зеркало из https://github.com/github/ruby.git
613 строки
21 KiB
C
613 строки
21 KiB
C
#include "yarp/extension.h"
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// NOTE: this file should contain only bindings.
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// All non-trivial logic should be in librubyparser so it can be shared its the various callers.
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VALUE rb_cYARP;
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VALUE rb_cYARPNode;
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VALUE rb_cYARPSource;
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VALUE rb_cYARPToken;
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VALUE rb_cYARPLocation;
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VALUE rb_cYARPComment;
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VALUE rb_cYARPParseError;
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VALUE rb_cYARPParseWarning;
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VALUE rb_cYARPParseResult;
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/******************************************************************************/
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/* IO of Ruby code */
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/******************************************************************************/
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// Check if the given VALUE is a string. If it's nil, then return NULL. If it's
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// not a string, then raise a type error. Otherwise return the VALUE as a C
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// string.
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static const char *
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check_string(VALUE value) {
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// If the value is nil, then we don't need to do anything.
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if (NIL_P(value)) {
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return NULL;
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}
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// Check if the value is a string. If it's not, then raise a type error.
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if (!RB_TYPE_P(value, T_STRING)) {
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rb_raise(rb_eTypeError, "wrong argument type %"PRIsVALUE" (expected String)", rb_obj_class(value));
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}
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// Otherwise, return the value as a C string.
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return RSTRING_PTR(value);
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}
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// Load the contents and size of the given string into the given yp_string_t.
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static void
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input_load_string(yp_string_t *input, VALUE string) {
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// Check if the string is a string. If it's not, then raise a type error.
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if (!RB_TYPE_P(string, T_STRING)) {
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rb_raise(rb_eTypeError, "wrong argument type %"PRIsVALUE" (expected String)", rb_obj_class(string));
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}
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yp_string_constant_init(input, RSTRING_PTR(string), RSTRING_LEN(string));
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}
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/******************************************************************************/
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/* Serializing the AST */
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/******************************************************************************/
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// Dump the AST corresponding to the given input to a string.
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static VALUE
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dump_input(yp_string_t *input, const char *filepath) {
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yp_buffer_t buffer;
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if (!yp_buffer_init(&buffer)) {
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rb_raise(rb_eNoMemError, "failed to allocate memory");
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}
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yp_parser_t parser;
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yp_parser_init(&parser, yp_string_source(input), yp_string_length(input), filepath);
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yp_node_t *node = yp_parse(&parser);
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yp_serialize(&parser, node, &buffer);
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VALUE result = rb_str_new(yp_buffer_value(&buffer), yp_buffer_length(&buffer));
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yp_node_destroy(&parser, node);
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yp_buffer_free(&buffer);
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yp_parser_free(&parser);
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return result;
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}
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// Dump the AST corresponding to the given string to a string.
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static VALUE
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dump(int argc, VALUE *argv, VALUE self) {
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VALUE string;
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VALUE filepath;
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rb_scan_args(argc, argv, "11", &string, &filepath);
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yp_string_t input;
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input_load_string(&input, string);
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#ifdef YARP_DEBUG_MODE_BUILD
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size_t length = yp_string_length(&input);
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char* dup = malloc(length);
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memcpy(dup, yp_string_source(&input), length);
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yp_string_constant_init(&input, dup, length);
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#endif
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VALUE value = dump_input(&input, check_string(filepath));
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#ifdef YARP_DEBUG_MODE_BUILD
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free(dup);
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#endif
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return value;
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}
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// Dump the AST corresponding to the given file to a string.
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static VALUE
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dump_file(VALUE self, VALUE filepath) {
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yp_string_t input;
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const char *checked = check_string(filepath);
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if (!yp_string_mapped_init(&input, checked)) return Qnil;
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VALUE value = dump_input(&input, checked);
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yp_string_free(&input);
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return value;
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}
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/******************************************************************************/
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/* Extracting values for the parse result */
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/******************************************************************************/
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// Extract the comments out of the parser into an array.
