blob: a619c90507e45138c2c72c626dcf6674d011088a [file] [log] [blame]
Damien429d7192013-10-04 19:53:11 +01001#include <unistd.h>
2#include <stdlib.h>
3#include <stdint.h>
4#include <stdio.h>
5#include <ctype.h>
6#include <string.h>
7#include <assert.h>
8
9#include "misc.h"
Damiend99b0522013-12-21 18:17:45 +000010#include "mpconfig.h"
Damien429d7192013-10-04 19:53:11 +010011#include "lexer.h"
Damien429d7192013-10-04 19:53:11 +010012#include "parse.h"
13
14#define RULE_ACT_KIND_MASK (0xf0)
15#define RULE_ACT_ARG_MASK (0x0f)
16#define RULE_ACT_OR (0x10)
17#define RULE_ACT_AND (0x20)
18#define RULE_ACT_LIST (0x30)
19
20#define RULE_ARG_BLANK (0x0000)
21#define RULE_ARG_KIND_MASK (0xf000)
22#define RULE_ARG_ARG_MASK (0x0fff)
23#define RULE_ARG_TOK (0x1000)
24#define RULE_ARG_RULE (0x2000)
25#define RULE_ARG_OPT_TOK (0x3000)
26#define RULE_ARG_OPT_RULE (0x4000)
27
28// (un)comment to use rule names; for debugging
29//#define USE_RULE_NAME (1)
30
31typedef struct _rule_t {
32 byte rule_id;
33 byte act;
34#ifdef USE_RULE_NAME
35 const char *rule_name;
36#endif
37 uint16_t arg[];
38} rule_t;
39
40enum {
41 RULE_none = 0,
42#define DEF_RULE(rule, comp, kind, arg...) RULE_##rule,
43#include "grammar.h"
44#undef DEF_RULE
45 RULE_maximum_number_of,
46};
47
48#define or(n) (RULE_ACT_OR | n)
49#define and(n) (RULE_ACT_AND | n)
50#define one_or_more (RULE_ACT_LIST | 2)
51#define list (RULE_ACT_LIST | 1)
52#define list_with_end (RULE_ACT_LIST | 3)
Damiend99b0522013-12-21 18:17:45 +000053#define tok(t) (RULE_ARG_TOK | MP_TOKEN_##t)
Damien429d7192013-10-04 19:53:11 +010054#define rule(r) (RULE_ARG_RULE | RULE_##r)
Damiend99b0522013-12-21 18:17:45 +000055#define opt_tok(t) (RULE_ARG_OPT_TOK | MP_TOKEN_##t)
Damien429d7192013-10-04 19:53:11 +010056#define opt_rule(r) (RULE_ARG_OPT_RULE | RULE_##r)
57#ifdef USE_RULE_NAME
Damiendf4b4f32013-10-19 18:28:01 +010058#define DEF_RULE(rule, comp, kind, arg...) static const rule_t rule_##rule = { RULE_##rule, kind, #rule, { arg } };
Damien429d7192013-10-04 19:53:11 +010059#else
Damiendf4b4f32013-10-19 18:28:01 +010060#define DEF_RULE(rule, comp, kind, arg...) static const rule_t rule_##rule = { RULE_##rule, kind, { arg } };
Damien429d7192013-10-04 19:53:11 +010061#endif
62#include "grammar.h"
63#undef or
64#undef and
65#undef list
66#undef list_with_end
67#undef tok
68#undef rule
69#undef opt_tok
70#undef opt_rule
71#undef one_or_more
72#undef DEF_RULE
73
Damiendf4b4f32013-10-19 18:28:01 +010074static const rule_t *rules[] = {
Damien429d7192013-10-04 19:53:11 +010075 NULL,
76#define DEF_RULE(rule, comp, kind, arg...) &rule_##rule,
77#include "grammar.h"
78#undef DEF_RULE
79};
80
81typedef struct _rule_stack_t {
82 byte rule_id;
83 int32_t arg_i; // what should be the size and signedness?
