- add guess-rev.sh and contrib/libdcc to dist
[openocd.git] / src / ecosboard.c
1 /***************************************************************************
2 * Copyright (C) 2007-2008 by Øyvind Harboe *
3 * *
4 * This program is free software; you can redistribute it and/or modify *
5 * it under the terms of the GNU General Public License as published by *
6 * the Free Software Foundation; either version 2 of the License, or *
7 * (at your option) any later version. *
8 * *
9 * This program is distributed in the hope that it will be useful, *
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
12 * GNU General Public License for more details. *
13 * *
14 * You should have received a copy of the GNU General Public License *
15 * along with this program; if not, write to the *
16 * Free Software Foundation, Inc., *
17 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. *
18 ***************************************************************************/
19
20 #ifdef HAVE_CONFIG_H
21 #include "config.h"
22 #endif
23
24 #include "log.h"
25 #include "types.h"
26 #include "jtag.h"
27 #include "configuration.h"
28 #include "xsvf.h"
29 #include "target.h"
30 #include "flash.h"
31 #include "nand.h"
32 #include "pld.h"
33
34 #include "command.h"
35 #include "server.h"
36 #include "telnet_server.h"
37 #include "gdb_server.h"
38
39 #include <time_support.h>
40 #include <sys/time.h>
41 #include <sys/types.h>
42 #include <strings.h>
43 #include <stdio.h>
44 #include <stdlib.h>
45 #include <string.h>
46 #include <unistd.h>
47 #include <errno.h>
48
49 #include <cyg/io/flash.h>
50 #include <pkgconf/fs_jffs2.h> // Address of JFFS2
51 #include <network.h>
52
53 #include <fcntl.h>
54 #include <sys/stat.h>
55 #include <cyg/fileio/fileio.h>
56 #include <dirent.h>
57 #include <cyg/athttpd/http.h>
58 #include <cyg/athttpd/socket.h>
59 #include <cyg/athttpd/handler.h>
60 #include <cyg/athttpd/cgi.h>
61 #include <cyg/athttpd/forms.h>
62 #include <cyg/discover/discover.h>
63 #include <cyg/hal/hal_diag.h>
64 #include <cyg/kernel/kapi.h>
65 #include <cyg/io/serialio.h>
66 #include <cyg/io/io.h>
67 #include <netinet/tcp.h>
68 #include "rom.h"
69 #include <sys/ioctl.h>
70 #include <sys/socket.h>
71 #include <netinet/in.h>
72 #include <net/if.h>
73 #include <arpa/inet.h>
74 #include <sys/types.h>
75 #include <sys/socket.h>
76 #include <netdb.h>
77 #include <netinet/in.h>
78 #include <unistd.h>
79 #include <arpa/inet.h>
80 #include <stdio.h>
81 #include <ifaddrs.h>
82 #include <string.h>
83
84 #include <unistd.h>
85 #include <stdio.h>
86 #define MAX_IFS 64
87 #if defined(CYGPKG_NET_FREEBSD_STACK)
88 #include <tftp_support.h>
89 /* posix compatibility broken*/
90 struct tftpd_fileops fileops =
91 {
92 (int (*)(const char *, int))open,
93 close,
94 (int (*)(int, const void *, int))write,
95 ( int (*)(int, void *, int))read
96 };
97
98 #endif
99
100
101 void diag_write(char *buf, int len)
102 {
103 int j;
104 for (j = 0; j < len; j++)
105 {
106 diag_printf("%c", buf[j]);
107 }
108 }
109
110 static bool serialLog = true;
111 static bool writeLog = true;
112
113 char hwaddr[512];
114
115
116 extern flash_driver_t *flash_drivers[];
117 extern target_type_t *target_types[];
118
119 #ifdef CYGPKG_PROFILE_GPROF
120 #include <cyg/profile/profile.h>
121
122 extern char _stext, _etext; // Defined by the linker
123
124 static char *start_of_code=&_stext;
125 static char *end_of_code=&_etext;
126
127 void start_profile(void)
128 {
129 // This starts up the system-wide profiling, gathering
130 // profile information on all of the code, with a 16 byte
131 // "bucket" size, at a rate of 100us/profile hit.
132 // Note: a bucket size of 16 will give pretty good function
133 // resolution. Much smaller and the buffer becomes
134 // much too large for very little gain.
135 // Note: a timer period of 100us is also a reasonable
136 // compromise. Any smaller and the overhead of
137 // handling the timter (profile) interrupt could
138 // swamp the system. A fast processor might get
139 // by with a smaller value, but a slow one could
140 // even be swamped by this value. If the value is
141 // too large, the usefulness of the profile is reduced.
142
143 // no more interrupts than 1/10ms.
144 //profile_on((void *)0, (void *)0x40000, 16, 10000); // SRAM
145 // profile_on(0, &_etext, 16, 10000); // SRAM & DRAM
146 profile_on(start_of_code, end_of_code, 16, 10000); // Nios DRAM
147 }
148 #endif
149
150 extern int eth0_up;
151 static FILE *log;
152
153 static char reboot_stack[2048];
154
155 static void zylinjtag_reboot(cyg_addrword_t data)
156 {
157 serialLog = true;
158 diag_printf("Rebooting in 100 ticks..\n");
159 cyg_thread_delay(100);
160 diag_printf("Unmounting /config..\n");
161 umount("/config");
162 diag_printf("Rebooting..\n");
163 HAL_PLATFORM_RESET();
164 }
165 static cyg_thread zylinjtag_thread_object;
166 static cyg_handle_t zylinjtag_thread_handle;
167
168 void reboot(void)
169 {
170 cyg_thread_create(1, zylinjtag_reboot, (cyg_addrword_t) 0, "reboot Thread",
171 (void *) reboot_stack, sizeof(reboot_stack),
172 &zylinjtag_thread_handle, &zylinjtag_thread_object);
173 cyg_thread_resume(zylinjtag_thread_handle);
174 }
175
176 int configuration_output_handler(struct command_context_s *context,
177 const char* line)
178 {
179 diag_printf("%s", line);
180
181 return ERROR_OK;
182 }
183
184 int zy1000_configuration_output_handler_log(struct command_context_s *context,
185 const char* line)
186 {
187 LOG_USER_N("%s", line);
188
189 return ERROR_OK;
190 }
191
192 #ifdef CYGPKG_PROFILE_GPROF
193 extern void start_profile(void);
194
195 int eCosBoard_handle_eCosBoard_profile_command(struct command_context_s *cmd_ctx, char *cmd, char **args, int argc)
196 {
197 command_print(cmd_ctx, "Profiling started");
198 start_profile();
199 return ERROR_OK;
200 }
201
202 #endif
203
204 externC void phi_init_all_network_interfaces(void);
205
206 command_context_t *cmd_ctx;
207
208 static bool webRunning = false;
209
210 void keep_webserver(void)
211 {
212 // Target initialisation is only attempted at startup, so we sleep forever and
213 // let the http server bail us out(i.e. get config files set up).
