ruby/ruby_parser.c

1046 строки
23 KiB
C

/* This is a wrapper for parse.y */
#include "internal/ruby_parser.h"
#include "node.h"
#include "rubyparser.h"
#include "internal/error.h"
#ifdef UNIVERSAL_PARSER
#include "internal.h"
#include "internal/array.h"
#include "internal/bignum.h"
#include "internal/compile.h"
#include "internal/complex.h"
#include "internal/encoding.h"
#include "internal/gc.h"
#include "internal/hash.h"
#include "internal/io.h"
#include "internal/parse.h"
#include "internal/rational.h"
#include "internal/re.h"
#include "internal/string.h"
#include "internal/symbol.h"
#include "internal/thread.h"
#include "ruby/ractor.h"
#include "ruby/ruby.h"
#include "ruby/util.h"
#include "internal.h"
#include "vm_core.h"
#include "symbol.h"
struct ruby_parser {
rb_parser_t *parser_params;
};
static void
parser_mark(void *ptr)
{
struct ruby_parser *parser = (struct ruby_parser*)ptr;
rb_ruby_parser_mark(parser->parser_params);
}
static void
parser_free(void *ptr)
{
struct ruby_parser *parser = (struct ruby_parser*)ptr;
rb_ruby_parser_free(parser->parser_params);
}
static size_t
parser_memsize(const void *ptr)
{
struct ruby_parser *parser = (struct ruby_parser*)ptr;
return rb_ruby_parser_memsize(parser->parser_params);
}
static const rb_data_type_t ruby_parser_data_type = {
"parser",
{
parser_mark,
parser_free,
parser_memsize,
},
0, 0, RUBY_TYPED_FREE_IMMEDIATELY
};
static int
is_ascii_string2(VALUE str)
{
return is_ascii_string(str);
}
RBIMPL_ATTR_FORMAT(RBIMPL_PRINTF_FORMAT, 6, 0)
static VALUE
syntax_error_append(VALUE exc, VALUE file, int line, int column,
void *enc, const char *fmt, va_list args)
{
return rb_syntax_error_append(exc, file, line, column, (rb_encoding *)enc, fmt, args);
}
static int
local_defined(ID id, const void *p)
{
return rb_local_defined(id, (const rb_iseq_t *)p);
}
static int
dvar_defined(ID id, const void *p)
{
return rb_dvar_defined(id, (const rb_iseq_t *)p);
}
static bool
hash_literal_key_p(VALUE k)
{
switch (OBJ_BUILTIN_TYPE(k)) {
case T_NODE:
return false;
default:
return true;
}
}
static int
literal_cmp(VALUE val, VALUE lit)
{
if (val == lit) return 0;
if (!hash_literal_key_p(val) || !hash_literal_key_p(lit)) return -1;
return rb_iseq_cdhash_cmp(val, lit);
}
static st_index_t
literal_hash(VALUE a)
{
if (!hash_literal_key_p(a)) return (st_index_t)a;
return rb_iseq_cdhash_hash(a);
}
static int
is_usascii_enc(void *enc)
{
return rb_is_usascii_enc((rb_encoding *)enc);
}
static int
is_local_id2(ID id)
{
return is_local_id(id);
}
static int
is_attrset_id2(ID id)
{
return is_attrset_id(id);
}
static int
is_notop_id2(ID id)
{
return is_notop_id(id);
}
static VALUE
enc_str_new(const char *ptr, long len, void *enc)
{
return rb_enc_str_new(ptr, len, (rb_encoding *)enc);
}
static int
enc_isalnum(OnigCodePoint c, void *enc)
{
return rb_enc_isalnum(c, (rb_encoding *)enc);
}
static int
