testlang_parse.y revision 1.8 1 1.1 blymn %{
2 1.8 christos /* $NetBSD: testlang_parse.y,v 1.8 2011/08/18 02:44:45 christos 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 1.1 blymn #include <errno.h>
34 1.1 blymn #include <fcntl.h>
35 1.3 christos #include <err.h>
36 1.3 christos #include <unistd.h>
37 1.1 blymn #include <poll.h>
38 1.1 blymn #include <stdbool.h>
39 1.1 blymn #include <stdio.h>
40 1.1 blymn #include <string.h>
41 1.1 blymn #include <sys/syslimits.h>
42 1.1 blymn #include <time.h>
43 1.6 christos #include <vis.h>
44 1.1 blymn #include "returns.h"
45 1.1 blymn
46 1.1 blymn #define YYDEBUG 1
47 1.1 blymn
48 1.1 blymn extern int verbose;
49 1.1 blymn extern int cmdpipe[2];
50 1.1 blymn extern int slvpipe[2];
51 1.1 blymn extern int master;
52 1.1 blymn extern struct pollfd readfd;
53 1.1 blymn extern char *check_path;
54 1.1 blymn extern char *cur_file; /* from director.c */
55 1.1 blymn
56 1.3 christos int yylex(void);
57 1.3 christos
58 1.1 blymn size_t line;
59 1.1 blymn
60 1.1 blymn static int input_delay;
61 1.1 blymn
62 1.1 blymn /* time delay between inputs chars - default to 0.1ms minimum to prevent
63 1.1 blymn * problems with input tests
64 1.1 blymn */
65 1.1 blymn #define DELAY_MIN 0.1
66 1.1 blymn static struct timespec delay_spec = {0, 1000 * DELAY_MIN};
67 1.1 blymn static char *input_str; /* string to feed in as input */
68 1.1 blymn static bool no_input; /* don't need more input */
69 1.1 blymn
70 1.1 blymn #define READ_PIPE 0
71 1.1 blymn #define WRITE_PIPE 1
72 1.1 blymn
73 1.4 christos const char *returns_enum_names[] = {
74 1.1 blymn "unused", "numeric", "string", "byte", "ERR", "OK", "NULL", "not NULL",
75 1.1 blymn "variable", "reference", "returns count", "slave error"
76 1.1 blymn };
77 1.1 blymn
78 1.1 blymn typedef enum {
79 1.1 blymn arg_static,
80 1.1 blymn arg_byte,
81 1.2 blymn arg_var,
82 1.2 blymn arg_null
83 1.1 blymn } args_state_t;
84 1.1 blymn
85 1.4 christos static const char *args_enum_names[] = {
86 1.2 blymn "static", "byte", "var", "NULL"
87 1.1 blymn };
88 1.1 blymn
89 1.1 blymn typedef struct {
90 1.1 blymn args_state_t arg_type;
91 1.1 blymn size_t arg_len;
92 1.1 blymn char *arg_string;
93 1.1 blymn int var_index;
94 1.1 blymn } args_t;
95 1.1 blymn
96 1.1 blymn typedef struct {
97 1.1 blymn char *function;
98 1.1 blymn int nrets; /* number of returns */
99 1.1 blymn returns_t *returns; /* array of expected returns */
100 1.1 blymn int nargs; /* number of arguments */
101 1.1 blymn args_t *args; /* arguments for the call */
102 1.1 blymn } cmd_line_t;
103 1.1 blymn
104 1.1 blymn static cmd_line_t command;
105 1.1 blymn
106 1.1 blymn typedef struct {
107 1.1 blymn char *name;
108 1.1 blymn size_t len;
109 1.1 blymn returns_enum_t type;
110 1.1 blymn void *value;
111 1.1 blymn } var_t;
112 1.1 blymn
113 1.1 blymn static size_t nvars; /* Number of declared variables */
114 1.1 blymn static var_t *vars; /* Variables defined during the test. */
115 1.1 blymn
116 1.1 blymn static int check_function_table(char *, const char *[], int);
117 1.4 christos static int find_var_index(const char *);
118 1.1 blymn static void assign_arg(args_state_t, void *);
119 1.1 blymn static int assign_var(char *);
120 1.1 blymn void init_parse_variables(int);
121 1.1 blymn static void validate(int, void *);
122 1.4 christos static void validate_return(const char *, const char *, int);
123 1.4 christos static void validate_variable(int, returns_enum_t, const void *, int, int);
124 1.1 blymn static void validate_byte(returns_t *, returns_t *, int);
125 1.1 blymn static void write_cmd_pipe(char *);
126 1.1 blymn static void write_cmd_pipe_args(args_state_t, void *);
127 1.1 blymn static void read_cmd_pipe(returns_t *);
128 1.4 christos static void write_func_and_args(void);
129 1.1 blymn static void compare_streams(char *, bool);
130 1.4 christos static void do_function_call(size_t);
131 1.1 blymn static void save_slave_output(bool);
132 1.1 blymn static void validate_type(returns_enum_t, returns_t *, int);
133 1.1 blymn static void set_var(returns_enum_t, char *, void *);
134 1.1 blymn static void validate_reference(int, void *);
135 1.1 blymn static char *numeric_or(char *, char *);
136 1.4 christos static char *get_numeric_var(const char *);
137 1.1 blymn
138 1.1 blymn static const char *input_functions[] = {
139 1.1 blymn "inch", "getch", "getnstr", "getstr", "innstr", "instr", "mvgetnstr",
140 1.1 blymn "mvgetstr", "mvinchstr", "mvinchnstr", "mvgetnstr", "mvgetstr",
141 1.1 blymn "mvinchstr", "mvinchnstr", "winch", "wgetch", "wgetnstr", "wgetstr",
142 1.1 blymn "winchnstr", "winchstr", "winnstr", "winstr"
143 1.1 blymn };
144 1.1 blymn
145 1.1 blymn static const unsigned ninput_functions =
146 1.1 blymn sizeof(input_functions) / sizeof(char *);
147 1.1 blymn
148 1.1 blymn saved_data_t saved_output;
149 1.1 blymn
150 1.1 blymn %}
151 1.1 blymn
152 1.1 blymn %union {
153 1.1 blymn char *string;
154 1.1 blymn returns_t *retval;
155 1.1 blymn }
156 1.1 blymn
157 1.1 blymn %token <string> PATH
158 1.1 blymn %token <string> STRING
159 1.1 blymn %token <retval> BYTE
160 1.1 blymn %token <string> VARNAME
161 1.1 blymn %token <string> FILENAME
162 1.1 blymn %token <string> VARIABLE
163 1.1 blymn %token <string> REFERENCE
164 1.1 blymn %token <string> NULL_RET
165 1.1 blymn %token <string> NON_NULL
166 1.1 blymn %token <string> ERR_RET
167 1.1 blymn %token <string> OK_RET
168 1.1 blymn %token <string> numeric
169 1.1 blymn %token <string> DELAY
170 1.1 blymn %token <string> INPUT
171 1.1 blymn %token <string> COMPARE
172 1.1 blymn %token <string> COMPAREND
173 1.1 blymn %token <string> ASSIGN
174 1.1 blymn %token EOL CALL CHECK NOINPUT OR LHB RHB
175 1.1 blymn %token CALL2 CALL3 CALL4 DRAIN
176 1.1 blymn
177 1.1 blymn %nonassoc OR
178 1.1 blymn
179 1.1 blymn %%
180 1.1 blymn
181 1.1 blymn statement : /* empty */
182 1.1 blymn | assign statement
183 1.1 blymn | call statement
184 1.1 blymn | call2 statement
185 1.1 blymn | call3 statement
186 1.1 blymn | call4 statement
187 1.1 blymn | check statement
188 1.1 blymn | delay statement
189 1.1 blymn | input statement
190 1.1 blymn | noinput statement
191 1.1 blymn | compare statement
192 1.1 blymn | comparend statement
193 1.1 blymn | eol statement
194 1.1 blymn ;
195 1.1 blymn
196 1.1 blymn assign : ASSIGN VARNAME numeric {set_var(ret_number, $2, $3);} eol
197 1.1 blymn | ASSIGN VARNAME LHB expr RHB {set_var(ret_number, $2, $<string>4);} eol
198 1.1 blymn | ASSIGN VARNAME STRING {set_var(ret_string, $2, $3);} eol
199 1.1 blymn | ASSIGN VARNAME BYTE {set_var(ret_byte, $2, $3);} eol
200 1.1 blymn ;
201 1.1 blymn
202 1.1 blymn call : CALL result fn_name args eol {
203 1.1 blymn do_function_call(1);
204 1.1 blymn }
205 1.1 blymn ;
206 1.1 blymn
207 1.1 blymn call2 : CALL2 result result fn_name args eol {
208 1.1 blymn do_function_call(2);
209 1.1 blymn }
210 1.1 blymn ;
211 1.1 blymn
212 1.1 blymn call3 : CALL3 result result result fn_name args eol {
213 1.1 blymn do_function_call(3);
214 1.1 blymn }
215 1.1 blymn ;
216 1.1 blymn
217 1.1 blymn call4 : CALL4 result result result result fn_name args eol {
218 1.1 blymn do_function_call(4);
219 1.1 blymn }
220 1.1 blymn ;
221 1.1 blymn
222 1.1 blymn check : CHECK var returns eol {
223 1.4 christos returns_t retvar;
224 1.1 blymn var_t *vptr;
225 1.1 blymn if (command.returns[0].return_index == -1)
226 1.4 christos err(1, "Undefined variable in check statement, line %zu"
227 1.1 blymn " of file %s", line, cur_file);
228 1.1 blymn
229 1.1 blymn if (verbose)
230 1.1 blymn fprintf(stderr, "Checking contents of variable %s for %s\n",
231 1.5 christos vars[command.returns[0].return_index].name,
