testlang_parse.y revision 1.35 1 1.1 blymn %{
2 1.35 rillig /* $NetBSD: testlang_parse.y,v 1.35 2021/02/08 19:09:59 rillig Exp $ */
3 1.1 blymn
4 1.1 blymn /*-
5 1.1 blymn * Copyright 2009 Brett Lymn <blymn (at) NetBSD.org>
6 1.1 blymn *
7 1.1 blymn * All rights reserved.
8 1.1 blymn *
9 1.1 blymn * This code has been donated to The NetBSD Foundation by the Author.
10 1.1 blymn *
11 1.1 blymn * Redistribution and use in source and binary forms, with or without
12 1.1 blymn * modification, are permitted provided that the following conditions
13 1.1 blymn * are met:
14 1.1 blymn * 1. Redistributions of source code must retain the above copyright
15 1.1 blymn * notice, this list of conditions and the following disclaimer.
16 1.1 blymn * 2. The name of the author may not be used to endorse or promote products
17 1.1 blymn * derived from this software withough specific prior written permission
18 1.1 blymn *
19 1.1 blymn * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 1.1 blymn * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 1.1 blymn * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 1.1 blymn * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 1.1 blymn * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24 1.1 blymn * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25 1.1 blymn * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 1.1 blymn * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27 1.1 blymn * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28 1.1 blymn * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 1.1 blymn *
30 1.1 blymn *
31 1.1 blymn */
32 1.1 blymn #include <assert.h>
33 1.11 blymn #include <curses.h>
34 1.1 blymn #include <errno.h>
35 1.1 blymn #include <fcntl.h>
36 1.3 christos #include <err.h>
37 1.3 christos #include <unistd.h>
38 1.1 blymn #include <poll.h>
39 1.1 blymn #include <stdbool.h>
40 1.1 blymn #include <stdio.h>
41 1.1 blymn #include <string.h>
42 1.14 christos #include <stdlib.h>
43 1.14 christos #include <limits.h>
44 1.1 blymn #include <time.h>
45 1.6 christos #include <vis.h>
46 1.9 christos #include <stdint.h>
47 1.1 blymn #include "returns.h"
48 1.18 blymn #include "director.h"
49 1.1 blymn
50 1.1 blymn #define YYDEBUG 1
51 1.1 blymn
52 1.1 blymn extern int verbose;
53 1.18 blymn extern int check_file_flag;
54 1.1 blymn extern int cmdpipe[2];
55 1.1 blymn extern int slvpipe[2];
56 1.1 blymn extern int master;
57 1.1 blymn extern struct pollfd readfd;
58 1.1 blymn extern char *check_path;
59 1.1 blymn extern char *cur_file; /* from director.c */
60 1.1 blymn
61 1.3 christos int yylex(void);
62 1.3 christos
63 1.1 blymn size_t line;
64 1.1 blymn
65 1.1 blymn static int input_delay;
66 1.1 blymn
67 1.1 blymn /* time delay between inputs chars - default to 0.1ms minimum to prevent
68 1.1 blymn * problems with input tests
69 1.1 blymn */
70 1.1 blymn #define DELAY_MIN 0.1
71 1.10 blymn
72 1.10 blymn /* time delay after a function call - allows the slave time to
73 1.10 blymn * run the function and output data before we do other actions.
74 1.10 blymn * Set this to 50ms.
75 1.10 blymn */
76 1.10 blymn #define POST_CALL_DELAY 50
77 1.10 blymn
78 1.1 blymn static struct timespec delay_spec = {0, 1000 * DELAY_MIN};
79 1.10 blymn static struct timespec delay_post_call = {0, 1000 * POST_CALL_DELAY};
80 1.10 blymn
81 1.1 blymn static char *input_str; /* string to feed in as input */
82 1.1 blymn static bool no_input; /* don't need more input */
83 1.1 blymn
84 1.16 blymn static wchar_t *vals = NULL; /* wchars to attach to a cchar type */
85 1.16 blymn static unsigned nvals; /* number of wchars */
86 1.16 blymn
87 1.1 blymn #define READ_PIPE 0
88 1.1 blymn #define WRITE_PIPE 1
89 1.1 blymn
90 1.16 blymn const char *enum_names[] = {
91 1.18 blymn "unused", "static", "numeric", "string", "byte", "cchar", "wchar", "ERR",
92 1.18 blymn "OK", "NULL", "not NULL", "variable", "reference", "returns count",
93 1.18 blymn "slave error"
94 1.1 blymn };
95 1.1 blymn
96 1.1 blymn typedef struct {
97 1.16 blymn data_enum_t arg_type;
98 1.1 blymn size_t arg_len;
99 1.1 blymn char *arg_string;
100 1.1 blymn int var_index;
101 1.1 blymn } args_t;
102 1.1 blymn
103 1.1 blymn typedef struct {
104 1.1 blymn char *function;
105 1.1 blymn int nrets; /* number of returns */
106 1.16 blymn ct_data_t *returns; /* array of expected returns */
107 1.1 blymn int nargs; /* number of arguments */
108 1.1 blymn args_t *args; /* arguments for the call */
109 1.1 blymn } cmd_line_t;
110 1.1 blymn
111 1.1 blymn static cmd_line_t command;
112 1.1 blymn
113 1.1 blymn typedef struct {
114 1.1 blymn char *name;
115 1.1 blymn size_t len;
116 1.16 blymn data_enum_t type;
117 1.1 blymn void *value;
118 1.16 blymn cchar_t cchar;
119 1.1 blymn } var_t;
120 1.1 blymn
121 1.1 blymn static size_t nvars; /* Number of declared variables */
122 1.1 blymn static var_t *vars; /* Variables defined during the test. */
123 1.1 blymn
124 1.1 blymn static int check_function_table(char *, const char *[], int);
125 1.4 christos static int find_var_index(const char *);
126 1.16 blymn static void assign_arg(data_enum_t, void *);
127 1.30 rillig static int assign_var(const char *);
128 1.1 blymn void init_parse_variables(int);
129 1.1 blymn static void validate(int, void *);
130 1.4 christos static void validate_return(const char *, const char *, int);
131 1.16 blymn static void validate_variable(int, data_enum_t, const void *, int, int);
132 1.16 blymn static void validate_byte(ct_data_t *, ct_data_t *, int);
133 1.21 rillig static void validate_cchar(cchar_t *, cchar_t *, int);
134 1.21 rillig static void validate_wchar(wchar_t *, wchar_t *, int);
135 1.1 blymn static void write_cmd_pipe(char *);
136 1.16 blymn static void write_cmd_pipe_args(data_enum_t, void *);
137 1.16 blymn static void read_cmd_pipe(ct_data_t *);
138 1.4 christos static void write_func_and_args(void);
139 1.30 rillig static void compare_streams(const char *, bool);
140 1.4 christos static void do_function_call(size_t);
141 1.1 blymn static void save_slave_output(bool);
142 1.16 blymn static void validate_type(data_enum_t, ct_data_t *, int);
143 1.30 rillig static void set_var(data_enum_t, const char *, void *);
144 1.1 blymn static void validate_reference(int, void *);
145 1.21 rillig static char * numeric_or(char *, char *);
146 1.21 rillig static char * get_numeric_var(const char *);
147 1.10 blymn static void perform_delay(struct timespec *);
148 1.16 blymn static void set_cchar(char *, void *);
149 1.21 rillig static void set_wchar(char *);
150 1.21 rillig static wchar_t *add_to_vals(data_enum_t, void *);
151 1.1 blymn
152 1.1 blymn static const char *input_functions[] = {
153 1.18 blymn "getch", "mvgetch", "mvwgetch", "wgetch", "getnstr", "getstr", "mvgetnstr",
154 1.18 blymn "mvgetstr", "mvwgetnstr", "mvwgetstr", "wgetnstr", "wgetstr", "mvscanw",
155 1.18 blymn "mvwscanw", "scanw", "wscanw", "get_wch", "mvget_wch", "mvwget_wch",
156 1.18 blymn "wget_wch", "getn_wstr", "get_wstr", "mvgetn_wstr", "mvget_wstr",
157 1.18 blymn "mvwgetn_wstr","mvwget_wstr", "wgetn_wstr", "wget_wstr"
158 1.1 blymn };
159 1.1 blymn
160 1.1 blymn static const unsigned ninput_functions =
161 1.1 blymn sizeof(input_functions) / sizeof(char *);
162 1.1 blymn
163 1.17 joerg extern saved_data_t saved_output;
164 1.1 blymn
165 1.1 blymn %}
166 1.1 blymn
167 1.1 blymn %union {
168 1.1 blymn char *string;
169 1.16 blymn ct_data_t *retval;
170 1.16 blymn wchar_t *vals;
171 1.1 blymn }
172 1.1 blymn
173 1.1 blymn %token <string> PATH
174 1.1 blymn %token <string> STRING
175 1.1 blymn %token <retval> BYTE
176 1.1 blymn %token <string> VARNAME
177 1.1 blymn %token <string> FILENAME
178 1.1 blymn %token <string> VARIABLE
179 1.1 blymn %token <string> REFERENCE
180 1.1 blymn %token <string> NULL_RET
181 1.1 blymn %token <string> NON_NULL
182 1.1 blymn %token <string> ERR_RET
183 1.1 blymn %token <string> OK_RET
184 1.1 blymn %token <string> numeric
185 1.1 blymn %token <string> DELAY
186 1.1 blymn %token <string> INPUT
187 1.1 blymn %token <string> COMPARE
188 1.1 blymn %token <string> COMPAREND
189 1.1 blymn %token <string> ASSIGN
190 1.16 blymn %token <string> CCHAR
191 1.18 blymn %token <string> WCHAR
192 1.27 rillig %token EOL CALL CHECK NOINPUT OR MULTIPLIER LPAREN RPAREN LBRACK RBRACK
193 1.32 rillig %token COMMA
194 1.35 rillig %token CALL2 CALL3 CALL4
195 1.1 blymn
196 1.1 blymn %nonassoc OR
197 1.1 blymn
198 1.1 blymn %%
199 1.1 blymn
200 1.21 rillig statements : /* empty */
201 1.34 rillig | statement EOL statements
202 1.21 rillig ;
203 1.21 rillig
204 1.21 rillig statement : assign
205 1.21 rillig | call
206 1.21 rillig | call2
207 1.21 rillig | call3
208 1.21 rillig | call4
209 1.21 rillig | check
210 1.21 rillig | delay
211 1.21 rillig | input
212 1.21 rillig | noinput
213 1.21 rillig | compare
214 1.21 rillig | comparend
215 1.21 rillig | cchar
216 1.21 rillig | wchar
217 1.22 rillig | /* empty */
218 1.1 blymn ;
219 1.1 blymn
220 1.23 rillig assign : ASSIGN VARNAME numeric {
221 1.23 rillig set_var(data_number, $2, $3);
222 1.23 rillig }
223 1.27 rillig | ASSIGN VARNAME LPAREN expr RPAREN {
224 1.23 rillig set_var(data_number, $2, $<string>4);
225 1.23 rillig }
226 1.23 rillig | ASSIGN VARNAME STRING {
227 1.23 rillig set_var(data_string, $2, $3);
228 1.23 rillig }
229 1.23 rillig | ASSIGN VARNAME BYTE {
230 1.23 rillig set_var(data_byte, $2, $3);
231 1.23 rillig }
232 1.16 blymn ;
233 1.16 blymn
234 1.23 rillig cchar : CCHAR VARNAME attributes char_vals {
235 1.23 rillig set_cchar($2, $<string>3);
236 1.23 rillig }
237 1.16 blymn ;
238 1.16 blymn
239 1.23 rillig wchar : WCHAR VARNAME char_vals {
240 1.23 rillig set_wchar($2);
241 1.23 rillig }
242 1.18 blymn ;
243 1.16 blymn
244 1.16 blymn attributes : numeric
245 1.27 rillig | LPAREN expr RPAREN {
246 1.23 rillig $<string>$ = $<string>2;
247 1.23 rillig }
248 1.23 rillig | VARIABLE {
249 1.23 rillig $<string>$ = get_numeric_var($1);
250 1.23 rillig }
251 1.16 blymn ;
252 1.16 blymn
253 1.23 rillig char_vals : numeric {
254 1.23 rillig add_to_vals(data_number, $1);
255 1.23 rillig }
256 1.33 rillig | LBRACK array_elements RBRACK
257 1.23 rillig | VARIABLE {
258 1.23 rillig add_to_vals(data_var, $1);
259 1.23 rillig }
260 1.23 rillig | STRING {
261 1.23 rillig add_to_vals(data_string, $1);
262 1.23 rillig }
263 1.23 rillig | BYTE {
264 1.23 rillig add_to_vals(data_byte, $1);
265 1.23 rillig }
266 1.1 blymn ;
267 1.1 blymn
268 1.22 rillig call : CALL result fn_name args {
269 1.23 rillig do_function_call(1);
270 1.23 rillig }
271 1.1 blymn ;
272 1.1 blymn
273 1.22 rillig call2 : CALL2 result result fn_name args {
274 1.23 rillig do_function_call(2);
275 1.23 rillig }
276 1.1 blymn ;
277 1.1 blymn
278 1.22 rillig call3 : CALL3 result result result fn_name args {
279 1.23 rillig do_function_call(3);
280 1.23 rillig }
281 1.1 blymn ;
282 1.1 blymn
283 1.22 rillig call4 : CALL4 result result result result fn_name args {
284 1.23 rillig do_function_call(4);
285 1.23 rillig }
286 1.1 blymn ;
287 1.1 blymn
288 1.22 rillig check : CHECK var returns {
289 1.16 blymn ct_data_t retvar;
290 1.1 blymn var_t *vptr;
291 1.18 blymn
292 1.16 blymn if (command.returns[0].data_index == -1)