enc_precise_mbclen(const char *p, const char *e, void *enc)
{
return rb_enc_precise_mbclen(p, e, (rb_encoding *)enc);
}
static int
mbclen_charfound_p(int len)
{
return MBCLEN_CHARFOUND_P(len);
}
static const char *
enc_name(void *enc)
{
return rb_enc_name((rb_encoding *)enc);
}
static char *
enc_prev_char(const char *s, const char *p, const char *e, void *enc)
{
return rb_enc_prev_char(s, p, e, (rb_encoding *)enc);
}
static void *
enc_get(VALUE obj)
{
return (void *)rb_enc_get(obj);
}
static int
enc_asciicompat(void *enc)
{
return rb_enc_asciicompat((rb_encoding *)enc);
}
static void *
utf8_encoding(void)
{
return (void *)rb_utf8_encoding();
}
static VALUE
enc_associate(VALUE obj, void *enc)
{
return rb_enc_associate(obj, (rb_encoding *)enc);
}
static void *
ascii8bit_encoding(void)
{
return (void *)rb_ascii8bit_encoding();
}
static int
enc_codelen(int c, void *enc)
{
return rb_enc_codelen(c, (rb_encoding *)enc);
}
static VALUE
enc_str_buf_cat(VALUE str, const char *ptr, long len, void *enc)
{
return rb_enc_str_buf_cat(str, ptr, len, (rb_encoding *)enc);
}
static int
enc_mbcput(unsigned int c, void *buf, void *enc)
{
return rb_enc_mbcput(c, buf, (rb_encoding *)enc);
}
static void *
enc_from_index(int idx)
{
return (void *)rb_enc_from_index(idx);
}
static int
enc_isspace(OnigCodePoint c, void *enc)
{
return rb_enc_isspace(c, (rb_encoding *)enc);
}
static ID
intern3(const char *name, long len, void *enc)
{
return rb_intern3(name, len, (rb_encoding *)enc);
}
static void *
enc_compatible(VALUE str1, VALUE str2)
{
return (void *)rb_enc_compatible(str1, str2);
}
static VALUE
enc_from_encoding(void *enc)
{
return rb_enc_from_encoding((rb_encoding *)enc);
}
static int
encoding_get(VALUE obj)
{
return ENCODING_GET(obj);
}
static void
encoding_set(VALUE obj, int encindex)
{
ENCODING_SET(obj, encindex);
}
static int
encoding_is_ascii8bit(VALUE obj)
{
return ENCODING_IS_ASCII8BIT(obj);
}
static void *
usascii_encoding(void)
{
return (void *)rb_usascii_encoding();
}
static int
enc_symname_type(const char *name, long len, void *enc, unsigned int allowed_attrset)
{
return rb_enc_symname_type(name, len, (rb_encoding *)enc, allowed_attrset);
}
typedef struct {
struct parser_params *parser;
rb_encoding *enc;
NODE *succ_block;
const rb_code_location_t *loc;
} reg_named_capture_assign_t;
static int
reg_named_capture_assign_iter(const OnigUChar *name, const OnigUChar *name_end,
int back_num, int *back_refs, OnigRegex regex, void *arg0)
{
reg_named_capture_assign_t *arg = (reg_named_capture_assign_t*)arg0;
struct parser_params* p = arg->parser;
rb_encoding *enc = arg->enc;
const rb_code_location_t *loc = arg->loc;
long len = name_end - name;
const char *s = (const char *)name;
return rb_reg_named_capture_assign_iter_impl(p, s, len, (void *)enc, &arg->succ_block, loc);
}
static NODE *
reg_named_capture_assign(struct parser_params* p, VALUE regexp, const rb_code_location_t *loc)