232 1.5 christos returns_enum_names[command.returns[1].return_type]);
233 1.1 blymn
234 1.8 christos if (((command.returns[1].return_type == ret_byte) &&
235 1.1 blymn (vars[command.returns[0].return_index].type != ret_byte)) ||
236 1.8 christos vars[command.returns[0].return_index].type != ret_string)
237 1.1 blymn err(1, "Var type %s (%d) does not match return type %s (%d)",
238 1.1 blymn returns_enum_names[vars[command.returns[0].return_index].type],
239 1.1 blymn vars[command.returns[0].return_index].type,
240 1.1 blymn returns_enum_names[command.returns[1].return_type],
241 1.1 blymn command.returns[1].return_type);
242 1.1 blymn
243 1.1 blymn switch (command.returns[1].return_type) {
244 1.1 blymn case ret_err:
245 1.1 blymn validate_variable(0, ret_string, "ERR",
246 1.1 blymn command.returns[0].return_index, 0);
247 1.1 blymn break;
248 1.1 blymn
249 1.1 blymn case ret_ok:
250 1.1 blymn validate_variable(0, ret_string, "OK",
251 1.1 blymn command.returns[0].return_index, 0);
252 1.1 blymn break;
253 1.1 blymn
254 1.1 blymn case ret_null:
255 1.1 blymn validate_variable(0, ret_string, "NULL",
256 1.1 blymn command.returns[0].return_index, 0);
257 1.1 blymn break;
258 1.1 blymn
259 1.1 blymn case ret_nonnull:
260 1.1 blymn validate_variable(0, ret_string, "NULL",
261 1.1 blymn command.returns[0].return_index, 1);
262 1.1 blymn break;
263 1.1 blymn
264 1.1 blymn case ret_string:
265 1.1 blymn case ret_number:
266 1.1 blymn if (verbose)
267 1.1 blymn fprintf(stderr, " %s == returned %s\n",
268 1.5 christos (const char *)command.returns[1].return_value,
269 1.5 christos (const char *)
270 1.5 christos vars[command.returns[0].return_index].value);
271 1.1 blymn validate_variable(0, ret_string,
272 1.5 christos command.returns[1].return_value,
273 1.5 christos command.returns[0].return_index, 0);
274 1.1 blymn break;
275 1.1 blymn
276 1.1 blymn case ret_byte:
277 1.1 blymn vptr = &vars[command.returns[0].return_index];
278 1.4 christos retvar.return_len = vptr->len;
279 1.4 christos retvar.return_type = vptr->type;
280 1.4 christos retvar.return_value = vptr->value;
281 1.4 christos validate_byte(&retvar, &command.returns[1], 0);
282 1.1 blymn break;
283 1.1 blymn
284 1.1 blymn default:
285 1.4 christos err(1, "Malformed check statement at line %zu "
286 1.1 blymn "of file %s", line, cur_file);
287 1.1 blymn break;
288 1.1 blymn }
289 1.1 blymn
290 1.1 blymn init_parse_variables(0);
291 1.1 blymn }
292 1.1 blymn ;
293 1.1 blymn
294 1.1 blymn delay : DELAY numeric eol {
295 1.1 blymn /* set the inter-character delay */
296 1.1 blymn if (sscanf($2, "%d", &input_delay) == 0)
297 1.1 blymn err(1, "delay specification %s could not be converted to "
298 1.4 christos "numeric at line %zu of file %s", $2, line, cur_file);
299 1.1 blymn if (verbose)
300 1.1 blymn fprintf(stderr, "Set input delay to %d ms\n", input_delay);
301 1.1 blymn
302 1.1 blymn if (input_delay < DELAY_MIN)
303 1.1 blymn input_delay = 1000 * DELAY_MIN; /* ms to ns */
304 1.1 blymn /*
305 1.1 blymn * Fill in the timespec structure now ready for use later.
306 1.1 blymn * The delay is specified in milliseconds so convert to timespec
307 1.1 blymn * values
308 1.1 blymn */
309 1.1 blymn delay_spec.tv_sec = input_delay / 1000;
310 1.1 blymn delay_spec.tv_nsec = (input_delay - 1000 * delay_spec.tv_sec) * 1000;
311 1.1 blymn
312 1.1 blymn init_parse_variables(0);
313 1.1 blymn }
314 1.1 blymn ;
315 1.1 blymn
316 1.1 blymn input : INPUT STRING eol {
317 1.1 blymn if (input_str != NULL) {
318 1.5 christos warnx("%s, %zu: Discarding unused input string",
319 1.5 christos cur_file, line);
320 1.1 blymn free(input_str);
321 1.1 blymn }
322 1.1 blymn
323 1.1 blymn if ((input_str = malloc(strlen($2) + 1)) == NULL)
324 1.1 blymn err(2, "Cannot allocate memory for input string");
325 1.1 blymn
326 1.1 blymn strlcpy(input_str, $2, strlen($2) + 1);
327 1.1 blymn }
328 1.1 blymn ;
329 1.1 blymn
330 1.1 blymn
331 1.1 blymn noinput : NOINPUT eol {
332 1.1 blymn if (input_str != NULL) {
333 1.5 christos warnx("%s, %zu: Discarding unused input string",
334 1.5 christos cur_file, line);
335 1.1 blymn free(input_str);
336 1.1 blymn }
337 1.1 blymn
338 1.1 blymn no_input = true;
339 1.1 blymn }
340 1.1 blymn
341 1.1 blymn compare : COMPARE PATH eol
342 1.1 blymn | COMPARE FILENAME eol
343 1.1 blymn {
344 1.1 blymn compare_streams($2, true);
345 1.1 blymn }
346 1.1 blymn ;
347 1.1 blymn
348 1.1 blymn
349 1.1 blymn comparend : COMPAREND PATH eol
350 1.1 blymn | COMPAREND FILENAME eol
351 1.1 blymn {
352 1.1 blymn compare_streams($2, false);
353 1.1 blymn }
354 1.1 blymn ;
355 1.1 blymn
356 1.1 blymn
357 1.1 blymn result : returns
358 1.1 blymn | var
359 1.1 blymn | reference
360 1.1 blymn ;
361 1.1 blymn
362 1.1 blymn returns : numeric { assign_rets(ret_number, $1); }
363 1.1 blymn | LHB expr RHB { assign_rets(ret_number, $<string>2); }
364 1.1 blymn | STRING { assign_rets(ret_string, $1); }
365 1.1 blymn | BYTE { assign_rets(ret_byte, (void *) $1); }
366 1.1 blymn | ERR_RET { assign_rets(ret_err, NULL); }
367 1.1 blymn | OK_RET { assign_rets(ret_ok, NULL); }
368 1.1 blymn | NULL_RET { assign_rets(ret_null, NULL); }
369 1.1 blymn | NON_NULL { assign_rets(ret_nonnull, NULL); }
370 1.1 blymn ;
371 1.1 blymn
372 1.1 blymn var : VARNAME {
373 1.1 blymn assign_rets(ret_var, $1);
374 1.1 blymn }
375 1.1 blymn ;
376 1.1 blymn
377 1.1 blymn reference : VARIABLE {
378 1.1 blymn assign_rets(ret_ref, $1);
379 1.1 blymn }
380 1.1 blymn
381 1.1 blymn fn_name : VARNAME {
382 1.1 blymn if (command.function != NULL)
383 1.1 blymn free(command.function);
384 1.1 blymn
385 1.1 blymn command.function = malloc(strlen($1) + 1);
386 1.1 blymn if (command.function == NULL)
387 1.1 blymn err(1, "Could not allocate memory for function name");
388 1.1 blymn strcpy(command.function, $1);
389 1.1 blymn }
390 1.1 blymn ;
391 1.1 blymn
392 1.1 blymn expr : numeric
393 1.1 blymn | VARIABLE
394 1.1 blymn { $<string>$ = get_numeric_var($1); }
395 1.1 blymn | expr OR expr
396 1.1 blymn { $<string>$ = numeric_or($<string>1, $<string>3); }
397 1.1 blymn ;
398 1.1 blymn
399 1.1 blymn args : /* empty */
400 1.1 blymn | LHB expr RHB { assign_arg(arg_static, $<string>2); } args
401 1.1 blymn | numeric { assign_arg(arg_static, $1); } args
402 1.1 blymn | STRING { assign_arg(arg_static, $1); } args
403 1.1 blymn | BYTE { assign_arg(arg_byte, $1); } args
404 1.1 blymn | PATH { assign_arg(arg_static, $1); } args
405 1.1 blymn | FILENAME { assign_arg(arg_static, $1); } args
406 1.1 blymn | VARNAME { assign_arg(arg_static, $1); } args
407 1.1 blymn | VARIABLE { assign_arg(arg_var, $1); } args
408 1.2 blymn | NULL_RET { assign_arg(arg_null, $1); } args
409 1.1 blymn ;
410 1.1 blymn
411 1.1 blymn eol : EOL
412 1.1 blymn ;
413 1.1 blymn
414 1.1 blymn %%
415 1.1 blymn
416 1.6 christos static void
417 1.6 christos excess(const char *fname, size_t lineno, const char *func, const char *comment,
418 1.6 christos const void *data, size_t datalen)
419 1.6 christos {
420 1.6 christos size_t dstlen = datalen * 4 + 1;
421 1.6 christos char *dst = malloc(dstlen);
422 1.6 christos
423 1.6 christos if (dst == NULL)
424 1.6 christos err(1, "malloc");
425 1.6 christos
426 1.6 christos if (strnvisx(dst, dstlen, data, datalen, VIS_WHITE | VIS_OCTAL) == -1)
427 1.6 christos err(1, "strnvisx");
428 1.6 christos
429 1.6 christos warnx("%s, %zu: [%s] Excess %zu bytes%s [%s]",
430 1.6 christos fname, lineno, func, datalen, comment, dst);
431 1.6 christos free(dst);
432 1.6 christos }
433 1.6 christos
434 1.1 blymn /*
435 1.1 blymn * Get the value of a variable, error if the variable has not been set or
436 1.1 blymn * is not a numeric type.
