1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * nosy-dump - Interface to snoop mode driver for TI PCILynx 1394 controllers
4 * Copyright (C) 2002-2006 Kristian Høgsberg
10 #include <linux/firewire-constants.h>
17 #include <sys/ioctl.h>
23 #include "nosy-dump.h"
24 #include "nosy-user.h"
27 PACKET_FIELD_DETAIL
= 0x01,
28 PACKET_FIELD_DATA_LENGTH
= 0x02,
29 /* Marks the fields we print in transaction view. */
30 PACKET_FIELD_TRANSACTION
= 0x04,
33 static void print_packet(uint32_t *data
, size_t length
);
34 static void decode_link_packet(struct link_packet
*packet
, size_t length
,
35 int include_flags
, int exclude_flags
);
37 sig_t sys_sigint_handler
;
39 static char *option_nosy_device
= "/dev/nosy";
40 static char *option_view
= "packet";
41 static char *option_output
;
42 static char *option_input
;
43 static int option_hex
;
44 static int option_iso
;
45 static int option_cycle_start
;
46 static int option_version
;
47 static int option_verbose
;
55 static const struct poptOption options
[] = {
59 .argInfo
= POPT_ARG_STRING
,
60 .arg
= &option_nosy_device
,
61 .descrip
= "Path to nosy device.",
62 .argDescrip
= "DEVICE"
66 .argInfo
= POPT_ARG_STRING
,
68 .descrip
= "Specify view of bus traffic: packet, transaction or stats.",
74 .argInfo
= POPT_ARG_NONE
,
76 .descrip
= "Print each packet in hex.",
80 .argInfo
= POPT_ARG_NONE
,
82 .descrip
= "Print iso packets.",
85 .longName
= "cycle-start",
86 .argInfo
= POPT_ARG_NONE
,
87 .arg
= &option_cycle_start
,
88 .descrip
= "Print cycle start packets.",
91 .longName
= "verbose",
93 .argInfo
= POPT_ARG_NONE
,
94 .arg
= &option_verbose
,
95 .descrip
= "Verbose packet view.",
100 .argInfo
= POPT_ARG_STRING
,
101 .arg
= &option_output
,
102 .descrip
= "Log to output file.",
103 .argDescrip
= "FILENAME"
108 .argInfo
= POPT_ARG_STRING
,
109 .arg
= &option_input
,
110 .descrip
= "Decode log from file.",
111 .argDescrip
= "FILENAME"
114 .longName
= "version",
115 .argInfo
= POPT_ARG_NONE
,
116 .arg
= &option_version
,
117 .descrip
= "Specify print version info.",
123 /* Allow all ^C except the first to interrupt the program in the usual way. */
125 sigint_handler(int signal_num
)
129 signal(SIGINT
, SIG_DFL
);
133 static struct subaction
*
134 subaction_create(uint32_t *data
, size_t length
)
136 struct subaction
*sa
;
138 /* we put the ack in the subaction struct for easy access. */
139 sa
= malloc(sizeof *sa
- sizeof sa
->packet
+ length
);
142 sa
->ack
= data
[length
/ 4 - 1];
144 memcpy(&sa
->packet
, data
, length
);
150 subaction_destroy(struct subaction
*sa
)
155 static struct list pending_transaction_list
= {
156 &pending_transaction_list
, &pending_transaction_list
159 static struct link_transaction
*
160 link_transaction_lookup(int request_node
, int response_node
, int tlabel
)
162 struct link_transaction
*t
;
164 list_for_each_entry(t
, &pending_transaction_list
, link
) {
165 if (t
->request_node
== request_node
&&
166 t
->response_node
== response_node
&&
171 t
= malloc(sizeof *t
);
174 t
->request_node
= request_node
;
175 t
->response_node
= response_node
;
177 list_init(&t
->request_list
);
178 list_init(&t
->response_list
);