84} rule_stack_t;
85
86typedef struct _parser_t {
87 uint rule_stack_alloc;
88 uint rule_stack_top;
89 rule_stack_t *rule_stack;
90
Damien George69a818d2014-01-12 13:55:24 +000091 uint result_stack_alloc;
Damien429d7192013-10-04 19:53:11 +010092 uint result_stack_top;
Damiend99b0522013-12-21 18:17:45 +000093 mp_parse_node_t *result_stack;
Damien429d7192013-10-04 19:53:11 +010094} parser_t;
95
Damiendf4b4f32013-10-19 18:28:01 +010096static void push_rule(parser_t *parser, const rule_t *rule, int arg_i) {
Damien429d7192013-10-04 19:53:11 +010097 if (parser->rule_stack_top >= parser->rule_stack_alloc) {
Damien732407f2013-12-29 19:33:23 +000098 parser->rule_stack = m_renew(rule_stack_t, parser->rule_stack, parser->rule_stack_alloc, parser->rule_stack_alloc * 2);
Damien429d7192013-10-04 19:53:11 +010099 parser->rule_stack_alloc *= 2;
Damien429d7192013-10-04 19:53:11 +0100100 }
101 parser->rule_stack[parser->rule_stack_top].rule_id = rule->rule_id;
102 parser->rule_stack[parser->rule_stack_top].arg_i = arg_i;
103 parser->rule_stack_top += 1;
104}
105
106static void push_rule_from_arg(parser_t *parser, uint arg) {
107 assert((arg & RULE_ARG_KIND_MASK) == RULE_ARG_RULE || (arg & RULE_ARG_KIND_MASK) == RULE_ARG_OPT_RULE);
108 uint rule_id = arg & RULE_ARG_ARG_MASK;
109 assert(rule_id < RULE_maximum_number_of);
110 push_rule(parser, rules[rule_id], 0);
111}
112
Damiendf4b4f32013-10-19 18:28:01 +0100113static void pop_rule(parser_t *parser, const rule_t **rule, uint *arg_i) {
Damien429d7192013-10-04 19:53:11 +0100114 parser->rule_stack_top -= 1;
115 *rule = rules[parser->rule_stack[parser->rule_stack_top].rule_id];
116 *arg_i = parser->rule_stack[parser->rule_stack_top].arg_i;
117}
118
Damiend99b0522013-12-21 18:17:45 +0000119mp_parse_node_t mp_parse_node_new_leaf(machine_int_t kind, machine_int_t arg) {
120 return (mp_parse_node_t)(kind | (arg << 4));
Damien429d7192013-10-04 19:53:11 +0100121}
122
123int num_parse_nodes_allocated = 0;
Damiend99b0522013-12-21 18:17:45 +0000124mp_parse_node_struct_t *parse_node_new_struct(int rule_id, int num_args) {
Damien George69a818d2014-01-12 13:55:24 +0000125 mp_parse_node_struct_t *pn = m_new_obj_var(mp_parse_node_struct_t, mp_parse_node_t, num_args);
Damien429d7192013-10-04 19:53:11 +0100126 pn->source = 0; // TODO
127 pn->kind_num_nodes = (rule_id & 0xff) | (num_args << 8);
128 num_parse_nodes_allocated += 1;
129 return pn;
130}
131
Damiend99b0522013-12-21 18:17:45 +0000132void mp_parse_node_show(mp_parse_node_t pn, int indent) {
Damien429d7192013-10-04 19:53:11 +0100133 for (int i = 0; i < indent; i++) {
134 printf(" ");
135 }
Damiend99b0522013-12-21 18:17:45 +0000136 if (MP_PARSE_NODE_IS_NULL(pn)) {
Damien429d7192013-10-04 19:53:11 +0100137 printf("NULL\n");
Damiend99b0522013-12-21 18:17:45 +0000138 } else if (MP_PARSE_NODE_IS_LEAF(pn)) {
139 int arg = MP_PARSE_NODE_LEAF_ARG(pn);
140 switch (MP_PARSE_NODE_LEAF_KIND(pn)) {
141 case MP_PARSE_NODE_ID: printf("id(%s)\n", qstr_str(arg)); break;
142 case MP_PARSE_NODE_SMALL_INT: printf("int(%d)\n", arg); break;
143 case MP_PARSE_NODE_INTEGER: printf("int(%s)\n", qstr_str(arg)); break;