214 diag_printf("OpenOCD has invoked exit().\n"
215 "Use web server to correct any configuration settings and reboot.\n");
216 if (!webRunning)
217 reboot();
218
219 // exit() will terminate the current thread and we we'll then sleep eternally or
220 // we'll have a reboot scheduled.
221 }
222
223 extern void printDccChar(char c);
224
225 static char logBuffer[128 * 1024];
226 static const int logSize = sizeof(logBuffer);
227 int writePtr = 0;
228 int logCount = 0;
229
230 void _zylinjtag_diag_write_char(char c, void **param)
231 {
232 if (writeLog)
233 {
234 logBuffer[writePtr] = c;
235 writePtr = (writePtr + 1) % logSize;
236 logCount++;
237 }
238 if (serialLog)
239 {
240 if (c == '\n')
241 {
242 HAL_DIAG_WRITE_CHAR('\r');
243 }
244 HAL_DIAG_WRITE_CHAR(c);
245 }
246
247 #ifdef CYGPKG_HAL_ZYLIN_PHI
248 printDccChar(c);
249 #endif
250 }
251
252 void copyfile(char *name2, char *name1);
253
254 void copydir(char *name, char *destdir);
255
256 #if 0
257 MTAB_ENTRY( romfs_mte1,
258 "/rom",
259 "romfs",
260 "",
261 (CYG_ADDRWORD) &filedata[0] );
262 #endif
263
264 void openocd_sleep_prelude(void)
265 {
266 cyg_mutex_unlock(&httpstate.jim_lock);
267 }
268
269 void openocd_sleep_postlude(void)
270 {
271 cyg_mutex_lock(&httpstate.jim_lock);
272 }
273
274 void format(void)
275 {
276 diag_printf("Formatting JFFS2...\n");
277
278 cyg_io_handle_t handle;
279
280 Cyg_ErrNo err;
281 err = cyg_io_lookup(CYGDAT_IO_FLASH_BLOCK_DEVICE_NAME_1, &handle);
282 if (err != ENOERR)
283 {
284 diag_printf("Flash Error cyg_io_lookup: %d\n", err);
285 reboot();
286 }
287
288 cyg_uint32 len;
289 cyg_io_flash_getconfig_devsize_t ds;
290 len = sizeof(ds);
291 err = cyg_io_get_config(handle, CYG_IO_GET_CONFIG_FLASH_DEVSIZE, &ds, &len);
292 if (err != ENOERR)
293 {
294 diag_printf("Flash error cyg_io_get_config %d\n", err);
295 reboot();
296 }
297
298 cyg_io_flash_getconfig_erase_t e;
299 void *err_addr;
300 len = sizeof(e);
301
302 e.offset = 0;
303 e.len = ds.dev_size;
304 e.err_address = &err_addr;
305
306 diag_printf("Formatting 0x%08x bytes\n", ds.dev_size);
307 err = cyg_io_get_config(handle, CYG_IO_GET_CONFIG_FLASH_ERASE, &e, &len);
308 if (err != ENOERR)
309 {
310 diag_printf("Flash erase error %d offset 0x%p\n", err, err_addr);
311 reboot();
312 }
313
314 diag_printf("Flash formatted successfully\n");
315
316 reboot();
317 }
318
319 static int zylinjtag_Jim_Command_format_jffs2(Jim_Interp *interp, int argc,
320 Jim_Obj * const *argv)
321 {
322 if (argc != 1)
323 {
324 return JIM_ERR;
325 }
326
327 format();
328 for (;;)
329 ;
330 }
331
332 static int zylinjtag_Jim_Command_threads(Jim_Interp *interp, int argc,
333 Jim_Obj * const *argv)
334 {
335 cyg_handle_t thread = 0;
336 cyg_uint16 id = 0;
337 Jim_Obj *threads = Jim_NewListObj(interp, NULL, 0);
338
339 /* Loop over the threads, and generate a table row for
340 * each.
341 */
342 while (cyg_thread_get_next(&thread, &id))
343 {
344 Jim_Obj *threadObj = Jim_NewListObj(interp, NULL, 0);
345
346 cyg_thread_info info;
347 char *state_string;
348
349 cyg_thread_get_info(thread, id, &info);
350
351 if (info.name == NULL)
352 info.name = "<no name>";
353
354 Jim_ListAppendElement(interp, threadObj, Jim_NewStringObj(interp,
355 info.name, strlen(info.name)));
356
357 /* Translate the state into a string.
358 */
359 if (info.state == 0)
360 state_string = "RUN";
361 else if (info.state & 0x04)
362 state_string = "SUSP";
363 else
364 switch (info.state & 0x1b)
365 {
366 case 0x01:
367 state_string = "SLEEP";
368 break;
369 case 0x02:
370 state_string = "CNTSLEEP";
371 break;
372 case 0x08:
373 state_string = "CREATE";
374 break;
375 case 0x10:
376 state_string = "EXIT";
377 break;
378 default:
379 state_string = "????";
380 break;
381 }
382
383 Jim_ListAppendElement(interp, threadObj, Jim_NewStringObj(interp,
384 state_string, strlen(state_string)));
385
386 Jim_ListAppendElement(interp, threadObj, Jim_NewIntObj(interp, id));
387 Jim_ListAppendElement(interp, threadObj, Jim_NewIntObj(interp,
388 info.set_pri));
389 Jim_ListAppendElement(interp, threadObj, Jim_NewIntObj(interp,
390 info.cur_pri));
391
392 Jim_ListAppendElement(interp, threads, threadObj);
393 }
394 Jim_SetResult(interp, threads);
395
396 return JIM_OK;
397 }
398
399 static int zylinjtag_Jim_Command_log(Jim_Interp *interp, int argc,
400 Jim_Obj * const *argv)
401 {
402 Jim_Obj *tclOutput = Jim_NewStringObj(interp, "", 0);
403
404 if (logCount >= logSize)
405 {
406 Jim_AppendString(httpstate.jim_interp, tclOutput, logBuffer + logCount
407 % logSize, logSize - logCount % logSize);
408 }
409 Jim_AppendString(httpstate.jim_interp, tclOutput, logBuffer, writePtr);
410
411 Jim_SetResult(interp, tclOutput);
412 return JIM_OK;
413 }
414
415 static int zylinjtag_Jim_Command_reboot(Jim_Interp *interp, int argc,
416 Jim_Obj * const *argv)
417 {
418 reboot();
419 return JIM_OK;
420 }
421
422
423 extern Jim_Interp *interp;
424
425 static void zylinjtag_startNetwork(void)
426 {
427 // Bring TCP/IP up immediately before we're ready to accept commands.