180 list_append(&pending_transaction_list
, &t
->link
);
186 link_transaction_destroy(struct link_transaction
*t
)
188 struct subaction
*sa
;
190 while (!list_empty(&t
->request_list
)) {
191 sa
= list_head(&t
->request_list
, struct subaction
, link
);
192 list_remove(&sa
->link
);
193 subaction_destroy(sa
);
195 while (!list_empty(&t
->response_list
)) {
196 sa
= list_head(&t
->response_list
, struct subaction
, link
);
197 list_remove(&sa
->link
);
198 subaction_destroy(sa
);
203 struct protocol_decoder
{
205 int (*decode
)(struct link_transaction
*t
);
208 static const struct protocol_decoder protocol_decoders
[] = {
209 { "FCP", decode_fcp
}
213 handle_transaction(struct link_transaction
*t
)
215 struct subaction
*sa
;
219 printf("BUG in handle_transaction\n");
223 for (i
= 0; i
< array_length(protocol_decoders
); i
++)
224 if (protocol_decoders
[i
].decode(t
))
227 /* HACK: decode only fcp right now. */
230 decode_link_packet(&t
->request
->packet
, t
->request
->length
,
231 PACKET_FIELD_TRANSACTION
, 0);
233 decode_link_packet(&t
->response
->packet
, t
->request
->length
,
234 PACKET_FIELD_TRANSACTION
, 0);
236 printf("[no response]");
238 if (option_verbose
) {
239 list_for_each_entry(sa
, &t
->request_list
, link
)
240 print_packet((uint32_t *) &sa
->packet
, sa
->length
);
241 list_for_each_entry(sa
, &t
->response_list
, link
)
242 print_packet((uint32_t *) &sa
->packet
, sa
->length
);
246 link_transaction_destroy(t
);
250 clear_pending_transaction_list(void)
252 struct link_transaction
*t
;
254 while (!list_empty(&pending_transaction_list
)) {
255 t
= list_head(&pending_transaction_list
,
256 struct link_transaction
, link
);
257 list_remove(&t
->link
);
258 link_transaction_destroy(t
);
259 /* print unfinished transactions */
263 static const char * const tcode_names
[] = {
264 [0x0] = "write_quadlet_request", [0x6] = "read_quadlet_response",
265 [0x1] = "write_block_request", [0x7] = "read_block_response",
266 [0x2] = "write_response", [0x8] = "cycle_start",
267 [0x3] = "reserved", [0x9] = "lock_request",
268 [0x4] = "read_quadlet_request", [0xa] = "iso_data",
269 [0x5] = "read_block_request", [0xb] = "lock_response",
272 static const char * const ack_names
[] = {
273 [0x0] = "no ack", [0x8] = "reserved (0x08)",
274 [0x1] = "ack_complete", [0x9] = "reserved (0x09)",
275 [0x2] = "ack_pending", [0xa] = "reserved (0x0a)",
276 [0x3] = "reserved (0x03)", [0xb] = "reserved (0x0b)",
277 [0x4] = "ack_busy_x", [0xc] = "reserved (0x0c)",
278 [0x5] = "ack_busy_a", [0xd] = "ack_data_error",
279 [0x6] = "ack_busy_b", [0xe] = "ack_type_error",
280 [0x7] = "reserved (0x07)", [0xf] = "reserved (0x0f)",
283 static const char * const rcode_names
[] = {
284 [0x0] = "complete", [0x4] = "conflict_error",
285 [0x1] = "reserved (0x01)", [0x5] = "data_error",
286 [0x2] = "reserved (0x02)", [0x6] = "type_error",
287 [0x3] = "reserved (0x03)", [0x7] = "address_error",
290 static const char * const retry_names
[] = {
308 const struct packet_field
*fields
;
312 struct packet_field
{
313 const char *name
; /* Short name for field. */
314 int offset
; /* Location of field, specified in bits; */
315 /* negative means from end of packet. */
