21#define PUSH_ADJUST(seq, location, label) \
22 ADD_ELEM((seq), (LINK_ELEMENT *) new_adjust_body(iseq, (label), (int) (location).line))
24#define PUSH_ADJUST_RESTORE(seq, label) \
25 ADD_ELEM((seq), (LINK_ELEMENT *) new_adjust_body(iseq, (label), -1))
27#define PUSH_INSN(seq, location, insn) \
28 ADD_ELEM((seq), (LINK_ELEMENT *) new_insn_body(iseq, (int) (location).line, (int) (location).node_id, BIN(insn), 0))
30#define PUSH_INSN1(seq, location, insn, op1) \
31 ADD_ELEM((seq), (LINK_ELEMENT *) new_insn_body(iseq, (int) (location).line, (int) (location).node_id, BIN(insn), 1, (VALUE)(op1)))
33#define PUSH_INSN2(seq, location, insn, op1, op2) \
34 ADD_ELEM((seq), (LINK_ELEMENT *) new_insn_body(iseq, (int) (location).line, (int) (location).node_id, BIN(insn), 2, (VALUE)(op1), (VALUE)(op2)))
36#define PUSH_INSN3(seq, location, insn, op1, op2, op3) \
37 ADD_ELEM((seq), (LINK_ELEMENT *) new_insn_body(iseq, (int) (location).line, (int) (location).node_id, BIN(insn), 3, (VALUE)(op1), (VALUE)(op2), (VALUE)(op3)))
39#define PUSH_INSNL(seq, location, insn, label) \
40 (PUSH_INSN1(seq, location, insn, label), LABEL_REF(label))
42#define PUSH_LABEL(seq, label) \
43 ADD_ELEM((seq), (LINK_ELEMENT *) (label))
45#define PUSH_SEND_R(seq, location, id, argc, block, flag, keywords) \
46 ADD_ELEM((seq), (LINK_ELEMENT *) new_insn_send(iseq, (int) (location).line, (int) (location).node_id, (id), (VALUE)(argc), (block), (VALUE)(flag), (keywords)))
48#define PUSH_SEND(seq, location, id, argc) \
49 PUSH_SEND_R((seq), location, (id), (argc), NULL, (VALUE)INT2FIX(0), NULL)
51#define PUSH_SEND_WITH_FLAG(seq, location, id, argc, flag) \
52 PUSH_SEND_R((seq), location, (id), (argc), NULL, (VALUE)(flag), NULL)
54#define PUSH_SEND_WITH_BLOCK(seq, location, id, argc, block) \
55 PUSH_SEND_R((seq), location, (id), (argc), (block), (VALUE)INT2FIX(0), NULL)
57#define PUSH_CALL(seq, location, id, argc) \
58 PUSH_SEND_R((seq), location, (id), (argc), NULL, (VALUE)INT2FIX(VM_CALL_FCALL), NULL)
60#define PUSH_CALL_WITH_BLOCK(seq, location, id, argc, block) \
61 PUSH_SEND_R((seq), location, (id), (argc), (block), (VALUE)INT2FIX(VM_CALL_FCALL), NULL)
63#define PUSH_TRACE(seq, event) \
64 ADD_ELEM((seq), (LINK_ELEMENT *) new_trace_body(iseq, (event), 0))
66#define PUSH_CATCH_ENTRY(type, ls, le, iseqv, lc) \
67 ADD_CATCH_ENTRY((type), (ls), (le), (iseqv), (lc))
69#define PUSH_SEQ(seq1, seq2) \
70 APPEND_LIST((seq1), (seq2))
72#define PUSH_SYNTHETIC_PUTNIL(seq, iseq) \
74 int lineno = ISEQ_COMPILE_DATA(iseq)->last_line; \
75 if (lineno == 0) lineno = FIX2INT(rb_iseq_first_lineno(iseq)); \
76 ADD_SYNTHETIC_INSN(seq, lineno, -1, putnil); \
85pm_iseq_add_getlocal(rb_iseq_t *iseq, LINK_ANCHOR *
const seq,
int line,
int node_id,
int idx,
int level)
87 if (iseq_local_block_param_p(iseq, idx, level)) {
88 ADD_ELEM(seq, (LINK_ELEMENT *) new_insn_body(iseq, line, node_id, BIN(getblockparam), 2,
INT2FIX((idx) + VM_ENV_DATA_SIZE - 1),
INT2FIX(level)));
91 ADD_ELEM(seq, (LINK_ELEMENT *) new_insn_body(iseq, line, node_id, BIN(getlocal), 2,
INT2FIX((idx) + VM_ENV_DATA_SIZE - 1),
INT2FIX(level)));
93 if (level > 0) access_outer_variables(iseq, level, iseq_lvar_id(iseq, idx, level),
Qfalse);
97pm_iseq_add_setlocal(rb_iseq_t *iseq, LINK_ANCHOR *
const seq,
int line,
int node_id,
int idx,
int level)
99 if (iseq_local_block_param_p(iseq, idx, level)) {
100 ADD_ELEM(seq, (LINK_ELEMENT *) new_insn_body(iseq, line, node_id, BIN(setblockparam), 2,
INT2FIX((idx) + VM_ENV_DATA_SIZE - 1),
INT2FIX(level)));
103 ADD_ELEM(seq, (LINK_ELEMENT *) new_insn_body(iseq, line, node_id, BIN(setlocal), 2,
INT2FIX((idx) + VM_ENV_DATA_SIZE - 1),
INT2FIX(level)));
105 if (level > 0) access_outer_variables(iseq, level, iseq_lvar_id(iseq, idx, level),
Qtrue);
108#define PUSH_GETLOCAL(seq, location, idx, level) \
109 pm_iseq_add_getlocal(iseq, (seq), (int) (location).line, (int) (location).node_id, (idx), (level))
111#define PUSH_SETLOCAL(seq, location, idx, level) \
112 pm_iseq_add_setlocal(iseq, (seq), (int) (location).line, (int) (location).node_id, (idx), (level))
118#define OLD_ISEQ NEW_ISEQ
121#define NEW_ISEQ(node, name, type, line_no) \
122 pm_new_child_iseq(iseq, (node), rb_fstring(name), 0, (type), (line_no))
124#define OLD_CHILD_ISEQ NEW_CHILD_ISEQ
127#define NEW_CHILD_ISEQ(node, name, type, line_no) \
128 pm_new_child_iseq(iseq, (node), rb_fstring(name), iseq, (type), (line_no))
130#define PM_COMPILE(node) \
131 pm_compile_node(iseq, (node), ret, popped, scope_node)
133#define PM_COMPILE_INTO_ANCHOR(_ret, node) \
134 pm_compile_node(iseq, (node), _ret, popped, scope_node)
136#define PM_COMPILE_POPPED(node) \
137 pm_compile_node(iseq, (node), ret, true, scope_node)
139#define PM_COMPILE_NOT_POPPED(node) \
140 pm_compile_node(iseq, (node), ret, false, scope_node)
142#define PM_NODE_START_LOCATION(parser, node) \
143 ((pm_node_location_t) { .line = pm_newline_list_line(&(parser)->newline_list, ((const pm_node_t *) (node))->location.start, (parser)->start_line), .node_id = ((const pm_node_t *) (node))->node_id })
145#define PM_NODE_END_LOCATION(parser, node) \
146 ((pm_node_location_t) { .line = pm_newline_list_line(&(parser)->newline_list, ((const pm_node_t *) (node))->location.end, (parser)->start_line), .node_id = ((const pm_node_t *) (node))->node_id })
148#define PM_LOCATION_START_LOCATION(parser, location, id) \
149 ((pm_node_location_t) { .line = pm_newline_list_line(&(parser)->newline_list, (location)->start, (parser)->start_line), .node_id = id })
151#define PM_NODE_START_LINE_COLUMN(parser, node) \
152 pm_newline_list_line_column(&(parser)->newline_list, ((const pm_node_t *) (node))->location.start, (parser)->start_line)
154#define PM_NODE_END_LINE_COLUMN(parser, node) \
155 pm_newline_list_line_column(&(parser)->newline_list, ((const pm_node_t *) (node))->location.end, (parser)->start_line)
157#define PM_LOCATION_START_LINE_COLUMN(parser, location) \
158 pm_newline_list_line_column(&(parser)->newline_list, (location)->start, (parser)->start_line)
161pm_node_line_number(
const pm_parser_t *parser,
const pm_node_t *node)
179 if (integer->
values == NULL) {
184 unsigned char *bytes = (
unsigned char *) RSTRING_PTR(
string);
186 size_t offset = integer->
length * 8;
187 for (
size_t value_index = 0; value_index < integer->
length; value_index++) {
188 uint32_t value = integer->
values[value_index];
190 for (
int index = 0; index < 8; index++) {
191 int byte = (value >> (4 * index)) & 0xf;
192 bytes[--offset] =
byte < 10 ?
byte +
'0' :
byte - 10 +
'a';
200 result =
rb_funcall(result, rb_intern(
"-@"), 0);
210parse_integer(
const pm_integer_node_t *node)
212 return parse_integer_value(&node->
value);
219parse_float(
const pm_float_node_t *node)
231parse_rational(
const pm_rational_node_t *node)
245parse_imaginary(
const pm_imaginary_node_t *node)
247 VALUE imaginary_part;
248 switch (PM_NODE_TYPE(node->
numeric)) {
249 case PM_FLOAT_NODE: {
250 imaginary_part = parse_float((
const pm_float_node_t *) node->
numeric);
253 case PM_INTEGER_NODE: {
254 imaginary_part = parse_integer((
const pm_integer_node_t *) node->
numeric);
257 case PM_RATIONAL_NODE: {
258 imaginary_part = parse_rational((
const pm_rational_node_t *) node->
numeric);
262 rb_bug(
"Unexpected numeric type on imaginary number %s\n", pm_node_type_to_str(PM_NODE_TYPE(node->
numeric)));
265 return rb_complex_raw(
INT2FIX(0), imaginary_part);
269parse_string(
const pm_scope_node_t *scope_node,
const pm_string_t *
string)
271 return rb_enc_str_new((
const char *) pm_string_source(
string), pm_string_length(
string), scope_node->encoding);
282 rb_encoding *encoding;
284 if (node->
flags & PM_ENCODING_FLAGS_FORCED_BINARY_ENCODING) {
287 else if (node->
flags & PM_ENCODING_FLAGS_FORCED_UTF8_ENCODING) {
294 return rb_enc_str_new((
const char *) pm_string_source(
string), pm_string_length(
string), encoding);
298parse_static_literal_string(rb_iseq_t *iseq,
const pm_scope_node_t *scope_node,
const pm_node_t *node,
const pm_string_t *
string)
300 rb_encoding *encoding;
302 if (node->
flags & PM_STRING_FLAGS_FORCED_BINARY_ENCODING) {
305 else if (node->
flags & PM_STRING_FLAGS_FORCED_UTF8_ENCODING) {
309 encoding = scope_node->encoding;
312 VALUE value = rb_enc_literal_str((
const char *) pm_string_source(
string), pm_string_length(
string), encoding);
315 if (ISEQ_COMPILE_DATA(iseq)->option->debug_frozen_string_literal ||
RTEST(
ruby_debug)) {
316 int line_number = pm_node_line_number(scope_node->parser, node);
317 value = rb_str_with_debug_created_info(value, rb_iseq_path(iseq), line_number);
324parse_string_symbol(
const pm_scope_node_t *scope_node,
const pm_symbol_node_t *symbol)
326 rb_encoding *encoding;
327 if (symbol->
base.
flags & PM_SYMBOL_FLAGS_FORCED_UTF8_ENCODING) {
330 else if (symbol->
base.
flags & PM_SYMBOL_FLAGS_FORCED_BINARY_ENCODING) {
333 else if (symbol->
base.
flags & PM_SYMBOL_FLAGS_FORCED_US_ASCII_ENCODING) {
337 encoding = scope_node->encoding;
340 return rb_intern3((
const char *) pm_string_source(&symbol->
unescaped), pm_string_length(&symbol->
unescaped), encoding);
344pm_optimizable_range_item_p(
const pm_node_t *node)
346 return (!node || PM_NODE_TYPE_P(node, PM_INTEGER_NODE) || PM_NODE_TYPE_P(node, PM_NIL_NODE));
351parse_regexp_error(rb_iseq_t *iseq, int32_t line_number,
const char *fmt, ...)
355 VALUE error = rb_syntax_error_append(
Qnil, rb_iseq_path(iseq), line_number, -1, NULL,
"%" PRIsVALUE, args);
361parse_regexp_string_part(rb_iseq_t *iseq,
const pm_scope_node_t *scope_node,
const pm_node_t *node,
const pm_string_t *unescaped, rb_encoding *implicit_regexp_encoding, rb_encoding *explicit_regexp_encoding)
365 rb_encoding *encoding;
367 if (explicit_regexp_encoding != NULL) {
368 encoding = explicit_regexp_encoding;
370 else if (node->
flags & PM_STRING_FLAGS_FORCED_BINARY_ENCODING) {
373 else if (node->
flags & PM_STRING_FLAGS_FORCED_UTF8_ENCODING) {
377 encoding = implicit_regexp_encoding;
380 VALUE string = rb_enc_str_new((
const char *) pm_string_source(unescaped), pm_string_length(unescaped), encoding);
381 VALUE error = rb_reg_check_preprocess(
string);
383 if (error !=
Qnil) parse_regexp_error(iseq, pm_node_line_number(scope_node->parser, node),
"%" PRIsVALUE, rb_obj_as_string(error));
388pm_static_literal_concat(rb_iseq_t *iseq,
const pm_node_list_t *nodes,
const pm_scope_node_t *scope_node, rb_encoding *implicit_regexp_encoding, rb_encoding *explicit_regexp_encoding,
bool top)
392 for (
size_t index = 0; index < nodes->
size; index++) {
393 const pm_node_t *part = nodes->
nodes[index];
396 switch (PM_NODE_TYPE(part)) {
398 if (implicit_regexp_encoding != NULL) {
400 string = parse_regexp_string_part(iseq, scope_node, part, &((
const pm_string_node_t *) part)->unescaped, implicit_regexp_encoding, explicit_regexp_encoding);
403 string = parse_string_encoded(part, &((
const pm_string_node_t *) part)->unescaped, scope_node->encoding);
404 VALUE error = rb_reg_check_preprocess(
string);
405 if (error !=
Qnil) parse_regexp_error(iseq, pm_node_line_number(scope_node->parser, part),
"%" PRIsVALUE, rb_obj_as_string(error));
409 string = parse_string_encoded(part, &((
const pm_string_node_t *) part)->unescaped, scope_node->encoding);
412 case PM_INTERPOLATED_STRING_NODE:
413 string = pm_static_literal_concat(iseq, &((
const pm_interpolated_string_node_t *) part)->parts, scope_node, implicit_regexp_encoding, explicit_regexp_encoding,
false);
415 case PM_EMBEDDED_STATEMENTS_NODE: {
416 const pm_embedded_statements_node_t *cast = (
const pm_embedded_statements_node_t *) part;
417 string = pm_static_literal_concat(iseq, &cast->
statements->
body, scope_node, implicit_regexp_encoding, explicit_regexp_encoding,
false);
421 RUBY_ASSERT(
false &&
"unexpected node type in pm_static_literal_concat");
425 if (current !=
Qnil) {
433 return top ? rb_fstring(current) : current;
436#define RE_OPTION_ENCODING_SHIFT 8
437#define RE_OPTION_ENCODING(encoding) (((encoding) & 0xFF) << RE_OPTION_ENCODING_SHIFT)
438#define ARG_ENCODING_NONE 32
439#define ARG_ENCODING_FIXED 16
440#define ENC_ASCII8BIT 1
442#define ENC_Windows_31J 3
450parse_regexp_flags(
const pm_node_t *node)
457 if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_ASCII_8BIT)) {
458 flags |= ARG_ENCODING_NONE;
461 if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_EUC_JP)) {
462 flags |= (ARG_ENCODING_FIXED | RE_OPTION_ENCODING(ENC_EUC_JP));
465 if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_WINDOWS_31J)) {
466 flags |= (ARG_ENCODING_FIXED | RE_OPTION_ENCODING(ENC_Windows_31J));
469 if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_UTF_8)) {
470 flags |= (ARG_ENCODING_FIXED | RE_OPTION_ENCODING(ENC_UTF8));
473 if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_IGNORE_CASE)) {
474 flags |= ONIG_OPTION_IGNORECASE;
477 if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_MULTI_LINE)) {
478 flags |= ONIG_OPTION_MULTILINE;
481 if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_EXTENDED)) {
482 flags |= ONIG_OPTION_EXTEND;
488#undef RE_OPTION_ENCODING_SHIFT
489#undef RE_OPTION_ENCODING
490#undef ARG_ENCODING_FIXED
491#undef ARG_ENCODING_NONE
494#undef ENC_Windows_31J
498parse_regexp_encoding(
const pm_scope_node_t *scope_node,
const pm_node_t *node)
500 if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_FORCED_BINARY_ENCODING) || PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_ASCII_8BIT)) {
503 else if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_UTF_8)) {
506 else if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_EUC_JP)) {
507 return rb_enc_get_from_index(ENCINDEX_EUC_JP);
509 else if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_WINDOWS_31J)) {
510 return rb_enc_get_from_index(ENCINDEX_Windows_31J);
518parse_regexp(rb_iseq_t *iseq,
const pm_scope_node_t *scope_node,
const pm_node_t *node,
VALUE string)
522 int32_t line_number = pm_node_line_number(scope_node->parser, node);
523 VALUE regexp = rb_reg_compile(
string, parse_regexp_flags(node), (
const char *) pm_string_source(&scope_node->parser->
filepath), line_number);
527 rb_set_errinfo(errinfo);
529 parse_regexp_error(iseq, line_number,
"%" PRIsVALUE, message);
538parse_regexp_literal(rb_iseq_t *iseq,
const pm_scope_node_t *scope_node,
const pm_node_t *node,
const pm_string_t *unescaped)
540 rb_encoding *regexp_encoding = parse_regexp_encoding(scope_node, node);
541 if (regexp_encoding == NULL) regexp_encoding = scope_node->encoding;
543 VALUE string = rb_enc_str_new((
const char *) pm_string_source(unescaped), pm_string_length(unescaped), regexp_encoding);
544 return parse_regexp(iseq, scope_node, node,
string);
548parse_regexp_concat(rb_iseq_t *iseq,
const pm_scope_node_t *scope_node,
const pm_node_t *node,
const pm_node_list_t *parts)
550 rb_encoding *explicit_regexp_encoding = parse_regexp_encoding(scope_node, node);
551 rb_encoding *implicit_regexp_encoding = explicit_regexp_encoding != NULL ? explicit_regexp_encoding : scope_node->encoding;
553 VALUE string = pm_static_literal_concat(iseq, parts, scope_node, implicit_regexp_encoding, explicit_regexp_encoding,
false);
554 return parse_regexp(iseq, scope_node, node,
string);
557static void pm_compile_node(rb_iseq_t *iseq,
const pm_node_t *node, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node);
560pm_interpolated_node_compile(rb_iseq_t *iseq,
const pm_node_list_t *parts,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node, rb_encoding *implicit_regexp_encoding, rb_encoding *explicit_regexp_encoding,
bool mutable_result,
bool frozen_result)
563 size_t parts_size = parts->
size;
564 bool interpolated =
false;
566 if (parts_size > 0) {
570 for (
size_t index = 0; index < parts_size; index++) {
571 const pm_node_t *part = parts->
nodes[index];
573 if (PM_NODE_TYPE_P(part, PM_STRING_NODE)) {
574 const pm_string_node_t *string_node = (
const pm_string_node_t *) part;
577 if (implicit_regexp_encoding == NULL) {
578 string_value = parse_string_encoded(part, &string_node->
unescaped, scope_node->encoding);
581 string_value = parse_regexp_string_part(iseq, scope_node, (
const pm_node_t *) string_node, &string_node->unescaped, implicit_regexp_encoding, explicit_regexp_encoding);
584 if (
RTEST(current_string)) {
585 current_string =
rb_str_concat(current_string, string_value);
588 current_string = string_value;
589 if (index != 0) current_location = PM_NODE_END_LOCATION(scope_node->parser, part);
596 PM_NODE_TYPE_P(part, PM_EMBEDDED_STATEMENTS_NODE) &&
597 ((
const pm_embedded_statements_node_t *) part)->statements != NULL &&
598 ((
const pm_embedded_statements_node_t *) part)->statements->body.size == 1 &&
599 PM_NODE_TYPE_P(((
const pm_embedded_statements_node_t *) part)->statements->body.nodes[0], PM_STRING_NODE)
601 const pm_string_node_t *string_node = (
const pm_string_node_t *) ((
const pm_embedded_statements_node_t *) part)->statements->body.nodes[0];
604 if (implicit_regexp_encoding == NULL) {
605 string_value = parse_string_encoded(part, &string_node->
unescaped, scope_node->encoding);
608 string_value = parse_regexp_string_part(iseq, scope_node, (
const pm_node_t *) string_node, &string_node->unescaped, implicit_regexp_encoding, explicit_regexp_encoding);
611 if (
RTEST(current_string)) {
612 current_string =
rb_str_concat(current_string, string_value);
615 current_string = string_value;
616 current_location = PM_NODE_START_LOCATION(scope_node->parser, part);
620 if (!
RTEST(current_string)) {
621 rb_encoding *encoding;
623 if (implicit_regexp_encoding != NULL) {
624 if (explicit_regexp_encoding != NULL) {
625 encoding = explicit_regexp_encoding;
631 encoding = implicit_regexp_encoding;
635 encoding = scope_node->encoding;
638 if (parts_size == 1) {
639 current_string = rb_enc_str_new(NULL, 0, encoding);
643 if (
RTEST(current_string)) {
644 VALUE operand = rb_fstring(current_string);
645 PUSH_INSN1(ret, current_location, putobject, operand);
649 PM_COMPILE_NOT_POPPED(part);
651 const pm_node_location_t current_location = PM_NODE_START_LOCATION(scope_node->parser, part);
652 PUSH_INSN(ret, current_location, dup);
655 const struct rb_callinfo *callinfo = new_callinfo(iseq, idTo_s, 0, VM_CALL_FCALL | VM_CALL_ARGS_SIMPLE, NULL, FALSE);
656 PUSH_INSN1(ret, current_location, objtostring, callinfo);
659 PUSH_INSN(ret, current_location, anytostring);
661 current_string =
Qnil;
667 if (
RTEST(current_string)) {
668 current_string = rb_fstring(current_string);
670 if (stack_size == 0) {
672 PUSH_INSN1(ret, current_location, putobject, current_string);
673 }
else if (mutable_result || interpolated) {
674 PUSH_INSN1(ret, current_location, putstring, current_string);
676 PUSH_INSN1(ret, current_location, putchilledstring, current_string);
679 PUSH_INSN1(ret, current_location, putobject, current_string);
682 current_string =
Qnil;
687 PUSH_INSN(ret, *node_location, putnil);
694pm_compile_regexp_dynamic(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_list_t *parts,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
696 rb_encoding *explicit_regexp_encoding = parse_regexp_encoding(scope_node, node);
697 rb_encoding *implicit_regexp_encoding = explicit_regexp_encoding != NULL ? explicit_regexp_encoding : scope_node->encoding;
699 int length = pm_interpolated_node_compile(iseq, parts, node_location, ret, popped, scope_node, implicit_regexp_encoding, explicit_regexp_encoding,
false,
false);
700 PUSH_INSN2(ret, *node_location, toregexp,
INT2FIX(parse_regexp_flags(node) & 0xFF),
INT2FIX(length));
704pm_source_file_value(
const pm_source_file_node_t *node,
const pm_scope_node_t *scope_node)
707 size_t length = pm_string_length(filepath);
711 return rb_enc_interned_str((
const char *) pm_string_source(filepath), length, filepath_encoding);
714 return rb_fstring_lit(
"<compiled>");
723pm_static_literal_string(rb_iseq_t *iseq,
VALUE string,
int line_number)
725 if (ISEQ_COMPILE_DATA(iseq)->option->debug_frozen_string_literal ||
RTEST(
ruby_debug)) {
726 return rb_str_with_debug_created_info(
string, rb_iseq_path(iseq), line_number);
729 return rb_fstring(
string);
739pm_static_literal_value(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_scope_node_t *scope_node)
743 RUBY_ASSERT(PM_NODE_FLAG_P(node, PM_NODE_FLAG_STATIC_LITERAL));
745 switch (PM_NODE_TYPE(node)) {
746 case PM_ARRAY_NODE: {
747 const pm_array_node_t *cast = (
const pm_array_node_t *) node;
748 const pm_node_list_t *elements = &cast->
elements;
750 VALUE value = rb_ary_hidden_new(elements->
size);
751 for (
size_t index = 0; index < elements->
size; index++) {
752 rb_ary_push(value, pm_static_literal_value(iseq, elements->
nodes[index], scope_node));
761 return parse_float((
const pm_float_node_t *) node);
763 const pm_hash_node_t *cast = (
const pm_hash_node_t *) node;
764 const pm_node_list_t *elements = &cast->
elements;
766 VALUE array = rb_ary_hidden_new(elements->
size * 2);
767 for (
size_t index = 0; index < elements->
size; index++) {
769 const pm_assoc_node_t *cast = (
const pm_assoc_node_t *) elements->
nodes[index];
770 VALUE pair[2] = { pm_static_literal_value(iseq, cast->key, scope_node), pm_static_literal_value(iseq, cast->value, scope_node) };
771 rb_ary_cat(array, pair, 2);
774 VALUE value = rb_hash_new_with_size(elements->
size);
781 case PM_IMAGINARY_NODE:
782 return parse_imaginary((
const pm_imaginary_node_t *) node);
783 case PM_INTEGER_NODE:
784 return parse_integer((
const pm_integer_node_t *) node);
785 case PM_INTERPOLATED_MATCH_LAST_LINE_NODE: {
786 const pm_interpolated_match_last_line_node_t *cast = (
const pm_interpolated_match_last_line_node_t *) node;
787 return parse_regexp_concat(iseq, scope_node, (
const pm_node_t *) cast, &cast->parts);
789 case PM_INTERPOLATED_REGULAR_EXPRESSION_NODE: {
790 const pm_interpolated_regular_expression_node_t *cast = (
const pm_interpolated_regular_expression_node_t *) node;
791 return parse_regexp_concat(iseq, scope_node, (
const pm_node_t *) cast, &cast->parts);
793 case PM_INTERPOLATED_STRING_NODE: {
794 VALUE string = pm_static_literal_concat(iseq, &((
const pm_interpolated_string_node_t *) node)->parts, scope_node, NULL, NULL,
false);
795 int line_number = pm_node_line_number(scope_node->parser, node);
796 return pm_static_literal_string(iseq,
string, line_number);
798 case PM_INTERPOLATED_SYMBOL_NODE: {
799 const pm_interpolated_symbol_node_t *cast = (
const pm_interpolated_symbol_node_t *) node;
800 VALUE string = pm_static_literal_concat(iseq, &cast->
parts, scope_node, NULL, NULL,
true);
802 return ID2SYM(rb_intern_str(
string));
804 case PM_MATCH_LAST_LINE_NODE: {
805 const pm_match_last_line_node_t *cast = (
const pm_match_last_line_node_t *) node;
806 return parse_regexp_literal(iseq, scope_node, (
const pm_node_t *) cast, &cast->unescaped);
810 case PM_RATIONAL_NODE:
811 return parse_rational((
const pm_rational_node_t *) node);
812 case PM_REGULAR_EXPRESSION_NODE: {
813 const pm_regular_expression_node_t *cast = (
const pm_regular_expression_node_t *) node;
814 return parse_regexp_literal(iseq, scope_node, (
const pm_node_t *) cast, &cast->unescaped);
816 case PM_SOURCE_ENCODING_NODE:
817 return rb_enc_from_encoding(scope_node->encoding);
818 case PM_SOURCE_FILE_NODE: {
819 const pm_source_file_node_t *cast = (
const pm_source_file_node_t *) node;
820 return pm_source_file_value(cast, scope_node);
822 case PM_SOURCE_LINE_NODE:
823 return INT2FIX(pm_node_line_number(scope_node->parser, node));
824 case PM_STRING_NODE: {
825 const pm_string_node_t *cast = (
const pm_string_node_t *) node;
826 return parse_static_literal_string(iseq, scope_node, node, &cast->
unescaped);
829 return ID2SYM(parse_string_symbol(scope_node, (
const pm_symbol_node_t *) node));
833 rb_bug(
"Don't have a literal value for node type %s", pm_node_type_to_str(PM_NODE_TYPE(node)));
841static rb_code_location_t
842pm_code_location(
const pm_scope_node_t *scope_node,
const pm_node_t *node)
844 const pm_line_column_t start_location = PM_NODE_START_LINE_COLUMN(scope_node->parser, node);
845 const pm_line_column_t end_location = PM_NODE_END_LINE_COLUMN(scope_node->parser, node);
847 return (rb_code_location_t) {
848 .beg_pos = { .lineno = start_location.
line, .column = start_location.
column },
849 .end_pos = { .lineno = end_location.
line, .column = end_location.
column }
858#define PM_BRANCH_COVERAGE_P(iseq) (ISEQ_COVERAGE(iseq) && ISEQ_BRANCH_COVERAGE(iseq))
861pm_compile_branch_condition(rb_iseq_t *iseq, LINK_ANCHOR *
const ret,
const pm_node_t *cond,
862 LABEL *then_label, LABEL *else_label,
bool popped, pm_scope_node_t *scope_node);
865pm_compile_logical(rb_iseq_t *iseq, LINK_ANCHOR *
const ret, pm_node_t *cond, LABEL *then_label, LABEL *else_label,
bool popped, pm_scope_node_t *scope_node)
871 LABEL *label = NEW_LABEL(location.
line);
872 if (!then_label) then_label = label;
873 else if (!else_label) else_label = label;
875 pm_compile_branch_condition(iseq, seq, cond, then_label, else_label, popped, scope_node);
877 if (LIST_INSN_SIZE_ONE(seq)) {
878 INSN *insn = (INSN *) ELEM_FIRST_INSN(FIRST_ELEMENT(seq));
879 if (insn->insn_id == BIN(jump) && (LABEL *)(insn->operands[0]) == label)
return;
882 if (!label->refcnt) {
883 if (popped) PUSH_INSN(ret, location, putnil);
886 PUSH_LABEL(seq, label);
894pm_compile_flip_flop_bound(rb_iseq_t *iseq,
const pm_node_t *node, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
898 if (PM_NODE_TYPE_P(node, PM_INTEGER_NODE)) {
899 PM_COMPILE_NOT_POPPED(node);
902 PUSH_INSN1(ret, location, getglobal, operand);
904 PUSH_SEND(ret, location, idEq,
INT2FIX(1));
905 if (popped) PUSH_INSN(ret, location, pop);
913pm_compile_flip_flop(
const pm_flip_flop_node_t *flip_flop_node, LABEL *else_label, LABEL *then_label, rb_iseq_t *iseq,
const int lineno, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
916 LABEL *lend = NEW_LABEL(location.
line);
918 int again = !(flip_flop_node->
base.
flags & PM_RANGE_FLAGS_EXCLUDE_END);
920 rb_num_t count = ISEQ_FLIP_CNT_INCREMENT(ISEQ_BODY(iseq)->local_iseq) + VM_SVAR_FLIPFLOP_START;
923 PUSH_INSN2(ret, location, getspecial, key,
INT2FIX(0));
924 PUSH_INSNL(ret, location, branchif, lend);
926 if (flip_flop_node->
left) {
927 pm_compile_flip_flop_bound(iseq, flip_flop_node->
left, ret, popped, scope_node);
930 PUSH_INSN(ret, location, putnil);
933 PUSH_INSNL(ret, location, branchunless, else_label);
934 PUSH_INSN1(ret, location, putobject,
Qtrue);
935 PUSH_INSN1(ret, location, setspecial, key);
937 PUSH_INSNL(ret, location, jump, then_label);
940 PUSH_LABEL(ret, lend);
941 if (flip_flop_node->
right) {
942 pm_compile_flip_flop_bound(iseq, flip_flop_node->
right, ret, popped, scope_node);
945 PUSH_INSN(ret, location, putnil);
948 PUSH_INSNL(ret, location, branchunless, then_label);
949 PUSH_INSN1(ret, location, putobject,
Qfalse);
950 PUSH_INSN1(ret, location, setspecial, key);
951 PUSH_INSNL(ret, location, jump, then_label);
954static void pm_compile_defined_expr(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node,
bool in_condition);
957pm_compile_branch_condition(rb_iseq_t *iseq, LINK_ANCHOR *
const ret,
const pm_node_t *cond, LABEL *then_label, LABEL *else_label,
bool popped, pm_scope_node_t *scope_node)
962 switch (PM_NODE_TYPE(cond)) {
964 const pm_and_node_t *cast = (
const pm_and_node_t *) cond;
965 pm_compile_logical(iseq, ret, cast->
left, NULL, else_label, popped, scope_node);
971 const pm_or_node_t *cast = (
const pm_or_node_t *) cond;
972 pm_compile_logical(iseq, ret, cast->
left, then_label, NULL, popped, scope_node);
979 PUSH_INSNL(ret, location, jump, else_label);
982 case PM_IMAGINARY_NODE:
983 case PM_INTEGER_NODE:
985 case PM_RATIONAL_NODE:
986 case PM_REGULAR_EXPRESSION_NODE:
990 PUSH_INSNL(ret, location, jump, then_label);
992 case PM_FLIP_FLOP_NODE:
993 pm_compile_flip_flop((
const pm_flip_flop_node_t *) cond, else_label, then_label, iseq, location.
line, ret, popped, scope_node);
995 case PM_DEFINED_NODE: {
996 const pm_defined_node_t *cast = (
const pm_defined_node_t *) cond;
997 pm_compile_defined_expr(iseq, cast->
value, &location, ret, popped, scope_node,
true);
1001 DECL_ANCHOR(cond_seq);
1002 pm_compile_node(iseq, cond, cond_seq,
false, scope_node);
1004 if (LIST_INSN_SIZE_ONE(cond_seq)) {
1005 INSN *insn = (INSN *) ELEM_FIRST_INSN(FIRST_ELEMENT(cond_seq));
1007 if (insn->insn_id == BIN(putobject)) {
1008 if (
RTEST(insn->operands[0])) {
1009 PUSH_INSNL(ret, location, jump, then_label);
1014 PUSH_INSNL(ret, location, jump, else_label);
1020 PUSH_SEQ(ret, cond_seq);
1025 PUSH_INSNL(ret, location, branchunless, else_label);
1026 PUSH_INSNL(ret, location, jump, then_label);
1033pm_compile_conditional(rb_iseq_t *iseq,
const pm_node_location_t *node_location, pm_node_type_t
type,
const pm_node_t *node,
const pm_statements_node_t *statements,
const pm_node_t *subsequent,
const pm_node_t *predicate, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
1036 LABEL *then_label = NEW_LABEL(location.
line);
1037 LABEL *else_label = NEW_LABEL(location.
line);
1038 LABEL *end_label = NULL;
1040 DECL_ANCHOR(cond_seq);
1041 pm_compile_branch_condition(iseq, cond_seq, predicate, then_label, else_label,
false, scope_node);
1042 PUSH_SEQ(ret, cond_seq);
1044 rb_code_location_t conditional_location = { 0 };
1047 if (then_label->refcnt && else_label->refcnt && PM_BRANCH_COVERAGE_P(iseq)) {
1048 conditional_location = pm_code_location(scope_node, node);
1049 branches = decl_branch_base(iseq, PTR2NUM(node), &conditional_location,
type == PM_IF_NODE ?
"if" :
"unless");
1052 if (then_label->refcnt) {
1053 PUSH_LABEL(ret, then_label);
1055 DECL_ANCHOR(then_seq);
1057 if (statements != NULL) {
1058 pm_compile_node(iseq, (
const pm_node_t *) statements, then_seq, popped, scope_node);
1061 PUSH_SYNTHETIC_PUTNIL(then_seq, iseq);
1064 if (else_label->refcnt) {
1066 if (PM_BRANCH_COVERAGE_P(iseq)) {
1067 rb_code_location_t branch_location;
1069 if (statements != NULL) {
1070 branch_location = pm_code_location(scope_node, (
const pm_node_t *) statements);
1071 }
else if (
type == PM_IF_NODE) {
1072 pm_line_column_t predicate_end = PM_NODE_END_LINE_COLUMN(scope_node->parser, predicate);
1073 branch_location = (rb_code_location_t) {
1074 .beg_pos = { .lineno = predicate_end.
line, .column = predicate_end.
column },
1075 .end_pos = { .lineno = predicate_end.
line, .column = predicate_end.
column }
1078 branch_location = conditional_location;
1081 add_trace_branch_coverage(iseq, ret, &branch_location, branch_location.beg_pos.column, 0,
type == PM_IF_NODE ?
"then" :
"else", branches);
1084 end_label = NEW_LABEL(location.
line);
1085 PUSH_INSNL(then_seq, location, jump, end_label);
1086 if (!popped) PUSH_INSN(then_seq, location, pop);
1089 PUSH_SEQ(ret, then_seq);
1092 if (else_label->refcnt) {
1093 PUSH_LABEL(ret, else_label);
1095 DECL_ANCHOR(else_seq);
1097 if (subsequent != NULL) {
1098 pm_compile_node(iseq, subsequent, else_seq, popped, scope_node);
1101 PUSH_SYNTHETIC_PUTNIL(else_seq, iseq);
1105 if (then_label->refcnt && PM_BRANCH_COVERAGE_P(iseq)) {
1106 rb_code_location_t branch_location;
1108 if (subsequent == NULL) {
1109 branch_location = conditional_location;
1110 }
else if (PM_NODE_TYPE_P(subsequent, PM_ELSE_NODE)) {
1111 const pm_else_node_t *else_node = (
const pm_else_node_t *) subsequent;
1112 branch_location = pm_code_location(scope_node, else_node->
statements != NULL ? ((
const pm_node_t *) else_node->
statements) : (
const pm_node_t *) else_node);
1114 branch_location = pm_code_location(scope_node, (
const pm_node_t *) subsequent);
1117 add_trace_branch_coverage(iseq, ret, &branch_location, branch_location.beg_pos.column, 1,
type == PM_IF_NODE ?
"else" :
"then", branches);
1120 PUSH_SEQ(ret, else_seq);
1124 PUSH_LABEL(ret, end_label);
1134pm_compile_loop(rb_iseq_t *iseq,
const pm_node_location_t *node_location, pm_node_flags_t flags,
enum pm_node_type
type,
const pm_node_t *node,
const pm_statements_node_t *statements,
const pm_node_t *predicate, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
1138 LABEL *prev_start_label = ISEQ_COMPILE_DATA(iseq)->start_label;
1139 LABEL *prev_end_label = ISEQ_COMPILE_DATA(iseq)->end_label;
1140 LABEL *prev_redo_label = ISEQ_COMPILE_DATA(iseq)->redo_label;
1142 LABEL *next_label = ISEQ_COMPILE_DATA(iseq)->start_label = NEW_LABEL(location.
line);
1143 LABEL *redo_label = ISEQ_COMPILE_DATA(iseq)->redo_label = NEW_LABEL(location.
line);
1144 LABEL *break_label = ISEQ_COMPILE_DATA(iseq)->end_label = NEW_LABEL(location.
line);
1145 LABEL *end_label = NEW_LABEL(location.
line);
1146 LABEL *adjust_label = NEW_LABEL(location.
line);
1148 LABEL *next_catch_label = NEW_LABEL(location.
line);
1149 LABEL *tmp_label = NULL;
1155 push_ensure_entry(iseq, &enl, NULL, NULL);
1158 if (flags & PM_LOOP_FLAGS_BEGIN_MODIFIER) {
1159 tmp_label = NEW_LABEL(location.
line);
1160 PUSH_INSNL(ret, location, jump, tmp_label);
1164 PUSH_INSNL(ret, location, jump, next_label);
1167 PUSH_LABEL(ret, adjust_label);
1168 PUSH_INSN(ret, location, putnil);
1169 PUSH_LABEL(ret, next_catch_label);
1170 PUSH_INSN(ret, location, pop);
1171 PUSH_INSNL(ret, location, jump, next_label);
1172 if (tmp_label) PUSH_LABEL(ret, tmp_label);
1174 PUSH_LABEL(ret, redo_label);
1177 if (PM_BRANCH_COVERAGE_P(iseq)) {
1178 rb_code_location_t loop_location = pm_code_location(scope_node, node);
1179 VALUE branches = decl_branch_base(iseq, PTR2NUM(node), &loop_location,
type == PM_WHILE_NODE ?
"while" :
"until");
1181 rb_code_location_t branch_location = statements != NULL ? pm_code_location(scope_node, (
const pm_node_t *) statements) : loop_location;
1182 add_trace_branch_coverage(iseq, ret, &branch_location, branch_location.beg_pos.column, 0,
"body", branches);
1185 if (statements != NULL) PM_COMPILE_POPPED((
const pm_node_t *) statements);
1186 PUSH_LABEL(ret, next_label);
1188 if (
type == PM_WHILE_NODE) {
1189 pm_compile_branch_condition(iseq, ret, predicate, redo_label, end_label, popped, scope_node);
1191 else if (
type == PM_UNTIL_NODE) {
1192 pm_compile_branch_condition(iseq, ret, predicate, end_label, redo_label, popped, scope_node);
1195 PUSH_LABEL(ret, end_label);
1196 PUSH_ADJUST_RESTORE(ret, adjust_label);
1197 PUSH_INSN(ret, location, putnil);
1199 PUSH_LABEL(ret, break_label);
1200 if (popped) PUSH_INSN(ret, location, pop);
1202 PUSH_CATCH_ENTRY(CATCH_TYPE_BREAK, redo_label, break_label, NULL, break_label);
1203 PUSH_CATCH_ENTRY(CATCH_TYPE_NEXT, redo_label, break_label, NULL, next_catch_label);
1204 PUSH_CATCH_ENTRY(CATCH_TYPE_REDO, redo_label, break_label, NULL, ISEQ_COMPILE_DATA(iseq)->redo_label);
1206 ISEQ_COMPILE_DATA(iseq)->start_label = prev_start_label;
1207 ISEQ_COMPILE_DATA(iseq)->end_label = prev_end_label;
1208 ISEQ_COMPILE_DATA(iseq)->redo_label = prev_redo_label;
1209 ISEQ_COMPILE_DATA(iseq)->ensure_node_stack = ISEQ_COMPILE_DATA(iseq)->ensure_node_stack->prev;
1217static pm_local_index_t
1218pm_lookup_local_index(rb_iseq_t *iseq,
const pm_scope_node_t *scope_node,
pm_constant_id_t constant_id,
int start_depth)
1220 pm_local_index_t lindex = { 0 };
1221 st_data_t local_index;
1224 for (level = 0; level < start_depth; level++) {
1225 scope_node = scope_node->previous;
1228 while (!st_lookup(scope_node->index_lookup_table, constant_id, &local_index)) {
1231 if (scope_node->previous) {
1232 scope_node = scope_node->previous;
1237 rb_bug(
"Local with constant_id %u does not exist", (
unsigned int) constant_id);
1241 lindex.level = level;
1242 lindex.index = scope_node->local_table_for_iseq_size - (int) local_index;
1253pm_constant_id_lookup(
const pm_scope_node_t *scope_node,
pm_constant_id_t constant_id)
1256 rb_bug(
"constant_id out of range: %u", (
unsigned int)constant_id);
1258 return scope_node->constants[constant_id - 1];
1262pm_new_child_iseq(rb_iseq_t *iseq, pm_scope_node_t *node,
VALUE name,
const rb_iseq_t *parent,
enum rb_iseq_type
type,
int line_no)
1264 debugs(
"[new_child_iseq]> ---------------------------------------\n");
1265 int isolated_depth = ISEQ_COMPILE_DATA(iseq)->isolated_depth;
1267 rb_iseq_t *ret_iseq = pm_iseq_new_with_opt(node, name,
1268 rb_iseq_path(iseq), rb_iseq_realpath(iseq),
1270 isolated_depth ? isolated_depth + 1 : 0,
1271 type, ISEQ_COMPILE_DATA(iseq)->option, &error_state);
1274 pm_scope_node_destroy(node);
1276 rb_jump_tag(error_state);
1278 debugs(
"[new_child_iseq]< ---------------------------------------\n");
1283pm_compile_class_path(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
1285 if (PM_NODE_TYPE_P(node, PM_CONSTANT_PATH_NODE)) {
1286 const pm_node_t *parent = ((
const pm_constant_path_node_t *) node)->parent;
1291 return VM_DEFINECLASS_FLAG_SCOPED;
1295 PUSH_INSN1(ret, *node_location, putobject, rb_cObject);
1296 return VM_DEFINECLASS_FLAG_SCOPED;
1301 PUSH_INSN1(ret, *node_location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_CONST_BASE));
1311pm_compile_call_and_or_write_node(rb_iseq_t *iseq,
bool and_node,
const pm_node_t *receiver,
const pm_node_t *value,
pm_constant_id_t write_name,
pm_constant_id_t read_name,
bool safe_nav,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
1314 LABEL *lfin = NEW_LABEL(location.
line);
1315 LABEL *lcfin = NEW_LABEL(location.
line);
1316 LABEL *lskip = NULL;
1318 int flag = PM_NODE_TYPE_P(receiver, PM_SELF_NODE) ? VM_CALL_FCALL : 0;
1319 ID id_read_name = pm_constant_id_lookup(scope_node, read_name);
1321 PM_COMPILE_NOT_POPPED(receiver);
1323 lskip = NEW_LABEL(location.
line);
1324 PUSH_INSN(ret, location, dup);
1325 PUSH_INSNL(ret, location, branchnil, lskip);
1328 PUSH_INSN(ret, location, dup);
1329 PUSH_SEND_WITH_FLAG(ret, location, id_read_name,
INT2FIX(0),
INT2FIX(flag));
1330 if (!popped) PUSH_INSN(ret, location, dup);
1333 PUSH_INSNL(ret, location, branchunless, lcfin);
1336 PUSH_INSNL(ret, location, branchif, lcfin);
1339 if (!popped) PUSH_INSN(ret, location, pop);
1340 PM_COMPILE_NOT_POPPED(value);
1343 PUSH_INSN(ret, location, swap);
1344 PUSH_INSN1(ret, location, topn,
INT2FIX(1));
1347 ID id_write_name = pm_constant_id_lookup(scope_node, write_name);
1348 PUSH_SEND_WITH_FLAG(ret, location, id_write_name,
INT2FIX(1),
INT2FIX(flag));
1349 PUSH_INSNL(ret, location, jump, lfin);
1351 PUSH_LABEL(ret, lcfin);
1352 if (!popped) PUSH_INSN(ret, location, swap);
1354 PUSH_LABEL(ret, lfin);
1356 if (lskip && popped) PUSH_LABEL(ret, lskip);
1357 PUSH_INSN(ret, location, pop);
1358 if (lskip && !popped) PUSH_LABEL(ret, lskip);
1361static void pm_compile_shareable_constant_value(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_flags_t shareability,
VALUE path, LINK_ANCHOR *
const ret, pm_scope_node_t *scope_node,
bool top);
1369pm_compile_hash_elements(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_list_t *elements,
const pm_node_flags_t shareability,
VALUE path,
bool argument, LINK_ANCHOR *
const ret, pm_scope_node_t *scope_node)
1371 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
1377 const int max_stack_length = 0x100;
1378 const unsigned int min_tmp_hash_length = 0x800;
1380 int stack_length = 0;
1381 bool first_chunk =
true;
1387 bool static_literal =
false;
1389 DECL_ANCHOR(anchor);
1392#define FLUSH_CHUNK \
1393 if (stack_length) { \
1394 if (first_chunk) { \
1395 PUSH_SEQ(ret, anchor); \
1396 PUSH_INSN1(ret, location, newhash, INT2FIX(stack_length)); \
1397 first_chunk = false; \
1400 PUSH_INSN1(ret, location, putspecialobject, INT2FIX(VM_SPECIAL_OBJECT_VMCORE)); \
1401 PUSH_INSN(ret, location, swap); \
1402 PUSH_SEQ(ret, anchor); \
1403 PUSH_SEND(ret, location, id_core_hash_merge_ptr, INT2FIX(stack_length + 1)); \
1405 INIT_ANCHOR(anchor); \
1409 for (
size_t index = 0; index < elements->
size; index++) {
1410 const pm_node_t *element = elements->
nodes[index];
1412 switch (PM_NODE_TYPE(element)) {
1413 case PM_ASSOC_NODE: {
1416 (shareability == 0) &&
1417 PM_NODE_FLAG_P(element, PM_NODE_FLAG_STATIC_LITERAL) && (
1418 (!static_literal && ((index + min_tmp_hash_length) < elements->
size)) ||
1419 (first_chunk && stack_length == 0)
1424 while (index + count < elements->size && PM_NODE_FLAG_P(elements->
nodes[index + count], PM_NODE_FLAG_STATIC_LITERAL)) count++;
1426 if ((first_chunk && stack_length == 0) || count >= min_tmp_hash_length) {
1429 VALUE ary = rb_ary_hidden_new(count);
1432 for (
size_t tmp_end = index + count; index < tmp_end; index++) {
1433 const pm_assoc_node_t *assoc = (
const pm_assoc_node_t *) elements->
nodes[index];
1436 pm_static_literal_value(iseq, assoc->key, scope_node),
1437 pm_static_literal_value(iseq, assoc->value, scope_node)
1440 rb_ary_cat(ary, elem, 2);
1452 PUSH_INSN1(ret, location, duphash, hash);
1453 first_chunk =
false;
1456 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
1457 PUSH_INSN(ret, location, swap);
1458 PUSH_INSN1(ret, location, putobject, hash);
1459 PUSH_SEND(ret, location, id_core_hash_merge_kwd,
INT2FIX(2));
1465 static_literal =
true;
1469 static_literal =
false;
1474 if (shareability == 0) {
1475 pm_compile_node(iseq, element, anchor,
false, scope_node);
1478 const pm_assoc_node_t *assoc = (
const pm_assoc_node_t *) element;
1479 pm_compile_shareable_constant_value(iseq, assoc->
key, shareability, path, ret, scope_node,
false);
1480 pm_compile_shareable_constant_value(iseq, assoc->
value, shareability, path, ret, scope_node,
false);
1483 if ((stack_length += 2) >= max_stack_length) FLUSH_CHUNK;
1486 case PM_ASSOC_SPLAT_NODE: {
1489 const pm_assoc_splat_node_t *assoc_splat = (
const pm_assoc_splat_node_t *) element;
1490 bool empty_hash = assoc_splat->
value != NULL && (
1491 (PM_NODE_TYPE_P(assoc_splat->
value, PM_HASH_NODE) && ((
const pm_hash_node_t *) assoc_splat->
value)->elements.size == 0) ||
1492 PM_NODE_TYPE_P(assoc_splat->
value, PM_NIL_NODE)
1495 bool first_element = first_chunk && stack_length == 0;
1496 bool last_element = index == elements->
size - 1;
1497 bool only_element = first_element && last_element;
1500 if (only_element && argument) {
1507 PUSH_INSN(ret, location, putnil);
1509 else if (first_element) {
1512 PUSH_INSN1(ret, location, newhash,
INT2FIX(0));
1519 if (only_element && argument) {
1525 if (shareability == 0) {
1526 PM_COMPILE_NOT_POPPED(element);
1529 pm_compile_shareable_constant_value(iseq, element, shareability, path, ret, scope_node,
false);
1537 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
1539 if (first_element) {
1540 PUSH_INSN1(ret, location, newhash,
INT2FIX(0));
1543 PUSH_INSN(ret, location, swap);
1546 if (shareability == 0) {
1547 PM_COMPILE_NOT_POPPED(element);
1550 pm_compile_shareable_constant_value(iseq, element, shareability, path, ret, scope_node,
false);
1553 PUSH_SEND(ret, location, id_core_hash_merge_kwd,
INT2FIX(2));
1557 first_chunk =
false;
1558 static_literal =
false;
1562 RUBY_ASSERT(
"Invalid node type for hash" &&
false);
1571#define SPLATARRAY_FALSE 0
1572#define SPLATARRAY_TRUE 1
1573#define DUP_SINGLE_KW_SPLAT 2
1577pm_setup_args_core(
const pm_arguments_node_t *arguments_node,
const pm_node_t *block,
int *flags,
const bool has_regular_blockarg,
struct rb_callinfo_kwarg **kw_arg,
int *dup_rest, rb_iseq_t *iseq, LINK_ANCHOR *
const ret, pm_scope_node_t *scope_node,
const pm_node_location_t *node_location)
1582 bool has_splat =
false;
1583 bool has_keyword_splat =
false;
1585 if (arguments_node == NULL) {
1586 if (*flags & VM_CALL_FCALL) {
1587 *flags |= VM_CALL_VCALL;
1591 const pm_node_list_t *arguments = &arguments_node->
arguments;
1592 has_keyword_splat = PM_NODE_FLAG_P(arguments_node, PM_ARGUMENTS_NODE_FLAGS_CONTAINS_KEYWORD_SPLAT);
1596 int post_splat_counter = 0;
1597 const pm_node_t *argument;
1600 switch (PM_NODE_TYPE(argument)) {
1602 case PM_KEYWORD_HASH_NODE: {
1603 const pm_keyword_hash_node_t *keyword_arg = (
const pm_keyword_hash_node_t *) argument;
1604 const pm_node_list_t *elements = &keyword_arg->
elements;
1606 if (has_keyword_splat || has_splat) {
1607 *flags |= VM_CALL_KW_SPLAT;
1608 has_keyword_splat =
true;
1610 if (elements->
size > 1 || !(elements->
size == 1 && PM_NODE_TYPE_P(elements->
nodes[0], PM_ASSOC_SPLAT_NODE))) {
1614 *flags |= VM_CALL_KW_SPLAT_MUT;
1615 pm_compile_hash_elements(iseq, argument, elements, 0,
Qundef,
true, ret, scope_node);
1617 else if (*dup_rest & DUP_SINGLE_KW_SPLAT) {
1618 *flags |= VM_CALL_KW_SPLAT_MUT;
1619 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
1620 PUSH_INSN1(ret, location, newhash,
INT2FIX(0));
1621 pm_compile_hash_elements(iseq, argument, elements, 0,
Qundef,
true, ret, scope_node);
1622 PUSH_SEND(ret, location, id_core_hash_merge_kwd,
INT2FIX(2));
1625 pm_compile_hash_elements(iseq, argument, elements, 0,
Qundef,
true, ret, scope_node);
1631 if (PM_NODE_FLAG_P(keyword_arg, PM_KEYWORD_HASH_NODE_FLAGS_SYMBOL_KEYS)) {
1637 VALUE keyword_indices = rb_ary_new_capa(elements->
size);
1640 for (
size_t element_index = 0; element_index < elements->
size; element_index++) {
1641 const pm_assoc_node_t *assoc = (
const pm_assoc_node_t *) elements->
nodes[element_index];
1645 VALUE keyword = pm_static_literal_value(iseq, assoc->key, scope_node);
1646 VALUE stored_index = rb_hash_aref(stored_indices, keyword);
1651 if (!