428 //
429 // That is as soon as a PING responds, we're accepting telnet sessions.
430 #if defined(CYGPKG_NET_FREEBSD_STACK)
431 phi_init_all_network_interfaces();
432 #else
433 lwip_init();
434 #endif
435 if (!eth0_up)
436 {
437 diag_printf("Network not up and running\n");
438 exit(-1);
439 }
440 #if defined(CYGPKG_NET_FREEBSD_STACK)
441 /*start TFTP*/
442 tftpd_start(69, &fileops);
443 #endif
444
445 cyg_httpd_init_tcl_interpreter();
446
447 interp = httpstate.jim_interp;
448
449 Jim_CreateCommand(httpstate.jim_interp, "log", zylinjtag_Jim_Command_log,
450 NULL, NULL);
451 Jim_CreateCommand(httpstate.jim_interp, "reboot",
452 zylinjtag_Jim_Command_reboot, NULL, NULL);
453 Jim_CreateCommand(httpstate.jim_interp, "threads",
454 zylinjtag_Jim_Command_threads, NULL, NULL);
455 Jim_CreateCommand(httpstate.jim_interp, "format_jffs2",
456 zylinjtag_Jim_Command_format_jffs2, NULL, NULL);
457
458 cyg_httpd_start();
459
460 webRunning = true;
461
462 diag_printf("Web server running\n");
463
464 int s;
465 struct ifreq ifr;
466 s = socket(AF_INET, SOCK_DGRAM, 0);
467 if (s >= 0)
468 {
469 strcpy(ifr.ifr_name, "eth0");
470 int res;
471 res = ioctl(s, SIOCGIFHWADDR, &ifr);
472 close(s);
473
474 if (res < 0)
475 {
476 diag_printf("Can't obtain MAC address\n");
477 reboot();
478 }
479 }
480
481 sprintf(hwaddr, "%02x:%02x:%02x:%02x:%02x:%02x",
482 (int) ((unsigned char *) &ifr.ifr_hwaddr.sa_data)[0],
483 (int) ((unsigned char *) &ifr.ifr_hwaddr.sa_data)[1],
484 (int) ((unsigned char *) &ifr.ifr_hwaddr.sa_data)[2],
485 (int) ((unsigned char *) &ifr.ifr_hwaddr.sa_data)[3],
486 (int) ((unsigned char *) &ifr.ifr_hwaddr.sa_data)[4],
487 (int) ((unsigned char *) &ifr.ifr_hwaddr.sa_data)[5]);
488
489 discover_message
490 = alloc_printf("ZY1000 Zylin JTAG debugger MAC %s", hwaddr);
491
492 discover_launch();
493 }
494
495 static void print_exception_handler(cyg_addrword_t data, cyg_code_t exception,
496 cyg_addrword_t info)
497 {
498 writeLog = false;
499 serialLog = true;
500 char *infoStr = "unknown";
501 switch (exception)
502 {
503 #ifdef CYGNUM_HAL_VECTOR_UNDEF_INSTRUCTION
504 case CYGNUM_HAL_VECTOR_UNDEF_INSTRUCTION:
505 infoStr = "undefined instruction";
506 break;
507 case CYGNUM_HAL_VECTOR_SOFTWARE_INTERRUPT:
508 infoStr = "software interrupt";
509 break;
510 case CYGNUM_HAL_VECTOR_ABORT_PREFETCH:
511 infoStr = "abort prefetch";
512 break;
513 case CYGNUM_HAL_VECTOR_ABORT_DATA:
514 infoStr = "abort data";
515 break;
516 #endif
517 default:
518 break;
519 }
520
521 diag_printf("Exception: %08x(%s) %08x\n", exception, infoStr, info);
522
523 diag_printf("Dumping log\n---\n");
524 if (logCount >= logSize)
525 {
526 diag_write(logBuffer + logCount % logSize, logSize - logCount % logSize);
527 }
528 diag_write(logBuffer, writePtr);
529
530 diag_printf("---\nLogdump complete.\n");
531 diag_printf("Exception: %08x(%s) %08x\n", exception, infoStr, info);
532 diag_printf("\n---\nRebooting\n");
533 HAL_PLATFORM_RESET();
534
535 }
536
537 static void setHandler(cyg_code_t exception)
538 {
539 cyg_exception_handler_t *old_handler;
540 cyg_addrword_t old_data;
541
542 cyg_exception_set_handler(exception, print_exception_handler, 0,
543 &old_handler, &old_data);
544 }
545
546 static cyg_thread zylinjtag_uart_thread_object;
547 static cyg_handle_t zylinjtag_uart_thread_handle;
548 static char uart_stack[4096];
549
550 static char forwardBuffer[1024]; // NB! must be smaller than a TCP/IP packet!!!!!
551 static char backwardBuffer[1024];
552
553 void setNoDelay(int session, int flag)
554 {
555 #if 1
556 // This decreases latency dramatically for e.g. GDB load which
557 // does not have a sliding window protocol
558 //
559 // Can cause *lots* of TCP/IP packets to be sent and it would have
560 // to be enabled/disabled on the fly to avoid the CPU being
561 // overloaded...