437 1.1 blymn */
438 1.1 blymn static char *
439 1.4 christos get_numeric_var(const char *var)
440 1.1 blymn {
441 1.4 christos int i;
442 1.1 blymn
443 1.4 christos if ((i = find_var_index(var)) < 0)
444 1.1 blymn err(1, "Variable %s is undefined", var);
445 1.1 blymn
446 1.4 christos if (vars[i].type != ret_number)
447 1.4 christos err(1, "Variable %s is not a numeric type", var);
448 1.1 blymn
449 1.4 christos return vars[i].value;
450 1.1 blymn }
451 1.1 blymn
452 1.1 blymn /*
453 1.1 blymn * Perform a bitwise OR on two numbers and return the result.
454 1.1 blymn */
455 1.1 blymn static char *
456 1.1 blymn numeric_or(char *n1, char *n2)
457 1.1 blymn {
458 1.1 blymn unsigned long i1, i2, result;
459 1.1 blymn char *ret;
460 1.1 blymn
461 1.1 blymn i1 = strtoul(n1, NULL, 10);
462 1.1 blymn i2 = strtoul(n2, NULL, 10);
463 1.1 blymn
464 1.1 blymn result = i1 | i2;
465 1.1 blymn asprintf(&ret, "%lu", result);
466 1.1 blymn
467 1.1 blymn if (verbose)
468 1.5 christos fprintf(stderr, "numeric or of 0x%lx (%s) and 0x%lx (%s)"
469 1.5 christos " results in 0x%lx (%s)\n",
470 1.5 christos i1, n1, i2, n2, result, ret);
471 1.1 blymn
472 1.1 blymn return ret;
473 1.1 blymn }
474 1.1 blymn
475 1.1 blymn /*
476 1.1 blymn * Assign the value given to the named variable.
477 1.1 blymn */
478 1.1 blymn static void
479 1.1 blymn set_var(returns_enum_t type, char *name, void *value)
480 1.1 blymn {
481 1.4 christos int i;
482 1.1 blymn char *number;
483 1.1 blymn returns_t *ret;
484 1.1 blymn
485 1.4 christos i = find_var_index(name);
486 1.4 christos if (i < 0)
487 1.4 christos i = assign_var(name);
488 1.1 blymn
489 1.4 christos vars[i].type = type;
490 1.1 blymn if ((type == ret_number) || (type == ret_string)) {
491 1.1 blymn number = value;
492 1.4 christos vars[i].len = strlen(number) + 1;
493 1.4 christos vars[i].value = malloc(vars[i].len + 1);
494 1.4 christos if (vars[i].value == NULL)
495 1.1 blymn err(1, "Could not malloc memory for assign string");
496 1.4 christos strcpy(vars[i].value, number);
497 1.1 blymn } else {
498 1.1 blymn /* can only be a byte value */
499 1.1 blymn ret = value;
500 1.4 christos vars[i].len = ret->return_len;
501 1.4 christos vars[i].value = malloc(vars[i].len);
502 1.4 christos if (vars[i].value == NULL)
503 1.1 blymn err(1, "Could not malloc memory to assign byte string");
504 1.4 christos memcpy(vars[i].value, ret->return_value, vars[i].len);
505 1.1 blymn }
506 1.1 blymn }
507 1.1 blymn
508 1.1 blymn /*
509 1.1 blymn * Add a new variable to the vars array, the value will be assigned later,
510 1.1 blymn * when a test function call returns.
511 1.1 blymn */
512 1.1 blymn static int
513 1.1 blymn assign_var(char *varname)
514 1.1 blymn {
515 1.1 blymn var_t *temp;
516 1.1 blymn char *name;
517 1.1 blymn
518 1.1 blymn if ((name = malloc(strlen(varname) + 1)) == NULL)
519 1.1 blymn err(1, "Alloc of varname failed");
520 1.1 blymn
521 1.1 blymn if ((temp = (var_t *) realloc(vars, sizeof(var_t) * (nvars + 1)))
522 1.1 blymn == NULL) {
523 1.1 blymn free(name);
524 1.1 blymn err(1, "Realloc of vars array failed");
525 1.1 blymn }
526 1.1 blymn
527 1.1 blymn strcpy(name, varname);
528 1.1 blymn vars = temp;
529 1.1 blymn vars[nvars].name = name;
530 1.1 blymn vars[nvars].len = 0;
531 1.1 blymn vars[nvars].value = NULL;
532 1.1 blymn nvars++;
533 1.1 blymn
534 1.1 blymn return (nvars - 1);
535 1.1 blymn }
536 1.1 blymn
537 1.1 blymn /*
538 1.1 blymn * Allocate and assign a new argument of the given type.
539 1.1 blymn */
540 1.1 blymn static void
541 1.1 blymn assign_arg(args_state_t arg_type, void *arg)
542 1.1 blymn {
543 1.1 blymn args_t *temp, cur;
544 1.4 christos char *str = arg;
545 1.1 blymn returns_t *ret;
546 1.1 blymn
547 1.1 blymn if (verbose)
548 1.1 blymn printf("function is >%s<, adding arg >%s< type %s\n",
549 1.4 christos command.function, str, args_enum_names[arg_type]);
550 1.1 blymn
551 1.1 blymn cur.arg_type = arg_type;
552 1.2 blymn switch (arg_type) {
553 1.2 blymn case arg_var:
554 1.1 blymn cur.var_index = find_var_index(arg);
555 1.1 blymn if (cur.var_index < 0)
556 1.4 christos err(1, "Invalid variable %s at line %zu of file %s",
557 1.4 christos str, line, cur_file);
558 1.1 blymn cur.arg_type = ret_string;
559 1.2 blymn break;
560 1.2 blymn
561 1.2 blymn case arg_byte:
562 1.2 blymn ret = arg;
563 1.2 blymn cur.arg_len = ret->return_len;
564 1.2 blymn cur.arg_string = malloc(cur.arg_len);
565 1.2 blymn if (cur.arg_string == NULL)
566 1.2 blymn err(1, "Could not malloc memory for arg bytes");
567 1.2 blymn memcpy(cur.arg_string, ret->return_value, cur.arg_len);
568 1.2 blymn break;
569 1.2 blymn
570 1.2 blymn case arg_null:
571 1.2 blymn cur.arg_len = 0;
572 1.2 blymn cur.arg_string = NULL;
573 1.2 blymn break;
574 1.2 blymn
575 1.2 blymn default:
576 1.2 blymn cur.arg_len = strlen(str);
577 1.2 blymn cur.arg_string = malloc(cur.arg_len + 1);
578 1.2 blymn if (cur.arg_string == NULL)
579 1.2 blymn err(1, "Could not malloc memory for arg string");
580 1.2 blymn strcpy(cur.arg_string, arg);
581 1.1 blymn }
582 1.1 blymn
583 1.1 blymn temp = realloc(command.args, sizeof(args_t) * (command.nargs + 1));
584 1.1 blymn if (temp == NULL)
585 1.1 blymn err(1, "Failed to reallocate args");
586 1.1 blymn command.args = temp;
587 1.1 blymn memcpy(&command.args[command.nargs], &cur, sizeof(args_t));
588 1.1 blymn command.nargs++;
589 1.1 blymn }
590 1.1 blymn
591 1.1 blymn /*
592 1.1 blymn * Allocate and assign a new return.