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static VALUE
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parser_comments(yp_parser_t *parser, VALUE source) {
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VALUE comments = rb_ary_new();
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for (yp_comment_t *comment = (yp_comment_t *) parser->comment_list.head; comment != NULL; comment = (yp_comment_t *) comment->node.next) {
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VALUE location_argv[] = {
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source,
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LONG2FIX(comment->start - parser->start),
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LONG2FIX(comment->end - comment->start)
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};
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VALUE type;
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switch (comment->type) {
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case YP_COMMENT_INLINE:
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type = ID2SYM(rb_intern("inline"));
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break;
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case YP_COMMENT_EMBDOC:
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type = ID2SYM(rb_intern("embdoc"));
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break;
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case YP_COMMENT___END__:
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type = ID2SYM(rb_intern("__END__"));
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break;
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default:
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type = ID2SYM(rb_intern("inline"));
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break;
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}
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VALUE comment_argv[] = { type, rb_class_new_instance(3, location_argv, rb_cYARPLocation) };
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rb_ary_push(comments, rb_class_new_instance(2, comment_argv, rb_cYARPComment));
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}
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return comments;
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}
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// Extract the errors out of the parser into an array.
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static VALUE
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parser_errors(yp_parser_t *parser, rb_encoding *encoding, VALUE source) {
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VALUE errors = rb_ary_new();
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yp_diagnostic_t *error;
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for (error = (yp_diagnostic_t *) parser->error_list.head; error != NULL; error = (yp_diagnostic_t *) error->node.next) {
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VALUE location_argv[] = {
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source,
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LONG2FIX(error->start - parser->start),
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LONG2FIX(error->end - error->start)
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};
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VALUE error_argv[] = {
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rb_enc_str_new_cstr(error->message, encoding),
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rb_class_new_instance(3, location_argv, rb_cYARPLocation)
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};
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rb_ary_push(errors, rb_class_new_instance(2, error_argv, rb_cYARPParseError));
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}
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return errors;
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}
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// Extract the warnings out of the parser into an array.
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static VALUE
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parser_warnings(yp_parser_t *parser, rb_encoding *encoding, VALUE source) {
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VALUE warnings = rb_ary_new();
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yp_diagnostic_t *warning;
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for (warning = (yp_diagnostic_t *) parser->warning_list.head; warning != NULL; warning = (yp_diagnostic_t *) warning->node.next) {
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VALUE location_argv[] = {
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source,
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LONG2FIX(warning->start - parser->start),
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LONG2FIX(warning->end - warning->start)
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};
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VALUE warning_argv[] = {
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rb_enc_str_new_cstr(warning->message, encoding),
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rb_class_new_instance(3, location_argv, rb_cYARPLocation)
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};
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rb_ary_push(warnings, rb_class_new_instance(2, warning_argv, rb_cYARPParseWarning));
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}
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return warnings;
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}
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/******************************************************************************/
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/* Lexing Ruby code */
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/******************************************************************************/
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// This struct gets stored in the parser and passed in to the lex callback any
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// time a new token is found. We use it to store the necessary information to
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// initialize a Token instance.
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typedef struct {
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VALUE source;
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VALUE tokens;
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rb_encoding *encoding;
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} parse_lex_data_t;
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// This is passed as a callback to the parser. It gets called every time a new
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// token is found. Once found, we initialize a new instance of Token and push it
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// onto the tokens array.
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static void
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parse_lex_token(void *data, yp_parser_t *parser, yp_token_t *token) {
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parse_lex_data_t *parse_lex_data = (parse_lex_data_t *) parser->lex_callback->data;
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VALUE yields = rb_ary_new_capa(2);
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rb_ary_push(yields, yp_token_new(parser, token, parse_lex_data->encoding, parse_lex_data->source));
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rb_ary_push(yields, INT2FIX(parser->lex_state));
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rb_ary_push(parse_lex_data->tokens, yields);
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}
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// This is called whenever the encoding changes based on the magic comment at
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// the top of the file. We use it to update the encoding that we are using to
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// create tokens.