NIL_P(stored_index)) {
1659 rb_hash_aset(stored_indices, keyword,
ULONG2NUM(element_index));
1660 rb_ary_store(keyword_indices, (
long) element_index,
Qtrue);
1665 *flags |= VM_CALL_KWARG;
1667 VALUE *keywords = (*kw_arg)->keywords;
1668 (*kw_arg)->references = 0;
1669 (*kw_arg)->keyword_len = (int) size;
1671 size_t keyword_index = 0;
1672 for (
size_t element_index = 0; element_index < elements->
size; element_index++) {
1673 const pm_assoc_node_t *assoc = (
const pm_assoc_node_t *) elements->
nodes[element_index];
1676 if (rb_ary_entry(keyword_indices, (
long) element_index) ==
Qtrue) {
1677 keywords[keyword_index++] = pm_static_literal_value(iseq, assoc->key, scope_node);
1681 PM_COMPILE(assoc->value);
1690 *flags |= VM_CALL_KW_SPLAT;
1692 size_t size = elements->
size;
1697 *flags |= VM_CALL_KW_SPLAT_MUT;
1700 for (
size_t element_index = 0; element_index < size; element_index++) {
1701 const pm_assoc_node_t *assoc = (
const pm_assoc_node_t *) elements->
nodes[element_index];
1702 PM_COMPILE_NOT_POPPED(assoc->key);
1703 PM_COMPILE_NOT_POPPED(assoc->value);
1706 PUSH_INSN1(ret, location, newhash,
INT2FIX(size * 2));
1711 case PM_SPLAT_NODE: {
1712 *flags |= VM_CALL_ARGS_SPLAT;
1713 const pm_splat_node_t *splat_node = (
const pm_splat_node_t *) argument;
1716 PM_COMPILE_NOT_POPPED(splat_node->
expression);
1719 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, PM_CONSTANT_MULT, 0);
1720 PUSH_GETLOCAL(ret, location, index.index, index.level);
1723 bool first_splat = !has_splat;
1731 if (index + 1 < arguments->
size || has_regular_blockarg) {
1732 PUSH_INSN1(ret, location, splatarray, (*dup_rest & SPLATARRAY_TRUE) ?
Qtrue :
Qfalse);
1733 if (*dup_rest & SPLATARRAY_TRUE) *dup_rest &= ~SPLATARRAY_TRUE;
1741 PUSH_INSN1(ret, location, splatarray,
Qfalse);
1751 PUSH_INSN(ret, location, concattoarray);
1755 post_splat_counter = 0;
1759 case PM_FORWARDING_ARGUMENTS_NODE: {
1760 iseq_set_use_block(ISEQ_BODY(iseq)->local_iseq);
1762 if (ISEQ_BODY(ISEQ_BODY(iseq)->local_iseq)->param.flags.forwardable) {
1763 *flags |= VM_CALL_FORWARDING;
1765 pm_local_index_t mult_local = pm_lookup_local_index(iseq, scope_node, PM_CONSTANT_DOT3, 0);
1766 PUSH_GETLOCAL(ret, location, mult_local.index, mult_local.level);
1773 *flags |= VM_CALL_ARGS_SPLAT | VM_CALL_ARGS_SPLAT_MUT | VM_CALL_ARGS_BLOCKARG | VM_CALL_KW_SPLAT;
1780 pm_local_index_t mult_local = pm_lookup_local_index(iseq, scope_node, PM_CONSTANT_MULT, 0);
1781 PUSH_GETLOCAL(ret, location, mult_local.index, mult_local.level);
1782 PUSH_INSN1(ret, location, splatarray,
Qtrue);
1785 pm_local_index_t pow_local = pm_lookup_local_index(iseq, scope_node, PM_CONSTANT_POW, 0);
1786 PUSH_GETLOCAL(ret, location, pow_local.index, pow_local.level);
1789 pm_local_index_t and_local = pm_lookup_local_index(iseq, scope_node, PM_CONSTANT_AND, 0);
1790 PUSH_INSN2(ret, location, getblockparamproxy,
INT2FIX(and_local.index + VM_ENV_DATA_SIZE - 1),
INT2FIX(and_local.level));
1791 PUSH_INSN(ret, location, splatkw);
1796 post_splat_counter++;
1797 PM_COMPILE_NOT_POPPED(argument);
1817 if (index == arguments->
size - 1) {
1819 PUSH_INSN1(ret, location, pushtoarray,
INT2FIX(post_splat_counter));
1822 pm_node_t *next_arg = arguments->
nodes[index + 1];
1824 switch (PM_NODE_TYPE(next_arg)) {
1826 case PM_KEYWORD_HASH_NODE: {
1827 PUSH_INSN1(ret, location, newarray,
INT2FIX(post_splat_counter));
1828 PUSH_INSN(ret, location, concatarray);
1831 case PM_SPLAT_NODE: {
1832 PUSH_INSN1(ret, location, newarray,
INT2FIX(post_splat_counter));
1833 PUSH_INSN(ret, location, concatarray);
1849 if (has_splat) orig_argc++;
1850 if (has_keyword_splat) orig_argc++;
1859pm_setup_args_dup_rest_p(
const pm_node_t *node)
1861 switch (PM_NODE_TYPE(node)) {
1862 case PM_BACK_REFERENCE_READ_NODE:
1863 case PM_CLASS_VARIABLE_READ_NODE:
1864 case PM_CONSTANT_READ_NODE:
1867 case PM_GLOBAL_VARIABLE_READ_NODE:
1868 case PM_IMAGINARY_NODE:
1869 case PM_INSTANCE_VARIABLE_READ_NODE:
1870 case PM_INTEGER_NODE:
1871 case PM_LAMBDA_NODE:
1872 case PM_LOCAL_VARIABLE_READ_NODE:
1874 case PM_NUMBERED_REFERENCE_READ_NODE:
1875 case PM_RATIONAL_NODE:
1876 case PM_REGULAR_EXPRESSION_NODE:
1878 case PM_STRING_NODE:
1879 case PM_SYMBOL_NODE:
1882 case PM_CONSTANT_PATH_NODE: {
1883 const pm_constant_path_node_t *cast = (
const pm_constant_path_node_t *) node;
1884 if (cast->
parent != NULL) {
1885 return pm_setup_args_dup_rest_p(cast->
parent);
1889 case PM_IMPLICIT_NODE:
1890 return pm_setup_args_dup_rest_p(((
const pm_implicit_node_t *) node)->value);
1900pm_setup_args(
const pm_arguments_node_t *arguments_node,
const pm_node_t *block,
int *flags,
struct rb_callinfo_kwarg **kw_arg, rb_iseq_t *iseq, LINK_ANCHOR *
const ret, pm_scope_node_t *scope_node,
const pm_node_location_t *node_location)
1902 int dup_rest = SPLATARRAY_TRUE;
1904 const pm_node_list_t *arguments;
1905 size_t arguments_size;
1910 arguments_node != NULL &&
1911 (arguments = &arguments_node->
arguments, arguments_size = arguments->
size) >= 2 &&
1912 PM_NODE_FLAG_P(arguments_node, PM_ARGUMENTS_NODE_FLAGS_CONTAINS_SPLAT) &&
1913 !PM_NODE_FLAG_P(arguments_node, PM_ARGUMENTS_NODE_FLAGS_CONTAINS_MULTIPLE_SPLATS) &&
1914 PM_NODE_TYPE_P(arguments->
nodes[arguments_size - 1], PM_KEYWORD_HASH_NODE)
1919 dup_rest = SPLATARRAY_FALSE;
1921 const pm_keyword_hash_node_t *keyword_hash = (
const pm_keyword_hash_node_t *) arguments->
nodes[arguments_size - 1];
1922 const pm_node_list_t *elements = &keyword_hash->elements;
1924 for (
size_t index = 0; dup_rest == SPLATARRAY_FALSE && index < elements->
size; index++) {
1925 const pm_node_t *element = elements->
nodes[index];
1927 switch (PM_NODE_TYPE(element)) {
1928 case PM_ASSOC_NODE: {
1929 const pm_assoc_node_t *assoc = (
const pm_assoc_node_t *) element;
1930 if (pm_setup_args_dup_rest_p(assoc->
key) || pm_setup_args_dup_rest_p(assoc->
value)) dup_rest = SPLATARRAY_TRUE;
1933 case PM_ASSOC_SPLAT_NODE: {
1934 const pm_assoc_splat_node_t *assoc = (
const pm_assoc_splat_node_t *) element;
1935 if (assoc->
value != NULL && pm_setup_args_dup_rest_p(assoc->
value)) dup_rest = SPLATARRAY_TRUE;
1944 int initial_dup_rest = dup_rest;
1947 if (block && PM_NODE_TYPE_P(block, PM_BLOCK_ARGUMENT_NODE)) {
1951 bool regular_block_arg =
true;
1952 const pm_node_t *block_expr = ((
const pm_block_argument_node_t *)block)->expression;
1954 if (block_expr && pm_setup_args_dup_rest_p(block_expr)) {
1955 dup_rest = SPLATARRAY_TRUE | DUP_SINGLE_KW_SPLAT;
1956 initial_dup_rest = dup_rest;
1959 DECL_ANCHOR(block_arg);
1960 pm_compile_node(iseq, block, block_arg,
false, scope_node);
1962 *flags |= VM_CALL_ARGS_BLOCKARG;
1964 if (LIST_INSN_SIZE_ONE(block_arg)) {
1965 LINK_ELEMENT *elem = FIRST_ELEMENT(block_arg);
1966 if (IS_INSN(elem)) {
1967 INSN *iobj = (INSN *) elem;
1968 if (iobj->insn_id == BIN(getblockparam)) {
1969 iobj->insn_id = BIN(getblockparamproxy);
1976 regular_block_arg =
false;
1980 argc = pm_setup_args_core(arguments_node, block, flags, regular_block_arg, kw_arg, &dup_rest, iseq, ret, scope_node, node_location);
1981 PUSH_SEQ(ret, block_arg);
1984 argc = pm_setup_args_core(arguments_node, block, flags,
false, kw_arg, &dup_rest, iseq, ret, scope_node, node_location);
1991 if (*flags & VM_CALL_ARGS_SPLAT && dup_rest != initial_dup_rest) {
1992 *flags |= VM_CALL_ARGS_SPLAT_MUT;
2009pm_compile_index_operator_write_node(rb_iseq_t *iseq,
const pm_index_operator_write_node_t *node,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
2012 if (!popped) PUSH_INSN(ret, location, putnil);
2014 PM_COMPILE_NOT_POPPED(node->
receiver);
2016 int boff = (node->
block == NULL ? 0 : 1);
2017 int flag = PM_NODE_TYPE_P(node->
receiver, PM_SELF_NODE) ? VM_CALL_FCALL : 0;
2019 int argc = pm_setup_args(node->
arguments, (
const pm_node_t *) node->
block, &flag, &keywords, iseq, ret, scope_node, node_location);
2021 if ((argc > 0 || boff) && (flag & VM_CALL_KW_SPLAT)) {
2023 PUSH_INSN(ret, location, splatkw);
2026 PUSH_INSN(ret, location, dup);
2027 PUSH_INSN(ret, location, splatkw);
2028 PUSH_INSN(ret, location, pop);
2032 int dup_argn = argc + 1 + boff;
2033 int keyword_len = 0;
2036 keyword_len = keywords->keyword_len;
2037 dup_argn += keyword_len;
2040 PUSH_INSN1(ret, location, dupn,
INT2FIX(dup_argn));
2041 PUSH_SEND_R(ret, location, idAREF,
INT2FIX(argc), NULL,
INT2FIX(flag & ~(VM_CALL_ARGS_SPLAT_MUT | VM_CALL_KW_SPLAT_MUT)), keywords);
2042 PM_COMPILE_NOT_POPPED(node->
value);
2045 PUSH_SEND(ret, location, id_operator,
INT2FIX(1));
2048 PUSH_INSN1(ret, location, setn,
INT2FIX(dup_argn + 1));
2050 if (flag & VM_CALL_ARGS_SPLAT) {
2051 if (flag & VM_CALL_KW_SPLAT) {
2052 PUSH_INSN1(ret, location, topn,
INT2FIX(2 + boff));
2054 if (!(flag & VM_CALL_ARGS_SPLAT_MUT)) {
2055 PUSH_INSN1(ret, location, splatarray,
Qtrue);
2056 flag |= VM_CALL_ARGS_SPLAT_MUT;
2059 PUSH_INSN(ret, location, swap);
2060 PUSH_INSN1(ret, location, pushtoarray,
INT2FIX(1));
2061 PUSH_INSN1(ret, location, setn,
INT2FIX(2 + boff));
2062 PUSH_INSN(ret, location, pop);
2066 PUSH_INSN1(ret, location, dupn,
INT2FIX(3));
2067 PUSH_INSN(ret, location, swap);
2068 PUSH_INSN(ret, location, pop);
2070 if (!(flag & VM_CALL_ARGS_SPLAT_MUT)) {
2071 PUSH_INSN(ret, location, swap);
2072 PUSH_INSN1(ret, location, splatarray,
Qtrue);
2073 PUSH_INSN(ret, location, swap);
2074 flag |= VM_CALL_ARGS_SPLAT_MUT;
2076 PUSH_INSN1(ret, location, pushtoarray,
INT2FIX(1));
2078 PUSH_INSN1(ret, location, setn,
INT2FIX(3));
2079 PUSH_INSN(ret, location, pop);
2080 PUSH_INSN(ret, location, pop);
2084 PUSH_SEND_R(ret, location, idASET,
INT2FIX(argc), NULL,
INT2FIX(flag), keywords);
2086 else if (flag & VM_CALL_KW_SPLAT) {
2088 PUSH_INSN1(ret, location, topn,
INT2FIX(2));
2089 PUSH_INSN(ret, location, swap);
2090 PUSH_INSN1(ret, location, setn,
INT2FIX(3));
2091 PUSH_INSN(ret, location, pop);
2093 PUSH_INSN(ret, location, swap);
2094 PUSH_SEND_R(ret, location, idASET,
INT2FIX(argc + 1), NULL,
INT2FIX(flag), keywords);
2096 else if (keyword_len) {
2097 PUSH_INSN(ret, location, dup);
2098 PUSH_INSN1(ret, location, opt_reverse,
INT2FIX(keyword_len + boff + 2));
2099 PUSH_INSN1(ret, location, opt_reverse,
INT2FIX(keyword_len + boff + 1));
2100 PUSH_INSN(ret, location, pop);
2101 PUSH_SEND_R(ret, location, idASET,
INT2FIX(argc + 1), NULL,
INT2FIX(flag), keywords);
2105 PUSH_INSN(ret, location, swap);
2107 PUSH_SEND_R(ret, location, idASET,
INT2FIX(argc + 1), NULL,
INT2FIX(flag), keywords);
2110 PUSH_INSN(ret, location, pop);
2126pm_compile_index_control_flow_write_node(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_t *receiver,
const pm_arguments_node_t *arguments,
const pm_block_argument_node_t *block,
const pm_node_t *value,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
2129 if (!popped) PUSH_INSN(ret, location, putnil);
2130 PM_COMPILE_NOT_POPPED(receiver);
2132 int boff = (block == NULL ? 0 : 1);
2133 int flag = PM_NODE_TYPE_P(receiver, PM_SELF_NODE) ? VM_CALL_FCALL : 0;
2135 int argc = pm_setup_args(arguments, (
const pm_node_t *) block, &flag, &keywords, iseq, ret, scope_node, node_location);
2137 if ((argc > 0 || boff) && (flag & VM_CALL_KW_SPLAT)) {
2139 PUSH_INSN(ret, location, splatkw);
2142 PUSH_INSN(ret, location, dup);
2143 PUSH_INSN(ret, location, splatkw);
2144 PUSH_INSN(ret, location, pop);
2148 int dup_argn = argc + 1 + boff;
2149 int keyword_len = 0;
2152 keyword_len = keywords->keyword_len;
2153 dup_argn += keyword_len;
2156 PUSH_INSN1(ret, location, dupn,
INT2FIX(dup_argn));
2157 PUSH_SEND_R(ret, location, idAREF,
INT2FIX(argc), NULL,
INT2FIX(flag & ~(VM_CALL_ARGS_SPLAT_MUT | VM_CALL_KW_SPLAT_MUT)), keywords);
2159 LABEL *label = NEW_LABEL(location.
line);
2160 LABEL *lfin = NEW_LABEL(location.
line);
2162 PUSH_INSN(ret, location, dup);
2163 if (PM_NODE_TYPE_P(node, PM_INDEX_AND_WRITE_NODE)) {
2164 PUSH_INSNL(ret, location, branchunless, label);
2167 PUSH_INSNL(ret, location, branchif, label);
2170 PUSH_INSN(ret, location, pop);
2171 PM_COMPILE_NOT_POPPED(value);
2174 PUSH_INSN1(ret, location, setn,
INT2FIX(dup_argn + 1));
2177 if (flag & VM_CALL_ARGS_SPLAT) {
2178 if (flag & VM_CALL_KW_SPLAT) {
2179 PUSH_INSN1(ret, location, topn,
INT2FIX(2 + boff));
2180 if (!(flag & VM_CALL_ARGS_SPLAT_MUT)) {
2181 PUSH_INSN1(ret, location, splatarray,
Qtrue);
2182 flag |= VM_CALL_ARGS_SPLAT_MUT;
2185 PUSH_INSN(ret, location, swap);
2186 PUSH_INSN1(ret, location, pushtoarray,
INT2FIX(1));
2187 PUSH_INSN1(ret, location, setn,
INT2FIX(2 + boff));
2188 PUSH_INSN(ret, location, pop);
2192 PUSH_INSN1(ret, location, dupn,
INT2FIX(3));
2193 PUSH_INSN(ret, location, swap);
2194 PUSH_INSN(ret, location, pop);
2196 if (!(flag & VM_CALL_ARGS_SPLAT_MUT)) {
2197 PUSH_INSN(ret, location, swap);
2198 PUSH_INSN1(ret, location, splatarray,
Qtrue);
2199 PUSH_INSN(ret, location, swap);
2200 flag |= VM_CALL_ARGS_SPLAT_MUT;
2202 PUSH_INSN1(ret, location, pushtoarray,
INT2FIX(1));
2204 PUSH_INSN1(ret, location, setn,
INT2FIX(3));
2205 PUSH_INSN(ret, location, pop);
2206 PUSH_INSN(ret, location, pop);
2210 PUSH_SEND_R(ret, location, idASET,
INT2FIX(argc), NULL,
INT2FIX(flag), keywords);
2212 else if (flag & VM_CALL_KW_SPLAT) {
2214 PUSH_INSN1(ret, location, topn,
INT2FIX(2));
2215 PUSH_INSN(ret, location, swap);
2216 PUSH_INSN1(ret, location, setn,
INT2FIX(3));
2217 PUSH_INSN(ret, location, pop);
2220 PUSH_INSN(ret, location, swap);
2221 PUSH_SEND_R(ret, location, idASET,
INT2FIX(argc + 1), NULL,
INT2FIX(flag), keywords);
2223 else if (keyword_len) {
2224 PUSH_INSN1(ret, location, opt_reverse,
INT2FIX(keyword_len + boff + 1));
2225 PUSH_INSN1(ret, location, opt_reverse,
INT2FIX(keyword_len + boff + 0));
2226 PUSH_SEND_R(ret, location, idASET,
INT2FIX(argc + 1), NULL,
INT2FIX(flag), keywords);
2230 PUSH_INSN(ret, location, swap);
2232 PUSH_SEND_R(ret, location, idASET,
INT2FIX(argc + 1), NULL,
INT2FIX(flag), keywords);
2235 PUSH_INSN(ret, location, pop);
2236 PUSH_INSNL(ret, location, jump, lfin);
2237 PUSH_LABEL(ret, label);
2239 PUSH_INSN1(ret, location, setn,
INT2FIX(dup_argn + 1));
2241 PUSH_INSN1(ret, location, adjuststack,
INT2FIX(dup_argn + 1));
2242 PUSH_LABEL(ret, lfin);
2251#define PM_PATTERN_BASE_INDEX_OFFSET_DECONSTRUCTED_CACHE 0
2252#define PM_PATTERN_BASE_INDEX_OFFSET_ERROR_STRING 1
2253#define PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_P 2
2254#define PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_MATCHEE 3
2255#define PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_KEY 4
2260static int pm_compile_pattern(rb_iseq_t *iseq, pm_scope_node_t *scope_node,
const pm_node_t *node, LINK_ANCHOR *
const ret, LABEL *matched_label, LABEL *unmatched_label,
bool in_single_pattern,
bool in_alternation_pattern,
bool use_deconstructed_cache,
unsigned int base_index);
2267pm_compile_pattern_generic_error(rb_iseq_t *iseq, pm_scope_node_t *scope_node,
const pm_node_t *node, LINK_ANCHOR *
const ret,
VALUE message,
unsigned int base_index)
2269 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
2270 LABEL *match_succeeded_label = NEW_LABEL(location.
line);
2272 PUSH_INSN(ret, location, dup);
2273 PUSH_INSNL(ret, location, branchif, match_succeeded_label);
2275 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
2276 PUSH_INSN1(ret, location, putobject, message);
2277 PUSH_INSN1(ret, location, topn,
INT2FIX(3));
2278 PUSH_SEND(ret, location, id_core_sprintf,
INT2FIX(2));
2279 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_ERROR_STRING + 1));
2281 PUSH_INSN1(ret, location, putobject,
Qfalse);
2282 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_P + 2));
2284 PUSH_INSN(ret, location, pop);
2285 PUSH_INSN(ret, location, pop);
2286 PUSH_LABEL(ret, match_succeeded_label);
2297pm_compile_pattern_length_error(rb_iseq_t *iseq, pm_scope_node_t *scope_node,
const pm_node_t *node, LINK_ANCHOR *
const ret,
VALUE message,
VALUE length,
unsigned int base_index)
2299 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
2300 LABEL *match_succeeded_label = NEW_LABEL(location.
line);
2302 PUSH_INSN(ret, location, dup);
2303 PUSH_INSNL(ret, location, branchif, match_succeeded_label);
2305 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
2306 PUSH_INSN1(ret, location, putobject, message);
2307 PUSH_INSN1(ret, location, topn,
INT2FIX(3));
2308 PUSH_INSN(ret, location, dup);
2309 PUSH_SEND(ret, location, idLength,
INT2FIX(0));
2310 PUSH_INSN1(ret, location, putobject, length);
2311 PUSH_SEND(ret, location, id_core_sprintf,
INT2FIX(4));
2312 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_ERROR_STRING + 1));
2314 PUSH_INSN1(ret, location, putobject,
Qfalse);
2315 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_P + 2));
2317 PUSH_INSN(ret, location, pop);
2318 PUSH_INSN(ret, location, pop);
2319 PUSH_LABEL(ret, match_succeeded_label);
2330pm_compile_pattern_eqq_error(rb_iseq_t *iseq, pm_scope_node_t *scope_node,
const pm_node_t *node, LINK_ANCHOR *
const ret,
unsigned int base_index)
2332 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
2333 LABEL *match_succeeded_label = NEW_LABEL(location.
line);
2335 PUSH_INSN(ret, location, dup);
2336 PUSH_INSNL(ret, location, branchif, match_succeeded_label);
2337 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
2339 VALUE operand = rb_fstring_lit(
"%p === %p does not return true");
2340 PUSH_INSN1(ret, location, putobject, operand);
2342 PUSH_INSN1(ret, location, topn,
INT2FIX(3));
2343 PUSH_INSN1(ret, location, topn,
INT2FIX(5));
2344 PUSH_SEND(ret, location, id_core_sprintf,
INT2FIX(3));
2345 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_ERROR_STRING + 1));
2346 PUSH_INSN1(ret, location, putobject,
Qfalse);
2347 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_P + 2));
2348 PUSH_INSN(ret, location, pop);
2349 PUSH_INSN(ret, location, pop);
2351 PUSH_LABEL(ret, match_succeeded_label);
2352 PUSH_INSN1(ret, location, setn,
INT2FIX(2));
2353 PUSH_INSN(ret, location, pop);
2354 PUSH_INSN(ret, location, pop);
2366pm_compile_pattern_match(rb_iseq_t *iseq, pm_scope_node_t *scope_node,
const pm_node_t *node, LINK_ANCHOR *
const ret, LABEL *unmatched_label,
bool in_single_pattern,
bool in_alternation_pattern,
bool use_deconstructed_cache,
unsigned int base_index)
2368 LABEL *matched_label = NEW_LABEL(pm_node_line_number(scope_node->parser, node));
2369 CHECK(pm_compile_pattern(iseq, scope_node, node, ret, matched_label, unmatched_label, in_single_pattern, in_alternation_pattern, use_deconstructed_cache, base_index));
2370 PUSH_LABEL(ret, matched_label);
2380pm_compile_pattern_deconstruct(rb_iseq_t *iseq, pm_scope_node_t *scope_node,
const pm_node_t *node, LINK_ANCHOR *
const ret, LABEL *deconstruct_label, LABEL *match_failed_label, LABEL *deconstructed_label, LABEL *type_error_label,
bool in_single_pattern,
bool use_deconstructed_cache,
unsigned int base_index)
2382 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
2384 if (use_deconstructed_cache) {
2385 PUSH_INSN1(ret, location, topn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_DECONSTRUCTED_CACHE));
2386 PUSH_INSNL(ret, location, branchnil, deconstruct_label);
2388 PUSH_INSN1(ret, location, topn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_DECONSTRUCTED_CACHE));
2389 PUSH_INSNL(ret, location, branchunless, match_failed_label);
2391 PUSH_INSN(ret, location, pop);
2392 PUSH_INSN1(ret, location, topn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_DECONSTRUCTED_CACHE - 1));
2393 PUSH_INSNL(ret, location, jump, deconstructed_label);
2396 PUSH_INSNL(ret, location, jump, deconstruct_label);
2399 PUSH_LABEL(ret, deconstruct_label);
2400 PUSH_INSN(ret, location, dup);
2403 PUSH_INSN1(ret, location, putobject, operand);
2404 PUSH_SEND(ret, location, idRespond_to,
INT2FIX(1));
2406 if (use_deconstructed_cache) {
2407 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_DECONSTRUCTED_CACHE + 1));
2410 if (in_single_pattern) {
2411 CHECK(pm_compile_pattern_generic_error(iseq, scope_node, node, ret, rb_fstring_lit(
"%p does not respond to #deconstruct"), base_index + 1));
2414 PUSH_INSNL(ret, location, branchunless, match_failed_label);
2415 PUSH_SEND(ret, location, rb_intern(
"deconstruct"),
INT2FIX(0));
2417 if (use_deconstructed_cache) {
2418 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_DECONSTRUCTED_CACHE));
2421 PUSH_INSN(ret, location, dup);
2423 PUSH_INSNL(ret, location, branchunless, type_error_label);
2424 PUSH_LABEL(ret, deconstructed_label);
2434pm_compile_pattern_constant(rb_iseq_t *iseq, pm_scope_node_t *scope_node,
const pm_node_t *node, LINK_ANCHOR *
const ret, LABEL *match_failed_label,
bool in_single_pattern,
unsigned int base_index)
2436 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
2438 PUSH_INSN(ret, location, dup);
2439 PM_COMPILE_NOT_POPPED(node);
2441 if (in_single_pattern) {
2442 PUSH_INSN1(ret, location, dupn,
INT2FIX(2));
2444 PUSH_INSN1(ret, location, checkmatch,
INT2FIX(VM_CHECKMATCH_TYPE_CASE));
2445 if (in_single_pattern) {
2446 CHECK(pm_compile_pattern_eqq_error(iseq, scope_node, node, ret, base_index + 3));
2448 PUSH_INSNL(ret, location, branchunless, match_failed_label);
2457pm_compile_pattern_error_handler(rb_iseq_t *iseq,
const pm_scope_node_t *scope_node,
const pm_node_t *node, LINK_ANCHOR *
const ret, LABEL *done_label,
bool popped)
2459 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
2460 LABEL *key_error_label = NEW_LABEL(location.
line);
2461 LABEL *cleanup_label = NEW_LABEL(location.
line);
2464 kw_arg->references = 0;
2465 kw_arg->keyword_len = 2;
2466 kw_arg->keywords[0] =
ID2SYM(rb_intern(
"matchee"));
2467 kw_arg->keywords[1] =
ID2SYM(rb_intern(
"key"));
2469 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
2470 PUSH_INSN1(ret, location, topn,
INT2FIX(PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_P + 2));
2471 PUSH_INSNL(ret, location, branchif, key_error_label);
2474 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
2477 VALUE operand = rb_fstring_lit(
"%p: %s");
2478 PUSH_INSN1(ret, location, putobject, operand);
2481 PUSH_INSN1(ret, location, topn,
INT2FIX(4));
2482 PUSH_INSN1(ret, location, topn,
INT2FIX(PM_PATTERN_BASE_INDEX_OFFSET_ERROR_STRING + 6));
2483 PUSH_SEND(ret, location, id_core_sprintf,
INT2FIX(3));
2484 PUSH_SEND(ret, location, id_core_raise,
INT2FIX(2));
2485 PUSH_INSNL(ret, location, jump, cleanup_label);
2487 PUSH_LABEL(ret, key_error_label);
2489 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
2492 VALUE operand = rb_fstring_lit(
"%p: %s");
2493 PUSH_INSN1(ret, location, putobject, operand);
2496 PUSH_INSN1(ret, location, topn,
INT2FIX(4));
2497 PUSH_INSN1(ret, location, topn,
INT2FIX(PM_PATTERN_BASE_INDEX_OFFSET_ERROR_STRING + 6));
2498 PUSH_SEND(ret, location, id_core_sprintf,
INT2FIX(3));
2499 PUSH_INSN1(ret, location, topn,
INT2FIX(PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_MATCHEE + 4));
2500 PUSH_INSN1(ret, location, topn,
INT2FIX(PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_KEY + 5));
2501 PUSH_SEND_R(ret, location, rb_intern(
"new"),
INT2FIX(1), NULL,
INT2FIX(VM_CALL_KWARG), kw_arg);
2502 PUSH_SEND(ret, location, id_core_raise,
INT2FIX(1));
2503 PUSH_LABEL(ret, cleanup_label);
2505 PUSH_INSN1(ret, location, adjuststack,
INT2FIX(7));
2506 if (!popped) PUSH_INSN(ret, location, putnil);
2507 PUSH_INSNL(ret, location, jump, done_label);
2508 PUSH_INSN1(ret, location, dupn,
INT2FIX(5));
2509 if (popped) PUSH_INSN(ret, location, putnil);
2516pm_compile_pattern(rb_iseq_t *iseq, pm_scope_node_t *scope_node,
const pm_node_t *node, LINK_ANCHOR *
const ret, LABEL *matched_label, LABEL *unmatched_label,
bool in_single_pattern,
bool in_alternation_pattern,
bool use_deconstructed_cache,
unsigned int base_index)
2518 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
2520 switch (PM_NODE_TYPE(node)) {
2521 case PM_ARRAY_PATTERN_NODE: {
2530 const pm_array_pattern_node_t *cast = (
const pm_array_pattern_node_t *) node;
2533 const size_t posts_size = cast->
posts.
size;
2534 const size_t minimum_size = requireds_size + posts_size;
2536 bool rest_named =
false;
2537 bool use_rest_size =
false;
2539 if (cast->
rest != NULL) {
2540 rest_named = (PM_NODE_TYPE_P(cast->
rest, PM_SPLAT_NODE) && ((
const pm_splat_node_t *) cast->
rest)->expression != NULL);
2541 use_rest_size = (rest_named || (!rest_named && posts_size > 0));
2544 LABEL *match_failed_label = NEW_LABEL(location.
line);
2545 LABEL *type_error_label = NEW_LABEL(location.
line);
2546 LABEL *deconstruct_label = NEW_LABEL(location.
line);
2547 LABEL *deconstructed_label = NEW_LABEL(location.
line);
2549 if (use_rest_size) {
2550 PUSH_INSN1(ret, location, putobject,
INT2FIX(0));
2551 PUSH_INSN(ret, location, swap);
2556 CHECK(pm_compile_pattern_constant(iseq, scope_node, cast->
constant, ret, match_failed_label, in_single_pattern, base_index));
2559 CHECK(pm_compile_pattern_deconstruct(iseq, scope_node, node, ret, deconstruct_label, match_failed_label, deconstructed_label, type_error_label, in_single_pattern, use_deconstructed_cache, base_index));
2561 PUSH_INSN(ret, location, dup);
2562 PUSH_SEND(ret, location, idLength,
INT2FIX(0));
2563 PUSH_INSN1(ret, location, putobject,
INT2FIX(minimum_size));
2564 PUSH_SEND(ret, location, cast->
rest == NULL ? idEq : idGE,
INT2FIX(1));
2565 if (in_single_pattern) {
2566 VALUE message = cast->
rest == NULL ? rb_fstring_lit(
"%p length mismatch (given %p, expected %p)") : rb_fstring_lit(
"%p length mismatch (given %p, expected %p+)");
2567 CHECK(pm_compile_pattern_length_error(iseq, scope_node, node, ret, message,
INT2FIX(minimum_size), base_index + 1));
2569 PUSH_INSNL(ret, location, branchunless, match_failed_label);
2571 for (
size_t index = 0; index < requireds_size; index++) {
2573 PUSH_INSN(ret, location, dup);
2574 PUSH_INSN1(ret, location, putobject,
INT2FIX(index));
2575 PUSH_SEND(ret, location, idAREF,
INT2FIX(1));
2576 CHECK(pm_compile_pattern_match(iseq, scope_node, required, ret, match_failed_label, in_single_pattern, in_alternation_pattern,
false, base_index + 1));
2579 if (cast->
rest != NULL) {
2581 PUSH_INSN(ret, location, dup);
2582 PUSH_INSN1(ret, location, putobject,
INT2FIX(requireds_size));
2583 PUSH_INSN1(ret, location, topn,
INT2FIX(1));
2584 PUSH_SEND(ret, location, idLength,
INT2FIX(0));
2585 PUSH_INSN1(ret, location, putobject,
INT2FIX(minimum_size));
2586 PUSH_SEND(ret, location, idMINUS,
INT2FIX(1));
2587 PUSH_INSN1(ret, location, setn,
INT2FIX(4));
2588 PUSH_SEND(ret, location, idAREF,
INT2FIX(2));
2589 CHECK(pm_compile_pattern_match(iseq, scope_node, ((
const pm_splat_node_t *) cast->
rest)->expression, ret, match_failed_label, in_single_pattern, in_alternation_pattern,
false, base_index + 1));
2591 else if (posts_size > 0) {
2592 PUSH_INSN(ret, location, dup);
2593 PUSH_SEND(ret, location, idLength,
INT2FIX(0));
2594 PUSH_INSN1(ret, location, putobject,
INT2FIX(minimum_size));
2595 PUSH_SEND(ret, location, idMINUS,
INT2FIX(1));
2596 PUSH_INSN1(ret, location, setn,
INT2FIX(2));
2597 PUSH_INSN(ret, location, pop);
2601 for (
size_t index = 0; index < posts_size; index++) {
2602 const pm_node_t *post = cast->
posts.
nodes[index];
2603 PUSH_INSN(ret, location, dup);
2605 PUSH_INSN1(ret, location, putobject,
INT2FIX(requireds_size + index));
2606 PUSH_INSN1(ret, location, topn,
INT2FIX(3));
2607 PUSH_SEND(ret, location, idPLUS,
INT2FIX(1));
2608 PUSH_SEND(ret, location, idAREF,
INT2FIX(1));
2609 CHECK(pm_compile_pattern_match(iseq, scope_node, post, ret, match_failed_label, in_single_pattern, in_alternation_pattern,
false, base_index + 1));
2612 PUSH_INSN(ret, location, pop);
2613 if (use_rest_size) {
2614 PUSH_INSN(ret, location, pop);
2617 PUSH_INSNL(ret, location, jump, matched_label);
2618 PUSH_INSN(ret, location, putnil);
2619 if (use_rest_size) {
2620 PUSH_INSN(ret, location, putnil);
2623 PUSH_LABEL(ret, type_error_label);
2624 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
2628 VALUE operand = rb_fstring_lit(
"deconstruct must return Array");
2629 PUSH_INSN1(ret, location, putobject, operand);
2632 PUSH_SEND(ret, location, id_core_raise,
INT2FIX(2));
2633 PUSH_INSN(ret, location, pop);
2635 PUSH_LABEL(ret, match_failed_label);
2636 PUSH_INSN(ret, location, pop);
2637 if (use_rest_size) {
2638 PUSH_INSN(ret, location, pop);
2641 PUSH_INSNL(ret, location, jump, unmatched_label);
2644 case PM_FIND_PATTERN_NODE: {
2653 const pm_find_pattern_node_t *cast = (
const pm_find_pattern_node_t *) node;
2656 LABEL *match_failed_label = NEW_LABEL(location.
line);
2657 LABEL *type_error_label = NEW_LABEL(location.
line);
2658 LABEL *deconstruct_label = NEW_LABEL(location.
line);
2659 LABEL *deconstructed_label = NEW_LABEL(location.
line);
2662 CHECK(pm_compile_pattern_constant(iseq, scope_node, cast->
constant, ret, match_failed_label, in_single_pattern, base_index));
2665 CHECK(pm_compile_pattern_deconstruct(iseq, scope_node, node, ret, deconstruct_label, match_failed_label, deconstructed_label, type_error_label, in_single_pattern, use_deconstructed_cache, base_index));
2667 PUSH_INSN(ret, location, dup);
2668 PUSH_SEND(ret, location, idLength,
INT2FIX(0));
2669 PUSH_INSN1(ret, location, putobject,
INT2FIX(size));
2670 PUSH_SEND(ret, location, idGE,
INT2FIX(1));
2671 if (in_single_pattern) {
2672 CHECK(pm_compile_pattern_length_error(iseq, scope_node, node, ret, rb_fstring_lit(
"%p length mismatch (given %p, expected %p+)"),
INT2FIX(size), base_index + 1));
2674 PUSH_INSNL(ret, location, branchunless, match_failed_label);
2677 LABEL *while_begin_label = NEW_LABEL(location.
line);
2678 LABEL *next_loop_label = NEW_LABEL(location.
line);
2679 LABEL *find_succeeded_label = NEW_LABEL(location.
line);
2680 LABEL *find_failed_label = NEW_LABEL(location.
line);
2682 PUSH_INSN(ret, location, dup);
2683 PUSH_SEND(ret, location, idLength,
INT2FIX(0));
2685 PUSH_INSN(ret, location, dup);
2686 PUSH_INSN1(ret, location, putobject,
INT2FIX(size));
2687 PUSH_SEND(ret, location, idMINUS,
INT2FIX(1));
2688 PUSH_INSN1(ret, location, putobject,
INT2FIX(0));
2689 PUSH_LABEL(ret, while_begin_label);
2691 PUSH_INSN(ret, location, dup);
2692 PUSH_INSN1(ret, location, topn,
INT2FIX(2));
2693 PUSH_SEND(ret, location, idLE,
INT2FIX(1));
2694 PUSH_INSNL(ret, location, branchunless, find_failed_label);
2696 for (
size_t index = 0; index < size; index++) {
2697 PUSH_INSN1(ret, location, topn,
INT2FIX(3));
2698 PUSH_INSN1(ret, location, topn,
INT2FIX(1));
2701 PUSH_INSN1(ret, location, putobject,
INT2FIX(index));
2702 PUSH_SEND(ret, location, idPLUS,
INT2FIX(1));
2705 PUSH_SEND(ret, location, idAREF,
INT2FIX(1));
2706 CHECK(pm_compile_pattern_match(iseq, scope_node, cast->
requireds.
nodes[index], ret, next_loop_label, in_single_pattern, in_alternation_pattern,
false, base_index + 4));
2709 const pm_splat_node_t *left = cast->
left;
2712 PUSH_INSN1(ret, location, topn,
INT2FIX(3));
2713 PUSH_INSN1(ret, location, putobject,
INT2FIX(0));
2714 PUSH_INSN1(ret, location, topn,
INT2FIX(2));
2715 PUSH_SEND(ret, location, idAREF,
INT2FIX(2));
2716 CHECK(pm_compile_pattern_match(iseq, scope_node, left->
expression, ret, find_failed_label, in_single_pattern, in_alternation_pattern,
false, base_index + 4));
2720 const pm_splat_node_t *right = (
const pm_splat_node_t *) cast->
right;
2722 if (right->expression != NULL) {
2723 PUSH_INSN1(ret, location, topn,
INT2FIX(3));
2724 PUSH_INSN1(ret, location, topn,
INT2FIX(1));
2725 PUSH_INSN1(ret, location, putobject,
INT2FIX(size));
2726 PUSH_SEND(ret, location, idPLUS,
INT2FIX(1));
2727 PUSH_INSN1(ret, location, topn,
INT2FIX(3));
2728 PUSH_SEND(ret, location, idAREF,
INT2FIX(2));
2729 pm_compile_pattern_match(iseq, scope_node, right->expression, ret, find_failed_label, in_single_pattern, in_alternation_pattern,
false, base_index + 4);
2732 PUSH_INSNL(ret, location, jump, find_succeeded_label);
2734 PUSH_LABEL(ret, next_loop_label);
2735 PUSH_INSN1(ret, location, putobject,
INT2FIX(1));
2736 PUSH_SEND(ret, location, idPLUS,
INT2FIX(1));
2737 PUSH_INSNL(ret, location, jump, while_begin_label);
2739 PUSH_LABEL(ret, find_failed_label);
2740 PUSH_INSN1(ret, location, adjuststack,
INT2FIX(3));
2741 if (in_single_pattern) {
2742 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
2745 VALUE operand = rb_fstring_lit(
"%p does not match to find pattern");
2746 PUSH_INSN1(ret, location, putobject, operand);
2749 PUSH_INSN1(ret, location, topn,
INT2FIX(2));
2750 PUSH_SEND(ret, location, id_core_sprintf,
INT2FIX(2));
2751 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_ERROR_STRING + 1));
2753 PUSH_INSN1(ret, location, putobject,
Qfalse);
2754 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_P + 2));
2756 PUSH_INSN(ret, location, pop);
2757 PUSH_INSN(ret, location, pop);
2759 PUSH_INSNL(ret, location, jump, match_failed_label);
2760 PUSH_INSN1(ret, location, dupn,
INT2FIX(3));
2762 PUSH_LABEL(ret, find_succeeded_label);
2763 PUSH_INSN1(ret, location, adjuststack,
INT2FIX(3));
2766 PUSH_INSN(ret, location, pop);
2767 PUSH_INSNL(ret, location, jump, matched_label);
2768 PUSH_INSN(ret, location, putnil);
2770 PUSH_LABEL(ret, type_error_label);
2771 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
2775 VALUE operand = rb_fstring_lit(
"deconstruct must return Array");
2776 PUSH_INSN1(ret, location, putobject, operand);
2779 PUSH_SEND(ret, location, id_core_raise,
INT2FIX(2));
2780 PUSH_INSN(ret, location, pop);
2782 PUSH_LABEL(ret, match_failed_label);
2783 PUSH_INSN(ret, location, pop);
2784 PUSH_INSNL(ret, location, jump, unmatched_label);
2788 case PM_HASH_PATTERN_NODE: {
2797 const pm_hash_pattern_node_t *cast = (
const pm_hash_pattern_node_t *) node;
2800 bool has_rest = cast->
rest != NULL && !(PM_NODE_TYPE_P(cast->
rest, PM_ASSOC_SPLAT_NODE) && ((
const pm_assoc_splat_node_t *) cast->
rest)->value == NULL);
2803 LABEL *match_failed_label = NEW_LABEL(location.
line);
2804 LABEL *type_error_label = NEW_LABEL(location.
line);
2807 if (has_keys && !has_rest) {
2810 for (
size_t index = 0; index < cast->
elements.