593 1.1 blymn */
594 1.1 blymn static void
595 1.1 blymn assign_rets(returns_enum_t ret_type, void *ret)
596 1.1 blymn {
597 1.1 blymn returns_t *temp, cur;
598 1.1 blymn char *ret_str;
599 1.1 blymn returns_t *ret_ret;
600 1.1 blymn
601 1.1 blymn cur.return_type = ret_type;
602 1.1 blymn if (ret_type != ret_var) {
603 1.1 blymn if ((ret_type == ret_number) || (ret_type == ret_string)) {
604 1.1 blymn ret_str = ret;
605 1.1 blymn cur.return_len = strlen(ret_str) + 1;
606 1.1 blymn cur.return_value = malloc(cur.return_len + 1);
607 1.1 blymn if (cur.return_value == NULL)
608 1.1 blymn err(1,
609 1.1 blymn "Could not malloc memory for arg string");
610 1.1 blymn strcpy(cur.return_value, ret_str);
611 1.1 blymn } else if (ret_type == ret_byte) {
612 1.1 blymn ret_ret = ret;
613 1.1 blymn cur.return_len = ret_ret->return_len;
614 1.1 blymn cur.return_value = malloc(cur.return_len);
615 1.1 blymn if (cur.return_value == NULL)
616 1.1 blymn err(1,
617 1.1 blymn "Could not malloc memory for byte string");
618 1.1 blymn memcpy(cur.return_value, ret_ret->return_value,
619 1.1 blymn cur.return_len);
620 1.1 blymn } else if (ret_type == ret_ref) {
621 1.1 blymn if ((cur.return_index = find_var_index(ret)) < 0)
622 1.1 blymn err(1, "Undefined variable reference");
623 1.1 blymn }
624 1.1 blymn } else {
625 1.1 blymn cur.return_index = find_var_index(ret);
626 1.1 blymn if (cur.return_index < 0)
627 1.1 blymn cur.return_index = assign_var(ret);
628 1.1 blymn }
629 1.1 blymn
630 1.1 blymn temp = realloc(command.returns,
631 1.1 blymn sizeof(returns_t) * (command.nrets + 1));
632 1.1 blymn if (temp == NULL)
633 1.1 blymn err(1, "Failed to reallocate returns");
634 1.1 blymn command.returns = temp;
635 1.1 blymn memcpy(&command.returns[command.nrets], &cur, sizeof(returns_t));
636 1.1 blymn command.nrets++;
637 1.1 blymn }
638 1.1 blymn
639 1.1 blymn /*
640 1.4 christos * Find the given variable name in the var array and return the i
641 1.1 blymn * return -1 if var is not found.
642 1.1 blymn */
643 1.1 blymn static int
644 1.4 christos find_var_index(const char *var_name)
645 1.1 blymn {
646 1.4 christos int result;
647 1.4 christos size_t i;
648 1.1 blymn
649 1.1 blymn result = -1;
650 1.1 blymn
651 1.1 blymn for (i = 0; i < nvars; i++) {
652 1.1 blymn if (strcmp(var_name, vars[i].name) == 0) {
653 1.1 blymn result = i;
654 1.1 blymn break;
655 1.1 blymn }
656 1.1 blymn }
657 1.1 blymn
658 1.1 blymn return result;
659 1.1 blymn }
660 1.1 blymn
661 1.1 blymn /*
662 1.1 blymn * Check the given function name in the given table of names, return 1 if
663 1.1 blymn * there is a match.
664 1.1 blymn */
665 1.1 blymn static int check_function_table(char *function, const char *table[],
666 1.1 blymn int nfunctions)
667 1.1 blymn {
668 1.1 blymn int i;
669 1.1 blymn
670 1.1 blymn for (i = 0; i < nfunctions; i++) {
671 1.1 blymn if ((strlen(function) == strlen(table[i])) &&
672 1.1 blymn (strcmp(function, table[i]) == 0))
673 1.1 blymn return 1;
674 1.1 blymn }
675 1.1 blymn
676 1.1 blymn return 0;
677 1.1 blymn }
678 1.1 blymn
679 1.1 blymn /*
680 1.1 blymn * Compare the output from the slave against the given file and report
681 1.1 blymn * any differences.
682 1.1 blymn */
683 1.1 blymn static void
684 1.1 blymn compare_streams(char *filename, bool discard)
685 1.1 blymn {
686 1.5 christos char check_file[PATH_MAX], drain[100], ref, data;
687 1.1 blymn struct pollfd fds[2];
688 1.5 christos int nfd, check_fd;
689 1.5 christos ssize_t result;
690 1.1 blymn
691 1.1 blymn /*
692 1.1 blymn * Don't prepend check path iff check file has an absolute
693 1.1 blymn * path.
694 1.1 blymn */
695 1.1 blymn if (filename[0] != '/') {
696 1.1 blymn if (strlcpy(check_file, check_path, sizeof(check_file))
697 1.1 blymn >= sizeof(check_file))
698 1.1 blymn err(2, "CHECK_PATH too long");
699 1.1 blymn
700 1.1 blymn if (strlcat(check_file, "/", sizeof(check_file))
701 1.1 blymn >= sizeof(check_file))
702 1.1 blymn err(2, "Could not append / to check file path");
703 1.1 blymn } else {
704 1.1 blymn check_file[0] = '\0';
705 1.1 blymn }
706 1.1 blymn
707 1.1 blymn if (strlcat(check_file, filename, sizeof(check_file))
708 1.1 blymn >= sizeof(check_file))
709 1.1 blymn err(2, "Path to check file path overflowed");
710 1.1 blymn
711 1.1 blymn if ((check_fd = open(check_file, O_RDONLY, 0)) < 0)
712 1.4 christos err(2, "failed to open file %s line %zu of file %s",
713 1.1 blymn check_file, line, cur_file);
714 1.1 blymn
715 1.1 blymn fds[0].fd = check_fd;
716 1.1 blymn fds[0].events = POLLIN;
717 1.1 blymn fds[0].revents = 0;
718 1.1 blymn fds[1].fd = master;
719 1.1 blymn fds[1].events = POLLIN;
720 1.1 blymn fds[1].revents = 0;
721 1.1 blymn
722 1.1 blymn nfd = 2;
723 1.1 blymn /*
724 1.1 blymn * if we have saved output then only check for data in the
725 1.1 blymn * reference file since the slave data may already be drained.
726 1.1 blymn */
727 1.1 blymn if (saved_output.count > 0)
728 1.1 blymn nfd = 1;
729 1.1 blymn
730 1.1 blymn while (poll(&fds[0], nfd, 500) == nfd) {
731 1.1 blymn if ((result = read(check_fd, &ref, 1)) < 1) {
732 1.1 blymn if (result != 0) {
733 1.5 christos err(2, "Bad read on file %s", check_file);
734 1.1 blymn } else {
735 1.1 blymn break;
736 1.1 blymn }
737 1.1 blymn }
738 1.1 blymn
739 1.1 blymn if (saved_output.count > 0) {
740 1.1 blymn data = saved_output.data[saved_output.readp];
741 1.1 blymn saved_output.count--;
742 1.1 blymn saved_output.readp++;
743 1.1 blymn /* run out of saved data, switch to file */
744 1.1 blymn if (saved_output.count == 0)
745 1.1 blymn nfd = 2;
746 1.1 blymn } else {
747 1.1 blymn if (read(master, &data, 1) < 1)
748 1.1 blymn err(2, "Bad read on slave pty");
749 1.1 blymn }
750 1.1 blymn
751 1.1 blymn if (verbose) {
752 1.1 blymn fprintf(stderr, "Comparing reference byte 0x%x (%c)"
753 1.1 blymn " against slave byte 0x%x (%c)\n", ref,
754 1.1 blymn (ref >= ' ')? ref : '-',
755 1.1 blymn data, (data >= ' ')? data : '-');
756 1.1 blymn }
757 1.1 blymn
758 1.1 blymn if (ref != data) {
759 1.5 christos warnx("%s, %zu: refresh data from slave does "
760 1.5 christos "not match expected from file %s",
761 1.5 christos cur_file, line, check_file);
762 1.1 blymn
763 1.1 blymn if (!verbose)
764 1.1 blymn exit(2);
765 1.1 blymn }
766 1.1 blymn
767 1.1 blymn fds[0].revents = 0;
768 1.1 blymn fds[1].revents = 0;
769 1.1 blymn }
770 1.1 blymn
771 1.1 blymn
772 1.1 blymn if (saved_output.count > 0)
773 1.6 christos excess(cur_file, line, __func__, " from slave",
774 1.6 christos &saved_output.data[saved_output.readp], saved_output.count);
775 1.1 blymn
776 1.1 blymn /* discard any excess saved output if required */
777 1.1 blymn if (discard) {
778 1.1 blymn saved_output.count = 0;
779 1.1 blymn saved_output.readp = 0;
780 1.1 blymn }
781 1.1 blymn
782 1.1 blymn fds[0].revents = 0;
783 1.1 blymn fds[1].revents = 0;
784 1.1 blymn if ((result = poll(&fds[0], 2, 0)) != 0) {
785 1.1 blymn if (result == -1)
786 1.1 blymn err(2, "poll of file descriptors failed");
787 1.1 blymn
788 1.5 christos if ((fds[1].revents & POLLIN) == POLLIN) {
789 1.1 blymn save_slave_output(true);
790 1.1 blymn } else {
791 1.1 blymn /*
792 1.1 blymn * handle excess in file if it exists. Poll
793 1.1 blymn * says there is data until EOF is read.