293 1.34 rillig err(1, "%s:%zu: Undefined variable in check statement",
294 1.34 rillig cur_file, line);
295 1.1 blymn
296 1.23 rillig if (command.returns[1].data_type == data_var) {
297 1.18 blymn vptr = &vars[command.returns[1].data_index];
298 1.18 blymn command.returns[1].data_type = vptr->type;
299 1.18 blymn command.returns[1].data_len = vptr->len;
300 1.18 blymn if (vptr->type != data_cchar)
301 1.18 blymn command.returns[1].data_value = vptr->value;
302 1.18 blymn else
303 1.18 blymn command.returns[1].data_value = &vptr->cchar;
304 1.18 blymn }
305 1.18 blymn
306 1.9 christos if (verbose) {
307 1.1 blymn fprintf(stderr, "Checking contents of variable %s for %s\n",
308 1.16 blymn vars[command.returns[0].data_index].name,
309 1.16 blymn enum_names[command.returns[1].data_type]);
310 1.9 christos }
311 1.1 blymn
312 1.18 blymn /*
313 1.18 blymn * Check if var and return have same data types
314 1.18 blymn */
315 1.16 blymn if (((command.returns[1].data_type == data_byte) &&
316 1.20 rillig (vars[command.returns[0].data_index].type != data_byte)))
317 1.1 blymn err(1, "Var type %s (%d) does not match return type %s (%d)",
318 1.34 rillig enum_names[vars[command.returns[0].data_index].type],
319 1.16 blymn vars[command.returns[0].data_index].type,
320 1.16 blymn enum_names[command.returns[1].data_type],
321 1.16 blymn command.returns[1].data_type);
322 1.1 blymn
323 1.16 blymn switch (command.returns[1].data_type) {
324 1.16 blymn case data_err:
325 1.16 blymn case data_ok:
326 1.18 blymn validate_type(vars[command.returns[0].data_index].type,
327 1.18 blymn &command.returns[1], 0);
328 1.1 blymn break;
329 1.1 blymn
330 1.16 blymn case data_null:
331 1.16 blymn validate_variable(0, data_string, "NULL",
332 1.16 blymn command.returns[0].data_index, 0);
333 1.1 blymn break;
334 1.1 blymn
335 1.16 blymn case data_nonnull:
336 1.16 blymn validate_variable(0, data_string, "NULL",
337 1.16 blymn command.returns[0].data_index, 1);
338 1.1 blymn break;
339 1.1 blymn
340 1.16 blymn case data_string:
341 1.16 blymn case data_number:
342 1.9 christos if (verbose) {
343 1.1 blymn fprintf(stderr, " %s == returned %s\n",
344 1.16 blymn (const char *)command.returns[1].data_value,
345 1.5 christos (const char *)
346 1.16 blymn vars[command.returns[0].data_index].value);
347 1.9 christos }
348 1.16 blymn validate_variable(0, data_string,
349 1.16 blymn command.returns[1].data_value,
350 1.16 blymn command.returns[0].data_index, 0);
351 1.1 blymn break;
352 1.1 blymn
353 1.16 blymn case data_byte:
354 1.16 blymn vptr = &vars[command.returns[0].data_index];
355 1.16 blymn retvar.data_len = vptr->len;
356 1.16 blymn retvar.data_type = vptr->type;
357 1.16 blymn retvar.data_value = vptr->value;
358 1.4 christos validate_byte(&retvar, &command.returns[1], 0);
359 1.1 blymn break;
360 1.1 blymn
361 1.18 blymn case data_cchar:
362 1.18 blymn validate_cchar(&vars[command.returns[0].data_index].cchar,
363 1.18 blymn (cchar_t *) command.returns[1].data_value, 0);
364 1.18 blymn break;
365 1.18 blymn
366 1.18 blymn case data_wchar:
367 1.18 blymn validate_wchar((wchar_t *) vars[command.returns[0].data_index].value,
368 1.18 blymn (wchar_t *) command.returns[1].data_value, 0);
369 1.18 blymn break;
370 1.18 blymn
371 1.1 blymn default:
372 1.34 rillig err(1, "%s:%zu: Malformed check statement", cur_file, line);
373 1.1 blymn break;
374 1.1 blymn }
375 1.1 blymn
376 1.1 blymn init_parse_variables(0);
377 1.23 rillig }
378 1.18 blymn ;
379 1.1 blymn
380 1.22 rillig delay : DELAY numeric {
381 1.1 blymn /* set the inter-character delay */
382 1.1 blymn if (sscanf($2, "%d", &input_delay) == 0)
383 1.34 rillig err(1, "%s:%zu: Delay specification %s must be an int",
384 1.34 rillig cur_file, line, $2);
385 1.9 christos if (verbose) {
386 1.1 blymn fprintf(stderr, "Set input delay to %d ms\n", input_delay);
387 1.9 christos }
388 1.1 blymn
389 1.1 blymn if (input_delay < DELAY_MIN)
390 1.10 blymn input_delay = DELAY_MIN;
391 1.1 blymn /*
392 1.1 blymn * Fill in the timespec structure now ready for use later.
393 1.1 blymn * The delay is specified in milliseconds so convert to timespec
394 1.1 blymn * values
395 1.1 blymn */
396 1.1 blymn delay_spec.tv_sec = input_delay / 1000;
397 1.1 blymn delay_spec.tv_nsec = (input_delay - 1000 * delay_spec.tv_sec) * 1000;
398 1.9 christos if (verbose) {
399 1.9 christos fprintf(stderr, "set delay to %jd.%jd\n",
400 1.10 blymn (intmax_t)delay_spec.tv_sec,
401 1.9 christos (intmax_t)delay_spec.tv_nsec);
402 1.9 christos }
403 1.1 blymn
404 1.1 blymn init_parse_variables(0);
405 1.1 blymn }
406 1.1 blymn ;
407 1.1 blymn
408 1.22 rillig input : INPUT STRING {
409 1.1 blymn if (input_str != NULL) {
410 1.34 rillig warnx("%s:%zu: Discarding unused input string", cur_file, line);
411 1.1 blymn free(input_str);
412 1.1 blymn }
413 1.1 blymn
414 1.1 blymn if ((input_str = malloc(strlen($2) + 1)) == NULL)
415 1.1 blymn err(2, "Cannot allocate memory for input string");
416 1.1 blymn
417 1.1 blymn strlcpy(input_str, $2, strlen($2) + 1);
418 1.1 blymn }
419 1.1 blymn ;
420 1.1 blymn
421 1.1 blymn
422 1.22 rillig noinput : NOINPUT {
423 1.1 blymn if (input_str != NULL) {
424 1.34 rillig warnx("%s:%zu: Discarding unused input string", cur_file, line);
425 1.1 blymn free(input_str);
426 1.1 blymn }
427 1.1 blymn
428 1.1 blymn no_input = true;
429 1.23 rillig }
430 1.1 blymn
431 1.28 rillig compare : COMPARE PATH {
432 1.28 rillig compare_streams($2, true);
433 1.28 rillig }
434 1.23 rillig | COMPARE FILENAME {
435 1.23 rillig compare_streams($2, true);
436 1.23 rillig }
437 1.23 rillig ;
438 1.1 blymn
439 1.28 rillig comparend : COMPAREND PATH {
440 1.28 rillig compare_streams($2, false);
441 1.28 rillig }
442 1.23 rillig | COMPAREND FILENAME {
443 1.23 rillig compare_streams($2, false);
444 1.23 rillig }
445 1.23 rillig ;
446 1.1 blymn
447 1.1 blymn
448 1.1 blymn result : returns
449 1.1 blymn | reference
450 1.1 blymn ;
451 1.1 blymn
452 1.16 blymn returns : numeric { assign_rets(data_number, $1); }
453 1.27 rillig | LPAREN expr RPAREN { assign_rets(data_number, $<string>2); }
454 1.16 blymn | STRING { assign_rets(data_string, $1); }
455 1.16 blymn | BYTE { assign_rets(data_byte, (void *) $1); }
456 1.16 blymn | ERR_RET { assign_rets(data_err, NULL); }
457 1.16 blymn | OK_RET { assign_rets(data_ok, NULL); }
458 1.16 blymn | NULL_RET { assign_rets(data_null, NULL); }
459 1.16 blymn | NON_NULL { assign_rets(data_nonnull, NULL); }
460 1.18 blymn | var
461 1.1 blymn ;
462 1.1 blymn
463 1.1 blymn var : VARNAME {
464 1.23 rillig assign_rets(data_var, $1);
465 1.23 rillig }
466 1.1 blymn ;
467 1.1 blymn
468 1.1 blymn reference : VARIABLE {
469 1.23 rillig assign_rets(data_ref, $1);
470 1.23 rillig }
471 1.31 rillig ;
472 1.1 blymn
473 1.1 blymn fn_name : VARNAME {
474 1.23 rillig if (command.function != NULL)
475 1.23 rillig free(command.function);
476 1.1 blymn
477 1.23 rillig command.function = malloc(strlen($1) + 1);
478 1.23 rillig if (command.function == NULL)
479 1.23 rillig err(1, "Could not allocate memory for function name");
480 1.23 rillig strcpy(command.function, $1);
481 1.23 rillig }
482 1.1 blymn ;
483 1.1 blymn
484 1.33 rillig array_elements : array_element
485 1.33 rillig | array_element COMMA array_elements
486 1.33 rillig ;
487 1.33 rillig
488 1.33 rillig array_element : numeric {
489 1.23 rillig $<vals>$ = add_to_vals(data_number, $1);
490 1.23 rillig }
491 1.23 rillig | VARIABLE {
492 1.23 rillig $<vals>$ = add_to_vals(data_number,
493 1.23 rillig get_numeric_var($1));
494 1.23 rillig }
495 1.23 rillig | BYTE {
496 1.23 rillig $<vals>$ = add_to_vals(data_byte, (void *) $1);
497 1.23 rillig }
498 1.23 rillig | STRING {
499 1.23 rillig $<vals>$ = add_to_vals(data_string, (void *) $1);
500 1.23 rillig }
501 1.23 rillig | numeric MULTIPLIER numeric {
502 1.23 rillig unsigned long i;
503 1.23 rillig unsigned long acount;
504 1.23 rillig
505 1.23 rillig acount = strtoul($3, NULL, 10);
506 1.23 rillig for (i = 0; i < acount; i++) {
507 1.23 rillig $<vals>$ = add_to_vals(data_number, $1);
508 1.16 blymn }
509 1.23 rillig }
510 1.23 rillig | VARIABLE MULTIPLIER numeric {
511 1.23 rillig unsigned long i, acount;
512 1.23 rillig char *val;
513 1.23 rillig
514 1.23 rillig acount = strtoul($3, NULL, 10);
515 1.23 rillig val = get_numeric_var($1);
516 1.23 rillig for (i = 0; i < acount; i++) {
517 1.23 rillig $<vals>$ = add_to_vals(data_number, val);
518 1.18 blymn }
519 1.23 rillig }
520 1.23 rillig | BYTE MULTIPLIER numeric {
521 1.23 rillig unsigned long i, acount;
522 1.23 rillig
523 1.23 rillig acount = strtoul($3, NULL, 10);
524 1.23 rillig for (i = 0; i < acount; i++) {
525 1.23 rillig $<vals>$ = add_to_vals(data_byte, (void *) $1);
526 1.16 blymn }
527 1.23 rillig }
528 1.23 rillig | STRING MULTIPLIER numeric {
529 1.23 rillig unsigned long i, acount;
530 1.23 rillig
531 1.23 rillig acount = strtoul($3, NULL, 10);
532 1.23 rillig for (i = 0; i < acount; i++) {
533 1.23 rillig $<vals>$ = add_to_vals(data_string,
534 1.23 rillig (void *) $1);
535 1.16 blymn }
536 1.23 rillig }
537 1.16 blymn ;
538 1.16 blymn
539 1.1 blymn expr : numeric
540 1.23 rillig | VARIABLE {
541 1.23 rillig $<string>$ = get_numeric_var($1);
542 1.23 rillig }
543 1.23 rillig | expr OR expr {
544 1.23 rillig $<string>$ = numeric_or($<string>1, $<string>3);
545 1.23 rillig }
546 1.1 blymn ;
547 1.1 blymn
548 1.1 blymn args : /* empty */
549 1.25 rillig | arg args
550 1.25 rillig ;
551 1.25 rillig
552 1.27 rillig arg : LPAREN expr RPAREN {
553 1.26 rillig assign_arg(data_static, $<string>2);
554 1.26 rillig }
555 1.26 rillig | numeric {
556 1.26 rillig assign_arg(data_static, $1);
557 1.26 rillig }
558 1.26 rillig | STRING {
559 1.26 rillig assign_arg(data_static, $1);
560 1.26 rillig }
561 1.26 rillig | BYTE {
562 1.26 rillig assign_arg(data_byte, $1);
563 1.26 rillig }
564 1.26 rillig | PATH {
565 1.26 rillig assign_arg(data_static, $1);
566 1.26 rillig }
567 1.26 rillig | FILENAME {
568 1.26 rillig assign_arg(data_static, $1);
569 1.26 rillig }
570 1.26 rillig | VARNAME {
571 1.26 rillig assign_arg(data_static, $1);
572 1.26 rillig }
573 1.26 rillig | VARIABLE {
574 1.26 rillig assign_arg(data_var, $1);
575 1.26 rillig }
576 1.26 rillig | NULL_RET {
577 1.26 rillig assign_arg(data_null, $1);
578 1.26 rillig }
579 1.1 blymn ;
580 1.1 blymn
581 1.1 blymn %%
582 1.1 blymn
583 1.6 christos static void
584 1.6 christos excess(const char *fname, size_t lineno, const char *func, const char *comment,
585 1.6 christos const void *data, size_t datalen)
586 1.6 christos {
587 1.6 christos size_t dstlen = datalen * 4 + 1;
588 1.6 christos char *dst = malloc(dstlen);
589 1.6 christos
590 1.6 christos if (dst == NULL)
591 1.6 christos err(1, "malloc");
592 1.6 christos
593 1.6 christos if (strnvisx(dst, dstlen, data, datalen, VIS_WHITE | VIS_OCTAL) == -1)
594 1.6 christos err(1, "strnvisx");
595 1.6 christos
596 1.34 rillig warnx("%s:%zu: [%s] Excess %zu bytes%s [%s]",
597 1.6 christos fname, lineno, func, datalen, comment, dst);
598 1.6 christos free(dst);
599 1.6 christos }
600 1.6 christos
601 1.1 blymn /*
602 1.1 blymn * Get the value of a variable, error if the variable has not been set or
603 1.1 blymn * is not a numeric type.