562 setsockopt(session, /* socket affected */
563 IPPROTO_TCP, /* set option at TCP level */
564 TCP_NODELAY, /* name of option */
565 (char *) &flag, /* the cast is historical
566 cruft */
567 sizeof(int)); /* length of option value */
568 #endif
569 }
570
571 struct
572 {
573 int req;
574 int actual;
575 int req2;
576 int actual2;
577 } tcpipSent[512 * 1024];
578 int cur;
579
580 static void zylinjtag_uart(cyg_addrword_t data)
581 {
582 int so_reuseaddr_option = 1;
583
584 int fd;
585 if ((fd = socket(AF_INET, SOCK_STREAM, 0)) == -1)
586 {
587 LOG_ERROR("error creating socket: %s", strerror(errno));
588 exit(-1);
589 }
590
591 setsockopt(fd, SOL_SOCKET, SO_REUSEADDR, (void*) &so_reuseaddr_option,
592 sizeof(int));
593
594 struct sockaddr_in sin;
595 unsigned int address_size;
596 address_size = sizeof(sin);
597 memset(&sin, 0, sizeof(sin));
598 sin.sin_family = AF_INET;
599 sin.sin_addr.s_addr = INADDR_ANY;
600 sin.sin_port = htons(5555);
601
602 if (bind(fd, (struct sockaddr *) &sin, sizeof(sin)) == -1)
603 {
604 LOG_ERROR("couldn't bind to socket: %s", strerror(errno));
605 exit(-1);
606 }
607
608 if (listen(fd, 1) == -1)
609 {
610 LOG_ERROR("couldn't listen on socket: %s", strerror(errno));
611 exit(-1);
612 }
613 // socket_nonblock(fd);
614
615
616 for (;;)
617 {
618 int session = accept(fd, (struct sockaddr *) &sin, &address_size);
619 if (session < 0)
620 {
621 continue;
622 }
623
624 setNoDelay(session, 1);
625 int oldopts = fcntl(session, F_GETFL, 0);
626 fcntl(session, F_SETFL, oldopts | O_NONBLOCK); //
627
628 int serHandle = open("/dev/ser0", O_RDWR | O_NONBLOCK);
629 if (serHandle < 0)
630 {
631 close(session);
632 continue;
633 }
634
635 #ifdef CYGPKG_PROFILE_GPROF
636 start_profile();
637 #endif
638 int actual = 0;
639 int actual2 = 0;
640 int pos, pos2;
641 pos = 0;
642 pos2 = 0;
643 cur = 0;
644 for (;;)
645 {
646 fd_set write_fds;
647 fd_set read_fds;
648 FD_ZERO(&write_fds);
649 FD_ZERO(&read_fds);
650 int fd_max = -1;
651 FD_SET(session, &read_fds);
652 fd_max = session;
653 FD_SET(serHandle, &read_fds);
654 if (serHandle > fd_max)
655 {
656 fd_max = serHandle;
657 }
658 /* Wait... */
659
660 cyg_thread_delay(5); // 50ms fixed delay to wait for data to be sent/received
661 if ((actual == 0) && (actual2 == 0))
662 {
663 int retval = select(fd_max + 1, &read_fds, NULL, NULL, NULL);
664 if (retval <= 0)
665 {
666 break;
667 }
668 }
669
670 if (actual2 <= 0)
671 {
672 memset(backwardBuffer, 's', sizeof(backwardBuffer));
673 actual2 = read(serHandle, backwardBuffer,
674 sizeof(backwardBuffer));
675 if (actual2 < 0)
676 {
677 if (errno != EAGAIN)
678 {
679 goto closeSession;
680 }
681 actual2 = 0;
682 }
683 pos2 = 0;
684 }
685
686 int x = actual2;
687 int y = 0;
688 if (actual2 > 0)
689 {
690 int written = write(session, backwardBuffer + pos2, actual2);
691 if (written <= 0)
692 goto closeSession;
693 actual2 -= written;
694 pos2 += written;
695 y = written;
696 }
697
698 if (FD_ISSET(session, &read_fds)
699 && (sizeof(forwardBuffer) > actual))
700 {
701 // NB! Here it is important that we empty the TCP/IP read buffer
702 // to make transmission tick right
703 memmove(forwardBuffer, forwardBuffer + pos, actual);
704 pos = 0;
705 int t;
706 // this will block if there is no data at all
707 t = read_socket(session, forwardBuffer + actual,
708 sizeof(forwardBuffer) - actual);
709 if (t <= 0)
710 {
711 goto closeSession;
712 }
713 actual += t;
714 }
715
716 int x2 = actual;
717 int y2 = 0;
718 if (actual > 0)
719 {
720 /* Do not put things into the serial buffer if it has something to send
721 * as that can cause a single byte to be sent at the time.
722 *
723 *
724 */
725 int written = write(serHandle, forwardBuffer + pos, actual);
726 if (written < 0)
727 {
728 if (errno != EAGAIN)
729 {
730 goto closeSession;
731 }
732 // The serial buffer is full
733 written = 0;
734 }
735 else
736 {
737 actual -= written;
738 pos += written;
739 }
740 y2 = written;
741 }
742 if (cur < 1024)
743 {
744 tcpipSent[cur].req = x;
745 tcpipSent[cur].actual = y;
746 tcpipSent[cur].req2 = x2;
747 tcpipSent[cur].actual2 = y2;
748 cur++;
749 }
750
751 }
752 closeSession: close(session);
753 close(serHandle);
754
755 int i;
756 for (i = 0; i < 1024; i++)
757 {
758 diag_printf("%d %d %d %d\n", tcpipSent[i].req, tcpipSent[i].actual,
759 tcpipSent[i].req2, tcpipSent[i].actual2);
760
761 }
762 }
763 close(fd);
764
765 }
766
767 void startUart(void)
768 {
769 cyg_thread_create(1, zylinjtag_uart, (cyg_addrword_t) 0, "uart thread",
770 (void *) uart_stack, sizeof(uart_stack),
771 &zylinjtag_uart_thread_handle, &zylinjtag_uart_thread_object);
772 cyg_thread_set_priority(zylinjtag_uart_thread_handle, 1); // low priority as it sits in a busy loop
773 cyg_thread_resume(zylinjtag_uart_thread_handle);
774 }
775
776 int handle_uart_command(struct command_context_s *cmd_ctx, char *cmd,
777 char **args, int argc)
778 {
779 static int current_baud = 38400;
780 if (argc == 0)
781 {
782 command_print(cmd_ctx, "%d", current_baud);
783 return ERROR_OK;
784 }
785 else if (argc != 1)
786 {
787 return ERROR_INVALID_ARGUMENTS;
788 }
789
790 current_baud = atol(args[0]);
791
792 int baud;
793 switch (current_baud)
794 {
795 case 9600:
796 baud = CYGNUM_SERIAL_BAUD_9600;
797 break;
798 case 19200:
799 baud = CYGNUM_SERIAL_BAUD_19200;
800 break;
801 case 38400:
802 baud = CYGNUM_SERIAL_BAUD_38400;
803 break;
804 case 57600:
805 baud = CYGNUM_SERIAL_BAUD_57600;
806 break;
807 case 115200:
808 baud = CYGNUM_SERIAL_BAUD_115200;
809 break;
810 case 230400:
811 baud = CYGNUM_SERIAL_BAUD_230400;
812 break;
813 default:
814 command_print(cmd_ctx, "unsupported baudrate");
815 return ERROR_INVALID_ARGUMENTS;
816 }
817
818 cyg_serial_info_t buf;
819 cyg_uint32 len = 1;
