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1# Simple calculator. -*- Autotest -*-
2
3# Copyright (C) 2000, 2001, 2002, 2003, 2004, 2005 Free Software
4# Foundation, Inc.
5
6# This program is free software; you can redistribute it and/or modify
7# it under the terms of the GNU General Public License as published by
8# the Free Software Foundation; either version 2, or (at your option)
9# any later version.
10
11# This program is distributed in the hope that it will be useful,
12# but WITHOUT ANY WARRANTY; without even the implied warranty of
13# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14# GNU General Public License for more details.
15
16# You should have received a copy of the GNU General Public License
17# along with this program; if not, write to the Free Software
18# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
19# 02110-1301, USA.
20
21## ---------------------------------------------------- ##
22## Compile the grammar described in the documentation. ##
23## ---------------------------------------------------- ##
24
25
26# ------------------------- #
27# Helping Autotest macros. #
28# ------------------------- #
29
30
31# _AT_DATA_CALC_Y($1, $2, $3, [BISON-DIRECTIVES])
32# -----------------------------------------------
33# Produce `calc.y'. Don't call this macro directly, because it contains
34# some occurrences of `$1' etc. which will be interpreted by m4. So
35# you should call it with $1, $2, and $3 as arguments, which is what
36# AT_DATA_CALC_Y does.
37m4_define([_AT_DATA_CALC_Y],
38[m4_if([$1$2$3], $[1]$[2]$[3], [],
39 [m4_fatal([$0: Invalid arguments: $@])])dnl
40AT_DATA_GRAMMAR([calc.y],
41[[/* Infix notation calculator--calc */
42]$4
43AT_LALR1_CC_IF(
44[%define "global_tokens_and_yystype"])[
45%{
46#include <stdio.h>
47
48#include <stdlib.h>
49#include <string.h>
50#if HAVE_UNISTD_H
51# include <unistd.h>
52#else
53# undef alarm
54# define alarm(seconds) /* empty */
55#endif
56#include <ctype.h>
57#define USE(Var)
58
59/* Exercise pre-prologue dependency to %union. */
60typedef int semantic_value;
61
62static semantic_value global_result = 0;
63static int global_count = 0;
64%}
65
66/* Exercise %union. */
67%union
68{
69 semantic_value ival;
70};
71
72%{
73static int power (int base, int exponent);
74]AT_LALR1_CC_IF(
75[typedef yy::location YYLTYPE;
76#define first_line begin.line
77#define first_column begin.column
78#define last_line end.line
79#define last_column end.column
80],
81[/* yyerror receives the location if:
82 - %location & %pure & %glr
83 - %location & %pure & %yacc & %parse-param. */
84static void yyerror (AT_YYERROR_ARG_LOC_IF([YYLTYPE *llocp, ])
85 AT_PARAM_IF([semantic_value *result, int *count, ])
86 const char *s
87 );])[
88static int yylex (]AT_LEX_FORMALS[);
89static int get_char (]AT_LEX_FORMALS[);
90static void unget_char (]AT_LEX_PRE_FORMALS[ int c);
91%}
92
93/* Bison Declarations */
94%token CALC_EOF 0 "end of input"
95%token <ival> NUM "number"
96%type <ival> exp
97
98%nonassoc '=' /* comparison */