604 1.1 blymn */
605 1.1 blymn static char *
606 1.4 christos get_numeric_var(const char *var)
607 1.1 blymn {
608 1.4 christos int i;
609 1.1 blymn
610 1.4 christos if ((i = find_var_index(var)) < 0)
611 1.1 blymn err(1, "Variable %s is undefined", var);
612 1.1 blymn
613 1.16 blymn if (vars[i].type != data_number)
614 1.4 christos err(1, "Variable %s is not a numeric type", var);
615 1.1 blymn
616 1.4 christos return vars[i].value;
617 1.1 blymn }
618 1.1 blymn
619 1.1 blymn /*
620 1.1 blymn * Perform a bitwise OR on two numbers and return the result.
621 1.1 blymn */
622 1.1 blymn static char *
623 1.1 blymn numeric_or(char *n1, char *n2)
624 1.1 blymn {
625 1.1 blymn unsigned long i1, i2, result;
626 1.1 blymn char *ret;
627 1.1 blymn
628 1.1 blymn i1 = strtoul(n1, NULL, 10);
629 1.1 blymn i2 = strtoul(n2, NULL, 10);
630 1.1 blymn
631 1.1 blymn result = i1 | i2;
632 1.1 blymn asprintf(&ret, "%lu", result);
633 1.1 blymn
634 1.9 christos if (verbose) {
635 1.5 christos fprintf(stderr, "numeric or of 0x%lx (%s) and 0x%lx (%s)"
636 1.5 christos " results in 0x%lx (%s)\n",
637 1.5 christos i1, n1, i2, n2, result, ret);
638 1.9 christos }
639 1.1 blymn
640 1.1 blymn return ret;
641 1.1 blymn }
642 1.1 blymn
643 1.1 blymn /*
644 1.10 blymn * Sleep for the specified time, handle the sleep getting interrupted
645 1.10 blymn * by a signal.
646 1.10 blymn */
647 1.10 blymn static void
648 1.10 blymn perform_delay(struct timespec *ts)
649 1.10 blymn {
650 1.10 blymn struct timespec delay_copy, delay_remainder;
651 1.10 blymn
652 1.10 blymn delay_copy = *ts;
653 1.10 blymn while (nanosleep(&delay_copy, &delay_remainder) < 0) {
654 1.10 blymn if (errno != EINTR)
655 1.10 blymn err(2, "nanosleep returned error");
656 1.10 blymn delay_copy = delay_remainder;
657 1.10 blymn }
658 1.10 blymn }
659 1.10 blymn
660 1.10 blymn /*
661 1.16 blymn * Add to temporary vals array
662 1.16 blymn */
663 1.16 blymn static wchar_t *add_to_vals(data_enum_t argtype, void *arg)
664 1.16 blymn {
665 1.16 blymn wchar_t *retval = NULL;
666 1.16 blymn int have_malloced;
667 1.16 blymn int i;
668 1.16 blymn ct_data_t *ret;
669 1.16 blymn
670 1.16 blymn have_malloced = 0;
671 1.16 blymn
672 1.16 blymn if (nvals == 0) {
673 1.16 blymn have_malloced = 1;
674 1.16 blymn retval = malloc(sizeof(wchar_t));
675 1.16 blymn } else {
676 1.16 blymn retval = realloc(vals, (nvals + 1) * sizeof(wchar_t));
677 1.16 blymn }
678 1.16 blymn
679 1.16 blymn if (retval == NULL)
680 1.16 blymn return retval;
681 1.16 blymn
682 1.16 blymn vals = retval;
683 1.16 blymn
684 1.16 blymn switch (argtype) {
685 1.16 blymn case data_number:
686 1.16 blymn vals[nvals++] = (wchar_t) strtoul((char *) arg, NULL, 10);
687 1.16 blymn break;
688 1.16 blymn
689 1.16 blymn case data_string:
690 1.16 blymn vals[nvals++] = (wchar_t) ((char *)arg)[0];
691 1.16 blymn break;
692 1.16 blymn
693 1.16 blymn case data_byte:
694 1.16 blymn ret = (ct_data_t *) arg;
695 1.16 blymn vals[nvals++] = *((wchar_t *) ret->data_value);
696 1.16 blymn break;
697 1.16 blymn
698 1.16 blymn case data_var:
699 1.16 blymn if ((i = find_var_index((char *) arg)) < 0)
700 1.34 rillig err(1, "%s:%zu: Variable %s is undefined",
701 1.34 rillig cur_file, line, (const char *) arg);
702 1.16 blymn
703 1.16 blymn switch (vars[i].type) {
704 1.16 blymn
705 1.16 blymn case data_number:
706 1.16 blymn case data_string:
707 1.16 blymn case data_byte:
708 1.16 blymn retval = add_to_vals(vars[i].type, vars[i].value);
709 1.16 blymn break;
710 1.16 blymn
711 1.16 blymn default:
712 1.34 rillig err(1, "%s:%zu: Variable %s has invalid type for cchar",
713 1.34 rillig cur_file, line, (const char *) arg);
714 1.16 blymn break;
715 1.16 blymn
716 1.16 blymn }
717 1.16 blymn break;
718 1.16 blymn
719 1.16 blymn default:
720 1.34 rillig err(1, "%s:%zu: Internal error: Unhandled type for vals array",
721 1.34 rillig cur_file, line);
722 1.16 blymn
723 1.16 blymn /* if we get here without a value then tidy up */
724 1.16 blymn if ((nvals == 0) && (have_malloced == 1)) {
725 1.16 blymn free(retval);
726 1.16 blymn retval = vals;
727 1.16 blymn }
728 1.16 blymn break;
729 1.16 blymn
730 1.16 blymn }
731 1.16 blymn
732 1.16 blymn return retval;
733 1.16 blymn }
734 1.16 blymn
735 1.16 blymn /*
736 1.1 blymn * Assign the value given to the named variable.
737 1.1 blymn */
738 1.1 blymn static void
739 1.30 rillig set_var(data_enum_t type, const char *name, void *value)
740 1.1 blymn {
741 1.4 christos int i;
742 1.1 blymn char *number;
743 1.16 blymn ct_data_t *ret;
744 1.1 blymn
745 1.4 christos i = find_var_index(name);
746 1.4 christos if (i < 0)
747 1.4 christos i = assign_var(name);
748 1.1 blymn
749 1.4 christos vars[i].type = type;
750 1.16 blymn if ((type == data_number) || (type == data_string)) {
751 1.1 blymn number = value;
752 1.4 christos vars[i].len = strlen(number) + 1;
753 1.4 christos vars[i].value = malloc(vars[i].len + 1);
754 1.4 christos if (vars[i].value == NULL)
755 1.1 blymn err(1, "Could not malloc memory for assign string");
756 1.4 christos strcpy(vars[i].value, number);
757 1.1 blymn } else {
758 1.1 blymn /* can only be a byte value */
759 1.1 blymn ret = value;
760 1.16 blymn vars[i].len = ret->data_len;
761 1.4 christos vars[i].value = malloc(vars[i].len);
762 1.4 christos if (vars[i].value == NULL)
763 1.1 blymn err(1, "Could not malloc memory to assign byte string");
764 1.16 blymn memcpy(vars[i].value, ret->data_value, vars[i].len);
765 1.1 blymn }
766 1.1 blymn }
767 1.1 blymn
768 1.1 blymn /*
769 1.16 blymn * Form up a complex character type from the given components.
770 1.16 blymn */
771 1.16 blymn static void
772 1.16 blymn set_cchar(char *name, void *attributes)
773 1.16 blymn {
774 1.16 blymn int i;
775 1.16 blymn unsigned j;
776 1.16 blymn attr_t attribs;
777 1.16 blymn
778 1.16 blymn if (nvals >= CURSES_CCHAR_MAX)
779 1.34 rillig err(1, "%s:%zu: %s: too many characters in complex char type",
780 1.34 rillig cur_file, line, __func__);
781 1.16 blymn
782 1.16 blymn i = find_var_index(name);
783 1.16 blymn if (i < 0)
784 1.16 blymn i = assign_var(name);
785 1.16 blymn
786 1.16 blymn if (sscanf((char *) attributes, "%d", &attribs) != 1)
787 1.34 rillig err(1, "%s:%zu: %s: conversion of attributes to integer failed",
788 1.34 rillig cur_file, line, __func__);
789 1.16 blymn
790 1.16 blymn vars[i].type = data_cchar;
791 1.16 blymn vars[i].cchar.attributes = attribs;
792 1.16 blymn vars[i].cchar.elements = nvals;
793 1.18 blymn for (j = 0; j < nvals; j++)
794 1.16 blymn vars[i].cchar.vals[j] = vals[j];
795 1.16 blymn
796 1.16 blymn nvals = 0;
797 1.16 blymn vals = NULL;
798 1.16 blymn
799 1.16 blymn }
800 1.16 blymn
801 1.16 blymn /*
802 1.18 blymn * Form up a wide character string type from the given components.
803 1.18 blymn */
804 1.18 blymn static void
805 1.18 blymn set_wchar(char *name)
806 1.18 blymn {
807 1.18 blymn int i;
808 1.18 blymn unsigned j;
809 1.18 blymn wchar_t *wcval;
810 1.18 blymn
811 1.18 blymn i = find_var_index(name);
812 1.18 blymn if (i < 0)
813 1.18 blymn i = assign_var(name);
814 1.18 blymn
815 1.18 blymn vars[i].type = data_wchar;
816 1.18 blymn vars[i].len = (nvals+1) * sizeof(wchar_t);
817 1.18 blymn vars[i].value = malloc(vars[i].len);
818 1.18 blymn if (vars[i].value == NULL)
819 1.18 blymn err(1, "Could not malloc memory to assign wchar string");
820 1.18 blymn wcval = vars[i].value;
821 1.18 blymn for(j = 0; j < nvals; j++)
822 1.18 blymn wcval[j] = vals[j];
823 1.18 blymn wcval[nvals] = L'\0';
824 1.18 blymn nvals = 0;
825 1.18 blymn vals = NULL;
826 1.18 blymn
827 1.18 blymn }
828 1.18 blymn
829 1.18 blymn /*
830 1.1 blymn * Add a new variable to the vars array, the value will be assigned later,
831 1.1 blymn * when a test function call returns.