820 //get existing serial configuration
821 len = sizeof(cyg_serial_info_t);
822 int err;
823 cyg_io_handle_t serial_handle;
824
825 err = cyg_io_lookup("/dev/ser0", &serial_handle);
826 if (err != ENOERR)
827 {
828 LOG_ERROR("/dev/ser0 not found\n");
829 return ERROR_FAIL;
830 }
831
832 err = cyg_io_get_config(serial_handle,
833 CYG_IO_GET_CONFIG_SERIAL_OUTPUT_DRAIN, &buf, &len);
834 err = cyg_io_get_config(serial_handle, CYG_IO_GET_CONFIG_SERIAL_INFO, &buf,
835 &len);
836 if (err != ENOERR)
837 {
838 command_print(cmd_ctx, "Failed to get serial port settings %d", err);
839 return ERROR_OK;
840 }
841 buf.baud = baud;
842
843 err = cyg_io_set_config(serial_handle, CYG_IO_SET_CONFIG_SERIAL_INFO, &buf,
844 &len);
845 if (err != ENOERR)
846 {
847 command_print(cmd_ctx, "Failed to set serial port settings %d", err);
848 return ERROR_OK;
849 }
850
851 return ERROR_OK;
852 }
853
854 bool logAllToSerial = false;
855
856
857 int boolParam(char *var);
858
859
860 command_context_t *setup_command_handler(void);
861
862 extern const char *zylin_config_dir;
863
864 int add_default_dirs(void)
865 {
866 add_script_search_dir(zylin_config_dir);
867 add_script_search_dir("/rom/lib/openocd");
868 add_script_search_dir("/rom");
869 return ERROR_OK;
870 }
871
872 int ioutil_init(struct command_context_s *cmd_ctx);
873
874 int main(int argc, char *argv[])
875 {
876 /* ramblockdevice will be the same address every time. The deflate app uses a buffer 16mBytes out, so we
877 * need to allocate towards the end of the heap. */
878
879 #ifdef CYGNUM_HAL_VECTOR_UNDEF_INSTRUCTION
880 setHandler(CYGNUM_HAL_VECTOR_UNDEF_INSTRUCTION);
881 setHandler(CYGNUM_HAL_VECTOR_ABORT_PREFETCH);
882 setHandler(CYGNUM_HAL_VECTOR_ABORT_DATA);
883 #endif
884
885 int err;
886
887 atexit(keep_webserver);
888
889 diag_init_putc(_zylinjtag_diag_write_char);
890 // We want this in the log.
891 diag_printf("Zylin ZY1000.\n");
892
893 err = mount("", "/ram", "ramfs");
894 if (err < 0)
895 {
896 diag_printf("unable to mount ramfs\n");
897 }
898 chdir("/ram");
899
900 char address[16];
901 sprintf(address, "%p", &filedata[0]);
902 err = mount(address, "/rom", "romfs");
903 if (err < 0)
904 {
905 diag_printf("unable to mount /rom\n");
906 }
907
908 err = mount("", "/log", "logfs");
909 if (err < 0)
910 {
911 diag_printf("unable to mount logfs\n");
912 }
913
914 err = mount("", "/tftp", "tftpfs");
915 if (err < 0)
916 {
917 diag_printf("unable to mount logfs\n");
918 }
919
920 log = fopen("/log/log", "w");
921 if (log == NULL)
922 {
923 diag_printf("Could not open log file /ram/log\n");
924 exit(-1);
925 }
926
927
928 copydir("/rom", "/ram/cgi");
929
930 err = mount("/dev/flash1", "/config", "jffs2");
931 if (err < 0)
932 {
933 diag_printf("unable to mount jffs2, falling back to ram disk..\n");
934 err = mount("", "/config", "ramfs");
935 if (err < 0)
936 {
937 diag_printf("unable to mount /config as ramdisk.\n");
938 reboot();
939 }
940 }
941 else
942 {
943 /* are we using a ram disk instead of a flash disk? This is used
944 * for ZY1000 live demo...
945 *
946 * copy over flash disk to ram block device
947 */
948 if (boolParam("ramdisk"))
949 {
950 diag_printf("Unmounting /config from flash and using ram instead\n");
951 err = umount("/config");
952 if (err < 0)
953 {
954 diag_printf("unable to unmount jffs\n");
955 reboot();
956 }
957
958 err = mount("/dev/flash1", "/config2", "jffs2");
959 if (err < 0)
960 {
961 diag_printf("unable to mount jffs\n");
962 reboot();
963 }
964
965 err = mount("", "/config", "ramfs");
966 if (err < 0)
967 {
968 diag_printf("unable to mount ram block device\n");
969 reboot();
970 }
971
972 // copydir("/config2", "/config");
973 copyfile("/config2/ip", "/config/ip");
974 copydir("/config2/settings", "/config/settings");
975
976 umount("/config2");
977 }
978 }
979
980 mkdir(zylin_config_dir, 0777);
981 char *dirname=alloc_printf("%s/target", zylin_config_dir);
982 mkdir(dirname, 0777);
983 free(dirname);
984 dirname=alloc_printf("%s/event", zylin_config_dir);
985 mkdir(dirname, 0777);
986 free(dirname);
987
988 logAllToSerial = boolParam("logserial");
989
990 // We need the network & web server in case there is something wrong with
991 // the config files that invoke exit()
992 zylinjtag_startNetwork();
993
994 /* we're going to access the jim interpreter from here on... */
995 openocd_sleep_postlude();
996 startUart();
997
998 add_default_dirs();
999
1000 /* initialize commandline interface */
1001 command_context_t * cmd_ctx;
1002 cmd_ctx = setup_command_handler();
1003 command_set_output_handler(cmd_ctx, configuration_output_handler, NULL);
1004 command_context_mode(cmd_ctx, COMMAND_CONFIG);
1005
1006 #if BUILD_IOUTIL
1007 if (ioutil_init(cmd_ctx) != ERROR_OK)
1008 {
1009 return EXIT_FAILURE;
1010 }
1011 #endif
1012
1013
1014 #ifdef CYGPKG_PROFILE_GPROF
1015 register_command(cmd_ctx, NULL, "ecosboard_profile", eCosBoard_handle_eCosBoard_profile_command,
1016 COMMAND_ANY, NULL);
1017 #endif
1018
1019 register_command(cmd_ctx, NULL, "uart", handle_uart_command, COMMAND_ANY,
1020 "uart <baud> - forward uart on port 5555");
1021
1022 int errVal;
1023 errVal = log_init(cmd_ctx);
1024 if (errVal != ERROR_OK)
1025 {
1026 diag_printf("log_init() failed %d\n", errVal);
1027 exit(-1);
1028 }
1029
1030 set_log_output(cmd_ctx, log);
1031
1032 LOG_DEBUG("log init complete");
1033
1034 // diag_printf("Executing config files\n");
1035
1036 if (logAllToSerial)
1037 {
1038 diag_printf(
1039 "%s/logserial=1 => sending log output to serial port using \"debug_level 3\" as default.\n", zylin_config_dir);
1040 command_run_line(cmd_ctx, "debug_level 3");
1041 }
1042
1043 command_run_linef(cmd_ctx, "script /rom/openocd.cfg");
1044
1045 // FIX!!! Yuk!
