[ruby/prism] Validate multibyte characters in strings
Check that multibyte characters are valid using pm_strpbrk. We need to add a couple of codepaths to ensure all encodings are covered. Importantly this doesn't check regular expressions, because apparently you're allowed to have invalid multibyte characters inside regular expression comment groups/extended mode. https://github.com/ruby/prism/commit/2857d3e1b5
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dc5191d695
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@ -2253,12 +2253,12 @@ static const uint8_t pm_utf_8_dfa[] = {
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static pm_unicode_codepoint_t
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pm_utf_8_codepoint(const uint8_t *b, ptrdiff_t n, size_t *width) {
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assert(n >= 0);
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size_t maximum = (size_t) n;
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size_t maximum = (n > 4) ? 4 : ((size_t) n);
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uint32_t codepoint;
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uint32_t state = 0;
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for (size_t index = 0; index < 4 && index < maximum; index++) {
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for (size_t index = 0; index < maximum; index++) {
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uint32_t byte = b[index];
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uint32_t type = pm_utf_8_dfa[byte];
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@ -2267,7 +2267,7 @@ pm_utf_8_codepoint(const uint8_t *b, ptrdiff_t n, size_t *width) {
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(0xffu >> type) & (byte);
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state = pm_utf_8_dfa[256 + (state * 16) + type];
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if (!state) {
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if (state == 0) {
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*width = index + 1;
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return (pm_unicode_codepoint_t) codepoint;
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}
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@ -2282,9 +2282,17 @@ pm_utf_8_codepoint(const uint8_t *b, ptrdiff_t n, size_t *width) {
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*/
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size_t
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pm_encoding_utf_8_char_width(const uint8_t *b, ptrdiff_t n) {
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size_t width;
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pm_utf_8_codepoint(b, n, &width);
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return width;
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assert(n >= 0);
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size_t maximum = (n > 4) ? 4 : ((size_t) n);
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uint32_t state = 0;
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for (size_t index = 0; index < maximum; index++) {
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state = pm_utf_8_dfa[256 + (state * 16) + pm_utf_8_dfa[b[index]]];
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if (state == 0) return index + 1;
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}
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return 0;
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}
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/**
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@ -245,6 +245,13 @@ extern const pm_encoding_t pm_encodings[PM_ENCODING_MAXIMUM];
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*/
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#define PM_ENCODING_US_ASCII_ENTRY (&pm_encodings[PM_ENCODING_US_ASCII])
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/**
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* This is the ASCII-8BIT encoding. We need a reference to it so that pm_strpbrk
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* can compare against it because invalid multibyte characters are not a thing
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* in this encoding.
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*/
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#define PM_ENCODING_ASCII_8BIT_ENTRY (&pm_encodings[PM_ENCODING_ASCII_8BIT])
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/**
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* Parse the given name of an encoding and return a pointer to the corresponding
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* encoding struct if one can be found, otherwise return NULL.
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@ -9737,7 +9737,7 @@ parser_lex(pm_parser_t *parser) {
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// and then find the first one.
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pm_lex_mode_t *lex_mode = parser->lex_modes.current;
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const uint8_t *breakpoints = lex_mode->as.list.breakpoints;
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const uint8_t *breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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const uint8_t *breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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// If we haven't found an escape yet, then this buffer will be
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// unallocated since we can refer directly to the source string.
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@ -9746,7 +9746,7 @@ parser_lex(pm_parser_t *parser) {
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while (breakpoint != NULL) {
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// If we hit a null byte, skip directly past it.
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if (*breakpoint == '\0') {
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breakpoint = pm_strpbrk(parser, breakpoint + 1, breakpoints, parser->end - (breakpoint + 1));
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breakpoint = pm_strpbrk(parser, breakpoint + 1, breakpoints, parser->end - (breakpoint + 1), true);
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continue;
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}
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@ -9765,7 +9765,7 @@ parser_lex(pm_parser_t *parser) {
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// we need to continue on past it.
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if (lex_mode->as.list.nesting > 0) {
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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lex_mode->as.list.nesting--;
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continue;
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}
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@ -9850,7 +9850,7 @@ parser_lex(pm_parser_t *parser) {
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}
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token_buffer.cursor = parser->current.end;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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continue;
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}
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@ -9863,7 +9863,7 @@ parser_lex(pm_parser_t *parser) {
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// that looked like an interpolated class or instance variable
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// like "#@" but wasn't actually. In this case we'll just skip
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// to the next breakpoint.
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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continue;
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}
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@ -9878,7 +9878,7 @@ parser_lex(pm_parser_t *parser) {
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// and find the next breakpoint.