99%left '-' '+'
100%left '*' '/'
101%left NEG /* negation--unary minus */
102%right '^' /* exponentiation */
103
104/* Grammar follows */
105%%
106input:
107 line
108| input line { ]AT_PARAM_IF([++*count; ++global_count;])[ }
109;
110
111line:
112 '\n'
113| exp '\n' { ]AT_PARAM_IF([*result = global_result = $1], [USE ($1)])[; }
114;
115
116exp:
117 NUM { $$ = $1; }
118| exp '=' exp
119 {
120 if ($1 != $3)
121 fprintf (stderr, "calc: error: %d != %d\n", $1, $3);
122 $$ = $1;
123 }
124| exp '+' exp { $$ = $1 + $3; }
125| exp '-' exp { $$ = $1 - $3; }
126| exp '*' exp { $$ = $1 * $3; }
127| exp '/' exp { $$ = $1 / $3; }
128| '-' exp %prec NEG { $$ = -$2; }
129| exp '^' exp { $$ = power ($1, $3); }
130| '(' exp ')' { $$ = $2; }
131| '(' error ')' { $$ = 1111; }
132| '!' { $$ = 0; YYERROR; }
133| '-' error { $$ = 0; YYERROR; }
134;
135%%
136/* The input. */
137static FILE *input;
138
139]AT_LALR1_CC_IF(
140[/* A C++ error reporting function. */
141void
142yy::parser::error (const location& l, const std::string& m)
143{
144 (void) l;
145 std::cerr << AT_LOCATION_IF([l << ": " << ])m << std::endl;
146}
147
148int
149yyparse (AT_PARAM_IF([semantic_value *result, int *count]))
150{
151 yy::parser parser[]AT_PARAM_IF([ (result, count)]);
152 parser.set_debug_level (!!YYDEBUG);
153 return parser.parse ();
154}
155],
156[static void
157yyerror (AT_YYERROR_ARG_LOC_IF([YYLTYPE *llocp, ])
158 AT_PARAM_IF([semantic_value *result, int *count, ])
159 const char *s)
160{
161AT_PARAM_IF([(void) result; (void) count;])
162AT_YYERROR_SEES_LOC_IF([
163 fprintf (stderr, "%d.%d",
164 AT_LOC.first_line, AT_LOC.first_column);
165 if (AT_LOC.first_line != AT_LOC.last_line)
166 fprintf (stderr, "-%d.%d",
167 AT_LOC.last_line, AT_LOC.last_column - 1);
168 else if (AT_LOC.first_column != AT_LOC.last_column - 1)
169 fprintf (stderr, "-%d",
170 AT_LOC.last_column - 1);
171 fprintf (stderr, ": ");])
172 fprintf (stderr, "%s\n", s);
173}])[
174
175
176]AT_LOCATION_IF([
177static YYLTYPE last_yylloc;
178])[
179static int
180get_char (]AT_LEX_FORMALS[)
181{
182 int res = getc (input);
183 ]AT_USE_LEX_ARGS[;
184]AT_LOCATION_IF([
185 last_yylloc = AT_LOC;
186 if (res == '\n')
187 {
188 AT_LOC.last_line++;
189 AT_LOC.last_column = 0;
190 }
191 else
192 AT_LOC.last_column++;
193])[
194 return res;
195}
196
197
198static void
199unget_char (]AT_LEX_PRE_FORMALS[ int c)
200{
201 ]AT_USE_LEX_ARGS[;
202]AT_LOCATION_IF([
203 /* Wrong when C == `\n'. */
204 AT_LOC = last_yylloc;
205])[
206 ungetc (c, input);
207}
208
209static int
210read_signed_integer (]AT_LEX_FORMALS[)
211{
212 int c = get_char (]AT_LEX_ARGS[);
213 int sign = 1;
214 int n = 0;
215
216 ]AT_USE_LEX_ARGS[;
217 if (c == '-')
218 {
219 c = get_char (]AT_LEX_ARGS[);
220 sign = -1;
221 }
222
223 while (isdigit (c))
224 {
225 n = 10 * n + (c - '0');
226 c = get_char (]AT_LEX_ARGS[);
227 }
228
229 unget_char (]AT_LEX_PRE_ARGS[ c);
230
231 return sign * n;
232}
233
234
235
236/*---------------------------------------------------------------.
