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Amit Daniel Kachhape6a01f52011-07-20 11:45:59 +05301/****************************************************************************
2 * Copyright (c) 1998-2007,2008 Free Software Foundation, Inc. *
3 * *
4 * Permission is hereby granted, free of charge, to any person obtaining a *
5 * copy of this software and associated documentation files (the *
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9 * copies of the Software, and to permit persons to whom the Software is *
10 * furnished to do so, subject to the following conditions: *
11 * *
12 * The above copyright notice and this permission notice shall be included *
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14 * *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS *
16 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF *
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21 * THE USE OR OTHER DEALINGS IN THE SOFTWARE. *
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23 * Except as contained in this notice, the name(s) of the above copyright *
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26 * authorization. *
27 ****************************************************************************/
28
29/*
30 * Author: Thomas E. Dickey (1998-on)
31 *
32 * $Id: ditto.c,v 1.32 2008/08/04 13:21:41 tom Exp $
33 *
34 * The program illustrates how to set up multiple screens from a single
35 * program.
36 *
37 * If openpty() is supported, the command line parameters are titles for
38 * the windows showing each screen's data.
39 *
40 * If openpty() is not supported, you must invoke the program by specifying
41 * another terminal on the same machine by specifying its device, e.g.,
42 * ditto /dev/ttyp1
43 */
44#include <test.priv.h>
45#include <sys/stat.h>
46#include <errno.h>
47
48#ifdef USE_PTHREADS
49#include <pthread.h>
50#endif
51
52#ifdef USE_XTERM_PTY
53#include USE_OPENPTY_HEADER
54#endif
55
56#define MAX_FIFO 256
57
58#define THIS_FIFO(n) ((n) % MAX_FIFO)
59#define NEXT_FIFO(n) THIS_FIFO((n) + 1)
60
61typedef struct {
62 unsigned long sequence;
63 int head;
64 int tail;
65 int data[MAX_FIFO];
66} FIFO;
67
68typedef struct {
69 unsigned long sequence;
70} PEEK;
71
72/*
73 * Data "owned" for a single screen. Each screen is divided into windows that
74 * show the text read from each terminal. Input from a given screen will also
75 * be read into one window per screen.
76 */
77typedef struct {
78 FILE *input;
79 FILE *output;
80 SCREEN *screen; /* this screen - curses internal data */
81 int which1; /* this screen's index in DITTO[] array */
82 int length; /* length of windows[] and peeks[] */
83 char **titles; /* per-window titles */
84 WINDOW **windows; /* display data from each screen */
85 PEEK *peeks; /* indices for each screen's fifo */
86 FIFO fifo; /* fifo for this screen */
87#ifdef USE_PTHREADS
88 pthread_t thread;
89#endif
90} DITTO;
91
92/*
93 * Structure used to pass multiple parameters via the use_screen()
94 * single-parameter interface.
95 */
96typedef struct {
97 int source; /* which screen did character come from */
98 int target; /* which screen is character going to */
99 DITTO *ditto; /* data for all screens */
100} DDATA;
101
102static void
103failed(const char *s)
104{
105 perror(s);
106 ExitProgram(EXIT_FAILURE);
107}
108
109static void
110usage(void)
111{
112 fprintf(stderr, "usage: ditto [terminal1 ...]\n");
113 ExitProgram(EXIT_FAILURE);
114}
115
116/* Add to the head of the fifo, checking for overflow. */
117static void
118put_fifo(FIFO * fifo, int value)
119{
120 int next = NEXT_FIFO(fifo->head);
121 if (next == fifo->tail)
122 fifo->tail = NEXT_FIFO(fifo->tail);
123 fifo->data[next] = value;
124 fifo->head = next;
125 fifo->sequence += 1;
126}
127
128/* Get data from the tail (oldest part) of the fifo, returning -1 if no data.
129 * Since each screen can peek into the fifo, we do not update the tail index,
130 * but modify the peek-index.
131 *
132 * FIXME - test/workaround for case where fifo gets more than a buffer
133 * ahead of peek.