144 case MP_PARSE_NODE_DECIMAL: printf("dec(%s)\n", qstr_str(arg)); break;
145 case MP_PARSE_NODE_STRING: printf("str(%s)\n", qstr_str(arg)); break;
146 case MP_PARSE_NODE_BYTES: printf("bytes(%s)\n", qstr_str(arg)); break;
147 case MP_PARSE_NODE_TOKEN: printf("tok(%d)\n", arg); break;
Damien429d7192013-10-04 19:53:11 +0100148 default: assert(0);
149 }
150 } else {
Damiend99b0522013-12-21 18:17:45 +0000151 mp_parse_node_struct_t *pns2 = (mp_parse_node_struct_t*)pn;
Damien429d7192013-10-04 19:53:11 +0100152 int n = pns2->kind_num_nodes >> 8;
153#ifdef USE_RULE_NAME
Damiend99b0522013-12-21 18:17:45 +0000154 printf("%s(%d) (n=%d)\n", rules[MP_PARSE_NODE_STRUCT_KIND(pns2)]->rule_name, MP_PARSE_NODE_STRUCT_KIND(pns2), n);
Damien429d7192013-10-04 19:53:11 +0100155#else
Damiend99b0522013-12-21 18:17:45 +0000156 printf("rule(%u) (n=%d)\n", (uint)MP_PARSE_NODE_STRUCT_KIND(pns2), n);
Damien429d7192013-10-04 19:53:11 +0100157#endif
158 for (int i = 0; i < n; i++) {
Damiend99b0522013-12-21 18:17:45 +0000159 mp_parse_node_show(pns2->nodes[i], indent + 2);
Damien429d7192013-10-04 19:53:11 +0100160 }
161 }
162}
163
164/*
165static void result_stack_show(parser_t *parser) {
166 printf("result stack, most recent first\n");
167 for (int i = parser->result_stack_top - 1; i >= 0; i--) {
Damiend99b0522013-12-21 18:17:45 +0000168 mp_parse_node_show(parser->result_stack[i], 0);
Damien429d7192013-10-04 19:53:11 +0100169 }
170}
171*/
172
Damiend99b0522013-12-21 18:17:45 +0000173static mp_parse_node_t pop_result(parser_t *parser) {
Damien429d7192013-10-04 19:53:11 +0100174 assert(parser->result_stack_top > 0);
175 return parser->result_stack[--parser->result_stack_top];
176}
177
Damiend99b0522013-12-21 18:17:45 +0000178static mp_parse_node_t peek_result(parser_t *parser, int pos) {
Damien429d7192013-10-04 19:53:11 +0100179 assert(parser->result_stack_top > pos);
180 return parser->result_stack[parser->result_stack_top - 1 - pos];
181}
182
Damiend99b0522013-12-21 18:17:45 +0000183static void push_result_node(parser_t *parser, mp_parse_node_t pn) {
Damien George69a818d2014-01-12 13:55:24 +0000184 if (parser->result_stack_top >= parser->result_stack_alloc) {
185 parser->result_stack = m_renew(mp_parse_node_t, parser->result_stack, parser->result_stack_alloc, parser->result_stack_alloc * 2);
186 parser->result_stack_alloc *= 2;
187 }
Damien429d7192013-10-04 19:53:11 +0100188 parser->result_stack[parser->result_stack_top++] = pn;
189}
190
Damiend99b0522013-12-21 18:17:45 +0000191static void push_result_token(parser_t *parser, const mp_lexer_t *lex) {
192 const mp_token_t *tok = mp_lexer_cur(lex);
193 mp_parse_node_t pn;
194 if (tok->kind == MP_TOKEN_NAME) {
195 pn = mp_parse_node_new_leaf(MP_PARSE_NODE_ID, qstr_from_strn_copy(tok->str, tok->len));
196 } else if (tok->kind == MP_TOKEN_NUMBER) {
Damien429d7192013-10-04 19:53:11 +0100197 bool dec = false;
198 bool small_int = true;
199 int int_val = 0;
200 int len = tok->len;
201 const char *str = tok->str;
202 int base = 10;
203 int i = 0;
204 if (len >= 3 && str[0] == '0') {
205 if (str[1] == 'o' || str[1] == 'O') {
206 // octal
207 base = 8;
208 i = 2;
209 } else if (str[1] == 'x' || str[1] == 'X') {