832 1.1 blymn */
833 1.1 blymn static int
834 1.30 rillig assign_var(const char *varname)
835 1.1 blymn {
836 1.1 blymn var_t *temp;
837 1.1 blymn char *name;
838 1.1 blymn
839 1.1 blymn if ((name = malloc(strlen(varname) + 1)) == NULL)
840 1.1 blymn err(1, "Alloc of varname failed");
841 1.1 blymn
842 1.9 christos if ((temp = realloc(vars, sizeof(*temp) * (nvars + 1))) == NULL) {
843 1.1 blymn free(name);
844 1.1 blymn err(1, "Realloc of vars array failed");
845 1.1 blymn }
846 1.1 blymn
847 1.1 blymn strcpy(name, varname);
848 1.1 blymn vars = temp;
849 1.1 blymn vars[nvars].name = name;
850 1.1 blymn vars[nvars].len = 0;
851 1.1 blymn vars[nvars].value = NULL;
852 1.1 blymn nvars++;
853 1.1 blymn
854 1.1 blymn return (nvars - 1);
855 1.1 blymn }
856 1.1 blymn
857 1.1 blymn /*
858 1.1 blymn * Allocate and assign a new argument of the given type.
859 1.1 blymn */
860 1.1 blymn static void
861 1.16 blymn assign_arg(data_enum_t arg_type, void *arg)
862 1.1 blymn {
863 1.1 blymn args_t *temp, cur;
864 1.4 christos char *str = arg;
865 1.16 blymn ct_data_t *ret;
866 1.1 blymn
867 1.9 christos if (verbose) {
868 1.16 blymn fprintf(stderr, "function is >%s<, adding arg >%s< type %s (%d)\n",
869 1.16 blymn command.function, str, enum_names[arg_type], arg_type);
870 1.9 christos }
871 1.1 blymn
872 1.1 blymn cur.arg_type = arg_type;
873 1.16 blymn if (cur.arg_type == data_var) {
874 1.1 blymn cur.var_index = find_var_index(arg);
875 1.1 blymn if (cur.var_index < 0)
876 1.34 rillig err(1, "%s:%zu: Invalid variable %s",
877 1.34 rillig cur_file, line, str);
878 1.16 blymn } else if (cur.arg_type == data_byte) {
879 1.2 blymn ret = arg;
880 1.16 blymn cur.arg_len = ret->data_len;
881 1.2 blymn cur.arg_string = malloc(cur.arg_len);
882 1.2 blymn if (cur.arg_string == NULL)
883 1.2 blymn err(1, "Could not malloc memory for arg bytes");
884 1.16 blymn memcpy(cur.arg_string, ret->data_value, cur.arg_len);
885 1.16 blymn } else if (cur.arg_type == data_null) {
886 1.2 blymn cur.arg_len = 0;
887 1.2 blymn cur.arg_string = NULL;
888 1.16 blymn } else {
889 1.2 blymn cur.arg_len = strlen(str);
890 1.2 blymn cur.arg_string = malloc(cur.arg_len + 1);
891 1.2 blymn if (cur.arg_string == NULL)
892 1.2 blymn err(1, "Could not malloc memory for arg string");
893 1.2 blymn strcpy(cur.arg_string, arg);
894 1.1 blymn }
895 1.1 blymn
896 1.9 christos temp = realloc(command.args, sizeof(*temp) * (command.nargs + 1));
897 1.1 blymn if (temp == NULL)
898 1.1 blymn err(1, "Failed to reallocate args");
899 1.1 blymn command.args = temp;
900 1.1 blymn memcpy(&command.args[command.nargs], &cur, sizeof(args_t));
901 1.1 blymn command.nargs++;
902 1.1 blymn }
903 1.1 blymn
904 1.1 blymn /*
905 1.1 blymn * Allocate and assign a new return.
906 1.1 blymn */
907 1.1 blymn static void
908 1.16 blymn assign_rets(data_enum_t ret_type, void *ret)
909 1.1 blymn {
910 1.16 blymn ct_data_t *temp, cur;
911 1.1 blymn char *ret_str;
912 1.16 blymn ct_data_t *ret_ret;
913 1.1 blymn
914 1.16 blymn cur.data_type = ret_type;
915 1.16 blymn if (ret_type != data_var) {
916 1.16 blymn if ((ret_type == data_number) || (ret_type == data_string)) {
917 1.1 blymn ret_str = ret;
918 1.16 blymn cur.data_len = strlen(ret_str) + 1;
919 1.16 blymn cur.data_value = malloc(cur.data_len + 1);
920 1.16 blymn if (cur.data_value == NULL)
921 1.1 blymn err(1,
922 1.1 blymn "Could not malloc memory for arg string");
923 1.16 blymn strcpy(cur.data_value, ret_str);
924 1.16 blymn } else if (ret_type == data_byte) {
925 1.1 blymn ret_ret = ret;
926 1.16 blymn cur.data_len = ret_ret->data_len;
927 1.16 blymn cur.data_value = malloc(cur.data_len);
928 1.16 blymn if (cur.data_value == NULL)
929 1.1 blymn err(1,
930 1.1 blymn "Could not malloc memory for byte string");
931 1.16 blymn memcpy(cur.data_value, ret_ret->data_value,
932 1.16 blymn cur.data_len);
933 1.16 blymn } else if (ret_type == data_ref) {
934 1.16 blymn if ((cur.data_index = find_var_index(ret)) < 0)
935 1.1 blymn err(1, "Undefined variable reference");
936 1.1 blymn }
937 1.1 blymn } else {
938 1.16 blymn cur.data_index = find_var_index(ret);
939 1.16 blymn if (cur.data_index < 0)
940 1.16 blymn cur.data_index = assign_var(ret);
941 1.1 blymn }
942 1.1 blymn
943 1.9 christos temp = realloc(command.returns, sizeof(*temp) * (command.nrets + 1));
944 1.1 blymn if (temp == NULL)
945 1.1 blymn err(1, "Failed to reallocate returns");
946 1.1 blymn command.returns = temp;
947 1.16 blymn memcpy(&command.returns[command.nrets], &cur, sizeof(ct_data_t));
948 1.1 blymn command.nrets++;
949 1.1 blymn }
950 1.1 blymn
951 1.1 blymn /*
952 1.4 christos * Find the given variable name in the var array and return the i
953 1.1 blymn * return -1 if var is not found.
954 1.1 blymn */
955 1.1 blymn static int
956 1.4 christos find_var_index(const char *var_name)
957 1.1 blymn {
958 1.4 christos int result;
959 1.4 christos size_t i;
960 1.1 blymn
961 1.1 blymn result = -1;
962 1.1 blymn
963 1.1 blymn for (i = 0; i < nvars; i++) {
964 1.1 blymn if (strcmp(var_name, vars[i].name) == 0) {
965 1.1 blymn result = i;
966 1.1 blymn break;
967 1.1 blymn }
968 1.1 blymn }
969 1.1 blymn
970 1.1 blymn return result;
971 1.1 blymn }
972 1.1 blymn
973 1.1 blymn /*
974 1.1 blymn * Check the given function name in the given table of names, return 1 if
975 1.1 blymn * there is a match.
976 1.1 blymn */
977 1.1 blymn static int check_function_table(char *function, const char *table[],
978 1.1 blymn int nfunctions)
979 1.1 blymn {
980 1.1 blymn int i;
981 1.1 blymn
982 1.1 blymn for (i = 0; i < nfunctions; i++) {
983 1.1 blymn if ((strlen(function) == strlen(table[i])) &&
984 1.1 blymn (strcmp(function, table[i]) == 0))
985 1.1 blymn return 1;
986 1.1 blymn }
987 1.1 blymn
988 1.1 blymn return 0;
989 1.1 blymn }
990 1.1 blymn
991 1.1 blymn /*
992 1.1 blymn * Compare the output from the slave against the given file and report
993 1.1 blymn * any differences.
994 1.1 blymn */
995 1.1 blymn static void
996 1.30 rillig compare_streams(const char *filename, bool discard)
997 1.1 blymn {
998 1.5 christos char check_file[PATH_MAX], drain[100], ref, data;
999 1.1 blymn struct pollfd fds[2];
1000 1.5 christos int nfd, check_fd;
1001 1.5 christos ssize_t result;
1002 1.9 christos size_t offs;
1003 1.1 blymn
1004 1.1 blymn /*
1005 1.1 blymn * Don't prepend check path iff check file has an absolute
1006 1.1 blymn * path.
1007 1.1 blymn */
1008 1.1 blymn if (filename[0] != '/') {
1009 1.1 blymn if (strlcpy(check_file, check_path, sizeof(check_file))
1010 1.1 blymn >= sizeof(check_file))
1011 1.1 blymn err(2, "CHECK_PATH too long");
1012 1.1 blymn
1013 1.1 blymn if (strlcat(check_file, "/", sizeof(check_file))
1014 1.1 blymn >= sizeof(check_file))
1015 1.1 blymn err(2, "Could not append / to check file path");
1016 1.1 blymn } else {
1017 1.1 blymn check_file[0] = '\0';
1018 1.1 blymn }
1019 1.1 blymn
1020 1.1 blymn if (strlcat(check_file, filename, sizeof(check_file))
1021 1.1 blymn >= sizeof(check_file))
1022 1.1 blymn err(2, "Path to check file path overflowed");
1023 1.1 blymn
1024 1.18 blymn int create_check_file = 0;
1025 1.18 blymn
1026 1.19 roy if (check_file_flag == (GEN_CHECK_FILE | FORCE_GEN))
1027 1.18 blymn create_check_file = 1;
1028 1.23 rillig else if ((check_fd = open(check_file, O_RDONLY, 0)) < 0) {
1029 1.18 blymn if (check_file_flag & GEN_CHECK_FILE)
1030 1.18 blymn create_check_file = 1;
1031 1.18 blymn else
1032 1.34 rillig err(2, "%s:%zu: failed to open file %s",
1033 1.34 rillig cur_file, line, check_file);
1034 1.18 blymn }
1035 1.18 blymn
1036 1.23 rillig if (create_check_file) {
1037 1.23 rillig check_fd = open(check_file, O_WRONLY | O_CREAT, 0644);
1038 1.23 rillig if (check_fd < 0) {
1039 1.34 rillig err(2, "%s:%zu: failed to create file %s",
1040 1.34 rillig cur_file, line, check_file);
1041 1.23 rillig }
1042 1.18 blymn }
1043 1.1 blymn
1044 1.1 blymn fds[0].fd = check_fd;
1045 1.18 blymn fds[0].events = create_check_file ? POLLOUT:POLLIN;
1046 1.1 blymn fds[1].fd = master;
1047 1.1 blymn fds[1].events = POLLIN;
1048 1.1 blymn
1049 1.1 blymn nfd = 2;
1050 1.1 blymn /*
1051 1.1 blymn * if we have saved output then only check for data in the
1052 1.1 blymn * reference file since the slave data may already be drained.