size; index++) {
2812 RUBY_ASSERT(PM_NODE_TYPE_P(element, PM_ASSOC_NODE));
2814 const pm_node_t *key = ((
const pm_assoc_node_t *) element)->key;
2817 VALUE symbol =
ID2SYM(parse_string_symbol(scope_node, (
const pm_symbol_node_t *) key));
2818 rb_ary_push(keys, symbol);
2823 CHECK(pm_compile_pattern_constant(iseq, scope_node, cast->
constant, ret, match_failed_label, in_single_pattern, base_index));
2826 PUSH_INSN(ret, location, dup);
2829 VALUE operand =
ID2SYM(rb_intern(
"deconstruct_keys"));
2830 PUSH_INSN1(ret, location, putobject, operand);
2833 PUSH_SEND(ret, location, idRespond_to,
INT2FIX(1));
2834 if (in_single_pattern) {
2835 CHECK(pm_compile_pattern_generic_error(iseq, scope_node, node, ret, rb_fstring_lit(
"%p does not respond to #deconstruct_keys"), base_index + 1));
2837 PUSH_INSNL(ret, location, branchunless, match_failed_label);
2840 PUSH_INSN(ret, location, putnil);
2843 PUSH_INSN1(ret, location, duparray, keys);
2846 PUSH_SEND(ret, location, rb_intern(
"deconstruct_keys"),
INT2FIX(1));
2848 PUSH_INSN(ret, location, dup);
2850 PUSH_INSNL(ret, location, branchunless, type_error_label);
2853 PUSH_SEND(ret, location, rb_intern(
"dup"),
INT2FIX(0));
2857 DECL_ANCHOR(match_values);
2859 for (
size_t index = 0; index < cast->
elements.
size; index++) {
2861 RUBY_ASSERT(PM_NODE_TYPE_P(element, PM_ASSOC_NODE));
2863 const pm_assoc_node_t *assoc = (
const pm_assoc_node_t *) element;
2864 const pm_node_t *key = assoc->
key;
2867 VALUE symbol =
ID2SYM(parse_string_symbol(scope_node, (
const pm_symbol_node_t *) key));
2868 PUSH_INSN(ret, location, dup);
2869 PUSH_INSN1(ret, location, putobject, symbol);
2870 PUSH_SEND(ret, location, rb_intern(
"key?"),
INT2FIX(1));
2872 if (in_single_pattern) {
2873 LABEL *match_succeeded_label = NEW_LABEL(location.
line);
2875 PUSH_INSN(ret, location, dup);
2876 PUSH_INSNL(ret, location, branchif, match_succeeded_label);
2880 PUSH_INSN1(ret, location, putobject, operand);
2883 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_ERROR_STRING + 2));
2884 PUSH_INSN1(ret, location, putobject,
Qtrue);
2885 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_P + 3));
2886 PUSH_INSN1(ret, location, topn,
INT2FIX(3));
2887 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_MATCHEE + 4));
2888 PUSH_INSN1(ret, location, putobject, symbol);
2889 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_KEY + 5));
2891 PUSH_INSN1(ret, location, adjuststack,
INT2FIX(4));
2892 PUSH_LABEL(ret, match_succeeded_label);
2895 PUSH_INSNL(ret, location, branchunless, match_failed_label);
2896 PUSH_INSN(match_values, location, dup);
2897 PUSH_INSN1(match_values, location, putobject, symbol);
2898 PUSH_SEND(match_values, location, has_rest ? rb_intern(
"delete") : idAREF,
INT2FIX(1));
2900 const pm_node_t *value = assoc->
value;
2901 if (PM_NODE_TYPE_P(value, PM_IMPLICIT_NODE)) {
2902 value = ((
const pm_implicit_node_t *) value)->value;
2905 CHECK(pm_compile_pattern_match(iseq, scope_node, value, match_values, match_failed_label, in_single_pattern, in_alternation_pattern,
false, base_index + 1));
2908 PUSH_SEQ(ret, match_values);
2911 PUSH_INSN(ret, location, dup);
2912 PUSH_SEND(ret, location, idEmptyP,
INT2FIX(0));
2913 if (in_single_pattern) {
2914 CHECK(pm_compile_pattern_generic_error(iseq, scope_node, node, ret, rb_fstring_lit(
"%p is not empty"), base_index + 1));
2916 PUSH_INSNL(ret, location, branchunless, match_failed_label);
2920 switch (PM_NODE_TYPE(cast->
rest)) {
2921 case PM_NO_KEYWORDS_PARAMETER_NODE: {
2922 PUSH_INSN(ret, location, dup);
2923 PUSH_SEND(ret, location, idEmptyP,
INT2FIX(0));
2924 if (in_single_pattern) {
2925 pm_compile_pattern_generic_error(iseq, scope_node, node, ret, rb_fstring_lit(
"rest of %p is not empty"), base_index + 1);
2927 PUSH_INSNL(ret, location, branchunless, match_failed_label);
2930 case PM_ASSOC_SPLAT_NODE: {
2931 const pm_assoc_splat_node_t *splat = (
const pm_assoc_splat_node_t *) cast->
rest;
2932 PUSH_INSN(ret, location, dup);
2933 pm_compile_pattern_match(iseq, scope_node, splat->value, ret, match_failed_label, in_single_pattern, in_alternation_pattern,
false, base_index + 1);
2937 rb_bug(
"unreachable");
2942 PUSH_INSN(ret, location, pop);
2943 PUSH_INSNL(ret, location, jump, matched_label);
2944 PUSH_INSN(ret, location, putnil);
2946 PUSH_LABEL(ret, type_error_label);
2947 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
2951 VALUE operand = rb_fstring_lit(
"deconstruct_keys must return Hash");
2952 PUSH_INSN1(ret, location, putobject, operand);
2955 PUSH_SEND(ret, location, id_core_raise,
INT2FIX(2));
2956 PUSH_INSN(ret, location, pop);
2958 PUSH_LABEL(ret, match_failed_label);
2959 PUSH_INSN(ret, location, pop);
2960 PUSH_INSNL(ret, location, jump, unmatched_label);
2963 case PM_CAPTURE_PATTERN_NODE: {
2973 const pm_capture_pattern_node_t *cast = (
const pm_capture_pattern_node_t *) node;
2975 LABEL *match_failed_label = NEW_LABEL(location.
line);
2977 PUSH_INSN(ret, location, dup);
2978 CHECK(pm_compile_pattern_match(iseq, scope_node, cast->
value, ret, match_failed_label, in_single_pattern, in_alternation_pattern, use_deconstructed_cache, base_index + 1));
2979 CHECK(pm_compile_pattern(iseq, scope_node, (
const pm_node_t *) cast->
target, ret, matched_label, match_failed_label, in_single_pattern, in_alternation_pattern,
false, base_index));
2980 PUSH_INSN(ret, location, putnil);
2982 PUSH_LABEL(ret, match_failed_label);
2983 PUSH_INSN(ret, location, pop);
2984 PUSH_INSNL(ret, location, jump, unmatched_label);
2988 case PM_LOCAL_VARIABLE_TARGET_NODE: {
2992 const pm_local_variable_target_node_t *cast = (
const pm_local_variable_target_node_t *) node;
2993 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, cast->
name, cast->
depth);
2999 if (in_alternation_pattern) {
3000 ID id = pm_constant_id_lookup(scope_node, cast->
name);
3001 const char *name = rb_id2name(
id);
3003 if (name && strlen(name) > 0 && name[0] !=
'_') {
3004 COMPILE_ERROR(iseq, location.
line,
"illegal variable in alternative pattern (%"PRIsVALUE
")", rb_id2str(
id));
3009 PUSH_SETLOCAL(ret, location, index.index, index.level);
3010 PUSH_INSNL(ret, location, jump, matched_label);
3013 case PM_ALTERNATION_PATTERN_NODE: {
3016 const pm_alternation_pattern_node_t *cast = (
const pm_alternation_pattern_node_t *) node;
3018 LABEL *matched_left_label = NEW_LABEL(location.
line);
3019 LABEL *unmatched_left_label = NEW_LABEL(location.
line);
3023 PUSH_INSN(ret, location, dup);
3024 CHECK(pm_compile_pattern(iseq, scope_node, cast->
left, ret, matched_left_label, unmatched_left_label, in_single_pattern,
true, use_deconstructed_cache, base_index + 1));
3029 PUSH_LABEL(ret, matched_left_label);
3030 PUSH_INSN(ret, location, pop);
3031 PUSH_INSNL(ret, location, jump, matched_label);
3032 PUSH_INSN(ret, location, putnil);
3036 PUSH_LABEL(ret, unmatched_left_label);
3037 CHECK(pm_compile_pattern(iseq, scope_node, cast->
right, ret, matched_label, unmatched_label, in_single_pattern,
true, use_deconstructed_cache, base_index));
3040 case PM_PARENTHESES_NODE:
3045 return pm_compile_pattern(iseq, scope_node, ((
const pm_parentheses_node_t *) node)->body, ret, matched_label, unmatched_label, in_single_pattern, in_alternation_pattern, use_deconstructed_cache, base_index);
3046 case PM_PINNED_EXPRESSION_NODE:
3051 node = ((
const pm_pinned_expression_node_t *) node)->expression;
3054 case PM_CLASS_VARIABLE_READ_NODE:
3055 case PM_CONSTANT_PATH_NODE:
3056 case PM_CONSTANT_READ_NODE:
3059 case PM_GLOBAL_VARIABLE_READ_NODE:
3060 case PM_IMAGINARY_NODE:
3061 case PM_INSTANCE_VARIABLE_READ_NODE:
3062 case PM_IT_LOCAL_VARIABLE_READ_NODE:
3063 case PM_INTEGER_NODE:
3064 case PM_INTERPOLATED_REGULAR_EXPRESSION_NODE:
3065 case PM_INTERPOLATED_STRING_NODE:
3066 case PM_INTERPOLATED_SYMBOL_NODE:
3067 case PM_INTERPOLATED_X_STRING_NODE:
3068 case PM_LAMBDA_NODE:
3069 case PM_LOCAL_VARIABLE_READ_NODE:
3071 case PM_SOURCE_ENCODING_NODE:
3072 case PM_SOURCE_FILE_NODE:
3073 case PM_SOURCE_LINE_NODE:
3075 case PM_RATIONAL_NODE:
3076 case PM_REGULAR_EXPRESSION_NODE:
3078 case PM_STRING_NODE:
3079 case PM_SYMBOL_NODE:
3081 case PM_X_STRING_NODE: {
3085 PM_COMPILE_NOT_POPPED(node);
3086 if (in_single_pattern) {
3087 PUSH_INSN1(ret, location, dupn,
INT2FIX(2));
3090 PUSH_INSN1(ret, location, checkmatch,
INT2FIX(VM_CHECKMATCH_TYPE_CASE));
3092 if (in_single_pattern) {
3093 pm_compile_pattern_eqq_error(iseq, scope_node, node, ret, base_index + 2);
3096 PUSH_INSNL(ret, location, branchif, matched_label);
3097 PUSH_INSNL(ret, location, jump, unmatched_label);
3100 case PM_PINNED_VARIABLE_NODE: {
3105 const pm_pinned_variable_node_t *cast = (
const pm_pinned_variable_node_t *) node;
3106 CHECK(pm_compile_pattern(iseq, scope_node, cast->
variable, ret, matched_label, unmatched_label, in_single_pattern, in_alternation_pattern,
true, base_index));
3110 case PM_UNLESS_NODE: {
3122 const pm_node_t *predicate;
3123 const pm_node_t *statement;
3125 if (PM_NODE_TYPE_P(node, PM_IF_NODE)) {
3126 const pm_if_node_t *cast = (
const pm_if_node_t *) node;
3133 const pm_unless_node_t *cast = (
const pm_unless_node_t *) node;
3140 CHECK(pm_compile_pattern_match(iseq, scope_node, statement, ret, unmatched_label, in_single_pattern, in_alternation_pattern, use_deconstructed_cache, base_index));
3141 PM_COMPILE_NOT_POPPED(predicate);
3143 if (in_single_pattern) {
3144 LABEL *match_succeeded_label = NEW_LABEL(location.
line);
3146 PUSH_INSN(ret, location, dup);
3147 if (PM_NODE_TYPE_P(node, PM_IF_NODE)) {
3148 PUSH_INSNL(ret, location, branchif, match_succeeded_label);
3151 PUSH_INSNL(ret, location, branchunless, match_succeeded_label);
3155 VALUE operand = rb_fstring_lit(
"guard clause does not return true");
3156 PUSH_INSN1(ret, location, putobject, operand);
3159 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_ERROR_STRING + 1));
3160 PUSH_INSN1(ret, location, putobject,
Qfalse);
3161 PUSH_INSN1(ret, location, setn,
INT2FIX(base_index + PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_P + 2));
3163 PUSH_INSN(ret, location, pop);
3164 PUSH_INSN(ret, location, pop);
3166 PUSH_LABEL(ret, match_succeeded_label);
3169 if (PM_NODE_TYPE_P(node, PM_IF_NODE)) {
3170 PUSH_INSNL(ret, location, branchunless, unmatched_label);
3173 PUSH_INSNL(ret, location, branchif, unmatched_label);
3176 PUSH_INSNL(ret, location, jump, matched_label);
3183 rb_bug(
"Unexpected node type in pattern matching expression: %s", pm_node_type_to_str(PM_NODE_TYPE(node)));
3190#undef PM_PATTERN_BASE_INDEX_OFFSET_DECONSTRUCTED_CACHE
3191#undef PM_PATTERN_BASE_INDEX_OFFSET_ERROR_STRING
3192#undef PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_P
3193#undef PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_MATCHEE
3194#undef PM_PATTERN_BASE_INDEX_OFFSET_KEY_ERROR_KEY
3198pm_scope_node_init(
const pm_node_t *node, pm_scope_node_t *scope, pm_scope_node_t *previous)
3202 memset(scope, 0,
sizeof(pm_scope_node_t));
3204 scope->base.
type = PM_SCOPE_NODE;
3208 scope->previous = previous;
3209 scope->ast_node = (pm_node_t *) node;
3212 scope->parser = previous->parser;
3213 scope->encoding = previous->encoding;
3215 scope->constants = previous->constants;
3216 scope->coverage_enabled = previous->coverage_enabled;
3220 switch (PM_NODE_TYPE(node)) {
3221 case PM_BLOCK_NODE: {
3222 const pm_block_node_t *cast = (
const pm_block_node_t *) node;
3223 scope->body = cast->
body;
3224 scope->locals = cast->
locals;
3228 case PM_CLASS_NODE: {
3229 const pm_class_node_t *cast = (
const pm_class_node_t *) node;
3230 scope->body = cast->
body;
3231 scope->locals = cast->
locals;
3235 const pm_def_node_t *cast = (
const pm_def_node_t *) node;
3236 scope->parameters = (pm_node_t *) cast->
parameters;
3237 scope->body = cast->body;
3238 scope->locals = cast->locals;
3241 case PM_ENSURE_NODE: {
3242 const pm_ensure_node_t *cast = (
const pm_ensure_node_t *) node;
3243 scope->body = (pm_node_t *) node;
3253 const pm_for_node_t *cast = (
const pm_for_node_t *) node;
3254 scope->body = (pm_node_t *) cast->
statements;
3257 case PM_INTERPOLATED_REGULAR_EXPRESSION_NODE: {
3259 scope->body = (pm_node_t *) node;
3262 case PM_LAMBDA_NODE: {
3263 const pm_lambda_node_t *cast = (
const pm_lambda_node_t *) node;
3265 scope->body = cast->
body;
3266 scope->locals = cast->
locals;
3276 case PM_MODULE_NODE: {
3277 const pm_module_node_t *cast = (
const pm_module_node_t *) node;
3278 scope->body = cast->
body;
3279 scope->locals = cast->
locals;
3282 case PM_POST_EXECUTION_NODE: {
3283 const pm_post_execution_node_t *cast = (
const pm_post_execution_node_t *) node;
3284 scope->body = (pm_node_t *) cast->
statements;
3287 case PM_PROGRAM_NODE: {
3288 const pm_program_node_t *cast = (
const pm_program_node_t *) node;
3289 scope->body = (pm_node_t *) cast->
statements;
3290 scope->locals = cast->locals;
3293 case PM_RESCUE_NODE: {
3294 const pm_rescue_node_t *cast = (
const pm_rescue_node_t *) node;
3295 scope->body = (pm_node_t *) cast->
statements;
3298 case PM_RESCUE_MODIFIER_NODE: {
3299 const pm_rescue_modifier_node_t *cast = (
const pm_rescue_modifier_node_t *) node;
3303 case PM_SINGLETON_CLASS_NODE: {
3304 const pm_singleton_class_node_t *cast = (
const pm_singleton_class_node_t *) node;
3305 scope->body = cast->
body;
3306 scope->locals = cast->
locals;
3309 case PM_STATEMENTS_NODE: {
3310 const pm_statements_node_t *cast = (
const pm_statements_node_t *) node;
3311 scope->body = (pm_node_t *) cast;
3315 rb_bug(
"unreachable");
3321pm_scope_node_destroy(pm_scope_node_t *scope_node)
3323 if (scope_node->index_lookup_table) {
3324 st_free_table(scope_node->index_lookup_table);
3340pm_compile_retry_end_label(rb_iseq_t *iseq, LINK_ANCHOR *
const ret, LABEL *retry_end_l)
3343 LINK_ELEMENT *last_elem = LAST_ELEMENT(ret);
3344 iobj = IS_INSN(last_elem) ? (INSN*) last_elem : (INSN*) get_prev_insn((INSN*) last_elem);
3345 while (!IS_INSN_ID(iobj, send) && !IS_INSN_ID(iobj, invokesuper) && !IS_INSN_ID(iobj, sendforward) && !IS_INSN_ID(iobj, invokesuperforward)) {
3346 iobj = (INSN*) get_prev_insn(iobj);
3348 ELEM_INSERT_NEXT(&iobj->link, (LINK_ELEMENT*) retry_end_l);
3353 if (&iobj->link == LAST_ELEMENT(ret)) {
3354 ret->last = (LINK_ELEMENT*) retry_end_l;
3359pm_iseq_builtin_function_name(
const pm_scope_node_t *scope_node,
const pm_node_t *receiver,
ID method_id)
3361 const char *name = rb_id2name(method_id);
3362 static const char prefix[] =
"__builtin_";
3363 const size_t prefix_len =
sizeof(prefix) - 1;
3365 if (receiver == NULL) {
3366 if (UNLIKELY(strncmp(prefix, name, prefix_len) == 0)) {
3368 return &name[prefix_len];
3371 else if (PM_NODE_TYPE_P(receiver, PM_CALL_NODE)) {
3372 if (PM_NODE_FLAG_P(receiver, PM_CALL_NODE_FLAGS_VARIABLE_CALL)) {
3373 const pm_call_node_t *cast = (
const pm_call_node_t *) receiver;
3380 else if (PM_NODE_TYPE_P(receiver, PM_CONSTANT_READ_NODE)) {
3381 const pm_constant_read_node_t *cast = (
const pm_constant_read_node_t *) receiver;
3393pm_compile_builtin_attr(rb_iseq_t *iseq,
const pm_scope_node_t *scope_node,
const pm_arguments_node_t *arguments,
const pm_node_location_t *node_location)
3395 if (arguments == NULL) {
3396 COMPILE_ERROR(iseq, node_location->
line,
"attr!: no argument");
3400 const pm_node_t *argument;
3402 if (!PM_NODE_TYPE_P(argument, PM_SYMBOL_NODE)) {
3403 COMPILE_ERROR(iseq, node_location->
line,
"non symbol argument to attr!: %s", pm_node_type_to_str(PM_NODE_TYPE(argument)));
3407 VALUE symbol = pm_static_literal_value(iseq, argument, scope_node);
3410 if (strcmp(RSTRING_PTR(
string),
"leaf") == 0) {
3411 ISEQ_BODY(iseq)->builtin_attrs |= BUILTIN_ATTR_LEAF;
3413 else if (strcmp(RSTRING_PTR(
string),
"inline_block") == 0) {
3414 ISEQ_BODY(iseq)->builtin_attrs |= BUILTIN_ATTR_INLINE_BLOCK;
3416 else if (strcmp(RSTRING_PTR(
string),
"use_block") == 0) {
3417 iseq_set_use_block(iseq);
3419 else if (strcmp(RSTRING_PTR(
string),
"c_trace") == 0) {
3421 ISEQ_BODY(iseq)->builtin_attrs |= BUILTIN_ATTR_C_TRACE;
3424 COMPILE_ERROR(iseq, node_location->
line,
"unknown argument to attr!: %s", RSTRING_PTR(
string));
3433pm_compile_builtin_arg(rb_iseq_t *iseq, LINK_ANCHOR *
const ret,
const pm_scope_node_t *scope_node,
const pm_arguments_node_t *arguments,
const pm_node_location_t *node_location,
int popped)
3435 if (arguments == NULL) {
3436 COMPILE_ERROR(iseq, node_location->
line,
"arg!: no argument");
3441 COMPILE_ERROR(iseq, node_location->
line,
"arg!: too many argument");
3446 if (!PM_NODE_TYPE_P(argument, PM_SYMBOL_NODE)) {
3447 COMPILE_ERROR(iseq, node_location->
line,
"non symbol argument to arg!: %s", pm_node_type_to_str(PM_NODE_TYPE(argument)));
3452 ID name = parse_string_symbol(scope_node, ((
const pm_symbol_node_t *) argument));
3453 int index = ISEQ_BODY(ISEQ_BODY(iseq)->local_iseq)->local_table_size - get_local_var_idx(iseq, name);
3455 debugs(
"id: %s idx: %d\n", rb_id2name(name), index);
3456 PUSH_GETLOCAL(ret, *node_location, index, get_lvar_level(iseq));
3463pm_compile_builtin_mandatory_only_method(rb_iseq_t *iseq, pm_scope_node_t *scope_node,
const pm_call_node_t *call_node,
const pm_node_location_t *node_location)
3465 const pm_node_t *ast_node = scope_node->ast_node;
3466 if (!PM_NODE_TYPE_P(ast_node, PM_DEF_NODE)) {
3467 rb_bug(
"mandatory_only?: not in method definition");
3471 const pm_def_node_t *def_node = (
const pm_def_node_t *) ast_node;
3472 const pm_parameters_node_t *parameters_node = def_node->
parameters;
3473 if (parameters_node == NULL) {
3474 rb_bug(
"mandatory_only?: in method definition with no parameters");
3478 const pm_node_t *body_node = def_node->
body;
3479 if (body_node == NULL || !PM_NODE_TYPE_P(body_node, PM_STATEMENTS_NODE) || (((
const pm_statements_node_t *) body_node)->body.size != 1) || !PM_NODE_TYPE_P(((
const pm_statements_node_t *) body_node)->body.nodes[0], PM_IF_NODE)) {
3480 rb_bug(
"mandatory_only?: not in method definition with plain statements");
3484 const pm_if_node_t *if_node = (
const pm_if_node_t *) ((
const pm_statements_node_t *) body_node)->body.nodes[0];
3485 if (if_node->
predicate != ((
const pm_node_t *) call_node)) {
3486 rb_bug(
"mandatory_only?: can't find mandatory node");
3490 pm_parameters_node_t parameters = {
3491 .base = parameters_node->
base,
3495 const pm_def_node_t def = {
3496 .base = def_node->
base,
3497 .name = def_node->
name,
3499 .parameters = ¶meters,
3508 pm_scope_node_t next_scope_node;
3509 pm_scope_node_init(&def.base, &next_scope_node, scope_node);
3512 const rb_iseq_t *mandatory_only_iseq = pm_iseq_new_with_opt(
3514 rb_iseq_base_label(iseq),
3516 rb_iseq_realpath(iseq),
3517 node_location->
line,
3521 ISEQ_COMPILE_DATA(iseq)->option,
3524 RB_OBJ_WRITE(iseq, &ISEQ_BODY(iseq)->mandatory_only_iseq, (
VALUE)mandatory_only_iseq);
3527 RUBY_ASSERT(ISEQ_BODY(iseq)->mandatory_only_iseq == NULL);
3528 rb_jump_tag(error_state);
3531 pm_scope_node_destroy(&next_scope_node);
3536pm_compile_builtin_function_call(rb_iseq_t *iseq, LINK_ANCHOR *
const ret, pm_scope_node_t *scope_node,
const pm_call_node_t *call_node,
const pm_node_location_t *node_location,
int popped,
const rb_iseq_t *parent_block,
const char *builtin_func)
3538 const pm_arguments_node_t *arguments = call_node->
arguments;
3540 if (parent_block != NULL) {
3541 COMPILE_ERROR(iseq, node_location->
line,
"should not call builtins here.");
3545#define BUILTIN_INLINE_PREFIX "_bi"
3546 char inline_func[
sizeof(BUILTIN_INLINE_PREFIX) +
DECIMAL_SIZE_OF(
int)];
3547 bool cconst =
false;
3552 if (strcmp(
"cstmt!", builtin_func) == 0 || strcmp(
"cexpr!", builtin_func) == 0) {
3555 else if (strcmp(
"cconst!", builtin_func) == 0) {
3558 else if (strcmp(
"cinit!", builtin_func) == 0) {
3562 else if (strcmp(
"attr!", builtin_func) == 0) {
3563 return pm_compile_builtin_attr(iseq, scope_node, arguments, node_location);
3565 else if (strcmp(
"arg!", builtin_func) == 0) {
3566 return pm_compile_builtin_arg(iseq, ret, scope_node, arguments, node_location, popped);
3568 else if (strcmp(
"mandatory_only?", builtin_func) == 0) {
3570 rb_bug(
"mandatory_only? should be in if condition");
3572 else if (!LIST_INSN_SIZE_ZERO(ret)) {
3573 rb_bug(
"mandatory_only? should be put on top");
3576 PUSH_INSN1(ret, *node_location, putobject,
Qfalse);
3577 return pm_compile_builtin_mandatory_only_method(iseq, scope_node, call_node, node_location);
3580 rb_bug(
"can't find builtin function:%s", builtin_func);
3583 COMPILE_ERROR(iseq, node_location->
line,
"can't find builtin function:%s", builtin_func);
3587 int inline_index = node_location->
line;
3588 snprintf(inline_func,
sizeof(inline_func), BUILTIN_INLINE_PREFIX
"%d", inline_index);
3589 builtin_func = inline_func;
3595 typedef VALUE(*builtin_func0)(
void *,
VALUE);
3596 VALUE const_val = (*(builtin_func0)(uintptr_t)bf->func_ptr)(NULL,
Qnil);
3597 PUSH_INSN1(ret, *node_location, putobject, const_val);
3603 DECL_ANCHOR(args_seq);
3607 int argc = pm_setup_args(arguments, call_node->
block, &flags, &keywords, iseq, args_seq, scope_node, node_location);
3609 if (argc != bf->argc) {
3610 COMPILE_ERROR(iseq, node_location->
line,
"argc is not match for builtin function:%s (expect %d but %d)", builtin_func, bf->argc, argc);
3614 unsigned int start_index;
3615 if (delegate_call_p(iseq, argc, args_seq, &start_index)) {
3616 PUSH_INSN2(ret, *node_location, opt_invokebuiltin_delegate, bf,
INT2FIX(start_index));
3619 PUSH_SEQ(ret, args_seq);
3620 PUSH_INSN1(ret, *node_location, invokebuiltin, bf);
3623 if (popped) PUSH_INSN(ret, *node_location, pop);
3631pm_compile_call(rb_iseq_t *iseq,
const pm_call_node_t *call_node, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node,
ID method_id, LABEL *start)
3637 LABEL *else_label = NEW_LABEL(location.
line);
3638 LABEL *end_label = NEW_LABEL(location.
line);
3639 LABEL *retry_end_l = NEW_LABEL(location.
line);
3642 rb_code_location_t code_location = { 0 };
3643 int node_id = location.
node_id;
3645 if (PM_NODE_FLAG_P(call_node, PM_CALL_NODE_FLAGS_SAFE_NAVIGATION)) {
3646 if (PM_BRANCH_COVERAGE_P(iseq)) {
3647 const uint8_t *cursors[3] = {
3653 const uint8_t *end_cursor = cursors[0];
3654 end_cursor = (end_cursor == NULL || cursors[1] == NULL) ? cursors[1] : (end_cursor > cursors[1] ? end_cursor : cursors[1]);
3655 end_cursor = (end_cursor == NULL || cursors[2] == NULL) ? cursors[2] : (end_cursor > cursors[2] ? end_cursor : cursors[2]);
3658 const pm_line_column_t start_location = PM_NODE_START_LINE_COLUMN(scope_node->parser, call_node);
3661 code_location = (rb_code_location_t) {
3662 .beg_pos = { .lineno = start_location.line, .column = start_location.column },
3663 .end_pos = { .lineno = end_location.line, .column = end_location.column }
3666 branches = decl_branch_base(iseq, PTR2NUM(call_node), &code_location,
"&.");
3669 PUSH_INSN(ret, location, dup);
3670 PUSH_INSNL(ret, location, branchnil, else_label);
3672 add_trace_branch_coverage(iseq, ret, &code_location, node_id, 0,
"then", branches);
3678 int orig_argc = pm_setup_args(call_node->
arguments, call_node->
block, &flags, &kw_arg, iseq, ret, scope_node, &location);
3679 const rb_iseq_t *previous_block = ISEQ_COMPILE_DATA(iseq)->current_block;
3680 const rb_iseq_t *block_iseq = NULL;
3682 if (call_node->
block != NULL && PM_NODE_TYPE_P(call_node->
block, PM_BLOCK_NODE)) {
3684 pm_scope_node_t next_scope_node;
3685 pm_scope_node_init(call_node->
block, &next_scope_node, scope_node);
3687 block_iseq = NEW_CHILD_ISEQ(&next_scope_node, make_name_for_block(iseq), ISEQ_TYPE_BLOCK, pm_node_line_number(scope_node->parser, call_node->
block));
3688 pm_scope_node_destroy(&next_scope_node);
3689 ISEQ_COMPILE_DATA(iseq)->current_block = block_iseq;
3692 if (PM_NODE_FLAG_P(call_node, PM_CALL_NODE_FLAGS_VARIABLE_CALL)) {
3693 flags |= VM_CALL_VCALL;
3697 flags |= VM_CALL_ARGS_SIMPLE;
3701 if (PM_NODE_FLAG_P(call_node, PM_CALL_NODE_FLAGS_IGNORE_VISIBILITY)) {
3702 flags |= VM_CALL_FCALL;
3705 if (!popped && PM_NODE_FLAG_P(call_node, PM_CALL_NODE_FLAGS_ATTRIBUTE_WRITE)) {
3706 if (flags & VM_CALL_ARGS_BLOCKARG) {
3707 PUSH_INSN1(ret, location, topn,
INT2FIX(1));
3708 if (flags & VM_CALL_ARGS_SPLAT) {
3709 PUSH_INSN1(ret, location, putobject,
INT2FIX(-1));
3710 PUSH_SEND_WITH_FLAG(ret, location, idAREF,
INT2FIX(1),
INT2FIX(0));
3712 PUSH_INSN1(ret, location, setn,
INT2FIX(orig_argc + 3));
3713 PUSH_INSN(ret, location, pop);
3715 else if (flags & VM_CALL_ARGS_SPLAT) {
3716 PUSH_INSN(ret, location, dup);
3717 PUSH_INSN1(ret, location, putobject,
INT2FIX(-1));
3718 PUSH_SEND_WITH_FLAG(ret, location, idAREF,
INT2FIX(1),
INT2FIX(0));
3719 PUSH_INSN1(ret, location, setn,
INT2FIX(orig_argc + 2));
3720 PUSH_INSN(ret, location, pop);
3723 PUSH_INSN1(ret, location, setn,
INT2FIX(orig_argc + 1));
3727 if ((flags & VM_CALL_KW_SPLAT) && (flags & VM_CALL_ARGS_BLOCKARG) && !(flags & VM_CALL_KW_SPLAT_MUT)) {
3728 PUSH_INSN(ret, location, splatkw);
3731 PUSH_SEND_R(ret, location, method_id,
INT2FIX(orig_argc), block_iseq,
INT2FIX(flags), kw_arg);
3733 if (block_iseq && ISEQ_BODY(block_iseq)->catch_table) {
3734 pm_compile_retry_end_label(iseq, ret, retry_end_l);
3735 PUSH_CATCH_ENTRY(CATCH_TYPE_BREAK, start, retry_end_l, block_iseq, retry_end_l);
3738 if (PM_NODE_FLAG_P(call_node, PM_CALL_NODE_FLAGS_SAFE_NAVIGATION)) {
3739 PUSH_INSNL(ret, location, jump, end_label);
3740 PUSH_LABEL(ret, else_label);
3741 add_trace_branch_coverage(iseq, ret, &code_location, node_id, 1,
"else", branches);
3742 PUSH_LABEL(ret, end_label);
3745 if (PM_NODE_FLAG_P(call_node, PM_CALL_NODE_FLAGS_ATTRIBUTE_WRITE) && !popped) {
3746 PUSH_INSN(ret, location, pop);
3749 if (popped) PUSH_INSN(ret, location, pop);
3750 ISEQ_COMPILE_DATA(iseq)->current_block = previous_block;
3758pm_compile_back_reference_ref(
const pm_back_reference_read_node_t *node)
3772pm_compile_numbered_reference_ref(
const pm_numbered_reference_read_node_t *node)
3778pm_compile_defined_expr0(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node,
bool in_condition, LABEL **lfinish,
bool explicit_receiver)
3780#define PUSH_VAL(type) (in_condition ? Qtrue : rb_iseq_defined_string(type))
3783 enum defined_type dtype = DEFINED_NOT_DEFINED;
3786 switch (PM_NODE_TYPE(node)) {
3791 dtype = DEFINED_NIL;
3794 case PM_INSTANCE_VARIABLE_READ_NODE: {
3797 const pm_instance_variable_read_node_t *cast = (
const pm_instance_variable_read_node_t *) node;
3798 ID name = pm_constant_id_lookup(scope_node, cast->
name);
3800 PUSH_INSN3(ret, location, definedivar,
ID2SYM(name), get_ivar_ic_value(iseq, name), PUSH_VAL(DEFINED_IVAR));
3805 case PM_LOCAL_VARIABLE_READ_NODE:
3808 case PM_IT_LOCAL_VARIABLE_READ_NODE:
3811 dtype = DEFINED_LVAR;
3814 case PM_GLOBAL_VARIABLE_READ_NODE: {
3817 const pm_global_variable_read_node_t *cast = (
const pm_global_variable_read_node_t *) node;
3818 ID name = pm_constant_id_lookup(scope_node, cast->
name);
3820 PUSH_INSN(ret, location, putnil);
3821 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_GVAR),
ID2SYM(name), PUSH_VAL(DEFINED_GVAR));
3826 case PM_CLASS_VARIABLE_READ_NODE: {
3829 const pm_class_variable_read_node_t *cast = (
const pm_class_variable_read_node_t *) node;
3830 ID name = pm_constant_id_lookup(scope_node, cast->
name);
3832 PUSH_INSN(ret, location, putnil);
3833 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_CVAR),
ID2SYM(name), PUSH_VAL(DEFINED_CVAR));
3838 case PM_CONSTANT_READ_NODE: {
3841 const pm_constant_read_node_t *cast = (
const pm_constant_read_node_t *) node;
3842 ID name = pm_constant_id_lookup(scope_node, cast->
name);
3844 PUSH_INSN(ret, location, putnil);
3845 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_CONST),
ID2SYM(name), PUSH_VAL(DEFINED_CONST));
3853 iseq_set_use_block(ISEQ_BODY(iseq)->local_iseq);
3855 PUSH_INSN(ret, location, putnil);
3856 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_YIELD), 0, PUSH_VAL(DEFINED_YIELD));
3860 case PM_SUPER_NODE: {
3863 const pm_super_node_t *cast = (
const pm_super_node_t *) node;
3865 if (cast->
block != NULL && !PM_NODE_TYPE_P(cast->
block, PM_BLOCK_ARGUMENT_NODE)) {
3866 dtype = DEFINED_EXPR;
3870 PUSH_INSN(ret, location, putnil);
3871 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_ZSUPER), 0, PUSH_VAL(DEFINED_ZSUPER));
3874 case PM_FORWARDING_SUPER_NODE: {
3877 const pm_forwarding_super_node_t *cast = (
const pm_forwarding_super_node_t *) node;
3879 if (cast->
block != NULL) {
3880 dtype = DEFINED_EXPR;
3884 PUSH_INSN(ret, location, putnil);
3885 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_ZSUPER), 0, PUSH_VAL(DEFINED_ZSUPER));
3892 dtype = DEFINED_SELF;
3898 dtype = DEFINED_TRUE;
3904 dtype = DEFINED_FALSE;
3907 case PM_CALL_AND_WRITE_NODE:
3910 case PM_CALL_OPERATOR_WRITE_NODE:
3913 case PM_CALL_OR_WRITE_NODE:
3916 case PM_CLASS_VARIABLE_AND_WRITE_NODE:
3919 case PM_CLASS_VARIABLE_OPERATOR_WRITE_NODE:
3922 case PM_CLASS_VARIABLE_OR_WRITE_NODE:
3925 case PM_CLASS_VARIABLE_WRITE_NODE:
3928 case PM_CONSTANT_AND_WRITE_NODE:
3931 case PM_CONSTANT_OPERATOR_WRITE_NODE:
3934 case PM_CONSTANT_OR_WRITE_NODE:
3937 case PM_CONSTANT_PATH_AND_WRITE_NODE:
3940 case PM_CONSTANT_PATH_OPERATOR_WRITE_NODE:
3943 case PM_CONSTANT_PATH_OR_WRITE_NODE:
3946 case PM_CONSTANT_PATH_WRITE_NODE:
3949 case PM_CONSTANT_WRITE_NODE:
3952 case PM_GLOBAL_VARIABLE_AND_WRITE_NODE:
3955 case PM_GLOBAL_VARIABLE_OPERATOR_WRITE_NODE:
3958 case PM_GLOBAL_VARIABLE_OR_WRITE_NODE:
3961 case PM_GLOBAL_VARIABLE_WRITE_NODE:
3964 case PM_INDEX_AND_WRITE_NODE:
3967 case PM_INDEX_OPERATOR_WRITE_NODE:
3970 case PM_INDEX_OR_WRITE_NODE:
3973 case PM_INSTANCE_VARIABLE_AND_WRITE_NODE:
3976 case PM_INSTANCE_VARIABLE_OPERATOR_WRITE_NODE:
3979 case PM_INSTANCE_VARIABLE_OR_WRITE_NODE:
3982 case PM_INSTANCE_VARIABLE_WRITE_NODE:
3985 case PM_LOCAL_VARIABLE_AND_WRITE_NODE:
3988 case PM_LOCAL_VARIABLE_OPERATOR_WRITE_NODE:
3991 case PM_LOCAL_VARIABLE_OR_WRITE_NODE:
3994 case PM_LOCAL_VARIABLE_WRITE_NODE:
3997 case PM_MULTI_WRITE_NODE:
4000 dtype = DEFINED_ASGN;
4003 case PM_ALIAS_GLOBAL_VARIABLE_NODE:
4006 case PM_ALIAS_METHOD_NODE:
4015 case PM_CASE_MATCH_NODE:
4027 case PM_DEFINED_NODE:
4030 case PM_FLIP_FLOP_NODE:
4042 case PM_IMAGINARY_NODE:
4045 case PM_INTEGER_NODE:
4048 case PM_INTERPOLATED_MATCH_LAST_LINE_NODE:
4051 case PM_INTERPOLATED_REGULAR_EXPRESSION_NODE:
4054 case PM_INTERPOLATED_STRING_NODE:
4057 case PM_INTERPOLATED_SYMBOL_NODE:
4060 case PM_INTERPOLATED_X_STRING_NODE:
4063 case PM_LAMBDA_NODE:
4066 case PM_MATCH_LAST_LINE_NODE:
4069 case PM_MATCH_PREDICATE_NODE:
4072 case PM_MATCH_REQUIRED_NODE:
4075 case PM_MATCH_WRITE_NODE:
4078 case PM_MODULE_NODE:
4087 case PM_POST_EXECUTION_NODE:
4093 case PM_RATIONAL_NODE:
4099 case PM_REGULAR_EXPRESSION_NODE:
4102 case PM_RESCUE_MODIFIER_NODE:
4108 case PM_RETURN_NODE:
4111 case PM_SINGLETON_CLASS_NODE:
4114 case PM_SOURCE_ENCODING_NODE:
4117 case PM_SOURCE_FILE_NODE:
4120 case PM_SOURCE_LINE_NODE:
4123 case PM_STRING_NODE:
4126 case PM_SYMBOL_NODE:
4132 case PM_UNLESS_NODE:
4141 case PM_X_STRING_NODE:
4144 dtype = DEFINED_EXPR;
4147 case PM_BACK_REFERENCE_READ_NODE: {
4150 const pm_back_reference_read_node_t *cast = (
const pm_back_reference_read_node_t *) node;
4151 VALUE ref = pm_compile_back_reference_ref(cast);
4153 PUSH_INSN(ret, location, putnil);
4154 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_REF), ref, PUSH_VAL(DEFINED_GVAR));
4158 case PM_NUMBERED_REFERENCE_READ_NODE: {
4161 const pm_numbered_reference_read_node_t *cast = (
const pm_numbered_reference_read_node_t *) node;
4162 VALUE ref = pm_compile_numbered_reference_ref(cast);
4164 PUSH_INSN(ret, location, putnil);
4165 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_REF), ref, PUSH_VAL(DEFINED_GVAR));
4170 case PM_CONSTANT_PATH_NODE: {
4173 const pm_constant_path_node_t *cast = (
const pm_constant_path_node_t *) node;
4174 ID name = pm_constant_id_lookup(scope_node, cast->
name);
4176 if (cast->
parent != NULL) {
4177 if (!lfinish[1]) lfinish[1] = NEW_LABEL(location.
line);
4178 pm_compile_defined_expr0(iseq, cast->
parent, node_location, ret, popped, scope_node,
true, lfinish,
false);
4180 PUSH_INSNL(ret, location, branchunless, lfinish[1]);
4181 PM_COMPILE(cast->
parent);
4184 PUSH_INSN1(ret, location, putobject, rb_cObject);
4187 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_CONST_FROM),
ID2SYM(name), PUSH_VAL(DEFINED_CONST));
4191 case PM_BEGIN_NODE: {
4194 const pm_begin_node_t *cast = (
const pm_begin_node_t *) node;
4199 dtype = DEFINED_NIL;
4205 pm_compile_defined_expr0(iseq, cast->
statements->
body.
nodes[0], node_location, ret, popped, scope_node, in_condition, lfinish,
false);
4211 dtype = DEFINED_EXPR;
4216 dtype = DEFINED_EXPR;
4221 case PM_PARENTHESES_NODE: {
4224 const pm_parentheses_node_t *cast = (
const pm_parentheses_node_t *) node;
4226 if (cast->
body == NULL) {
4228 dtype = DEFINED_NIL;
4230 else if (PM_NODE_TYPE_P(cast->
body, PM_STATEMENTS_NODE) && ((
const pm_statements_node_t *) cast->
body)->body.size == 1) {
4233 pm_compile_defined_expr0(iseq, ((
const pm_statements_node_t *) cast->
body)->body.nodes[0], node_location, ret, popped, scope_node, in_condition, lfinish, explicit_receiver);
4239 dtype = DEFINED_EXPR;
4244 case PM_ARRAY_NODE: {
4247 const pm_array_node_t *cast = (
const pm_array_node_t *) node;
4250 lfinish[1] = NEW_LABEL(location.
line);
4253 for (
size_t index = 0; index < cast->
elements.
size; index++) {
4254 pm_compile_defined_expr0(iseq, cast->
elements.
nodes[index], node_location, ret, popped, scope_node,
true, lfinish,
false);
4255 PUSH_INSNL(ret, location, branchunless, lfinish[1]);
4258 dtype = DEFINED_EXPR;
4264 case PM_KEYWORD_HASH_NODE: {
4267 const pm_node_list_t *elements;
4269 if (PM_NODE_TYPE_P(node, PM_HASH_NODE)) {
4270 elements = &((
const pm_hash_node_t *) node)->elements;
4273 elements = &((
const pm_keyword_hash_node_t *) node)->elements;
4276 if (elements->
size > 0 && !lfinish[1]) {
4277 lfinish[1] = NEW_LABEL(location.
line);
4280 for (
size_t index = 0; index < elements->
size; index++) {
4281 pm_compile_defined_expr0(iseq, elements->
nodes[index], node_location, ret, popped, scope_node,
true, lfinish,
false);
4282 PUSH_INSNL(ret, location, branchunless, lfinish[1]);
4285 dtype = DEFINED_EXPR;
4288 case PM_ASSOC_NODE: {
4291 const pm_assoc_node_t *cast = (
const pm_assoc_node_t *) node;
4293 pm_compile_defined_expr0(iseq, cast->
key, node_location, ret, popped, scope_node,
true, lfinish,
false);
4294 PUSH_INSNL(ret, location, branchunless, lfinish[1]);
4295 pm_compile_defined_expr0(iseq, cast->
value, node_location, ret, popped, scope_node,
true, lfinish,
false);
4299 case PM_ASSOC_SPLAT_NODE: {
4302 const pm_assoc_splat_node_t *cast = (
const pm_assoc_splat_node_t *) node;
4304 if (cast->
value == NULL) {
4305 dtype = DEFINED_EXPR;
4309 pm_compile_defined_expr0(iseq, cast->
value, node_location, ret, popped, scope_node,
true, lfinish,
false);
4312 case PM_IMPLICIT_NODE: {
4315 const pm_implicit_node_t *cast = (
const pm_implicit_node_t *) node;
4316 pm_compile_defined_expr0(iseq, cast->
value, node_location, ret, popped, scope_node, in_condition, lfinish, explicit_receiver);
4319 case PM_CALL_NODE: {
4320#define BLOCK_P(cast) ((cast)->block != NULL && PM_NODE_TYPE_P((cast)->block, PM_BLOCK_NODE))
4324 const pm_call_node_t *cast = ((
const pm_call_node_t *) node);
4326 if (cast->
block != NULL && PM_NODE_TYPE_P(cast->
block, PM_BLOCK_NODE)) {
4327 dtype = DEFINED_EXPR;
4332 if (!lfinish[1]) lfinish[1] = NEW_LABEL(location.
line);
4333 if (!lfinish[2]) lfinish[2] = NEW_LABEL(location.
line);
4337 pm_compile_defined_expr0(iseq, (
const pm_node_t *) cast->
arguments, node_location, ret, popped, scope_node,
true, lfinish,
false);
4338 PUSH_INSNL(ret, location, branchunless, lfinish[1]);
4341 if (cast->
block && PM_NODE_TYPE_P(cast->
block, PM_BLOCK_ARGUMENT_NODE)) {
4342 pm_compile_defined_expr0(iseq, cast->
block, node_location, ret, popped, scope_node,
true, lfinish,
false);
4343 PUSH_INSNL(ret, location, branchunless, lfinish[1]);
4347 if (PM_NODE_TYPE_P(cast->
receiver, PM_CALL_NODE) && !BLOCK_P((
const pm_call_node_t *) cast->
receiver)) {
4350 pm_compile_defined_expr0(iseq, cast->
receiver, node_location, ret, popped, scope_node,
true, lfinish,
true);
4351 PUSH_INSNL(ret, location, branchunless, lfinish[2]);
4353 const pm_call_node_t *receiver = (
const pm_call_node_t *) cast->
receiver;
4354 ID method_id = pm_constant_id_lookup(scope_node, receiver->name);
4356 pm_compile_call(iseq, receiver, ret, popped, scope_node, method_id, NULL);
4359 pm_compile_defined_expr0(iseq, cast->
receiver, node_location, ret, popped, scope_node,
true, lfinish,
false);
4360 PUSH_INSNL(ret, location, branchunless, lfinish[1]);
4364 ID method_id = pm_constant_id_lookup(scope_node, cast->
name);
4366 if (explicit_receiver) PUSH_INSN(ret, location, dup);
4367 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_METHOD),
rb_id2sym(method_id), PUSH_VAL(DEFINED_METHOD));
4370 ID method_id = pm_constant_id_lookup(scope_node, cast->
name);
4372 PUSH_INSN(ret, location, putself);
4373 if (explicit_receiver) PUSH_INSN(ret, location, dup);
4375 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_FUNC),
rb_id2sym(method_id), PUSH_VAL(DEFINED_METHOD));
4380 case PM_ARGUMENTS_NODE: {
4383 const pm_arguments_node_t *cast = (
const pm_arguments_node_t *) node;
4385 for (
size_t index = 0; index < cast->
arguments.