237| Lexical analyzer returns an integer on the stack and the token |
238| NUM, or the ASCII character read if not a number. Skips all |
239| blanks and tabs, returns 0 for EOF. |
240`---------------------------------------------------------------*/
241
242static int
243yylex (]AT_LEX_FORMALS[)
244{
245 static int init = 1;
246 int c;
247
248 if (init)
249 {
250 init = 0;
251]AT_LOCATION_IF([
252 AT_LOC.last_column = 0;
253 AT_LOC.last_line = 1;
254])[
255 }
256
257]AT_LOCATION_IF([
258 AT_LOC.first_column = AT_LOC.last_column;
259 AT_LOC.first_line = AT_LOC.last_line;
260])[
261
262 /* Skip white space. */
263 while ((c = get_char (]AT_LEX_ARGS[)) == ' ' || c == '\t')
264 {
265]AT_LOCATION_IF(
266[ AT_LOC.first_column = AT_LOC.last_column;
267 AT_LOC.first_line = AT_LOC.last_line;
268])[
269 }
270
271 /* process numbers */
272 if (c == '.' || isdigit (c))
273 {
274 unget_char (]AT_LEX_PRE_ARGS[ c);
275 ]AT_VAL[.ival = read_signed_integer (]AT_LEX_ARGS[);
276 return NUM;
277 }
278
279 /* Return end-of-file. */
280 if (c == EOF)
281 return CALC_EOF;
282
283 /* Return single chars. */
284 return c;
285}
286
287static int
288power (int base, int exponent)
289{
290 int res = 1;
291 if (exponent < 0)
292 exit (3);
293 for (/* Niente */; exponent; --exponent)
294 res *= base;
295 return res;
296}
297
298
299int
300main (int argc, const char **argv)
301{
302 semantic_value result = 0;
303 int count = 0;
304 int status;
305
306 /* This used to be alarm (10), but that isn't enough time for
307 a July 1995 vintage DEC Alphastation 200 4/100 system,
308 according to Nelson H. F. Beebe. 100 seconds is enough. */
309 alarm (100);
310
311 if (argc == 2)
312 input = fopen (argv[1], "r");
313 else
314 input = stdin;
315
316 if (!input)
317 {
318 perror (argv[1]);
319 return 3;
320 }
321
322]AT_LALR1_CC_IF([], [m4_bmatch([$4], [%debug],
323[ yydebug = 1;])])[
324 status = yyparse (]AT_PARAM_IF([&result, &count])[);
325 if (global_result != result)
326 abort ();
327 if (global_count != count)
328 abort ();
329 return status;
330}
331]])
332])# _AT_DATA_CALC_Y
333
334
335# AT_DATA_CALC_Y([BISON-OPTIONS])
336# -------------------------------
337# Produce `calc.y'.
338m4_define([AT_DATA_CALC_Y],
339[_AT_DATA_CALC_Y($[1], $[2], $[3], [$1])
340])
341
342
343
344# _AT_CHECK_CALC(BISON-OPTIONS, INPUT, [NUM-STDERR-LINES])
345# --------------------------------------------------------
346# Run `calc' on INPUT and expect no STDOUT nor STDERR.
347#
348# If BISON-OPTIONS contains `%debug' but not `%glr-parser', then
349#
350# NUM-STDERR-LINES is the number of expected lines on stderr.
351# Currently this is ignored, though, since the output format is fluctuating.
352#
353# We don't count GLR's traces yet, since its traces are somewhat
354# different from LALR's.
355m4_define([_AT_CHECK_CALC],
356[AT_DATA([[input]],
357[[$2
358]])
359AT_PARSER_CHECK([./calc input], 0, [], [stderr])
360])
361
362
363# _AT_CHECK_CALC_ERROR(BISON-OPTIONS, EXIT-STATUS, INPUT,
364# [NUM-STDERR-LINES],
365# [VERBOSE-AND-LOCATED-ERROR-MESSAGE])
366# ---------------------------------------------------------
367# Run `calc' on INPUT, and expect a `syntax error' message.
368#
369# If INPUT starts with a slash, it is used as absolute input file name,
370# otherwise as contents.
371#
372# NUM-STDERR-LINES is the number of expected lines on stderr.
373# Currently this is ignored, though, since the output format is fluctuating.