794 1.1 blymn * Check next read is EOF, if it is not then
795 1.1 blymn * the file really has more data than the
796 1.1 blymn * slave produced so flag this as a warning.
797 1.1 blymn */
798 1.5 christos result = read(check_fd, drain, sizeof(drain));
799 1.1 blymn if (result == -1)
800 1.3 christos err(1, "read of data file failed");
801 1.1 blymn
802 1.1 blymn if (result > 0) {
803 1.6 christos excess(check_file, 0, __func__, "", drain,
804 1.6 christos result);
805 1.1 blymn if (!verbose)
806 1.1 blymn exit(2);
807 1.1 blymn }
808 1.1 blymn }
809 1.1 blymn }
810 1.1 blymn
811 1.1 blymn close(check_fd);
812 1.1 blymn }
813 1.1 blymn
814 1.1 blymn /*
815 1.1 blymn * Pass a function call and arguments to the slave and wait for the
816 1.1 blymn * results. The variable nresults determines how many returns we expect
817 1.1 blymn * back from the slave. These results will be validated against the
818 1.1 blymn * expected returns or assigned to variables.
819 1.1 blymn */
820 1.1 blymn static void
821 1.4 christos do_function_call(size_t nresults)
822 1.1 blymn {
823 1.1 blymn #define MAX_RESULTS 4
824 1.1 blymn char *p;
825 1.4 christos int do_input;
826 1.4 christos size_t i;
827 1.1 blymn struct pollfd fds[3];
828 1.1 blymn returns_t response[MAX_RESULTS], returns_count;
829 1.1 blymn
830 1.1 blymn assert(nresults <= MAX_RESULTS);
831 1.1 blymn
832 1.1 blymn do_input = check_function_table(command.function, input_functions,
833 1.5 christos ninput_functions);
834 1.1 blymn
835 1.1 blymn write_func_and_args();
836 1.1 blymn
837 1.1 blymn /*
838 1.1 blymn * We should get the number of returns back here, grab it before
839 1.1 blymn * doing input otherwise it will confuse the input poll
840 1.1 blymn */
841 1.1 blymn read_cmd_pipe(&returns_count);
842 1.5 christos if (returns_count.return_type != ret_count)
843 1.1 blymn err(2, "expected return type of ret_count but received %s",
844 1.1 blymn returns_enum_names[returns_count.return_type]);
845 1.1 blymn
846 1.1 blymn if (verbose)
847 1.4 christos fprintf(stderr, "Expect %zu results from slave, slave "
848 1.4 christos "reported %zu\n", nresults, returns_count.return_len);
849 1.1 blymn
850 1.1 blymn if ((no_input == false) && (do_input == 1)) {
851 1.1 blymn if (verbose)
852 1.1 blymn fprintf(stderr, "doing input with inputstr >%s<\n",
853 1.1 blymn input_str);
854 1.1 blymn
855 1.5 christos if (input_str == NULL)
856 1.5 christos errx(2, "%s, %zu: Call to input function "
857 1.5 christos "but no input defined", cur_file, line);
858 1.1 blymn
859 1.1 blymn fds[0].fd = slvpipe[READ_PIPE];
860 1.1 blymn fds[0].events = POLLIN;
861 1.1 blymn p = input_str;
862 1.1 blymn save_slave_output(false);
863 1.1 blymn while(*p != '\0') {
864 1.1 blymn if (verbose) {
865 1.1 blymn fprintf(stderr, "Writing char >%c< to slave\n",
866 1.1 blymn *p);
867 1.1 blymn fflush(stderr);
868 1.1 blymn }
869 1.1 blymn
870 1.1 blymn nanosleep(&delay_spec, NULL);
871 1.1 blymn
872 1.1 blymn write(master, p, 1);
873 1.1 blymn save_slave_output(false);
874 1.1 blymn
875 1.1 blymn p++;
876 1.1 blymn fds[0].revents = 0;
877 1.1 blymn
878 1.1 blymn /* check for slave function returning unexpectedly */
879 1.1 blymn if ((poll(&fds[0], 1, 10) > 0) && (*p != '\0')) {
880 1.5 christos warnx("%s, %zu: Slave function "
881 1.5 christos "returned before end of input string",
882 1.5 christos cur_file, line);
883 1.1 blymn break;
884 1.1 blymn }
885 1.1 blymn }
886 1.1 blymn
887 1.1 blymn if (verbose) {
888 1.1 blymn fprintf(stderr, "Input done.\n");
889 1.1 blymn }
890 1.1 blymn
891 1.1 blymn /* done with the input string, free the resources */
892 1.1 blymn free(input_str);
893 1.1 blymn input_str = NULL;
894 1.1 blymn }
895 1.1 blymn
896 1.1 blymn if (verbose) {
897 1.1 blymn fds[0].fd = slvpipe[READ_PIPE];
898 1.1 blymn fds[0].events = POLLIN;
899 1.1 blymn fds[0].revents = 0;
900 1.1 blymn
901 1.1 blymn fds[1].fd = slvpipe[WRITE_PIPE];
902 1.1 blymn fds[1].events = POLLOUT;
903 1.1 blymn fds[1].revents = 0;
904 1.1 blymn
905 1.1 blymn fds[2].fd = master;
906 1.1 blymn fds[2].events = POLLIN | POLLOUT;
907 1.1 blymn fds[2].revents = 0;
908 1.1 blymn
909 1.1 blymn i = poll(&fds[0], 3, 1000);
910 1.4 christos fprintf(stderr, "Poll returned %zu\n", i);
911 1.1 blymn for (i = 0; i < 3; i++) {
912 1.4 christos fprintf(stderr, "revents for fd[%zu] = 0x%x\n",
913 1.1 blymn i, fds[i].revents);
914 1.1 blymn }
915 1.1 blymn }
916 1.1 blymn
917 1.1 blymn /* drain any trailing output */
918 1.1 blymn save_slave_output(false);
919 1.1 blymn
920 1.1 blymn for (i = 0; i < returns_count.return_len; i++) {
921 1.1 blymn read_cmd_pipe(&response[i]);
922 1.1 blymn }
923 1.1 blymn
924 1.1 blymn /*
925 1.1 blymn * Check for a slave error in the first return slot, if the
926 1.1 blymn * slave errored then we may not have the number of returns we
927 1.1 blymn * expect but in this case we should report the slave error
928 1.1 blymn * instead of a return count mismatch.
929 1.1 blymn */
930 1.1 blymn if ((returns_count.return_len > 0) &&
931 1.1 blymn (response[0].return_type == ret_slave_error))
932 1.4 christos err(2, "Slave returned error: %s",
933 1.4 christos (const char *)response[0].return_value);
934 1.1 blymn
935 1.1 blymn if (returns_count.return_len != nresults)
936 1.4 christos err(2, "Incorrect number of returns from slave, expected %zu "
937 1.4 christos "but received %zu", nresults, returns_count.return_len);
938 1.1 blymn
939 1.1 blymn if (verbose) {
940 1.1 blymn for (i = 0; i < nresults; i++) {
941 1.1 blymn if ((response[i].return_type != ret_byte) &&
942 1.1 blymn (response[i].return_type != ret_err) &&
943 1.1 blymn (response[i].return_type != ret_ok))
944 1.1 blymn fprintf(stderr,
945 1.1 blymn "received response >%s< "
946 1.4 christos "expected",
947 1.4 christos (const char *)response[i].return_value);
948 1.1 blymn else
949 1.1 blymn fprintf(stderr, "received");
950 1.1 blymn
951 1.1 blymn fprintf(stderr, " return_type %s\n",
952 1.5 christos returns_enum_names[command.returns[i].return_type]);
953 1.1 blymn }
954 1.1 blymn }
955 1.1 blymn
956 1.1 blymn for (i = 0; i < nresults; i++) {
957 1.1 blymn if (command.returns[i].return_type != ret_var) {
958 1.1 blymn validate(i, &response[i]);
959 1.1 blymn } else {
960 1.1 blymn vars[command.returns[i].return_index].len =
961 1.1 blymn response[i].return_len;
962 1.1 blymn vars[command.returns[i].return_index].value =
963 1.1 blymn response[i].return_value;
964 1.1 blymn vars[command.returns[i].return_index].type =
965 1.1 blymn response[i].return_type;
966 1.1 blymn }
967 1.1 blymn }
968 1.5 christos #if 0
969 1.1 blymn if (saved_output.count > 0)
970 1.6 christos excess(cur_file, line, __func__, " from slave",
971 1.6 christos &saved_output.data[saved_output.readp], saved_output.count);
972 1.5 christos #endif
973 1.1 blymn
974 1.1 blymn init_parse_variables(0);
975 1.1 blymn }
976 1.1 blymn
977 1.1 blymn /*
978 1.1 blymn * Write the function and command arguments to the command pipe.