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assert(*breakpoint == lex_mode->as.list.incrementor);
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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lex_mode->as.list.nesting++;
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continue;
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}
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@ -9917,14 +9917,14 @@ parser_lex(pm_parser_t *parser) {
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// regular expression. We'll use strpbrk to find the first of these
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// characters.
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const uint8_t *breakpoints = lex_mode->as.regexp.breakpoints;
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const uint8_t *breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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const uint8_t *breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, false);
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pm_token_buffer_t token_buffer = { { 0 }, 0 };
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while (breakpoint != NULL) {
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// If we hit a null byte, skip directly past it.
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if (*breakpoint == '\0') {
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, false);
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continue;
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}
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@ -9946,7 +9946,7 @@ parser_lex(pm_parser_t *parser) {
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// If the terminator is not a newline, then we can set
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// the next breakpoint and continue.
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, false);
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continue;
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}
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}
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@ -9956,7 +9956,7 @@ parser_lex(pm_parser_t *parser) {
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if (*breakpoint == lex_mode->as.regexp.terminator) {
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if (lex_mode->as.regexp.nesting > 0) {
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, false);
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lex_mode->as.regexp.nesting--;
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continue;
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}
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@ -10055,7 +10055,7 @@ parser_lex(pm_parser_t *parser) {
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}
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token_buffer.cursor = parser->current.end;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, false);
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continue;
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}
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@ -10068,7 +10068,7 @@ parser_lex(pm_parser_t *parser) {
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// something that looked like an interpolated class or
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// instance variable like "#@" but wasn't actually. In
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// this case we'll just skip to the next breakpoint.
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, false);
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continue;
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}
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@ -10083,7 +10083,7 @@ parser_lex(pm_parser_t *parser) {
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// and find the next breakpoint.
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assert(*breakpoint == lex_mode->as.regexp.incrementor);
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, false);
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lex_mode->as.regexp.nesting++;
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continue;
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}
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@ -10119,7 +10119,7 @@ parser_lex(pm_parser_t *parser) {
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// string. We'll use strpbrk to find the first of these characters.
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pm_lex_mode_t *lex_mode = parser->lex_modes.current;
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const uint8_t *breakpoints = lex_mode->as.string.breakpoints;
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const uint8_t *breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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const uint8_t *breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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// If we haven't found an escape yet, then this buffer will be
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// unallocated since we can refer directly to the source string.
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@ -10131,7 +10131,7 @@ parser_lex(pm_parser_t *parser) {
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if (lex_mode->as.string.incrementor != '\0' && *breakpoint == lex_mode->as.string.incrementor) {
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lex_mode->as.string.nesting++;
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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continue;
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}
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@ -10143,7 +10143,7 @@ parser_lex(pm_parser_t *parser) {
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// to continue on past it.
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if (lex_mode->as.string.nesting > 0) {
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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lex_mode->as.string.nesting--;
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continue;
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}
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@ -10185,7 +10185,7 @@ parser_lex(pm_parser_t *parser) {
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if (parser->heredoc_end == NULL) {
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pm_newline_list_append(&parser->newline_list, breakpoint);
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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continue;
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} else {
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parser->current.end = breakpoint + 1;
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@ -10199,7 +10199,7 @@ parser_lex(pm_parser_t *parser) {
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case '\0':
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// Skip directly past the null character.
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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break;
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case '\\': {
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// Here we hit escapes.
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@ -10268,7 +10268,7 @@ parser_lex(pm_parser_t *parser) {
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}
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token_buffer.cursor = parser->current.end;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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break;
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}
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case '#': {
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@ -10279,7 +10279,7 @@ parser_lex(pm_parser_t *parser) {
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// looked like an interpolated class or instance variable like "#@"
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// but wasn't actually. In this case we'll just skip to the next
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// breakpoint.
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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break;
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}
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@ -10407,7 +10407,7 @@ parser_lex(pm_parser_t *parser) {
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breakpoints[2] = '\0';
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}
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const uint8_t *breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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const uint8_t *breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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pm_token_buffer_t token_buffer = { { 0 }, 0 };
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bool was_escaped_newline = false;
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@ -10416,7 +10416,7 @@ parser_lex(pm_parser_t *parser) {
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case '\0':
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// Skip directly past the null character.
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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break;
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case '\n': {
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if (parser->heredoc_end != NULL && (parser->heredoc_end > breakpoint)) {
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@ -10491,7 +10491,7 @@ parser_lex(pm_parser_t *parser) {
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// Otherwise we hit a newline and it wasn't followed by
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// a terminator, so we can continue parsing.
