) {
if (*p == '\n') { line++; col = 1; }
else col++;
}
return (scan_error_t) {
.filename = s->name,
.line = line,
.column = col,
.error_message = message
};
// TODO: probably do not need an allocator for a scanner?
}
scan_result_t scan_eof(scan_t *s) {
return (scan_result_t) {
.ok=*s->cur == '\0',
.error=scan_error(s, "null character not found"),
};
}
scan_result_t scan_literal(scan_t *s, const char *lit) {
const char *save = s->cur;
while (*lit && *lit == *s->cur) {
lit++;
s->cur++;
}
if (*lit == '\0') {
return (scan_result_t) {
.ok=true,
};
}
s->cur = save;
return (scan_result_t) {
.ok=false,
.error=scan_error(s, "invalid literal"),
};
// TODO: add another optional string field to specify what literal is
// missing
}
int scan_repeat_literal(scan_t *s, const char *lit) {
int n_repeats = 0;
while (scan_literal(s, lit).ok) {
n_repeats++;
}
return n_repeats;
}
scan_result_t scan_whitespace(scan_t *s) {
const char *save = s->cur;
while (isspace((unsigned char)*s->cur)) s->cur++;
return (scan_result_t) {
.ok=save != s->cur,
.error=scan_error(s, "expected whitespace"),
};
}
scan_result_t scan_digit(scan_t *s) {
if (!isdigit((unsigned char)*s->cur)) {
return (scan_result_t){
.ok=false,
.error=scan_error(s, "expected digit"),
};
}
s->cur++;
return (scan_result_t){
.ok=true,
.value=(scan_value_t){
.digit=(*s->cur) - '0',
},
};
}
bool scan_i64(scan_t *s) {
const char *save = s->cur;
if (*s->cur == '-' || *s->cur == '+') s->cur++;
if (!isdigit((unsigned char)*s->cur)) {
s->cur = save;
return false;
}
s->cur = save;
char *end;
errno = 0;
int64_t val = strtoll(s->cur, &end, 10);
if (end == s->cur) {
s->cur = save;
return false;
}
if (errno == ERANGE) {
scan_error(s, "integer does not fit in i64 value");
return false;
}
s->cur = end;
s->value.i64 = val;
return true;
}
bool scan_i32(scan_t *s) {
if (!scan_i64(s)) {
return false;
}
int32_t val = (int32_t)s->value.i64;
int64_t back = (int64_t)val;
if (back != s->value.i64) {
scan_error(s, "int does not fit in i32 value");
return false;
}
s->value.i32 = val;
return true;
}
bool scan_i16(scan_t *s) {
if (!scan_i64(s)) {
return false;
}
int16_t val = (int16_t)s->value.i64;
int64_t back = (int64_t)val;
if (back != s->value.i64) {
scan_error(s, "int does not fit in i16 value");
return false;
}
s->value.i16 = val;
return true;
}
bool scan_i8(scan_t *s) {
if (!scan_i64(s)) {
return false;
}
int8_t val = (int8_t)s->value.i64;
int64_t back = (int64_t)val;
if (back != s->value.i64) {
scan_error(s, "int does not fit in i8 value");
return false;
}
s->value.i8 = val;
return true;
}
bool scan_u64(scan_t *s) {
const char *save = s->cur;
if (*s->cur == '-') {
scan_error(s, "- is not allowed for unsigned integers");
return false;
}
if (*s->cur == '+') s->cur++;
if (!isdigit((unsigned char)*s->cur)) {
s->cur = save;
return false;
}
s->cur = save;
char *end;
errno = 0;
uint64_t val = strtoull(s->cur, &end, 10);
if (end == s->cur) {
s->cur = save;
return false;
}
if (errno == ERANGE) {
scan_error(s, "integer does not fit in u64 value");
return false;
}
s->cur = end;
s->value.u64 = val;
return true;
}
bool scan_u32(scan_t *s) {
if (!scan_u64(s)) {
return false;
}
uint32_t val = (uint32_t)s->value.u64;
uint64_t back = (uint64_t)val;
if (back != s->value.u64) {
scan_error(s, "int does not fit in u32 value");
return false;
}
s->value.u32 = val;
return true;
}
bool scan_u16(scan_t *s) {
if (!scan_u64(s)) {
return false;
}
uint16_t val = (uint16_t)s->value.u64;
uint64_t back = (uint64_t)val;
if (back != s->value.u64) {
scan_error(s, "int does not fit in u16 value");
return false;
}
s->value.u16 = val;
return true;
}
bool scan_u8(scan_t *s) {
if (!scan_u64(s)) {
return false;
}
uint8_t val = (uint8_t)s->value.u64;
uint64_t back = (uint64_t)val;
if (back != s->value.u64) {
scan_error(s, "int does not fit in u8 value");
return false;
}
s->value.u8 = val;
return true;
}
bool scan_f64(scan_t *s) {
const char *save = s->cur;
char *end;
errno = 0;
double val = strtod(s->cur, &end);
if (end == s->cur) {
s->cur = save;
return false;
}
if (errno == ERANGE) {
scan_error(s, "float does not fit in f64 value");
return false;
}
s->cur = end;
s->value.f64 = val;
return true;
}
bool scan_f32(scan_t *s) {
if (!scan_f64(s)) {
return false;
}
float val = (float)s->value.f64;
double back = (double)val;
if (back != s->value.f64) {
scan_error(s, "float does not fit in f32 value");
return false;
}
s->value.f32 = val;
return true;
}
bool scan_identifier(scan_t *s) {
if (!isalpha((unsigned char)*s->cur) && *s->cur != '_') {
return false;
}
const char *start = s->cur++;
while (isalnum((unsigned char)*s->cur) || *s->cur == '_') {
s->cur++;
}
size_t len = s->cur - start;
char *buf = allocator_alloc(s->allocator, len + 1);
memcpy(buf, start, len);
buf[len] = '\0';
s->value.identifier = buf;
return true;
}
bool scan_string_literal(scan_t *s) {
const char *save = s->cur;
if (*s->cur != '"')
return false;
s->cur++; // skip opening quote
char *buf = allocator_alloc(s->allocator, 256);
size_t cap = 256;
size_t len = 0;
while (*s->cur && *s->cur != '"') {
char c = *s->cur++;
if (c == '\\') {
char esc = *s->cur++;
switch (esc) {
case 'n': c = '\n'; break;
case 't': c = '\t'; break;
case 'r': c = '\r'; break;
case '\\': c = '\\'; break;
case '"': c = '"'; break;
case '0': c = '\0'; break;
default:
scan_error(s, "invalid escape sequence");
s->cur = save;
return false;
}
}
if (len + 2 >= cap) {
cap *= 2;
buf = allocator_resize(s->allocator, buf, cap);
}
buf[len++] = c;
}
if (*s->cur != '"') {
scan_error(s, "unterminated string literal");
s->cur = save;
return false;
}
s->cur++; // skip closing quote
buf[len] = '\0';
s->value.string_literal = buf;
return true;
}
scan_value_t required(scan_result_t res) {
if (!res.ok) {
fprintf(stderr, "%s:%d:%d: %s", res.filename, res.line, res.column, res.error_message);
exit(1);
}
return res.value;
// TODO
}
typedef struct scan_error {
const char *filename;
int line;
int column;
const char *error_message;
} scan_error_t;