{
reg_named_capture_assign_t arg;
arg.parser = p;
arg.enc = rb_enc_get(regexp);
arg.succ_block = 0;
arg.loc = loc;
onig_foreach_name(RREGEXP_PTR(regexp), reg_named_capture_assign_iter, &arg);
if (!arg.succ_block) return 0;
return RNODE_BLOCK(arg.succ_block)->nd_next;
}
static VALUE
rbool(VALUE v)
{
return RBOOL(v);
}
static int
undef_p(VALUE v)
{
return RB_UNDEF_P(v);
}
static int
rtest(VALUE obj)
{
return (int)RB_TEST(obj);
}
static int
nil_p(VALUE obj)
{
return (int)NIL_P(obj);
}
static VALUE
syntax_error_new(void)
{
return rb_class_new_instance(0, 0, rb_eSyntaxError);
}
static int
obj_frozen(VALUE obj)
{
return (int)RB_OBJ_FROZEN(obj);
}
static VALUE
obj_write(VALUE old, VALUE *slot, VALUE young)
{
return RB_OBJ_WRITE(old, slot, young);
}
static VALUE
obj_written(VALUE old, VALUE slot, VALUE young)
{
return RB_OBJ_WRITTEN(old, slot, young);
}
static VALUE
default_rs(void)
{
return rb_default_rs;
}
static void *
memmove2(void *dest, const void *src, size_t t, size_t n)
{
return memmove(dest, src, rbimpl_size_mul_or_raise(t, n));
}
static void *
nonempty_memcpy(void *dest, const void *src, size_t t, size_t n)
{
return ruby_nonempty_memcpy(dest, src, rbimpl_size_mul_or_raise(t, n));
}
static VALUE
ruby_verbose2(void)
{
return ruby_verbose;
}
static int *
rb_errno_ptr2(void)
{
return rb_errno_ptr();
}
static int
type_p(VALUE obj, int t)
{
return (int)RB_TYPE_P(obj, t);
}
static int
fixnum_p(VALUE obj)
{
return (int)RB_FIXNUM_P(obj);
}
static int
symbol_p(VALUE obj)
{
return (int)RB_SYMBOL_P(obj);
}
static void *
zalloc(size_t elemsiz)
{
return ruby_xcalloc(1, elemsiz);
}
static void
gc_guard(VALUE obj)
{
RB_GC_GUARD(obj);
}
static rb_imemo_tmpbuf_t *
tmpbuf_parser_heap(void *buf, rb_imemo_tmpbuf_t *old_heap, size_t cnt)
{
return rb_imemo_tmpbuf_parser_heap(buf, old_heap, cnt);
}
static VALUE
arg_error(void)
{
return rb_eArgError;
}
static VALUE
ruby_vm_frozen_core(void)
{
return rb_mRubyVMFrozenCore;
}
static int
special_const_p(VALUE obj)
{
return (int)RB_SPECIAL_CONST_P(obj);
}
static int
builtin_type(VALUE obj)
{
return (int)RB_BUILTIN_TYPE(obj);
}
static rb_ast_t *
ast_new(VALUE nb)
{
rb_ast_t *ast = (rb_ast_t *)rb_imemo_new(imemo_ast, 0, 0, 0, nb);
return ast;
}
static VALUE
static_id2sym(ID id)
{
return (((VALUE)(id)<<RUBY_SPECIAL_SHIFT)|SYMBOL_FLAG);
}
static long
str_coderange_scan_restartable(const char *s, const char *e, void *enc, int *cr)
{
return rb_str_coderange_scan_restartable(s, e, (rb_encoding *)enc, cr);
}
VALUE rb_io_gets_internal(VALUE io);
extern VALUE rb_eArgError;
extern VALUE rb_mRubyVMFrozenCore;
VALUE rb_node_case_when_optimizable_literal(const NODE *const node);
static const rb_parser_config_t rb_global_parser_config = {
.malloc = ruby_xmalloc,
.calloc = ruby_xcalloc,
.realloc = ruby_xrealloc,
.free = ruby_xfree,
.alloc_n = ruby_xmalloc2,