374#
375# If BISON-OPTIONS contains `%location', then make sure the ERROR-LOCATION
376# is correctly output on stderr.
377#
378# If BISON-OPTIONS contains `%error-verbose', then make sure the
379# IF-YYERROR-VERBOSE message is properly output after `syntax error, '
380# on STDERR.
381#
382# If BISON-OPTIONS contains `%debug' but not `%glr', then NUM-STDERR-LINES
383# is the number of expected lines on stderr.
384m4_define([_AT_CHECK_CALC_ERROR],
385[m4_bmatch([$3], [^/],
386 [AT_PARSER_CHECK([./calc $3], $2, [], [stderr])],
387 [AT_DATA([[input]],
388[[$3
389]])
390AT_PARSER_CHECK([./calc input], $2, [], [stderr])])
391
392# Normalize the observed and expected error messages, depending upon the
393# options.
394# 1. Remove the traces from observed.
395sed '/^Starting/d
396/^Entering/d
397/^Stack/d
398/^Reading/d
399/^Reducing/d
400/^Shifting/d
401/^state/d
402/^Cleanup:/d
403/^Error:/d
404/^Next/d
405/^Discarding/d
406/ \$[[0-9$]]* = /d
407/^yydestructor:/d' stderr >at-stderr
408mv at-stderr stderr
409# 2. Create the reference error message.
410AT_DATA([[expout]],
411[$5
412])
413# 3. If locations are not used, remove them.
414AT_YYERROR_SEES_LOC_IF([],
415[[sed 's/^[-0-9.]*: //' expout >at-expout
416mv at-expout expout]])
417# 4. If error-verbose is not used, strip the`, unexpected....' part.
418m4_bmatch([$1], [%error-verbose], [],
419[[sed 's/syntax error, .*$/syntax error/' expout >at-expout
420mv at-expout expout]])
421# 5. Check
422AT_CHECK([cat stderr], 0, [expout])
423])
424
425
426# AT_CHECK_CALC([BISON-OPTIONS, [EXPECTED-TO-FAIL]])
427# --------------------------------------------------
428# Start a testing chunk which compiles `calc' grammar with
429# BISON-OPTIONS, and performs several tests over the parser.
430# However, if EXPECTED-TO-FAIL is nonempty, this test is expected to fail.
431m4_define([AT_CHECK_CALC],
432[# We use integers to avoid dependencies upon the precision of doubles.
433AT_SETUP([Calculator $1])
434
435m4_ifval([$2], [AT_CHECK([exit 77])])
436
437AT_BISON_OPTION_PUSHDEFS([$1])
438
439AT_DATA_CALC_Y([$1])
440
441AT_LALR1_CC_IF(
442 [AT_CHECK([bison -o calc.cc calc.y])
443 AT_COMPILE_CXX([calc])],
444 [AT_CHECK([bison -o calc.c calc.y])
445 AT_COMPILE([calc])])
446
447# Test the priorities.
448_AT_CHECK_CALC([$1],
449[1 + 2 * 3 = 7
4501 + 2 * -3 = -5
451
452-1^2 = -1
453(-1)^2 = 1
454
455---1 = -1
456
4571 - 2 - 3 = -4
4581 - (2 - 3) = 2
459
4602^2^3 = 256
461(2^2)^3 = 64],
462 [842])
463
464# Some syntax errors.
465_AT_CHECK_CALC_ERROR([$1], [1], [0 0], [15],
466 [1.2: syntax error, unexpected number])
467_AT_CHECK_CALC_ERROR([$1], [1], [1//2], [20],
468 [1.2: syntax error, unexpected '/', expecting number or '-' or '(' or '!'])
469_AT_CHECK_CALC_ERROR([$1], [1], [error], [5],
470 [1.0: syntax error, unexpected $undefined])
471_AT_CHECK_CALC_ERROR([$1], [1], [1 = 2 = 3], [30],
472 [1.6: syntax error, unexpected '='])
473_AT_CHECK_CALC_ERROR([$1], [1],
474 [
475+1],
476 [20],
477 [2.0: syntax error, unexpected '+'])
478# Exercise error messages with EOF: work on an empty file.