210 // hexadecimal
211 base = 16;
212 i = 2;
213 } else if (str[1] == 'b' || str[1] == 'B') {
214 // binary
215 base = 2;
216 i = 2;
217 }
218 }
219 for (; i < len; i++) {
Damien George8cc96a32013-12-30 18:23:50 +0000220 if (unichar_isdigit(str[i]) && str[i] - '0' < base) {
Damien429d7192013-10-04 19:53:11 +0100221 int_val = base * int_val + str[i] - '0';
222 } else if (base == 16 && 'a' <= str[i] && str[i] <= 'f') {
223 int_val = base * int_val + str[i] - 'a' + 10;
Damiendd12d132013-12-29 13:03:49 +0000224 } else if (base == 16 && 'A' <= str[i] && str[i] <= 'F') {
Damien429d7192013-10-04 19:53:11 +0100225 int_val = base * int_val + str[i] - 'A' + 10;
Damien7410e442013-11-02 19:47:57 +0000226 } else if (str[i] == '.' || str[i] == 'e' || str[i] == 'E' || str[i] == 'j' || str[i] == 'J') {
Damien429d7192013-10-04 19:53:11 +0100227 dec = true;
228 break;
229 } else {
230 small_int = false;
231 break;
232 }
233 }
234 if (dec) {
Damiend99b0522013-12-21 18:17:45 +0000235 pn = mp_parse_node_new_leaf(MP_PARSE_NODE_DECIMAL, qstr_from_strn_copy(str, len));
236 } else if (small_int && MP_FIT_SMALL_INT(int_val)) {
237 pn = mp_parse_node_new_leaf(MP_PARSE_NODE_SMALL_INT, int_val);
Damien429d7192013-10-04 19:53:11 +0100238 } else {
Damiend99b0522013-12-21 18:17:45 +0000239 pn = mp_parse_node_new_leaf(MP_PARSE_NODE_INTEGER, qstr_from_strn_copy(str, len));
Damien429d7192013-10-04 19:53:11 +0100240 }
Damiend99b0522013-12-21 18:17:45 +0000241 } else if (tok->kind == MP_TOKEN_STRING) {
242 pn = mp_parse_node_new_leaf(MP_PARSE_NODE_STRING, qstr_from_strn_copy(tok->str, tok->len));
243 } else if (tok->kind == MP_TOKEN_BYTES) {
244 pn = mp_parse_node_new_leaf(MP_PARSE_NODE_BYTES, qstr_from_strn_copy(tok->str, tok->len));
Damien429d7192013-10-04 19:53:11 +0100245 } else {
Damiend99b0522013-12-21 18:17:45 +0000246 pn = mp_parse_node_new_leaf(MP_PARSE_NODE_TOKEN, tok->kind);
Damien429d7192013-10-04 19:53:11 +0100247 }
248 push_result_node(parser, pn);
249}
250
Damiendf4b4f32013-10-19 18:28:01 +0100251static void push_result_rule(parser_t *parser, const rule_t *rule, int num_args) {
Damiend99b0522013-12-21 18:17:45 +0000252 mp_parse_node_struct_t *pn = parse_node_new_struct(rule->rule_id, num_args);
Damien429d7192013-10-04 19:53:11 +0100253 for (int i = num_args; i > 0; i--) {
254 pn->nodes[i - 1] = pop_result(parser);
255 }
Damiend99b0522013-12-21 18:17:45 +0000256 push_result_node(parser, (mp_parse_node_t)pn);
Damien429d7192013-10-04 19:53:11 +0100257}
258
Damiend99b0522013-12-21 18:17:45 +0000259mp_parse_node_t mp_parse(mp_lexer_t *lex, mp_parse_input_kind_t input_kind) {
Damien George69a818d2014-01-12 13:55:24 +0000260
261 // allocate memory for the parser and its stacks
262
263 parser_t *parser = m_new_obj(parser_t);
264
Damien429d7192013-10-04 19:53:11 +0100265 parser->rule_stack_alloc = 64;
266 parser->rule_stack_top = 0;
267 parser->rule_stack = m_new(rule_stack_t, parser->rule_stack_alloc);
268
Damien George69a818d2014-01-12 13:55:24 +0000269 parser->result_stack_alloc = 64;
Damien429d7192013-10-04 19:53:11 +0100270 parser->result_stack_top = 0;
Damien George69a818d2014-01-12 13:55:24 +0000271 parser->result_stack = m_new(mp_parse_node_t, parser->result_stack_alloc);