134 */
135static int
136peek_fifo(FIFO * fifo, PEEK * peek)
137{
138 int result = -1;
139 if (peek->sequence < fifo->sequence) {
140 peek->sequence += 1;
141 result = fifo->data[THIS_FIFO(peek->sequence)];
142 }
143 return result;
144}
145
146static FILE *
147open_tty(char *path)
148{
149 FILE *fp;
150#ifdef USE_XTERM_PTY
151 int amaster;
152 int aslave;
153 char slave_name[1024];
154 char s_option[sizeof(slave_name) + 80];
155 char *leaf;
156
157 if (openpty(&amaster, &aslave, slave_name, 0, 0) != 0
158 || strlen(slave_name) > sizeof(slave_name) - 1)
159 failed("openpty");
160 if ((leaf = strrchr(slave_name, '/')) == 0) {
161 errno = EISDIR;
162 failed(slave_name);
163 }
164 sprintf(s_option, "-S%s/%d", slave_name, aslave);
165 if (fork()) {
166 execlp("xterm", "xterm", s_option, "-title", path, (char *) 0);
167 _exit(0);
168 }
169 fp = fdopen(amaster, "r+");
170 if (fp == 0)
171 failed(path);
172#else
173 struct stat sb;
174
175 if (stat(path, &sb) < 0)
176 failed(path);
177 if ((sb.st_mode & S_IFMT) != S_IFCHR) {
178 errno = ENOTTY;
179 failed(path);
180 }
181 fp = fopen(path, "r+");
182 if (fp == 0)
183 failed(path);
184 printf("opened %s\n", path);
185#endif
186 assert(fp != 0);
187 return fp;
188}
189
190static void
191init_screen(SCREEN *sp GCC_UNUSED, void *arg)
192{
193 DITTO *target = (DITTO *) arg;
194 int high, wide;
195 int k;
196
197 cbreak();
198 noecho();
199 scrollok(stdscr, TRUE);
200 box(stdscr, 0, 0);
201
202 target->windows = typeCalloc(WINDOW *, (size_t) target->length);
203 target->peeks = typeCalloc(PEEK, (size_t) target->length);
204
205 high = (LINES - 2) / target->length;
206 wide = (COLS - 2);
207 for (k = 0; k < target->length; ++k) {
208 WINDOW *outer = newwin(high, wide, 1 + (high * k), 1);
209 WINDOW *inner = derwin(outer, high - 2, wide - 2, 1, 1);
210
211 box(outer, 0, 0);
212 mvwaddstr(outer, 0, 2, target->titles[k]);
213 wnoutrefresh(outer);
214
215 scrollok(inner, TRUE);
216 keypad(inner, TRUE);
217#ifndef USE_PTHREADS
218 nodelay(inner, TRUE);
219#endif
220
221 target->windows[k] = inner;
222 }
223 doupdate();
224}
225
226static void
227open_screen(DITTO * target, char **source, int length, int which1)
228{
229 if (which1 != 0) {
230 target->input =
231 target->output = open_tty(source[which1]);
232 } else {
233 target->input = stdin;
234 target->output = stdout;
235 }
236
237 target->which1 = which1;
238 target->titles = source;
239 target->length = length;
240 target->screen = newterm((char *) 0, /* assume $TERM is the same */
241 target->output,
242 target->input);
243
244 if (target->screen == 0)
245 failed("newterm");
246
247 (void) USING_SCREEN(target->screen, init_screen, target);
248}
249
250static int
251close_screen(SCREEN *sp GCC_UNUSED, void *arg GCC_UNUSED)
252{
253 (void) sp;
254 (void) arg;
255 return endwin();
256}
257
258/*
259 * Read data from the 'source' screen.
260 */
261static int
262read_screen(SCREEN *sp GCC_UNUSED, void *arg)
263{
264 DDATA *data = (DDATA *) arg;
265 DITTO *ditto = &(data->ditto[data->source]);
266 WINDOW *win = ditto->windows[data->source];
267 int ch = wgetch(win);
268
269 if (ch > 0 && ch < 256)
270 put_fifo(&(ditto->fifo), ch);
271 else
272 ch = ERR;
273
274 return ch;
275}
276
277/*
278 * Write all of the data that's in fifos for the 'target' screen.