.alloc = ruby_xmalloc,
.realloc_n = ruby_xrealloc2,
.zalloc = zalloc,
.rb_memmove = memmove2,
.nonempty_memcpy = nonempty_memcpy,
.xmalloc_mul_add = rb_xmalloc_mul_add,
.tmpbuf_parser_heap = tmpbuf_parser_heap,
.ast_new = ast_new,
.compile_callback = rb_suppress_tracing,
.reg_named_capture_assign = reg_named_capture_assign,
.obj_freeze = rb_obj_freeze,
.obj_hide = rb_obj_hide,
.obj_frozen = obj_frozen,
.type_p = type_p,
.obj_freeze_raw = OBJ_FREEZE_RAW,
.fixnum_p = fixnum_p,
.symbol_p = symbol_p,
.attr_get = rb_attr_get,
.ary_new = rb_ary_new,
.ary_push = rb_ary_push,
.ary_new_from_args = rb_ary_new_from_args,
.ary_pop = rb_ary_pop,
.ary_last = rb_ary_last,
.ary_unshift = rb_ary_unshift,
.ary_new2 = rb_ary_new2,
.ary_entry = rb_ary_entry,
.ary_clear = rb_ary_clear,
.ary_modify = rb_ary_modify,
.array_len = rb_array_len,
.array_aref = RARRAY_AREF,
.sym_intern_ascii_cstr = rb_sym_intern_ascii_cstr,
.make_temporary_id = rb_make_temporary_id,
.is_local_id = is_local_id2,
.is_attrset_id = is_attrset_id2,
.is_global_name_punct = is_global_name_punct,
.id_type = id_type,
.id_attrset = rb_id_attrset,
.intern = rb_intern,
.intern2 = rb_intern2,
.intern3 = intern3,
.intern_str = rb_intern_str,
.is_notop_id = is_notop_id2,
.enc_symname_type = enc_symname_type,
.str_intern = rb_str_intern,
.id2name = rb_id2name,
.id2str = rb_id2str,
.id2sym = rb_id2sym,
.sym2id = rb_sym2id,
.str_catf = rb_str_catf,
.str_cat_cstr = rb_str_cat_cstr,
.str_subseq = rb_str_subseq,
.str_dup = rb_str_dup,
.str_new_frozen = rb_str_new_frozen,
.str_buf_new = rb_str_buf_new,
.str_buf_cat = rb_str_buf_cat,
.str_modify = rb_str_modify,
.str_set_len = rb_str_set_len,
.str_cat = rb_str_cat,
.str_resize = rb_str_resize,
.str_new = rb_str_new,
.str_new_cstr = rb_str_new_cstr,
.fstring = rb_fstring,
.is_ascii_string = is_ascii_string2,
.enc_str_new = enc_str_new,
.enc_str_buf_cat = enc_str_buf_cat,
.str_buf_append = rb_str_buf_append,
.str_vcatf = rb_str_vcatf,
.string_value_cstr = rb_string_value_cstr,
.rb_sprintf = rb_sprintf,
.rstring_ptr = RSTRING_PTR,
.rstring_end = RSTRING_END,
.rstring_len = RSTRING_LEN,
.filesystem_str_new_cstr = rb_filesystem_str_new_cstr,
.obj_as_string = rb_obj_as_string,
.hash_clear = rb_hash_clear,
.hash_new = rb_hash_new,
.hash_aset = rb_hash_aset,
.hash_delete = rb_hash_delete,
.hash_lookup = rb_hash_lookup,
.ident_hash_new = rb_ident_hash_new,
.num2int = rb_num2int_inline,
.int2num = rb_int2num_inline,
.stderr_tty_p = rb_stderr_tty_p,
.write_error_str = rb_write_error_str,
.default_rs = default_rs,
.io_write = rb_io_write,
.io_flush = rb_io_flush,
.io_puts = rb_io_puts,
.io_gets_internal = rb_io_gets_internal,
.debug_output_stdout = rb_ractor_stdout,
.debug_output_stderr = rb_ractor_stderr,
.is_usascii_enc = is_usascii_enc,
.enc_isalnum = enc_isalnum,
.enc_precise_mbclen = enc_precise_mbclen,
.mbclen_charfound_p = mbclen_charfound_p,