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static void
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parse_lex_encoding_changed_callback(yp_parser_t *parser) {
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parse_lex_data_t *parse_lex_data = (parse_lex_data_t *) parser->lex_callback->data;
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parse_lex_data->encoding = rb_enc_find(parser->encoding.name);
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// Since the encoding changed, we need to go back and change the encoding of
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// the tokens that were already lexed. This is only going to end up being
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// one or two tokens, since the encoding can only change at the top of the
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// file.
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VALUE tokens = parse_lex_data->tokens;
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for (long index = 0; index < RARRAY_LEN(tokens); index++) {
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VALUE yields = rb_ary_entry(tokens, index);
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VALUE token = rb_ary_entry(yields, 0);
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VALUE value = rb_ivar_get(token, rb_intern("@value"));
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rb_enc_associate(value, parse_lex_data->encoding);
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ENC_CODERANGE_CLEAR(value);
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}
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}
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// Parse the given input and return a ParseResult containing just the tokens or
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// the nodes and tokens.
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static VALUE
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parse_lex_input(yp_string_t *input, const char *filepath, bool return_nodes) {
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yp_parser_t parser;
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yp_parser_init(&parser, yp_string_source(input), yp_string_length(input), filepath);
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yp_parser_register_encoding_changed_callback(&parser, parse_lex_encoding_changed_callback);
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VALUE offsets = rb_ary_new();
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VALUE source_argv[] = { rb_str_new((const char *) yp_string_source(input), yp_string_length(input)), offsets };
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VALUE source = rb_class_new_instance(2, source_argv, rb_cYARPSource);
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parse_lex_data_t parse_lex_data = {
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.source = source,
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.tokens = rb_ary_new(),
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.encoding = rb_utf8_encoding()
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};
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parse_lex_data_t *data = &parse_lex_data;
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yp_lex_callback_t lex_callback = (yp_lex_callback_t) {
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.data = (void *) data,
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.callback = parse_lex_token,
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};
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parser.lex_callback = &lex_callback;
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yp_node_t *node = yp_parse(&parser);
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// Here we need to update the source range to have the correct newline
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// offsets. We do it here because we've already created the object and given
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// it over to all of the tokens.
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for (size_t index = 0; index < parser.newline_list.size; index++) {
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rb_ary_push(offsets, INT2FIX(parser.newline_list.offsets[index]));
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}
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VALUE value;
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if (return_nodes) {
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value = rb_ary_new_capa(2);
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rb_ary_push(value, yp_ast_new(&parser, node, parse_lex_data.encoding));
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rb_ary_push(value, parse_lex_data.tokens);
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} else {
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value = parse_lex_data.tokens;
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}
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VALUE result_argv[] = {
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value,
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parser_comments(&parser, source),
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parser_errors(&parser, parse_lex_data.encoding, source),
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parser_warnings(&parser, parse_lex_data.encoding, source),
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source
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};
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yp_node_destroy(&parser, node);
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yp_parser_free(&parser);
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return rb_class_new_instance(5, result_argv, rb_cYARPParseResult);
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}
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// Return an array of tokens corresponding to the given string.
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static VALUE
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lex(int argc, VALUE *argv, VALUE self) {
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VALUE string;
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VALUE filepath;
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rb_scan_args(argc, argv, "11", &string, &filepath);
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yp_string_t input;
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input_load_string(&input, string);
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return parse_lex_input(&input, check_string(filepath), false);
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}
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// Return an array of tokens corresponding to the given file.
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static VALUE
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lex_file(VALUE self, VALUE filepath) {
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yp_string_t input;
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const char *checked = check_string(filepath);
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if (!yp_string_mapped_init(&input, checked)) return Qnil;
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VALUE value = parse_lex_input(&input, checked, false);
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yp_string_free(&input);
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return value;
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}
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/******************************************************************************/
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/* Parsing Ruby code */
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/******************************************************************************/
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// Parse the given input and return a ParseResult instance.