size; index++) {
4386 pm_compile_defined_expr0(iseq, cast->
arguments.
nodes[index], node_location, ret, popped, scope_node, in_condition, lfinish, explicit_receiver);
4389 lfinish[1] = NEW_LABEL(location.
line);
4391 PUSH_INSNL(ret, location, branchunless, lfinish[1]);
4394 dtype = DEFINED_TRUE;
4397 case PM_BLOCK_ARGUMENT_NODE:
4400 dtype = DEFINED_EXPR;
4402 case PM_FORWARDING_ARGUMENTS_NODE:
4405 dtype = DEFINED_EXPR;
4407 case PM_SPLAT_NODE: {
4410 const pm_splat_node_t *cast = (
const pm_splat_node_t *) node;
4413 dtype = DEFINED_EXPR;
4417 pm_compile_defined_expr0(iseq, cast->
expression, node_location, ret, popped, scope_node, in_condition, lfinish,
false);
4419 if (!lfinish[1]) lfinish[1] = NEW_LABEL(location.
line);
4420 PUSH_INSNL(ret, location, branchunless, lfinish[1]);
4422 dtype = DEFINED_EXPR;
4425 case PM_SHAREABLE_CONSTANT_NODE:
4429 pm_compile_defined_expr0(iseq, ((
const pm_shareable_constant_node_t *) node)->write, node_location, ret, popped, scope_node, in_condition, lfinish, explicit_receiver);
4432 case PM_BLOCK_LOCAL_VARIABLE_NODE:
4433 case PM_BLOCK_PARAMETER_NODE:
4434 case PM_BLOCK_PARAMETERS_NODE:
4435 case PM_FORWARDING_PARAMETER_NODE:
4436 case PM_IMPLICIT_REST_NODE:
4437 case PM_IT_PARAMETERS_NODE:
4438 case PM_PARAMETERS_NODE:
4439 case PM_KEYWORD_REST_PARAMETER_NODE:
4440 case PM_NO_KEYWORDS_PARAMETER_NODE:
4441 case PM_NUMBERED_PARAMETERS_NODE:
4442 case PM_OPTIONAL_KEYWORD_PARAMETER_NODE:
4443 case PM_OPTIONAL_PARAMETER_NODE:
4444 case PM_REQUIRED_KEYWORD_PARAMETER_NODE:
4445 case PM_REQUIRED_PARAMETER_NODE:
4446 case PM_REST_PARAMETER_NODE:
4448 case PM_ALTERNATION_PATTERN_NODE:
4449 case PM_ARRAY_PATTERN_NODE:
4450 case PM_CAPTURE_PATTERN_NODE:
4451 case PM_FIND_PATTERN_NODE:
4452 case PM_HASH_PATTERN_NODE:
4453 case PM_PINNED_EXPRESSION_NODE:
4454 case PM_PINNED_VARIABLE_NODE:
4456 case PM_CALL_TARGET_NODE:
4457 case PM_CLASS_VARIABLE_TARGET_NODE:
4458 case PM_CONSTANT_PATH_TARGET_NODE:
4459 case PM_CONSTANT_TARGET_NODE:
4460 case PM_GLOBAL_VARIABLE_TARGET_NODE:
4461 case PM_INDEX_TARGET_NODE:
4462 case PM_INSTANCE_VARIABLE_TARGET_NODE:
4463 case PM_LOCAL_VARIABLE_TARGET_NODE:
4464 case PM_MULTI_TARGET_NODE:
4467 case PM_ENSURE_NODE:
4469 case PM_RESCUE_NODE:
4473 case PM_EMBEDDED_STATEMENTS_NODE:
4474 case PM_EMBEDDED_VARIABLE_NODE:
4475 case PM_MISSING_NODE:
4476 case PM_PRE_EXECUTION_NODE:
4477 case PM_PROGRAM_NODE:
4479 case PM_STATEMENTS_NODE:
4480 rb_bug(
"Unreachable node in defined?: %s", pm_node_type_to_str(PM_NODE_TYPE(node)));
4484 PUSH_INSN1(ret, location, putobject, PUSH_VAL(dtype));
4490pm_defined_expr(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node,
bool in_condition, LABEL **lfinish,
bool explicit_receiver)
4492 LINK_ELEMENT *lcur = ret->last;
4493 pm_compile_defined_expr0(iseq, node, node_location, ret, popped, scope_node, in_condition, lfinish,
false);
4496 LABEL *lstart = NEW_LABEL(node_location->
line);
4497 LABEL *lend = NEW_LABEL(node_location->
line);
4500 rb_iseq_new_with_callback_new_callback(build_defined_rescue_iseq, NULL);
4502 const rb_iseq_t *rescue = new_child_iseq_with_callback(
4511 lstart->rescued = LABEL_RESCUE_BEG;
4512 lend->rescued = LABEL_RESCUE_END;
4514 APPEND_LABEL(ret, lcur, lstart);
4515 PUSH_LABEL(ret, lend);
4516 PUSH_CATCH_ENTRY(CATCH_TYPE_RESCUE, lstart, lend, rescue, lfinish[1]);
4521pm_compile_defined_expr(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node,
bool in_condition)
4524 LINK_ELEMENT *last = ret->last;
4526 lfinish[0] = NEW_LABEL(node_location->
line);
4531 pm_defined_expr(iseq, node, node_location, ret, popped, scope_node, in_condition, lfinish,
false);
4535 ELEM_INSERT_NEXT(last, &new_insn_body(iseq, node_location->
line, node_location->
node_id, BIN(putnil), 0)->link);
4536 PUSH_INSN(ret, *node_location, swap);
4538 if (lfinish[2]) PUSH_LABEL(ret, lfinish[2]);
4539 PUSH_INSN(ret, *node_location, pop);
4540 PUSH_LABEL(ret, lfinish[1]);
4544 PUSH_LABEL(ret, lfinish[0]);
4550pm_add_ensure_iseq(LINK_ANCHOR *
const ret, rb_iseq_t *iseq,
int is_return, pm_scope_node_t *scope_node)
4555 ISEQ_COMPILE_DATA(iseq)->ensure_node_stack;
4557 DECL_ANCHOR(ensure);
4560 if (enlp->erange != NULL) {
4561 DECL_ANCHOR(ensure_part);
4562 LABEL *lstart = NEW_LABEL(0);
4563 LABEL *lend = NEW_LABEL(0);
4565 add_ensure_range(iseq, enlp->erange, lstart, lend);
4567 ISEQ_COMPILE_DATA(iseq)->ensure_node_stack = enlp->prev;
4568 PUSH_LABEL(ensure_part, lstart);
4570 PM_COMPILE_INTO_ANCHOR(ensure_part, (
const pm_node_t *) enlp->ensure_node);
4571 PUSH_LABEL(ensure_part, lend);
4572 PUSH_SEQ(ensure, ensure_part);
4581 ISEQ_COMPILE_DATA(iseq)->ensure_node_stack = prev_enlp;
4582 PUSH_SEQ(ret, ensure);
4586 pm_scope_node_t *scope_node;
4587 rb_ast_id_table_t *local_table_for_iseq;
4592pm_local_table_insert_func(st_data_t *key, st_data_t *value, st_data_t arg,
int existing)
4598 pm_scope_node_t *scope_node = ctx->scope_node;
4599 rb_ast_id_table_t *local_table_for_iseq = ctx->local_table_for_iseq;
4600 int local_index = ctx->local_index;
4602 ID local = pm_constant_id_lookup(scope_node, constant_id);
4603 local_table_for_iseq->ids[local_index] = local;
4605 *value = (st_data_t)local_index;
4619pm_insert_local_index(
pm_constant_id_t constant_id,
int local_index, st_table *index_lookup_table, rb_ast_id_table_t *local_table_for_iseq, pm_scope_node_t *scope_node)
4621 RUBY_ASSERT((constant_id & PM_SPECIAL_CONSTANT_FLAG) == 0);
4623 ID local = pm_constant_id_lookup(scope_node, constant_id);
4624 local_table_for_iseq->ids[local_index] = local;
4625 st_insert(index_lookup_table, (st_data_t) constant_id, (st_data_t) local_index);
4633pm_insert_local_special(
ID local_name,
int local_index, st_table *index_lookup_table, rb_ast_id_table_t *local_table_for_iseq)
4635 local_table_for_iseq->ids[local_index] = local_name;
4636 st_insert(index_lookup_table, (st_data_t) (local_name | PM_SPECIAL_CONSTANT_FLAG), (st_data_t) local_index);
4646pm_compile_destructured_param_locals(
const pm_multi_target_node_t *node, st_table *index_lookup_table, rb_ast_id_table_t *local_table_for_iseq, pm_scope_node_t *scope_node,
int local_index)
4648 for (
size_t index = 0; index < node->
lefts.
size; index++) {
4649 const pm_node_t *left = node->
lefts.
nodes[index];
4651 if (PM_NODE_TYPE_P(left, PM_REQUIRED_PARAMETER_NODE)) {
4652 if (!PM_NODE_FLAG_P(left, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
4653 pm_insert_local_index(((
const pm_required_parameter_node_t *) left)->name, local_index, index_lookup_table, local_table_for_iseq, scope_node);
4658 RUBY_ASSERT(PM_NODE_TYPE_P(left, PM_MULTI_TARGET_NODE));
4659 local_index = pm_compile_destructured_param_locals((
const pm_multi_target_node_t *) left, index_lookup_table, local_table_for_iseq, scope_node, local_index);
4663 if (node->
rest != NULL && PM_NODE_TYPE_P(node->
rest, PM_SPLAT_NODE)) {
4664 const pm_splat_node_t *rest = (
const pm_splat_node_t *) node->
rest;
4666 if (rest->expression != NULL) {
4667 RUBY_ASSERT(PM_NODE_TYPE_P(rest->expression, PM_REQUIRED_PARAMETER_NODE));
4669 if (!PM_NODE_FLAG_P(rest->expression, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
4670 pm_insert_local_index(((
const pm_required_parameter_node_t *) rest->expression)->name, local_index, index_lookup_table, local_table_for_iseq, scope_node);
4676 for (
size_t index = 0; index < node->
rights.
size; index++) {
4677 const pm_node_t *right = node->
rights.
nodes[index];
4679 if (PM_NODE_TYPE_P(right, PM_REQUIRED_PARAMETER_NODE)) {
4680 if (!PM_NODE_FLAG_P(right, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
4681 pm_insert_local_index(((
const pm_required_parameter_node_t *) right)->name, local_index, index_lookup_table, local_table_for_iseq, scope_node);
4686 RUBY_ASSERT(PM_NODE_TYPE_P(right, PM_MULTI_TARGET_NODE));
4687 local_index = pm_compile_destructured_param_locals((
const pm_multi_target_node_t *) right, index_lookup_table, local_table_for_iseq, scope_node, local_index);
4699pm_compile_destructured_param_write(rb_iseq_t *iseq,
const pm_required_parameter_node_t *node, LINK_ANCHOR *
const ret,
const pm_scope_node_t *scope_node)
4701 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
4702 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, node->
name, 0);
4703 PUSH_SETLOCAL(ret, location, index.index, index.level);
4715pm_compile_destructured_param_writes(rb_iseq_t *iseq,
const pm_multi_target_node_t *node, LINK_ANCHOR *
const ret,
const pm_scope_node_t *scope_node)
4717 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
4718 bool has_rest = (node->
rest && PM_NODE_TYPE_P(node->
rest, PM_SPLAT_NODE) && (((
const pm_splat_node_t *) node->
rest)->expression) != NULL);
4721 int flag = (has_rest || has_rights) ? 1 : 0;
4724 for (
size_t index = 0; index < node->
lefts.
size; index++) {
4725 const pm_node_t *left = node->
lefts.
nodes[index];
4727 if (PM_NODE_TYPE_P(left, PM_REQUIRED_PARAMETER_NODE)) {
4728 pm_compile_destructured_param_write(iseq, (
const pm_required_parameter_node_t *) left, ret, scope_node);
4731 RUBY_ASSERT(PM_NODE_TYPE_P(left, PM_MULTI_TARGET_NODE));
4732 pm_compile_destructured_param_writes(iseq, (
const pm_multi_target_node_t *) left, ret, scope_node);
4741 const pm_node_t *rest = ((
const pm_splat_node_t *) node->
rest)->expression;
4742 RUBY_ASSERT(PM_NODE_TYPE_P(rest, PM_REQUIRED_PARAMETER_NODE));
4744 pm_compile_destructured_param_write(iseq, (
const pm_required_parameter_node_t *) rest, ret, scope_node);
4752 for (
size_t index = 0; index < node->
rights.
size; index++) {
4753 const pm_node_t *right = node->
rights.
nodes[index];
4755 if (PM_NODE_TYPE_P(right, PM_REQUIRED_PARAMETER_NODE)) {
4756 pm_compile_destructured_param_write(iseq, (
const pm_required_parameter_node_t *) right, ret, scope_node);
4759 RUBY_ASSERT(PM_NODE_TYPE_P(right, PM_MULTI_TARGET_NODE));
4760 pm_compile_destructured_param_writes(iseq, (
const pm_multi_target_node_t *) right, ret, scope_node);
4787} pm_multi_target_state_node_t;
4805 pm_multi_target_state_node_t *head;
4808 pm_multi_target_state_node_t *tail;
4817 pm_multi_target_state_node_t *node =
ALLOC(pm_multi_target_state_node_t);
4819 node->stack_index = state->stack_size + 1;
4820 node->stack_size = stack_size;
4821 node->position = state->position;
4824 if (state->head == NULL) {
4829 state->tail->next = node;
4833 state->stack_size += stack_size;
4846 if (state->stack_size == 0)
return;
4848 pm_multi_target_state_node_t *current = state->head;
4849 pm_multi_target_state_node_t *previous;
4851 while (current != NULL) {
4852 VALUE offset =
INT2FIX(state->stack_size - current->stack_index + current->position);
4853 current->topn->operands[0] = offset;
4859 if (current->stack_size > 1) {
4860 INSN *insn = current->topn;
4862 for (
size_t index = 1; index < current->stack_size; index += 1) {
4863 LINK_ELEMENT *element = get_next_insn(insn);
4866 insn = (INSN *) element;
4869 insn->operands[0] = offset;
4874 current = current->next;
4881pm_compile_multi_target_node(rb_iseq_t *iseq,
const pm_node_t *node, LINK_ANCHOR *
const parents, LINK_ANCHOR *
const writes, LINK_ANCHOR *
const cleanup, pm_scope_node_t *scope_node,
pm_multi_target_state_t *state);
4912pm_compile_target_node(rb_iseq_t *iseq,
const pm_node_t *node, LINK_ANCHOR *
const parents, LINK_ANCHOR *
const writes, LINK_ANCHOR *
const cleanup, pm_scope_node_t *scope_node,
pm_multi_target_state_t *state)
4914 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
4916 switch (PM_NODE_TYPE(node)) {
4917 case PM_LOCAL_VARIABLE_TARGET_NODE: {
4923 const pm_local_variable_target_node_t *cast = (
const pm_local_variable_target_node_t *) node;
4924 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, cast->
name, cast->
depth);
4926 PUSH_SETLOCAL(writes, location, index.index, index.level);
4929 case PM_CLASS_VARIABLE_TARGET_NODE: {
4935 const pm_class_variable_target_node_t *cast = (
const pm_class_variable_target_node_t *) node;
4936 ID name = pm_constant_id_lookup(scope_node, cast->
name);
4939 PUSH_INSN2(writes, location, setclassvariable, operand, get_cvar_ic_value(iseq, name));
4942 case PM_CONSTANT_TARGET_NODE: {
4948 const pm_constant_target_node_t *cast = (
const pm_constant_target_node_t *) node;
4949 ID name = pm_constant_id_lookup(scope_node, cast->
name);
4952 PUSH_INSN1(writes, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_CONST_BASE));
4953 PUSH_INSN1(writes, location, setconstant, operand);
4956 case PM_GLOBAL_VARIABLE_TARGET_NODE: {
4962 const pm_global_variable_target_node_t *cast = (
const pm_global_variable_target_node_t *) node;
4963 ID name = pm_constant_id_lookup(scope_node, cast->
name);
4966 PUSH_INSN1(writes, location, setglobal, operand);
4969 case PM_INSTANCE_VARIABLE_TARGET_NODE: {
4975 const pm_instance_variable_target_node_t *cast = (
const pm_instance_variable_target_node_t *) node;
4976 ID name = pm_constant_id_lookup(scope_node, cast->
name);
4979 PUSH_INSN2(writes, location, setinstancevariable, operand, get_ivar_ic_value(iseq, name));
4982 case PM_CONSTANT_PATH_TARGET_NODE: {
4991 const pm_constant_path_target_node_t *cast = (
const pm_constant_path_target_node_t *) node;
4992 ID name = pm_constant_id_lookup(scope_node, cast->
name);
4994 if (cast->
parent != NULL) {
4995 pm_compile_node(iseq, cast->
parent, parents,
false, scope_node);
4998 PUSH_INSN1(parents, location, putobject, rb_cObject);
5001 if (state == NULL) {
5002 PUSH_INSN(writes, location, swap);
5005 PUSH_INSN1(writes, location, topn,
INT2FIX(1));
5006 pm_multi_target_state_push(state, (INSN *) LAST_ELEMENT(writes), 1);
5010 PUSH_INSN1(writes, location, setconstant, operand);
5012 if (state != NULL) {
5013 PUSH_INSN(cleanup, location, pop);
5018 case PM_CALL_TARGET_NODE: {
5027 const pm_call_target_node_t *cast = (
const pm_call_target_node_t *) node;
5028 ID method_id = pm_constant_id_lookup(scope_node, cast->
name);
5030 pm_compile_node(iseq, cast->
receiver, parents,
false, scope_node);
5032 LABEL *safe_label = NULL;
5033 if (PM_NODE_FLAG_P(cast, PM_CALL_NODE_FLAGS_SAFE_NAVIGATION)) {
5034 safe_label = NEW_LABEL(location.
line);
5035 PUSH_INSN(parents, location, dup);
5036 PUSH_INSNL(parents, location, branchnil, safe_label);
5039 if (state != NULL) {
5040 PUSH_INSN1(writes, location, topn,
INT2FIX(1));
5041 pm_multi_target_state_push(state, (INSN *) LAST_ELEMENT(writes), 1);
5042 PUSH_INSN(writes, location, swap);
5045 int flags = VM_CALL_ARGS_SIMPLE;
5046 if (PM_NODE_FLAG_P(cast, PM_CALL_NODE_FLAGS_IGNORE_VISIBILITY)) flags |= VM_CALL_FCALL;
5048 PUSH_SEND_WITH_FLAG(writes, location, method_id,
INT2FIX(1),
INT2FIX(flags));
5049 if (safe_label != NULL && state == NULL) PUSH_LABEL(writes, safe_label);
5050 PUSH_INSN(writes, location, pop);
5051 if (safe_label != NULL && state != NULL) PUSH_LABEL(writes, safe_label);
5053 if (state != NULL) {
5054 PUSH_INSN(cleanup, location, pop);
5059 case PM_INDEX_TARGET_NODE: {
5069 const pm_index_target_node_t *cast = (
const pm_index_target_node_t *) node;
5071 pm_compile_node(iseq, cast->
receiver, parents,
false, scope_node);
5075 int argc = pm_setup_args(cast->
arguments, (
const pm_node_t *) cast->
block, &flags, &kwargs, iseq, parents, scope_node, &location);
5077 if (state != NULL) {
5078 PUSH_INSN1(writes, location, topn,
INT2FIX(argc + 1));
5079 pm_multi_target_state_push(state, (INSN *) LAST_ELEMENT(writes), argc + 1);
5082 PUSH_INSN(writes, location, swap);
5085 for (
int index = 0; index < argc; index++) {
5086 PUSH_INSN1(writes, location, topn,
INT2FIX(argc + 1));
5088 PUSH_INSN1(writes, location, topn,
INT2FIX(argc + 1));
5096 int ci_argc = argc + 1;
5097 if (flags & VM_CALL_ARGS_SPLAT) {
5099 PUSH_INSN1(writes, location, newarray,
INT2FIX(1));
5100 PUSH_INSN(writes, location, concatarray);
5103 PUSH_SEND_R(writes, location, idASET,
INT2NUM(ci_argc), NULL,
INT2FIX(flags), kwargs);
5104 PUSH_INSN(writes, location, pop);
5106 if (state != NULL) {
5108 PUSH_INSN(writes, location, pop);
5111 for (
int index = 0; index < argc + 1; index++) {
5112 PUSH_INSN(cleanup, location, pop);
5118 case PM_MULTI_TARGET_NODE: {
5125 size_t before_position;
5126 if (state != NULL) {
5127 before_position = state->position;
5131 pm_compile_multi_target_node(iseq, node, parents, writes, cleanup, scope_node, state);
5132 if (state != NULL) state->position = before_position;
5136 case PM_SPLAT_NODE: {
5142 const pm_splat_node_t *cast = (
const pm_splat_node_t *) node;
5145 pm_compile_target_node(iseq, cast->
expression, parents, writes, cleanup, scope_node, state);
5151 rb_bug(
"Unexpected node type: %s", pm_node_type_to_str(PM_NODE_TYPE(node)));
5162pm_compile_multi_target_node(rb_iseq_t *iseq,
const pm_node_t *node, LINK_ANCHOR *
const parents, LINK_ANCHOR *
const writes, LINK_ANCHOR *
const cleanup, pm_scope_node_t *scope_node,
pm_multi_target_state_t *state)
5164 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
5165 const pm_node_list_t *lefts;
5166 const pm_node_t *rest;
5167 const pm_node_list_t *rights;
5169 switch (PM_NODE_TYPE(node)) {
5170 case PM_MULTI_TARGET_NODE: {
5171 const pm_multi_target_node_t *cast = (
const pm_multi_target_node_t *) node;
5172 lefts = &cast->
lefts;
5177 case PM_MULTI_WRITE_NODE: {
5178 const pm_multi_write_node_t *cast = (
const pm_multi_write_node_t *) node;
5179 lefts = &cast->
lefts;
5185 rb_bug(
"Unsupported node %s", pm_node_type_to_str(PM_NODE_TYPE(node)));
5189 bool has_rest = (rest != NULL) && PM_NODE_TYPE_P(rest, PM_SPLAT_NODE) && ((
const pm_splat_node_t *) rest)->expression != NULL;
5190 bool has_posts = rights->
size > 0;
5195 PUSH_INSN2(writes, location, expandarray,
INT2FIX(lefts->
size),
INT2FIX((has_rest || has_posts) ? 1 : 0));
5201 if (state == NULL) state = &target_state;
5203 size_t base_position = state->position;
5204 size_t splat_position = (has_rest || has_posts) ? 1 : 0;
5207 for (
size_t index = 0; index < lefts->
size; index++) {
5208 const pm_node_t *target = lefts->
nodes[index];
5209 state->position = lefts->
size - index + splat_position + base_position;
5210 pm_compile_target_node(iseq, target, parents, writes, cleanup, scope_node, state);
5215 const pm_node_t *target = ((
const pm_splat_node_t *) rest)->expression;
5216 state->position = 1 + rights->
size + base_position;
5222 pm_compile_target_node(iseq, target, parents, writes, cleanup, scope_node, state);
5227 if (!has_rest && rest != NULL) {
5231 for (
size_t index = 0; index < rights->
size; index++) {
5232 const pm_node_t *target = rights->
nodes[index];
5233 state->position = rights->
size - index + base_position;
5234 pm_compile_target_node(iseq, target, parents, writes, cleanup, scope_node, state);
5245pm_compile_for_node_index(rb_iseq_t *iseq,
const pm_node_t *node, LINK_ANCHOR *
const ret, pm_scope_node_t *scope_node)
5247 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
5249 switch (PM_NODE_TYPE(node)) {
5250 case PM_LOCAL_VARIABLE_TARGET_NODE: {
5253 PUSH_GETLOCAL(ret, location, 1, 0);
5254 pm_compile_target_node(iseq, node, ret, ret, ret, scope_node, NULL);
5257 case PM_CLASS_VARIABLE_TARGET_NODE:
5258 case PM_CONSTANT_TARGET_NODE:
5259 case PM_GLOBAL_VARIABLE_TARGET_NODE:
5260 case PM_INSTANCE_VARIABLE_TARGET_NODE:
5261 case PM_CONSTANT_PATH_TARGET_NODE:
5262 case PM_CALL_TARGET_NODE:
5263 case PM_INDEX_TARGET_NODE: {
5267 DECL_ANCHOR(writes);
5268 DECL_ANCHOR(cleanup);
5272 pm_compile_target_node(iseq, node, ret, writes, cleanup, scope_node, &state);
5274 PUSH_GETLOCAL(ret, location, 1, 0);
5277 PUSH_SEQ(ret, writes);
5278 PUSH_SEQ(ret, cleanup);
5280 pm_multi_target_state_update(&state);
5284 case PM_MULTI_TARGET_NODE: {
5285 DECL_ANCHOR(writes);
5286 DECL_ANCHOR(cleanup);
5288 pm_compile_target_node(iseq, node, ret, writes, cleanup, scope_node, NULL);
5290 LABEL *not_single = NEW_LABEL(location.
line);
5291 LABEL *not_ary = NEW_LABEL(location.
line);
5299 PUSH_GETLOCAL(ret, location, 1, 0);
5300 PUSH_INSN(ret, location, dup);
5301 PUSH_CALL(ret, location, idLength,
INT2FIX(0));
5302 PUSH_INSN1(ret, location, putobject,
INT2FIX(1));
5303 PUSH_CALL(ret, location, idEq,
INT2FIX(1));
5304 PUSH_INSNL(ret, location, branchunless, not_single);
5305 PUSH_INSN(ret, location, dup);
5306 PUSH_INSN1(ret, location, putobject,
INT2FIX(0));
5307 PUSH_CALL(ret, location, idAREF,
INT2FIX(1));
5308 PUSH_INSN1(ret, location, putobject,
rb_cArray);
5309 PUSH_INSN(ret, location, swap);
5310 PUSH_CALL(ret, location, rb_intern(
"try_convert"),
INT2FIX(1));
5311 PUSH_INSN(ret, location, dup);
5312 PUSH_INSNL(ret, location, branchunless, not_ary);
5313 PUSH_INSN(ret, location, swap);
5315 PUSH_LABEL(ret, not_ary);
5316 PUSH_INSN(ret, location, pop);
5318 PUSH_LABEL(ret, not_single);
5320 if (PM_NODE_TYPE_P(node, PM_SPLAT_NODE)) {
5321 const pm_splat_node_t *cast = (
const pm_splat_node_t *) node;
5325 PUSH_SEQ(ret, writes);
5326 PUSH_SEQ(ret, cleanup);
5330 rb_bug(
"Unexpected node type for index in for node: %s", pm_node_type_to_str(PM_NODE_TYPE(node)));
5336pm_compile_rescue(rb_iseq_t *iseq,
const pm_begin_node_t *cast,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
5340 LABEL *lstart = NEW_LABEL(node_location->
line);
5341 LABEL *lend = NEW_LABEL(node_location->
line);
5342 LABEL *lcont = NEW_LABEL(node_location->
line);
5344 pm_scope_node_t rescue_scope_node;
5345 pm_scope_node_init((
const pm_node_t *) cast->
rescue_clause, &rescue_scope_node, scope_node);
5347 rb_iseq_t *rescue_iseq = NEW_CHILD_ISEQ(
5351 pm_node_line_number(parser, (
const pm_node_t *) cast->
rescue_clause)
5354 pm_scope_node_destroy(&rescue_scope_node);
5356 lstart->rescued = LABEL_RESCUE_BEG;
5357 lend->rescued = LABEL_RESCUE_END;
5358 PUSH_LABEL(ret, lstart);
5360 bool prev_in_rescue = ISEQ_COMPILE_DATA(iseq)->in_rescue;
5361 ISEQ_COMPILE_DATA(iseq)->in_rescue =
true;
5364 PM_COMPILE_NOT_POPPED((
const pm_node_t *) cast->
statements);
5368 PUSH_INSN(ret, location, putnil);
5371 ISEQ_COMPILE_DATA(iseq)->in_rescue = prev_in_rescue;
5372 PUSH_LABEL(ret, lend);
5375 if (!popped) PUSH_INSN(ret, *node_location, pop);
5376 PM_COMPILE((
const pm_node_t *) cast->
else_clause);
5379 PUSH_INSN(ret, *node_location, nop);
5380 PUSH_LABEL(ret, lcont);
5382 if (popped) PUSH_INSN(ret, *node_location, pop);
5383 PUSH_CATCH_ENTRY(CATCH_TYPE_RESCUE, lstart, lend, rescue_iseq, lcont);
5384 PUSH_CATCH_ENTRY(CATCH_TYPE_RETRY, lend, lcont, NULL, lstart);
5388pm_compile_ensure(rb_iseq_t *iseq,
const pm_begin_node_t *cast,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
5394 if (statements != NULL) {
5395 location = PM_NODE_START_LOCATION(parser, statements);
5398 location = *node_location;
5401 LABEL *lstart = NEW_LABEL(location.
line);
5402 LABEL *lend = NEW_LABEL(location.
line);
5403 LABEL *lcont = NEW_LABEL(location.
line);
5410 if (statements != NULL) {
5411 pm_compile_node(iseq, (
const pm_node_t *) statements, ensr,
true, scope_node);
5414 LINK_ELEMENT *last = ensr->last;
5415 bool last_leave = last && IS_INSN(last) && IS_INSN_ID(last, leave);
5420 push_ensure_entry(iseq, &enl, &er, (
void *) cast->
ensure_clause);
5422 PUSH_LABEL(ret, lstart);
5424 pm_compile_rescue(iseq, cast, node_location, ret, popped | last_leave, scope_node);
5427 pm_compile_node(iseq, (
const pm_node_t *) cast->
statements, ret, popped | last_leave, scope_node);
5429 else if (!(popped | last_leave)) {
5430 PUSH_SYNTHETIC_PUTNIL(ret, iseq);
5433 PUSH_LABEL(ret, lend);
5434 PUSH_SEQ(ret, ensr);
5435 if (!popped && last_leave) PUSH_INSN(ret, *node_location, putnil);
5436 PUSH_LABEL(ret, lcont);
5437 if (last_leave) PUSH_INSN(ret, *node_location, pop);
5439 pm_scope_node_t next_scope_node;
5440 pm_scope_node_init((
const pm_node_t *) cast->
ensure_clause, &next_scope_node, scope_node);
5442 rb_iseq_t *child_iseq = NEW_CHILD_ISEQ(
5449 pm_scope_node_destroy(&next_scope_node);
5451 erange = ISEQ_COMPILE_DATA(iseq)->ensure_node_stack->erange;
5452 if (lstart->link.next != &lend->link) {
5454 PUSH_CATCH_ENTRY(CATCH_TYPE_ENSURE, erange->begin, erange->end, child_iseq, lcont);
5455 erange = erange->next;
5458 ISEQ_COMPILE_DATA(iseq)->ensure_node_stack = enl.prev;
5466pm_opt_str_freeze_p(
const rb_iseq_t *iseq,
const pm_call_node_t *node)
5469 !PM_NODE_FLAG_P(node, PM_CALL_NODE_FLAGS_SAFE_NAVIGATION) &&
5471 PM_NODE_TYPE_P(node->
receiver, PM_STRING_NODE) &&
5473 node->
block == NULL &&
5474 ISEQ_COMPILE_DATA(iseq)->option->specialized_instruction
5483pm_opt_aref_with_p(
const rb_iseq_t *iseq,
const pm_call_node_t *node)
5486 !PM_NODE_FLAG_P(node, PM_CALL_NODE_FLAGS_SAFE_NAVIGATION) &&
5488 PM_NODE_TYPE_P((
const pm_node_t *) node->
arguments, PM_ARGUMENTS_NODE) &&
5490 PM_NODE_TYPE_P(((
const pm_arguments_node_t *) node->
arguments)->arguments.nodes[0], PM_STRING_NODE) &&
5491 node->
block == NULL &&
5492 !PM_NODE_FLAG_P(((
const pm_arguments_node_t *) node->
arguments)->arguments.nodes[0], PM_STRING_FLAGS_FROZEN) &&
5493 ISEQ_COMPILE_DATA(iseq)->option->specialized_instruction
5502pm_opt_aset_with_p(
const rb_iseq_t *iseq,
const pm_call_node_t *node)
5505 !PM_NODE_FLAG_P(node, PM_CALL_NODE_FLAGS_SAFE_NAVIGATION) &&
5507 PM_NODE_TYPE_P((
const pm_node_t *) node->
arguments, PM_ARGUMENTS_NODE) &&
5509 PM_NODE_TYPE_P(((
const pm_arguments_node_t *) node->
arguments)->arguments.nodes[0], PM_STRING_NODE) &&
5510 node->
block == NULL &&
5511 !PM_NODE_FLAG_P(((
const pm_arguments_node_t *) node->
arguments)->arguments.nodes[0], PM_STRING_FLAGS_FROZEN) &&
5512 ISEQ_COMPILE_DATA(iseq)->option->specialized_instruction
5521pm_compile_constant_read(rb_iseq_t *iseq,
VALUE name,
const pm_location_t *name_loc, uint32_t node_id, LINK_ANCHOR *
const ret,
const pm_scope_node_t *scope_node)
5523 const pm_node_location_t location = PM_LOCATION_START_LOCATION(scope_node->parser, name_loc, node_id);
5525 if (ISEQ_COMPILE_DATA(iseq)->option->inline_const_cache) {
5526 ISEQ_BODY(iseq)->ic_size++;
5527 VALUE segments = rb_ary_new_from_args(1, name);
5528 PUSH_INSN1(ret, location, opt_getconstant_path, segments);
5531 PUSH_INSN(ret, location, putnil);
5532 PUSH_INSN1(ret, location, putobject,
Qtrue);
5533 PUSH_INSN1(ret, location, getconstant, name);
5542pm_constant_path_parts(
const pm_node_t *node,
const pm_scope_node_t *scope_node)
5547 switch (PM_NODE_TYPE(node)) {
5548 case PM_CONSTANT_READ_NODE: {
5549 const pm_constant_read_node_t *cast = (
const pm_constant_read_node_t *) node;
5552 rb_ary_unshift(parts, name);
5555 case PM_CONSTANT_PATH_NODE: {
5556 const pm_constant_path_node_t *cast = (
const pm_constant_path_node_t *) node;
5559 rb_ary_unshift(parts, name);
5560 if (cast->
parent == NULL) {
5561 rb_ary_unshift(parts,
ID2SYM(idNULL));
5580pm_compile_constant_path(rb_iseq_t *iseq,
const pm_node_t *node, LINK_ANCHOR *
const prefix, LINK_ANCHOR *
const body,
bool popped, pm_scope_node_t *scope_node)
5582 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
5584 switch (PM_NODE_TYPE(node)) {
5585 case PM_CONSTANT_READ_NODE: {
5586 const pm_constant_read_node_t *cast = (
const pm_constant_read_node_t *) node;
5589 PUSH_INSN1(body, location, putobject,
Qtrue);
5590 PUSH_INSN1(body, location, getconstant, name);
5593 case PM_CONSTANT_PATH_NODE: {
5594 const pm_constant_path_node_t *cast = (
const pm_constant_path_node_t *) node;
5597 if (cast->
parent == NULL) {
5598 PUSH_INSN(body, location, pop);
5599 PUSH_INSN1(body, location, putobject, rb_cObject);
5600 PUSH_INSN1(body, location, putobject,
Qtrue);
5601 PUSH_INSN1(body, location, getconstant, name);
5604 pm_compile_constant_path(iseq, cast->
parent, prefix, body,
false, scope_node);
5605 PUSH_INSN1(body, location, putobject,
Qfalse);
5606 PUSH_INSN1(body, location, getconstant, name);
5611 PM_COMPILE_INTO_ANCHOR(prefix, node);
5620pm_compile_shareable_constant_literal(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_scope_node_t *scope_node)
5622 switch (PM_NODE_TYPE(node)) {
5626 case PM_SYMBOL_NODE:
5627 case PM_REGULAR_EXPRESSION_NODE:
5628 case PM_SOURCE_LINE_NODE:
5629 case PM_INTEGER_NODE:
5631 case PM_RATIONAL_NODE:
5632 case PM_IMAGINARY_NODE:
5633 case PM_SOURCE_ENCODING_NODE:
5634 return pm_static_literal_value(iseq, node, scope_node);
5635 case PM_STRING_NODE:
5636 return parse_static_literal_string(iseq, scope_node, node, &((
const pm_string_node_t *) node)->unescaped);
5637 case PM_SOURCE_FILE_NODE:
5638 return pm_source_file_value((
const pm_source_file_node_t *) node, scope_node);
5639 case PM_ARRAY_NODE: {
5640 const pm_array_node_t *cast = (
const pm_array_node_t *) node;
5643 for (
size_t index = 0; index < cast->
elements.
size; index++) {
5644 VALUE element = pm_compile_shareable_constant_literal(iseq, cast->
elements.
nodes[index], scope_node);
5647 rb_ary_push(result, element);
5652 case PM_HASH_NODE: {
5653 const pm_hash_node_t *cast = (
const pm_hash_node_t *) node;
5656 for (
size_t index = 0; index < cast->
elements.
size; index++) {
5658 if (!PM_NODE_TYPE_P(element, PM_ASSOC_NODE))
return Qundef;
5660 const pm_assoc_node_t *assoc = (
const pm_assoc_node_t *) element;
5662 VALUE key = pm_compile_shareable_constant_literal(iseq, assoc->
key, scope_node);
5665 VALUE value = pm_compile_shareable_constant_literal(iseq, assoc->
value, scope_node);
5668 rb_hash_aset(result, key, value);
5683pm_compile_shareable_constant_value(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_flags_t shareability,
VALUE path, LINK_ANCHOR *
const ret, pm_scope_node_t *scope_node,
bool top)
5685 VALUE literal = pm_compile_shareable_constant_literal(iseq, node, scope_node);
5687 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
5688 PUSH_INSN1(ret, location, putobject, literal);
5692 const pm_node_location_t location = PM_NODE_START_LOCATION(scope_node->parser, node);
5693 switch (PM_NODE_TYPE(node)) {
5694 case PM_ARRAY_NODE: {
5695 const pm_array_node_t *cast = (
const pm_array_node_t *) node;
5698 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
5701 for (
size_t index = 0; index < cast->
elements.
size; index++) {
5702 pm_compile_shareable_constant_value(iseq, cast->
elements.
nodes[index], shareability, path, ret, scope_node,
false);
5708 ID method_id = (shareability & PM_SHAREABLE_CONSTANT_NODE_FLAGS_EXPERIMENTAL_COPY) ? rb_intern(
"make_shareable_copy") : rb_intern(
"make_shareable");
5709 PUSH_SEND_WITH_FLAG(ret, location, method_id,
INT2FIX(1),
INT2FIX(VM_CALL_ARGS_SIMPLE));
5714 case PM_HASH_NODE: {
5715 const pm_hash_node_t *cast = (
const pm_hash_node_t *) node;
5718 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
5721 pm_compile_hash_elements(iseq, (
const pm_node_t *) cast, &cast->elements, shareability, path,
false, ret, scope_node);
5724 ID method_id = (shareability & PM_SHAREABLE_CONSTANT_NODE_FLAGS_EXPERIMENTAL_COPY) ? rb_intern(
"make_shareable_copy") : rb_intern(
"make_shareable");
5725 PUSH_SEND_WITH_FLAG(ret, location, method_id,
INT2FIX(1),
INT2FIX(VM_CALL_ARGS_SIMPLE));
5731 DECL_ANCHOR(value_seq);
5733 pm_compile_node(iseq, node, value_seq,
false, scope_node);
5734 if (PM_NODE_TYPE_P(node, PM_INTERPOLATED_STRING_NODE)) {
5735 PUSH_SEND_WITH_FLAG(value_seq, location, idUMinus,
INT2FIX(0),
INT2FIX(VM_CALL_ARGS_SIMPLE));
5738 if (shareability & PM_SHAREABLE_CONSTANT_NODE_FLAGS_LITERAL) {
5739 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
5740 PUSH_SEQ(ret, value_seq);
5741 PUSH_INSN1(ret, location, putobject, path);
5742 PUSH_SEND_WITH_FLAG(ret, location, rb_intern(
"ensure_shareable"),
INT2FIX(2),
INT2FIX(VM_CALL_ARGS_SIMPLE));
5744 else if (shareability & PM_SHAREABLE_CONSTANT_NODE_FLAGS_EXPERIMENTAL_COPY) {
5745 if (top) PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
5746 PUSH_SEQ(ret, value_seq);
5747 if (top) PUSH_SEND_WITH_FLAG(ret, location, rb_intern(
"make_shareable_copy"),
INT2FIX(1),
INT2FIX(VM_CALL_ARGS_SIMPLE));
5749 else if (shareability & PM_SHAREABLE_CONSTANT_NODE_FLAGS_EXPERIMENTAL_EVERYTHING) {
5750 if (top) PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
5751 PUSH_SEQ(ret, value_seq);
5752 if (top) PUSH_SEND_WITH_FLAG(ret, location, rb_intern(
"make_shareable"),
INT2FIX(1),
INT2FIX(VM_CALL_ARGS_SIMPLE));
5765pm_compile_constant_write_node(rb_iseq_t *iseq,
const pm_constant_write_node_t *node,
const pm_node_flags_t shareability,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
5768 ID name_id = pm_constant_id_lookup(scope_node, node->
name);
5770 if (shareability != 0) {
5771 pm_compile_shareable_constant_value(iseq, node->
value, shareability, rb_id2str(name_id), ret, scope_node,
true);
5774 PM_COMPILE_NOT_POPPED(node->
value);
5777 if (!popped) PUSH_INSN(ret, location, dup);
5778 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_CONST_BASE));
5781 PUSH_INSN1(ret, location, setconstant, operand);
5789pm_compile_constant_and_write_node(rb_iseq_t *iseq,
const pm_constant_and_write_node_t *node,
const pm_node_flags_t shareability,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
5794 LABEL *end_label = NEW_LABEL(location.
line);
5796 pm_compile_constant_read(iseq, name, &node->
name_loc, location.
node_id, ret, scope_node);
5797 if (!popped) PUSH_INSN(ret, location, dup);
5799 PUSH_INSNL(ret, location, branchunless, end_label);
5800 if (!popped) PUSH_INSN(ret, location, pop);
5802 if (shareability != 0) {
5803 pm_compile_shareable_constant_value(iseq, node->
value, shareability, name, ret, scope_node,
true);
5806 PM_COMPILE_NOT_POPPED(node->
value);
5809 if (!popped) PUSH_INSN(ret, location, dup);
5810 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_CONST_BASE));
5811 PUSH_INSN1(ret, location, setconstant, name);
5812 PUSH_LABEL(ret, end_label);
5820pm_compile_constant_or_write_node(rb_iseq_t *iseq,
const pm_constant_or_write_node_t *node,
const pm_node_flags_t shareability,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
5825 LABEL *set_label = NEW_LABEL(location.
line);
5826 LABEL *end_label = NEW_LABEL(location.
line);
5828 PUSH_INSN(ret, location, putnil);
5829 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_CONST), name,
Qtrue);
5830 PUSH_INSNL(ret, location, branchunless, set_label);
5832 pm_compile_constant_read(iseq, name, &node->
name_loc, location.
node_id, ret, scope_node);
5833 if (!popped) PUSH_INSN(ret, location, dup);
5835 PUSH_INSNL(ret, location, branchif, end_label);
5836 if (!popped) PUSH_INSN(ret, location, pop);
5837 PUSH_LABEL(ret, set_label);
5839 if (shareability != 0) {
5840 pm_compile_shareable_constant_value(iseq, node->
value, shareability, name, ret, scope_node,
true);
5843 PM_COMPILE_NOT_POPPED(node->
value);
5846 if (!popped) PUSH_INSN(ret, location, dup);
5847 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_CONST_BASE));
5848 PUSH_INSN1(ret, location, setconstant, name);
5849 PUSH_LABEL(ret, end_label);
5857pm_compile_constant_operator_write_node(rb_iseq_t *iseq,
const pm_constant_operator_write_node_t *node,
const pm_node_flags_t shareability,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
5864 pm_compile_constant_read(iseq, name, &node->
name_loc, location.