1053 1.1 blymn */
1054 1.1 blymn if (saved_output.count > 0)
1055 1.1 blymn nfd = 1;
1056 1.1 blymn
1057 1.9 christos offs = 0;
1058 1.9 christos while (poll(fds, nfd, 500) == nfd) {
1059 1.18 blymn /* Read from check file if doing comparison */
1060 1.23 rillig if (!create_check_file) {
1061 1.18 blymn if (fds[0].revents & POLLIN) {
1062 1.18 blymn if ((result = read(check_fd, &ref, 1)) < 1) {
1063 1.18 blymn if (result != 0) {
1064 1.23 rillig err(2, "Bad read on file %s",
1065 1.23 rillig check_file);
1066 1.18 blymn } else {
1067 1.18 blymn break;
1068 1.18 blymn }
1069 1.9 christos }
1070 1.1 blymn }
1071 1.1 blymn }
1072 1.1 blymn
1073 1.1 blymn if (saved_output.count > 0) {
1074 1.1 blymn data = saved_output.data[saved_output.readp];
1075 1.1 blymn saved_output.count--;
1076 1.1 blymn saved_output.readp++;
1077 1.1 blymn /* run out of saved data, switch to file */
1078 1.1 blymn if (saved_output.count == 0)
1079 1.1 blymn nfd = 2;
1080 1.1 blymn } else {
1081 1.18 blymn int revent = (create_check_file == 1) ? POLLOUT:POLLIN;
1082 1.18 blymn if (fds[0].revents & revent) {
1083 1.9 christos if (read(master, &data, 1) < 1)
1084 1.9 christos err(2, "Bad read on slave pty");
1085 1.9 christos } else
1086 1.9 christos continue;
1087 1.1 blymn }
1088 1.1 blymn
1089 1.23 rillig if (create_check_file) {
1090 1.29 rillig if ((result = write(check_fd, &data, 1)) < 1)
1091 1.29 rillig err(2, "Bad write on file %s", check_file);
1092 1.29 rillig ref = data;
1093 1.18 blymn }
1094 1.18 blymn
1095 1.1 blymn if (verbose) {
1096 1.18 blymn if (create_check_file)
1097 1.18 blymn fprintf(stderr, "Saving reference byte 0x%x (%c)"
1098 1.18 blymn " against slave byte 0x%x (%c)\n",
1099 1.18 blymn ref, (ref >= ' ') ? ref : '-',
1100 1.18 blymn data, (data >= ' ' )? data : '-');
1101 1.18 blymn else
1102 1.18 blymn fprintf(stderr, "Comparing reference byte 0x%x (%c)"
1103 1.18 blymn " against slave byte 0x%x (%c)\n",
1104 1.18 blymn ref, (ref >= ' ') ? ref : '-',
1105 1.18 blymn data, (data >= ' ' )? data : '-');
1106 1.1 blymn }
1107 1.1 blymn
1108 1.18 blymn if (!create_check_file && ref != data) {
1109 1.34 rillig errx(2, "%s:%zu: refresh data from slave does "
1110 1.34 rillig "not match expected from file %s offset %zu "
1111 1.34 rillig "[reference 0x%02x (%c) != slave 0x%02x (%c)]",
1112 1.9 christos cur_file, line, check_file, offs,
1113 1.9 christos ref, (ref >= ' ') ? ref : '-',
1114 1.9 christos data, (data >= ' ') ? data : '-');
1115 1.1 blymn }
1116 1.1 blymn
1117 1.9 christos offs++;
1118 1.1 blymn }
1119 1.1 blymn
1120 1.18 blymn /*
1121 1.18 blymn * if creating a check file, there shouldn't be
1122 1.18 blymn * anymore saved output
1123 1.18 blymn */
1124 1.23 rillig if (saved_output.count > 0) {
1125 1.18 blymn if (create_check_file)
1126 1.18 blymn err(2, "Slave output not flushed correctly");
1127 1.18 blymn else
1128 1.18 blymn excess(cur_file, line, __func__, " from slave",
1129 1.18 blymn &saved_output.data[saved_output.readp], saved_output.count);
1130 1.18 blymn }
1131 1.1 blymn
1132 1.1 blymn /* discard any excess saved output if required */
1133 1.1 blymn if (discard) {
1134 1.1 blymn saved_output.count = 0;
1135 1.1 blymn saved_output.readp = 0;
1136 1.1 blymn }
1137 1.1 blymn
1138 1.18 blymn if (!create_check_file && (result = poll(fds, 2, 0)) != 0) {
1139 1.1 blymn if (result == -1)
1140 1.1 blymn err(2, "poll of file descriptors failed");
1141 1.1 blymn
1142 1.5 christos if ((fds[1].revents & POLLIN) == POLLIN) {
1143 1.1 blymn save_slave_output(true);
1144 1.9 christos } else if ((fds[0].revents & POLLIN) == POLLIN) {
1145 1.1 blymn /*
1146 1.1 blymn * handle excess in file if it exists. Poll
1147 1.1 blymn * says there is data until EOF is read.
1148 1.1 blymn * Check next read is EOF, if it is not then
1149 1.1 blymn * the file really has more data than the
1150 1.1 blymn * slave produced so flag this as a warning.
1151 1.1 blymn */
1152 1.5 christos result = read(check_fd, drain, sizeof(drain));
1153 1.1 blymn if (result == -1)
1154 1.3 christos err(1, "read of data file failed");
1155 1.1 blymn
1156 1.1 blymn if (result > 0) {
1157 1.6 christos excess(check_file, 0, __func__, "", drain,
1158 1.6 christos result);
1159 1.1 blymn }
1160 1.1 blymn }
1161 1.1 blymn }
1162 1.1 blymn
1163 1.1 blymn close(check_fd);
1164 1.1 blymn }
1165 1.1 blymn
1166 1.1 blymn /*
1167 1.1 blymn * Pass a function call and arguments to the slave and wait for the
1168 1.1 blymn * results. The variable nresults determines how many returns we expect
1169 1.1 blymn * back from the slave. These results will be validated against the
1170 1.1 blymn * expected returns or assigned to variables.
1171 1.1 blymn */
1172 1.1 blymn static void
1173 1.4 christos do_function_call(size_t nresults)
1174 1.1 blymn {
1175 1.1 blymn #define MAX_RESULTS 4
1176 1.1 blymn char *p;
1177 1.4 christos int do_input;
1178 1.4 christos size_t i;
1179 1.1 blymn struct pollfd fds[3];
1180 1.16 blymn ct_data_t response[MAX_RESULTS], returns_count;
1181 1.1 blymn assert(nresults <= MAX_RESULTS);
1182 1.1 blymn
1183 1.1 blymn do_input = check_function_table(command.function, input_functions,
1184 1.5 christos ninput_functions);
1185 1.1 blymn
1186 1.1 blymn write_func_and_args();
1187 1.1 blymn
1188 1.1 blymn /*
1189 1.1 blymn * We should get the number of returns back here, grab it before
1190 1.1 blymn * doing input otherwise it will confuse the input poll
1191 1.1 blymn */
1192 1.1 blymn read_cmd_pipe(&returns_count);
1193 1.16 blymn if (returns_count.data_type != data_count)
1194 1.16 blymn err(2, "expected return type of data_count but received %s",
1195 1.16 blymn enum_names[returns_count.data_type]);
1196 1.1 blymn
1197 1.10 blymn perform_delay(&delay_post_call); /* let slave catch up */
1198 1.10 blymn
1199 1.9 christos if (verbose) {
1200 1.4 christos fprintf(stderr, "Expect %zu results from slave, slave "
1201 1.16 blymn "reported %zu\n", nresults, returns_count.data_len);
1202 1.9 christos }
1203 1.1 blymn
1204 1.1 blymn if ((no_input == false) && (do_input == 1)) {
1205 1.9 christos if (verbose) {
1206 1.1 blymn fprintf(stderr, "doing input with inputstr >%s<\n",
1207 1.9 christos input_str);
1208 1.9 christos }
1209 1.1 blymn
1210 1.5 christos if (input_str == NULL)
1211 1.34 rillig errx(2, "%s:%zu: Call to input function "
1212 1.5 christos "but no input defined", cur_file, line);
1213 1.1 blymn
1214 1.1 blymn fds[0].fd = slvpipe[READ_PIPE];
1215 1.1 blymn fds[0].events = POLLIN;
1216 1.9 christos fds[1].fd = master;
1217 1.9 christos fds[1].events = POLLOUT;
1218 1.1 blymn p = input_str;
1219 1.1 blymn save_slave_output(false);
1220 1.1 blymn while(*p != '\0') {
1221 1.10 blymn perform_delay(&delay_spec);
1222 1.10 blymn
1223 1.9 christos if (poll(fds, 2, 0) < 0)
1224 1.9 christos err(2, "poll failed");
1225 1.9 christos if (fds[0].revents & POLLIN) {
1226 1.34 rillig warnx("%s:%zu: Slave function "
1227 1.9 christos "returned before end of input string",
1228 1.9 christos cur_file, line);
1229 1.9 christos break;
1230 1.9 christos }
1231 1.9 christos if ((fds[1].revents & POLLOUT) == 0)
1232 1.9 christos continue;
1233 1.1 blymn if (verbose) {
1234 1.1 blymn fprintf(stderr, "Writing char >%c< to slave\n",
1235 1.9 christos *p);
1236 1.1 blymn }
1237 1.9 christos if (write(master, p, 1) != 1) {
1238 1.34 rillig warn("%s:%zu: Slave function write error",
1239 1.5 christos cur_file, line);
1240 1.1 blymn break;
1241 1.1 blymn }
1242 1.9 christos p++;
1243 1.9 christos
1244 1.1 blymn }
1245 1.9 christos save_slave_output(false);
1246 1.1 blymn
1247 1.1 blymn if (verbose) {
1248 1.1 blymn fprintf(stderr, "Input done.\n");
1249 1.1 blymn }
1250 1.1 blymn
1251 1.1 blymn /* done with the input string, free the resources */
1252 1.1 blymn free(input_str);
1253 1.1 blymn input_str = NULL;
1254 1.1 blymn }
1255 1.1 blymn
1256 1.11 blymn if (verbose) {
1257 1.1 blymn fds[0].fd = slvpipe[READ_PIPE];
1258 1.1 blymn fds[0].events = POLLIN;
1259 1.1 blymn
1260 1.1 blymn fds[1].fd = slvpipe[WRITE_PIPE];
1261 1.1 blymn fds[1].events = POLLOUT;
1262 1.1 blymn
1263 1.1 blymn fds[2].fd = master;
1264 1.1 blymn fds[2].events = POLLIN | POLLOUT;
1265 1.1 blymn
1266 1.1 blymn i = poll(&fds[0], 3, 1000);
1267 1.4 christos fprintf(stderr, "Poll returned %zu\n", i);
1268 1.1 blymn for (i = 0; i < 3; i++) {
1269 1.4 christos fprintf(stderr, "revents for fd[%zu] = 0x%x\n",
1270 1.1 blymn i, fds[i].revents);
1271 1.1 blymn }
1272 1.1 blymn }
1273 1.1 blymn
1274 1.1 blymn /* drain any trailing output */
1275 1.1 blymn save_slave_output(false);
1276 1.1 blymn
1277 1.16 blymn for (i = 0; i < returns_count.data_len; i++) {
1278 1.1 blymn read_cmd_pipe(&response[i]);
1279 1.1 blymn }
1280 1.1 blymn
1281 1.1 blymn /*
1282 1.1 blymn * Check for a slave error in the first return slot, if the
1283 1.1 blymn * slave errored then we may not have the number of returns we
1284 1.1 blymn * expect but in this case we should report the slave error
1285 1.1 blymn * instead of a return count mismatch.
1286 1.1 blymn */
1287 1.16 blymn if ((returns_count.data_len > 0) &&
1288 1.16 blymn (response[0].data_type == data_slave_error))
1289 1.4 christos err(2, "Slave returned error: %s",
1290 1.16 blymn (const char *)response[0].data_value);
1291 1.1 blymn
1292 1.16 blymn if (returns_count.data_len != nresults)
1293 1.4 christos err(2, "Incorrect number of returns from slave, expected %zu "
1294 1.16 blymn "but received %zu", nresults, returns_count.data_len);
1295 1.1 blymn
1296 1.1 blymn if (verbose) {
1297 1.1 blymn for (i = 0; i < nresults; i++) {
1298 1.16 blymn if ((response[i].data_type != data_byte) &&
1299 1.16 blymn (response[i].data_type != data_err) &&
1300 1.16 blymn (response[i].data_type != data_ok))
1301 1.1 blymn fprintf(stderr,
1302 1.1 blymn "received response >%s< "
1303 1.4 christos "expected",
1304 1.16 blymn (const char *)response[i].data_value);
1305 1.1 blymn else
1306 1.1 blymn fprintf(stderr, "received");
1307 1.1 blymn
1308 1.16 blymn fprintf(stderr, " data_type %s\n",
1309 1.16 blymn enum_names[command.returns[i].data_type]);
1310 1.1 blymn }
1311 1.1 blymn }
1312 1.1 blymn
1313 1.1 blymn for (i = 0; i < nresults; i++) {
1314 1.16 blymn if (command.returns[i].data_type != data_var) {
1315 1.1 blymn validate(i, &response[i]);
1316 1.1 blymn } else {
1317 1.16 blymn vars[command.returns[i].data_index].len =
1318 1.16 blymn response[i].data_len;
1319 1.18 blymn
1320 1.18 blymn if (response[i].data_type == data_cchar) {
1321 1.18 blymn vars[command.returns[i].data_index].cchar =
1322 1.18 blymn *((cchar_t *)response[i].data_value);
1323 1.18 blymn } else {
1324 1.18 blymn vars[command.returns[i].data_index].value =
1325 1.18 blymn response[i].data_value;
1326 1.18 blymn }
1327 1.18 blymn
1328 1.16 blymn vars[command.returns[i].data_index].type =
1329 1.16 blymn response[i].data_type;
1330 1.1 blymn }
1331 1.1 blymn }
1332 1.10 blymn
1333 1.10 blymn if (verbose && (saved_output.count > 0))
1334 1.6 christos excess(cur_file, line, __func__, " from slave",
1335 1.6 christos &saved_output.data[saved_output.readp], saved_output.count);
1336 1.1 blymn
1337 1.1 blymn init_parse_variables(0);
1338 1.1 blymn }
1339 1.1 blymn
1340 1.1 blymn /*
1341 1.1 blymn * Write the function and command arguments to the command pipe.