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parser->current.end = breakpoint + 1;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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break;
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}
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case '\\': {
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@ -10555,7 +10555,7 @@ parser_lex(pm_parser_t *parser) {
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}
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token_buffer.cursor = parser->current.end;
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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break;
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}
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case '#': {
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@ -10567,7 +10567,7 @@ parser_lex(pm_parser_t *parser) {
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// or instance variable like "#@" but wasn't
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// actually. In this case we'll just skip to the
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// next breakpoint.
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end);
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breakpoint = pm_strpbrk(parser, parser->current.end, breakpoints, parser->end - parser->current.end, true);
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break;
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}
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@ -1,10 +1,18 @@
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#include "prism/util/pm_strpbrk.h"
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/**
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* This is the slow path that does care about the encoding.
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* Add an invalid multibyte character error to the parser.
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*/
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static inline void
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pm_strpbrk_invalid_multibyte_character(pm_parser_t *parser, const uint8_t *start, const uint8_t *end) {
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pm_diagnostic_list_append_format(&parser->error_list, start, end, PM_ERR_INVALID_MULTIBYTE_CHARACTER, *start);
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}
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/**
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* This is the default path.
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*/
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static inline const uint8_t *
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pm_strpbrk_multi_byte(const pm_parser_t *parser, const uint8_t *source, const uint8_t *charset, size_t maximum) {
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pm_strpbrk_utf8(pm_parser_t *parser, const uint8_t *source, const uint8_t *charset, size_t maximum, bool validate) {
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size_t index = 0;
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while (index < maximum) {
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@ -12,22 +20,39 @@ pm_strpbrk_multi_byte(const pm_parser_t *parser, const uint8_t *source, const ui
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return source + index;
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}
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size_t width = parser->encoding->char_width(source + index, (ptrdiff_t) (maximum - index));
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if (width == 0) {
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return NULL;
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}
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if (source[index] < 0x80) {
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index++;
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} else {
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size_t width = pm_encoding_utf_8_char_width(source + index, (ptrdiff_t) (maximum - index));
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index += width;
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if (width > 0) {
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index += width;
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} else if (!validate) {
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index++;
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} else {
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// At this point we know we have an invalid multibyte character.
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// We'll walk forward as far as we can until we find the next
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// valid character so that we don't spam the user with a ton of
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// the same kind of error.
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const size_t start = index;
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do {
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index++;
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} while (index < maximum && pm_encoding_utf_8_char_width(source + index, (ptrdiff_t) (maximum - index)) == 0);
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pm_strpbrk_invalid_multibyte_character(parser, source + start, source + index);
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}
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}
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}
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return NULL;
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}
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/**
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* This is the fast path that does not care about the encoding.
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* This is the path when the encoding is ASCII-8BIT.
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*/
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static inline const uint8_t *
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pm_strpbrk_single_byte(const uint8_t *source, const uint8_t *charset, size_t maximum) {
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pm_strpbrk_ascii_8bit(const uint8_t *source, const uint8_t *charset, size_t maximum) {
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size_t index = 0;
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while (index < maximum) {
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@ -41,6 +66,85 @@ pm_strpbrk_single_byte(const uint8_t *source, const uint8_t *charset, size_t max
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return NULL;
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}
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/**
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* This is the slow path that does care about the encoding.
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*/
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static inline const uint8_t *
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pm_strpbrk_multi_byte(pm_parser_t *parser, const uint8_t *source, const uint8_t *charset, size_t maximum, bool validate) {
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size_t index = 0;
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while (index < maximum) {
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if (strchr((const char *) charset, source[index]) != NULL) {
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return source + index;
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}
|
||||
|
||||
if (source[index] < 0x80) {
|
||||
index++;
|
||||
} else {
|
||||
size_t width = parser->encoding->char_width(source + index, (ptrdiff_t) (maximum - index));
|
||||
|
||||
if (width > 0) {
|
||||
index += width;
|
||||
} else if (!validate) {
|
||||
index++;
|
||||
} else {
|
||||
// At this point we know we have an invalid multibyte character.
|
||||
// We'll walk forward as far as we can until we find the next
|
||||
// valid character so that we don't spam the user with a ton of
|
||||
// the same kind of error.
|
||||
const size_t start = index;
|
||||
|
||||
do {
|
||||
index++;
|
||||
} while (index < maximum && parser->encoding->char_width(source + index, (ptrdiff_t) (maximum - index)) == 0);
|
||||
|
||||
pm_strpbrk_invalid_multibyte_character(parser, source + start, source + index);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
return NULL;
|
||||
}
|
||||
|
||||
/**
|
||||
* This is the fast path that does not care about the encoding because we know
|
||||
* the encoding only supports single-byte characters.