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static VALUE
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parse_input(yp_string_t *input, const char *filepath) {
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yp_parser_t parser;
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yp_parser_init(&parser, yp_string_source(input), yp_string_length(input), filepath);
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yp_node_t *node = yp_parse(&parser);
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rb_encoding *encoding = rb_enc_find(parser.encoding.name);
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VALUE source = yp_source_new(&parser);
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VALUE result_argv[] = {
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yp_ast_new(&parser, node, encoding),
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parser_comments(&parser, source),
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parser_errors(&parser, encoding, source),
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parser_warnings(&parser, encoding, source),
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source
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};
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VALUE result = rb_class_new_instance(5, result_argv, rb_cYARPParseResult);
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yp_node_destroy(&parser, node);
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yp_parser_free(&parser);
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return result;
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}
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// Parse the given string and return a ParseResult instance.
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static VALUE
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parse(int argc, VALUE *argv, VALUE self) {
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VALUE string;
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VALUE filepath;
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rb_scan_args(argc, argv, "11", &string, &filepath);
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yp_string_t input;
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input_load_string(&input, string);
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#ifdef YARP_DEBUG_MODE_BUILD
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size_t length = yp_string_length(&input);
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char* dup = malloc(length);
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memcpy(dup, yp_string_source(&input), length);
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yp_string_constant_init(&input, dup, length);
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#endif
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VALUE value = parse_input(&input, check_string(filepath));
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#ifdef YARP_DEBUG_MODE_BUILD
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free(dup);
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#endif
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return value;
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}
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// Parse the given file and return a ParseResult instance.
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static VALUE
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parse_file(VALUE self, VALUE filepath) {
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yp_string_t input;
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const char *checked = check_string(filepath);
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if (!yp_string_mapped_init(&input, checked)) return Qnil;
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VALUE value = parse_input(&input, checked);
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yp_string_free(&input);
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return value;
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}
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// Parse the given string and return a ParseResult instance.
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static VALUE
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parse_lex(int argc, VALUE *argv, VALUE self) {
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VALUE string;
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VALUE filepath;
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rb_scan_args(argc, argv, "11", &string, &filepath);
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yp_string_t input;
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input_load_string(&input, string);
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return parse_lex_input(&input, check_string(filepath), true);
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}
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// Parse and lex the given file and return a ParseResult instance.
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static VALUE
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parse_lex_file(VALUE self, VALUE filepath) {
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yp_string_t input;
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const char *checked = check_string(filepath);
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if (!yp_string_mapped_init(&input, checked)) return Qnil;
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VALUE value = parse_lex_input(&input, checked, true);
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yp_string_free(&input);
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return value;
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}
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/******************************************************************************/
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/* Utility functions exposed to make testing easier */
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/******************************************************************************/
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// Returns an array of strings corresponding to the named capture groups in the
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// given source string. If YARP was unable to parse the regular expression, this
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// function returns nil.
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static VALUE
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named_captures(VALUE self, VALUE source) {
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yp_string_list_t string_list;
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yp_string_list_init(&string_list);
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if (!yp_regexp_named_capture_group_names((const uint8_t *) RSTRING_PTR(source), RSTRING_LEN(source), &string_list, false, &yp_encoding_utf_8)) {
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yp_string_list_free(&string_list);
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return Qnil;
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}
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VALUE names = rb_ary_new();
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for (size_t index = 0; index < string_list.length; index++) {
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const yp_string_t *string = &string_list.strings[index];
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rb_ary_push(names, rb_str_new((const char *) yp_string_source(string), yp_string_length(string)));
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}
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yp_string_list_free(&string_list);
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return names;
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}
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// Accepts a source string and a type of unescaping and returns the unescaped
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// version.