node_id, ret, scope_node);
5866 if (shareability != 0) {
5867 pm_compile_shareable_constant_value(iseq, node->
value, shareability, name, ret, scope_node,
true);
5870 PM_COMPILE_NOT_POPPED(node->
value);
5873 PUSH_SEND_WITH_FLAG(ret, location, method_id,
INT2NUM(1),
INT2FIX(VM_CALL_ARGS_SIMPLE));
5874 if (!popped) PUSH_INSN(ret, location, dup);
5876 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_CONST_BASE));
5877 PUSH_INSN1(ret, location, setconstant, name);
5885pm_constant_path_path(
const pm_constant_path_node_t *node,
const pm_scope_node_t *scope_node)
5888 rb_ary_push(parts, rb_id2str(pm_constant_id_lookup(scope_node, node->
name)));
5890 const pm_node_t *current = node->
parent;
5891 while (current != NULL && PM_NODE_TYPE_P(current, PM_CONSTANT_PATH_NODE)) {
5892 const pm_constant_path_node_t *cast = (
const pm_constant_path_node_t *) current;
5893 rb_ary_unshift(parts, rb_id2str(pm_constant_id_lookup(scope_node, cast->
name)));
5897 if (current == NULL) {
5898 rb_ary_unshift(parts, rb_id2str(idNULL));
5900 else if (PM_NODE_TYPE_P(current, PM_CONSTANT_READ_NODE)) {
5901 rb_ary_unshift(parts, rb_id2str(pm_constant_id_lookup(scope_node, ((
const pm_constant_read_node_t *) current)->name)));
5915pm_compile_constant_path_write_node(rb_iseq_t *iseq,
const pm_constant_path_write_node_t *node,
const pm_node_flags_t shareability,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
5918 const pm_constant_path_node_t *target = node->
target;
5922 PM_COMPILE_NOT_POPPED((
const pm_node_t *) target->
parent);
5925 PUSH_INSN1(ret, location, putobject, rb_cObject);
5928 if (shareability != 0) {
5929 pm_compile_shareable_constant_value(iseq, node->
value, shareability, pm_constant_path_path(node->
target, scope_node), ret, scope_node,
true);
5932 PM_COMPILE_NOT_POPPED(node->
value);
5936 PUSH_INSN(ret, location, swap);
5937 PUSH_INSN1(ret, location, topn,
INT2FIX(1));
5940 PUSH_INSN(ret, location, swap);
5941 PUSH_INSN1(ret, location, setconstant, name);
5949pm_compile_constant_path_and_write_node(rb_iseq_t *iseq,
const pm_constant_path_and_write_node_t *node,
const pm_node_flags_t shareability,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
5952 const pm_constant_path_node_t *target = node->
target;
5955 LABEL *lfin = NEW_LABEL(location.
line);
5958 PM_COMPILE_NOT_POPPED(target->
parent);
5961 PUSH_INSN1(ret, location, putobject, rb_cObject);
5964 PUSH_INSN(ret, location, dup);
5965 PUSH_INSN1(ret, location, putobject,
Qtrue);
5966 PUSH_INSN1(ret, location, getconstant, name);
5968 if (!popped) PUSH_INSN(ret, location, dup);
5969 PUSH_INSNL(ret, location, branchunless, lfin);
5971 if (!popped) PUSH_INSN(ret, location, pop);
5973 if (shareability != 0) {
5974 pm_compile_shareable_constant_value(iseq, node->
value, shareability, pm_constant_path_path(node->
target, scope_node), ret, scope_node,
true);
5977 PM_COMPILE_NOT_POPPED(node->
value);
5981 PUSH_INSN1(ret, location, topn,
INT2FIX(1));
5984 PUSH_INSN1(ret, location, dupn,
INT2FIX(2));
5985 PUSH_INSN(ret, location, swap);
5988 PUSH_INSN1(ret, location, setconstant, name);
5989 PUSH_LABEL(ret, lfin);
5991 if (!popped) PUSH_INSN(ret, location, swap);
5992 PUSH_INSN(ret, location, pop);
6000pm_compile_constant_path_or_write_node(rb_iseq_t *iseq,
const pm_constant_path_or_write_node_t *node,
const pm_node_flags_t shareability,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
6003 const pm_constant_path_node_t *target = node->
target;
6006 LABEL *lassign = NEW_LABEL(location.
line);
6007 LABEL *lfin = NEW_LABEL(location.
line);
6010 PM_COMPILE_NOT_POPPED(target->
parent);
6013 PUSH_INSN1(ret, location, putobject, rb_cObject);
6016 PUSH_INSN(ret, location, dup);
6017 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_CONST_FROM), name,
Qtrue);
6018 PUSH_INSNL(ret, location, branchunless, lassign);
6020 PUSH_INSN(ret, location, dup);
6021 PUSH_INSN1(ret, location, putobject,
Qtrue);
6022 PUSH_INSN1(ret, location, getconstant, name);
6024 if (!popped) PUSH_INSN(ret, location, dup);
6025 PUSH_INSNL(ret, location, branchif, lfin);
6027 if (!popped) PUSH_INSN(ret, location, pop);
6028 PUSH_LABEL(ret, lassign);
6030 if (shareability != 0) {
6031 pm_compile_shareable_constant_value(iseq, node->
value, shareability, pm_constant_path_path(node->
target, scope_node), ret, scope_node,
true);
6034 PM_COMPILE_NOT_POPPED(node->
value);
6038 PUSH_INSN1(ret, location, topn,
INT2FIX(1));
6041 PUSH_INSN1(ret, location, dupn,
INT2FIX(2));
6042 PUSH_INSN(ret, location, swap);
6045 PUSH_INSN1(ret, location, setconstant, name);
6046 PUSH_LABEL(ret, lfin);
6048 if (!popped) PUSH_INSN(ret, location, swap);
6049 PUSH_INSN(ret, location, pop);
6057pm_compile_constant_path_operator_write_node(rb_iseq_t *iseq,
const pm_constant_path_operator_write_node_t *node,
const pm_node_flags_t shareability,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
6060 const pm_constant_path_node_t *target = node->
target;
6066 PM_COMPILE_NOT_POPPED(target->
parent);
6069 PUSH_INSN1(ret, location, putobject, rb_cObject);
6072 PUSH_INSN(ret, location, dup);
6073 PUSH_INSN1(ret, location, putobject,
Qtrue);
6074 PUSH_INSN1(ret, location, getconstant, name);
6076 if (shareability != 0) {
6077 pm_compile_shareable_constant_value(iseq, node->
value, shareability, pm_constant_path_path(node->
target, scope_node), ret, scope_node,
true);
6080 PM_COMPILE_NOT_POPPED(node->
value);
6083 PUSH_CALL(ret, location, method_id,
INT2FIX(1));
6084 PUSH_INSN(ret, location, swap);
6087 PUSH_INSN1(ret, location, topn,
INT2FIX(1));
6088 PUSH_INSN(ret, location, swap);
6091 PUSH_INSN1(ret, location, setconstant, name);
6100#define PM_CONTAINER_P(node) (PM_NODE_TYPE_P(node, PM_ARRAY_NODE) || PM_NODE_TYPE_P(node, PM_HASH_NODE) || PM_NODE_TYPE_P(node, PM_RANGE_NODE))
6107pm_compile_scope_node(rb_iseq_t *iseq, pm_scope_node_t *scope_node,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped)
6113 pm_parameters_node_t *parameters_node = NULL;
6114 pm_node_list_t *keywords_list = NULL;
6115 pm_node_list_t *optionals_list = NULL;
6116 pm_node_list_t *posts_list = NULL;
6117 pm_node_list_t *requireds_list = NULL;
6118 pm_node_list_t *block_locals = NULL;
6119 bool trailing_comma =
false;
6121 if (PM_NODE_TYPE_P(scope_node->ast_node, PM_CLASS_NODE) || PM_NODE_TYPE_P(scope_node->ast_node, PM_MODULE_NODE)) {
6125 if (scope_node->parameters != NULL) {
6126 switch (PM_NODE_TYPE(scope_node->parameters)) {
6127 case PM_BLOCK_PARAMETERS_NODE: {
6128 pm_block_parameters_node_t *cast = (pm_block_parameters_node_t *) scope_node->parameters;
6129 parameters_node = cast->parameters;
6130 block_locals = &cast->locals;
6132 if (parameters_node) {
6133 if (parameters_node->
rest && PM_NODE_TYPE_P(parameters_node->
rest, PM_IMPLICIT_REST_NODE)) {
6134 trailing_comma =
true;
6139 case PM_PARAMETERS_NODE: {
6140 parameters_node = (pm_parameters_node_t *) scope_node->parameters;
6143 case PM_NUMBERED_PARAMETERS_NODE: {
6144 uint32_t maximum = ((
const pm_numbered_parameters_node_t *) scope_node->parameters)->maximum;
6145 body->
param.lead_num = maximum;
6146 body->
param.flags.ambiguous_param0 = maximum == 1;
6149 case PM_IT_PARAMETERS_NODE:
6150 body->
param.lead_num = 1;
6151 body->
param.flags.ambiguous_param0 =
true;
6154 rb_bug(
"Unexpected node type for parameters: %s", pm_node_type_to_str(PM_NODE_TYPE(scope_node->parameters)));
6158 struct rb_iseq_param_keyword *keyword = NULL;
6160 if (parameters_node) {
6161 optionals_list = ¶meters_node->
optionals;
6162 requireds_list = ¶meters_node->
requireds;
6163 keywords_list = ¶meters_node->
keywords;
6164 posts_list = ¶meters_node->
posts;
6166 else if (scope_node->parameters && (PM_NODE_TYPE_P(scope_node->parameters, PM_NUMBERED_PARAMETERS_NODE) || PM_NODE_TYPE_P(scope_node->parameters, PM_IT_PARAMETERS_NODE))) {
6167 body->
param.opt_num = 0;
6170 body->
param.lead_num = 0;
6171 body->
param.opt_num = 0;
6177 size_t locals_size = locals->
size;
6180 st_table *index_lookup_table = st_init_numtable();
6182 int table_size = (int) locals_size;
6186 if (PM_NODE_TYPE_P(scope_node->ast_node, PM_FOR_NODE)) table_size++;
6188 if (keywords_list && keywords_list->
size) {
6192 if (requireds_list) {
6193 for (
size_t i = 0; i < requireds_list->
size; i++) {
6197 pm_node_t *required = requireds_list->
nodes[i];
6198 if (PM_NODE_TYPE_P(required, PM_MULTI_TARGET_NODE)) {
6201 else if (PM_NODE_TYPE_P(required, PM_REQUIRED_PARAMETER_NODE)) {
6202 if (PM_NODE_FLAG_P(required, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6211 if (scope_node->parameters != NULL && PM_NODE_TYPE_P(scope_node->parameters, PM_IT_PARAMETERS_NODE)) {
6219 if (optionals_list && optionals_list->
size) {
6220 for (
size_t i = 0; i < optionals_list->
size; i++) {
6221 pm_node_t * node = optionals_list->
nodes[i];
6222 if (PM_NODE_FLAG_P(node, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6232 if (parameters_node) {
6233 if (parameters_node->
rest) {
6234 if (!(PM_NODE_TYPE_P(parameters_node->
rest, PM_IMPLICIT_REST_NODE))) {
6235 if (!((
const pm_rest_parameter_node_t *) parameters_node->
rest)->name || PM_NODE_FLAG_P(parameters_node->
rest, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6248 if (PM_NODE_TYPE_P(parameters_node->
keyword_rest, PM_FORWARDING_PARAMETER_NODE)) {
6250 if (requireds_list->
size == 0 && optionals_list->
size == 0 && keywords_list->
size == 0) {
6251 ISEQ_BODY(iseq)->param.flags.use_block = TRUE;
6252 ISEQ_BODY(iseq)->param.flags.forwardable = TRUE;
6260 const pm_keyword_rest_parameter_node_t *kw_rest = (
const pm_keyword_rest_parameter_node_t *) parameters_node->
keyword_rest;
6263 if (!kw_rest->name || PM_NODE_FLAG_P(kw_rest, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6271 for (
size_t i = 0; i < posts_list->
size; i++) {
6275 pm_node_t *required = posts_list->
nodes[i];
6276 if (PM_NODE_TYPE_P(required, PM_MULTI_TARGET_NODE) || PM_NODE_FLAG_P(required, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6282 if (keywords_list && keywords_list->
size) {
6283 for (
size_t i = 0; i < keywords_list->
size; i++) {
6284 pm_node_t *keyword_parameter_node = keywords_list->
nodes[i];
6285 if (PM_NODE_FLAG_P(keyword_parameter_node, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6291 if (parameters_node && parameters_node->
block) {
6292 const pm_block_parameter_node_t *block_node = (
const pm_block_parameter_node_t *) parameters_node->
block;
6294 if (PM_NODE_FLAG_P(block_node, PM_PARAMETER_FLAGS_REPEATED_PARAMETER) || !block_node->name) {
6301 rb_ast_id_table_t *local_table_for_iseq =
ALLOCV(idtmp,
sizeof(rb_ast_id_table_t) + table_size *
sizeof(
ID));
6302 local_table_for_iseq->size = table_size;
6322 int local_index = 0;
6329 if (requireds_list && requireds_list->
size) {
6330 for (
size_t i = 0; i < requireds_list->
size; i++, local_index++) {
6336 pm_node_t *required = requireds_list->
nodes[i];
6338 switch (PM_NODE_TYPE(required)) {
6339 case PM_MULTI_TARGET_NODE: {
6342 local = rb_make_temporary_id(local_index);
6343 local_table_for_iseq->ids[local_index] = local;
6346 case PM_REQUIRED_PARAMETER_NODE: {
6349 const pm_required_parameter_node_t *param = (
const pm_required_parameter_node_t *) required;
6351 if (PM_NODE_FLAG_P(required, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6352 ID local = pm_constant_id_lookup(scope_node, param->
name);
6353 local_table_for_iseq->ids[local_index] = local;
6356 pm_insert_local_index(param->
name, local_index, index_lookup_table, local_table_for_iseq, scope_node);
6362 rb_bug(
"Unsupported node in requireds in parameters %s", pm_node_type_to_str(PM_NODE_TYPE(required)));
6366 body->
param.lead_num = (int) requireds_list->
size;
6367 body->
param.flags.has_lead =
true;
6370 if (scope_node->parameters != NULL && PM_NODE_TYPE_P(scope_node->parameters, PM_IT_PARAMETERS_NODE)) {
6371 ID local = rb_make_temporary_id(local_index);
6372 local_table_for_iseq->ids[local_index++] = local;
6377 if (optionals_list && optionals_list->
size) {
6378 body->
param.opt_num = (int) optionals_list->
size;
6379 body->
param.flags.has_opt =
true;
6381 for (
size_t i = 0; i < optionals_list->
size; i++, local_index++) {
6382 pm_node_t * node = optionals_list->
nodes[i];
6383 pm_constant_id_t name = ((
const pm_optional_parameter_node_t *) node)->name;
6385 if (PM_NODE_FLAG_P(node, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6386 ID local = pm_constant_id_lookup(scope_node, name);
6387 local_table_for_iseq->ids[local_index] = local;
6390 pm_insert_local_index(name, local_index, index_lookup_table, local_table_for_iseq, scope_node);
6397 if (parameters_node && parameters_node->
rest) {
6398 body->
param.rest_start = local_index;
6402 if (!(PM_NODE_TYPE_P(parameters_node->
rest, PM_IMPLICIT_REST_NODE))) {
6403 body->
param.flags.has_rest =
true;
6411 if (PM_NODE_FLAG_P(parameters_node->
rest, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6412 ID local = pm_constant_id_lookup(scope_node, name);
6413 local_table_for_iseq->ids[local_index] = local;
6416 pm_insert_local_index(name, local_index, index_lookup_table, local_table_for_iseq, scope_node);
6422 body->
param.flags.anon_rest =
true;
6423 pm_insert_local_special(idMULT, local_index, index_lookup_table, local_table_for_iseq);
6432 if (posts_list && posts_list->
size) {
6433 body->
param.post_num = (int) posts_list->
size;
6434 body->
param.post_start = local_index;
6435 body->
param.flags.has_post =
true;
6437 for (
size_t i = 0; i < posts_list->
size; i++, local_index++) {
6443 const pm_node_t *post_node = posts_list->
nodes[i];
6445 switch (PM_NODE_TYPE(post_node)) {
6446 case PM_MULTI_TARGET_NODE: {
6449 local = rb_make_temporary_id(local_index);
6450 local_table_for_iseq->ids[local_index] = local;
6453 case PM_REQUIRED_PARAMETER_NODE: {
6456 const pm_required_parameter_node_t *param = (
const pm_required_parameter_node_t *) post_node;
6458 if (PM_NODE_FLAG_P(param, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6459 ID local = pm_constant_id_lookup(scope_node, param->
name);
6460 local_table_for_iseq->ids[local_index] = local;
6463 pm_insert_local_index(param->
name, local_index, index_lookup_table, local_table_for_iseq, scope_node);
6468 rb_bug(
"Unsupported node in posts in parameters %s", pm_node_type_to_str(PM_NODE_TYPE(post_node)));
6476 if (keywords_list && keywords_list->
size) {
6477 keyword =
ZALLOC_N(
struct rb_iseq_param_keyword, 1);
6478 keyword->num = (int) keywords_list->
size;
6480 const VALUE default_values = rb_ary_hidden_new(1);
6483 for (
size_t i = 0; i < keywords_list->
size; i++) {
6484 pm_node_t *keyword_parameter_node = keywords_list->
nodes[i];
6489 if (PM_NODE_TYPE_P(keyword_parameter_node, PM_REQUIRED_KEYWORD_PARAMETER_NODE)) {
6490 name = ((
const pm_required_keyword_parameter_node_t *) keyword_parameter_node)->name;
6491 keyword->required_num++;
6492 ID local = pm_constant_id_lookup(scope_node, name);
6494 if (PM_NODE_FLAG_P(keyword_parameter_node, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6495 local_table_for_iseq->ids[local_index] = local;
6498 pm_insert_local_index(name, local_index, index_lookup_table, local_table_for_iseq, scope_node);
6504 for (
size_t i = 0; i < keywords_list->
size; i++) {
6505 pm_node_t *keyword_parameter_node = keywords_list->
nodes[i];
6510 if (PM_NODE_TYPE_P(keyword_parameter_node, PM_OPTIONAL_KEYWORD_PARAMETER_NODE)) {
6511 const pm_optional_keyword_parameter_node_t *cast = ((
const pm_optional_keyword_parameter_node_t *) keyword_parameter_node);
6513 pm_node_t *value = cast->
value;
6516 if (PM_NODE_FLAG_P(value, PM_NODE_FLAG_STATIC_LITERAL) && !PM_CONTAINER_P(value)) {
6517 rb_ary_push(default_values, pm_static_literal_value(iseq, value, scope_node));
6520 rb_ary_push(default_values, complex_mark);
6523 ID local = pm_constant_id_lookup(scope_node, name);
6524 if (PM_NODE_FLAG_P(keyword_parameter_node, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6525 local_table_for_iseq->ids[local_index] = local;
6528 pm_insert_local_index(name, local_index, index_lookup_table, local_table_for_iseq, scope_node);
6538 for (
int i = 0; i <
RARRAY_LEN(default_values); i++) {
6540 if (dv == complex_mark) dv =
Qundef;
6544 keyword->default_values = dvs;
6548 keyword->bits_start = local_index;
6549 ID local = rb_make_temporary_id(local_index);
6550 local_table_for_iseq->ids[local_index] = local;
6553 body->
param.keyword = keyword;
6554 body->
param.flags.has_kw =
true;
6557 if (body->type == ISEQ_TYPE_BLOCK && local_index == 1 && requireds_list && requireds_list->
size == 1 && !trailing_comma) {
6558 body->
param.flags.ambiguous_param0 =
true;
6561 if (parameters_node) {
6566 case PM_NO_KEYWORDS_PARAMETER_NODE: {
6569 body->
param.flags.accepts_no_kwarg =
true;
6572 case PM_KEYWORD_REST_PARAMETER_NODE: {
6575 const pm_keyword_rest_parameter_node_t *kw_rest_node = (
const pm_keyword_rest_parameter_node_t *) parameters_node->
keyword_rest;
6576 if (!body->
param.flags.has_kw) {
6577 body->
param.keyword = keyword =
ZALLOC_N(
struct rb_iseq_param_keyword, 1);
6580 keyword->rest_start = local_index;
6581 body->
param.flags.has_kwrest =
true;
6585 if (PM_NODE_FLAG_P(kw_rest_node, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6586 ID local = pm_constant_id_lookup(scope_node, constant_id);
6587 local_table_for_iseq->ids[local_index] = local;
6590 pm_insert_local_index(constant_id, local_index, index_lookup_table, local_table_for_iseq, scope_node);
6594 body->
param.flags.anon_kwrest =
true;
6595 pm_insert_local_special(idPow, local_index, index_lookup_table, local_table_for_iseq);
6601 case PM_FORWARDING_PARAMETER_NODE: {
6604 if (!ISEQ_BODY(iseq)->param.
flags.forwardable) {
6606 body->
param.rest_start = local_index;
6607 body->
param.flags.has_rest =
true;
6608 body->
param.flags.anon_rest =
true;
6609 pm_insert_local_special(idMULT, local_index++, index_lookup_table, local_table_for_iseq);
6613 body->
param.flags.has_kw =
false;
6614 body->
param.flags.has_kwrest =
true;
6615 body->
param.flags.anon_kwrest =
true;
6616 body->
param.keyword = keyword =
ZALLOC_N(
struct rb_iseq_param_keyword, 1);
6617 keyword->rest_start = local_index;
6618 pm_insert_local_special(idPow, local_index++, index_lookup_table, local_table_for_iseq);
6621 body->
param.block_start = local_index;
6622 body->
param.flags.has_block =
true;
6623 pm_insert_local_special(idAnd, local_index++, index_lookup_table, local_table_for_iseq);
6627 pm_insert_local_special(idDot3, local_index++, index_lookup_table, local_table_for_iseq);
6631 rb_bug(
"node type %s not expected as keyword_rest", pm_node_type_to_str(PM_NODE_TYPE(parameters_node->
keyword_rest)));
6637 if (parameters_node->
block) {
6638 body->
param.block_start = local_index;
6639 body->
param.flags.has_block =
true;
6640 iseq_set_use_block(iseq);
6645 if (PM_NODE_FLAG_P(parameters_node->
block, PM_PARAMETER_FLAGS_REPEATED_PARAMETER)) {
6646 ID local = pm_constant_id_lookup(scope_node, name);
6647 local_table_for_iseq->ids[local_index] = local;
6650 pm_insert_local_index(name, local_index, index_lookup_table, local_table_for_iseq, scope_node);
6654 pm_insert_local_special(idAnd, local_index, index_lookup_table, local_table_for_iseq);
6673 if (requireds_list && requireds_list->
size) {
6674 for (
size_t i = 0; i < requireds_list->
size; i++) {
6678 const pm_node_t *required = requireds_list->
nodes[i];
6680 if (PM_NODE_TYPE_P(required, PM_MULTI_TARGET_NODE)) {
6681 local_index = pm_compile_destructured_param_locals((
const pm_multi_target_node_t *) required, index_lookup_table, local_table_for_iseq, scope_node, local_index);
6687 if (posts_list && posts_list->
size) {
6688 for (
size_t i = 0; i < posts_list->
size; i++) {
6692 const pm_node_t *post = posts_list->
nodes[i];
6694 if (PM_NODE_TYPE_P(post, PM_MULTI_TARGET_NODE)) {
6695 local_index = pm_compile_destructured_param_locals((
const pm_multi_target_node_t *) post, index_lookup_table, local_table_for_iseq, scope_node, local_index);
6701 if (PM_NODE_TYPE_P(scope_node->ast_node, PM_FOR_NODE)) {
6702 if (PM_NODE_TYPE_P(((
const pm_for_node_t *) scope_node->ast_node)->index, PM_LOCAL_VARIABLE_TARGET_NODE)) {
6703 body->
param.lead_num++;
6706 body->
param.rest_start = local_index;
6707 body->
param.flags.has_rest =
true;
6710 ID local = rb_make_temporary_id(local_index);
6711 local_table_for_iseq->ids[local_index] = local;
6716 if (scope_node->parameters && PM_NODE_TYPE_P(scope_node->parameters, PM_NUMBERED_PARAMETERS_NODE)) {
6717 int maximum = ((
const pm_numbered_parameters_node_t *) scope_node->parameters)->maximum;
6719 for (
int i = 0; i < maximum; i++, local_index++) {
6720 const uint8_t param_name[] = {
'_',
'1' + i };
6722 RUBY_ASSERT(constant_id &&
"parser should fill in any gaps in numbered parameters");
6723 pm_insert_local_index(constant_id, local_index, index_lookup_table, local_table_for_iseq, scope_node);
6725 body->
param.lead_num = maximum;
6726 body->
param.flags.has_lead =
true;
6737 if (block_locals && block_locals->
size) {
6738 for (
size_t i = 0; i < block_locals->
size; i++, local_index++) {
6739 pm_constant_id_t constant_id = ((
const pm_block_local_variable_node_t *) block_locals->
nodes[i])->name;
6740 pm_insert_local_index(constant_id, local_index, index_lookup_table, local_table_for_iseq, scope_node);
6745 if (scope_node->locals.
size) {
6746 for (
size_t i = 0; i < scope_node->locals.
size; i++) {
6750 ctx.scope_node = scope_node;
6751 ctx.local_table_for_iseq = local_table_for_iseq;
6752 ctx.local_index = local_index;
6754 st_update(index_lookup_table, (st_data_t)constant_id, pm_local_table_insert_func, (st_data_t)&ctx);
6756 local_index = ctx.local_index;
6765 if (scope_node->index_lookup_table) {
6766 st_free_table(scope_node->index_lookup_table);
6768 scope_node->index_lookup_table = index_lookup_table;
6769 iseq_calc_param_size(iseq);
6771 if (ISEQ_BODY(iseq)->param.
flags.forwardable) {
6774 ISEQ_BODY(iseq)->param.size += 1;
6778 iseq_set_local_table(iseq, local_table_for_iseq, 0);
6779 scope_node->local_table_for_iseq_size = local_table_for_iseq->size;
6781 if (keyword != NULL) {
6782 size_t keyword_start_index = keyword->bits_start - keyword->num;
6783 keyword->table = (
ID *)&ISEQ_BODY(iseq)->local_table[keyword_start_index];
6788 if (optionals_list && optionals_list->
size) {
6796 for (
size_t i = 0; i < optionals_list->
size; i++) {
6797 label = NEW_LABEL(location.
line);
6798 opt_table[i] = label;
6799 PUSH_LABEL(ret, label);
6800 pm_node_t *optional_node = optionals_list->
nodes[i];
6801 PM_COMPILE_NOT_POPPED(optional_node);
6805 label = NEW_LABEL(location.
line);
6806 opt_table[optionals_list->
size] = label;
6807 PUSH_LABEL(ret, label);
6809 body->
param.opt_table = (
const VALUE *) opt_table;
6812 if (keywords_list && keywords_list->
size) {
6813 size_t optional_index = 0;
6814 for (
size_t i = 0; i < keywords_list->
size; i++) {
6815 pm_node_t *keyword_parameter_node = keywords_list->
nodes[i];
6818 switch (PM_NODE_TYPE(keyword_parameter_node)) {
6819 case PM_OPTIONAL_KEYWORD_PARAMETER_NODE: {
6822 const pm_optional_keyword_parameter_node_t *cast = ((
const pm_optional_keyword_parameter_node_t *) keyword_parameter_node);
6824 pm_node_t *value = cast->
value;
6827 if (!PM_NODE_FLAG_P(value, PM_NODE_FLAG_STATIC_LITERAL) || PM_CONTAINER_P(value)) {
6828 LABEL *end_label = NEW_LABEL(location.
line);
6830 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, name, 0);
6831 int kw_bits_idx = table_size - body->
param.keyword->bits_start;
6832 PUSH_INSN2(ret, location, checkkeyword,
INT2FIX(kw_bits_idx + VM_ENV_DATA_SIZE - 1),
INT2FIX(optional_index));
6833 PUSH_INSNL(ret, location, branchif, end_label);
6835 PUSH_SETLOCAL(ret, location, index.index, index.level);
6836 PUSH_LABEL(ret, end_label);
6841 case PM_REQUIRED_KEYWORD_PARAMETER_NODE:
6846 rb_bug(
"Unexpected keyword parameter node type %s", pm_node_type_to_str(PM_NODE_TYPE(keyword_parameter_node)));
6851 if (requireds_list && requireds_list->
size) {
6852 for (
size_t i = 0; i < requireds_list->
size; i++) {
6856 const pm_node_t *required = requireds_list->
nodes[i];
6858 if (PM_NODE_TYPE_P(required, PM_MULTI_TARGET_NODE)) {
6859 PUSH_GETLOCAL(ret, location, table_size - (
int)i, 0);
6860 pm_compile_destructured_param_writes(iseq, (
const pm_multi_target_node_t *) required, ret, scope_node);
6865 if (posts_list && posts_list->
size) {
6866 for (
size_t i = 0; i < posts_list->
size; i++) {
6870 const pm_node_t *post = posts_list->
nodes[i];
6872 if (PM_NODE_TYPE_P(post, PM_MULTI_TARGET_NODE)) {
6873 PUSH_GETLOCAL(ret, location, table_size - body->
param.post_start - (
int) i, 0);
6874 pm_compile_destructured_param_writes(iseq, (
const pm_multi_target_node_t *) post, ret, scope_node);
6879 switch (body->type) {
6880 case ISEQ_TYPE_PLAIN: {
6881 RUBY_ASSERT(PM_NODE_TYPE_P(scope_node->ast_node, PM_INTERPOLATED_REGULAR_EXPRESSION_NODE));
6883 const pm_interpolated_regular_expression_node_t *cast = (
const pm_interpolated_regular_expression_node_t *) scope_node->ast_node;
6884 pm_compile_regexp_dynamic(iseq, (
const pm_node_t *) cast, &cast->parts, &location, ret, popped, scope_node);
6888 case ISEQ_TYPE_BLOCK: {
6889 LABEL *start = ISEQ_COMPILE_DATA(iseq)->start_label = NEW_LABEL(0);
6890 LABEL *end = ISEQ_COMPILE_DATA(iseq)->end_label = NEW_LABEL(0);
6891 const pm_node_location_t block_location = { .line = body->location.first_lineno, .node_id = scope_node->ast_node->
node_id };
6893 start->rescued = LABEL_RESCUE_BEG;
6894 end->rescued = LABEL_RESCUE_END;
6900 if (PM_NODE_TYPE_P(scope_node->ast_node, PM_FOR_NODE)) {
6901 pm_compile_for_node_index(iseq, ((
const pm_for_node_t *) scope_node->ast_node)->index, ret, scope_node);
6905 PUSH_INSN(ret, block_location, nop);
6906 PUSH_LABEL(ret, start);
6908 if (scope_node->body != NULL) {
6909 switch (PM_NODE_TYPE(scope_node->ast_node)) {
6910 case PM_POST_EXECUTION_NODE: {
6911 const pm_post_execution_node_t *cast = (
const pm_post_execution_node_t *) scope_node->ast_node;
6912 PUSH_INSN1(ret, block_location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
6915 pm_scope_node_t next_scope_node;
6916 pm_scope_node_init((
const pm_node_t *) cast->statements, &next_scope_node, scope_node);
6918 const rb_iseq_t *block = NEW_CHILD_ISEQ(&next_scope_node, make_name_for_block(body->parent_iseq), ISEQ_TYPE_BLOCK, location.
line);
6919 pm_scope_node_destroy(&next_scope_node);
6921 PUSH_CALL_WITH_BLOCK(ret, block_location, id_core_set_postexe,
INT2FIX(0), block);
6924 case PM_INTERPOLATED_REGULAR_EXPRESSION_NODE: {
6925 const pm_interpolated_regular_expression_node_t *cast = (
const pm_interpolated_regular_expression_node_t *) scope_node->ast_node;
6926 pm_compile_regexp_dynamic(iseq, (
const pm_node_t *) cast, &cast->parts, &location, ret, popped, scope_node);
6930 pm_compile_node(iseq, scope_node->body, ret, popped, scope_node);
6935 PUSH_INSN(ret, block_location, putnil);
6938 PUSH_LABEL(ret, end);
6940 ISEQ_COMPILE_DATA(iseq)->last_line = body->location.code_location.end_pos.lineno;
6943 PUSH_CATCH_ENTRY(CATCH_TYPE_REDO, start, end, NULL, start);
6944 PUSH_CATCH_ENTRY(CATCH_TYPE_NEXT, start, end, NULL, end);
6947 case ISEQ_TYPE_ENSURE: {
6948 const pm_node_location_t statements_location = (scope_node->body != NULL ? PM_NODE_START_LOCATION(scope_node->parser, scope_node->body) : location);
6949 iseq_set_exception_local_table(iseq);
6951 if (scope_node->body != NULL) {
6952 PM_COMPILE_POPPED((
const pm_node_t *) scope_node->body);
6955 PUSH_GETLOCAL(ret, statements_location, 1, 0);
6956 PUSH_INSN1(ret, statements_location,
throw,
INT2FIX(0));
6959 case ISEQ_TYPE_METHOD: {
6960 ISEQ_COMPILE_DATA(iseq)->root_node = (
const void *) scope_node->body;
6963 if (scope_node->body) {
6964 PM_COMPILE((
const pm_node_t *) scope_node->body);
6967 PUSH_INSN(ret, location, putnil);
6970 ISEQ_COMPILE_DATA(iseq)->root_node = (
const void *) scope_node->body;
6973 ISEQ_COMPILE_DATA(iseq)->last_line = body->location.code_location.end_pos.lineno;
6976 case ISEQ_TYPE_RESCUE: {
6977 iseq_set_exception_local_table(iseq);
6978 if (PM_NODE_TYPE_P(scope_node->ast_node, PM_RESCUE_MODIFIER_NODE)) {
6979 LABEL *lab = NEW_LABEL(location.
line);
6980 LABEL *rescue_end = NEW_LABEL(location.
line);
6981 PUSH_GETLOCAL(ret, location, LVAR_ERRINFO, 0);
6983 PUSH_INSN1(ret, location, checkmatch,
INT2FIX(VM_CHECKMATCH_TYPE_RESCUE));
6984 PUSH_INSNL(ret, location, branchif, lab);
6985 PUSH_INSNL(ret, location, jump, rescue_end);
6986 PUSH_LABEL(ret, lab);
6988 PM_COMPILE((
const pm_node_t *) scope_node->body);
6989 PUSH_INSN(ret, location, leave);
6990 PUSH_LABEL(ret, rescue_end);
6991 PUSH_GETLOCAL(ret, location, LVAR_ERRINFO, 0);
6994 PM_COMPILE((
const pm_node_t *) scope_node->ast_node);
6996 PUSH_INSN1(ret, location,
throw,
INT2FIX(0));
7001 if (scope_node->body) {
7002 PM_COMPILE((
const pm_node_t *) scope_node->body);
7005 PUSH_INSN(ret, location, putnil);
7010 if (PM_NODE_TYPE_P(scope_node->ast_node, PM_CLASS_NODE) || PM_NODE_TYPE_P(scope_node->ast_node, PM_MODULE_NODE)) {
7011 const pm_node_location_t end_location = PM_NODE_END_LOCATION(scope_node->parser, scope_node->ast_node);
7013 ISEQ_COMPILE_DATA(iseq)->last_line = end_location.
line;
7016 if (!PM_NODE_TYPE_P(scope_node->ast_node, PM_ENSURE_NODE)) {
7017 const pm_node_location_t location = { .line = ISEQ_COMPILE_DATA(iseq)->last_line, .node_id = scope_node->ast_node->
node_id };
7018 PUSH_INSN(ret, location, leave);
7023pm_compile_alias_global_variable_node(rb_iseq_t *iseq,
const pm_alias_global_variable_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
7027 PUSH_INSN1(ret, *location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
7031 VALUE operand =
ID2SYM(rb_intern3((
const char *) name_loc->
start, name_loc->
end - name_loc->
start, scope_node->encoding));
7032 PUSH_INSN1(ret, *location, putobject, operand);
7037 VALUE operand =
ID2SYM(rb_intern3((
const char *) name_loc->
start, name_loc->
end - name_loc->
start, scope_node->encoding));
7038 PUSH_INSN1(ret, *location, putobject, operand);
7041 PUSH_SEND(ret, *location, id_core_set_variable_alias,
INT2FIX(2));
7042 if (popped) PUSH_INSN(ret, *location, pop);
7046pm_compile_alias_method_node(rb_iseq_t *iseq,
const pm_alias_method_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
7048 PUSH_INSN1(ret, *location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
7049 PUSH_INSN1(ret, *location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_CBASE));
7050 PM_COMPILE_NOT_POPPED(node->
new_name);
7051 PM_COMPILE_NOT_POPPED(node->
old_name);
7053 PUSH_SEND(ret, *location, id_core_set_method_alias,
INT2FIX(3));
7054 if (popped) PUSH_INSN(ret, *location, pop);
7058pm_compile_and_node(rb_iseq_t *iseq,
const pm_and_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
7060 LABEL *end_label = NEW_LABEL(location->
line);
7062 PM_COMPILE_NOT_POPPED(node->
left);
7063 if (!popped) PUSH_INSN(ret, *location, dup);
7064 PUSH_INSNL(ret, *location, branchunless, end_label);
7066 if (!popped) PUSH_INSN(ret, *location, pop);
7067 PM_COMPILE(node->
right);
7068 PUSH_LABEL(ret, end_label);
7072pm_compile_array_node(rb_iseq_t *iseq,
const pm_node_t *node,
const pm_node_list_t *elements,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
7076 if (PM_NODE_FLAG_P(node, PM_NODE_FLAG_STATIC_LITERAL)) {
7081 if (elements->
size) {
7082 VALUE value = pm_static_literal_value(iseq, node, scope_node);
7083 PUSH_INSN1(ret, *location, duparray, value);
7086 PUSH_INSN1(ret, *location, newarray,
INT2FIX(0));
7104 const int max_new_array_size = 0x100;
7105 const unsigned int min_tmp_array_size = 0x40;
7107 int new_array_size = 0;
7108 bool first_chunk =
true;
7114 bool static_literal =
false;
7117#define FLUSH_CHUNK \
7118 if (new_array_size) { \
7119 if (first_chunk) PUSH_INSN1(ret, *location, newarray, INT2FIX(new_array_size)); \
7120 else PUSH_INSN1(ret, *location, pushtoarray, INT2FIX(new_array_size)); \
7121 first_chunk = false; \
7122 new_array_size = 0; \
7125 for (
size_t index = 0; index < elements->
size; index++) {
7126 const pm_node_t *element = elements->
nodes[index];
7128 if (PM_NODE_TYPE_P(element, PM_SPLAT_NODE)) {
7131 const pm_splat_node_t *splat_element = (
const pm_splat_node_t *) element;
7133 PM_COMPILE_NOT_POPPED(splat_element->
expression);
7136 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, PM_CONSTANT_MULT, 0);
7137 PUSH_GETLOCAL(ret, *location, index.index, index.level);
7143 PUSH_INSN1(ret, *location, splatarray,
Qtrue);
7144 first_chunk =
false;
7147 PUSH_INSN(ret, *location, concattoarray);
7150 static_literal =
false;
7152 else if (PM_NODE_TYPE_P(element, PM_KEYWORD_HASH_NODE)) {
7153 if (new_array_size == 0 && first_chunk) {
7154 PUSH_INSN1(ret, *location, newarray,
INT2FIX(0));
7155 first_chunk =
false;
7171 const pm_keyword_hash_node_t *keyword_hash = (
const pm_keyword_hash_node_t *) element;
7172 pm_compile_hash_elements(iseq, element, &keyword_hash->
elements, 0,
Qundef,
false, ret, scope_node);
7179 while (splats < keyword_hash->elements.
size && PM_NODE_TYPE_P(keyword_hash->
elements.
nodes[splats], PM_ASSOC_SPLAT_NODE)) splats++;
7182 PUSH_INSN(ret, *location, pushtoarraykwsplat);
7189 PM_NODE_FLAG_P(element, PM_NODE_FLAG_STATIC_LITERAL) &&
7190 !PM_CONTAINER_P(element) &&
7192 ((index + min_tmp_array_size) < elements->
size)
7197 size_t right_index = index + 1;
7199 right_index < elements->size &&
7200 PM_NODE_FLAG_P(elements->
nodes[right_index], PM_NODE_FLAG_STATIC_LITERAL) &&
7201 !PM_CONTAINER_P(elements->
nodes[right_index])
7204 size_t tmp_array_size = right_index - index;
7205 if (tmp_array_size >= min_tmp_array_size) {
7206 VALUE tmp_array = rb_ary_hidden_new(tmp_array_size);
7209 for (; tmp_array_size; tmp_array_size--)
7210 rb_ary_push(tmp_array, pm_static_literal_value(iseq, elements->
nodes[index++], scope_node));
7218 PUSH_INSN1(ret, *location, duparray, tmp_array);
7219 first_chunk =
false;
7222 PUSH_INSN1(ret, *location, putobject, tmp_array);
7223 PUSH_INSN(ret, *location, concattoarray);
7227 PM_COMPILE_NOT_POPPED(element);
7228 if (++new_array_size >= max_new_array_size) FLUSH_CHUNK;
7229 static_literal =
true;
7232 PM_COMPILE_NOT_POPPED(element);
7233 if (++new_array_size >= max_new_array_size) FLUSH_CHUNK;
7234 static_literal =
false;
7239 if (popped) PUSH_INSN(ret, *location, pop);
7245pm_compile_break_node(rb_iseq_t *iseq,
const pm_break_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
7247 unsigned long throw_flag = 0;
7249 if (ISEQ_COMPILE_DATA(iseq)->redo_label != 0 && can_add_ensure_iseq(iseq)) {
7251 LABEL *splabel = NEW_LABEL(0);
7252 PUSH_LABEL(ret, splabel);
7253 PUSH_ADJUST(ret, *location, ISEQ_COMPILE_DATA(iseq)->redo_label);
7256 PM_COMPILE_NOT_POPPED((
const pm_node_t *) node->
arguments);
7259 PUSH_INSN(ret, *location, putnil);
7262 pm_add_ensure_iseq(ret, iseq, 0, scope_node);
7263 PUSH_INSNL(ret, *location, jump, ISEQ_COMPILE_DATA(iseq)->end_label);
7264 PUSH_ADJUST_RESTORE(ret, splabel);
7265 if (!popped) PUSH_INSN(ret, *location, putnil);
7268 const rb_iseq_t *ip = iseq;
7271 if (!ISEQ_COMPILE_DATA(ip)) {
7276 if (ISEQ_COMPILE_DATA(ip)->redo_label != 0) {
7277 throw_flag = VM_THROW_NO_ESCAPE_FLAG;
7279 else if (ISEQ_BODY(ip)->
type == ISEQ_TYPE_BLOCK) {
7282 else if (ISEQ_BODY(ip)->
type == ISEQ_TYPE_EVAL) {
7283 COMPILE_ERROR(iseq, location->
line,
"Invalid break");
7287 ip = ISEQ_BODY(ip)->parent_iseq;
7293 PM_COMPILE_NOT_POPPED((
const pm_node_t *) node->
arguments);
7296 PUSH_INSN(ret, *location, putnil);
7299 PUSH_INSN1(ret, *location,
throw,
INT2FIX(throw_flag | TAG_BREAK));
7300 if (popped) PUSH_INSN(ret, *location, pop);
7305 COMPILE_ERROR(iseq, location->
line,
"Invalid break");
7310pm_compile_call_node(rb_iseq_t *iseq,
const pm_call_node_t *node, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
7312 ID method_id = pm_constant_id_lookup(scope_node, node->
name);
7318 const char *builtin_func;
7320 if (UNLIKELY(iseq_has_builtin_function_table(iseq)) && (builtin_func = pm_iseq_builtin_function_name(scope_node, node->
receiver, method_id)) != NULL) {
7321 pm_compile_builtin_function_call(iseq, ret, scope_node, node, &location, popped, ISEQ_COMPILE_DATA(iseq)->current_block, builtin_func);
7325 LABEL *start = NEW_LABEL(location.
line);
7326 if (node->
block) PUSH_LABEL(ret, start);
7328 switch (method_id) {
7330 if (pm_opt_str_freeze_p(iseq, node)) {
7331 VALUE value = parse_static_literal_string(iseq, scope_node, node->
receiver, &((
const pm_string_node_t * ) node->
receiver)->unescaped);
7332 const struct rb_callinfo *callinfo = new_callinfo(iseq, idUMinus, 0, 0, NULL, FALSE);
7333 PUSH_INSN2(ret, location, opt_str_uminus, value, callinfo);
7334 if (popped) PUSH_INSN(ret, location, pop);
7340 if (pm_opt_str_freeze_p(iseq, node)) {
7341 VALUE value = parse_static_literal_string(iseq, scope_node, node->
receiver, &((
const pm_string_node_t * ) node->
receiver)->unescaped);
7342 const struct rb_callinfo *callinfo = new_callinfo(iseq, idFreeze, 0, 0, NULL, FALSE);
7343 PUSH_INSN2(ret, location, opt_str_freeze, value, callinfo);
7344 if (popped) PUSH_INSN(ret, location, pop);
7350 if (pm_opt_aref_with_p(iseq, node)) {
7351 const pm_string_node_t *
string = (
const pm_string_node_t *) ((
const pm_arguments_node_t *) node->
arguments)->arguments.nodes[0];
7352 VALUE value = parse_static_literal_string(iseq, scope_node, (
const pm_node_t *)
string, &string->unescaped);
7354 PM_COMPILE_NOT_POPPED(node->
receiver);
7356 const struct rb_callinfo *callinfo = new_callinfo(iseq, idAREF, 1, 0, NULL, FALSE);
7357 PUSH_INSN2(ret, location, opt_aref_with, value, callinfo);
7360 PUSH_INSN(ret, location, pop);
7368 if (pm_opt_aset_with_p(iseq, node)) {
7369 const pm_string_node_t *
string = (
const pm_string_node_t *) ((
const pm_arguments_node_t *) node->
arguments)->arguments.nodes[0];
7370 VALUE value = parse_static_literal_string(iseq, scope_node, (
const pm_node_t *)
string, &string->unescaped);
7372 PM_COMPILE_NOT_POPPED(node->
receiver);
7373 PM_COMPILE_NOT_POPPED(((
const pm_arguments_node_t *) node->
arguments)->arguments.nodes[1]);
7376 PUSH_INSN(ret, location, swap);
7377 PUSH_INSN1(ret, location, topn,
INT2FIX(1));
7380 const struct rb_callinfo *callinfo = new_callinfo(iseq, idASET, 2, 0, NULL, FALSE);
7381 PUSH_INSN2(ret, location, opt_aset_with, value, callinfo);
7382 PUSH_INSN(ret, location, pop);
7389 if (PM_NODE_FLAG_P(node, PM_CALL_NODE_FLAGS_ATTRIBUTE_WRITE) && !popped) {
7390 PUSH_INSN(ret, location, putnil);
7394 PUSH_INSN(ret, location, putself);
7397 if (method_id == idCall && PM_NODE_TYPE_P(node->
receiver, PM_LOCAL_VARIABLE_READ_NODE)) {
7398 const pm_local_variable_read_node_t *read_node_cast = (
const pm_local_variable_read_node_t *) node->
receiver;
7402 if (iseq_block_param_id_p(iseq, pm_constant_id_lookup(scope_node, read_node_cast->name), &idx, &level)) {
7403 ADD_ELEM(ret, (LINK_ELEMENT *) new_insn_body(iseq, location.
line, node_id, BIN(getblockparamproxy), 2,
INT2FIX((idx) + VM_ENV_DATA_SIZE - 1),
INT2FIX(level)));
7406 PM_COMPILE_NOT_POPPED(node->
receiver);
7410 PM_COMPILE_NOT_POPPED(node->
receiver);
7414 pm_compile_call(iseq, node, ret, popped, scope_node, method_id, start);
7419pm_compile_call_operator_write_node(rb_iseq_t *iseq,
const pm_call_operator_write_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
7423 if (PM_NODE_FLAG_P(node, PM_CALL_NODE_FLAGS_IGNORE_VISIBILITY)) {
7424 flag = VM_CALL_FCALL;
7427 PM_COMPILE_NOT_POPPED(node->
receiver);
7429 LABEL *safe_label = NULL;
7430 if (PM_NODE_FLAG_P(node, PM_CALL_NODE_FLAGS_SAFE_NAVIGATION)) {
7431 safe_label = NEW_LABEL(location->
line);
7432 PUSH_INSN(ret, *location, dup);
7433 PUSH_INSNL(ret, *location, branchnil, safe_label);
7436 PUSH_INSN(ret, *location, dup);
7438 ID id_read_name = pm_constant_id_lookup(scope_node, node->
read_name);
7439 PUSH_SEND_WITH_FLAG(ret, *location, id_read_name,
INT2FIX(0),
INT2FIX(flag));
7441 PM_COMPILE_NOT_POPPED(node->
value);
7443 PUSH_SEND(ret, *location, id_operator,
INT2FIX(1));
7446 PUSH_INSN(ret, *location, swap);
7447 PUSH_INSN1(ret, *location, topn,
INT2FIX(1));
7450 ID id_write_name = pm_constant_id_lookup(scope_node, node->
write_name);
7451 PUSH_SEND_WITH_FLAG(ret, *location, id_write_name,
INT2FIX(1),
INT2FIX(flag));
7453 if (safe_label != NULL && popped) PUSH_LABEL(ret, safe_label);
7454 PUSH_INSN(ret, *location, pop);
7455 if (safe_label != NULL && !popped) PUSH_LABEL(ret, safe_label);
7475pm_compile_case_node_dispatch(rb_iseq_t *iseq,
VALUE dispatch,
const pm_node_t *node, LABEL *label,
const pm_scope_node_t *scope_node)
7479 switch (PM_NODE_TYPE(node)) {
7480 case PM_FLOAT_NODE: {
7481 key = pm_static_literal_value(iseq, node, scope_node);
7485 key = (
FIXABLE(intptr) ?