.enc_name = enc_name,
.enc_prev_char = enc_prev_char,
.enc_get = enc_get,
.enc_asciicompat = enc_asciicompat,
.utf8_encoding = utf8_encoding,
.enc_associate = enc_associate,
.ascii8bit_encoding = ascii8bit_encoding,
.enc_codelen = enc_codelen,
.enc_mbcput = enc_mbcput,
.char_to_option_kcode = rb_char_to_option_kcode,
.ascii8bit_encindex = rb_ascii8bit_encindex,
.enc_find_index = rb_enc_find_index,
.enc_from_index = enc_from_index,
.enc_associate_index = rb_enc_associate_index,
.enc_isspace = enc_isspace,
.enc_coderange_7bit = ENC_CODERANGE_7BIT,
.enc_coderange_unknown = ENC_CODERANGE_UNKNOWN,
.enc_compatible = enc_compatible,
.enc_from_encoding = enc_from_encoding,
.encoding_get = encoding_get,
.encoding_set = encoding_set,
.encoding_is_ascii8bit = encoding_is_ascii8bit,
.usascii_encoding = usascii_encoding,
.ractor_make_shareable = rb_ractor_make_shareable,
.local_defined = local_defined,
.dvar_defined = dvar_defined,
.literal_cmp = literal_cmp,
.literal_hash = literal_hash,
.syntax_error_append = syntax_error_append,
.raise = rb_raise,
.syntax_error_new = syntax_error_new,
.errinfo = rb_errinfo,
.set_errinfo = rb_set_errinfo,
.exc_raise = rb_exc_raise,
.make_exception = rb_make_exception,
.sized_xfree = ruby_sized_xfree,
.sized_realloc_n = ruby_sized_realloc_n,
.obj_write = obj_write,
.obj_written = obj_written,
.gc_register_mark_object = rb_gc_register_mark_object,
.gc_guard = gc_guard,
.gc_mark = rb_gc_mark,
.gc_mark_movable = rb_gc_mark_movable,
.gc_location = rb_gc_location,
.reg_compile = rb_reg_compile,
.reg_check_preprocess = rb_reg_check_preprocess,
.memcicmp = rb_memcicmp,
.compile_warn = rb_compile_warn,
.compile_warning = rb_compile_warning,
.bug = rb_bug,
.fatal = rb_fatal,
.verbose = ruby_verbose2,
.errno_ptr = rb_errno_ptr2,
.make_backtrace = rb_make_backtrace,
.scan_hex = ruby_scan_hex,
.scan_oct = ruby_scan_oct,
.scan_digits = ruby_scan_digits,
.strtod = ruby_strtod,
.rbool = rbool,
.undef_p = undef_p,
.rtest = rtest,
.nil_p = nil_p,
.qnil = Qnil,
.qtrue = Qtrue,
.qfalse = Qfalse,
.qundef = Qundef,
.eArgError = arg_error,
.mRubyVMFrozenCore = ruby_vm_frozen_core,
.long2int = rb_long2int,
.special_const_p = special_const_p,
.builtin_type = builtin_type,
.node_case_when_optimizable_literal = rb_node_case_when_optimizable_literal,
/* For Ripper */
.static_id2sym = static_id2sym,
.str_coderange_scan_restartable = str_coderange_scan_restartable,
};
rb_parser_t *
rb_parser_params_allocate(void)
{
return rb_ruby_parser_allocate(&rb_global_parser_config);
}
rb_parser_t *
rb_parser_params_new(void)
{
return rb_ruby_parser_new(&rb_global_parser_config);
}
VALUE
rb_parser_new(void)
{
struct ruby_parser *parser;
rb_parser_t *parser_params;
/*
* Create parser_params ahead of vparser because
* rb_ruby_parser_new can run GC so if create vparser
* first, parser_mark tries to mark not initialized parser_params.