1342 1.1 blymn */
1343 1.1 blymn static void
1344 1.4 christos write_func_and_args(void)
1345 1.1 blymn {
1346 1.1 blymn int i;
1347 1.1 blymn
1348 1.9 christos if (verbose) {
1349 1.1 blymn fprintf(stderr, "calling function >%s<\n", command.function);
1350 1.9 christos }
1351 1.1 blymn
1352 1.1 blymn write_cmd_pipe(command.function);
1353 1.1 blymn for (i = 0; i < command.nargs; i++) {
1354 1.16 blymn if (command.args[i].arg_type == data_var)
1355 1.1 blymn write_cmd_pipe_args(command.args[i].arg_type,
1356 1.1 blymn &vars[command.args[i].var_index]);
1357 1.1 blymn else
1358 1.1 blymn write_cmd_pipe_args(command.args[i].arg_type,
1359 1.1 blymn &command.args[i]);
1360 1.1 blymn }
1361 1.1 blymn
1362 1.1 blymn write_cmd_pipe(NULL); /* signal end of arguments */
1363 1.1 blymn }
1364 1.1 blymn
1365 1.1 blymn /*
1366 1.1 blymn * Initialise the command structure - if initial is non-zero then just set
1367 1.1 blymn * everything to sane values otherwise free any memory that was allocated
1368 1.1 blymn * when building the structure.
1369 1.1 blymn */
1370 1.1 blymn void
1371 1.1 blymn init_parse_variables(int initial)
1372 1.1 blymn {
1373 1.1 blymn int i, result;
1374 1.1 blymn struct pollfd slave_pty;
1375 1.1 blymn
1376 1.1 blymn if (initial == 0) {
1377 1.1 blymn free(command.function);
1378 1.1 blymn for (i = 0; i < command.nrets; i++) {
1379 1.16 blymn if (command.returns[i].data_type == data_number)
1380 1.16 blymn free(command.returns[i].data_value);
1381 1.1 blymn }
1382 1.1 blymn free(command.returns);
1383 1.1 blymn
1384 1.1 blymn for (i = 0; i < command.nargs; i++) {
1385 1.16 blymn if (command.args[i].arg_type != data_var)
1386 1.1 blymn free(command.args[i].arg_string);
1387 1.1 blymn }
1388 1.1 blymn free(command.args);
1389 1.1 blymn } else {
1390 1.1 blymn line = 0;
1391 1.1 blymn input_delay = 0;
1392 1.1 blymn vars = NULL;
1393 1.1 blymn nvars = 0;
1394 1.1 blymn input_str = NULL;
1395 1.1 blymn saved_output.allocated = 0;
1396 1.1 blymn saved_output.count = 0;
1397 1.1 blymn saved_output.readp = 0;
1398 1.1 blymn saved_output.data = NULL;
1399 1.1 blymn }
1400 1.1 blymn
1401 1.1 blymn no_input = false;
1402 1.1 blymn command.function = NULL;
1403 1.1 blymn command.nargs = 0;
1404 1.1 blymn command.args = NULL;
1405 1.1 blymn command.nrets = 0;
1406 1.1 blymn command.returns = NULL;
1407 1.1 blymn
1408 1.1 blymn /*
1409 1.1 blymn * Check the slave pty for stray output from the slave, at this
1410 1.1 blymn * point we should not see any data as it should have been
1411 1.1 blymn * consumed by the test functions. If we see data then we have
1412 1.1 blymn * either a bug or are not handling an output generating function
1413 1.1 blymn * correctly.
1414 1.1 blymn */
1415 1.1 blymn slave_pty.fd = master;
1416 1.1 blymn slave_pty.events = POLLIN;
1417 1.1 blymn result = poll(&slave_pty, 1, 0);
1418 1.1 blymn
1419 1.1 blymn if (result < 0)
1420 1.1 blymn err(2, "Poll of slave pty failed");
1421 1.1 blymn else if (result > 0)
1422 1.34 rillig warnx("%s:%zu: Unexpected data from slave", cur_file, line);
1423 1.1 blymn }
1424 1.1 blymn
1425 1.1 blymn /*
1426 1.1 blymn * Validate the response against the expected return. The variable
1427 1.4 christos * i is the i into the rets array in command.
1428 1.1 blymn */
1429 1.1 blymn static void
1430 1.4 christos validate(int i, void *data)
1431 1.1 blymn {
1432 1.1 blymn char *response;
1433 1.16 blymn ct_data_t *byte_response;
1434 1.1 blymn
1435 1.1 blymn byte_response = data;
1436 1.16 blymn if ((command.returns[i].data_type != data_byte) &&
1437 1.16 blymn (command.returns[i].data_type != data_err) &&
1438 1.16 blymn (command.returns[i].data_type != data_ok)) {
1439 1.16 blymn if ((byte_response->data_type == data_byte) ||
1440 1.16 blymn (byte_response->data_type == data_err) ||
1441 1.16 blymn (byte_response->data_type == data_ok))
1442 1.34 rillig err(1,
1443 1.34 rillig "%s:%zu: %s: expecting type %s, received type %s",
1444 1.34 rillig cur_file, line, __func__,
1445 1.16 blymn enum_names[command.returns[i].data_type],
1446 1.34 rillig enum_names[byte_response->data_type]);
1447 1.11 blymn
1448 1.16 blymn response = byte_response->data_value;
1449 1.11 blymn }
1450 1.1 blymn
1451 1.16 blymn switch (command.returns[i].data_type) {
1452 1.16 blymn case data_err:
1453 1.16 blymn validate_type(data_err, byte_response, 0);
1454 1.1 blymn break;
1455 1.1 blymn
1456 1.16 blymn case data_ok:
1457 1.16 blymn validate_type(data_ok, byte_response, 0);
1458 1.1 blymn break;
1459 1.1 blymn
1460 1.16 blymn case data_null:
1461 1.1 blymn validate_return("NULL", response, 0);
1462 1.1 blymn break;
1463 1.1 blymn
1464 1.16 blymn case data_nonnull:
1465 1.1 blymn validate_return("NULL", response, 1);
1466 1.1 blymn break;
1467 1.1 blymn
1468 1.16 blymn case data_string:
1469 1.16 blymn case data_number:
1470 1.16 blymn validate_return(command.returns[i].data_value,
1471 1.1 blymn response, 0);
1472 1.1 blymn break;
1473 1.1 blymn
1474 1.16 blymn case data_ref:
1475 1.4 christos validate_reference(i, response);
1476 1.1 blymn break;
1477 1.1 blymn
1478 1.16 blymn case data_byte:
1479 1.4 christos validate_byte(&command.returns[i], byte_response, 0);
1480 1.1 blymn break;
1481 1.1 blymn
1482 1.1 blymn default:
1483 1.34 rillig err(1, "%s:%zu: Malformed statement", cur_file, line);
1484 1.1 blymn break;
1485 1.1 blymn }
1486 1.1 blymn }
1487 1.1 blymn
1488 1.1 blymn /*
1489 1.1 blymn * Validate the return against the contents of a variable.
1490 1.1 blymn */
1491 1.1 blymn static void
1492 1.4 christos validate_reference(int i, void *data)
1493 1.1 blymn {
1494 1.1 blymn char *response;
1495 1.16 blymn ct_data_t *byte_response;
1496 1.1 blymn var_t *varp;
1497 1.1 blymn
1498 1.16 blymn varp = &vars[command.returns[i].data_index];
1499 1.1 blymn
1500 1.1 blymn byte_response = data;
1501 1.16 blymn if (command.returns[i].data_type != data_byte)
1502 1.1 blymn response = data;
1503 1.1 blymn
1504 1.10 blymn if (verbose) {
1505 1.1 blymn fprintf(stderr,
1506 1.12 christos "%s: return type of %s, value %s \n", __func__,
1507 1.16 blymn enum_names[varp->type],
1508 1.18 blymn (varp->type != data_cchar && varp->type != data_wchar)
1509 1.18 blymn ? (const char *)varp->value : "-");
1510 1.9 christos }
1511 1.1 blymn
1512 1.1 blymn switch (varp->type) {
1513 1.16 blymn case data_string:
1514 1.16 blymn case data_number:
1515 1.1 blymn validate_return(varp->value, response, 0);
1516 1.1 blymn break;
1517 1.1 blymn
1518 1.16 blymn case data_byte:
1519 1.1 blymn validate_byte(varp->value, byte_response, 0);
1520 1.1 blymn break;
1521 1.1 blymn
1522 1.18 blymn case data_cchar:
1523 1.18 blymn validate_cchar(&(varp->cchar), (cchar_t *) response, 0);
1524 1.18 blymn break;
1525 1.18 blymn
1526 1.18 blymn case data_wchar:
1527 1.18 blymn validate_wchar((wchar_t *) varp->value, (wchar_t *) response, 0);
1528 1.18 blymn break;
1529 1.18 blymn
1530 1.1 blymn default:
1531 1.34 rillig err(1, "%s:%zu: Invalid return type for reference",
1532 1.34 rillig cur_file, line);
1533 1.1 blymn break;
1534 1.1 blymn }
1535 1.1 blymn }
1536 1.1 blymn
1537 1.1 blymn /*
1538 1.1 blymn * Validate the return type against the expected type, throw an error
1539 1.1 blymn * if they don't match.
1540 1.1 blymn */
1541 1.1 blymn static void
1542 1.16 blymn validate_type(data_enum_t expected, ct_data_t *value, int check)
1543 1.1 blymn {
1544 1.16 blymn if (((check == 0) && (expected != value->data_type)) ||
1545 1.16 blymn ((check == 1) && (expected == value->data_type)))
1546 1.34 rillig err(1, "%s:%zu: Validate expected type %s %s %s",
1547 1.34 rillig cur_file, line,
1548 1.16 blymn enum_names[expected],
1549 1.1 blymn (check == 0)? "matching" : "not matching",
1550 1.34 rillig enum_names[value->data_type]);
1551 1.1 blymn
1552 1.9 christos if (verbose) {
1553 1.34 rillig fprintf(stderr, "%s:%zu: Validated expected type %s %s %s\n",
1554 1.34 rillig cur_file, line,
1555 1.16 blymn enum_names[expected],
1556 1.9 christos (check == 0)? "matching" : "not matching",
1557 1.34 rillig enum_names[value->data_type]);
1558 1.9 christos }
1559 1.1 blymn }
1560 1.1 blymn
1561 1.1 blymn /*
1562 1.1 blymn * Validate the return value against the expected value, throw an error
1563 1.1 blymn * if they don't match.
1564 1.1 blymn */
1565 1.1 blymn static void
1566 1.4 christos validate_return(const char *expected, const char *value, int check)
1567 1.1 blymn {
1568 1.1 blymn if (((check == 0) && strcmp(expected, value) != 0) ||
1569 1.1 blymn ((check == 1) && strcmp(expected, value) == 0))
1570 1.34 rillig errx(1, "%s:%zu: Validate expected >%s< %s >%s<",
1571 1.34 rillig cur_file, line,
1572 1.1 blymn expected,
1573 1.34 rillig (check == 0)? "matching" : "not matching",
1574 1.34 rillig value);
1575 1.9 christos if (verbose) {
1576 1.34 rillig fprintf(stderr,
1577 1.34 rillig "%s:%zu: Validated expected value >%s< %s >%s<\n",
1578 1.34 rillig cur_file, line,
1579 1.34 rillig expected,
1580 1.9 christos (check == 0)? "matches" : "does not match",
1581 1.34 rillig value);
1582 1.9 christos }
1583 1.1 blymn }
1584 1.1 blymn
1585 1.1 blymn /*
1586 1.1 blymn * Validate the return value against the expected value, throw an error
1587 1.1 blymn * if they don't match expectations.
1588 1.1 blymn */
1589 1.1 blymn static void
1590 1.16 blymn validate_byte(ct_data_t *expected, ct_data_t *value, int check)
1591 1.1 blymn {
1592 1.11 blymn char *ch;
1593 1.11 blymn size_t i;
1594 1.11 blymn
1595 1.11 blymn if (verbose) {
1596 1.16 blymn ch = value->data_value;
1597 1.11 blymn fprintf(stderr, "checking returned byte stream: ");
1598 1.16 blymn for (i = 0; i < value->data_len; i++)
1599 1.11 blymn fprintf(stderr, "%s0x%x", (i != 0)? ", " : "", ch[i]);
1600 1.11 blymn fprintf(stderr, "\n");
1601 1.11 blymn
1602 1.11 blymn fprintf(stderr, "%s byte stream: ",
1603 1.11 blymn (check == 0)? "matches" : "does not match");
1604 1.16 blymn ch = (char *) expected->data_value;
1605 1.16 blymn for (i = 0; i < expected->data_len; i++)
1606 1.11 blymn fprintf(stderr, "%s0x%x", (i != 0)? ", " : "", ch[i]);
1607 1.11 blymn fprintf(stderr, "\n");
1608 1.11 blymn }
1609 1.11 blymn
1610 1.1 blymn /*
1611 1.1 blymn * No chance of a match if lengths differ...