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static VALUE
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unescape(VALUE source, yp_unescape_type_t unescape_type) {
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yp_string_t result;
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if (yp_unescape_string((const uint8_t *) RSTRING_PTR(source), RSTRING_LEN(source), unescape_type, &result)) {
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VALUE str = rb_str_new((const char *) yp_string_source(&result), yp_string_length(&result));
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yp_string_free(&result);
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return str;
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} else {
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yp_string_free(&result);
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return Qnil;
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}
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}
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// Do not unescape anything in the given string. This is here to provide a
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// consistent API.
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static VALUE
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unescape_none(VALUE self, VALUE source) {
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return unescape(source, YP_UNESCAPE_NONE);
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}
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// Minimally unescape the given string. This means effectively unescaping just
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// the quotes of a string. Returns the unescaped string.
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static VALUE
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unescape_minimal(VALUE self, VALUE source) {
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return unescape(source, YP_UNESCAPE_MINIMAL);
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}
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// Unescape everything in the given string. Return the unescaped string.
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static VALUE
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unescape_all(VALUE self, VALUE source) {
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return unescape(source, YP_UNESCAPE_ALL);
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}
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// Return a hash of information about the given source string's memory usage.
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static VALUE
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memsize(VALUE self, VALUE string) {
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yp_parser_t parser;
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size_t length = RSTRING_LEN(string);
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yp_parser_init(&parser, (const uint8_t *) RSTRING_PTR(string), length, NULL);
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yp_node_t *node = yp_parse(&parser);
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yp_memsize_t memsize;
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yp_node_memsize(node, &memsize);
|
|
|
|
yp_node_destroy(&parser, node);
|
|
yp_parser_free(&parser);
|
|
|
|
VALUE result = rb_hash_new();
|
|
rb_hash_aset(result, ID2SYM(rb_intern("length")), INT2FIX(length));
|
|
rb_hash_aset(result, ID2SYM(rb_intern("memsize")), INT2FIX(memsize.memsize));
|
|
rb_hash_aset(result, ID2SYM(rb_intern("node_count")), INT2FIX(memsize.node_count));
|
|
return result;
|
|
}
|
|
|
|
// Parse the file, but do nothing with the result. This is used to profile the
|
|
// parser for memory and speed.
|
|
static VALUE
|
|
profile_file(VALUE self, VALUE filepath) {
|
|
yp_string_t input;
|
|
|
|
const char *checked = check_string(filepath);
|
|
if (!yp_string_mapped_init(&input, checked)) return Qnil;
|
|
|
|
yp_parser_t parser;
|
|
yp_parser_init(&parser, yp_string_source(&input), yp_string_length(&input), checked);
|
|
|
|
yp_node_t *node = yp_parse(&parser);
|
|
yp_node_destroy(&parser, node);
|
|
yp_parser_free(&parser);
|
|
|
|
return Qnil;
|
|
}
|
|
|
|
// Parse the file and serialize the result. This is mostly used to test this
|
|
// path since it is used by client libraries.
|
|
static VALUE
|
|
parse_serialize_file_metadata(VALUE self, VALUE filepath, VALUE metadata) {
|
|
yp_string_t input;
|
|
yp_buffer_t buffer;
|
|
yp_buffer_init(&buffer);
|
|
|
|
const char *checked = check_string(filepath);
|
|
if (!yp_string_mapped_init(&input, checked)) return Qnil;
|
|
|
|
yp_parse_serialize(yp_string_source(&input), yp_string_length(&input), &buffer, check_string(metadata));
|
|
VALUE result = rb_str_new(yp_buffer_value(&buffer), yp_buffer_length(&buffer));
|
|
|
|
yp_buffer_free(&buffer);
|
|
return result;
|
|
}
|
|
|
|
/******************************************************************************/
|
|
/* Initialization of the extension */
|
|
/******************************************************************************/
|
|
|
|
RUBY_FUNC_EXPORTED void
|
|
Init_yarp(void) {
|
|
// Make sure that the YARP library version matches the expected version.