316 int width
; /* Width of field, 0 means use data_length. */
317 int flags
; /* Show options. */
318 const char * const *value_names
;
321 #define COMMON_REQUEST_FIELDS \
322 { "dest", 0, 16, PACKET_FIELD_TRANSACTION }, \
324 { "rt", 22, 2, PACKET_FIELD_DETAIL, retry_names }, \
325 { "tcode", 24, 4, PACKET_FIELD_TRANSACTION, tcode_names }, \
326 { "pri", 28, 4, PACKET_FIELD_DETAIL }, \
327 { "src", 32, 16, PACKET_FIELD_TRANSACTION }, \
328 { "offs", 48, 48, PACKET_FIELD_TRANSACTION }
330 #define COMMON_RESPONSE_FIELDS \
333 { "rt", 22, 2, PACKET_FIELD_DETAIL, retry_names }, \
334 { "tcode", 24, 4, 0, tcode_names }, \
335 { "pri", 28, 4, PACKET_FIELD_DETAIL }, \
337 { "rcode", 48, 4, PACKET_FIELD_TRANSACTION, rcode_names }
339 static const struct packet_field read_quadlet_request_fields
[] = {
340 COMMON_REQUEST_FIELDS
,
341 { "crc", 96, 32, PACKET_FIELD_DETAIL
},
342 { "ack", 156, 4, 0, ack_names
},
345 static const struct packet_field read_quadlet_response_fields
[] = {
346 COMMON_RESPONSE_FIELDS
,
347 { "data", 96, 32, PACKET_FIELD_TRANSACTION
},
348 { "crc", 128, 32, PACKET_FIELD_DETAIL
},
349 { "ack", 188, 4, 0, ack_names
},
352 static const struct packet_field read_block_request_fields
[] = {
353 COMMON_REQUEST_FIELDS
,
354 { "data_length", 96, 16, PACKET_FIELD_TRANSACTION
},
355 { "extended_tcode", 112, 16 },
356 { "crc", 128, 32, PACKET_FIELD_DETAIL
},
357 { "ack", 188, 4, 0, ack_names
},
360 static const struct packet_field block_response_fields
[] = {
361 COMMON_RESPONSE_FIELDS
,
362 { "data_length", 96, 16, PACKET_FIELD_DATA_LENGTH
},
363 { "extended_tcode", 112, 16 },
364 { "crc", 128, 32, PACKET_FIELD_DETAIL
},
365 { "data", 160, 0, PACKET_FIELD_TRANSACTION
},
366 { "crc", -64, 32, PACKET_FIELD_DETAIL
},
367 { "ack", -4, 4, 0, ack_names
},
370 static const struct packet_field write_quadlet_request_fields
[] = {
371 COMMON_REQUEST_FIELDS
,
372 { "data", 96, 32, PACKET_FIELD_TRANSACTION
},
373 { "ack", -4, 4, 0, ack_names
},
376 static const struct packet_field block_request_fields
[] = {
377 COMMON_REQUEST_FIELDS
,
378 { "data_length", 96, 16, PACKET_FIELD_DATA_LENGTH
| PACKET_FIELD_TRANSACTION
},
379 { "extended_tcode", 112, 16, PACKET_FIELD_TRANSACTION
},
380 { "crc", 128, 32, PACKET_FIELD_DETAIL
},
381 { "data", 160, 0, PACKET_FIELD_TRANSACTION
},
382 { "crc", -64, 32, PACKET_FIELD_DETAIL
},
383 { "ack", -4, 4, 0, ack_names
},
386 static const struct packet_field write_response_fields
[] = {
387 COMMON_RESPONSE_FIELDS
,
388 { "reserved", 64, 32, PACKET_FIELD_DETAIL
},
389 { "ack", -4, 4, 0, ack_names
},
392 static const struct packet_field iso_data_fields
[] = {
393 { "data_length", 0, 16, PACKET_FIELD_DATA_LENGTH
},
395 { "channel", 18, 6 },
396 { "tcode", 24, 4, 0, tcode_names
},
398 { "crc", 32, 32, PACKET_FIELD_DETAIL
},
400 { "crc", -64, 32, PACKET_FIELD_DETAIL
},
401 { "ack", -4, 4, 0, ack_names
},
404 static const struct packet_info packet_info
[] = {
406 .name
= "write_quadlet_request",
407 .type
= PACKET_REQUEST
,
408 .response_tcode
= TCODE_WRITE_RESPONSE
,
409 .fields
= write_quadlet_request_fields
,
410 .field_count
= array_length(write_quadlet_request_fields
