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01481f2dc1
* The lexer, which include the actual lexeme producing logic, goes into the `lexer` directory. * The wrappers, one wrapper per input mode (file, string, utf-8, and readline), go into the `tokenizer` directory and include logic for creating a lexer instance and managing the buffer for different modes. --------- Co-authored-by: Pablo Galindo <pablogsal@gmail.com> Co-authored-by: blurb-it[bot] <43283697+blurb-it[bot]@users.noreply.github.com>
130 lines
3.6 KiB
C
130 lines
3.6 KiB
C
#include "Python.h"
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#include "errcode.h"
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#include "helpers.h"
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#include "../lexer/state.h"
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static int
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tok_underflow_string(struct tok_state *tok) {
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char *end = strchr(tok->inp, '\n');
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if (end != NULL) {
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end++;
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}
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else {
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end = strchr(tok->inp, '\0');
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if (end == tok->inp) {
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tok->done = E_EOF;
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return 0;
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}
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}
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if (tok->start == NULL) {
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tok->buf = tok->cur;
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}
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tok->line_start = tok->cur;
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ADVANCE_LINENO();
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tok->inp = end;
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return 1;
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}
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/* Fetch a byte from TOK, using the string buffer. */
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static int
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buf_getc(struct tok_state *tok) {
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return Py_CHARMASK(*tok->str++);
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}
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/* Unfetch a byte from TOK, using the string buffer. */
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static void
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buf_ungetc(int c, struct tok_state *tok) {
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tok->str--;
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assert(Py_CHARMASK(*tok->str) == c); /* tok->cur may point to read-only segment */
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}
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/* Set the readline function for TOK to ENC. For the string-based
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tokenizer, this means to just record the encoding. */
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static int
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buf_setreadl(struct tok_state *tok, const char* enc) {
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tok->enc = enc;
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return 1;
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}
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/* Decode a byte string STR for use as the buffer of TOK.
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Look for encoding declarations inside STR, and record them
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inside TOK. */
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static char *
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decode_str(const char *input, int single, struct tok_state *tok, int preserve_crlf)
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{
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PyObject* utf8 = NULL;
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char *str;
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const char *s;
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const char *newl[2] = {NULL, NULL};
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int lineno = 0;
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tok->input = str = _PyTokenizer_translate_newlines(input, single, preserve_crlf, tok);
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if (str == NULL)
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return NULL;
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tok->enc = NULL;
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tok->str = str;
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if (!_PyTokenizer_check_bom(buf_getc, buf_ungetc, buf_setreadl, tok))
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return _PyTokenizer_error_ret(tok);
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str = tok->str; /* string after BOM if any */
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assert(str);
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if (tok->enc != NULL) {
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utf8 = _PyTokenizer_translate_into_utf8(str, tok->enc);
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if (utf8 == NULL)
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return _PyTokenizer_error_ret(tok);
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str = PyBytes_AsString(utf8);
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}
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for (s = str;; s++) {
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if (*s == '\0') break;
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else if (*s == '\n') {
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assert(lineno < 2);
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newl[lineno] = s;
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lineno++;
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if (lineno == 2) break;
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}
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}
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tok->enc = NULL;
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/* need to check line 1 and 2 separately since check_coding_spec
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assumes a single line as input */
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if (newl[0]) {
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if (!_PyTokenizer_check_coding_spec(str, newl[0] - str, tok, buf_setreadl)) {
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return NULL;
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}
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if (tok->enc == NULL && tok->decoding_state != STATE_NORMAL && newl[1]) {
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if (!_PyTokenizer_check_coding_spec(newl[0]+1, newl[1] - newl[0],
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tok, buf_setreadl))
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return NULL;
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}
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}
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if (tok->enc != NULL) {
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assert(utf8 == NULL);
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utf8 = _PyTokenizer_translate_into_utf8(str, tok->enc);
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if (utf8 == NULL)
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return _PyTokenizer_error_ret(tok);
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str = PyBytes_AS_STRING(utf8);
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}
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assert(tok->decoding_buffer == NULL);
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tok->decoding_buffer = utf8; /* CAUTION */
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return str;
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}
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/* Set up tokenizer for string */
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struct tok_state *
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_PyTokenizer_FromString(const char *str, int exec_input, int preserve_crlf)
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{
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struct tok_state *tok = _PyTokenizer_tok_new();
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char *decoded;
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if (tok == NULL)
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return NULL;
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decoded = decode_str(str, exec_input, tok, preserve_crlf);
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if (decoded == NULL) {
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_PyTokenizer_Free(tok);
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return NULL;
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}
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tok->buf = tok->cur = tok->inp = decoded;
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tok->end = decoded;
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tok->underflow = &tok_underflow_string;
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return tok;
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}
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