1046 // diag_printf() is really invoked from many more places than we trust it
1047 // not to cause instabilities(e.g. invoking fputc() from an interrupt is *BAD*).
1048 //
1049 // Disabling it here is safe and gives us enough logged debug output for now. Crossing
1050 // fingers that it doesn't cause any crashes.
1051 diag_printf("Init complete, GDB & telnet servers launched.\n");
1052 command_set_output_handler(cmd_ctx,
1053 zy1000_configuration_output_handler_log, NULL);
1054 if (!logAllToSerial)
1055 {
1056 serialLog = false;
1057 }
1058
1059 /* handle network connections */
1060 server_loop(cmd_ctx);
1061 openocd_sleep_prelude();
1062
1063 /* shut server down */
1064 server_quit();
1065
1066 /* free commandline interface */
1067 command_done(cmd_ctx);
1068 umount("/config");
1069
1070 exit(0);
1071 for (;;)
1072 ;
1073 }
1074
1075 cyg_int32 cyg_httpd_exec_cgi_tcl(char *file_name);
1076 cyg_int32 homeForm(CYG_HTTPD_STATE *p)
1077 {
1078 cyg_httpd_exec_cgi_tcl("/ram/cgi/index.tcl");
1079 return 0;
1080 }
1081
1082 CYG_HTTPD_HANDLER_TABLE_ENTRY(root_label, "/", homeForm);
1083
1084 CYG_HTTPD_MIME_TABLE_ENTRY(text_mime_label, "text", "text/plain");
1085 CYG_HTTPD_MIME_TABLE_ENTRY(bin_mime_label, "bin", "application/octet-stream");
1086
1087 #include <pkgconf/system.h>
1088 #include <pkgconf/hal.h>
1089 #include <pkgconf/kernel.h>
1090 #include <pkgconf/io_fileio.h>
1091 #include <pkgconf/fs_rom.h>
1092
1093 #include <cyg/kernel/ktypes.h> // base kernel types
1094 #include <cyg/infra/cyg_trac.h> // tracing macros
1095 #include <cyg/infra/cyg_ass.h> // assertion macros
1096 #include <unistd.h>
1097 #include <sys/types.h>
1098 #include <fcntl.h>
1099 #include <sys/stat.h>
1100 #include <errno.h>
1101 #include <dirent.h>
1102
1103 #include <stdarg.h>
1104 #include <stdio.h>
1105 #include <stdlib.h>
1106 #include <string.h>
1107
1108 #include <cyg/fileio/fileio.h>
1109
1110 #include <cyg/kernel/kapi.h>
1111 #include <cyg/infra/diag.h>
1112
1113 //==========================================================================
1114 // Eventually we want to eXecute In Place from the ROM in a protected
1115 // environment, so we'll need executables to be aligned to a boundary
1116 // suitable for MMU protection. A suitable boundary would be the 4k
1117 // boundary in all the CPU architectures I am currently aware of.
1118
1119 // Forward definitions
1120
1121 // Filesystem operations
1122 static int tftpfs_mount(cyg_fstab_entry *fste, cyg_mtab_entry *mte);
1123 static int tftpfs_umount(cyg_mtab_entry *mte);
1124 static int tftpfs_open(cyg_mtab_entry *mte, cyg_dir dir, const char *name,
1125 int mode, cyg_file *fte);
1126 static int tftpfs_fo_read(struct CYG_FILE_TAG *fp, struct CYG_UIO_TAG *uio);
1127 static int tftpfs_fo_write(struct CYG_FILE_TAG *fp, struct CYG_UIO_TAG *uio);
1128
1129 // File operations
1130 static int tftpfs_fo_fsync(struct CYG_FILE_TAG *fp, int mode);
1131 static int tftpfs_fo_close(struct CYG_FILE_TAG *fp);
1132 static int tftpfs_fo_lseek(struct CYG_FILE_TAG *fp, off_t *apos, int whence);
1133
1134 //==========================================================================
1135 // Filesystem table entries
1136
1137 // -------------------------------------------------------------------------
1138 // Fstab entry.
1139 // This defines the entry in the filesystem table.
1140 // For simplicity we use _FILESYSTEM synchronization for all accesses since
1141 // we should never block in any filesystem operations.
1142 #if 1
1143 FSTAB_ENTRY( tftpfs_fste, "tftpfs", 0,
1144 CYG_SYNCMODE_NONE,
1145 tftpfs_mount,
1146 tftpfs_umount,
1147 tftpfs_open,
1148 (cyg_fsop_unlink *)cyg_fileio_erofs,
1149 (cyg_fsop_mkdir *)cyg_fileio_erofs,
1150 (cyg_fsop_rmdir *)cyg_fileio_erofs,
1151 (cyg_fsop_rename *)cyg_fileio_erofs,
1152 (cyg_fsop_link *)cyg_fileio_erofs,
1153 (cyg_fsop_opendir *)cyg_fileio_erofs,
1154 (cyg_fsop_chdir *)cyg_fileio_erofs,
1155 (cyg_fsop_stat *)cyg_fileio_erofs,
1156 (cyg_fsop_getinfo *)cyg_fileio_erofs,
1157 (cyg_fsop_setinfo *)cyg_fileio_erofs);
1158 #endif
1159
1160 // -------------------------------------------------------------------------
1161 // mtab entry.
1162 // This defines a single ROMFS loaded into ROM at the configured address
1163 //
1164 // MTAB_ENTRY( rom_mte, // structure name
1165 // "/rom", // mount point
1166 // "romfs", // FIlesystem type
1167 // "", // hardware device
1168 // (CYG_ADDRWORD) CYGNUM_FS_ROM_BASE_ADDRESS // Address in ROM
1169 // );
1170
1171
1172 // -------------------------------------------------------------------------
1173 // File operations.
1174 // This set of file operations are used for normal open files.
1175
1176 static cyg_fileops tftpfs_fileops =
1177 { tftpfs_fo_read, tftpfs_fo_write, tftpfs_fo_lseek,
1178 (cyg_fileop_ioctl *) cyg_fileio_erofs, cyg_fileio_seltrue,
1179 tftpfs_fo_fsync, tftpfs_fo_close,
1180 (cyg_fileop_fstat *) cyg_fileio_erofs,
1181 (cyg_fileop_getinfo *) cyg_fileio_erofs,
1182 (cyg_fileop_setinfo *) cyg_fileio_erofs, };
1183
1184 // -------------------------------------------------------------------------
1185 // tftpfs_mount()
1186 // Process a mount request. This mainly finds root for the
1187 // filesystem.