)
413 .name
= "write_block_request",
414 .type
= PACKET_REQUEST
,
415 .response_tcode
= TCODE_WRITE_RESPONSE
,
416 .fields
= block_request_fields
,
417 .field_count
= array_length(block_request_fields
)
420 .name
= "write_response",
421 .type
= PACKET_RESPONSE
,
422 .fields
= write_response_fields
,
423 .field_count
= array_length(write_response_fields
)
427 .type
= PACKET_RESERVED
,
430 .name
= "read_quadlet_request",
431 .type
= PACKET_REQUEST
,
432 .response_tcode
= TCODE_READ_QUADLET_RESPONSE
,
433 .fields
= read_quadlet_request_fields
,
434 .field_count
= array_length(read_quadlet_request_fields
)
437 .name
= "read_block_request",
438 .type
= PACKET_REQUEST
,
439 .response_tcode
= TCODE_READ_BLOCK_RESPONSE
,
440 .fields
= read_block_request_fields
,
441 .field_count
= array_length(read_block_request_fields
)
444 .name
= "read_quadlet_response",
445 .type
= PACKET_RESPONSE
,
446 .fields
= read_quadlet_response_fields
,
447 .field_count
= array_length(read_quadlet_response_fields
)
450 .name
= "read_block_response",
451 .type
= PACKET_RESPONSE
,
452 .fields
= block_response_fields
,
453 .field_count
= array_length(block_response_fields
)
456 .name
= "cycle_start",
457 .type
= PACKET_OTHER
,
458 .fields
= write_quadlet_request_fields
,
459 .field_count
= array_length(write_quadlet_request_fields
)
462 .name
= "lock_request",
463 .type
= PACKET_REQUEST
,
464 .fields
= block_request_fields
,
465 .field_count
= array_length(block_request_fields
)
469 .type
= PACKET_OTHER
,
470 .fields
= iso_data_fields
,
471 .field_count
= array_length(iso_data_fields
)
474 .name
= "lock_response",
475 .type
= PACKET_RESPONSE
,
476 .fields
= block_response_fields
,
477 .field_count
= array_length(block_response_fields
)
482 handle_request_packet(uint32_t *data
, size_t length
)
484 struct link_packet
*p
= (struct link_packet
*) data
;
485 struct subaction
*sa
, *prev
;
486 struct link_transaction
*t
;
488 t
= link_transaction_lookup(p
->common
.source
, p
->common
.destination
,
490 sa
= subaction_create(data
, length
);
493 if (!list_empty(&t
->request_list
)) {
494 prev
= list_tail(&t
->request_list
,
495 struct subaction
, link
);
497 if (!ACK_BUSY(prev
->ack
)) {
499 * error, we should only see ack_busy_* before the
500 * ack_pending/ack_complete -- this is an ack_pending
501 * instead (ack_complete would have finished the
506 if (prev
->packet
.common
.tcode
!= sa
->packet
.common
.tcode
||
507 prev
->packet
.common
.tlabel
!= sa
->packet
.common
.tlabel
) {
509 /* error, these should match for retries. */
513 list_append(&t
->request_list
, &sa
->link
);
517 if (p
->common
.tcode
!= TCODE_WRITE_QUADLET_REQUEST
&&
518 p
->common
.tcode
!= TCODE_WRITE_BLOCK_REQUEST
)
519 /* error, unified transactions only allowed for write */;
520 list_remove(&t
->link
);
521 handle_transaction(t
);
527 list_remove(&t
->link
);
528 handle_transaction(t
);
532 /* request subaction phase over, wait for response. */
538 /* ok, wait for retry. */
539 /* check that retry protocol is respected. */
547 handle_response_packet(uint32_t *data
, size_t length
)
549 struct link_packet
*p
= (struct link_packet
*) data
;
550 struct subaction