LONG2FIX((
long) intptr) : rb_dbl2big(intptr));
7491 case PM_INTEGER_NODE:
7493 case PM_SOURCE_FILE_NODE:
7494 case PM_SOURCE_LINE_NODE:
7495 case PM_SYMBOL_NODE:
7497 key = pm_static_literal_value(iseq, node, scope_node);
7499 case PM_STRING_NODE: {
7500 const pm_string_node_t *cast = (
const pm_string_node_t *) node;
7501 key = parse_static_literal_string(iseq, scope_node, node, &cast->
unescaped);
7508 if (
NIL_P(rb_hash_lookup(dispatch, key))) {
7509 rb_hash_aset(dispatch, key, ((
VALUE) label) | 1);
7519pm_compile_case_node(rb_iseq_t *iseq,
const pm_case_node_t *cast,
const pm_node_location_t *node_location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
7523 const pm_node_list_t *conditions = &cast->
conditions;
7528 DECL_ANCHOR(cond_seq);
7533 DECL_ANCHOR(body_seq);
7537 LABEL *end_label = NEW_LABEL(location.
line);
7545 rb_code_location_t case_location = { 0 };
7548 if (PM_BRANCH_COVERAGE_P(iseq)) {
7549 case_location = pm_code_location(scope_node, (
const pm_node_t *) cast);
7550 branches = decl_branch_base(iseq, PTR2NUM(cast), &case_location,
"case");
7556 for (
size_t clause_index = 0; clause_index < conditions->
size; clause_index++) {
7557 const pm_when_node_t *clause = (
const pm_when_node_t *) conditions->
nodes[clause_index];
7558 const pm_node_list_t *conditions = &clause->conditions;
7560 int clause_lineno = pm_node_line_number(parser, (
const pm_node_t *) clause);
7561 LABEL *label = NEW_LABEL(clause_lineno);
7562 PUSH_LABEL(body_seq, label);
7565 if (PM_BRANCH_COVERAGE_P(iseq)) {
7566 rb_code_location_t branch_location = pm_code_location(scope_node, clause->statements != NULL ? ((
const pm_node_t *) clause->statements) : ((
const pm_node_t *) clause));
7567 add_trace_branch_coverage(iseq, body_seq, &branch_location, branch_location.beg_pos.column, branch_id++,
"when", branches);
7570 if (clause->statements != NULL) {
7571 pm_compile_node(iseq, (
const pm_node_t *) clause->statements, body_seq, popped, scope_node);
7574 PUSH_SYNTHETIC_PUTNIL(body_seq, iseq);
7577 PUSH_INSNL(body_seq, location, jump, end_label);
7582 for (
size_t condition_index = 0; condition_index < conditions->
size; condition_index++) {
7583 const pm_node_t *condition = conditions->
nodes[condition_index];
7585 if (PM_NODE_TYPE_P(condition, PM_SPLAT_NODE)) {
7587 PUSH_INSN(cond_seq, cond_location, putnil);
7588 pm_compile_node(iseq, condition, cond_seq,
false, scope_node);
7589 PUSH_INSN1(cond_seq, cond_location, checkmatch,
INT2FIX(VM_CHECKMATCH_TYPE_WHEN | VM_CHECKMATCH_ARRAY));
7590 PUSH_INSNL(cond_seq, cond_location, branchif, label);
7593 LABEL *next_label = NEW_LABEL(pm_node_line_number(parser, condition));
7594 pm_compile_branch_condition(iseq, cond_seq, condition, label, next_label,
false, scope_node);
7595 PUSH_LABEL(cond_seq, next_label);
7602 if (PM_BRANCH_COVERAGE_P(iseq)) {
7603 rb_code_location_t branch_location;
7606 branch_location = case_location;
7608 branch_location = pm_code_location(scope_node, (
const pm_node_t *) cast->
else_clause);
7613 add_trace_branch_coverage(iseq, cond_seq, &branch_location, branch_location.beg_pos.column, branch_id,
"else", branches);
7618 pm_compile_node(iseq, (
const pm_node_t *) cast->
else_clause, cond_seq, popped, scope_node);
7621 PUSH_SYNTHETIC_PUTNIL(cond_seq, iseq);
7626 PUSH_INSNL(cond_seq, location, jump, end_label);
7627 PUSH_SEQ(ret, cond_seq);
7632 rb_code_location_t case_location = { 0 };
7635 if (PM_BRANCH_COVERAGE_P(iseq)) {
7636 case_location = pm_code_location(scope_node, (
const pm_node_t *) cast);
7637 branches = decl_branch_base(iseq, PTR2NUM(cast), &case_location,
"case");
7642 LABEL *else_label = NEW_LABEL(location.
line);
7650 if (ISEQ_COMPILE_DATA(iseq)->option->specialized_instruction) {
7652 RHASH_TBL_RAW(dispatch)->type = &cdhash_type;
7663 for (
size_t clause_index = 0; clause_index < conditions->
size; clause_index++) {
7664 const pm_when_node_t *clause = (
const pm_when_node_t *) conditions->
nodes[clause_index];
7665 pm_node_location_t clause_location = PM_NODE_START_LOCATION(parser, (
const pm_node_t *) clause);
7667 const pm_node_list_t *conditions = &clause->conditions;
7668 LABEL *label = NEW_LABEL(clause_location.
line);
7673 for (
size_t condition_index = 0; condition_index < conditions->
size; condition_index++) {
7674 const pm_node_t *condition = conditions->
nodes[condition_index];
7675 const pm_node_location_t condition_location = PM_NODE_START_LOCATION(parser, condition);
7680 if (dispatch !=
Qundef) {
7681 dispatch = pm_compile_case_node_dispatch(iseq, dispatch, condition, label, scope_node);
7684 if (PM_NODE_TYPE_P(condition, PM_SPLAT_NODE)) {
7685 PUSH_INSN(cond_seq, condition_location, dup);
7686 pm_compile_node(iseq, condition, cond_seq,
false, scope_node);
7687 PUSH_INSN1(cond_seq, condition_location, checkmatch,
INT2FIX(VM_CHECKMATCH_TYPE_CASE | VM_CHECKMATCH_ARRAY));
7690 if (PM_NODE_TYPE_P(condition, PM_STRING_NODE)) {
7691 const pm_string_node_t *
string = (
const pm_string_node_t *) condition;
7692 VALUE value = parse_static_literal_string(iseq, scope_node, condition, &string->
unescaped);
7693 PUSH_INSN1(cond_seq, condition_location, putobject, value);
7696 pm_compile_node(iseq, condition, cond_seq,
false, scope_node);
7699 PUSH_INSN1(cond_seq, condition_location, topn,
INT2FIX(1));
7700 PUSH_SEND_WITH_FLAG(cond_seq, condition_location, idEqq,
INT2NUM(1),
INT2FIX(VM_CALL_FCALL | VM_CALL_ARGS_SIMPLE));
7703 PUSH_INSNL(cond_seq, condition_location, branchif, label);
7710 PUSH_LABEL(body_seq, label);
7711 PUSH_INSN(body_seq, clause_location, pop);
7714 if (PM_BRANCH_COVERAGE_P(iseq)) {
7715 rb_code_location_t branch_location = pm_code_location(scope_node, clause->statements != NULL ? ((
const pm_node_t *) clause->statements) : ((
const pm_node_t *) clause));
7716 add_trace_branch_coverage(iseq, body_seq, &branch_location, branch_location.beg_pos.column, branch_id++,
"when", branches);
7719 if (clause->statements != NULL) {
7720 pm_compile_node(iseq, (
const pm_node_t *) clause->statements, body_seq, popped, scope_node);
7723 PUSH_SYNTHETIC_PUTNIL(body_seq, iseq);
7726 PUSH_INSNL(body_seq, clause_location, jump, end_label);
7737 if (dispatch !=
Qundef) {
7738 PUSH_INSN(ret, location, dup);
7739 PUSH_INSN2(ret, location, opt_case_dispatch, dispatch, else_label);
7740 LABEL_REF(else_label);
7743 PUSH_SEQ(ret, cond_seq);
7747 PUSH_LABEL(ret, else_label);
7751 PUSH_INSN(ret, else_location, pop);
7754 if (PM_BRANCH_COVERAGE_P(iseq)) {
7756 add_trace_branch_coverage(iseq, ret, &branch_location, branch_location.beg_pos.column, branch_id,
"else", branches);
7759 PM_COMPILE((
const pm_node_t *) cast->
else_clause);
7760 PUSH_INSNL(ret, else_location, jump, end_label);
7763 PUSH_INSN(ret, location, pop);
7766 if (PM_BRANCH_COVERAGE_P(iseq)) {
7767 add_trace_branch_coverage(iseq, ret, &case_location, case_location.beg_pos.column, branch_id,
"else", branches);
7770 if (!popped) PUSH_INSN(ret, location, putnil);
7771 PUSH_INSNL(ret, location, jump, end_label);
7775 PUSH_SEQ(ret, body_seq);
7776 PUSH_LABEL(ret, end_label);
7780pm_compile_case_match_node(rb_iseq_t *iseq,
const pm_case_match_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
7785 DECL_ANCHOR(body_seq);
7790 DECL_ANCHOR(cond_seq);
7794 LABEL *end_label = NEW_LABEL(location->
line);
7799 LABEL *else_label = NEW_LABEL(location->
line);
7803 rb_code_location_t case_location = { 0 };
7807 if (PM_BRANCH_COVERAGE_P(iseq)) {
7808 case_location = pm_code_location(scope_node, (
const pm_node_t *) node);
7809 branches = decl_branch_base(iseq, PTR2NUM(node), &case_location,
"case");
7819 if (in_single_pattern) {
7820 PUSH_INSN(ret, *location, putnil);
7821 PUSH_INSN(ret, *location, putnil);
7822 PUSH_INSN1(ret, *location, putobject,
Qfalse);
7823 PUSH_INSN(ret, *location, putnil);
7827 PUSH_INSN(ret, *location, putnil);
7836 RUBY_ASSERT(PM_NODE_TYPE_P(condition, PM_IN_NODE));
7838 const pm_in_node_t *in_node = (
const pm_in_node_t *) condition;
7839 const pm_node_location_t in_location = PM_NODE_START_LOCATION(scope_node->parser, in_node);
7843 PUSH_INSN(body_seq, in_location, putnil);
7846 LABEL *body_label = NEW_LABEL(in_location.
line);
7847 PUSH_LABEL(body_seq, body_label);
7848 PUSH_INSN1(body_seq, in_location, adjuststack,
INT2FIX(in_single_pattern ? 6 : 2));
7851 if (PM_BRANCH_COVERAGE_P(iseq)) {
7852 rb_code_location_t branch_location = pm_code_location(scope_node, in_node->
statements != NULL ? ((
const pm_node_t *) in_node->
statements) : ((
const pm_node_t *) in_node));
7853 add_trace_branch_coverage(iseq, body_seq, &branch_location, branch_location.beg_pos.column, branch_id++,
"in", branches);
7857 PM_COMPILE_INTO_ANCHOR(body_seq, (
const pm_node_t *) in_node->
statements);
7860 PUSH_SYNTHETIC_PUTNIL(body_seq, iseq);
7863 PUSH_INSNL(body_seq, in_location, jump, end_label);
7864 LABEL *next_pattern_label = NEW_LABEL(pattern_location.
line);
7866 PUSH_INSN(cond_seq, pattern_location, dup);
7867 pm_compile_pattern(iseq, scope_node, in_node->
pattern, cond_seq, body_label, next_pattern_label, in_single_pattern,
false,
true, 2);
7868 PUSH_LABEL(cond_seq, next_pattern_label);
7869 LABEL_UNREMOVABLE(next_pattern_label);
7876 const pm_else_node_t *else_node = node->
else_clause;
7878 PUSH_LABEL(cond_seq, else_label);
7879 PUSH_INSN(cond_seq, *location, pop);
7880 PUSH_INSN(cond_seq, *location, pop);
7883 if (PM_BRANCH_COVERAGE_P(iseq)) {
7884 rb_code_location_t branch_location = pm_code_location(scope_node, else_node->
statements != NULL ? ((
const pm_node_t *) else_node->
statements) : ((
const pm_node_t *) else_node));
7885 add_trace_branch_coverage(iseq, cond_seq, &branch_location, branch_location.beg_pos.column, branch_id,
"else", branches);
7888 PM_COMPILE_INTO_ANCHOR(cond_seq, (
const pm_node_t *) else_node);
7889 PUSH_INSNL(cond_seq, *location, jump, end_label);
7890 PUSH_INSN(cond_seq, *location, putnil);
7891 if (popped) PUSH_INSN(cond_seq, *location, putnil);
7896 PUSH_LABEL(cond_seq, else_label);
7899 add_trace_branch_coverage(iseq, cond_seq, &case_location, case_location.beg_pos.column, branch_id,
"else", branches);
7901 if (in_single_pattern) {
7902 pm_compile_pattern_error_handler(iseq, scope_node, (
const pm_node_t *) node, cond_seq, end_label, popped);
7905 PUSH_INSN1(cond_seq, *location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
7907 PUSH_INSN1(cond_seq, *location, topn,
INT2FIX(2));
7908 PUSH_SEND(cond_seq, *location, id_core_raise,
INT2FIX(2));
7910 PUSH_INSN1(cond_seq, *location, adjuststack,
INT2FIX(3));
7911 if (!popped) PUSH_INSN(cond_seq, *location, putnil);
7912 PUSH_INSNL(cond_seq, *location, jump, end_label);
7913 PUSH_INSN1(cond_seq, *location, dupn,
INT2FIX(1));
7914 if (popped) PUSH_INSN(cond_seq, *location, putnil);
7921 PUSH_SEQ(ret, cond_seq);
7922 PUSH_SEQ(ret, body_seq);
7923 PUSH_LABEL(ret, end_label);
7927pm_compile_forwarding_super_node(rb_iseq_t *iseq,
const pm_forwarding_super_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
7929 const rb_iseq_t *block = NULL;
7930 const rb_iseq_t *previous_block = NULL;
7931 LABEL *retry_label = NULL;
7932 LABEL *retry_end_l = NULL;
7934 if (node->
block != NULL) {
7935 previous_block = ISEQ_COMPILE_DATA(iseq)->current_block;
7936 ISEQ_COMPILE_DATA(iseq)->current_block = NULL;
7938 retry_label = NEW_LABEL(location->
line);
7939 retry_end_l = NEW_LABEL(location->
line);
7941 PUSH_LABEL(ret, retry_label);
7944 iseq_set_use_block(ISEQ_BODY(iseq)->local_iseq);
7947 PUSH_INSN(ret, *location, putself);
7948 int flag = VM_CALL_ZSUPER | VM_CALL_SUPER | VM_CALL_FCALL;
7950 if (node->
block != NULL) {
7951 pm_scope_node_t next_scope_node;
7952 pm_scope_node_init((
const pm_node_t *) node->
block, &next_scope_node, scope_node);
7954 ISEQ_COMPILE_DATA(iseq)->current_block = block = NEW_CHILD_ISEQ(&next_scope_node, make_name_for_block(iseq), ISEQ_TYPE_BLOCK, location->
line);
7955 pm_scope_node_destroy(&next_scope_node);
7962 const rb_iseq_t *local_iseq = body->local_iseq;
7966 int depth = get_lvar_level(iseq);
7968 if (ISEQ_BODY(ISEQ_BODY(iseq)->local_iseq)->
param.flags.forwardable) {
7969 flag |= VM_CALL_FORWARDING;
7970 pm_local_index_t mult_local = pm_lookup_local_index(iseq, scope_node, PM_CONSTANT_DOT3, 0);
7971 PUSH_GETLOCAL(ret, *location, mult_local.index, mult_local.level);
7973 const struct rb_callinfo *callinfo = new_callinfo(iseq, 0, 0, flag, NULL, block != NULL);
7974 PUSH_INSN2(ret, *location, invokesuperforward, callinfo, block);
7976 if (popped) PUSH_INSN(ret, *location, pop);
7978 ISEQ_COMPILE_DATA(iseq)->current_block = previous_block;
7983 if (local_body->
param.flags.has_lead) {
7985 for (
int i = 0; i < local_body->
param.lead_num; i++) {
7986 int idx = local_body->local_table_size - i;
7987 PUSH_GETLOCAL(args, *location, idx, depth);
7989 argc += local_body->
param.lead_num;
7992 if (local_body->
param.flags.has_opt) {
7994 for (
int j = 0; j < local_body->
param.opt_num; j++) {
7995 int idx = local_body->local_table_size - (argc + j);
7996 PUSH_GETLOCAL(args, *location, idx, depth);
7998 argc += local_body->
param.opt_num;
8001 if (local_body->
param.flags.has_rest) {
8003 int idx = local_body->local_table_size - local_body->
param.rest_start;
8004 PUSH_GETLOCAL(args, *location, idx, depth);
8005 PUSH_INSN1(args, *location, splatarray,
Qfalse);
8007 argc = local_body->
param.rest_start + 1;
8008 flag |= VM_CALL_ARGS_SPLAT;
8011 if (local_body->
param.flags.has_post) {
8013 int post_len = local_body->
param.post_num;
8014 int post_start = local_body->
param.post_start;
8017 for (; j < post_len; j++) {
8018 int idx = local_body->local_table_size - (post_start + j);
8019 PUSH_GETLOCAL(args, *location, idx, depth);
8022 if (local_body->
param.flags.has_rest) {
8024 PUSH_INSN1(args, *location, newarray,
INT2FIX(j));
8025 PUSH_INSN(args, *location, concatarray);
8028 argc = post_len + post_start;
8032 const struct rb_iseq_param_keyword *
const local_keyword = local_body->
param.keyword;
8033 if (local_body->
param.flags.has_kw) {
8034 int local_size = local_body->local_table_size;
8037 PUSH_INSN1(args, *location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
8039 if (local_body->
param.flags.has_kwrest) {
8040 int idx = local_body->local_table_size - local_keyword->rest_start;
8041 PUSH_GETLOCAL(args, *location, idx, depth);
8043 PUSH_SEND(args, *location, rb_intern(
"dup"),
INT2FIX(0));
8046 PUSH_INSN1(args, *location, newhash,
INT2FIX(0));
8049 for (; i < local_keyword->num; ++i) {
8050 ID id = local_keyword->table[i];
8051 int idx = local_size - get_local_var_idx(local_iseq,
id);
8055 PUSH_INSN1(args, *location, putobject, operand);
8058 PUSH_GETLOCAL(args, *location, idx, depth);
8061 PUSH_SEND(args, *location, id_core_hash_merge_ptr,
INT2FIX(i * 2 + 1));
8062 flag |= VM_CALL_KW_SPLAT| VM_CALL_KW_SPLAT_MUT;
8064 else if (local_body->
param.flags.has_kwrest) {
8065 int idx = local_body->local_table_size - local_keyword->rest_start;
8066 PUSH_GETLOCAL(args, *location, idx, depth);
8068 flag |= VM_CALL_KW_SPLAT;
8071 PUSH_SEQ(ret, args);
8074 const struct rb_callinfo *callinfo = new_callinfo(iseq, 0, argc, flag, NULL, block != NULL);
8075 PUSH_INSN2(ret, *location, invokesuper, callinfo, block);
8078 if (node->
block != NULL) {
8079 pm_compile_retry_end_label(iseq, ret, retry_end_l);
8080 PUSH_CATCH_ENTRY(CATCH_TYPE_BREAK, retry_label, retry_end_l, block, retry_end_l);
8081 ISEQ_COMPILE_DATA(iseq)->current_block = previous_block;
8084 if (popped) PUSH_INSN(ret, *location, pop);
8088pm_compile_match_required_node(rb_iseq_t *iseq,
const pm_match_required_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
8090 LABEL *matched_label = NEW_LABEL(location->
line);
8091 LABEL *unmatched_label = NEW_LABEL(location->
line);
8092 LABEL *done_label = NEW_LABEL(location->
line);
8096 PUSH_INSN(ret, *location, putnil);
8097 PUSH_INSN(ret, *location, putnil);
8098 PUSH_INSN1(ret, *location, putobject,
Qfalse);
8099 PUSH_INSN(ret, *location, putnil);
8100 PUSH_INSN(ret, *location, putnil);
8104 PM_COMPILE_NOT_POPPED(node->
value);
8108 PUSH_INSN(ret, *location, dup);
8115 pm_compile_pattern(iseq, scope_node, node->
pattern, ret, matched_label, unmatched_label,
true,
false,
true, 2);
8120 PUSH_LABEL(ret, unmatched_label);
8121 pm_compile_pattern_error_handler(iseq, scope_node, (
const pm_node_t *) node, ret, done_label, popped);
8125 PUSH_LABEL(ret, matched_label);
8126 PUSH_INSN1(ret, *location, adjuststack,
INT2FIX(6));
8127 if (!popped) PUSH_INSN(ret, *location, putnil);
8128 PUSH_INSNL(ret, *location, jump, done_label);
8130 PUSH_LABEL(ret, done_label);
8134pm_compile_match_write_node(rb_iseq_t *iseq,
const pm_match_write_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
8136 LABEL *fail_label = NEW_LABEL(location->
line);
8137 LABEL *end_label = NEW_LABEL(location->
line);
8141 PM_COMPILE_NOT_POPPED((
const pm_node_t *) node->
call);
8148 PUSH_INSN1(ret, *location, getglobal, operand);
8151 PUSH_INSN(ret, *location, dup);
8152 PUSH_INSNL(ret, *location, branchunless, fail_label);
8158 if (targets_count == 1) {
8160 RUBY_ASSERT(PM_NODE_TYPE_P(target, PM_LOCAL_VARIABLE_TARGET_NODE));
8162 const pm_local_variable_target_node_t *local_target = (
const pm_local_variable_target_node_t *) target;
8163 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, local_target->
name, local_target->
depth);
8167 PUSH_INSN1(ret, *location, putobject, operand);
8170 PUSH_SEND(ret, *location, idAREF,
INT2FIX(1));
8171 PUSH_LABEL(ret, fail_label);
8172 PUSH_SETLOCAL(ret, *location, index.index, index.level);
8173 if (popped) PUSH_INSN(ret, *location, pop);
8177 DECL_ANCHOR(fail_anchor);
8181 for (
size_t targets_index = 0; targets_index < targets_count; targets_index++) {
8182 const pm_node_t *target = node->
targets.
nodes[targets_index];
8183 RUBY_ASSERT(PM_NODE_TYPE_P(target, PM_LOCAL_VARIABLE_TARGET_NODE));
8185 const pm_local_variable_target_node_t *local_target = (
const pm_local_variable_target_node_t *) target;
8186 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, local_target->
name, local_target->
depth);
8188 if (((
size_t) targets_index) < (targets_count - 1)) {
8189 PUSH_INSN(ret, *location, dup);
8194 PUSH_INSN1(ret, *location, putobject, operand);
8197 PUSH_SEND(ret, *location, idAREF,
INT2FIX(1));
8198 PUSH_SETLOCAL(ret, *location, index.index, index.level);
8200 PUSH_INSN(fail_anchor, *location, putnil);
8201 PUSH_SETLOCAL(fail_anchor, *location, index.index, index.level);
8205 PUSH_INSNL(ret, *location, jump, end_label);
8209 PUSH_LABEL(ret, fail_label);
8210 PUSH_INSN(ret, *location, pop);
8211 PUSH_SEQ(ret, fail_anchor);
8214 PUSH_LABEL(ret, end_label);
8215 if (popped) PUSH_INSN(ret, *location, pop);
8219pm_compile_next_node(rb_iseq_t *iseq,
const pm_next_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
8221 if (ISEQ_COMPILE_DATA(iseq)->redo_label != 0 && can_add_ensure_iseq(iseq)) {
8222 LABEL *splabel = NEW_LABEL(0);
8223 PUSH_LABEL(ret, splabel);
8226 PM_COMPILE_NOT_POPPED((
const pm_node_t *) node->
arguments);
8229 PUSH_INSN(ret, *location, putnil);
8231 pm_add_ensure_iseq(ret, iseq, 0, scope_node);
8233 PUSH_ADJUST(ret, *location, ISEQ_COMPILE_DATA(iseq)->redo_label);
8234 PUSH_INSNL(ret, *location, jump, ISEQ_COMPILE_DATA(iseq)->start_label);
8236 PUSH_ADJUST_RESTORE(ret, splabel);
8237 if (!popped) PUSH_INSN(ret, *location, putnil);
8239 else if (ISEQ_COMPILE_DATA(iseq)->end_label && can_add_ensure_iseq(iseq)) {
8240 LABEL *splabel = NEW_LABEL(0);
8242 PUSH_LABEL(ret, splabel);
8243 PUSH_ADJUST(ret, *location, ISEQ_COMPILE_DATA(iseq)->start_label);
8246 PM_COMPILE_NOT_POPPED((
const pm_node_t *) node->
arguments);
8249 PUSH_INSN(ret, *location, putnil);
8252 pm_add_ensure_iseq(ret, iseq, 0, scope_node);
8253 PUSH_INSNL(ret, *location, jump, ISEQ_COMPILE_DATA(iseq)->end_label);
8254 PUSH_ADJUST_RESTORE(ret, splabel);
8255 splabel->unremovable = FALSE;
8257 if (!popped) PUSH_INSN(ret, *location, putnil);
8260 const rb_iseq_t *ip = iseq;
8261 unsigned long throw_flag = 0;
8264 if (!ISEQ_COMPILE_DATA(ip)) {
8269 throw_flag = VM_THROW_NO_ESCAPE_FLAG;
8270 if (ISEQ_COMPILE_DATA(ip)->redo_label != 0) {
8274 else if (ISEQ_BODY(ip)->
type == ISEQ_TYPE_BLOCK) {
8277 else if (ISEQ_BODY(ip)->
type == ISEQ_TYPE_EVAL) {
8278 COMPILE_ERROR(iseq, location->
line,
"Invalid next");
8282 ip = ISEQ_BODY(ip)->parent_iseq;
8287 PM_COMPILE_NOT_POPPED((
const pm_node_t *) node->
arguments);
8290 PUSH_INSN(ret, *location, putnil);
8293 PUSH_INSN1(ret, *location,
throw,
INT2FIX(throw_flag | TAG_NEXT));
8294 if (popped) PUSH_INSN(ret, *location, pop);
8297 COMPILE_ERROR(iseq, location->
line,
"Invalid next");
8303pm_compile_redo_node(rb_iseq_t *iseq,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
8305 if (ISEQ_COMPILE_DATA(iseq)->redo_label && can_add_ensure_iseq(iseq)) {
8306 LABEL *splabel = NEW_LABEL(0);
8308 PUSH_LABEL(ret, splabel);
8309 PUSH_ADJUST(ret, *location, ISEQ_COMPILE_DATA(iseq)->redo_label);
8310 pm_add_ensure_iseq(ret, iseq, 0, scope_node);
8312 PUSH_INSNL(ret, *location, jump, ISEQ_COMPILE_DATA(iseq)->redo_label);
8313 PUSH_ADJUST_RESTORE(ret, splabel);
8314 if (!popped) PUSH_INSN(ret, *location, putnil);
8316 else if (ISEQ_BODY(iseq)->
type != ISEQ_TYPE_EVAL && ISEQ_COMPILE_DATA(iseq)->start_label && can_add_ensure_iseq(iseq)) {
8317 LABEL *splabel = NEW_LABEL(0);
8319 PUSH_LABEL(ret, splabel);
8320 pm_add_ensure_iseq(ret, iseq, 0, scope_node);
8321 PUSH_ADJUST(ret, *location, ISEQ_COMPILE_DATA(iseq)->start_label);
8323 PUSH_INSNL(ret, *location, jump, ISEQ_COMPILE_DATA(iseq)->start_label);
8324 PUSH_ADJUST_RESTORE(ret, splabel);
8325 if (!popped) PUSH_INSN(ret, *location, putnil);
8328 const rb_iseq_t *ip = iseq;
8331 if (!ISEQ_COMPILE_DATA(ip)) {
8336 if (ISEQ_COMPILE_DATA(ip)->redo_label != 0) {
8339 else if (ISEQ_BODY(ip)->
type == ISEQ_TYPE_BLOCK) {
8342 else if (ISEQ_BODY(ip)->
type == ISEQ_TYPE_EVAL) {
8343 COMPILE_ERROR(iseq, location->
line,
"Invalid redo");
8347 ip = ISEQ_BODY(ip)->parent_iseq;
8351 PUSH_INSN(ret, *location, putnil);
8352 PUSH_INSN1(ret, *location,
throw,
INT2FIX(VM_THROW_NO_ESCAPE_FLAG | TAG_REDO));
8353 if (popped) PUSH_INSN(ret, *location, pop);
8356 COMPILE_ERROR(iseq, location->
line,
"Invalid redo");
8362pm_compile_rescue_node(rb_iseq_t *iseq,
const pm_rescue_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
8364 iseq_set_exception_local_table(iseq);
8368 LABEL *exception_match_label = NEW_LABEL(location->
line);
8369 LABEL *rescue_end_label = NEW_LABEL(location->
line);
8377 const pm_node_list_t *exceptions = &node->
exceptions;
8379 if (exceptions->
size > 0) {
8380 for (
size_t index = 0; index < exceptions->
size; index++) {
8381 PUSH_GETLOCAL(ret, *location, LVAR_ERRINFO, 0);
8382 PM_COMPILE(exceptions->
nodes[index]);
8383 int checkmatch_flags = VM_CHECKMATCH_TYPE_RESCUE;
8384 if (PM_NODE_TYPE_P(exceptions->
nodes[index], PM_SPLAT_NODE)) {
8385 checkmatch_flags |= VM_CHECKMATCH_ARRAY;
8387 PUSH_INSN1(ret, *location, checkmatch,
INT2FIX(checkmatch_flags));
8388 PUSH_INSNL(ret, *location, branchif, exception_match_label);
8392 PUSH_GETLOCAL(ret, *location, LVAR_ERRINFO, 0);
8394 PUSH_INSN1(ret, *location, checkmatch,
INT2FIX(VM_CHECKMATCH_TYPE_RESCUE));
8395 PUSH_INSNL(ret, *location, branchif, exception_match_label);
8400 PUSH_INSNL(ret, *location, jump, rescue_end_label);
8405 PUSH_LABEL(ret, exception_match_label);
8412 DECL_ANCHOR(writes);
8413 DECL_ANCHOR(cleanup);
8415 pm_compile_target_node(iseq, node->
reference, ret, writes, cleanup, scope_node, NULL);
8416 PUSH_GETLOCAL(ret, *location, LVAR_ERRINFO, 0);
8418 PUSH_SEQ(ret, writes);
8419 PUSH_SEQ(ret, cleanup);
8429 LABEL *prev_end = ISEQ_COMPILE_DATA(iseq)->end_label;
8430 ISEQ_COMPILE_DATA(iseq)->end_label = NULL;
8432 PM_COMPILE((
const pm_node_t *) node->
statements);
8435 ISEQ_COMPILE_DATA(iseq)->end_label = prev_end;
8438 PUSH_INSN(ret, *location, putnil);
8441 PUSH_INSN(ret, *location, leave);
8447 PUSH_LABEL(ret, rescue_end_label);
8449 PM_COMPILE((
const pm_node_t *) node->
subsequent);
8452 PUSH_GETLOCAL(ret, *location, 1, 0);
8457pm_compile_return_node(rb_iseq_t *iseq,
const pm_return_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
8459 const pm_arguments_node_t *arguments = node->
arguments;
8460 enum rb_iseq_type
type = ISEQ_BODY(iseq)->type;
8463 const rb_iseq_t *parent_iseq = iseq;
8464 enum rb_iseq_type parent_type = ISEQ_BODY(parent_iseq)->type;
8465 while (parent_type == ISEQ_TYPE_RESCUE || parent_type == ISEQ_TYPE_ENSURE) {
8466 if (!(parent_iseq = ISEQ_BODY(parent_iseq)->parent_iseq))
break;
8467 parent_type = ISEQ_BODY(parent_iseq)->type;
8470 switch (parent_type) {
8472 case ISEQ_TYPE_MAIN:
8474 rb_warn(
"argument of top-level return is ignored");
8476 if (parent_iseq == iseq) {
8477 type = ISEQ_TYPE_METHOD;
8484 if (
type == ISEQ_TYPE_METHOD) {
8485 splabel = NEW_LABEL(0);
8486 PUSH_LABEL(ret, splabel);
8487 PUSH_ADJUST(ret, *location, 0);
8490 if (arguments != NULL) {
8491 PM_COMPILE_NOT_POPPED((
const pm_node_t *) arguments);
8494 PUSH_INSN(ret, *location, putnil);
8497 if (
type == ISEQ_TYPE_METHOD && can_add_ensure_iseq(iseq)) {
8498 pm_add_ensure_iseq(ret, iseq, 1, scope_node);
8500 PUSH_INSN(ret, *location, leave);
8501 PUSH_ADJUST_RESTORE(ret, splabel);
8502 if (!popped) PUSH_INSN(ret, *location, putnil);
8505 PUSH_INSN1(ret, *location,
throw,
INT2FIX(TAG_RETURN));
8506 if (popped) PUSH_INSN(ret, *location, pop);
8511pm_compile_super_node(rb_iseq_t *iseq,
const pm_super_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
8515 LABEL *retry_label = NEW_LABEL(location->
line);
8516 LABEL *retry_end_l = NEW_LABEL(location->
line);
8518 const rb_iseq_t *previous_block = ISEQ_COMPILE_DATA(iseq)->current_block;
8519 const rb_iseq_t *current_block;
8520 ISEQ_COMPILE_DATA(iseq)->current_block = current_block = NULL;
8522 PUSH_LABEL(ret, retry_label);
8523 PUSH_INSN(ret, *location, putself);
8527 int argc = pm_setup_args(node->
arguments, node->
block, &flags, &keywords, iseq, ret, scope_node, location);
8528 bool is_forwardable = (node->
arguments != NULL) && PM_NODE_FLAG_P(node->
arguments, PM_ARGUMENTS_NODE_FLAGS_CONTAINS_FORWARDING);
8529 flags |= VM_CALL_SUPER | VM_CALL_FCALL;
8531 if (node->
block && PM_NODE_TYPE_P(node->
block, PM_BLOCK_NODE)) {
8532 pm_scope_node_t next_scope_node;
8533 pm_scope_node_init(node->
block, &next_scope_node, scope_node);
8535 ISEQ_COMPILE_DATA(iseq)->current_block = current_block = NEW_CHILD_ISEQ(&next_scope_node, make_name_for_block(iseq), ISEQ_TYPE_BLOCK, location->
line);
8536 pm_scope_node_destroy(&next_scope_node);
8540 iseq_set_use_block(ISEQ_BODY(iseq)->local_iseq);
8543 if ((flags & VM_CALL_ARGS_BLOCKARG) && (flags & VM_CALL_KW_SPLAT) && !(flags & VM_CALL_KW_SPLAT_MUT)) {
8544 PUSH_INSN(args, *location, splatkw);
8547 PUSH_SEQ(ret, args);
8548 if (is_forwardable && ISEQ_BODY(ISEQ_BODY(iseq)->local_iseq)->param.
flags.forwardable) {
8549 flags |= VM_CALL_FORWARDING;
8552 const struct rb_callinfo *callinfo = new_callinfo(iseq, 0, argc, flags, keywords, current_block != NULL);
8553 PUSH_INSN2(ret, *location, invokesuperforward, callinfo, current_block);
8558 const struct rb_callinfo *callinfo = new_callinfo(iseq, 0, argc, flags, keywords, current_block != NULL);
8559 PUSH_INSN2(ret, *location, invokesuper, callinfo, current_block);
8564 pm_compile_retry_end_label(iseq, ret, retry_end_l);
8566 if (popped) PUSH_INSN(ret, *location, pop);
8567 ISEQ_COMPILE_DATA(iseq)->current_block = previous_block;
8568 PUSH_CATCH_ENTRY(CATCH_TYPE_BREAK, retry_label, retry_end_l, current_block, retry_end_l);
8572pm_compile_yield_node(rb_iseq_t *iseq,
const pm_yield_node_t *node,
const pm_node_location_t *location, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
8574 switch (ISEQ_BODY(ISEQ_BODY(iseq)->local_iseq)->
type) {
8576 case ISEQ_TYPE_MAIN:
8577 case ISEQ_TYPE_CLASS:
8578 COMPILE_ERROR(iseq, location->
line,
"Invalid yield");
8588 argc = pm_setup_args(node->
arguments, NULL, &flags, &keywords, iseq, ret, scope_node, location);
8591 const struct rb_callinfo *callinfo = new_callinfo(iseq, 0, argc, flags, keywords, FALSE);
8592 PUSH_INSN1(ret, *location, invokeblock, callinfo);
8594 iseq_set_use_block(ISEQ_BODY(iseq)->local_iseq);
8595 if (popped) PUSH_INSN(ret, *location, pop);
8598 for (
const rb_iseq_t *tmp_iseq = iseq; tmp_iseq != ISEQ_BODY(iseq)->local_iseq; level++) {
8599 tmp_iseq = ISEQ_BODY(tmp_iseq)->parent_iseq;
8602 if (level > 0) access_outer_variables(iseq, level, rb_intern(
"yield"),
true);
8616pm_compile_node(rb_iseq_t *iseq,
const pm_node_t *node, LINK_ANCHOR *
const ret,
bool popped, pm_scope_node_t *scope_node)
8620 int lineno = (int) location.
line;
8622 if (PM_NODE_TYPE_P(node, PM_BEGIN_NODE) && (((
const pm_begin_node_t *) node)->statements == NULL) && (((
const pm_begin_node_t *) node)->rescue_clause != NULL)) {
8627 lineno = (int) PM_NODE_START_LINE_COLUMN(parser, ((
const pm_begin_node_t *) node)->rescue_clause).line;
8630 if (PM_NODE_FLAG_P(node, PM_NODE_FLAG_NEWLINE) && ISEQ_COMPILE_DATA(iseq)->last_line != lineno) {
8636 ISEQ_COMPILE_DATA(iseq)->last_line = lineno;
8637 if (lineno > 0 && ISEQ_COVERAGE(iseq) && ISEQ_LINE_COVERAGE(iseq)) {
8638 event |= RUBY_EVENT_COVERAGE_LINE;
8640 PUSH_TRACE(ret, event);
8643 switch (PM_NODE_TYPE(node)) {
8644 case PM_ALIAS_GLOBAL_VARIABLE_NODE:
8647 pm_compile_alias_global_variable_node(iseq, (
const pm_alias_global_variable_node_t *) node, &location, ret, popped, scope_node);
8649 case PM_ALIAS_METHOD_NODE:
8652 pm_compile_alias_method_node(iseq, (
const pm_alias_method_node_t *) node, &location, ret, popped, scope_node);
8657 pm_compile_and_node(iseq, (
const pm_and_node_t *) node, &location, ret, popped, scope_node);
8659 case PM_ARGUMENTS_NODE: {
8666 const pm_arguments_node_t *cast = (
const pm_arguments_node_t *) node;
8667 const pm_node_list_t *elements = &cast->
arguments;
8669 if (elements->
size == 1) {
8672 PM_COMPILE(elements->
nodes[0]);
8675 pm_compile_array_node(iseq, (
const pm_node_t *) cast, elements, &location, ret, popped, scope_node);
8679 case PM_ARRAY_NODE: {
8682 const pm_array_node_t *cast = (
const pm_array_node_t *) node;
8683 pm_compile_array_node(iseq, (
const pm_node_t *) cast, &cast->elements, &location, ret, popped, scope_node);
8686 case PM_ASSOC_NODE: {
8692 const pm_assoc_node_t *cast = (
const pm_assoc_node_t *) node;
8694 PM_COMPILE(cast->
key);
8695 PM_COMPILE(cast->
value);
8699 case PM_ASSOC_SPLAT_NODE: {
8705 const pm_assoc_splat_node_t *cast = (
const pm_assoc_splat_node_t *) node;
8707 if (cast->
value != NULL) {
8708 PM_COMPILE(cast->
value);
8711 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, PM_CONSTANT_POW, 0);
8712 PUSH_GETLOCAL(ret, location, index.index, index.level);
8717 case PM_BACK_REFERENCE_READ_NODE: {
8721 const pm_back_reference_read_node_t *cast = (
const pm_back_reference_read_node_t *) node;
8722 VALUE backref = pm_compile_back_reference_ref(cast);
8724 PUSH_INSN2(ret, location, getspecial,
INT2FIX(1), backref);
8728 case PM_BEGIN_NODE: {
8731 const pm_begin_node_t *cast = (
const pm_begin_node_t *) node;
8736 pm_compile_ensure(iseq, cast, &location, ret, popped, scope_node);
8740 pm_compile_rescue(iseq, cast, &location, ret, popped, scope_node);
8746 PM_COMPILE((
const pm_node_t *) cast->
statements);
8749 PUSH_SYNTHETIC_PUTNIL(ret, iseq);
8754 case PM_BLOCK_ARGUMENT_NODE: {
8757 const pm_block_argument_node_t *cast = (
const pm_block_argument_node_t *) node;
8764 pm_local_index_t local_index = pm_lookup_local_index(iseq, scope_node, PM_CONSTANT_AND, 0);
8765 PUSH_INSN2(ret, location, getblockparamproxy,
INT2FIX(local_index.index + VM_ENV_DATA_SIZE - 1),
INT2FIX(local_index.level));
8775 pm_compile_break_node(iseq, (
const pm_break_node_t *) node, &location, ret, popped, scope_node);
8786 pm_compile_call_node(iseq, (
const pm_call_node_t *) node, ret, popped, scope_node);
8788 case PM_CALL_AND_WRITE_NODE: {
8791 const pm_call_and_write_node_t *cast = (
const pm_call_and_write_node_t *) node;
8792 pm_compile_call_and_or_write_node(iseq,
true, cast->
receiver, cast->
value, cast->
write_name, cast->
read_name, PM_NODE_FLAG_P(cast, PM_CALL_NODE_FLAGS_SAFE_NAVIGATION), &location, ret, popped, scope_node);
8795 case PM_CALL_OR_WRITE_NODE: {
8798 const pm_call_or_write_node_t *cast = (
const pm_call_or_write_node_t *) node;
8799 pm_compile_call_and_or_write_node(iseq,
false, cast->
receiver, cast->
value, cast->
write_name, cast->
read_name, PM_NODE_FLAG_P(cast, PM_CALL_NODE_FLAGS_SAFE_NAVIGATION), &location, ret, popped, scope_node);
8802 case PM_CALL_OPERATOR_WRITE_NODE:
8812 pm_compile_call_operator_write_node(iseq, (
const pm_call_operator_write_node_t *) node, &location, ret, popped, scope_node);
8817 pm_compile_case_node(iseq, (
const pm_case_node_t *) node, &location, ret, popped, scope_node);
8819 case PM_CASE_MATCH_NODE:
8828 pm_compile_case_match_node(iseq, (
const pm_case_match_node_t *) node, &location, ret, popped, scope_node);
8830 case PM_CLASS_NODE: {
8833 const pm_class_node_t *cast = (
const pm_class_node_t *) node;
8835 ID class_id = pm_constant_id_lookup(scope_node, cast->
name);
8836 VALUE class_name =
rb_str_freeze(rb_sprintf(
"<class:%"PRIsVALUE
">", rb_id2str(class_id)));
8838 pm_scope_node_t next_scope_node;
8839 pm_scope_node_init((
const pm_node_t *) cast, &next_scope_node, scope_node);
8841 const rb_iseq_t *class_iseq = NEW_CHILD_ISEQ(&next_scope_node, class_name, ISEQ_TYPE_CLASS, location.
line);
8842 pm_scope_node_destroy(&next_scope_node);
8845 const int flags = VM_DEFINECLASS_TYPE_CLASS |
8846 (cast->
superclass ? VM_DEFINECLASS_FLAG_HAS_SUPERCLASS : 0) |
8847 pm_compile_class_path(iseq, cast->
constant_path, &location, ret,
false, scope_node);
8853 PUSH_INSN(ret, location, putnil);
8858 PUSH_INSN3(ret, location, defineclass, operand, class_iseq,
INT2FIX(flags));
8862 if (popped) PUSH_INSN(ret, location, pop);
8865 case PM_CLASS_VARIABLE_AND_WRITE_NODE: {
8868 const pm_class_variable_and_write_node_t *cast = (
const pm_class_variable_and_write_node_t *) node;
8869 LABEL *end_label = NEW_LABEL(location.
line);
8871 ID name_id = pm_constant_id_lookup(scope_node, cast->
name);
8874 PUSH_INSN2(ret, location, getclassvariable, name, get_cvar_ic_value(iseq, name_id));
8875 if (!popped) PUSH_INSN(ret, location, dup);
8877 PUSH_INSNL(ret, location, branchunless, end_label);
8878 if (!popped) PUSH_INSN(ret, location, pop);
8880 PM_COMPILE_NOT_POPPED(cast->
value);
8881 if (!popped) PUSH_INSN(ret, location, dup);
8883 PUSH_INSN2(ret, location, setclassvariable, name, get_cvar_ic_value(iseq, name_id));
8884 PUSH_LABEL(ret, end_label);
8888 case PM_CLASS_VARIABLE_OPERATOR_WRITE_NODE: {
8891 const pm_class_variable_operator_write_node_t *cast = (
const pm_class_variable_operator_write_node_t *) node;
8893 ID name_id = pm_constant_id_lookup(scope_node, cast->
name);
8896 PUSH_INSN2(ret, location, getclassvariable, name, get_cvar_ic_value(iseq, name_id));
8897 PM_COMPILE_NOT_POPPED(cast->
value);
8900 int flags = VM_CALL_ARGS_SIMPLE;
8901 PUSH_SEND_WITH_FLAG(ret, location, method_id,
INT2NUM(1),
INT2FIX(flags));
8903 if (!popped) PUSH_INSN(ret, location, dup);
8904 PUSH_INSN2(ret, location, setclassvariable, name, get_cvar_ic_value(iseq, name_id));
8908 case PM_CLASS_VARIABLE_OR_WRITE_NODE: {
8911 const pm_class_variable_or_write_node_t *cast = (
const pm_class_variable_or_write_node_t *) node;
8912 LABEL *end_label = NEW_LABEL(location.
line);
8913 LABEL *start_label = NEW_LABEL(location.
line);
8915 ID name_id = pm_constant_id_lookup(scope_node, cast->
name);
8918 PUSH_INSN(ret, location, putnil);
8919 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_CVAR), name,
Qtrue);
8920 PUSH_INSNL(ret, location, branchunless, start_label);
8922 PUSH_INSN2(ret, location, getclassvariable, name, get_cvar_ic_value(iseq, name_id));
8923 if (!popped) PUSH_INSN(ret, location, dup);
8925 PUSH_INSNL(ret, location, branchif, end_label);
8926 if (!popped) PUSH_INSN(ret, location, pop);
8928 PUSH_LABEL(ret, start_label);
8929 PM_COMPILE_NOT_POPPED(cast->
value);
8930 if (!popped) PUSH_INSN(ret, location, dup);
8932 PUSH_INSN2(ret, location, setclassvariable, name, get_cvar_ic_value(iseq, name_id));
8933 PUSH_LABEL(ret, end_label);
8937 case PM_CLASS_VARIABLE_READ_NODE: {
8941 const pm_class_variable_read_node_t *cast = (
const pm_class_variable_read_node_t *) node;
8942 ID name = pm_constant_id_lookup(scope_node, cast->
name);
8943 PUSH_INSN2(ret, location, getclassvariable,
ID2SYM(name), get_cvar_ic_value(iseq, name));
8947 case PM_CLASS_VARIABLE_WRITE_NODE: {
8950 const pm_class_variable_write_node_t *cast = (
const pm_class_variable_write_node_t *) node;
8951 PM_COMPILE_NOT_POPPED(cast->
value);
8952 if (!popped) PUSH_INSN(ret, location, dup);
8954 ID name = pm_constant_id_lookup(scope_node, cast->
name);
8955 PUSH_INSN2(ret, location, setclassvariable,
ID2SYM(name), get_cvar_ic_value(iseq, name));
8959 case PM_CONSTANT_PATH_NODE: {
8964 if (ISEQ_COMPILE_DATA(iseq)->option->inline_const_cache && ((parts = pm_constant_path_parts(node, scope_node)) !=
Qnil)) {
8965 ISEQ_BODY(iseq)->ic_size++;
8966 PUSH_INSN1(ret, location, opt_getconstant_path, parts);
8969 DECL_ANCHOR(prefix);
8972 pm_compile_constant_path(iseq, node, prefix, body, popped, scope_node);
8973 if (LIST_INSN_SIZE_ZERO(prefix)) {
8974 PUSH_INSN(ret, location, putnil);
8977 PUSH_SEQ(ret, prefix);
8980 PUSH_SEQ(ret, body);
8983 if (popped) PUSH_INSN(ret, location, pop);
8986 case PM_CONSTANT_PATH_AND_WRITE_NODE: {
8989 const pm_constant_path_and_write_node_t *cast = (
const pm_constant_path_and_write_node_t *) node;
8990 pm_compile_constant_path_and_write_node(iseq, cast, 0, &location, ret, popped, scope_node);
8993 case PM_CONSTANT_PATH_OR_WRITE_NODE: {
8996 const pm_constant_path_or_write_node_t *cast = (
const pm_constant_path_or_write_node_t *) node;
8997 pm_compile_constant_path_or_write_node(iseq, cast, 0, &location, ret, popped, scope_node);
9000 case PM_CONSTANT_PATH_OPERATOR_WRITE_NODE: {
9003 const pm_constant_path_operator_write_node_t *cast = (
const pm_constant_path_operator_write_node_t *) node;
9004 pm_compile_constant_path_operator_write_node(iseq, cast, 0, &location, ret, popped, scope_node);
9007 case PM_CONSTANT_PATH_WRITE_NODE: {
9010 const pm_constant_path_write_node_t *cast = (
const pm_constant_path_write_node_t *) node;
9011 pm_compile_constant_path_write_node(iseq, cast, 0, &location, ret, popped, scope_node);
9014 case PM_CONSTANT_READ_NODE: {
9017 const pm_constant_read_node_t *cast = (
const pm_constant_read_node_t *) node;
9020 pm_compile_constant_read(iseq, name, &cast->
base.
location, location.
node_id, ret, scope_node);
9021 if (popped) PUSH_INSN(ret, location, pop);
9025 case PM_CONSTANT_AND_WRITE_NODE: {
9028 const pm_constant_and_write_node_t *cast = (
const pm_constant_and_write_node_t *) node;
9029 pm_compile_constant_and_write_node(iseq, cast, 0, &location, ret, popped, scope_node);
9032 case PM_CONSTANT_OR_WRITE_NODE: {
9035 const pm_constant_or_write_node_t *cast = (
const pm_constant_or_write_node_t *) node;
9036 pm_compile_constant_or_write_node(iseq, cast, 0, &location, ret, popped, scope_node);
9039 case PM_CONSTANT_OPERATOR_WRITE_NODE: {
9042 const pm_constant_operator_write_node_t *cast = (
const pm_constant_operator_write_node_t *) node;
9043 pm_compile_constant_operator_write_node(iseq, cast, 0, &location, ret, popped, scope_node);
9046 case PM_CONSTANT_WRITE_NODE: {
9049 const pm_constant_write_node_t *cast = (
const pm_constant_write_node_t *) node;
9050 pm_compile_constant_write_node(iseq, cast, 0, &location, ret, popped, scope_node);
9059 const pm_def_node_t *cast = (
const pm_def_node_t *) node;
9060 ID method_name = pm_constant_id_lookup(scope_node, cast->
name);
9062 pm_scope_node_t next_scope_node;
9063 pm_scope_node_init((
const pm_node_t *) cast, &next_scope_node, scope_node);
9065 rb_iseq_t *method_iseq = NEW_ISEQ(&next_scope_node, rb_id2str(method_name), ISEQ_TYPE_METHOD, location.