479_AT_CHECK_CALC_ERROR([$1], [1], [/dev/null], [4],
480 [1.0: syntax error, unexpected end of input])
481
482# Exercise the error token: without it, we die at the first error,
483# hence be sure to
484#
485# - have several errors which exercise different shift/discardings
486# - (): nothing to pop, nothing to discard
487# - (1 + 1 + 1 +): a lot to pop, nothing to discard
488# - (* * *): nothing to pop, a lot to discard
489# - (1 + 2 * *): some to pop and discard
490#
491# - test the action associated to `error'
492#
493# - check the look-ahead that triggers an error is not discarded
494# when we enter error recovery. Below, the look-ahead causing the
495# first error is ")", which is needed to recover from the error and
496# produce the "0" that triggers the "0 != 1" error.
497#
498_AT_CHECK_CALC_ERROR([$1], [0],
499 [() + (1 + 1 + 1 +) + (* * *) + (1 * 2 * *) = 1],
500 [250],
501[1.1: syntax error, unexpected ')', expecting number or '-' or '(' or '!'
5021.17: syntax error, unexpected ')', expecting number or '-' or '(' or '!'
5031.22: syntax error, unexpected '*', expecting number or '-' or '(' or '!'
5041.40: syntax error, unexpected '*', expecting number or '-' or '(' or '!'
505calc: error: 4444 != 1])
506
507# The same, but this time exercising explicitly triggered syntax errors.
508# POSIX says the look-ahead causing the error should not be discarded.
509_AT_CHECK_CALC_ERROR([$1], [0], [(!) + (0 0) = 1], [102],
510[1.9: syntax error, unexpected number
511calc: error: 2222 != 1])
512_AT_CHECK_CALC_ERROR([$1], [0], [(- *) + (0 0) = 1], [113],
513[1.3: syntax error, unexpected '*', expecting number or '-' or '(' or '!'
5141.11: syntax error, unexpected number
515calc: error: 2222 != 1])
516AT_BISON_OPTION_POPDEFS
517
518AT_CLEANUP
519])# AT_CHECK_CALC
520
521
522
523
524# ------------------------ #
525# Simple LALR Calculator. #
526# ------------------------ #
527
528AT_BANNER([[Simple LALR Calculator.]])
529
530# AT_CHECK_CALC_LALR([BISON-OPTIONS])
531# -----------------------------------
532# Start a testing chunk which compiles `calc' grammar with
533# BISON-OPTIONS, and performs several tests over the parser.
534m4_define([AT_CHECK_CALC_LALR],
535[AT_CHECK_CALC($@)])
536
537AT_CHECK_CALC_LALR()
538
539AT_CHECK_CALC_LALR([%defines])
540AT_CHECK_CALC_LALR([%locations])
541AT_CHECK_CALC_LALR([%name-prefix="calc"])
542AT_CHECK_CALC_LALR([%verbose])
543AT_CHECK_CALC_LALR([%yacc])
544AT_CHECK_CALC_LALR([%error-verbose])
545
546AT_CHECK_CALC_LALR([%pure-parser %locations])
547AT_CHECK_CALC_LALR([%error-verbose %locations])
548
549AT_CHECK_CALC_LALR([%error-verbose %locations %defines %name-prefix="calc" %verbose %yacc])
550
551AT_CHECK_CALC_LALR([%debug])
552AT_CHECK_CALC_LALR([%error-verbose %debug %locations %defines %name-prefix="calc" %verbose %yacc])
553
554AT_CHECK_CALC_LALR([%pure-parser %error-verbose %debug %locations %defines %name-prefix="calc" %verbose %yacc])
555
556AT_CHECK_CALC_LALR([%pure-parser %error-verbose %debug %locations %defines %name-prefix="calc" %verbose %yacc %parse-param {semantic_value *result} %parse-param {int *count}])
557
558
559# ----------------------- #
560# Simple GLR Calculator. #
561# ----------------------- #
562
563AT_BANNER([[Simple GLR Calculator.]])