*sa
, *prev
;
551 struct link_transaction
*t
;
553 t
= link_transaction_lookup(p
->common
.destination
, p
->common
.source
,
555 if (list_empty(&t
->request_list
)) {
556 /* unsolicited response */
559 sa
= subaction_create(data
, length
);
562 if (!list_empty(&t
->response_list
)) {
563 prev
= list_tail(&t
->response_list
, struct subaction
, link
);
565 if (!ACK_BUSY(prev
->ack
)) {
567 * error, we should only see ack_busy_* before the
568 * ack_pending/ack_complete
572 if (prev
->packet
.common
.tcode
!= sa
->packet
.common
.tcode
||
573 prev
->packet
.common
.tlabel
!= sa
->packet
.common
.tlabel
) {
574 /* use memcmp() instead? */
575 /* error, these should match for retries. */
578 prev
= list_tail(&t
->request_list
, struct subaction
, link
);
579 if (prev
->ack
!= ACK_PENDING
) {
581 * error, should not get response unless last request got
586 if (packet_info
[prev
->packet
.common
.tcode
].response_tcode
!=
587 sa
->packet
.common
.tcode
) {
588 /* error, tcode mismatch */
592 list_append(&t
->response_list
, &sa
->link
);
599 list_remove(&t
->link
);
600 handle_transaction(t
);
601 /* transaction complete, remove t from pending list. */
605 /* error for responses. */
611 /* no problem, wait for next retry */
619 handle_packet(uint32_t *data
, size_t length
)
622 printf("bus reset\r\n");
623 clear_pending_transaction_list();
624 } else if (length
> sizeof(struct phy_packet
)) {
625 struct link_packet
*p
= (struct link_packet
*) data
;
627 switch (packet_info
[p
->common
.tcode
].type
) {
629 return handle_request_packet(data
, length
);
631 case PACKET_RESPONSE
:
632 return handle_response_packet(data
, length
);
635 case PACKET_RESERVED
:
644 get_bits(struct link_packet
*packet
, int offset
, int width
)
646 uint32_t *data
= (uint32_t *) packet
;
647 uint32_t index
, shift
, mask
;
649 index
= offset
/ 32 + 1;
650 shift
= 32 - (offset
& 31) - width
;
651 mask
= width
== 32 ? ~0 : (1 << width
) - 1;
653 return (data
[index
] >> shift
) & mask
;
656 #if __BYTE_ORDER == __LITTLE_ENDIAN
657 #define byte_index(i) ((i) ^ 3)
658 #elif __BYTE_ORDER == __BIG_ENDIAN
659 #define byte_index(i) (i)
661 #error unsupported byte order.
665 dump_data(unsigned char *data
, int length
)
672 print_length
= length
;
674 for (i
= 0; i
< print_length
; i
++)
676 (i
% 4 == 0 && i
!= 0) ? " " : "",
677 data
[byte_index(i
)]);
679 if (print_length
< length
)
680 printf(" (%d more bytes)", length
- print_length
);
684 decode_link_packet(struct link_packet
*packet
, size_t length
,
685 int include_flags
, int exclude_flags
)
687 const struct packet_info
*pi
;
691 pi
= &packet_info
[packet
->common
.tcode
];
693 for (i
= 0; i
< pi
->field_count
; i
++) {
694 const struct packet_field
*f
= &pi
->fields
[i
];
697 if (f
->flags
& exclude_flags
)
699 if (include_flags
&& !(f
->flags
& include_flags
))
703 offset
= length
* 8 + f
->offset
- 32;
707 if (f
->value_names
!= NULL
) {
710 bits
= get_bits(packet
, offset
, f
->width
);
711 printf("%s", f
->value_names
[bits
]);
712 } else if (f
->width
== 0) {
713 printf("%s=[", f
->name
);
714 dump_data((unsigned char *) packet
+ (offset
/ 8 + 4), data_length
);