1612 1.1 blymn */
1613 1.16 blymn if ((check == 0) && (expected->data_len != value->data_len))
1614 1.34 rillig errx(1,
1615 1.34 rillig "Byte validation failed, length mismatch, "
1616 1.34 rillig "expected %zu, received %zu",
1617 1.34 rillig expected->data_len, value->data_len);
1618 1.1 blymn
1619 1.1 blymn /*
1620 1.1 blymn * If check is 0 then we want to throw an error IFF the byte streams
1621 1.1 blymn * do not match, if check is 1 then throw an error if the byte
1622 1.1 blymn * streams match.
1623 1.1 blymn */
1624 1.16 blymn if (((check == 0) && memcmp(expected->data_value, value->data_value,
1625 1.16 blymn value->data_len) != 0) ||
1626 1.16 blymn ((check == 1) && (expected->data_len == value->data_len) &&
1627 1.16 blymn memcmp(expected->data_value, value->data_value,
1628 1.16 blymn value->data_len) == 0))
1629 1.34 rillig errx(1, "%s:%zu: Validate expected %s byte stream",
1630 1.34 rillig cur_file, line,
1631 1.34 rillig (check == 0)? "matching" : "not matching");
1632 1.9 christos if (verbose) {
1633 1.34 rillig fprintf(stderr, "%s:%zu: Validated expected %s byte stream\n",
1634 1.34 rillig cur_file, line,
1635 1.34 rillig (check == 0)? "matching" : "not matching");
1636 1.9 christos }
1637 1.1 blymn }
1638 1.1 blymn
1639 1.1 blymn /*
1640 1.18 blymn * Validate the return cchar against the expected cchar, throw an error
1641 1.18 blymn * if they don't match expectations.
1642 1.18 blymn */
1643 1.18 blymn static void
1644 1.18 blymn validate_cchar(cchar_t *expected, cchar_t *value, int check)
1645 1.18 blymn {
1646 1.18 blymn unsigned j;
1647 1.18 blymn
1648 1.18 blymn /*
1649 1.18 blymn * No chance of a match if elements count differ...
1650 1.18 blymn */
1651 1.23 rillig if ((expected->elements != value->elements)) {
1652 1.18 blymn if (check == 0)
1653 1.34 rillig errx(1,
1654 1.34 rillig "cchar validation failed, elements count mismatch, "
1655 1.34 rillig "expected %d, received %d",
1656 1.34 rillig expected->elements, value->elements);
1657 1.18 blymn else {
1658 1.18 blymn if (verbose)
1659 1.34 rillig fprintf(stderr,
1660 1.34 rillig "%s:%zu: Validated expected %s cchar",
1661 1.34 rillig cur_file, line, "not matching");
1662 1.18 blymn return;
1663 1.18 blymn }
1664 1.18 blymn }
1665 1.18 blymn
1666 1.18 blymn /*
1667 1.18 blymn * No chance of a match if attributes differ...
1668 1.18 blymn */
1669 1.18 blymn
1670 1.18 blymn if ((expected->attributes & WA_ATTRIBUTES) !=
1671 1.23 rillig (value->attributes & WA_ATTRIBUTES )) {
1672 1.18 blymn if (check == 0)
1673 1.34 rillig errx(1,
1674 1.34 rillig "cchar validation failed, attributes mismatch, "
1675 1.34 rillig "expected 0x%x, received 0x%x",
1676 1.34 rillig expected->attributes & WA_ATTRIBUTES,
1677 1.34 rillig value->attributes & WA_ATTRIBUTES);
1678 1.18 blymn else {
1679 1.18 blymn if (verbose)
1680 1.34 rillig fprintf(stderr,
1681 1.34 rillig "%s:%zu: Validated expected %s cchar\n",
1682 1.34 rillig cur_file, line, "not matching");
1683 1.18 blymn return;
1684 1.18 blymn }
1685 1.18 blymn }
1686 1.18 blymn
1687 1.18 blymn /*
1688 1.18 blymn * If check is 0 then we want to throw an error IFF the vals
1689 1.18 blymn * do not match, if check is 1 then throw an error if the vals
1690 1.18 blymn * streams match.
1691 1.18 blymn */
1692 1.18 blymn for(j = 0; j < expected->elements; j++) {
1693 1.18 blymn if (expected->vals[j] != value->vals[j]) {
1694 1.18 blymn if (check == 0)
1695 1.34 rillig errx(1,
1696 1.34 rillig "cchar validation failed, vals mismatch, "
1697 1.34 rillig "expected 0x%x, received 0x%x",
1698 1.34 rillig expected->vals[j], value->vals[j]);
1699 1.18 blymn else {
1700 1.18 blymn if (verbose)
1701 1.34 rillig fprintf(stderr,
1702 1.34 rillig "%s:%zu: Validated expected %s "
1703 1.34 rillig "cchar\n",
1704 1.34 rillig cur_file, line, "not matching");
1705 1.18 blymn return;
1706 1.18 blymn }
1707 1.18 blymn }
1708 1.18 blymn }
1709 1.18 blymn
1710 1.18 blymn if (verbose) {
1711 1.34 rillig fprintf(stderr,
1712 1.34 rillig "%s:%zu: Validated expected %s cchar\n",
1713 1.34 rillig cur_file, line, (check == 0)? "matching" : "not matching");
1714 1.18 blymn }
1715 1.18 blymn }
1716 1.18 blymn
1717 1.18 blymn /*
1718 1.18 blymn * Validate the return wchar string against the expected wchar, throw an
1719 1.18 blymn * error if they don't match expectations.
1720 1.18 blymn */
1721 1.18 blymn static void
1722 1.18 blymn validate_wchar(wchar_t *expected, wchar_t *value, int check)
1723 1.18 blymn {
1724 1.18 blymn unsigned j;
1725 1.18 blymn
1726 1.18 blymn unsigned len1 = 0;
1727 1.18 blymn unsigned len2 = 0;
1728 1.18 blymn wchar_t *p;
1729 1.18 blymn
1730 1.18 blymn p = expected;
1731 1.18 blymn while(*p++ != L'\0')
1732 1.18 blymn len1++;
1733 1.18 blymn
1734 1.18 blymn p = value;
1735 1.18 blymn while(*p++ != L'\0')
1736 1.18 blymn len2++;
1737 1.18 blymn
1738 1.18 blymn /*
1739 1.18 blymn * No chance of a match if length differ...
1740 1.18 blymn */
1741 1.23 rillig if (len1 != len2) {
1742 1.18 blymn if (check == 0)
1743 1.34 rillig errx(1,
1744 1.34 rillig "wchar string validation failed, length mismatch, "
1745 1.34 rillig "expected %d, received %d",
1746 1.34 rillig len1, len2);
1747 1.18 blymn else {
1748 1.18 blymn if (verbose)
1749 1.34 rillig fprintf(stderr,
1750 1.34 rillig "%s:%zu: Validated expected %s wchar\n",
1751 1.34 rillig cur_file, line, "not matching");
1752 1.18 blymn return;
1753 1.18 blymn }
1754 1.18 blymn }
1755 1.18 blymn
1756 1.18 blymn /*
1757 1.18 blymn * If check is 0 then we want to throw an error IFF the vals
1758 1.18 blymn * do not match, if check is 1 then throw an error if the vals
1759 1.18 blymn * streams match.
1760 1.18 blymn */
1761 1.18 blymn for(j = 0; j < len1; j++) {
1762 1.18 blymn if (expected[j] != value[j]) {
1763 1.18 blymn if (check == 0)
1764 1.18 blymn errx(1, "wchar validation failed at index %d, expected %d,"
1765 1.18 blymn "received %d", j, expected[j], value[j]);
1766 1.18 blymn else {
1767 1.18 blymn if (verbose)
1768 1.34 rillig fprintf(stderr,
1769 1.34 rillig "%s:%zu: Validated expected %s wchar\n",
1770 1.34 rillig cur_file, line, "not matching");
1771 1.18 blymn return;
1772 1.18 blymn }
1773 1.18 blymn }
1774 1.18 blymn }
1775 1.18 blymn
1776 1.18 blymn if (verbose) {
1777 1.34 rillig fprintf(stderr,
1778 1.34 rillig "%s:%zu: Validated expected %s wchar\n",
1779 1.34 rillig cur_file, line,
1780 1.34 rillig (check == 0)? "matching" : "not matching");
1781 1.18 blymn }
1782 1.18 blymn }
1783 1.18 blymn
1784 1.18 blymn /*
1785 1.4 christos * Validate the variable at i against the expected value, throw an
1786 1.1 blymn * error if they don't match, if check is non-zero then the match is
1787 1.1 blymn * negated.
1788 1.1 blymn */
1789 1.1 blymn static void
1790 1.16 blymn validate_variable(int ret, data_enum_t type, const void *value, int i,
1791 1.4 christos int check)
1792 1.1 blymn {
1793 1.16 blymn ct_data_t *retval;
1794 1.1 blymn var_t *varptr;
1795 1.1 blymn
1796 1.7 joerg retval = &command.returns[ret];
1797 1.16 blymn varptr = &vars[command.returns[ret].data_index];
1798 1.1 blymn
1799 1.1 blymn if (varptr->value == NULL)
1800 1.4 christos err(1, "Variable %s has no value assigned to it", varptr->name);
1801 1.1 blymn
1802 1.1 blymn
1803 1.1 blymn if (varptr->type != type)
1804 1.4 christos err(1, "Variable %s is not the expected type", varptr->name);
1805 1.1 blymn
1806 1.16 blymn if (type != data_byte) {
1807 1.1 blymn if ((((check == 0) && strcmp(value, varptr->value) != 0))
1808 1.1 blymn || ((check == 1) && strcmp(value, varptr->value) == 0))
1809 1.34 rillig err(1, "%s:%zu: Variable %s contains %s instead of %s"
1810 1.34 rillig " value %s",
1811 1.34 rillig cur_file, line,
1812 1.4 christos varptr->name, (const char *)varptr->value,
1813 1.4 christos (check == 0)? "expected" : "not matching",
1814 1.34 rillig (const char *)value);
1815 1.9 christos if (verbose) {
1816 1.34 rillig fprintf(stderr,
1817 1.34 rillig "%s:%zu: Variable %s contains %s value %s\n",
1818 1.34 rillig cur_file, line,
1819 1.9 christos varptr->name,
1820 1.9 christos (check == 0)? "expected" : "not matching",
1821 1.34 rillig (const char *)varptr->value);
1822 1.9 christos }
1823 1.1 blymn } else {
1824 1.16 blymn if ((check == 0) && (retval->data_len != varptr->len))
1825 1.1 blymn err(1, "Byte validation failed, length mismatch");
1826 1.1 blymn
1827 1.1 blymn /*
1828 1.1 blymn * If check is 0 then we want to throw an error IFF
1829 1.1 blymn * the byte streams do not match, if check is 1 then
1830 1.1 blymn * throw an error if the byte streams match.
1831 1.1 blymn */
1832 1.16 blymn if (((check == 0) && memcmp(retval->data_value, varptr->value,
1833 1.1 blymn varptr->len) != 0) ||
1834 1.16 blymn ((check == 1) && (retval->data_len == varptr->len) &&
1835 1.16 blymn memcmp(retval->data_value, varptr->value,
1836 1.1 blymn varptr->len) == 0))
1837 1.34 rillig err(1, "%s:%zu: Validate expected %s byte stream",
1838 1.34 rillig cur_file, line,
1839 1.34 rillig (check == 0)? "matching" : "not matching");
1840 1.9 christos if (verbose) {
1841 1.34 rillig fprintf(stderr,
1842 1.34 rillig "%s:%zu: Validated expected %s byte stream\n",
1843 1.34 rillig cur_file, line,
1844 1.34 rillig (check == 0)? "matching" : "not matching");
1845 1.9 christos }
1846 1.1 blymn }
1847 1.1 blymn }
1848 1.1 blymn
1849 1.1 blymn /*
1850 1.1 blymn * Write a string to the command pipe - we feed the number of bytes coming
1851 1.1 blymn * down first to allow storage allocation and then follow up with the data.
1852 1.1 blymn * If cmd is NULL then feed a -1 down the pipe to say the end of the args.