564
565# AT_CHECK_CALC_GLR([BISON-OPTIONS])
566# ----------------------------------
567# Start a testing chunk which compiles `calc' grammar with
568# BISON-OPTIONS and %glr-parser, and performs several tests over the parser.
569m4_define([AT_CHECK_CALC_GLR],
570[AT_CHECK_CALC([%glr-parser] $@)])
571
572
573AT_CHECK_CALC_GLR()
574
575AT_CHECK_CALC_GLR([%defines])
576AT_CHECK_CALC_GLR([%locations])
577AT_CHECK_CALC_GLR([%name-prefix="calc"])
578AT_CHECK_CALC_GLR([%verbose])
579AT_CHECK_CALC_GLR([%yacc])
580AT_CHECK_CALC_GLR([%error-verbose])
581
582AT_CHECK_CALC_GLR([%pure-parser %locations])
583AT_CHECK_CALC_GLR([%error-verbose %locations])
584
585AT_CHECK_CALC_GLR([%error-verbose %locations %defines %name-prefix="calc" %verbose %yacc])
586
587AT_CHECK_CALC_GLR([%debug])
588AT_CHECK_CALC_GLR([%error-verbose %debug %locations %defines %name-prefix="calc" %verbose %yacc])
589
590AT_CHECK_CALC_GLR([%pure-parser %error-verbose %debug %locations %defines %name-prefix="calc" %verbose %yacc])
591
592AT_CHECK_CALC_GLR([%pure-parser %error-verbose %debug %locations %defines %name-prefix="calc" %verbose %yacc %parse-param {semantic_value *result} %parse-param {int *count}])
593
594
595# ----------------------------- #
596# Simple LALR1 C++ Calculator. #
597# ----------------------------- #
598
599AT_BANNER([[Simple LALR1 C++ Calculator.]])
600
601# AT_CHECK_CALC_LALR1_CC([BISON-OPTIONS])
602# ---------------------------------------
603# Start a testing chunk which compiles `calc' grammar with
604# the C++ skeleton, and performs several tests over the parser.
605m4_define([AT_CHECK_CALC_LALR1_CC],
606[AT_CHECK_CALC([%skeleton "lalr1.cc"] $@)])
607
608# AT_CHECK_CALC_LALR1_CC()
609
610AT_CHECK_CALC_LALR1_CC([%defines %locations])
611
612AT_CHECK_CALC_LALR1_CC([%defines])
613# AT_CHECK_CALC_LALR1_CC([%locations])
614# AT_CHECK_CALC_LALR1_CC([%name-prefix="calc"])
615# AT_CHECK_CALC_LALR1_CC([%verbose])
616# AT_CHECK_CALC_LALR1_CC([%yacc])
617# AT_CHECK_CALC_LALR1_CC([%error-verbose])
618
619# AT_CHECK_CALC_LALR1_CC([%pure-parser %locations])
620# AT_CHECK_CALC_LALR1_CC([%error-verbose %locations])
621
622AT_CHECK_CALC_LALR1_CC([%error-verbose %locations %defines %name-prefix="calc" %verbose %yacc])
623
624# AT_CHECK_CALC_LALR1_CC([%debug])
625AT_CHECK_CALC_LALR1_CC([%error-verbose %debug %locations %defines %name-prefix="calc" %verbose %yacc])
626
627AT_CHECK_CALC_LALR1_CC([%pure-parser %error-verbose %debug %locations %defines %name-prefix="calc" %verbose %yacc])
628
629AT_CHECK_CALC_LALR1_CC([%pure-parser %error-verbose %debug %locations %defines %name-prefix="calc" %verbose %yacc %parse-param {semantic_value *result} %parse-param {int *count}])