*/
parser_params = rb_parser_params_new();
VALUE vparser = TypedData_Make_Struct(0, struct ruby_parser,
&ruby_parser_data_type, parser);
parser->parser_params = parser_params;
return vparser;
}
void
rb_parser_set_options(VALUE vparser, int print, int loop, int chomp, int split)
{
struct ruby_parser *parser;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
rb_ruby_parser_set_options(parser->parser_params, print, loop, chomp, split);
}
VALUE
rb_parser_set_context(VALUE vparser, const struct rb_iseq_struct *base, int main)
{
struct ruby_parser *parser;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
rb_ruby_parser_set_context(parser->parser_params, base, main);
return vparser;
}
void
rb_parser_set_script_lines(VALUE vparser, VALUE lines)
{
struct ruby_parser *parser;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
rb_ruby_parser_set_script_lines(parser->parser_params, lines);
}
void
rb_parser_error_tolerant(VALUE vparser)
{
struct ruby_parser *parser;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
rb_ruby_parser_error_tolerant(parser->parser_params);
}
rb_ast_t*
rb_parser_compile_file_path(VALUE vparser, VALUE fname, VALUE file, int start)
{
struct ruby_parser *parser;
rb_ast_t *ast;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
ast = rb_ruby_parser_compile_file_path(parser->parser_params, fname, file, start);
RB_GC_GUARD(vparser);
return ast;
}
void
rb_parser_keep_tokens(VALUE vparser)
{
struct ruby_parser *parser;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
rb_ruby_parser_keep_tokens(parser->parser_params);
}
rb_ast_t*
rb_parser_compile_generic(VALUE vparser, VALUE (*lex_gets)(VALUE, int), VALUE fname, VALUE input, int start)
{
struct ruby_parser *parser;
rb_ast_t *ast;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
ast = rb_ruby_parser_compile_generic(parser->parser_params, lex_gets, fname, input, start);
RB_GC_GUARD(vparser);
return ast;
}
rb_ast_t*
rb_parser_compile_string(VALUE vparser, const char *f, VALUE s, int line)
{
struct ruby_parser *parser;
rb_ast_t *ast;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
ast = rb_ruby_parser_compile_string(parser->parser_params, f, s, line);
RB_GC_GUARD(vparser);
return ast;
}
rb_ast_t*
rb_parser_compile_string_path(VALUE vparser, VALUE f, VALUE s, int line)
{
struct ruby_parser *parser;
rb_ast_t *ast;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
ast = rb_ruby_parser_compile_string_path(parser->parser_params, f, s, line);
RB_GC_GUARD(vparser);
return ast;
}
VALUE
rb_parser_encoding(VALUE vparser)
{
struct ruby_parser *parser;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
return rb_ruby_parser_encoding(parser->parser_params);
}
VALUE
rb_parser_end_seen_p(VALUE vparser)
{
struct ruby_parser *parser;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
return RBOOL(rb_ruby_parser_end_seen_p(parser->parser_params));
}
VALUE
rb_parser_set_yydebug(VALUE vparser, VALUE flag)
{
struct ruby_parser *parser;
TypedData_Get_Struct(vparser, struct ruby_parser, &ruby_parser_data_type, parser);
rb_ruby_parser_set_yydebug(parser->parser_params, RTEST(flag));
return flag;
}
#endif
VALUE
rb_str_new_parser_string(rb_parser_string_t *str)
{
return rb_enc_str_new(str->ptr, str->len, str->enc);
}
static VALUE
negative_numeric(VALUE val)
{
if (FIXNUM_P(val)) {
return LONG2FIX(-FIX2LONG(val));
}
if (SPECIAL_CONST_P(val)) {
#if USE_FLONUM
if (FLONUM_P(val)) {
return DBL2NUM(-RFLOAT_VALUE(val));
}
#endif
goto unknown;
}