279 */
280static int
281write_screen(SCREEN *sp GCC_UNUSED, void *arg GCC_UNUSED)
282{
283 DDATA *data = (DDATA *) arg;
284 DITTO *ditto = &(data->ditto[data->target]);
285 bool changed = FALSE;
286 int which;
287
288 for (which = 0; which < ditto->length; ++which) {
289 WINDOW *win = ditto->windows[which];
290 FIFO *fifo = &(data->ditto[which].fifo);
291 PEEK *peek = &(ditto->peeks[which]);
292 int ch;
293
294 while ((ch = peek_fifo(fifo, peek)) > 0) {
295 changed = TRUE;
296
297 waddch(win, (chtype) ch);
298 wnoutrefresh(win);
299 }
300 }
301
302 if (changed)
303 doupdate();
304 return OK;
305}
306
307static void
308show_ditto(DITTO * data, int count, DDATA * ddata)
309{
310 int n;
311
312 for (n = 0; n < count; n++) {
313 ddata->target = n;
314 USING_SCREEN(data[n].screen, write_screen, (void *) ddata);
315 }
316}
317
318#ifdef USE_PTHREADS
319static void *
320handle_screen(void *arg)
321{
322 DDATA ddata;
323 int ch;
324
325 memset(&ddata, 0, sizeof(ddata));
326 ddata.ditto = (DITTO *) arg;
327 ddata.source = ddata.ditto->which1;
328 ddata.ditto -= ddata.source; /* -> base of array */
329
330 for (;;) {
331 ch = read_screen(ddata.ditto->screen, &ddata);
332 if (ch == CTRL('D')) {
333 int later = (ddata.source ? ddata.source : -1);
334 int j;
335
336 for (j = ddata.ditto->length - 1; j > 0; --j) {
337 if (j != later) {
338 pthread_cancel(ddata.ditto[j].thread);
339 }
340 }
341 if (later > 0) {
342 pthread_cancel(ddata.ditto[later].thread);
343 }
344 break;
345 }
346 show_ditto(ddata.ditto, ddata.ditto->length, &ddata);
347 }
348 return NULL;
349}
350#endif
351
352int
353main(int argc, char *argv[])
354{
355 int j;
356 DITTO *data;
357#ifndef USE_PTHREADS
358 int count;
359#endif
360
361 if (argc <= 1)
362 usage();
363
364 if ((data = typeCalloc(DITTO, (size_t) argc)) == 0)
365 failed("calloc data");
366
367 for (j = 0; j < argc; j++) {
368 open_screen(&data[j], argv, argc, j);
369 }
370
371#ifdef USE_PTHREADS
372 /*
373 * For multi-threaded operation, set up a reader for each of the screens.
374 * That uses blocking I/O rather than polling for input, so no calls to
375 * napms() are needed.
376 */
377 for (j = 0; j < argc; j++) {
378 (void) pthread_create(&(data[j].thread), NULL, handle_screen, &data[j]);
379 }
380 pthread_join(data[1].thread, NULL);
381#else
382 /*
383 * Loop, reading characters from any of the inputs and writing to all
384 * of the screens.
385 */
386 for (count = 0;; ++count) {
387 DDATA ddata;
388 int ch;
389 int which = (count % argc);
390
391 napms(20);
392
393 ddata.source = which;
394 ddata.ditto = data;
395
396 ch = USING_SCREEN(data[which].screen, read_screen, &ddata);
397 if (ch == CTRL('D')) {
398 break;
399 } else if (ch != ERR) {
400 show_ditto(data, argc, &ddata);
401 }
402 }
403#endif
404
405 /*
406 * Cleanup and exit
407 */
408 for (j = argc - 1; j >= 0; j--) {
409 USING_SCREEN(data[j].screen, close_screen, 0);
410 fprintf(data[j].output, "**Closed\r\n");
411
412 /*
413 * Closing before a delscreen() helps ncurses determine that there
414 * is no valid output buffer, and can remove the setbuf() data.
415 */
416 fflush(data[j].output);
417 fclose(data[j].output);
418 delscreen(data[j].screen);
419 }
420 ExitProgram(EXIT_SUCCESS);
421}