717 unsigned long long bits
;
718 int high_width
, low_width
;
720 if ((offset
& ~31) != ((offset
+ f
->width
- 1) & ~31)) {
721 /* Bit field spans quadlet boundary. */
722 high_width
= ((offset
+ 31) & ~31) - offset
;
723 low_width
= f
->width
- high_width
;
725 bits
= get_bits(packet
, offset
, high_width
);
726 bits
= (bits
<< low_width
) |
727 get_bits(packet
, offset
+ high_width
, low_width
);
729 bits
= get_bits(packet
, offset
, f
->width
);
732 printf("%s=0x%0*llx", f
->name
, (f
->width
+ 3) / 4, bits
);
734 if (f
->flags
& PACKET_FIELD_DATA_LENGTH
)
738 if (i
< pi
->field_count
- 1)
744 print_packet(uint32_t *data
, size_t length
)
748 printf("%6u ", data
[0]);
752 } else if (length
< sizeof(struct phy_packet
)) {
753 printf("short packet: ");
754 for (i
= 1; i
< length
/ 4; i
++)
755 printf("%s%08x", i
== 0 ? "[" : " ", data
[i
]);
758 } else if (length
== sizeof(struct phy_packet
) && data
[1] == ~data
[2]) {
759 struct phy_packet
*pp
= (struct phy_packet
*) data
;
761 /* phy packet are 3 quadlets: the 1 quadlet payload,
762 * the bitwise inverse of the payload and the snoop
765 switch (pp
->common
.identifier
) {
766 case PHY_PACKET_CONFIGURATION
:
767 if (!pp
->phy_config
.set_root
&& !pp
->phy_config
.set_gap_count
) {
768 printf("ext phy config: phy_id=%02x", pp
->phy_config
.root_id
);
770 printf("phy config:");
771 if (pp
->phy_config
.set_root
)
772 printf(" set_root_id=%02x", pp
->phy_config
.root_id
);
773 if (pp
->phy_config
.set_gap_count
)
774 printf(" set_gap_count=%d", pp
->phy_config
.gap_count
);
778 case PHY_PACKET_LINK_ON
:
779 printf("link-on packet, phy_id=%02x", pp
->link_on
.phy_id
);
782 case PHY_PACKET_SELF_ID
:
783 if (pp
->self_id
.extended
) {
784 printf("extended self id: phy_id=%02x, seq=%d",
785 pp
->ext_self_id
.phy_id
, pp
->ext_self_id
.sequence
);
787 static const char * const speed_names
[] = {
788 "S100", "S200", "S400", "BETA"
790 printf("self id: phy_id=%02x, link %s, gap_count=%d, speed=%s%s%s",
792 (pp
->self_id
.link_active
? "active" : "not active"),
793 pp
->self_id
.gap_count
,
794 speed_names
[pp
->self_id
.phy_speed
],
795 (pp
->self_id
.contender
? ", irm contender" : ""),
796 (pp
->self_id
.initiated_reset
? ", initiator" : ""));
800 printf("unknown phy packet: ");
801 for (i
= 1; i
< length
/ 4; i
++)
802 printf("%s%08x", i
== 0 ? "[" : " ", data
[i
]);
807 struct link_packet
*packet
= (struct link_packet
*) data
;
809 decode_link_packet(packet
, length
, 0,
810 option_verbose
? 0 : PACKET_FIELD_DETAIL
);
815 dump_data((unsigned char *) data
+ 4, length
- 4);
822 #define HIDE_CURSOR "\033[?25l"
823 #define SHOW_CURSOR "\033[?25h"
824 #define CLEAR "\033[H\033[2J"
827 print_stats(uint32_t *data
, size_t length
)
829 static int bus_reset_count
, short_packet_count
, phy_packet_count
;
830 static int tcode_count
[16];
831 static struct timeval last_update
;
837 else if (length
< sizeof(struct phy_packet
))
838 short_packet_count
++;
839 else if (length
== sizeof(struct phy_packet
) && data
[1] == ~data
[2])
842 struct link_packet
*packet
= (struct link_packet
*) data
;
843 tcode_count
[packet
->common
.tcode
]++;
846 gettimeofday(&now
, NULL
);