|
||||
*/
|
||||
static inline const uint8_t *
|
||||
pm_strpbrk_single_byte(pm_parser_t *parser, const uint8_t *source, const uint8_t *charset, size_t maximum, bool validate) {
|
||||
size_t index = 0;
|
||||
|
||||
while (index < maximum) {
|
||||
if (strchr((const char *) charset, source[index]) != NULL) {
|
||||
return source + index;
|
||||
}
|
||||
|
||||
if (source[index] < 0x80 || !validate) {
|
||||
index++;
|
||||
} else {
|
||||
size_t width = parser->encoding->char_width(source + index, (ptrdiff_t) (maximum - index));
|
||||
|
||||
if (width > 0) {
|
||||
index += width;
|
||||
} else {
|
||||
// At this point we know we have an invalid multibyte character.
|
||||
// We'll walk forward as far as we can until we find the next
|
||||
// valid character so that we don't spam the user with a ton of
|
||||
// the same kind of error.
|
||||
const size_t start = index;
|
||||
|
||||
do {
|
||||
index++;
|
||||
} while (index < maximum && parser->encoding->char_width(source + index, (ptrdiff_t) (maximum - index)) == 0);
|
||||
|
||||
pm_strpbrk_invalid_multibyte_character(parser, source + start, source + index);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
return NULL;
|
||||
}
|
||||
|
||||
/**
|
||||
* Here we have rolled our own version of strpbrk. The standard library strpbrk
|
||||
* has undefined behavior when the source string is not null-terminated. We want
|
||||
@ -57,16 +161,20 @@ pm_strpbrk_single_byte(const uint8_t *source, const uint8_t *charset, size_t max
|
||||
*
|
||||
* Finally, we want to support encodings wherein the charset could contain
|
||||
* characters that are trailing bytes of multi-byte characters. For example, in
|
||||
* Shift-JIS, the backslash character can be a trailing byte. In that case we
|
||||
* Shift_JIS, the backslash character can be a trailing byte. In that case we
|
||||
* need to take a slower path and iterate one multi-byte character at a time.
|
||||
*/
|
||||
const uint8_t *
|
||||
pm_strpbrk(const pm_parser_t *parser, const uint8_t *source, const uint8_t *charset, ptrdiff_t length) {
|
||||
pm_strpbrk(pm_parser_t *parser, const uint8_t *source, const uint8_t *charset, ptrdiff_t length, bool validate) {
|
||||
if (length <= 0) {
|
||||
return NULL;
|
||||
} else if (parser->encoding_changed && parser->encoding->multibyte) {
|
||||
return pm_strpbrk_multi_byte(parser, source, charset, (size_t) length);
|
||||
} else if (!parser->encoding_changed) {
|
||||
return pm_strpbrk_utf8(parser, source, charset, (size_t) length, validate);
|
||||
} else if (parser->encoding == PM_ENCODING_ASCII_8BIT_ENTRY) {
|
||||
return pm_strpbrk_ascii_8bit(source, charset, (size_t) length);
|
||||
} else if (parser->encoding->multibyte) {
|
||||
return pm_strpbrk_multi_byte(parser, source, charset, (size_t) length, validate);
|
||||
} else {
|
||||
return pm_strpbrk_single_byte(source, charset, (size_t) length);
|
||||
return pm_strpbrk_single_byte(parser, source, charset, (size_t) length, validate);
|
||||
}
|
||||
}
|
||||
|
@ -7,6 +7,7 @@
|
||||
#define PRISM_STRPBRK_H
|
||||
|
||||
#include "prism/defines.h"
|
||||
#include "prism/diagnostic.h"
|
||||
#include "prism/parser.h"
|
||||
|
||||
#include <stddef.h>
|
||||
@ -35,9 +36,11 @@
|
||||
* @param source The source to search.
|
||||
* @param charset The charset to search for.
|
||||
* @param length The maximum number of bytes to search.
|
||||
* @param validate Whether to validate that the source string is valid in the
|
||||
* current encoding of the parser.
|
||||
* @return A pointer to the first character in the source string that is in the
|
||||
* charset, or NULL if no such character exists.
|
||||
*/
|
||||
const uint8_t * pm_strpbrk(const pm_parser_t *parser, const uint8_t *source, const uint8_t *charset, ptrdiff_t length);
|
||||
const uint8_t * pm_strpbrk(pm_parser_t *parser, const uint8_t *source, const uint8_t *charset, ptrdiff_t length, bool validate);
|
||||
|
||||
#endif
|
||||
|
Loading…
x
Reference in New Issue
Block a user