1853 1.1 blymn */
1854 1.1 blymn static void
1855 1.1 blymn write_cmd_pipe(char *cmd)
1856 1.1 blymn {
1857 1.1 blymn args_t arg;
1858 1.1 blymn size_t len;
1859 1.1 blymn
1860 1.1 blymn if (cmd == NULL)
1861 1.1 blymn len = 0;
1862 1.1 blymn else
1863 1.1 blymn len = strlen(cmd);
1864 1.1 blymn
1865 1.16 blymn arg.arg_type = data_static;
1866 1.1 blymn arg.arg_len = len;
1867 1.1 blymn arg.arg_string = cmd;
1868 1.1 blymn write_cmd_pipe_args(arg.arg_type, &arg);
1869 1.1 blymn
1870 1.1 blymn }
1871 1.1 blymn
1872 1.1 blymn static void
1873 1.16 blymn write_cmd_pipe_args(data_enum_t type, void *data)
1874 1.1 blymn {
1875 1.1 blymn var_t *var_data;
1876 1.1 blymn args_t *arg_data;
1877 1.1 blymn int len, send_type;
1878 1.1 blymn void *cmd;
1879 1.1 blymn
1880 1.1 blymn arg_data = data;
1881 1.2 blymn switch (type) {
1882 1.16 blymn case data_var:
1883 1.2 blymn var_data = data;
1884 1.2 blymn len = var_data->len;
1885 1.2 blymn cmd = var_data->value;
1886 1.16 blymn
1887 1.16 blymn switch (var_data->type) {
1888 1.16 blymn case data_byte:
1889 1.16 blymn send_type = data_byte;
1890 1.16 blymn break;
1891 1.16 blymn
1892 1.16 blymn case data_cchar:
1893 1.16 blymn send_type = data_cchar;
1894 1.16 blymn cmd = (void *) &var_data->cchar;
1895 1.16 blymn len = sizeof(cchar_t);
1896 1.16 blymn break;
1897 1.16 blymn
1898 1.18 blymn case data_wchar:
1899 1.18 blymn send_type = data_wchar;
1900 1.18 blymn break;
1901 1.18 blymn
1902 1.16 blymn default:
1903 1.16 blymn send_type = data_string;
1904 1.16 blymn break;
1905 1.16 blymn }
1906 1.2 blymn break;
1907 1.2 blymn
1908 1.16 blymn case data_null:
1909 1.16 blymn send_type = data_null;
1910 1.2 blymn len = 0;
1911 1.2 blymn break;
1912 1.2 blymn
1913 1.2 blymn default:
1914 1.1 blymn if ((arg_data->arg_len == 0) && (arg_data->arg_string == NULL))
1915 1.1 blymn len = -1;
1916 1.1 blymn else
1917 1.1 blymn len = arg_data->arg_len;
1918 1.1 blymn cmd = arg_data->arg_string;
1919 1.16 blymn if (type == data_byte)
1920 1.16 blymn send_type = data_byte;
1921 1.1 blymn else
1922 1.16 blymn send_type = data_string;
1923 1.1 blymn }
1924 1.1 blymn
1925 1.9 christos if (verbose) {
1926 1.1 blymn fprintf(stderr, "Writing type %s to command pipe\n",
1927 1.16 blymn enum_names[send_type]);
1928 1.9 christos }
1929 1.1 blymn
1930 1.4 christos if (write(cmdpipe[WRITE_PIPE], &send_type, sizeof(int)) < 0)
1931 1.4 christos err(1, "command pipe write for type failed");
1932 1.1 blymn
1933 1.9 christos if (verbose) {
1934 1.16 blymn if (send_type == data_cchar)
1935 1.16 blymn fprintf(stderr,
1936 1.16 blymn "Writing cchar to command pipe\n");
1937 1.18 blymn else if (send_type == data_wchar)
1938 1.18 blymn fprintf(stderr,
1939 1.18 blymn "Writing wchar(%d sized) to command pipe\n", len);
1940 1.16 blymn else
1941 1.16 blymn fprintf(stderr,
1942 1.16 blymn "Writing length %d to command pipe\n", len);
1943 1.9 christos }
1944 1.1 blymn
1945 1.4 christos if (write(cmdpipe[WRITE_PIPE], &len, sizeof(int)) < 0)
1946 1.4 christos err(1, "command pipe write for length failed");
1947 1.1 blymn
1948 1.1 blymn if (len > 0) {
1949 1.9 christos if (verbose) {
1950 1.1 blymn fprintf(stderr, "Writing data >%s< to command pipe\n",
1951 1.9 christos (const char *)cmd);
1952 1.9 christos }
1953 1.4 christos if (write(cmdpipe[WRITE_PIPE], cmd, len) < 0)
1954 1.4 christos err(1, "command pipe write of data failed");
1955 1.1 blymn }
1956 1.1 blymn }
1957 1.1 blymn
1958 1.1 blymn /*
1959 1.1 blymn * Read a response from the command pipe, first we will receive the
1960 1.1 blymn * length of the response then the actual data.
1961 1.1 blymn */
1962 1.1 blymn static void
1963 1.16 blymn read_cmd_pipe(ct_data_t *response)
1964 1.1 blymn {
1965 1.1 blymn int len, type;
1966 1.4 christos struct pollfd rfd[2];
1967 1.1 blymn char *str;
1968 1.1 blymn
1969 1.1 blymn /*
1970 1.1 blymn * Check if there is data to read - just in case slave has died, we
1971 1.1 blymn * don't want to block on the read and just hang. We also check
1972 1.1 blymn * output from the slave because the slave may be blocked waiting
1973 1.1 blymn * for a flush on its stdout.
1974 1.1 blymn */
1975 1.4 christos rfd[0].fd = slvpipe[READ_PIPE];
1976 1.4 christos rfd[0].events = POLLIN;
1977 1.4 christos rfd[1].fd = master;
1978 1.4 christos rfd[1].events = POLLIN;
1979 1.1 blymn
1980 1.1 blymn do {
1981 1.5 christos if (poll(rfd, 2, 4000) == 0)
1982 1.34 rillig errx(2, "%s:%zu: Command pipe read timeout",
1983 1.5 christos cur_file, line);
1984 1.1 blymn
1985 1.4 christos if ((rfd[1].revents & POLLIN) == POLLIN) {
1986 1.9 christos if (verbose) {
1987 1.1 blymn fprintf(stderr,
1988 1.9 christos "draining output from slave\n");
1989 1.9 christos }
1990 1.1 blymn save_slave_output(false);
1991 1.1 blymn }
1992 1.1 blymn }
1993 1.4 christos while((rfd[1].revents & POLLIN) == POLLIN);
1994 1.1 blymn
1995 1.4 christos if (read(slvpipe[READ_PIPE], &type, sizeof(int)) < 0)
1996 1.4 christos err(1, "command pipe read for type failed");
1997 1.16 blymn response->data_type = type;
1998 1.1 blymn
1999 1.16 blymn if ((type != data_ok) && (type != data_err) && (type != data_count)) {
2000 1.4 christos if (read(slvpipe[READ_PIPE], &len, sizeof(int)) < 0)
2001 1.4 christos err(1, "command pipe read for length failed");
2002 1.16 blymn response->data_len = len;
2003 1.1 blymn
2004 1.9 christos if (verbose) {
2005 1.1 blymn fprintf(stderr,
2006 1.9 christos "Reading %d bytes from command pipe\n", len);
2007 1.9 christos }
2008 1.1 blymn
2009 1.16 blymn if ((response->data_value = malloc(len + 1)) == NULL)
2010 1.1 blymn err(1, "Failed to alloc memory for cmd pipe read");
2011 1.1 blymn
2012 1.16 blymn if (read(slvpipe[READ_PIPE], response->data_value, len) < 0)
2013 1.4 christos err(1, "command pipe read of data failed");
2014 1.1 blymn
2015 1.16 blymn if (response->data_type != data_byte) {
2016 1.16 blymn str = response->data_value;
2017 1.1 blymn str[len] = '\0';
2018 1.1 blymn
2019 1.9 christos if (verbose) {
2020 1.1 blymn fprintf(stderr, "Read data >%s< from pipe\n",
2021 1.16 blymn (const char *)response->data_value);
2022 1.9 christos }
2023 1.1 blymn }
2024 1.1 blymn } else {
2025 1.16 blymn response->data_value = NULL;
2026 1.16 blymn if (type == data_count) {
2027 1.4 christos if (read(slvpipe[READ_PIPE], &len, sizeof(int)) < 0)
2028 1.4 christos err(1, "command pipe read for number of "
2029 1.1 blymn "returns failed");
2030 1.16 blymn response->data_len = len;
2031 1.1 blymn }
2032 1.1 blymn
2033 1.9 christos if (verbose) {
2034 1.1 blymn fprintf(stderr, "Read type %s from pipe\n",
2035 1.16 blymn enum_names[type]);
2036 1.9 christos }
2037 1.1 blymn }
2038 1.1 blymn }
2039 1.1 blymn
2040 1.1 blymn /*
2041 1.1 blymn * Check for writes from the slave on the pty, save the output into a
2042 1.1 blymn * buffer for later checking if discard is false.
2043 1.1 blymn */
2044 1.1 blymn #define MAX_DRAIN 256
2045 1.1 blymn
2046 1.1 blymn static void
2047 1.1 blymn save_slave_output(bool discard)
2048 1.1 blymn {
2049 1.1 blymn char *new_data, drain[MAX_DRAIN];
2050 1.1 blymn size_t to_allocate;
2051 1.4 christos ssize_t result;
2052 1.4 christos size_t i;
2053 1.1 blymn
2054 1.1 blymn result = 0;
2055 1.9 christos for (;;) {
2056 1.1 blymn if (result == -1)
2057 1.1 blymn err(2, "poll of slave pty failed");
2058 1.1 blymn result = MAX_DRAIN;
2059 1.9 christos if ((result = read(master, drain, result)) < 0) {
2060 1.1 blymn if (errno == EAGAIN)
2061 1.1 blymn break;
2062 1.1 blymn else
2063 1.1 blymn err(2, "draining slave pty failed");
2064 1.1 blymn }
2065 1.9 christos if (result == 0)
2066 1.9 christos abort();
2067 1.1 blymn
2068 1.5 christos if (!discard) {
2069 1.4 christos if ((size_t)result >
2070 1.1 blymn (saved_output.allocated - saved_output.count)) {
2071 1.1 blymn to_allocate = 1024 * ((result / 1024) + 1);
2072 1.1 blymn
2073 1.1 blymn if ((new_data = realloc(saved_output.data,
2074 1.1 blymn saved_output.allocated + to_allocate))
2075 1.1 blymn == NULL)
2076 1.1 blymn err(2, "Realloc of saved_output failed");
2077 1.1 blymn saved_output.data = new_data;
2078 1.1 blymn saved_output.allocated += to_allocate;
2079 1.1 blymn }
2080 1.1 blymn
2081 1.1 blymn if (verbose) {
2082 1.34 rillig fprintf(stderr,
2083 1.34 rillig "count = %zu, allocated = %zu\n",
2084 1.34 rillig saved_output.count, saved_output.allocated);
2085 1.4 christos for (i = 0; i < (size_t)result; i++) {
2086 1.1 blymn fprintf(stderr, "Saving slave output "
2087 1.9 christos "at %zu: 0x%x (%c)\n",
2088 1.9 christos saved_output.count + i, drain[i],
2089 1.5 christos (drain[i] >= ' ')? drain[i] : '-');
2090 1.1 blymn }
2091 1.1 blymn }
2092 1.1 blymn
2093 1.1 blymn memcpy(&saved_output.data[saved_output.count], drain,
2094 1.1 blymn result);
2095 1.1 blymn saved_output.count += result;
2096 1.1 blymn
2097 1.1 blymn if (verbose) {
2098 1.34 rillig fprintf(stderr,
2099 1.34 rillig "count = %zu, allocated = %zu\n",
2100 1.34 rillig saved_output.count, saved_output.allocated);
2101 1.1 blymn }
2102 1.1 blymn } else {
2103 1.1 blymn if (verbose) {
2104 1.9 christos for (i = 0; i < (size_t)result; i++) {
2105 1.1 blymn fprintf(stderr, "Discarding slave "
2106 1.5 christos "output 0x%x (%c)\n",
2107 1.5 christos drain[i],
2108 1.5 christos (drain[i] >= ' ')? drain[i] : '-');
2109 1.1 blymn }
2110 1.1 blymn }
2111 1.1 blymn }
2112 1.1 blymn }
2113 1.1 blymn }
2114 1.1 blymn
2115 1.1 blymn static void
2116 1.1 blymn yyerror(const char *msg)
2117 1.1 blymn {
2118 1.34 rillig errx(1, "%s:%zu: %s", cur_file, line, msg);
2119 1.1 blymn }
2120