Damien429d7192013-10-04 19:53:11 +0100272
Damien George69a818d2014-01-12 13:55:24 +0000273 // work out the top-level rule to use, and push it on the stack
Damien5ac1b2e2013-10-18 19:58:12 +0100274 int top_level_rule;
275 switch (input_kind) {
Damiend99b0522013-12-21 18:17:45 +0000276 case MP_PARSE_SINGLE_INPUT: top_level_rule = RULE_single_input; break;
277 //case MP_PARSE_EVAL_INPUT: top_level_rule = RULE_eval_input; break;
Damien5ac1b2e2013-10-18 19:58:12 +0100278 default: top_level_rule = RULE_file_input;
279 }
280 push_rule(parser, rules[top_level_rule], 0);
Damien429d7192013-10-04 19:53:11 +0100281
Damien George69a818d2014-01-12 13:55:24 +0000282 // parse!
283
Damien429d7192013-10-04 19:53:11 +0100284 uint n, i;
285 bool backtrack = false;
Damiendf4b4f32013-10-19 18:28:01 +0100286 const rule_t *rule;
Damiend99b0522013-12-21 18:17:45 +0000287 mp_token_kind_t tok_kind;
Damien429d7192013-10-04 19:53:11 +0100288 bool emit_rule;
289 bool had_trailing_sep;
290
291 for (;;) {
292 next_rule:
293 if (parser->rule_stack_top == 0) {
294 break;
295 }
296
297 pop_rule(parser, &rule, &i);
298 n = rule->act & RULE_ACT_ARG_MASK;
299
300 /*
301 // debugging
302 printf("depth=%d ", parser->rule_stack_top);
303 for (int j = 0; j < parser->rule_stack_top; ++j) {
304 printf(" ");
305 }
306 printf("%s n=%d i=%d bt=%d\n", rule->rule_name, n, i, backtrack);
307 */
308
309 switch (rule->act & RULE_ACT_KIND_MASK) {
310 case RULE_ACT_OR:
311 if (i > 0 && !backtrack) {
312 goto next_rule;
313 } else {
314 backtrack = false;
315 }
316 for (; i < n - 1; ++i) {
317 switch (rule->arg[i] & RULE_ARG_KIND_MASK) {
318 case RULE_ARG_TOK:
Damiend99b0522013-12-21 18:17:45 +0000319 if (mp_lexer_is_kind(lex, rule->arg[i] & RULE_ARG_ARG_MASK)) {
Damien429d7192013-10-04 19:53:11 +0100320 push_result_token(parser, lex);
Damiend99b0522013-12-21 18:17:45 +0000321 mp_lexer_to_next(lex);
Damien429d7192013-10-04 19:53:11 +0100322 goto next_rule;
323 }
324 break;
325 case RULE_ARG_RULE:
326 push_rule(parser, rule, i + 1);
327 push_rule_from_arg(parser, rule->arg[i]);
328 goto next_rule;
329 default:
330 assert(0);
331 }
332 }
333 if ((rule->arg[i] & RULE_ARG_KIND_MASK) == RULE_ARG_TOK) {
Damiend99b0522013-12-21 18:17:45 +0000334 if (mp_lexer_is_kind(lex, rule->arg[i] & RULE_ARG_ARG_MASK)) {
Damien429d7192013-10-04 19:53:11 +0100335 push_result_token(parser, lex);
Damiend99b0522013-12-21 18:17:45 +0000336 mp_lexer_to_next(lex);
Damien429d7192013-10-04 19:53:11 +0100337 } else {
338 backtrack = true;
339 goto next_rule;
340 }
341 } else {
342 push_rule_from_arg(parser, rule->arg[i]);
343 }
344 break;
345
346 case RULE_ACT_AND:
347
348 // failed, backtrack if we can, else syntax error
349 if (backtrack) {
350 assert(i > 0);
351 if ((rule->arg[i - 1] & RULE_ARG_KIND_MASK) == RULE_ARG_OPT_RULE) {
352 // an optional rule that failed, so continue with next arg
Damiend99b0522013-12-21 18:17:45 +0000353 push_result_node(parser, MP_PARSE_NODE_NULL);
Damien429d7192013-10-04 19:53:11 +0100354 backtrack = false;
355 } else {
356 // a mandatory rule that failed, so propagate backtrack
357 if (i > 1) {