979 1.1 blymn */
980 1.1 blymn static void
981 1.4 christos write_func_and_args(void)
982 1.1 blymn {
983 1.1 blymn int i;
984 1.1 blymn
985 1.1 blymn if (verbose)
986 1.1 blymn fprintf(stderr, "calling function >%s<\n", command.function);
987 1.1 blymn
988 1.1 blymn write_cmd_pipe(command.function);
989 1.1 blymn for (i = 0; i < command.nargs; i++) {
990 1.1 blymn if (command.args[i].arg_type == arg_var)
991 1.1 blymn write_cmd_pipe_args(command.args[i].arg_type,
992 1.1 blymn &vars[command.args[i].var_index]);
993 1.1 blymn else
994 1.1 blymn write_cmd_pipe_args(command.args[i].arg_type,
995 1.1 blymn &command.args[i]);
996 1.1 blymn }
997 1.1 blymn
998 1.1 blymn write_cmd_pipe(NULL); /* signal end of arguments */
999 1.1 blymn }
1000 1.1 blymn
1001 1.1 blymn /*
1002 1.1 blymn * Initialise the command structure - if initial is non-zero then just set
1003 1.1 blymn * everything to sane values otherwise free any memory that was allocated
1004 1.1 blymn * when building the structure.
1005 1.1 blymn */
1006 1.1 blymn void
1007 1.1 blymn init_parse_variables(int initial)
1008 1.1 blymn {
1009 1.1 blymn int i, result;
1010 1.1 blymn struct pollfd slave_pty;
1011 1.1 blymn
1012 1.1 blymn if (initial == 0) {
1013 1.1 blymn free(command.function);
1014 1.1 blymn for (i = 0; i < command.nrets; i++) {
1015 1.1 blymn if (command.returns[i].return_type == ret_number)
1016 1.1 blymn free(command.returns[i].return_value);
1017 1.1 blymn }
1018 1.1 blymn free(command.returns);
1019 1.1 blymn
1020 1.1 blymn for (i = 0; i < command.nargs; i++) {
1021 1.1 blymn if (command.args[i].arg_type != arg_var)
1022 1.1 blymn free(command.args[i].arg_string);
1023 1.1 blymn }
1024 1.1 blymn free(command.args);
1025 1.1 blymn } else {
1026 1.1 blymn line = 0;
1027 1.1 blymn input_delay = 0;
1028 1.1 blymn vars = NULL;
1029 1.1 blymn nvars = 0;
1030 1.1 blymn input_str = NULL;
1031 1.1 blymn saved_output.allocated = 0;
1032 1.1 blymn saved_output.count = 0;
1033 1.1 blymn saved_output.readp = 0;
1034 1.1 blymn saved_output.data = NULL;
1035 1.1 blymn }
1036 1.1 blymn
1037 1.1 blymn no_input = false;
1038 1.1 blymn command.function = NULL;
1039 1.1 blymn command.nargs = 0;
1040 1.1 blymn command.args = NULL;
1041 1.1 blymn command.nrets = 0;
1042 1.1 blymn command.returns = NULL;
1043 1.1 blymn
1044 1.1 blymn /*
1045 1.1 blymn * Check the slave pty for stray output from the slave, at this
1046 1.1 blymn * point we should not see any data as it should have been
1047 1.1 blymn * consumed by the test functions. If we see data then we have
1048 1.1 blymn * either a bug or are not handling an output generating function
1049 1.1 blymn * correctly.
1050 1.1 blymn */
1051 1.1 blymn slave_pty.fd = master;
1052 1.1 blymn slave_pty.events = POLLIN;
1053 1.1 blymn slave_pty.revents = 0;
1054 1.1 blymn result = poll(&slave_pty, 1, 0);
1055 1.1 blymn
1056 1.1 blymn if (result < 0)
1057 1.1 blymn err(2, "Poll of slave pty failed");
1058 1.1 blymn else if (result > 0)
1059 1.5 christos warnx("%s, %zu: Unexpected data from slave", cur_file, line);
1060 1.1 blymn }
1061 1.1 blymn
1062 1.1 blymn /*
1063 1.1 blymn * Validate the response against the expected return. The variable
1064 1.4 christos * i is the i into the rets array in command.
1065 1.1 blymn */
1066 1.1 blymn static void
1067 1.4 christos validate(int i, void *data)
1068 1.1 blymn {
1069 1.1 blymn char *response;
1070 1.1 blymn returns_t *byte_response;
1071 1.1 blymn
1072 1.1 blymn byte_response = data;
1073 1.4 christos if ((command.returns[i].return_type != ret_byte) &&
1074 1.4 christos (command.returns[i].return_type != ret_err) &&
1075 1.4 christos (command.returns[i].return_type != ret_ok))
1076 1.1 blymn response = byte_response->return_value;
1077 1.1 blymn
1078 1.4 christos switch (command.returns[i].return_type) {
1079 1.1 blymn case ret_err:
1080 1.1 blymn validate_type(ret_err, byte_response, 0);
1081 1.1 blymn break;
1082 1.1 blymn
1083 1.1 blymn case ret_ok:
1084 1.1 blymn validate_type(ret_ok, byte_response, 0);
1085 1.1 blymn break;
1086 1.1 blymn
1087 1.1 blymn case ret_null:
1088 1.1 blymn validate_return("NULL", response, 0);
1089 1.1 blymn break;
1090 1.1 blymn
1091 1.1 blymn case ret_nonnull:
1092 1.1 blymn validate_return("NULL", response, 1);
1093 1.1 blymn break;
1094 1.1 blymn
1095 1.1 blymn case ret_string:
1096 1.1 blymn case ret_number:
1097 1.4 christos validate_return(command.returns[i].return_value,
1098 1.1 blymn response, 0);
1099 1.1 blymn break;
1100 1.1 blymn
1101 1.1 blymn case ret_ref:
1102 1.4 christos validate_reference(i, response);
1103 1.1 blymn break;
1104 1.1 blymn
1105 1.1 blymn case ret_byte:
1106 1.4 christos validate_byte(&command.returns[i], byte_response, 0);
1107 1.1 blymn break;
1108 1.1 blymn
1109 1.1 blymn default:
1110 1.4 christos err(1, "Malformed statement at line %zu of file %s",
1111 1.1 blymn line, cur_file);
1112 1.1 blymn break;
1113 1.1 blymn }
1114 1.1 blymn }
1115 1.1 blymn
1116 1.1 blymn /*
1117 1.1 blymn * Validate the return against the contents of a variable.
1118 1.1 blymn */
1119 1.1 blymn static void
1120 1.4 christos validate_reference(int i, void *data)
1121 1.1 blymn {
1122 1.1 blymn char *response;
1123 1.1 blymn returns_t *byte_response;
1124 1.1 blymn var_t *varp;
1125 1.1 blymn
1126 1.4 christos varp = &vars[command.returns[i].return_index];
1127 1.1 blymn
1128 1.1 blymn byte_response = data;
1129 1.4 christos if (command.returns[i].return_type != ret_byte)
1130 1.1 blymn response = data;
1131 1.1 blymn
1132 1.1 blymn if (verbose)
1133 1.1 blymn fprintf(stderr,
1134 1.1 blymn "validate_reference: return type of %s, value %s \n",
1135 1.4 christos returns_enum_names[varp->type],
1136 1.4 christos (const char *)varp->value);
1137 1.1 blymn
1138 1.1 blymn switch (varp->type) {
1139 1.1 blymn case ret_string:
1140 1.1 blymn case ret_number:
1141 1.1 blymn validate_return(varp->value, response, 0);
1142 1.1 blymn break;
1143 1.1 blymn
1144 1.1 blymn case ret_byte:
1145 1.1 blymn validate_byte(varp->value, byte_response, 0);
1146 1.1 blymn break;
1147 1.1 blymn
1148 1.1 blymn default:
1149 1.1 blymn err(1,
1150 1.4 christos "Invalid return type for reference at line %zu of file %s",
1151 1.1 blymn line, cur_file);
1152 1.1 blymn break;
1153 1.1 blymn }
1154 1.1 blymn }
1155 1.1 blymn
1156 1.1 blymn /*
1157 1.1 blymn * Validate the return type against the expected type, throw an error
1158 1.1 blymn * if they don't match.
1159 1.1 blymn */
1160 1.1 blymn static void
1161 1.1 blymn validate_type(returns_enum_t expected, returns_t *value, int check)
1162 1.1 blymn {
1163 1.1 blymn if (((check == 0) && (expected != value->return_type)) ||
1164 1.1 blymn ((check == 1) && (expected == value->return_type)))
1165 1.4 christos err(1, "Validate expected type %s %s %s line %zu of file %s",
1166 1.1 blymn returns_enum_names[expected],
1167 1.1 blymn (check == 0)? "matching" : "not matching",
1168 1.1 blymn returns_enum_names[value->return_type], line, cur_file);
1169 1.1 blymn
1170 1.1 blymn if (verbose)
1171 1.4 christos fprintf(stderr, "Validate expected type %s %s %s line %zu"
1172 1.1 blymn " of file %s\n",
1173 1.1 blymn returns_enum_names[expected],
1174 1.1 blymn (check == 0)? "matching" : "not matching",
1175 1.1 blymn returns_enum_names[value->return_type], line, cur_file);
1176 1.1 blymn }
1177 1.1 blymn
1178 1.1 blymn /*
1179 1.1 blymn * Validate the return value against the expected value, throw an error
1180 1.1 blymn * if they don't match.