|
|
// Otherwise something was compiled incorrectly.
|
|
if (strcmp(yp_version(), EXPECTED_YARP_VERSION) != 0) {
|
|
rb_raise(
|
|
rb_eRuntimeError,
|
|
"The YARP library version (%s) does not match the expected version (%s)",
|
|
yp_version(),
|
|
EXPECTED_YARP_VERSION
|
|
);
|
|
}
|
|
|
|
// Grab up references to all of the constants that we're going to need to
|
|
// reference throughout this extension.
|
|
rb_cYARP = rb_define_module("YARP");
|
|
rb_cYARPNode = rb_define_class_under(rb_cYARP, "Node", rb_cObject);
|
|
rb_cYARPSource = rb_define_class_under(rb_cYARP, "Source", rb_cObject);
|
|
rb_cYARPToken = rb_define_class_under(rb_cYARP, "Token", rb_cObject);
|
|
rb_cYARPLocation = rb_define_class_under(rb_cYARP, "Location", rb_cObject);
|
|
rb_cYARPComment = rb_define_class_under(rb_cYARP, "Comment", rb_cObject);
|
|
rb_cYARPParseError = rb_define_class_under(rb_cYARP, "ParseError", rb_cObject);
|
|
rb_cYARPParseWarning = rb_define_class_under(rb_cYARP, "ParseWarning", rb_cObject);
|
|
rb_cYARPParseResult = rb_define_class_under(rb_cYARP, "ParseResult", rb_cObject);
|
|
|
|
// Define the version string here so that we can use the constants defined
|
|
// in yarp.h.
|
|
rb_define_const(rb_cYARP, "VERSION", rb_str_new2(EXPECTED_YARP_VERSION));
|
|
rb_define_const(rb_cYARP, "BACKEND", ID2SYM(rb_intern("CExtension")));
|
|
|
|
// First, the functions that have to do with lexing and parsing.
|
|
rb_define_singleton_method(rb_cYARP, "dump", dump, -1);
|
|
rb_define_singleton_method(rb_cYARP, "dump_file", dump_file, 1);
|
|
rb_define_singleton_method(rb_cYARP, "lex", lex, -1);
|
|
rb_define_singleton_method(rb_cYARP, "lex_file", lex_file, 1);
|
|
rb_define_singleton_method(rb_cYARP, "parse", parse, -1);
|
|
rb_define_singleton_method(rb_cYARP, "parse_file", parse_file, 1);
|
|
rb_define_singleton_method(rb_cYARP, "parse_lex", parse_lex, -1);
|
|
rb_define_singleton_method(rb_cYARP, "parse_lex_file", parse_lex_file, 1);
|
|
|
|
// Next, the functions that will be called by the parser to perform various
|
|
// internal tasks. We expose these to make them easier to test.
|
|
VALUE rb_cYARPDebug = rb_define_module_under(rb_cYARP, "Debug");
|
|
rb_define_singleton_method(rb_cYARPDebug, "named_captures", named_captures, 1);
|
|
rb_define_singleton_method(rb_cYARPDebug, "unescape_none", unescape_none, 1);
|
|
rb_define_singleton_method(rb_cYARPDebug, "unescape_minimal", unescape_minimal, 1);
|
|
rb_define_singleton_method(rb_cYARPDebug, "unescape_all", unescape_all, 1);
|
|
rb_define_singleton_method(rb_cYARPDebug, "memsize", memsize, 1);
|
|
rb_define_singleton_method(rb_cYARPDebug, "profile_file", profile_file, 1);
|
|
rb_define_singleton_method(rb_cYARPDebug, "parse_serialize_file_metadata", parse_serialize_file_metadata, 2);
|
|
|
|
// Next, initialize the other APIs.
|
|
Init_yarp_api_node();
|
|
Init_yarp_pack();
|
|
}
|