switch (BUILTIN_TYPE(val)) {
case T_BIGNUM:
BIGNUM_NEGATE(val);
val = rb_big_norm(val);
break;
case T_RATIONAL:
RATIONAL_SET_NUM(val, negative_numeric(RRATIONAL(val)->num));
break;
case T_COMPLEX:
RCOMPLEX_SET_REAL(val, negative_numeric(RCOMPLEX(val)->real));
RCOMPLEX_SET_IMAG(val, negative_numeric(RCOMPLEX(val)->imag));
break;
case T_FLOAT:
val = DBL2NUM(-RFLOAT_VALUE(val));
break;
unknown:
default:
rb_bug("unknown literal type (%s) passed to negative_numeric",
rb_builtin_class_name(val));
break;
}
return val;
}
static VALUE
integer_value(const char *val, int base)
{
return rb_cstr_to_inum(val, base, FALSE);
}
static VALUE
rational_value(const char *node_val, int base, int seen_point)
{
VALUE lit;
char* val = strdup(node_val);
if (seen_point > 0) {
int len = (int)(strlen(val));
char *point = &val[seen_point];
size_t fraclen = len-seen_point-1;
memmove(point, point+1, fraclen+1);
lit = rb_rational_new(integer_value(val, base), rb_int_positive_pow(10, fraclen));
}
else {
lit = rb_rational_raw1(integer_value(val, base));
}
free(val);
return lit;
}
VALUE
rb_node_integer_literal_val(const NODE *n)
{
const rb_node_integer_t *node = RNODE_INTEGER(n);
VALUE val = integer_value(node->val, node->base);
if (node->minus) {
val = negative_numeric(val);
}
return val;
}
VALUE
rb_node_float_literal_val(const NODE *n)
{
const rb_node_float_t *node = RNODE_FLOAT(n);
double d = strtod(node->val, 0);
if (node->minus) {
d = -d;
}
VALUE val = DBL2NUM(d);
return val;
}
VALUE
rb_node_rational_literal_val(const NODE *n)
{
VALUE lit;
const rb_node_rational_t *node = RNODE_RATIONAL(n);
lit = rational_value(node->val, node->base, node->seen_point);
if (node->minus) {
lit = negative_numeric(lit);
}
return lit;
}
VALUE
rb_node_imaginary_literal_val(const NODE *n)
{
VALUE lit;
const rb_node_imaginary_t *node = RNODE_IMAGINARY(n);
enum rb_numeric_type type = node->type;
switch (type) {
case integer_literal:
lit = integer_value(node->val, node->base);
break;
case float_literal:{
double d = strtod(node->val, 0);
lit = DBL2NUM(d);
break;
}
case rational_literal:
lit = rational_value(node->val, node->base, node->seen_point);
break;
default:
rb_bug("unreachable");
}
lit = rb_complex_raw(INT2FIX(0), lit);
if (node->minus) {
lit = negative_numeric(lit);
}
return lit;
}
VALUE
rb_node_sym_string_val(const NODE *node)
{
rb_parser_string_t *str = RNODE_SYM(node)->string;
return ID2SYM(rb_intern3(str->ptr, str->len, str->enc));
}
VALUE
rb_node_line_lineno_val(const NODE *node)
{
return INT2FIX(node->nd_loc.beg_pos.lineno);
}
VALUE
rb_node_file_path_val(const NODE *node)
{
return rb_str_new_parser_string(RNODE_FILE(node)->path);
}
VALUE
rb_node_encoding_val(const NODE *node)
{
return rb_enc_from_encoding(RNODE_ENCODING(node)->enc);
}
VALUE
rb_node_const_decl_val(const NODE *node)
{
VALUE path;
if (RNODE_CDECL(node)->nd_vid) {
path = rb_id2str(RNODE_CDECL(node)->nd_vid);
}
else {
NODE *n = RNODE_CDECL(node)->nd_else;
path = rb_ary_new();
for (; n && nd_type_p(n, NODE_COLON2); n = RNODE_COLON2(n)->nd_head) {
rb_ary_push(path, rb_id2str(RNODE_COLON2(n)->nd_mid));
}
if (n && nd_type_p(n, NODE_CONST)) {
// Const::Name
rb_ary_push(path, rb_id2str(RNODE_CONST(n)->nd_vid));
}
else if (n && nd_type_p(n, NODE_COLON3)) {
// ::Const::Name
rb_ary_push(path, rb_str_new(0, 0));
}
else {
// expression::Name
rb_ary_push(path, rb_str_new_cstr("..."));
}
path = rb_ary_join(rb_ary_reverse(path), rb_str_new_cstr("::"));
path = rb_fstring(path);
}
return path;
}