line);
9066 pm_scope_node_destroy(&next_scope_node);
9069 PM_COMPILE_NOT_POPPED(cast->
receiver);
9070 PUSH_INSN2(ret, location, definesmethod,
ID2SYM(method_name), method_iseq);
9073 PUSH_INSN2(ret, location, definemethod,
ID2SYM(method_name), method_iseq);
9078 PUSH_INSN1(ret, location, putobject,
ID2SYM(method_name));
9083 case PM_DEFINED_NODE: {
9086 const pm_defined_node_t *cast = (
const pm_defined_node_t *) node;
9087 pm_compile_defined_expr(iseq, cast->
value, &location, ret, popped, scope_node,
false);
9090 case PM_EMBEDDED_STATEMENTS_NODE: {
9093 const pm_embedded_statements_node_t *cast = (
const pm_embedded_statements_node_t *) node;
9096 PM_COMPILE((
const pm_node_t *) (cast->
statements));
9099 PUSH_SYNTHETIC_PUTNIL(ret, iseq);
9102 if (popped) PUSH_INSN(ret, location, pop);
9105 case PM_EMBEDDED_VARIABLE_NODE: {
9108 const pm_embedded_variable_node_t *cast = (
const pm_embedded_variable_node_t *) node;
9112 case PM_FALSE_NODE: {
9116 PUSH_INSN1(ret, location, putobject,
Qfalse);
9120 case PM_ENSURE_NODE: {
9121 const pm_ensure_node_t *cast = (
const pm_ensure_node_t *) node;
9124 PM_COMPILE((
const pm_node_t *) cast->
statements);
9129 case PM_ELSE_NODE: {
9132 const pm_else_node_t *cast = (
const pm_else_node_t *) node;
9135 PM_COMPILE((
const pm_node_t *) cast->
statements);
9138 PUSH_SYNTHETIC_PUTNIL(ret, iseq);
9143 case PM_FLIP_FLOP_NODE: {
9146 const pm_flip_flop_node_t *cast = (
const pm_flip_flop_node_t *) node;
9148 LABEL *final_label = NEW_LABEL(location.
line);
9149 LABEL *then_label = NEW_LABEL(location.
line);
9150 LABEL *else_label = NEW_LABEL(location.
line);
9152 pm_compile_flip_flop(cast, else_label, then_label, iseq, location.
line, ret, popped, scope_node);
9154 PUSH_LABEL(ret, then_label);
9155 PUSH_INSN1(ret, location, putobject,
Qtrue);
9156 PUSH_INSNL(ret, location, jump, final_label);
9157 PUSH_LABEL(ret, else_label);
9158 PUSH_INSN1(ret, location, putobject,
Qfalse);
9159 PUSH_LABEL(ret, final_label);
9163 case PM_FLOAT_NODE: {
9167 VALUE operand = parse_float((
const pm_float_node_t *) node);
9168 PUSH_INSN1(ret, location, putobject, operand);
9175 const pm_for_node_t *cast = (
const pm_for_node_t *) node;
9177 LABEL *retry_label = NEW_LABEL(location.
line);
9178 LABEL *retry_end_l = NEW_LABEL(location.
line);
9181 PUSH_LABEL(ret, retry_label);
9186 pm_scope_node_t next_scope_node;
9187 pm_scope_node_init((
const pm_node_t *) cast, &next_scope_node, scope_node);
9189 const rb_iseq_t *child_iseq = NEW_CHILD_ISEQ(&next_scope_node, make_name_for_block(iseq), ISEQ_TYPE_BLOCK, location.
line);
9190 pm_scope_node_destroy(&next_scope_node);
9192 const rb_iseq_t *prev_block = ISEQ_COMPILE_DATA(iseq)->current_block;
9193 ISEQ_COMPILE_DATA(iseq)->current_block = child_iseq;
9197 PUSH_SEND_WITH_BLOCK(ret, location, idEach,
INT2FIX(0), child_iseq);
9198 pm_compile_retry_end_label(iseq, ret, retry_end_l);
9200 if (popped) PUSH_INSN(ret, location, pop);
9201 ISEQ_COMPILE_DATA(iseq)->current_block = prev_block;
9202 PUSH_CATCH_ENTRY(CATCH_TYPE_BREAK, retry_label, retry_end_l, child_iseq, retry_end_l);
9205 case PM_FORWARDING_ARGUMENTS_NODE:
9206 rb_bug(
"Cannot compile a ForwardingArgumentsNode directly\n");
9208 case PM_FORWARDING_SUPER_NODE:
9214 pm_compile_forwarding_super_node(iseq, (
const pm_forwarding_super_node_t *) node, &location, ret, popped, scope_node);
9216 case PM_GLOBAL_VARIABLE_AND_WRITE_NODE: {
9219 const pm_global_variable_and_write_node_t *cast = (
const pm_global_variable_and_write_node_t *) node;
9220 LABEL *end_label = NEW_LABEL(location.
line);
9223 PUSH_INSN1(ret, location, getglobal, name);
9224 if (!popped) PUSH_INSN(ret, location, dup);
9226 PUSH_INSNL(ret, location, branchunless, end_label);
9227 if (!popped) PUSH_INSN(ret, location, pop);
9229 PM_COMPILE_NOT_POPPED(cast->
value);
9230 if (!popped) PUSH_INSN(ret, location, dup);
9232 PUSH_INSN1(ret, location, setglobal, name);
9233 PUSH_LABEL(ret, end_label);
9237 case PM_GLOBAL_VARIABLE_OPERATOR_WRITE_NODE: {
9240 const pm_global_variable_operator_write_node_t *cast = (
const pm_global_variable_operator_write_node_t *) node;
9243 PUSH_INSN1(ret, location, getglobal, name);
9244 PM_COMPILE_NOT_POPPED(cast->
value);
9247 int flags = VM_CALL_ARGS_SIMPLE;
9248 PUSH_SEND_WITH_FLAG(ret, location, method_id,
INT2NUM(1),
INT2FIX(flags));
9250 if (!popped) PUSH_INSN(ret, location, dup);
9251 PUSH_INSN1(ret, location, setglobal, name);
9255 case PM_GLOBAL_VARIABLE_OR_WRITE_NODE: {
9258 const pm_global_variable_or_write_node_t *cast = (
const pm_global_variable_or_write_node_t *) node;
9259 LABEL *set_label = NEW_LABEL(location.
line);
9260 LABEL *end_label = NEW_LABEL(location.
line);
9262 PUSH_INSN(ret, location, putnil);
9265 PUSH_INSN3(ret, location, defined,
INT2FIX(DEFINED_GVAR), name,
Qtrue);
9266 PUSH_INSNL(ret, location, branchunless, set_label);
9268 PUSH_INSN1(ret, location, getglobal, name);
9269 if (!popped) PUSH_INSN(ret, location, dup);
9271 PUSH_INSNL(ret, location, branchif, end_label);
9272 if (!popped) PUSH_INSN(ret, location, pop);
9274 PUSH_LABEL(ret, set_label);
9275 PM_COMPILE_NOT_POPPED(cast->
value);
9276 if (!popped) PUSH_INSN(ret, location, dup);
9278 PUSH_INSN1(ret, location, setglobal, name);
9279 PUSH_LABEL(ret, end_label);
9283 case PM_GLOBAL_VARIABLE_READ_NODE: {
9286 const pm_global_variable_read_node_t *cast = (
const pm_global_variable_read_node_t *) node;
9289 PUSH_INSN1(ret, location, getglobal, name);
9290 if (popped) PUSH_INSN(ret, location, pop);
9294 case PM_GLOBAL_VARIABLE_WRITE_NODE: {
9297 const pm_global_variable_write_node_t *cast = (
const pm_global_variable_write_node_t *) node;
9298 PM_COMPILE_NOT_POPPED(cast->
value);
9299 if (!popped) PUSH_INSN(ret, location, dup);
9301 ID name = pm_constant_id_lookup(scope_node, cast->
name);
9302 PUSH_INSN1(ret, location, setglobal,
ID2SYM(name));
9306 case PM_HASH_NODE: {
9312 if (PM_NODE_FLAG_P(node, PM_NODE_FLAG_STATIC_LITERAL)) {
9317 const pm_hash_node_t *cast = (
const pm_hash_node_t *) node;
9320 PUSH_INSN1(ret, location, newhash,
INT2FIX(0));
9323 VALUE value = pm_static_literal_value(iseq, node, scope_node);
9324 PUSH_INSN1(ret, location, duphash, value);
9338 const pm_hash_node_t *cast = (
const pm_hash_node_t *) node;
9339 const pm_node_list_t *elements = &cast->
elements;
9345 for (
size_t index = 0; index < elements->
size; index++) {
9346 PM_COMPILE_POPPED(elements->
nodes[index]);
9350 pm_compile_hash_elements(iseq, node, elements, 0,
Qundef,
false, ret, scope_node);
9365 const pm_if_node_t *cast = (
const pm_if_node_t *) node;
9366 pm_compile_conditional(iseq, &location, PM_IF_NODE, (
const pm_node_t *) cast, cast->statements, cast->subsequent, cast->predicate, ret, popped, scope_node);
9369 case PM_IMAGINARY_NODE: {
9373 VALUE operand = parse_imaginary((
const pm_imaginary_node_t *) node);
9374 PUSH_INSN1(ret, location, putobject, operand);
9378 case PM_IMPLICIT_NODE: {
9387 const pm_implicit_node_t *cast = (
const pm_implicit_node_t *) node;
9388 PM_COMPILE(cast->
value);
9394 rb_bug(
"Should not ever enter an in node directly");
9397 case PM_INDEX_OPERATOR_WRITE_NODE: {
9400 const pm_index_operator_write_node_t *cast = (
const pm_index_operator_write_node_t *) node;
9401 pm_compile_index_operator_write_node(iseq, cast, &location, ret, popped, scope_node);
9404 case PM_INDEX_AND_WRITE_NODE: {
9407 const pm_index_and_write_node_t *cast = (
const pm_index_and_write_node_t *) node;
9408 pm_compile_index_control_flow_write_node(iseq, node, cast->
receiver, cast->
arguments, cast->
block, cast->
value, &location, ret, popped, scope_node);
9411 case PM_INDEX_OR_WRITE_NODE: {
9414 const pm_index_or_write_node_t *cast = (
const pm_index_or_write_node_t *) node;
9415 pm_compile_index_control_flow_write_node(iseq, node, cast->
receiver, cast->
arguments, cast->
block, cast->
value, &location, ret, popped, scope_node);
9418 case PM_INSTANCE_VARIABLE_AND_WRITE_NODE: {
9421 const pm_instance_variable_and_write_node_t *cast = (
const pm_instance_variable_and_write_node_t *) node;
9422 LABEL *end_label = NEW_LABEL(location.
line);
9424 ID name_id = pm_constant_id_lookup(scope_node, cast->
name);
9427 PUSH_INSN2(ret, location, getinstancevariable, name, get_ivar_ic_value(iseq, name_id));
9428 if (!popped) PUSH_INSN(ret, location, dup);
9430 PUSH_INSNL(ret, location, branchunless, end_label);
9431 if (!popped) PUSH_INSN(ret, location, pop);
9433 PM_COMPILE_NOT_POPPED(cast->
value);
9434 if (!popped) PUSH_INSN(ret, location, dup);
9436 PUSH_INSN2(ret, location, setinstancevariable, name, get_ivar_ic_value(iseq, name_id));
9437 PUSH_LABEL(ret, end_label);
9441 case PM_INSTANCE_VARIABLE_OPERATOR_WRITE_NODE: {
9444 const pm_instance_variable_operator_write_node_t *cast = (
const pm_instance_variable_operator_write_node_t *) node;
9446 ID name_id = pm_constant_id_lookup(scope_node, cast->
name);
9449 PUSH_INSN2(ret, location, getinstancevariable, name, get_ivar_ic_value(iseq, name_id));
9450 PM_COMPILE_NOT_POPPED(cast->
value);
9453 int flags = VM_CALL_ARGS_SIMPLE;
9454 PUSH_SEND_WITH_FLAG(ret, location, method_id,
INT2NUM(1),
INT2FIX(flags));
9456 if (!popped) PUSH_INSN(ret, location, dup);
9457 PUSH_INSN2(ret, location, setinstancevariable, name, get_ivar_ic_value(iseq, name_id));
9461 case PM_INSTANCE_VARIABLE_OR_WRITE_NODE: {
9464 const pm_instance_variable_or_write_node_t *cast = (
const pm_instance_variable_or_write_node_t *) node;
9465 LABEL *end_label = NEW_LABEL(location.
line);
9467 ID name_id = pm_constant_id_lookup(scope_node, cast->
name);
9470 PUSH_INSN2(ret, location, getinstancevariable, name, get_ivar_ic_value(iseq, name_id));
9471 if (!popped) PUSH_INSN(ret, location, dup);
9473 PUSH_INSNL(ret, location, branchif, end_label);
9474 if (!popped) PUSH_INSN(ret, location, pop);
9476 PM_COMPILE_NOT_POPPED(cast->
value);
9477 if (!popped) PUSH_INSN(ret, location, dup);
9479 PUSH_INSN2(ret, location, setinstancevariable, name, get_ivar_ic_value(iseq, name_id));
9480 PUSH_LABEL(ret, end_label);
9484 case PM_INSTANCE_VARIABLE_READ_NODE: {
9488 const pm_instance_variable_read_node_t *cast = (
const pm_instance_variable_read_node_t *) node;
9489 ID name = pm_constant_id_lookup(scope_node, cast->
name);
9490 PUSH_INSN2(ret, location, getinstancevariable,
ID2SYM(name), get_ivar_ic_value(iseq, name));
9494 case PM_INSTANCE_VARIABLE_WRITE_NODE: {
9497 const pm_instance_variable_write_node_t *cast = (
const pm_instance_variable_write_node_t *) node;
9498 PM_COMPILE_NOT_POPPED(cast->
value);
9499 if (!popped) PUSH_INSN(ret, location, dup);
9501 ID name = pm_constant_id_lookup(scope_node, cast->
name);
9502 PUSH_INSN2(ret, location, setinstancevariable,
ID2SYM(name), get_ivar_ic_value(iseq, name));
9506 case PM_INTEGER_NODE: {
9510 VALUE operand = parse_integer((
const pm_integer_node_t *) node);
9511 PUSH_INSN1(ret, location, putobject, operand);
9515 case PM_INTERPOLATED_MATCH_LAST_LINE_NODE: {
9518 if (PM_NODE_FLAG_P(node, PM_NODE_FLAG_STATIC_LITERAL)) {
9520 VALUE regexp = pm_static_literal_value(iseq, node, scope_node);
9521 PUSH_INSN1(ret, location, putobject, regexp);
9525 pm_compile_regexp_dynamic(iseq, node, &((
const pm_interpolated_match_last_line_node_t *) node)->parts, &location, ret, popped, scope_node);
9528 PUSH_INSN1(ret, location, getglobal,
rb_id2sym(idLASTLINE));
9529 PUSH_SEND(ret, location, idEqTilde,
INT2NUM(1));
9530 if (popped) PUSH_INSN(ret, location, pop);
9534 case PM_INTERPOLATED_REGULAR_EXPRESSION_NODE: {
9537 if (PM_NODE_FLAG_P(node, PM_REGULAR_EXPRESSION_FLAGS_ONCE)) {
9538 const rb_iseq_t *prevblock = ISEQ_COMPILE_DATA(iseq)->current_block;
9539 const rb_iseq_t *block_iseq = NULL;
9540 int ise_index = ISEQ_BODY(iseq)->ise_size++;
9542 pm_scope_node_t next_scope_node;
9543 pm_scope_node_init(node, &next_scope_node, scope_node);
9545 block_iseq = NEW_CHILD_ISEQ(&next_scope_node, make_name_for_block(iseq), ISEQ_TYPE_PLAIN, location.
line);
9546 pm_scope_node_destroy(&next_scope_node);
9548 ISEQ_COMPILE_DATA(iseq)->current_block = block_iseq;
9549 PUSH_INSN2(ret, location, once, block_iseq,
INT2FIX(ise_index));
9550 ISEQ_COMPILE_DATA(iseq)->current_block = prevblock;
9552 if (popped) PUSH_INSN(ret, location, pop);
9556 if (PM_NODE_FLAG_P(node, PM_NODE_FLAG_STATIC_LITERAL)) {
9558 VALUE regexp = pm_static_literal_value(iseq, node, scope_node);
9559 PUSH_INSN1(ret, location, putobject, regexp);
9563 pm_compile_regexp_dynamic(iseq, node, &((
const pm_interpolated_regular_expression_node_t *) node)->parts, &location, ret, popped, scope_node);
9564 if (popped) PUSH_INSN(ret, location, pop);
9569 case PM_INTERPOLATED_STRING_NODE: {
9572 if (PM_NODE_FLAG_P(node, PM_NODE_FLAG_STATIC_LITERAL)) {
9574 VALUE string = pm_static_literal_value(iseq, node, scope_node);
9576 if (PM_NODE_FLAG_P(node, PM_INTERPOLATED_STRING_NODE_FLAGS_FROZEN)) {
9577 PUSH_INSN1(ret, location, putobject,
string);
9579 else if (PM_NODE_FLAG_P(node, PM_INTERPOLATED_STRING_NODE_FLAGS_MUTABLE)) {
9580 PUSH_INSN1(ret, location, putstring,
string);
9583 PUSH_INSN1(ret, location, putchilledstring,
string);
9588 const pm_interpolated_string_node_t *cast = (
const pm_interpolated_string_node_t *) node;
9589 int length = pm_interpolated_node_compile(iseq, &cast->
parts, &location, ret, popped, scope_node, NULL, NULL, PM_NODE_FLAG_P(cast, PM_INTERPOLATED_STRING_NODE_FLAGS_MUTABLE), PM_NODE_FLAG_P(cast, PM_INTERPOLATED_STRING_NODE_FLAGS_FROZEN));
9590 if (length > 1) PUSH_INSN1(ret, location, concatstrings,
INT2FIX(length));
9591 if (popped) PUSH_INSN(ret, location, pop);
9596 case PM_INTERPOLATED_SYMBOL_NODE: {
9599 const pm_interpolated_symbol_node_t *cast = (
const pm_interpolated_symbol_node_t *) node;
9600 int length = pm_interpolated_node_compile(iseq, &cast->
parts, &location, ret, popped, scope_node, NULL, NULL,
false,
false);
9603 PUSH_INSN1(ret, location, concatstrings,
INT2FIX(length));
9607 PUSH_INSN(ret, location, intern);
9610 PUSH_INSN(ret, location, pop);
9615 case PM_INTERPOLATED_X_STRING_NODE: {
9618 const pm_interpolated_x_string_node_t *cast = (
const pm_interpolated_x_string_node_t *) node;
9620 PUSH_INSN(ret, location, putself);
9622 int length = pm_interpolated_node_compile(iseq, &cast->
parts, &location, ret,
false, scope_node, NULL, NULL,
false,
false);
9623 if (length > 1) PUSH_INSN1(ret, location, concatstrings,
INT2FIX(length));
9625 PUSH_SEND_WITH_FLAG(ret, location, idBackquote,
INT2NUM(1),
INT2FIX(VM_CALL_FCALL | VM_CALL_ARGS_SIMPLE));
9626 if (popped) PUSH_INSN(ret, location, pop);
9630 case PM_IT_LOCAL_VARIABLE_READ_NODE: {
9634 pm_scope_node_t *current_scope_node = scope_node;
9637 while (current_scope_node) {
9638 if (current_scope_node->parameters && PM_NODE_TYPE_P(current_scope_node->parameters, PM_IT_PARAMETERS_NODE)) {
9639 PUSH_GETLOCAL(ret, location, current_scope_node->local_table_for_iseq_size, level);
9643 current_scope_node = current_scope_node->previous;
9646 rb_bug(
"Local `it` does not exist");
9651 case PM_KEYWORD_HASH_NODE: {
9654 const pm_keyword_hash_node_t *cast = (
const pm_keyword_hash_node_t *) node;
9655 const pm_node_list_t *elements = &cast->
elements;
9657 const pm_node_t *element;
9659 PM_COMPILE(element);
9662 if (!popped) PUSH_INSN1(ret, location, newhash,
INT2FIX(elements->
size * 2));
9665 case PM_LAMBDA_NODE: {
9668 const pm_lambda_node_t *cast = (
const pm_lambda_node_t *) node;
9670 pm_scope_node_t next_scope_node;
9671 pm_scope_node_init(node, &next_scope_node, scope_node);
9673 int opening_lineno = pm_location_line_number(parser, &cast->
opening_loc);
9674 const rb_iseq_t *block = NEW_CHILD_ISEQ(&next_scope_node, make_name_for_block(iseq), ISEQ_TYPE_BLOCK, opening_lineno);
9675 pm_scope_node_destroy(&next_scope_node);
9678 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
9679 PUSH_CALL_WITH_BLOCK(ret, location, idLambda, argc, block);
9682 if (popped) PUSH_INSN(ret, location, pop);
9685 case PM_LOCAL_VARIABLE_AND_WRITE_NODE: {
9688 const pm_local_variable_and_write_node_t *cast = (
const pm_local_variable_and_write_node_t *) node;
9689 LABEL *end_label = NEW_LABEL(location.
line);
9691 pm_local_index_t local_index = pm_lookup_local_index(iseq, scope_node, cast->
name, cast->
depth);
9692 PUSH_GETLOCAL(ret, location, local_index.index, local_index.level);
9693 if (!popped) PUSH_INSN(ret, location, dup);
9695 PUSH_INSNL(ret, location, branchunless, end_label);
9696 if (!popped) PUSH_INSN(ret, location, pop);
9698 PM_COMPILE_NOT_POPPED(cast->
value);
9699 if (!popped) PUSH_INSN(ret, location, dup);
9701 PUSH_SETLOCAL(ret, location, local_index.index, local_index.level);
9702 PUSH_LABEL(ret, end_label);
9706 case PM_LOCAL_VARIABLE_OPERATOR_WRITE_NODE: {
9709 const pm_local_variable_operator_write_node_t *cast = (
const pm_local_variable_operator_write_node_t *) node;
9711 pm_local_index_t local_index = pm_lookup_local_index(iseq, scope_node, cast->
name, cast->
depth);
9712 PUSH_GETLOCAL(ret, location, local_index.index, local_index.level);
9714 PM_COMPILE_NOT_POPPED(cast->
value);
9717 PUSH_SEND_WITH_FLAG(ret, location, method_id,
INT2NUM(1),
INT2FIX(VM_CALL_ARGS_SIMPLE));
9719 if (!popped) PUSH_INSN(ret, location, dup);
9720 PUSH_SETLOCAL(ret, location, local_index.index, local_index.level);
9724 case PM_LOCAL_VARIABLE_OR_WRITE_NODE: {
9727 const pm_local_variable_or_write_node_t *cast = (
const pm_local_variable_or_write_node_t *) node;
9729 LABEL *set_label = NEW_LABEL(location.
line);
9730 LABEL *end_label = NEW_LABEL(location.
line);
9732 PUSH_INSN1(ret, location, putobject,
Qtrue);
9733 PUSH_INSNL(ret, location, branchunless, set_label);
9735 pm_local_index_t local_index = pm_lookup_local_index(iseq, scope_node, cast->
name, cast->
depth);
9736 PUSH_GETLOCAL(ret, location, local_index.index, local_index.level);
9737 if (!popped) PUSH_INSN(ret, location, dup);
9739 PUSH_INSNL(ret, location, branchif, end_label);
9740 if (!popped) PUSH_INSN(ret, location, pop);
9742 PUSH_LABEL(ret, set_label);
9743 PM_COMPILE_NOT_POPPED(cast->
value);
9744 if (!popped) PUSH_INSN(ret, location, dup);
9746 PUSH_SETLOCAL(ret, location, local_index.index, local_index.level);
9747 PUSH_LABEL(ret, end_label);
9751 case PM_LOCAL_VARIABLE_READ_NODE: {
9755 const pm_local_variable_read_node_t *cast = (
const pm_local_variable_read_node_t *) node;
9756 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, cast->
name, cast->
depth);
9757 PUSH_GETLOCAL(ret, location, index.index, index.level);
9762 case PM_LOCAL_VARIABLE_WRITE_NODE: {
9765 const pm_local_variable_write_node_t *cast = (
const pm_local_variable_write_node_t *) node;
9766 PM_COMPILE_NOT_POPPED(cast->
value);
9767 if (!popped) PUSH_INSN(ret, location, dup);
9769 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, cast->
name, cast->
depth);
9770 PUSH_SETLOCAL(ret, location, index.index, index.level);
9773 case PM_MATCH_LAST_LINE_NODE: {
9776 VALUE regexp = pm_static_literal_value(iseq, node, scope_node);
9778 PUSH_INSN1(ret, location, putobject, regexp);
9780 PUSH_SEND(ret, location, idEqTilde,
INT2NUM(1));
9781 if (popped) PUSH_INSN(ret, location, pop);
9785 case PM_MATCH_PREDICATE_NODE: {
9788 const pm_match_predicate_node_t *cast = (
const pm_match_predicate_node_t *) node;
9792 PUSH_INSN(ret, location, putnil);
9795 PM_COMPILE_NOT_POPPED(cast->
value);
9796 PUSH_INSN(ret, location, dup);
9800 LABEL *matched_label = NEW_LABEL(location.
line);
9801 LABEL *unmatched_label = NEW_LABEL(location.
line);
9802 LABEL *done_label = NEW_LABEL(location.
line);
9803 pm_compile_pattern(iseq, scope_node, cast->
pattern, ret, matched_label, unmatched_label,
false,
false,
true, 2);
9807 PUSH_LABEL(ret, unmatched_label);
9808 PUSH_INSN(ret, location, pop);
9809 PUSH_INSN(ret, location, pop);
9811 if (!popped) PUSH_INSN1(ret, location, putobject,
Qfalse);
9812 PUSH_INSNL(ret, location, jump, done_label);
9813 PUSH_INSN(ret, location, putnil);
9817 PUSH_LABEL(ret, matched_label);
9818 PUSH_INSN1(ret, location, adjuststack,
INT2FIX(2));
9819 if (!popped) PUSH_INSN1(ret, location, putobject,
Qtrue);
9820 PUSH_INSNL(ret, location, jump, done_label);
9822 PUSH_LABEL(ret, done_label);
9825 case PM_MATCH_REQUIRED_NODE:
9837 pm_compile_match_required_node(iseq, (
const pm_match_required_node_t *) node, &location, ret, popped, scope_node);
9839 case PM_MATCH_WRITE_NODE:
9848 pm_compile_match_write_node(iseq, (
const pm_match_write_node_t *) node, &location, ret, popped, scope_node);
9850 case PM_MISSING_NODE:
9851 rb_bug(
"A pm_missing_node_t should not exist in prism's AST.");
9853 case PM_MODULE_NODE: {
9856 const pm_module_node_t *cast = (
const pm_module_node_t *) node;
9858 ID module_id = pm_constant_id_lookup(scope_node, cast->
name);
9859 VALUE module_name =
rb_str_freeze(rb_sprintf(
"<module:%"PRIsVALUE
">", rb_id2str(module_id)));
9861 pm_scope_node_t next_scope_node;
9862 pm_scope_node_init((
const pm_node_t *) cast, &next_scope_node, scope_node);
9864 const rb_iseq_t *module_iseq = NEW_CHILD_ISEQ(&next_scope_node, module_name, ISEQ_TYPE_CLASS, location.
line);
9865 pm_scope_node_destroy(&next_scope_node);
9867 const int flags = VM_DEFINECLASS_TYPE_MODULE | pm_compile_class_path(iseq, cast->
constant_path, &location, ret,
false, scope_node);
9868 PUSH_INSN(ret, location, putnil);
9869 PUSH_INSN3(ret, location, defineclass,
ID2SYM(module_id), module_iseq,
INT2FIX(flags));
9872 if (popped) PUSH_INSN(ret, location, pop);
9875 case PM_REQUIRED_PARAMETER_NODE: {
9878 const pm_required_parameter_node_t *cast = (
const pm_required_parameter_node_t *) node;
9879 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, cast->
name, 0);
9881 PUSH_SETLOCAL(ret, location, index.index, index.level);
9884 case PM_MULTI_WRITE_NODE: {
9893 const pm_multi_write_node_t *cast = (
const pm_multi_write_node_t *) node;
9895 DECL_ANCHOR(writes);
9896 DECL_ANCHOR(cleanup);
9899 state.position = popped ? 0 : 1;
9900 pm_compile_multi_target_node(iseq, node, ret, writes, cleanup, scope_node, &state);
9902 PM_COMPILE_NOT_POPPED(cast->
value);
9903 if (!popped) PUSH_INSN(ret, location, dup);
9905 PUSH_SEQ(ret, writes);
9906 if (!popped && state.stack_size >= 1) {
9909 PUSH_INSN1(ret, location, setn,
INT2FIX(state.stack_size));
9914 pm_multi_target_state_update(&state);
9916 PUSH_SEQ(ret, cleanup);
9925 pm_compile_next_node(iseq, (
const pm_next_node_t *) node, &location, ret, popped, scope_node);
9931 PUSH_INSN(ret, location, putnil);
9936 case PM_NO_KEYWORDS_PARAMETER_NODE: {
9939 ISEQ_BODY(iseq)->param.flags.accepts_no_kwarg = TRUE;
9942 case PM_NUMBERED_REFERENCE_READ_NODE: {
9946 const pm_numbered_reference_read_node_t *cast = (
const pm_numbered_reference_read_node_t *) node;
9949 VALUE ref = pm_compile_numbered_reference_ref(cast);
9950 PUSH_INSN2(ret, location, getspecial,
INT2FIX(1), ref);
9953 PUSH_INSN(ret, location, putnil);
9962 const pm_or_node_t *cast = (
const pm_or_node_t *) node;
9964 LABEL *end_label = NEW_LABEL(location.
line);
9965 PM_COMPILE_NOT_POPPED(cast->
left);
9967 if (!popped) PUSH_INSN(ret, location, dup);
9968 PUSH_INSNL(ret, location, branchif, end_label);
9970 if (!popped) PUSH_INSN(ret, location, pop);
9971 PM_COMPILE(cast->
right);
9972 PUSH_LABEL(ret, end_label);
9976 case PM_OPTIONAL_PARAMETER_NODE: {
9979 const pm_optional_parameter_node_t *cast = (
const pm_optional_parameter_node_t *) node;
9980 PM_COMPILE_NOT_POPPED(cast->
value);
9982 pm_local_index_t index = pm_lookup_local_index(iseq, scope_node, cast->
name, 0);
9983 PUSH_SETLOCAL(ret, location, index.index, index.level);
9987 case PM_PARENTHESES_NODE: {
9993 const pm_parentheses_node_t *cast = (
const pm_parentheses_node_t *) node;
9995 if (cast->
body != NULL) {
9996 PM_COMPILE(cast->
body);
9999 PUSH_INSN(ret, location, putnil);
10004 case PM_PRE_EXECUTION_NODE: {
10007 const pm_pre_execution_node_t *cast = (
const pm_pre_execution_node_t *) node;
10016 DECL_ANCHOR(inner_pre);
10019 DECL_ANCHOR(inner_body);
10024 for (
size_t index = 0; index < body->
size; index++) {
10025 pm_compile_node(iseq, body->
nodes[index], inner_body,
true, scope_node);
10030 PUSH_INSN(inner_body, location, putnil);
10036 PUSH_SEQ(outer_pre, inner_pre);
10037 PUSH_SEQ(outer_pre, inner_body);
10042 case PM_POST_EXECUTION_NODE: {
10045 const rb_iseq_t *child_iseq;
10046 const rb_iseq_t *prevblock = ISEQ_COMPILE_DATA(iseq)->current_block;
10048 pm_scope_node_t next_scope_node;
10049 pm_scope_node_init(node, &next_scope_node, scope_node);
10050 child_iseq = NEW_CHILD_ISEQ(&next_scope_node, make_name_for_block(iseq), ISEQ_TYPE_BLOCK, lineno);
10051 pm_scope_node_destroy(&next_scope_node);
10053 ISEQ_COMPILE_DATA(iseq)->current_block = child_iseq;
10055 int is_index = ISEQ_BODY(iseq)->ise_size++;
10056 PUSH_INSN2(ret, location, once, child_iseq,
INT2FIX(is_index));
10058 if (popped) PUSH_INSN(ret, location, pop);
10060 ISEQ_COMPILE_DATA(iseq)->current_block = prevblock;
10064 case PM_RANGE_NODE: {
10067 const pm_range_node_t *cast = (
const pm_range_node_t *) node;
10068 bool exclude_end = PM_NODE_FLAG_P(cast, PM_RANGE_FLAGS_EXCLUDE_END);
10070 if (pm_optimizable_range_item_p(cast->
left) && pm_optimizable_range_item_p(cast->
right)) {
10072 const pm_node_t *left = cast->
left;
10073 const pm_node_t *right = cast->
right;
10076 (left && PM_NODE_TYPE_P(left, PM_INTEGER_NODE)) ? parse_integer((
const pm_integer_node_t *) left) :
Qnil,
10077 (right && PM_NODE_TYPE_P(right, PM_INTEGER_NODE)) ? parse_integer((
const pm_integer_node_t *) right) :
Qnil,
10081 PUSH_INSN1(ret, location, putobject, val);
10085 if (cast->
left != NULL) {
10086 PM_COMPILE(cast->
left);
10088 else if (!popped) {
10089 PUSH_INSN(ret, location, putnil);
10092 if (cast->
right != NULL) {
10093 PM_COMPILE(cast->
right);
10095 else if (!popped) {
10096 PUSH_INSN(ret, location, putnil);
10100 PUSH_INSN1(ret, location, newrange,
INT2FIX(exclude_end ? 1 : 0));
10105 case PM_RATIONAL_NODE: {
10109 PUSH_INSN1(ret, location, putobject, parse_rational((
const pm_rational_node_t *) node));
10116 pm_compile_redo_node(iseq, &location, ret, popped, scope_node);
10118 case PM_REGULAR_EXPRESSION_NODE: {
10122 VALUE regexp = pm_static_literal_value(iseq, node, scope_node);
10123 PUSH_INSN1(ret, location, putobject, regexp);
10127 case PM_RESCUE_NODE:
10130 pm_compile_rescue_node(iseq, (
const pm_rescue_node_t *) node, &location, ret, popped, scope_node);
10132 case PM_RESCUE_MODIFIER_NODE: {
10135 const pm_rescue_modifier_node_t *cast = (
const pm_rescue_modifier_node_t *) node;
10137 pm_scope_node_t rescue_scope_node;
10138 pm_scope_node_init((
const pm_node_t *) cast, &rescue_scope_node, scope_node);
10140 rb_iseq_t *rescue_iseq = NEW_CHILD_ISEQ(
10141 &rescue_scope_node,
10147 pm_scope_node_destroy(&rescue_scope_node);
10149 LABEL *lstart = NEW_LABEL(location.
line);
10150 LABEL *lend = NEW_LABEL(location.
line);
10151 LABEL *lcont = NEW_LABEL(location.
line);
10153 lstart->rescued = LABEL_RESCUE_BEG;
10154 lend->rescued = LABEL_RESCUE_END;
10156 PUSH_LABEL(ret, lstart);
10158 PUSH_LABEL(ret, lend);
10160 PUSH_INSN(ret, location, nop);
10161 PUSH_LABEL(ret, lcont);
10162 if (popped) PUSH_INSN(ret, location, pop);
10164 PUSH_CATCH_ENTRY(CATCH_TYPE_RESCUE, lstart, lend, rescue_iseq, lcont);
10165 PUSH_CATCH_ENTRY(CATCH_TYPE_RETRY, lend, lcont, NULL, lstart);
10168 case PM_RETURN_NODE:
10174 pm_compile_return_node(iseq, (
const pm_return_node_t *) node, &location, ret, popped, scope_node);
10176 case PM_RETRY_NODE: {
10179 if (ISEQ_BODY(iseq)->
type == ISEQ_TYPE_RESCUE) {
10180 PUSH_INSN(ret, location, putnil);
10181 PUSH_INSN1(ret, location,
throw,
INT2FIX(TAG_RETRY));
10182 if (popped) PUSH_INSN(ret, location, pop);
10185 COMPILE_ERROR(iseq, location.
line,
"Invalid retry");
10190 case PM_SCOPE_NODE:
10191 pm_compile_scope_node(iseq, (pm_scope_node_t *) node, &location, ret, popped);
10193 case PM_SELF_NODE: {
10197 PUSH_INSN(ret, location, putself);
10201 case PM_SHAREABLE_CONSTANT_NODE: {
10204 const pm_shareable_constant_node_t *cast = (
const pm_shareable_constant_node_t *) node;
10205 pm_node_flags_t shareability = (cast->
base.
flags & (PM_SHAREABLE_CONSTANT_NODE_FLAGS_LITERAL | PM_SHAREABLE_CONSTANT_NODE_FLAGS_EXPERIMENTAL_EVERYTHING | PM_SHAREABLE_CONSTANT_NODE_FLAGS_EXPERIMENTAL_COPY));
10207 switch (PM_NODE_TYPE(cast->
write)) {
10208 case PM_CONSTANT_WRITE_NODE:
10209 pm_compile_constant_write_node(iseq, (
const pm_constant_write_node_t *) cast->
write, shareability, &location, ret, popped, scope_node);
10211 case PM_CONSTANT_AND_WRITE_NODE:
10212 pm_compile_constant_and_write_node(iseq, (
const pm_constant_and_write_node_t *) cast->
write, shareability, &location, ret, popped, scope_node);
10214 case PM_CONSTANT_OR_WRITE_NODE:
10215 pm_compile_constant_or_write_node(iseq, (
const pm_constant_or_write_node_t *) cast->
write, shareability, &location, ret, popped, scope_node);
10217 case PM_CONSTANT_OPERATOR_WRITE_NODE:
10218 pm_compile_constant_operator_write_node(iseq, (
const pm_constant_operator_write_node_t *) cast->
write, shareability, &location, ret, popped, scope_node);
10220 case PM_CONSTANT_PATH_WRITE_NODE:
10221 pm_compile_constant_path_write_node(iseq, (
const pm_constant_path_write_node_t *) cast->
write, shareability, &location, ret, popped, scope_node);
10223 case PM_CONSTANT_PATH_AND_WRITE_NODE:
10224 pm_compile_constant_path_and_write_node(iseq, (
const pm_constant_path_and_write_node_t *) cast->
write, shareability, &location, ret, popped, scope_node);
10226 case PM_CONSTANT_PATH_OR_WRITE_NODE:
10227 pm_compile_constant_path_or_write_node(iseq, (
const pm_constant_path_or_write_node_t *) cast->
write, shareability, &location, ret, popped, scope_node);
10229 case PM_CONSTANT_PATH_OPERATOR_WRITE_NODE:
10230 pm_compile_constant_path_operator_write_node(iseq, (
const pm_constant_path_operator_write_node_t *) cast->
write, shareability, &location, ret, popped, scope_node);
10233 rb_bug(
"Unexpected node type for shareable constant write: %s", pm_node_type_to_str(PM_NODE_TYPE(cast->
write)));
10239 case PM_SINGLETON_CLASS_NODE: {
10242 const pm_singleton_class_node_t *cast = (
const pm_singleton_class_node_t *) node;
10244 pm_scope_node_t next_scope_node;
10245 pm_scope_node_init((
const pm_node_t *) cast, &next_scope_node, scope_node);
10246 const rb_iseq_t *child_iseq = NEW_ISEQ(&next_scope_node, rb_fstring_lit(
"singleton class"), ISEQ_TYPE_CLASS, location.
line);
10247 pm_scope_node_destroy(&next_scope_node);
10250 PUSH_INSN(ret, location, putnil);
10253 CONST_ID(singletonclass,
"singletonclass");
10254 PUSH_INSN3(ret, location, defineclass,
ID2SYM(singletonclass), child_iseq,
INT2FIX(VM_DEFINECLASS_TYPE_SINGLETON_CLASS));
10256 if (popped) PUSH_INSN(ret, location, pop);
10261 case PM_SOURCE_ENCODING_NODE: {
10265 VALUE value = pm_static_literal_value(iseq, node, scope_node);
10266 PUSH_INSN1(ret, location, putobject, value);
10270 case PM_SOURCE_FILE_NODE: {
10274 const pm_source_file_node_t *cast = (
const pm_source_file_node_t *) node;
10275 VALUE string = pm_source_file_value(cast, scope_node);
10277 if (PM_NODE_FLAG_P(cast, PM_STRING_FLAGS_FROZEN)) {
10278 PUSH_INSN1(ret, location, putobject,
string);
10280 else if (PM_NODE_FLAG_P(cast, PM_STRING_FLAGS_MUTABLE)) {
10281 PUSH_INSN1(ret, location, putstring,
string);
10284 PUSH_INSN1(ret, location, putchilledstring,
string);
10289 case PM_SOURCE_LINE_NODE: {
10293 VALUE value = pm_static_literal_value(iseq, node, scope_node);
10294 PUSH_INSN1(ret, location, putobject, value);
10298 case PM_SPLAT_NODE: {
10301 const pm_splat_node_t *cast = (
const pm_splat_node_t *) node;
10307 PUSH_INSN1(ret, location, splatarray,
Qtrue);
10311 case PM_STATEMENTS_NODE: {
10313 const pm_statements_node_t *cast = (
const pm_statements_node_t *) node;
10314 const pm_node_list_t *body = &cast->
body;
10316 if (body->
size > 0) {
10317 for (
size_t index = 0; index < body->
size - 1; index++) {
10318 PM_COMPILE_POPPED(body->
nodes[index]);
10320 PM_COMPILE(body->
nodes[body->
size - 1]);
10323 PUSH_INSN(ret, location, putnil);
10327 case PM_STRING_NODE: {
10331 const pm_string_node_t *cast = (
const pm_string_node_t *) node;
10332 VALUE value = parse_static_literal_string(iseq, scope_node, node, &cast->
unescaped);
10334 if (PM_NODE_FLAG_P(node, PM_STRING_FLAGS_FROZEN)) {
10335 PUSH_INSN1(ret, location, putobject, value);
10337 else if (PM_NODE_FLAG_P(node, PM_STRING_FLAGS_MUTABLE)) {
10338 PUSH_INSN1(ret, location, putstring, value);
10341 PUSH_INSN1(ret, location, putchilledstring, value);
10346 case PM_SUPER_NODE:
10350 pm_compile_super_node(iseq, (
const pm_super_node_t *) node, &location, ret, popped, scope_node);
10352 case PM_SYMBOL_NODE: {
10356 VALUE value = pm_static_literal_value(iseq, node, scope_node);
10357 PUSH_INSN1(ret, location, putobject, value);
10361 case PM_TRUE_NODE: {
10365 PUSH_INSN1(ret, location, putobject,
Qtrue);
10369 case PM_UNDEF_NODE: {
10372 const pm_undef_node_t *cast = (
const pm_undef_node_t *) node;
10373 const pm_node_list_t *names = &cast->
names;
10375 for (
size_t index = 0; index < names->
size; index++) {
10376 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_VMCORE));
10377 PUSH_INSN1(ret, location, putspecialobject,
INT2FIX(VM_SPECIAL_OBJECT_CBASE));
10379 PM_COMPILE_NOT_POPPED(names->
nodes[index]);
10380 PUSH_SEND(ret, location, id_core_undef_method,
INT2NUM(2));
10382 if (index < names->size - 1) {
10383 PUSH_INSN(ret, location, pop);
10387 if (popped) PUSH_INSN(ret, location, pop);
10390 case PM_UNLESS_NODE: {
10396 const pm_unless_node_t *cast = (
const pm_unless_node_t *) node;
10397 const pm_statements_node_t *statements = NULL;
10399 statements = ((
const pm_else_node_t *) cast->
else_clause)->statements;
10402 pm_compile_conditional(iseq, &location, PM_UNLESS_NODE, (
const pm_node_t *) cast, statements, (
const pm_node_t *) cast->statements, cast->predicate, ret, popped, scope_node);
10405 case PM_UNTIL_NODE: {
10411 const pm_until_node_t *cast = (
const pm_until_node_t *) node;
10412 pm_compile_loop(iseq, &location, cast->
base.
flags, PM_UNTIL_NODE, (
const pm_node_t *) cast, cast->statements, cast->predicate, ret, popped, scope_node);
10415 case PM_WHILE_NODE: {
10421 const pm_while_node_t *cast = (
const pm_while_node_t *) node;
10422 pm_compile_loop(iseq, &location, cast->
base.
flags, PM_WHILE_NODE, (
const pm_node_t *) cast, cast->statements, cast->predicate, ret, popped, scope_node);
10425 case PM_X_STRING_NODE: {
10428 const pm_x_string_node_t *cast = (
const pm_x_string_node_t *) node;
10429 VALUE value = parse_static_literal_string(iseq, scope_node, node, &cast->
unescaped);
10431 PUSH_INSN(ret, location, putself);
10432 PUSH_INSN1(ret, location, putobject, value);
10433 PUSH_SEND_WITH_FLAG(ret, location, idBackquote,
INT2NUM(1),
INT2FIX(VM_CALL_FCALL | VM_CALL_ARGS_SIMPLE));
10434 if (popped) PUSH_INSN(ret, location, pop);
10438 case PM_YIELD_NODE:
10444 pm_compile_yield_node(iseq, (
const pm_yield_node_t *) node, &location, ret, popped, scope_node);
10447 rb_raise(
rb_eNotImpError,
"node type %s not implemented", pm_node_type_to_str(PM_NODE_TYPE(node)));
10452#undef PM_CONTAINER_P
10456pm_iseq_pre_execution_p(rb_iseq_t *iseq)
10458 switch (ISEQ_BODY(iseq)->
type) {
10459 case ISEQ_TYPE_TOP:
10460 case ISEQ_TYPE_EVAL:
10461 case ISEQ_TYPE_MAIN:
10476pm_iseq_compile_node(rb_iseq_t *iseq, pm_scope_node_t *node)
10480 if (pm_iseq_pre_execution_p(iseq)) {
10492 pm_compile_node(iseq, (
const pm_node_t *) node, body,
false, node);
10496 PUSH_SEQ(ret, pre);
10497 PUSH_SEQ(ret, body);
10502 pm_compile_node(iseq, (
const pm_node_t *) node, ret,
false, node);
10505 CHECK(iseq_setup_insn(iseq, ret));
10506 return iseq_setup(iseq, ret);
10516 if (result->
node.ast_node != NULL) {
10517 pm_node_destroy(&result->
parser, result->
node.ast_node);
10522 pm_scope_node_destroy(&result->
node);
10525 pm_parser_free(&result->
parser);
10526 pm_string_free(&result->
input);
10527 pm_options_free(&result->
options);
10563#define PM_COLOR_BOLD "\033[1m"
10564#define PM_COLOR_GRAY "\033[2m"
10565#define PM_COLOR_RED "\033[1;31m"
10566#define PM_COLOR_RESET "\033[m"
10567#define PM_ERROR_TRUNCATE 30
10572 if (errors == NULL)
return NULL;
10576 pm_line_column_t start = pm_newline_list_line_column(newline_list, error->location.
start, start_line);
10577 pm_line_column_t end = pm_newline_list_line_column(newline_list, error->location.end, start_line);
10585 (index < error_list->size) &&
10586 (errors[index].error != NULL) &&
10588 (errors[index].line < start.
line) ||
10595 if (index + 1 < error_list->
size) {
10596 memmove(&errors[index + 1], &errors[index],
sizeof(
pm_parse_error_t) * (error_list->
size - index - 1));
10600 uint32_t column_end;
10602 column_end = end.
column;
10604 column_end = (uint32_t) (newline_list->
offsets[start.
line - start_line + 1] - newline_list->
offsets[start.
line - start_line] - 1);
10608 if (start.
column == column_end) column_end++;
10612 .line = start.
line,
10613 .column_start = start.
column,
10614 .column_end = column_end
10622#define pm_buffer_append_literal(buffer, str) pm_buffer_append_string(buffer, str, rb_strlen_lit(str))
10625pm_parse_errors_format_line(
const pm_parser_t *parser,
const pm_newline_list_t *newline_list,
const char *number_prefix, int32_t line, uint32_t column_start, uint32_t column_end,
pm_buffer_t *buffer) {
10626 int32_t line_delta = line - parser->
start_line;
10627 assert(line_delta >= 0);
10629 size_t index = (size_t) line_delta;
10630 assert(index < newline_list->size);
10632 const uint8_t *start = &parser->
start[newline_list->
offsets[index]];
10633 const uint8_t *end;
10635 if (index >= newline_list->
size - 1) {
10638 end = &parser->
start[newline_list->
offsets[index + 1]];
10641 pm_buffer_append_format(buffer, number_prefix, line);
10644 bool truncate_end =
false;
10645 if ((column_end != 0) && ((end - (start + column_end)) >= PM_ERROR_TRUNCATE)) {
10646 end = start + column_end + PM_ERROR_TRUNCATE;
10647 truncate_end =
true;
10651 if (column_start >= PM_ERROR_TRUNCATE) {
10652 pm_buffer_append_string(buffer,
"... ", 4);
10653 start += column_start;
10656 pm_buffer_append_string(buffer, (
const char *) start, (
size_t) (end - start));
10658 if (truncate_end) {
10659 pm_buffer_append_string(buffer,
" ...\n", 5);
10660 }
else if (end == parser->
end && end[-1] !=
'\n') {
10661 pm_buffer_append_string(buffer,
"\n", 1);
10670 assert(error_list->
size != 0);
10674 const int32_t start_line = parser->
start_line;
10677 pm_parse_error_t *errors = pm_parse_errors_format_sort(parser, error_list, newline_list);
10678 if (errors == NULL)
return;
10684 int32_t first_line_number = errors[0].