1181 1.1 blymn */
1182 1.1 blymn static void
1183 1.4 christos validate_return(const char *expected, const char *value, int check)
1184 1.1 blymn {
1185 1.1 blymn if (((check == 0) && strcmp(expected, value) != 0) ||
1186 1.1 blymn ((check == 1) && strcmp(expected, value) == 0))
1187 1.4 christos err(1, "Validate expected %s %s %s line %zu of file %s",
1188 1.1 blymn expected,
1189 1.1 blymn (check == 0)? "matching" : "not matching", value,
1190 1.1 blymn line, cur_file);
1191 1.1 blymn if (verbose)
1192 1.1 blymn fprintf(stderr, "Validated expected value %s %s %s "
1193 1.4 christos "at line %zu of file %s\n", expected,
1194 1.1 blymn (check == 0)? "matches" : "does not match",
1195 1.1 blymn value, line, cur_file);
1196 1.1 blymn }
1197 1.1 blymn
1198 1.1 blymn /*
1199 1.1 blymn * Validate the return value against the expected value, throw an error
1200 1.1 blymn * if they don't match expectations.
1201 1.1 blymn */
1202 1.1 blymn static void
1203 1.1 blymn validate_byte(returns_t *expected, returns_t *value, int check)
1204 1.1 blymn {
1205 1.1 blymn /*
1206 1.1 blymn * No chance of a match if lengths differ...
1207 1.1 blymn */
1208 1.1 blymn if ((check == 0) && (expected->return_len != value->return_len))
1209 1.1 blymn err(1, "Byte validation failed, length mismatch");
1210 1.1 blymn
1211 1.1 blymn /*
1212 1.1 blymn * If check is 0 then we want to throw an error IFF the byte streams
1213 1.1 blymn * do not match, if check is 1 then throw an error if the byte
1214 1.1 blymn * streams match.
1215 1.1 blymn */
1216 1.1 blymn if (((check == 0) && memcmp(expected->return_value, value->return_value,
1217 1.1 blymn value->return_len) != 0) ||
1218 1.1 blymn ((check == 1) && (expected->return_len == value->return_len) &&
1219 1.1 blymn memcmp(expected->return_value, value->return_value,
1220 1.1 blymn value->return_len) == 0))
1221 1.4 christos err(1, "Validate expected %s byte stream at line %zu"
1222 1.1 blymn "of file %s",
1223 1.1 blymn (check == 0)? "matching" : "not matching", line, cur_file);
1224 1.1 blymn if (verbose)
1225 1.1 blymn fprintf(stderr, "Validated expected %s byte stream "
1226 1.4 christos "at line %zu of file %s\n",
1227 1.1 blymn (check == 0)? "matching" : "not matching",
1228 1.1 blymn line, cur_file);
1229 1.1 blymn }
1230 1.1 blymn
1231 1.1 blymn /*
1232 1.4 christos * Validate the variable at i against the expected value, throw an
1233 1.1 blymn * error if they don't match, if check is non-zero then the match is
1234 1.1 blymn * negated.
1235 1.1 blymn */
1236 1.1 blymn static void
1237 1.4 christos validate_variable(int ret, returns_enum_t type, const void *value, int i,
1238 1.4 christos int check)
1239 1.1 blymn {
1240 1.1 blymn returns_t *retval;
1241 1.1 blymn var_t *varptr;
1242 1.1 blymn
1243 1.7 joerg retval = &command.returns[ret];
1244 1.1 blymn varptr = &vars[command.returns[ret].return_index];
1245 1.1 blymn
1246 1.1 blymn if (varptr->value == NULL)
1247 1.4 christos err(1, "Variable %s has no value assigned to it", varptr->name);
1248 1.1 blymn
1249 1.1 blymn
1250 1.1 blymn if (varptr->type != type)
1251 1.4 christos err(1, "Variable %s is not the expected type", varptr->name);
1252 1.1 blymn
1253 1.1 blymn if (type != ret_byte) {
1254 1.1 blymn if ((((check == 0) && strcmp(value, varptr->value) != 0))
1255 1.1 blymn || ((check == 1) && strcmp(value, varptr->value) == 0))
1256 1.1 blymn err(1, "Variable %s contains %s instead of %s"
1257 1.4 christos " value %s at line %zu of file %s",
1258 1.4 christos varptr->name, (const char *)varptr->value,
1259 1.4 christos (check == 0)? "expected" : "not matching",
1260 1.4 christos (const char *)value,
1261 1.1 blymn line, cur_file);
1262 1.1 blymn if (verbose)
1263 1.1 blymn fprintf(stderr, "Variable %s contains %s value "
1264 1.4 christos "%s at line %zu of file %s\n",
1265 1.1 blymn varptr->name,
1266 1.1 blymn (check == 0)? "expected" : "not matching",
1267 1.4 christos (const char *)varptr->value, line, cur_file);
1268 1.1 blymn } else {
1269 1.1 blymn if ((check == 0) && (retval->return_len != varptr->len))
1270 1.1 blymn err(1, "Byte validation failed, length mismatch");
1271 1.1 blymn
1272 1.1 blymn /*
1273 1.1 blymn * If check is 0 then we want to throw an error IFF
1274 1.1 blymn * the byte streams do not match, if check is 1 then
1275 1.1 blymn * throw an error if the byte streams match.
1276 1.1 blymn */
1277 1.1 blymn if (((check == 0) && memcmp(retval->return_value, varptr->value,
1278 1.1 blymn varptr->len) != 0) ||
1279 1.1 blymn ((check == 1) && (retval->return_len == varptr->len) &&
1280 1.1 blymn memcmp(retval->return_value, varptr->value,
1281 1.1 blymn varptr->len) == 0))
1282 1.4 christos err(1, "Validate expected %s byte stream at line %zu"
1283 1.1 blymn " of file %s",
1284 1.1 blymn (check == 0)? "matching" : "not matching",
1285 1.1 blymn line, cur_file);
1286 1.1 blymn if (verbose)
1287 1.1 blymn fprintf(stderr, "Validated expected %s byte stream "
1288 1.4 christos "at line %zu of file %s\n",
1289 1.1 blymn (check == 0)? "matching" : "not matching",
1290 1.1 blymn line, cur_file);
1291 1.1 blymn }
1292 1.1 blymn }
1293 1.1 blymn
1294 1.1 blymn /*
1295 1.1 blymn * Write a string to the command pipe - we feed the number of bytes coming
1296 1.1 blymn * down first to allow storage allocation and then follow up with the data.
1297 1.1 blymn * If cmd is NULL then feed a -1 down the pipe to say the end of the args.
1298 1.1 blymn */
1299 1.1 blymn static void
1300 1.1 blymn write_cmd_pipe(char *cmd)
1301 1.1 blymn {
1302 1.1 blymn args_t arg;
1303 1.1 blymn size_t len;
1304 1.1 blymn
1305 1.1 blymn if (cmd == NULL)
1306 1.1 blymn len = 0;
1307 1.1 blymn else
1308 1.1 blymn len = strlen(cmd);
1309 1.1 blymn
1310 1.1 blymn arg.arg_type = arg_static;
1311 1.1 blymn arg.arg_len = len;
1312 1.1 blymn arg.arg_string = cmd;
1313 1.1 blymn write_cmd_pipe_args(arg.arg_type, &arg);
1314 1.1 blymn
1315 1.1 blymn }
1316 1.1 blymn
1317 1.1 blymn static void
1318 1.1 blymn write_cmd_pipe_args(args_state_t type, void *data)
1319 1.1 blymn {
1320 1.1 blymn var_t *var_data;
1321 1.1 blymn args_t *arg_data;
1322 1.1 blymn int len, send_type;
1323 1.1 blymn void *cmd;
1324 1.1 blymn
1325 1.1 blymn arg_data = data;
1326 1.2 blymn switch (type) {
1327 1.2 blymn case arg_var:
1328 1.2 blymn var_data = data;
1329 1.2 blymn len = var_data->len;
1330 1.2 blymn cmd = var_data->value;
1331 1.8 christos if (type == arg_byte)
1332 1.2 blymn send_type = ret_byte;
1333 1.2 blymn else
1334 1.2 blymn send_type = ret_string;
1335 1.2 blymn break;
1336 1.2 blymn
1337 1.2 blymn case arg_null:
1338 1.2 blymn send_type = ret_null;
1339 1.2 blymn len = 0;
1340 1.2 blymn break;
1341 1.2 blymn
1342 1.2 blymn default:
1343 1.1 blymn if ((arg_data->arg_len == 0) && (arg_data->arg_string == NULL))
1344 1.1 blymn len = -1;
1345 1.1 blymn else
1346 1.1 blymn len = arg_data->arg_len;
1347 1.1 blymn cmd = arg_data->arg_string;
1348 1.1 blymn if (type == arg_byte)
1349 1.1 blymn send_type = ret_byte;
1350 1.1 blymn else
1351 1.1 blymn send_type = ret_string;
1352 1.1 blymn }
1353 1.1 blymn
1354 1.1 blymn if (verbose)
1355 1.1 blymn fprintf(stderr, "Writing type %s to command pipe\n",
1356 1.1 blymn returns_enum_names[send_type]);
1357 1.1 blymn
1358 1.4 christos if (write(cmdpipe[WRITE_PIPE], &send_type, sizeof(int)) < 0)
1359 1.4 christos err(1, "command pipe write for type failed");
1360 1.1 blymn
1361 1.1 blymn if (verbose)
1362 1.1 blymn fprintf(stderr, "Writing length %d to command pipe\n", len);
1363 1.1 blymn
1364 1.4 christos if (write(cmdpipe[WRITE_PIPE], &len, sizeof(int)) < 0)
1365 1.4 christos err(1, "command pipe write for length failed");
1366 1.1 blymn
1367 1.1 blymn if (len > 0) {
1368 1.1 blymn if (verbose)
1369 1.1 blymn fprintf(stderr, "Writing data >%s< to command pipe\n",
1370 1.4 christos (const char *)cmd);
1371 1.4 christos if (write(cmdpipe[WRITE_PIPE], cmd, len) < 0)
1372 1.4 christos err(1, "command pipe write of data failed");
1373 1.1 blymn }
1374 1.1 blymn }
1375 1.1 blymn
1376 1.1 blymn /*
1377 1.1 blymn * Read a response from the command pipe, first we will receive the
1378 1.1 blymn * length of the response then the actual data.