358 // already eaten tokens so can't backtrack
359 goto syntax_error;
360 } else {
361 goto next_rule;
362 }
363 }
364 }
365
366 // progress through the rule
367 for (; i < n; ++i) {
368 switch (rule->arg[i] & RULE_ARG_KIND_MASK) {
369 case RULE_ARG_TOK:
370 // need to match a token
371 tok_kind = rule->arg[i] & RULE_ARG_ARG_MASK;
Damiend99b0522013-12-21 18:17:45 +0000372 if (mp_lexer_is_kind(lex, tok_kind)) {
Damien429d7192013-10-04 19:53:11 +0100373 // matched token
Damiend99b0522013-12-21 18:17:45 +0000374 if (tok_kind == MP_TOKEN_NAME) {
Damien429d7192013-10-04 19:53:11 +0100375 push_result_token(parser, lex);
376 }
Damiend99b0522013-12-21 18:17:45 +0000377 mp_lexer_to_next(lex);
Damien429d7192013-10-04 19:53:11 +0100378 } else {
379 // failed to match token
380 if (i > 0) {
381 // already eaten tokens so can't backtrack
382 goto syntax_error;
383 } else {
384 // this rule failed, so backtrack
385 backtrack = true;
386 goto next_rule;
387 }
388 }
389 break;
390 case RULE_ARG_RULE:
391 //if (i + 1 < n) {
392 push_rule(parser, rule, i + 1);
393 //}
394 push_rule_from_arg(parser, rule->arg[i]);
395 goto next_rule;
396 case RULE_ARG_OPT_RULE:
397 push_rule(parser, rule, i + 1);
398 push_rule_from_arg(parser, rule->arg[i]);
399 goto next_rule;
400 default:
401 assert(0);
402 }
403 }
404
405 assert(i == n);
406
407 // matched the rule, so now build the corresponding parse_node
408
409 // count number of arguments for the parse_node
410 i = 0;
411 emit_rule = false;
412 for (int x = 0; x < n; ++x) {
413 if ((rule->arg[x] & RULE_ARG_KIND_MASK) == RULE_ARG_TOK) {
414 tok_kind = rule->arg[x] & RULE_ARG_ARG_MASK;
Damiend99b0522013-12-21 18:17:45 +0000415 if (tok_kind >= MP_TOKEN_NAME) {
Damien429d7192013-10-04 19:53:11 +0100416 emit_rule = true;
417 }
Damiend99b0522013-12-21 18:17:45 +0000418 if (tok_kind == MP_TOKEN_NAME) {
Damien429d7192013-10-04 19:53:11 +0100419 // only tokens which were names are pushed to stack
420 i += 1;
421 }
422 } else {
423 // rules are always pushed
424 i += 1;
425 }
426 }
427
428 // always emit these rules, even if they have only 1 argument
429 if (rule->rule_id == RULE_expr_stmt || rule->rule_id == RULE_yield_stmt) {
430 emit_rule = true;
431 }
432
433 // never emit these rules if they have only 1 argument
434 // NOTE: can't put atom_paren here because we need it to distinguisg, for example, [a,b] from [(a,b)]
Damienb14de212013-10-06 00:28:28 +0100435 // TODO possibly put varargslist_name, varargslist_equal here as well
436 if (rule->rule_id == RULE_else_stmt || rule->rule_id == RULE_testlist_comp_3b || rule->rule_id == RULE_import_as_names_paren || rule->rule_id == RULE_typedargslist_name || rule->rule_id == RULE_typedargslist_colon || rule->rule_id == RULE_typedargslist_equal || rule->rule_id == RULE_dictorsetmaker_colon || rule->rule_id == RULE_classdef_2 || rule->rule_id == RULE_with_item_as || rule->rule_id == RULE_assert_stmt_extra || rule->rule_id == RULE_as_name || rule->rule_id == RULE_raise_stmt_from || rule->rule_id == RULE_vfpdef) {
Damien429d7192013-10-04 19:53:11 +0100437 emit_rule = false;
438 }
439