line;
10685 int32_t last_line_number = errors[error_list->
size - 1].
line;
10690 if (first_line_number < 0) first_line_number = (-first_line_number) * 10;
10691 if (last_line_number < 0) last_line_number = (-last_line_number) * 10;
10692 int32_t max_line_number = first_line_number > last_line_number ? first_line_number : last_line_number;
10694 if (max_line_number < 10) {
10695 if (highlight > 0) {
10697 .number_prefix = PM_COLOR_GRAY
"%1" PRIi32
" | " PM_COLOR_RESET,
10698 .blank_prefix = PM_COLOR_GRAY
" | " PM_COLOR_RESET,
10699 .divider = PM_COLOR_GRAY
" ~~~~~" PM_COLOR_RESET
"\n"
10703 .number_prefix =
"%1" PRIi32
" | ",
10704 .blank_prefix =
" | ",
10705 .divider =
" ~~~~~\n"
10708 }
else if (max_line_number < 100) {
10709 if (highlight > 0) {
10711 .number_prefix = PM_COLOR_GRAY
"%2" PRIi32
" | " PM_COLOR_RESET,
10712 .blank_prefix = PM_COLOR_GRAY
" | " PM_COLOR_RESET,
10713 .divider = PM_COLOR_GRAY
" ~~~~~~" PM_COLOR_RESET
"\n"
10717 .number_prefix =
"%2" PRIi32
" | ",
10718 .blank_prefix =
" | ",
10719 .divider =
" ~~~~~~\n"
10722 }
else if (max_line_number < 1000) {
10723 if (highlight > 0) {
10725 .number_prefix = PM_COLOR_GRAY
"%3" PRIi32
" | " PM_COLOR_RESET,
10726 .blank_prefix = PM_COLOR_GRAY
" | " PM_COLOR_RESET,
10727 .divider = PM_COLOR_GRAY
" ~~~~~~~" PM_COLOR_RESET
"\n"
10731 .number_prefix =
"%3" PRIi32
" | ",
10732 .blank_prefix =
" | ",
10733 .divider =
" ~~~~~~~\n"
10736 }
else if (max_line_number < 10000) {
10737 if (highlight > 0) {
10739 .number_prefix = PM_COLOR_GRAY
"%4" PRIi32
" | " PM_COLOR_RESET,
10740 .blank_prefix = PM_COLOR_GRAY
" | " PM_COLOR_RESET,
10741 .divider = PM_COLOR_GRAY
" ~~~~~~~~" PM_COLOR_RESET
"\n"
10745 .number_prefix =
"%4" PRIi32
" | ",
10746 .blank_prefix =
" | ",
10747 .divider =
" ~~~~~~~~\n"
10751 if (highlight > 0) {
10753 .number_prefix = PM_COLOR_GRAY
"%5" PRIi32
" | " PM_COLOR_RESET,
10754 .blank_prefix = PM_COLOR_GRAY
" | " PM_COLOR_RESET,
10755 .divider = PM_COLOR_GRAY
" ~~~~~~~~" PM_COLOR_RESET
"\n"
10759 .number_prefix =
"%5" PRIi32
" | ",
10760 .blank_prefix =
" | ",
10761 .divider =
" ~~~~~~~~\n"
10775 uint32_t last_column_start = 0;
10778 for (
size_t index = 0; index < error_list->
size; index++) {
10783 if (error->
line - last_line > 1) {
10784 if (error->
line - last_line > 2) {
10785 if ((index != 0) && (error->
line - last_line > 3)) {
10789 pm_buffer_append_string(buffer,
" ", 2);
10790 pm_parse_errors_format_line(parser, newline_list, error_format.
number_prefix, error->
line - 2, 0, 0, buffer);
10793 pm_buffer_append_string(buffer,
" ", 2);
10794 pm_parse_errors_format_line(parser, newline_list, error_format.
number_prefix, error->
line - 1, 0, 0, buffer);
10799 if ((index == 0) || (error->
line != last_line)) {
10800 if (highlight > 1) {
10801 pm_buffer_append_literal(buffer, PM_COLOR_RED
"> " PM_COLOR_RESET);
10802 }
else if (highlight > 0) {
10803 pm_buffer_append_literal(buffer, PM_COLOR_BOLD
"> " PM_COLOR_RESET);
10805 pm_buffer_append_literal(buffer,
"> ");
10812 for (
size_t next_index = index + 1; next_index < error_list->
size; next_index++) {
10813 if (errors[next_index].line != error->
line)
break;
10814 if (errors[next_index].column_end > column_end) column_end = errors[next_index].
column_end;
10820 const uint8_t *start = &parser->
start[newline_list->
offsets[error->
line - start_line]];
10821 if (start == parser->
end) pm_buffer_append_byte(buffer,
'\n');
10832 pm_buffer_append_string(buffer,
" ", 2);
10836 if (last_column_start >= PM_ERROR_TRUNCATE) {
10837 pm_buffer_append_string(buffer,
" ", 4);
10838 column = last_column_start;
10841 while (column < error->column_start) {
10842 pm_buffer_append_byte(buffer,
' ');
10844 size_t char_width = encoding->
char_width(start + column, parser->
end - (start + column));
10845 column += (char_width == 0 ? 1 : char_width);
10848 if (highlight > 1) pm_buffer_append_literal(buffer, PM_COLOR_RED);
10849 else if (highlight > 0) pm_buffer_append_literal(buffer, PM_COLOR_BOLD);
10850 pm_buffer_append_byte(buffer,
'^');
10852 size_t char_width = encoding->
char_width(start + column, parser->
end - (start + column));
10853 column += (char_width == 0 ? 1 : char_width);
10855 while (column < error->column_end) {
10856 pm_buffer_append_byte(buffer,
'~');
10858 size_t char_width = encoding->
char_width(start + column, parser->
end - (start + column));
10859 column += (char_width == 0 ? 1 : char_width);
10862 if (highlight > 0) pm_buffer_append_literal(buffer, PM_COLOR_RESET);
10864 if (inline_messages) {
10865 pm_buffer_append_byte(buffer,
' ');
10866 assert(error->
error != NULL);
10869 pm_buffer_append_string(buffer, message, strlen(message));
10872 pm_buffer_append_byte(buffer,
'\n');
10876 last_line = error->
line;
10879 if (index == error_list->
size - 1) {
10880 next_line = (((int32_t) newline_list->
size) + parser->
start_line);
10889 next_line = errors[index + 1].
line;
10892 if (next_line - last_line > 1) {
10893 pm_buffer_append_string(buffer,
" ", 2);
10894 pm_parse_errors_format_line(parser, newline_list, error_format.
number_prefix, ++last_line, 0, 0, buffer);
10897 if (next_line - last_line > 1) {
10898 pm_buffer_append_string(buffer,
" ", 2);
10899 pm_parse_errors_format_line(parser, newline_list, error_format.
number_prefix, ++last_line, 0, 0, buffer);
10907#undef PM_ERROR_TRUNCATE
10908#undef PM_COLOR_GRAY
10910#undef PM_COLOR_RESET
10921 const size_t start_line = pm_newline_list_line_column(&parser->
newline_list, location->
start, 1).line;
10922 const size_t end_line = pm_newline_list_line_column(&parser->
newline_list, location->
end, 1).line;
10928 while (start < end) {
10929 if ((width = pm_encoding_utf_8_char_width(start, end - start)) == 0)
return false;
10945 bool valid_utf8 =
true;
10950 int highlight = rb_stderr_tty_p();
10952 const char *no_color = getenv(
"NO_COLOR");
10953 highlight = (no_color == NULL || no_color[0] ==
'\0') ? 2 : 1;
10957 switch (error->level) {
10964 if (valid_utf8 && !pm_parse_process_error_utf8_p(parser, &error->location)) {
10965 valid_utf8 =
false;
10972 int32_t line_number = (int32_t) pm_location_line_number(parser, &error->location);
10974 pm_buffer_append_format(
10976 "%.*s:%" PRIi32
": %s",
10977 (
int) pm_string_length(filepath),
10978 pm_string_source(filepath),
10983 if (pm_parse_process_error_utf8_p(parser, &error->location)) {
10984 pm_buffer_append_byte(&buffer,
'\n');
10987 pm_list_t error_list = { .size = 1, .head = list_node, .tail = list_node };
10989 pm_parse_errors_format(parser, &error_list, &buffer, highlight,
false);
10992 VALUE value =
rb_exc_new(rb_eArgError, pm_buffer_value(&buffer), pm_buffer_length(&buffer));
10993 pm_buffer_free(&buffer);
11009 pm_buffer_append_format(
11011 "%.*s:%" PRIi32
": syntax error%s found\n",
11012 (
int) pm_string_length(filepath),
11013 pm_string_source(filepath),
11014 (int32_t) pm_location_line_number(parser, &head->location),
11019 pm_parse_errors_format(parser, &parser->
error_list, &buffer, highlight,
true);
11023 if (error != head) pm_buffer_append_byte(&buffer,
'\n');
11024 pm_buffer_append_format(&buffer,
"%.*s:%" PRIi32
": %s", (
int) pm_string_length(filepath), pm_string_source(filepath), (int32_t) pm_location_line_number(parser, &error->location), error->message);
11028 VALUE message = rb_enc_str_new(pm_buffer_value(&buffer), pm_buffer_length(&buffer), result->
node.encoding);
11032 VALUE path = rb_enc_str_new((
const char *) pm_string_source(filepath), pm_string_length(filepath), filepath_encoding);
11035 pm_buffer_free(&buffer);
11052 pm_scope_node_t *scope_node = &result->
node;
11054 int coverage_enabled = scope_node->coverage_enabled;
11056 pm_scope_node_init(node, scope_node, NULL);
11059 scope_node->encoding = rb_enc_find(parser->
encoding->
name);
11060 if (!scope_node->encoding) rb_bug(
"Encoding not found %s!", parser->
encoding->
name);
11062 scope_node->coverage_enabled = coverage_enabled;
11066 if (script_lines != NULL) {
11071 size_t length = index == parser->
newline_list.
size - 1 ? ((size_t) (parser->
end - (parser->
start + offset))) : (parser->newline_list.offsets[index + 1] - offset);
11072 rb_ary_push(*script_lines, rb_enc_str_new((
const char *) parser->
start + offset, length, scope_node->encoding));
11080 const char *warning_filepath = (
const char *) pm_string_source(&parser->
filepath);
11083 int line = pm_location_line_number(parser, &warning->
location);
11086 rb_enc_compile_warning(scope_node->encoding, warning_filepath, line,
"%s", warning->
message);
11089 rb_enc_compile_warn(scope_node->encoding, warning_filepath, line,
"%s", warning->
message);
11095 VALUE error = pm_parse_process_error(result);
11104 scope_node->parser = parser;
11109 scope_node->constants[index] = rb_intern3((
const char *) constant->
start, constant->
length, scope_node->encoding);
11112 scope_node->index_lookup_table = st_init_numtable();
11114 for (
size_t index = 0; index < locals->
size; index++) {
11115 st_insert(scope_node->index_lookup_table, locals->
ids[index], index);
11129pm_options_frozen_string_literal_init(
pm_options_t *options)
11131 int frozen_string_literal = rb_iseq_opt_frozen_string_literal();
11133 switch (frozen_string_literal) {
11134 case ISEQ_FROZEN_STRING_LITERAL_UNSET:
11136 case ISEQ_FROZEN_STRING_LITERAL_DISABLED:
11137 pm_options_frozen_string_literal_set(options,
false);
11139 case ISEQ_FROZEN_STRING_LITERAL_ENABLED:
11140 pm_options_frozen_string_literal_set(options,
true);
11143 rb_bug(
"pm_options_frozen_string_literal_init: invalid frozen_string_literal=%d", frozen_string_literal);
11153pm_parse_file_script_lines(
const pm_scope_node_t *scope_node,
const pm_parser_t *parser)
11156 const char *start = (
const char *) parser->
start;
11157 const char *end = (
const char *) parser->
end;
11162 size_t last_offset = newline_list->
offsets[newline_list->
size - 1];
11163 bool last_push = start + last_offset != end;
11166 VALUE lines = rb_ary_new_capa(newline_list->
size - (last_push ? 0 : 1));
11168 for (
size_t index = 0; index < newline_list->
size - 1; index++) {
11169 size_t offset = newline_list->
offsets[index];
11170 size_t length = newline_list->
offsets[index + 1] - offset;
11172 rb_ary_push(lines, rb_enc_str_new(start + offset, length, scope_node->encoding));
11177 rb_ary_push(lines, rb_enc_str_new(start + last_offset, end - (start + last_offset), scope_node->encoding));
11187pm_read_file(
pm_string_t *
string,
const char *filepath)
11191 int length = MultiByteToWideChar(CP_UTF8, 0, filepath, -1, NULL, 0);
11194 WCHAR *wfilepath =
xmalloc(
sizeof(WCHAR) * ((
size_t) length));
11195 if ((wfilepath == NULL) || (MultiByteToWideChar(CP_UTF8, 0, filepath, -1, wfilepath, length) == 0)) {
11200 HANDLE file = CreateFileW(wfilepath, GENERIC_READ, FILE_SHARE_READ | FILE_SHARE_WRITE, NULL, OPEN_EXISTING, FILE_ATTRIBUTE_READONLY, NULL);
11201 if (file == INVALID_HANDLE_VALUE) {
11204 if (GetLastError() == ERROR_ACCESS_DENIED) {
11205 DWORD attributes = GetFileAttributesW(wfilepath);
11206 if ((attributes != INVALID_FILE_ATTRIBUTES) && (attributes & FILE_ATTRIBUTE_DIRECTORY)) {
11216 DWORD file_size = GetFileSize(file, NULL);
11217 if (file_size == INVALID_FILE_SIZE) {
11225 if (file_size == 0) {
11228 const uint8_t source[] =
"";
11229 *
string = (
pm_string_t) { .type = PM_STRING_CONSTANT, .source = source, .length = 0 };
11234 HANDLE mapping = CreateFileMapping(file, NULL, PAGE_READONLY, 0, 0, NULL);
11235 if (mapping == NULL) {
11242 uint8_t *source = (uint8_t *) MapViewOfFile(mapping, FILE_MAP_READ, 0, 0, 0);
11243 CloseHandle(mapping);
11247 if (source == NULL) {
11251 *
string = (
pm_string_t) { .type = PM_STRING_MAPPED, .source = source, .length = (size_t) file_size };
11253#elif defined(_POSIX_MAPPED_FILES)
11255 const int open_mode = O_RDONLY | O_NONBLOCK;
11256 int fd = open(filepath, open_mode);
11263 if (fstat(fd, &sb) == -1) {
11269 if (S_ISDIR(sb.st_mode)) {
11277 if (S_ISFIFO(sb.st_mode) || S_ISCHR(sb.st_mode)) {
11286 long len = RSTRING_LEN(contents);
11291 size_t length = (size_t)
len;
11292 uint8_t *source = malloc(length);
11293 memcpy(source, RSTRING_PTR(contents), length);
11294 *
string = (
pm_string_t) { .type = PM_STRING_OWNED, .source = source, .length = length };
11300 size_t size = (size_t) sb.st_size;
11301 uint8_t *source = NULL;
11305 const uint8_t source[] =
"";
11306 *
string = (
pm_string_t) { .type = PM_STRING_CONSTANT, .source = source, .length = 0 };
11310 source = mmap(NULL, size, PROT_READ, MAP_PRIVATE, fd, 0);
11311 if (source == MAP_FAILED) {
11317 *
string = (
pm_string_t) { .type = PM_STRING_MAPPED, .source = source, .length = size };
11320 return pm_string_file_init(
string, filepath);
11334 pm_options_frozen_string_literal_init(&result->
options);
11343 err = rb_w32_map_errno(GetLastError());
11375 pm_options_filepath_set(&result->
options, RSTRING_PTR(filepath));
11378 pm_options_version_for_current_ruby_set(&result->
options);
11380 pm_parser_init(&result->
parser, pm_string_source(&result->
input), pm_string_length(&result->
input), &result->
options);
11381 pm_node_t *node = pm_parse(&result->
parser);
11383 VALUE error = pm_parse_process(result, node, script_lines);
11388 ID id_script_lines = rb_intern(
"SCRIPT_LINES__");
11394 rb_hash_aset(constant_script_lines, filepath, pm_parse_file_script_lines(&result->
node, &result->
parser));
11408 VALUE error = pm_load_file(result, filepath,
false);
11409 if (
NIL_P(error)) {
11410 error = pm_parse_file(result, filepath, script_lines);
11425 rb_encoding *encoding = rb_enc_get(source);
11426 if (!rb_enc_asciicompat(encoding)) {
11430 pm_options_frozen_string_literal_init(&result->
options);
11431 pm_string_constant_init(&result->
input, RSTRING_PTR(source), RSTRING_LEN(source));
11432 pm_options_encoding_set(&result->
options, rb_enc_name(encoding));
11435 pm_options_filepath_set(&result->
options, RSTRING_PTR(filepath));
11438 pm_options_version_for_current_ruby_set(&result->
options);
11440 pm_parser_init(&result->
parser, pm_string_source(&result->
input), pm_string_length(&result->
input), &result->
options);
11441 pm_node_t *node = pm_parse(&result->
parser);
11443 return pm_parse_process(result, node, script_lines);
11452pm_parse_stdin_eof(
void *stream)
11455 return wrapped_stdin->eof_seen;
11462pm_parse_stdin_fgets(
char *
string,
int size,
void *stream)
11473 const char *cstr = RSTRING_PTR(line);
11474 long length = RSTRING_LEN(line);
11476 memcpy(
string, cstr, length);
11477 string[length] =
'\0';
11482 if (length < (size - 1) &&
string[length - 1] !=
'\n') {
11483 wrapped_stdin->eof_seen = 1;
11490void rb_reset_argf_lineno(
long n);
11500 pm_options_frozen_string_literal_init(&result->
options);
11508 pm_node_t *node = pm_parse_stream(&result->
parser, &buffer, (
void *) &wrapped_stdin, pm_parse_stdin_fgets, pm_parse_stdin_eof, &result->
options);
11513 pm_string_owned_init(&result->
input, (uint8_t *) pm_buffer_value(&buffer), pm_buffer_length(&buffer));
11517 rb_reset_argf_lineno(0);
11519 return pm_parse_process(result, node, NULL);
11522#define PM_VERSION_FOR_RELEASE(major, minor) PM_VERSION_FOR_RELEASE_IMPL(major, minor)
11523#define PM_VERSION_FOR_RELEASE_IMPL(major, minor) PM_OPTIONS_VERSION_CRUBY_##major##_##minor
11525void pm_options_version_for_current_ruby_set(
pm_options_t *options) {
11526 options->
version = PM_VERSION_FOR_RELEASE(RUBY_VERSION_MAJOR, RUBY_VERSION_MINOR);
11530#define NEW_ISEQ OLD_ISEQ
11532#undef NEW_CHILD_ISEQ
11533#define NEW_CHILD_ISEQ OLD_CHILD_ISEQ
#define RUBY_ASSERT(...)
Asserts that the given expression is truthy if and only if RUBY_DEBUG is truthy.
@ PM_WARNING_LEVEL_VERBOSE
For warnings which should be emitted if $VERBOSE == true.
@ PM_ERROR_LEVEL_ARGUMENT
For errors that should raise an argument error.
@ PM_ERROR_LEVEL_LOAD
For errors that should raise a load error.
@ PM_ERROR_LEVEL_SYNTAX
For errors that should raise a syntax error.
#define RUBY_EVENT_END
Encountered an end of a class clause.
#define RUBY_EVENT_B_RETURN
Encountered a next statement.
#define RUBY_EVENT_CLASS
Encountered a new class.
#define RUBY_EVENT_LINE
Encountered a new line.
#define RUBY_EVENT_RETURN
Encountered a return statement.
#define RUBY_EVENT_B_CALL
Encountered an yield statement.
#define RUBY_EVENT_CALL
A method, written in Ruby, is called.
#define RUBY_EVENT_RESCUE
Encountered a rescue statement.
#define rb_str_new2
Old name of rb_str_new_cstr.
#define ALLOCV
Old name of RB_ALLOCV.
#define ALLOC
Old name of RB_ALLOC.
#define RFLOAT_VALUE
Old name of rb_float_value.
#define T_STRING
Old name of RUBY_T_STRING.
#define xfree
Old name of ruby_xfree.
#define Qundef
Old name of RUBY_Qundef.
#define INT2FIX
Old name of RB_INT2FIX.
#define rb_str_cat2
Old name of rb_str_cat_cstr.
#define ID2SYM
Old name of RB_ID2SYM.
#define OBJ_FREEZE
Old name of RB_OBJ_FREEZE.
#define ULONG2NUM
Old name of RB_ULONG2NUM.
#define FIXABLE
Old name of RB_FIXABLE.
#define xmalloc
Old name of ruby_xmalloc.
#define LONG2FIX
Old name of RB_INT2FIX.
#define ZALLOC_N
Old name of RB_ZALLOC_N.
#define T_HASH
Old name of RUBY_T_HASH.
#define ALLOC_N
Old name of RB_ALLOC_N.
#define rb_exc_new3
Old name of rb_exc_new_str.
#define Qtrue
Old name of RUBY_Qtrue.
#define INT2NUM
Old name of RB_INT2NUM.
#define Qnil
Old name of RUBY_Qnil.
#define Qfalse
Old name of RUBY_Qfalse.
#define T_ARRAY
Old name of RUBY_T_ARRAY.
#define NIL_P
Old name of RB_NIL_P.
#define DBL2NUM
Old name of rb_float_new.
#define xcalloc
Old name of ruby_xcalloc.
#define NUM2LONG
Old name of RB_NUM2LONG.
#define UINT2NUM
Old name of RB_UINT2NUM.
#define CONST_ID
Old name of RUBY_CONST_ID.
#define ruby_debug
This variable controls whether the interpreter is in debug mode.
VALUE rb_eNotImpError
NotImplementedError exception.
VALUE rb_eStandardError
StandardError exception.
VALUE rb_eLoadError
LoadError exception.
VALUE rb_eTypeError
TypeError exception.
VALUE rb_eNoMatchingPatternError
NoMatchingPatternError exception.
void rb_warn(const char *fmt,...)
Identical to rb_warning(), except it reports unless $VERBOSE is nil.
VALUE rb_exc_new(VALUE etype, const char *ptr, long len)
Creates an instance of the passed exception class.
VALUE rb_eNoMatchingPatternKeyError
NoMatchingPatternKeyError exception.
VALUE rb_exc_new_str(VALUE etype, VALUE str)
Identical to rb_exc_new_cstr(), except it takes a Ruby's string instead of C's.
VALUE rb_errinfo(void)
This is the same as $! in Ruby.
VALUE rb_eSyntaxError
SyntaxError exception.
VALUE rb_syserr_new(int n, const char *mesg)
Creates an exception object that represents the given C errno.
VALUE rb_cArray
Array class.
VALUE rb_obj_hide(VALUE obj)
Make the object invisible from Ruby code.
VALUE rb_stdin
STDIN constant.
VALUE rb_obj_freeze(VALUE obj)
Just calls rb_obj_freeze_inline() inside.
#define RB_OBJ_WRITTEN(old, oldv, young)
Identical to RB_OBJ_WRITE(), except it doesn't write any values, but only a WB declaration.
#define RB_OBJ_WRITE(old, slot, young)
Declaration of a "back" pointer.
rb_encoding * rb_utf8_encoding(void)
Queries the encoding that represents UTF-8.
rb_encoding * rb_ascii8bit_encoding(void)
Queries the encoding that represents ASCII-8BIT a.k.a.
rb_encoding * rb_usascii_encoding(void)
Queries the encoding that represents US-ASCII.
int rb_enc_str_coderange(VALUE str)
Scans the passed string to collect its code range.
VALUE rb_enc_interned_str(const char *ptr, long len, rb_encoding *enc)
Identical to rb_enc_str_new(), except it returns a "f"string.
VALUE rb_enc_str_new_cstr(const char *ptr, rb_encoding *enc)
Identical to rb_enc_str_new(), except it assumes the passed pointer is a pointer to a C string.
VALUE rb_funcall(VALUE recv, ID mid, int n,...)
Calls a method.
VALUE rb_ary_new(void)
Allocates a new, empty array.
VALUE rb_hash_new(void)
Creates a new, empty hash object.
VALUE rb_io_fdopen(int fd, int flags, const char *path)
Creates an IO instance whose backend is the given file descriptor.
VALUE rb_range_new(VALUE beg, VALUE end, int excl)
Creates a new Range.
VALUE rb_rational_new(VALUE num, VALUE den)
Constructs a Rational, with reduction.
VALUE rb_str_append(VALUE dst, VALUE src)
Identical to rb_str_buf_append(), except it converts the right hand side before concatenating.
VALUE rb_str_tmp_new(long len)
Allocates a "temporary" string.
#define rb_str_new(str, len)
Allocates an instance of rb_cString.
#define rb_exc_new_cstr(exc, str)
Identical to rb_exc_new(), except it assumes the passed pointer is a pointer to a C string.
#define rb_str_buf_new_cstr(str)
Identical to rb_str_new_cstr, except done differently.
VALUE rb_str_concat(VALUE dst, VALUE src)
Identical to rb_str_append(), except it also accepts an integer as a codepoint.
VALUE rb_str_freeze(VALUE str)
This is the implementation of String#freeze.
#define rb_str_new_cstr(str)
Identical to rb_str_new, except it assumes the passed pointer is a pointer to a C string.
VALUE rb_ivar_set(VALUE obj, ID name, VALUE val)
Identical to rb_iv_set(), except it accepts the name as an ID instead of a C string.
VALUE rb_const_get_at(VALUE space, ID name)
Identical to rb_const_defined_at(), except it returns the actual defined value.
int rb_const_defined_at(VALUE space, ID name)
Identical to rb_const_defined(), except it doesn't look for parent classes.
static ID rb_intern_const(const char *str)
This is a "tiny optimisation" over rb_intern().
VALUE rb_id2sym(ID id)
Allocates an instance of rb_cSymbol that has the given id.
VALUE rb_sym2str(VALUE symbol)
Obtain a frozen string representation of a symbol (not including the leading colon).
@ RUBY_IO_READABLE
IO::READABLE
VALUE rb_io_wait(VALUE io, VALUE events, VALUE timeout)
Blocks until the passed IO is ready for the passed events.
int len
Length of the buffer.
VALUE rb_ractor_make_shareable(VALUE obj)
Destructively transforms the passed object so that multiple Ractors can share it.
#define DECIMAL_SIZE_OF(expr)
An approximation of decimal representation size.
#define RB_INT2NUM
Just another name of rb_int2num_inline.
#define RB_GC_GUARD(v)
Prevents premature destruction of local objects.
VALUE type(ANYARGS)
ANYARGS-ed function type.
struct pm_options pm_options_t
The options that can be passed to the parser.
struct pm_parser pm_parser_t
The parser used to parse Ruby source.
uint32_t pm_constant_id_t
A constant id is a unique identifier for a constant in the constant pool.
struct pm_list_node pm_list_node_t
This struct represents an abstract linked list that provides common functionality.
pm_string_init_result_t
Represents the result of calling pm_string_mapped_init or pm_string_file_init.
@ PM_STRING_INIT_SUCCESS
Indicates that the string was successfully initialized.
@ PM_STRING_INIT_ERROR_GENERIC
Indicates a generic error from a string_*_init function, where the type of error should be read from ...
@ PM_STRING_INIT_ERROR_DIRECTORY
Indicates that the file that was attempted to be opened was a directory.
#define PM_ENCODING_US_ASCII_ENTRY
This is the US-ASCII encoding.
#define PM_NODE_LIST_FOREACH(list, index, node)
Loop through each node in the node list, writing each node to the given pm_node_t pointer.
The main header file for the prism parser.
#define RARRAY_LEN
Just another name of rb_array_len.
#define RARRAY_AREF(a, i)
#define RARRAY_CONST_PTR
Just another name of rb_array_const_ptr.
#define errno
Ractor-aware version of errno.
#define RTEST
This is an old name of RB_TEST.
struct pm_node * old_name
AliasGlobalVariableNode::old_name.
struct pm_node * new_name
AliasGlobalVariableNode::new_name.
struct pm_node * old_name
AliasMethodNode::old_name.
struct pm_node * new_name
AliasMethodNode::new_name.
struct pm_node * left
AlternationPatternNode::left.
struct pm_node * right
AlternationPatternNode::right.
struct pm_node * left
AndNode::left.
struct pm_node * right
AndNode::right.
pm_node_t base
The embedded base node.
struct pm_node_list arguments
ArgumentsNode::arguments.
struct pm_node_list elements
ArrayNode::elements.
struct pm_node_list requireds
ArrayPatternNode::requireds.
struct pm_node * rest
ArrayPatternNode::rest.
struct pm_node * constant
ArrayPatternNode::constant.
struct pm_node_list posts
ArrayPatternNode::posts.
struct pm_node * value
AssocNode::value.
struct pm_node * key
AssocNode::key.
struct pm_node * value
AssocSplatNode::value.
pm_node_t base
The embedded base node.
struct pm_ensure_node * ensure_clause
BeginNode::ensure_clause.
struct pm_rescue_node * rescue_clause
BeginNode::rescue_clause.
struct pm_statements_node * statements
BeginNode::statements.
struct pm_else_node * else_clause
BeginNode::else_clause.
struct pm_node * expression
BlockArgumentNode::expression.
struct pm_node * parameters
BlockNode::parameters.
struct pm_node * body
BlockNode::body.
pm_constant_id_list_t locals
BlockNode::locals.
struct pm_arguments_node * arguments
BreakNode::arguments.
A pm_buffer_t is a simple memory buffer that stores data in a contiguous block of memory.
struct pm_node * value
CallAndWriteNode::value.
pm_constant_id_t read_name
CallAndWriteNode::read_name.
pm_constant_id_t write_name
CallAndWriteNode::write_name.
struct pm_node * receiver
CallAndWriteNode::receiver.
pm_location_t closing_loc
CallNode::closing_loc.
struct pm_node * receiver
CallNode::receiver.
pm_constant_id_t name
CallNode::name.
pm_node_t base
The embedded base node.
pm_location_t message_loc
CallNode::message_loc.
struct pm_arguments_node * arguments
CallNode::arguments.
struct pm_node * block
CallNode::block.
pm_constant_id_t read_name
CallOperatorWriteNode::read_name.
pm_constant_id_t binary_operator
CallOperatorWriteNode::binary_operator.
struct pm_node * receiver
CallOperatorWriteNode::receiver.
pm_constant_id_t write_name
CallOperatorWriteNode::write_name.
struct pm_node * value
CallOperatorWriteNode::value.
struct pm_node * receiver
CallOrWriteNode::receiver.
struct pm_node * value
CallOrWriteNode::value.
pm_constant_id_t write_name
CallOrWriteNode::write_name.
pm_constant_id_t read_name
CallOrWriteNode::read_name.
pm_constant_id_t name
CallTargetNode::name.
struct pm_node * receiver
CallTargetNode::receiver.
struct pm_local_variable_target_node * target
CapturePatternNode::target.
struct pm_node * value
CapturePatternNode::value.
struct pm_node_list conditions
CaseMatchNode::conditions.
struct pm_else_node * else_clause
CaseMatchNode::else_clause.
struct pm_node * predicate
CaseMatchNode::predicate.
struct pm_node * predicate
CaseNode::predicate.
struct pm_else_node * else_clause
CaseNode::else_clause.
struct pm_node_list conditions
CaseNode::conditions.
struct pm_node * constant_path
ClassNode::constant_path.
pm_constant_id_list_t locals
ClassNode::locals.
pm_constant_id_t name
ClassNode::name.
struct pm_node * body
ClassNode::body.
struct pm_node * superclass
ClassNode::superclass.
struct pm_node * value
ClassVariableAndWriteNode::value.
pm_constant_id_t name
ClassVariableAndWriteNode::name.
pm_constant_id_t name
ClassVariableOperatorWriteNode::name.
pm_constant_id_t binary_operator
ClassVariableOperatorWriteNode::binary_operator.
struct pm_node * value
ClassVariableOperatorWriteNode::value.
pm_constant_id_t name
ClassVariableOrWriteNode::name.
struct pm_node * value
ClassVariableOrWriteNode::value.
pm_constant_id_t name
ClassVariableReadNode::name.
pm_constant_id_t name
ClassVariableTargetNode::name.
struct pm_node * value
ClassVariableWriteNode::value.
pm_constant_id_t name
ClassVariableWriteNode::name.
pm_location_t name_loc
ConstantAndWriteNode::name_loc.
pm_constant_id_t name
ConstantAndWriteNode::name.
struct pm_node * value
ConstantAndWriteNode::value.
size_t size
The number of constant ids in the list.
size_t capacity
The number of constant ids that have been allocated in the list.
pm_constant_id_t * ids
The constant ids in the list.
pm_constant_id_t name
ConstantOperatorWriteNode::name.
pm_location_t name_loc
ConstantOperatorWriteNode::name_loc.
pm_constant_id_t binary_operator
ConstantOperatorWriteNode::binary_operator.
struct pm_node * value
ConstantOperatorWriteNode::value.
pm_location_t name_loc
ConstantOrWriteNode::name_loc.
pm_constant_id_t name
ConstantOrWriteNode::name.
struct pm_node * value
ConstantOrWriteNode::value.
struct pm_constant_path_node * target
ConstantPathAndWriteNode::target.
struct pm_node * value
ConstantPathAndWriteNode::value.
pm_constant_id_t name
ConstantPathNode::name.
struct pm_node * parent
ConstantPathNode::parent.
struct pm_constant_path_node * target
ConstantPathOperatorWriteNode::target.
struct pm_node * value
ConstantPathOperatorWriteNode::value.
pm_constant_id_t binary_operator
ConstantPathOperatorWriteNode::binary_operator.
struct pm_node * value
ConstantPathOrWriteNode::value.
struct pm_constant_path_node * target
ConstantPathOrWriteNode::target.
struct pm_node * parent
ConstantPathTargetNode::parent.
pm_constant_id_t name
ConstantPathTargetNode::name.
struct pm_constant_path_node * target
ConstantPathWriteNode::target.
struct pm_node * value
ConstantPathWriteNode::value.
uint32_t size
The number of buckets in the hash map.
pm_constant_t * constants
The constants that are stored in the buckets.
pm_node_t base
The embedded base node.
pm_constant_id_t name
ConstantReadNode::name.
A constant in the pool which effectively stores a string.
size_t length
The length of the string.
const uint8_t * start
A pointer to the start of the string.
pm_constant_id_t name
ConstantTargetNode::name.
struct pm_node * value
ConstantWriteNode::value.
pm_constant_id_t name
ConstantWriteNode::name.
struct pm_parameters_node * parameters
DefNode::parameters.
pm_constant_id_t name
DefNode::name.
struct pm_node * body
DefNode::body.
struct pm_node * receiver
DefNode::receiver.
pm_node_t base
The embedded base node.
pm_constant_id_list_t locals
DefNode::locals.
struct pm_node * value
DefinedNode::value.
This struct represents a diagnostic generated during parsing.
pm_location_t location
The location of the diagnostic in the source.
const char * message
The message associated with the diagnostic.
pm_list_node_t node
The embedded base node.
uint8_t level
The level of the diagnostic, see pm_error_level_t and pm_warning_level_t for possible values.
struct pm_statements_node * statements
ElseNode::statements.
struct pm_statements_node * statements
EmbeddedStatementsNode::statements.
struct pm_node * variable
EmbeddedVariableNode::variable.
This struct defines the functions necessary to implement the encoding interface so we can determine h...
size_t(* char_width)(const uint8_t *b, ptrdiff_t n)
Return the number of bytes that the next character takes if it is valid in the encoding.
const char * name
The name of the encoding.
struct pm_statements_node * statements
EnsureNode::statements.
struct pm_node * constant
FindPatternNode::constant.
struct pm_node * right
FindPatternNode::right.
struct pm_node_list requireds
FindPatternNode::requireds.
struct pm_splat_node * left
FindPatternNode::left.
pm_node_t base
The embedded base node.
struct pm_node * left
FlipFlopNode::left.
struct pm_node * right
FlipFlopNode::right.
double value
FloatNode::value.
struct pm_statements_node * statements
ForNode::statements.
struct pm_node * collection
ForNode::collection.
struct pm_block_node * block
ForwardingSuperNode::block.
struct pm_node * value
GlobalVariableAndWriteNode::value.
pm_constant_id_t name
GlobalVariableAndWriteNode::name.
pm_constant_id_t name
GlobalVariableOperatorWriteNode::name.
pm_constant_id_t binary_operator
GlobalVariableOperatorWriteNode::binary_operator.
struct pm_node * value
GlobalVariableOperatorWriteNode::value.
pm_constant_id_t name
GlobalVariableOrWriteNode::name.
struct pm_node * value
GlobalVariableOrWriteNode::value.
pm_constant_id_t name
GlobalVariableReadNode::name.
pm_constant_id_t name
GlobalVariableTargetNode::name.
struct pm_node * value
GlobalVariableWriteNode::value.
pm_constant_id_t name
GlobalVariableWriteNode::name.
struct pm_node_list elements
HashNode::elements.
struct pm_node_list elements
HashPatternNode::elements.
struct pm_node * rest
HashPatternNode::rest.
struct pm_node * constant
HashPatternNode::constant.
struct pm_node * predicate
IfNode::predicate.
struct pm_statements_node * statements
IfNode::statements.
struct pm_node * numeric
ImaginaryNode::numeric.
struct pm_node * value
ImplicitNode::value.
struct pm_statements_node * statements
InNode::statements.
struct pm_node * pattern
InNode::pattern.
struct pm_arguments_node * arguments
IndexAndWriteNode::arguments.
struct pm_node * receiver
IndexAndWriteNode::receiver.
struct pm_block_argument_node * block
IndexAndWriteNode::block.
struct pm_node * value
IndexAndWriteNode::value.
struct pm_block_argument_node * block
IndexOperatorWriteNode::block.
struct pm_node * value
IndexOperatorWriteNode::value.
struct pm_arguments_node * arguments
IndexOperatorWriteNode::arguments.
pm_constant_id_t binary_operator
IndexOperatorWriteNode::binary_operator.
struct pm_node * receiver
IndexOperatorWriteNode::receiver.
struct pm_block_argument_node * block
IndexOrWriteNode::block.
struct pm_node * receiver
IndexOrWriteNode::receiver.
struct pm_node * value
IndexOrWriteNode::value.
struct pm_arguments_node * arguments
IndexOrWriteNode::arguments.
struct pm_node * receiver
IndexTargetNode::receiver.
struct pm_arguments_node * arguments
IndexTargetNode::arguments.
struct pm_block_argument_node * block
IndexTargetNode::block.
struct pm_node * value
InstanceVariableAndWriteNode::value.
pm_constant_id_t name
InstanceVariableAndWriteNode::name.
struct pm_node * value
InstanceVariableOperatorWriteNode::value.
pm_constant_id_t binary_operator
InstanceVariableOperatorWriteNode::binary_operator.
pm_constant_id_t name
InstanceVariableOperatorWriteNode::name.
struct pm_node * value
InstanceVariableOrWriteNode::value.
pm_constant_id_t name
InstanceVariableOrWriteNode::name.
pm_constant_id_t name
InstanceVariableReadNode::name.
pm_constant_id_t name
InstanceVariableTargetNode::name.
pm_constant_id_t name
InstanceVariableWriteNode::name.
struct pm_node * value
InstanceVariableWriteNode::value.
pm_integer_t value
IntegerNode::value.
A structure represents an arbitrary-sized integer.
size_t length
The number of allocated values.
uint32_t value
Embedded value for small integer.
uint32_t * values
List of 32-bit integers.
bool negative
Whether or not the integer is negative.
struct pm_node_list parts
InterpolatedStringNode::parts.
struct pm_node_list parts
InterpolatedSymbolNode::parts.
struct pm_node_list parts
InterpolatedXStringNode::parts.
struct pm_node_list elements
KeywordHashNode::elements.
struct pm_node * body
LambdaNode::body.
pm_location_t opening_loc
LambdaNode::opening_loc.
struct pm_node * parameters
LambdaNode::parameters.
pm_location_t operator_loc
LambdaNode::operator_loc.
pm_constant_id_list_t locals
LambdaNode::locals.
A line and column in a string.
uint32_t column
The column number.
int32_t line
The line number.
struct pm_list_node * next
A pointer to the next node in the list.
This represents the overall linked list.
pm_list_node_t * head
A pointer to the head of the list.
size_t size
The size of the list.
pm_constant_id_t name
LocalVariableAndWriteNode::name.
uint32_t depth
LocalVariableAndWriteNode::depth.
struct pm_node * value
LocalVariableAndWriteNode::value.
uint32_t depth
LocalVariableOperatorWriteNode::depth.
pm_constant_id_t binary_operator
LocalVariableOperatorWriteNode::binary_operator.
struct pm_node * value
LocalVariableOperatorWriteNode::value.
pm_constant_id_t name
LocalVariableOperatorWriteNode::name.
uint32_t depth
LocalVariableOrWriteNode::depth.
struct pm_node * value
LocalVariableOrWriteNode::value.
pm_constant_id_t name
LocalVariableOrWriteNode::name.
uint32_t depth
LocalVariableReadNode::depth.
pm_constant_id_t name
LocalVariableReadNode::name.
uint32_t depth
LocalVariableTargetNode::depth.
pm_constant_id_t name
LocalVariableTargetNode::name.
struct pm_node * value
LocalVariableWriteNode::value.
uint32_t depth
LocalVariableWriteNode::depth.
pm_constant_id_t name
LocalVariableWriteNode::name.
This represents a range of bytes in the source string to which a node or token corresponds.
const uint8_t * start
A pointer to the start location of the range in the source.
const uint8_t * end
A pointer to the end location of the range in the source.
struct pm_node * pattern
MatchPredicateNode::pattern.
struct pm_node * value
MatchPredicateNode::value.
struct pm_node * value
MatchRequiredNode::value.
struct pm_node * pattern
MatchRequiredNode::pattern.
struct pm_node_list targets
MatchWriteNode::targets.
struct pm_call_node * call
MatchWriteNode::call.
struct pm_node * constant_path
ModuleNode::constant_path.
struct pm_node * body
ModuleNode::body.
pm_constant_id_list_t locals
ModuleNode::locals.
pm_constant_id_t name
ModuleNode::name.
struct pm_node_list lefts
MultiTargetNode::lefts.
struct pm_node * rest
MultiTargetNode::rest.
struct pm_node_list rights
MultiTargetNode::rights.
This is a node in the multi target state linked list.
As we're compiling a multi target, we need to track additional information whenever there is a parent...
struct pm_node * value
MultiWriteNode::value.
struct pm_node * rest
MultiWriteNode::rest.
struct pm_node_list rights
MultiWriteNode::rights.
struct pm_node_list lefts
MultiWriteNode::lefts.
A list of offsets of newlines in a string.
const uint8_t * start
A pointer to the start of the source string.
size_t * offsets
The list of offsets.
size_t size
The number of offsets in the list.
struct pm_arguments_node * arguments
NextNode::arguments.
size_t size
The number of nodes in the list.
struct pm_node ** nodes
The nodes in the list.
This compiler defines its own concept of the location of a node.
int32_t line
This is the line number of a node.
uint32_t node_id
This is a unique identifier for the node.
pm_node_type_t type
This represents the type of the node.
uint32_t node_id
The unique identifier for this node, which is deterministic based on the source.
pm_node_flags_t flags
This represents any flags on the node.
pm_location_t location
This is the location of the node in the source.
uint32_t number
NumberedReferenceReadNode::number.
pm_constant_id_t name
OptionalKeywordParameterNode::name.
struct pm_node * value
OptionalKeywordParameterNode::value.
struct pm_node * value
OptionalParameterNode::value.
pm_constant_id_t name
OptionalParameterNode::name.
pm_options_version_t version
The version of prism that we should be parsing with.
struct pm_node * left
OrNode::left.
struct pm_node * right
OrNode::right.
struct pm_node * rest
ParametersNode::rest.
struct pm_node_list requireds
ParametersNode::requireds.
struct pm_block_parameter_node * block
ParametersNode::block.
struct pm_node_list optionals
ParametersNode::optionals.
struct pm_node_list posts
ParametersNode::posts.
pm_node_t base
The embedded base node.
struct pm_node * keyword_rest
ParametersNode::keyword_rest.
struct pm_node_list keywords
ParametersNode::keywords.
struct pm_node * body
ParenthesesNode::body.
An error that is going to be formatted into the output.
pm_diagnostic_t * error
A pointer to the diagnostic that was generated during parsing.
uint32_t column_end
The column end of the diagnostic message.
int32_t line
The start line of the diagnostic message.
uint32_t column_start
The column start of the diagnostic message.
bool parsed
Whether or not this parse result has performed its parsing yet.
pm_scope_node_t node
The resulting scope node that will hold the generated AST.
pm_string_t input
The input that represents the source to be parsed.
pm_parser_t parser
The parser that will do the actual parsing.
pm_options_t options
The options that will be passed to the parser.
const pm_encoding_t * encoding
The encoding functions for the current file is attached to the parser as it's parsing so that it can ...
const uint8_t * end
The pointer to the end of the source.
pm_constant_pool_t constant_pool
This constant pool keeps all of the constants defined throughout the file so that we can reference th...
const uint8_t * start
The pointer to the start of the source.
pm_list_t error_list
The list of errors that have been found while parsing.
pm_list_t warning_list
The list of warnings that have been found while parsing.
int32_t start_line
The line number at the start of the parse.
pm_string_t filepath
This is the path of the file being parsed.
pm_newline_list_t newline_list
This is the list of newline offsets in the source file.
struct pm_node * variable
PinnedVariableNode::variable.
struct pm_statements_node * statements
PostExecutionNode::statements.
struct pm_statements_node * statements
PreExecutionNode::statements.
struct pm_statements_node * statements
ProgramNode::statements.
struct pm_node * right
RangeNode::right.
struct pm_node * left
RangeNode::left.
pm_integer_t denominator
RationalNode::denominator.
pm_integer_t numerator
RationalNode::numerator.
pm_constant_id_t name
RequiredParameterNode::name.
struct pm_node * rescue_expression
RescueModifierNode::rescue_expression.
struct pm_node * expression
RescueModifierNode::expression.
struct pm_rescue_node * subsequent
RescueNode::subsequent.
struct pm_node * reference
RescueNode::reference.
struct pm_node_list exceptions
RescueNode::exceptions.
struct pm_statements_node * statements
RescueNode::statements.
struct pm_arguments_node * arguments
ReturnNode::arguments.
rb_encoding * filepath_encoding
This is the encoding of the actual filepath object that will be used when a FILE node is compiled or ...
struct iseq_link_anchor * pre_execution_anchor
This will only be set on the top-level scope node.
VALUE * script_lines
This is a pointer to the list of script lines for the ISEQs that will be associated with this scope n...
struct pm_node * write
ShareableConstantNode::write.
pm_node_t base
The embedded base node.
pm_constant_id_list_t locals
SingletonClassNode::locals.
struct pm_node * expression
SingletonClassNode::expression.
struct pm_node * body
SingletonClassNode::body.
pm_string_t filepath
SourceFileNode::filepath.
struct pm_node * expression
SplatNode::expression.
struct pm_node_list body
StatementsNode::body.
pm_node_t base
The embedded base node.
pm_string_t unescaped
StringNode::unescaped.
A generic string type that can have various ownership semantics.
struct pm_arguments_node * arguments
SuperNode::arguments.
struct pm_node * block
SuperNode::block.
pm_string_t unescaped
SymbolNode::unescaped.
pm_node_t base
The embedded base node.
struct pm_node_list names
UndefNode::names.
struct pm_statements_node * statements
UnlessNode::statements.
struct pm_node * predicate
UnlessNode::predicate.
struct pm_else_node * else_clause
UnlessNode::else_clause.
pm_node_t base
The embedded base node.
pm_node_t base
The embedded base node.
pm_string_t unescaped
XStringNode::unescaped.
struct pm_arguments_node * arguments
YieldNode::arguments.
struct rb_iseq_constant_body::@000024342312237062266020177166377106262102236123 param
parameter information
uintptr_t ID
Type that represents a Ruby identifier such as a variable name.
uintptr_t VALUE
Type that represents a Ruby object.
static bool RB_TYPE_P(VALUE obj, enum ruby_value_type t)
Queries if the given object is of given type.