1188
1189 static int tftpfs_mount(cyg_fstab_entry *fste, cyg_mtab_entry *mte)
1190 {
1191 return ENOERR;
1192 }
1193
1194 static int tftpfs_umount(cyg_mtab_entry *mte)
1195 {
1196 return ENOERR;
1197 }
1198
1199 struct Tftp
1200 {
1201 int write;
1202 int readFile;
1203 cyg_uint8 *mem;
1204 int actual;
1205 char *server;
1206 char *file;
1207 };
1208
1209 static void freeTftp(struct Tftp *t)
1210 {
1211 if (t == NULL)
1212 return;
1213 if (t->mem)
1214 free(t->mem);
1215 if (t->server)
1216 free(t->server);
1217 if (t->file)
1218 free(t->file);
1219 free(t);
1220 }
1221
1222 static const int tftpMaxSize = 8192 * 1024;
1223 static int tftpfs_open(cyg_mtab_entry *mte, cyg_dir dir, const char *name,
1224 int mode, cyg_file *file)
1225 {
1226 struct Tftp *tftp;
1227 tftp = malloc(sizeof(struct Tftp));
1228 if (tftp == NULL)
1229 return EMFILE;
1230 memset(tftp, 0, sizeof(struct Tftp));
1231
1232 file->f_flag |= mode & CYG_FILE_MODE_MASK;
1233 file->f_type = CYG_FILE_TYPE_FILE;
1234 file->f_ops = &tftpfs_fileops;
1235 file->f_offset = 0;
1236 file->f_data = 0;
1237 file->f_xops = 0;
1238
1239 tftp->mem = malloc(tftpMaxSize);
1240 if (tftp->mem == NULL)
1241 {
1242 freeTftp(tftp);
1243 return EMFILE;
1244 }
1245
1246 char *server = strchr(name, '/');
1247 if (server == NULL)
1248 {
1249 freeTftp(tftp);
1250 return EMFILE;
1251 }
1252
1253 tftp->server = malloc(server - name + 1);
1254 if (tftp->server == NULL)
1255 {
1256 freeTftp(tftp);
1257 return EMFILE;
1258 }
1259 strncpy(tftp->server, name, server - name);
1260 tftp->server[server - name] = 0;
1261
1262 tftp->file = strdup(server + 1);
1263 if (tftp->file == NULL)
1264 {
1265 freeTftp(tftp);
1266 return EMFILE;
1267 }
1268
1269 file->f_data = (CYG_ADDRWORD) tftp;
1270
1271 return ENOERR;
1272 }
1273
1274 static int fetchTftp(struct Tftp *tftp)
1275 {
1276 if (!tftp->readFile)
1277 {
1278 int err;
1279 tftp->actual = tftp_client_get(tftp->file, tftp->server, 0, tftp->mem,
1280 tftpMaxSize, TFTP_OCTET, &err);
1281
1282 if (tftp->actual < 0)
1283 {
1284 return EMFILE;
1285 }
1286 tftp->readFile = 1;
1287 }
1288 return ENOERR;
1289 }
1290
1291 // -------------------------------------------------------------------------
1292 // tftpfs_fo_write()
1293 // Read data from file.
1294
1295 static int tftpfs_fo_read(struct CYG_FILE_TAG *fp, struct CYG_UIO_TAG *uio)
1296 {
1297 struct Tftp *tftp = (struct Tftp *) fp->f_data;
1298
1299 if (fetchTftp(tftp) != ENOERR)
1300 return EMFILE;
1301
1302 int i;
1303 off_t pos = fp->f_offset;
1304 int resid = 0;
1305 for (i = 0; i < uio->uio_iovcnt; i++)
1306 {
1307 cyg_iovec *iov = &uio->uio_iov[i];
1308 char *buf = (char *) iov->iov_base;
1309 off_t len = iov->iov_len;
1310
1311 if (len + pos > tftp->actual)
1312 {
1313 len = tftp->actual - pos;
1314 }
1315 resid += iov->iov_len - len;
1316
1317 memcpy(buf, tftp->mem + pos, len);
1318 pos += len;
1319
1320 }
1321 uio->uio_resid = resid;
1322 fp->f_offset = pos;
1323
1324 return ENOERR;
1325 }
1326
1327 static int tftpfs_fo_write(struct CYG_FILE_TAG *fp, struct CYG_UIO_TAG *uio)
1328 {
1329 struct Tftp *tftp = (struct Tftp *) fp->f_data;
1330
1331 int i;
1332 off_t pos = fp->f_offset;
1333 int resid = 0;
1334 for (i = 0; i < uio->uio_iovcnt; i++)
1335 {
1336 cyg_iovec *iov = &uio->uio_iov[i];
1337 char *buf = (char *) iov->iov_base;
1338 off_t len = iov->iov_len;
1339
1340 if (len + pos > tftpMaxSize)
1341 {
1342 len = tftpMaxSize - pos;
1343 }
1344 resid += iov->iov_len - len;
1345
1346 memcpy(tftp->mem + pos, buf, len);
1347 pos += len;
1348
1349 }
1350 uio->uio_resid = resid;
1351 fp->f_offset = pos;
1352
1353 tftp->write = 1;
1354
1355 return ENOERR;
1356 }
1357
1358 static int tftpfs_fo_fsync(struct CYG_FILE_TAG *fp, int mode)
1359 {
1360 int error = ENOERR;
1361 return error;
1362 }
1363
1364 // -------------------------------------------------------------------------
1365 // romfs_fo_close()
1366 // Close a file. We just clear out the data pointer.
1367
1368 static int tftpfs_fo_close(struct CYG_FILE_TAG *fp)
1369 {
1370 struct Tftp *tftp = (struct Tftp *) fp->f_data;
1371 int error = ENOERR;
1372
1373 if (tftp->write)
1374 {
1375 tftp_client_put(tftp->file, tftp->server, 0, tftp->mem, fp->f_offset,
1376 TFTP_OCTET, &error);
1377 }
1378
1379 freeTftp(tftp);
1380 fp->f_data = 0;
1381 return error;
1382 }
1383
1384 // -------------------------------------------------------------------------
1385 // romfs_fo_lseek()
1386 // Seek to a new file position.