440 // always emit these rules, and add an extra blank node at the end (to be used by the compiler to store data)
441 if (rule->rule_id == RULE_funcdef || rule->rule_id == RULE_classdef || rule->rule_id == RULE_comp_for || rule->rule_id == RULE_lambdef || rule->rule_id == RULE_lambdef_nocond) {
442 emit_rule = true;
Damiend99b0522013-12-21 18:17:45 +0000443 push_result_node(parser, MP_PARSE_NODE_NULL);
Damien429d7192013-10-04 19:53:11 +0100444 i += 1;
445 }
446
447 int num_not_nil = 0;
448 for (int x = 0; x < i; ++x) {
Damiend99b0522013-12-21 18:17:45 +0000449 if (peek_result(parser, x) != MP_PARSE_NODE_NULL) {
Damien429d7192013-10-04 19:53:11 +0100450 num_not_nil += 1;
451 }
452 }
453 //printf("done and %s n=%d i=%d notnil=%d\n", rule->rule_name, n, i, num_not_nil);
454 if (emit_rule) {
455 push_result_rule(parser, rule, i);
456 } else if (num_not_nil == 0) {
457 push_result_rule(parser, rule, i); // needed for, eg, atom_paren, testlist_comp_3b
458 //result_stack_show(parser);
459 //assert(0);
460 } else if (num_not_nil == 1) {
461 // single result, leave it on stack
Damiend99b0522013-12-21 18:17:45 +0000462 mp_parse_node_t pn = MP_PARSE_NODE_NULL;
Damien429d7192013-10-04 19:53:11 +0100463 for (int x = 0; x < i; ++x) {
Damiend99b0522013-12-21 18:17:45 +0000464 mp_parse_node_t pn2 = pop_result(parser);
465 if (pn2 != MP_PARSE_NODE_NULL) {
Damien429d7192013-10-04 19:53:11 +0100466 pn = pn2;
467 }
468 }
469 push_result_node(parser, pn);
470 } else {
471 push_result_rule(parser, rule, i);
472 }
473 break;
474
475 case RULE_ACT_LIST:
476 // n=2 is: item item*
477 // n=1 is: item (sep item)*
478 // n=3 is: item (sep item)* [sep]
479 if (backtrack) {
480 list_backtrack:
481 had_trailing_sep = false;
482 if (n == 2) {
483 if (i == 1) {
484 // fail on item, first time round; propagate backtrack
485 goto next_rule;
486 } else {
487 // fail on item, in later rounds; finish with this rule
488 backtrack = false;
489 }
490 } else {
491 if (i == 1) {
492 // fail on item, first time round; propagate backtrack
493 goto next_rule;
494 } else if ((i & 1) == 1) {
495 // fail on item, in later rounds; have eaten tokens so can't backtrack
496 if (n == 3) {
497 // list allows trailing separator; finish parsing list
498 had_trailing_sep = true;
499 backtrack = false;
500 } else {
501 // list doesn't allowing trailing separator; fail
502 goto syntax_error;
503 }
504 } else {
505 // fail on separator; finish parsing list
506 backtrack = false;
507 }
508 }
509 } else {
510 for (;;) {
511 uint arg = rule->arg[i & 1 & n];
512 switch (arg & RULE_ARG_KIND_MASK) {
513 case RULE_ARG_TOK:
Damiend99b0522013-12-21 18:17:45 +0000514 if (mp_lexer_is_kind(lex, arg & RULE_ARG_ARG_MASK)) {
Damien429d7192013-10-04 19:53:11 +0100515 if (i & 1 & n) {
516 // separators which are tokens are not pushed to result stack
517 } else {
518 push_result_token(parser, lex);
519 }
Damiend99b0522013-12-21 18:17:45 +0000520 mp_lexer_to_next(lex);
Damien429d7192013-10-04 19:53:11 +0100521 // got element of list, so continue parsing list
522 i += 1;
523 } else {
524 // couldn't get element of list
525 i += 1;
526 backtrack = true;
527 goto list_backtrack;
528 }
529 break;
530 case RULE_ARG_RULE:
531 push_rule(parser, rule, i + 1);
532 push_rule_from_arg(parser, arg);
533 goto next_rule;
534 default:
535 assert(0);
536 }
537 }
538 }
539 assert(i >= 1);
540
541 // compute number of elements in list, result in i
542 i -= 1;
543 if ((n & 1) && (rule->arg[1] & RULE_ARG_KIND_MASK) == RULE_ARG_TOK) {
544 // don't count separators when they are tokens
545 i = (i + 1) / 2;
546 }
547
548 if (i == 1) {
549 // list matched single item
550 if (had_trailing_sep) {
551 // if there was a trailing separator, make a list of a single item
552 push_result_rule(parser, rule, i);
553 } else {
554 // just leave single item on stack (ie don't wrap in a list)
555 }
556 } else {
557 //printf("done list %s %d %d\n", rule->rule_name, n, i);
558 push_result_rule(parser, rule, i);
559 }
560 break;
561
562 default:
563 assert(0);
564 }
565 }
Damien91d387d2013-10-09 15:09:52 +0100566
567 // check we are at the end of the token stream
Damiend99b0522013-12-21 18:17:45 +0000568 if (!mp_lexer_is_kind(lex, MP_TOKEN_END)) {
Damien91d387d2013-10-09 15:09:52 +0100569 goto syntax_error;
Damien429d7192013-10-04 19:53:11 +0100570 }
Damien91d387d2013-10-09 15:09:52 +0100571
Damien429d7192013-10-04 19:53:11 +0100572 //printf("--------------\n");
573 //result_stack_show(parser);
Damien George69a818d2014-01-12 13:55:24 +0000574 //printf("rule stack alloc: %d\n", parser->rule_stack_alloc);
575 //printf("result stack alloc: %d\n", parser->result_stack_alloc);
Damien429d7192013-10-04 19:53:11 +0100576 //printf("number of parse nodes allocated: %d\n", num_parse_nodes_allocated);
Damien George69a818d2014-01-12 13:55:24 +0000577
578 // get the root parse node that we created
579 assert(parser->result_stack_top == 1);
580 mp_parse_node_t result = parser->result_stack[0];
581
582finished:
583 // free the memory that we don't need anymore
584 m_del(rule_stack_t, parser->rule_stack, parser->rule_stack_alloc);
585 m_del(mp_parse_node_t, parser->result_stack, parser->result_stack_alloc);
586 m_del_obj(parser_t, parser);
587
588 // return the result
589 return result;
Damien429d7192013-10-04 19:53:11 +0100590
591syntax_error:
Damien George69a818d2014-01-12 13:55:24 +0000592 // TODO these should raise a proper exception
Damiend99b0522013-12-21 18:17:45 +0000593 if (mp_lexer_is_kind(lex, MP_TOKEN_INDENT)) {
594 mp_lexer_show_error_pythonic(lex, "IndentationError: unexpected indent");
595 } else if (mp_lexer_is_kind(lex, MP_TOKEN_DEDENT_MISMATCH)) {
596 mp_lexer_show_error_pythonic(lex, "IndentationError: unindent does not match any outer indentation level");
Damien91d387d2013-10-09 15:09:52 +0100597 } else {
Damiend99b0522013-12-21 18:17:45 +0000598 mp_lexer_show_error_pythonic(lex, "syntax error:");
Damien429d7192013-10-04 19:53:11 +0100599#ifdef USE_RULE_NAME
Damiend99b0522013-12-21 18:17:45 +0000600 mp_lexer_show_error(lex, rule->rule_name);
Damien429d7192013-10-04 19:53:11 +0100601#endif
Damiend99b0522013-12-21 18:17:45 +0000602 mp_token_show(mp_lexer_cur(lex));
Damien91d387d2013-10-09 15:09:52 +0100603 }
Damien George69a818d2014-01-12 13:55:24 +0000604 result = MP_PARSE_NODE_NULL;
605 goto finished;
Damien429d7192013-10-04 19:53:11 +0100606}