1379 1.1 blymn */
1380 1.1 blymn static void
1381 1.1 blymn read_cmd_pipe(returns_t *response)
1382 1.1 blymn {
1383 1.1 blymn int len, type;
1384 1.4 christos struct pollfd rfd[2];
1385 1.1 blymn char *str;
1386 1.1 blymn
1387 1.1 blymn /*
1388 1.1 blymn * Check if there is data to read - just in case slave has died, we
1389 1.1 blymn * don't want to block on the read and just hang. We also check
1390 1.1 blymn * output from the slave because the slave may be blocked waiting
1391 1.1 blymn * for a flush on its stdout.
1392 1.1 blymn */
1393 1.4 christos rfd[0].fd = slvpipe[READ_PIPE];
1394 1.4 christos rfd[0].events = POLLIN;
1395 1.4 christos rfd[1].fd = master;
1396 1.4 christos rfd[1].events = POLLIN;
1397 1.1 blymn
1398 1.1 blymn do {
1399 1.4 christos rfd[0].revents = 0;
1400 1.4 christos rfd[1].revents = 0;
1401 1.1 blymn
1402 1.5 christos if (poll(rfd, 2, 4000) == 0)
1403 1.5 christos errx(2, "%s, %zu: Command pipe read timeout",
1404 1.5 christos cur_file, line);
1405 1.1 blymn
1406 1.4 christos if ((rfd[1].revents & POLLIN) == POLLIN) {
1407 1.1 blymn if (verbose)
1408 1.1 blymn fprintf(stderr,
1409 1.1 blymn "draining output from slave\n");
1410 1.1 blymn save_slave_output(false);
1411 1.1 blymn }
1412 1.1 blymn }
1413 1.4 christos while((rfd[1].revents & POLLIN) == POLLIN);
1414 1.1 blymn
1415 1.4 christos if (read(slvpipe[READ_PIPE], &type, sizeof(int)) < 0)
1416 1.4 christos err(1, "command pipe read for type failed");
1417 1.1 blymn response->return_type = type;
1418 1.1 blymn
1419 1.1 blymn if ((type != ret_ok) && (type != ret_err) && (type != ret_count)) {
1420 1.4 christos if (read(slvpipe[READ_PIPE], &len, sizeof(int)) < 0)
1421 1.4 christos err(1, "command pipe read for length failed");
1422 1.1 blymn response->return_len = len;
1423 1.1 blymn
1424 1.1 blymn if (verbose)
1425 1.1 blymn fprintf(stderr,
1426 1.1 blymn "Reading %d bytes from command pipe\n", len);
1427 1.1 blymn
1428 1.1 blymn if ((response->return_value = malloc(len + 1)) == NULL)
1429 1.1 blymn err(1, "Failed to alloc memory for cmd pipe read");
1430 1.1 blymn
1431 1.4 christos if (read(slvpipe[READ_PIPE], response->return_value, len) < 0)
1432 1.4 christos err(1, "command pipe read of data failed");
1433 1.1 blymn
1434 1.1 blymn if (response->return_type != ret_byte) {
1435 1.1 blymn str = response->return_value;
1436 1.1 blymn str[len] = '\0';
1437 1.1 blymn
1438 1.1 blymn if (verbose)
1439 1.1 blymn fprintf(stderr, "Read data >%s< from pipe\n",
1440 1.4 christos (const char *)response->return_value);
1441 1.1 blymn }
1442 1.1 blymn } else {
1443 1.1 blymn response->return_value = NULL;
1444 1.1 blymn if (type == ret_count) {
1445 1.4 christos if (read(slvpipe[READ_PIPE], &len, sizeof(int)) < 0)
1446 1.4 christos err(1, "command pipe read for number of "
1447 1.1 blymn "returns failed");
1448 1.1 blymn response->return_len = len;
1449 1.1 blymn }
1450 1.1 blymn
1451 1.1 blymn if (verbose)
1452 1.1 blymn fprintf(stderr, "Read type %s from pipe\n",
1453 1.1 blymn returns_enum_names[type]);
1454 1.1 blymn }
1455 1.1 blymn }
1456 1.1 blymn
1457 1.1 blymn /*
1458 1.1 blymn * Check for writes from the slave on the pty, save the output into a
1459 1.1 blymn * buffer for later checking if discard is false.
1460 1.1 blymn */
1461 1.1 blymn #define MAX_DRAIN 256
1462 1.1 blymn
1463 1.1 blymn static void
1464 1.1 blymn save_slave_output(bool discard)
1465 1.1 blymn {
1466 1.1 blymn struct pollfd fd;
1467 1.1 blymn char *new_data, drain[MAX_DRAIN];
1468 1.1 blymn size_t to_allocate;
1469 1.4 christos ssize_t result;
1470 1.4 christos size_t i;
1471 1.1 blymn
1472 1.1 blymn fd.fd = master;
1473 1.1 blymn fd.events = POLLIN;
1474 1.1 blymn fd.revents = 0;
1475 1.1 blymn
1476 1.1 blymn result = 0;
1477 1.1 blymn while (1) {
1478 1.1 blymn if (result == -1)
1479 1.1 blymn err(2, "poll of slave pty failed");
1480 1.1 blymn result = MAX_DRAIN;
1481 1.1 blymn if ((result = read(master, &drain, result)) < 0) {
1482 1.1 blymn if (errno == EAGAIN)
1483 1.1 blymn break;
1484 1.1 blymn else
1485 1.1 blymn err(2, "draining slave pty failed");
1486 1.1 blymn }
1487 1.1 blymn
1488 1.1 blymn fd.revents = 0;
1489 1.5 christos if (!discard) {
1490 1.4 christos if ((size_t)result >
1491 1.1 blymn (saved_output.allocated - saved_output.count)) {
1492 1.1 blymn to_allocate = 1024 * ((result / 1024) + 1);
1493 1.1 blymn
1494 1.1 blymn if ((new_data = realloc(saved_output.data,
1495 1.1 blymn saved_output.allocated + to_allocate))
1496 1.1 blymn == NULL)
1497 1.1 blymn err(2, "Realloc of saved_output failed");
1498 1.1 blymn saved_output.data = new_data;
1499 1.1 blymn saved_output.allocated += to_allocate;
1500 1.1 blymn }
1501 1.1 blymn
1502 1.1 blymn if (verbose) {
1503 1.5 christos fprintf(stderr, "count = %zu, "
1504 1.5 christos "allocated = %zu\n", saved_output.count,
1505 1.5 christos saved_output.allocated);
1506 1.4 christos for (i = 0; i < (size_t)result; i++) {
1507 1.1 blymn fprintf(stderr, "Saving slave output "
1508 1.5 christos "0x%x (%c)\n", drain[i],
1509 1.5 christos (drain[i] >= ' ')? drain[i] : '-');
1510 1.1 blymn }
1511 1.1 blymn }
1512 1.1 blymn
1513 1.1 blymn memcpy(&saved_output.data[saved_output.count], drain,
1514 1.1 blymn result);
1515 1.1 blymn saved_output.count += result;
1516 1.1 blymn
1517 1.1 blymn if (verbose) {
1518 1.5 christos fprintf(stderr, "count = %zu, "
1519 1.5 christos "allocated = %zu\n", saved_output.count,
1520 1.5 christos saved_output.allocated);
1521 1.1 blymn }
1522 1.1 blymn } else {
1523 1.1 blymn if (verbose) {
1524 1.4 christos for (i=0; i < (size_t)result; i++) {
1525 1.1 blymn fprintf(stderr, "Discarding slave "
1526 1.5 christos "output 0x%x (%c)\n",
1527 1.5 christos drain[i],
1528 1.5 christos (drain[i] >= ' ')? drain[i] : '-');
1529 1.1 blymn }
1530 1.1 blymn }
1531 1.1 blymn }
1532 1.1 blymn }
1533 1.1 blymn }
1534 1.1 blymn
1535 1.1 blymn static void
1536 1.1 blymn yyerror(const char *msg)
1537 1.1 blymn {
1538 1.1 blymn warnx("%s in line %zu of file %s", msg, line, cur_file);
1539 1.1 blymn }
1540