1387
1388 static int tftpfs_fo_lseek(struct CYG_FILE_TAG *fp, off_t *apos, int whence)
1389 {
1390 struct Tftp *tftp = (struct Tftp *) fp->f_data;
1391 off_t pos = *apos;
1392
1393 if (fetchTftp(tftp) != ENOERR)
1394 return EMFILE;
1395
1396 switch (whence)
1397 {
1398 case SEEK_SET:
1399 // Pos is already where we want to be.
1400 break;
1401
1402 case SEEK_CUR:
1403 // Add pos to current offset.
1404 pos += fp->f_offset;
1405 break;
1406
1407 case SEEK_END:
1408 // Add pos to file size.
1409 pos += tftp->actual;
1410 break;
1411
1412 default:
1413 return EINVAL;
1414 }
1415
1416 // Check that pos is still within current file size, or at the
1417 // very end.
1418 if (pos < 0 || pos > tftp->actual)
1419 return EINVAL;
1420
1421 // All OK, set fp offset and return new position.
1422 *apos = fp->f_offset = pos;
1423
1424 return ENOERR;
1425 }
1426
1427 void usleep(int us)
1428 {
1429 if (us > 10000)
1430 cyg_thread_delay(us / 10000 + 1);
1431 else
1432 HAL_DELAY_US(us);
1433 }
1434
1435 // Chunked version.
1436 cyg_int32 show_log_entry(CYG_HTTPD_STATE *phttpstate)
1437 {
1438 cyg_httpd_start_chunked("text");
1439 if (logCount >= logSize)
1440 {
1441 cyg_httpd_write_chunked(logBuffer + logCount % logSize, logSize
1442 - logCount % logSize);
1443 }
1444 cyg_httpd_write_chunked(logBuffer, writePtr);
1445 cyg_httpd_end_chunked();
1446 return -1;
1447 }
1448
1449 CYG_HTTPD_HANDLER_TABLE_ENTRY(show_log, "/ram/log", show_log_entry);
1450
1451 // Filesystem operations
1452 static int logfs_mount(cyg_fstab_entry *fste, cyg_mtab_entry *mte);
1453 static int logfs_umount(cyg_mtab_entry *mte);
1454 static int logfs_open(cyg_mtab_entry *mte, cyg_dir dir, const char *name,
1455 int mode, cyg_file *fte);
1456 static int logfs_fo_write(struct CYG_FILE_TAG *fp, struct CYG_UIO_TAG *uio);
1457
1458 // File operations
1459 static int logfs_fo_fsync(struct CYG_FILE_TAG *fp, int mode);
1460 static int logfs_fo_close(struct CYG_FILE_TAG *fp);
1461
1462 #include <cyg/io/devtab.h>
1463
1464 //==========================================================================
1465 // Filesystem table entries
1466
1467 // -------------------------------------------------------------------------
1468 // Fstab entry.
1469 // This defines the entry in the filesystem table.
1470 // For simplicity we use _FILESYSTEM synchronization for all accesses since
1471 // we should never block in any filesystem operations.
1472 FSTAB_ENTRY( logfs_fste, "logfs", 0,
1473 CYG_SYNCMODE_FILE_FILESYSTEM|CYG_SYNCMODE_IO_FILESYSTEM,
1474 logfs_mount,
1475 logfs_umount,
1476 logfs_open,
1477 (cyg_fsop_unlink *)cyg_fileio_erofs,
1478 (cyg_fsop_mkdir *)cyg_fileio_erofs,
1479 (cyg_fsop_rmdir *)cyg_fileio_erofs,
1480 (cyg_fsop_rename *)cyg_fileio_erofs,
1481 (cyg_fsop_link *)cyg_fileio_erofs,
1482 (cyg_fsop_opendir *)cyg_fileio_erofs,
1483 (cyg_fsop_chdir *)cyg_fileio_erofs,
1484 (cyg_fsop_stat *)cyg_fileio_erofs,
1485 (cyg_fsop_getinfo *)cyg_fileio_erofs,
1486 (cyg_fsop_setinfo *)cyg_fileio_erofs);
1487
1488 // -------------------------------------------------------------------------
1489 // File operations.
1490 // This set of file operations are used for normal open files.
1491
1492 static cyg_fileops logfs_fileops =
1493 { (cyg_fileop_read *) cyg_fileio_erofs, (cyg_fileop_write *) logfs_fo_write,
1494 (cyg_fileop_lseek *) cyg_fileio_erofs,
1495 (cyg_fileop_ioctl *) cyg_fileio_erofs, cyg_fileio_seltrue,
1496 logfs_fo_fsync, logfs_fo_close, (cyg_fileop_fstat *) cyg_fileio_erofs,
1497 (cyg_fileop_getinfo *) cyg_fileio_erofs,
1498 (cyg_fileop_setinfo *) cyg_fileio_erofs, };
1499
1500 // -------------------------------------------------------------------------
1501 // logfs_mount()
1502 // Process a mount request. This mainly finds root for the
1503 // filesystem.
1504
1505 static int logfs_mount(cyg_fstab_entry *fste, cyg_mtab_entry *mte)
1506 {
1507 return ENOERR;
1508 }
1509
1510 static int logfs_umount(cyg_mtab_entry *mte)
1511 {
1512 return ENOERR;
1513 }
1514
1515 static int logfs_open(cyg_mtab_entry *mte, cyg_dir dir, const char *name,
1516 int mode, cyg_file *file)
1517 {
1518 file->f_flag |= mode & CYG_FILE_MODE_MASK;
1519 file->f_type = CYG_FILE_TYPE_FILE;
1520 file->f_ops = &logfs_fileops;
1521 file->f_offset = 0;
1522 file->f_data = 0;
1523 file->f_xops = 0;
1524 return ENOERR;
1525 }
1526
1527 // -------------------------------------------------------------------------
1528 // logfs_fo_write()
1529 // Write data to file.
1530
1531 static int logfs_fo_write(struct CYG_FILE_TAG *fp, struct CYG_UIO_TAG *uio)
1532 {
1533 int i;
1534 for (i = 0; i < uio->uio_iovcnt; i++)
1535 {
1536 cyg_iovec *iov = &uio->uio_iov[i];
1537 char *buf = (char *) iov->iov_base;
1538 off_t len = iov->iov_len;
1539
1540 diag_write(buf, len);
1541 }
1542 uio->uio_resid = 0;
1543
1544 return ENOERR;
1545 }
1546 static int logfs_fo_fsync(struct CYG_FILE_TAG *fp, int mode)
1547 {
1548 return ENOERR;
1549 }
1550
1551 // -------------------------------------------------------------------------
1552 // romfs_fo_close()
1553 // Close a file. We just clear out the data pointer.
1554
1555 static int logfs_fo_close(struct CYG_FILE_TAG *fp)
1556 {
1557 return ENOERR;
1558 }
1559

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