847 if (now
.tv_sec
<= last_update
.tv_sec
&&
848 now
.tv_usec
< last_update
.tv_usec
+ 500000)
852 printf(CLEAR HIDE_CURSOR
853 " bus resets : %8d\n"
854 " short packets : %8d\n"
855 " phy packets : %8d\n",
856 bus_reset_count
, short_packet_count
, phy_packet_count
);
858 for (i
= 0; i
< array_length(packet_info
); i
++)
859 if (packet_info
[i
].type
!= PACKET_RESERVED
)
860 printf(" %-24s: %8d\n", packet_info
[i
].name
, tcode_count
[i
]);
861 printf(SHOW_CURSOR
"\n");
864 static struct termios saved_attributes
;
867 reset_input_mode(void)
869 tcsetattr(STDIN_FILENO
, TCSANOW
, &saved_attributes
);
875 struct termios tattr
;
877 /* Make sure stdin is a terminal. */
878 if (!isatty(STDIN_FILENO
)) {
879 fprintf(stderr
, "Not a terminal.\n");
883 /* Save the terminal attributes so we can restore them later. */
884 tcgetattr(STDIN_FILENO
, &saved_attributes
);
885 atexit(reset_input_mode
);
887 /* Set the funny terminal modes. */
888 tcgetattr(STDIN_FILENO
, &tattr
);
889 tattr
.c_lflag
&= ~(ICANON
|ECHO
); /* Clear ICANON and ECHO. */
890 tattr
.c_cc
[VMIN
] = 1;
891 tattr
.c_cc
[VTIME
] = 0;
892 tcsetattr(STDIN_FILENO
, TCSAFLUSH
, &tattr
);
895 int main(int argc
, const char *argv
[])
897 uint32_t buf
[128 * 1024];
899 int length
, retval
, view
;
901 FILE *output
= NULL
, *input
= NULL
;
904 struct pollfd pollfds
[2];
906 sys_sigint_handler
= signal(SIGINT
, sigint_handler
);
908 con
= poptGetContext(NULL
, argc
, argv
, options
, 0);
909 retval
= poptGetNextOpt(con
);
911 poptPrintUsage(con
, stdout
, 0);
915 if (option_version
) {
916 printf("dump tool for nosy sniffer, version %s\n", VERSION
);
920 if (__BYTE_ORDER
!= __LITTLE_ENDIAN
)
921 fprintf(stderr
, "warning: nosy has only been tested on little "
922 "endian machines\n");
924 if (option_input
!= NULL
) {
925 input
= fopen(option_input
, "r");
927 fprintf(stderr
, "Could not open %s, %m\n", option_input
);
931 fd
= open(option_nosy_device
, O_RDWR
);
933 fprintf(stderr
, "Could not open %s, %m\n", option_nosy_device
);
939 if (strcmp(option_view
, "transaction") == 0)
940 view
= VIEW_TRANSACTION
;
941 else if (strcmp(option_view
, "stats") == 0)
947 output
= fopen(option_output
, "w");
948 if (output
== NULL
) {
949 fprintf(stderr
, "Could not open %s, %m\n", option_output
);
954 setvbuf(stdout
, NULL
, _IOLBF
, BUFSIZ
);
958 filter
&= ~(1 << TCODE_STREAM_DATA
);
959 if (!option_cycle_start
)
960 filter
&= ~(1 << TCODE_CYCLE_START
);
961 if (view
== VIEW_STATS
)
962 filter
= ~(1 << TCODE_CYCLE_START
);
964 ioctl(fd
, NOSY_IOC_FILTER
, filter
);
966 ioctl(fd
, NOSY_IOC_START
);
969 pollfds
[0].events
= POLLIN
;
970 pollfds
[1].fd
= STDIN_FILENO
;
971 pollfds
[1].events
= POLLIN
;
975 if (fread(&length
, sizeof length
, 1, input
) != 1)
977 fread(buf
, 1, length
, input
);
979 poll(pollfds
, 2, -1);
980 if (pollfds
[1].revents
) {
981 read(STDIN_FILENO
, &c
, sizeof c
);
990 if (pollfds
[0].revents
)
991 length
= read(fd
, buf
, sizeof buf
);
996 if (output
!= NULL
) {
997 fwrite(&length
, sizeof length
, 1, output
);
998 fwrite(buf
, 1, length
, output
);
1002 case VIEW_TRANSACTION
:
1003 handle_packet(buf
, length
);
1006 print_packet(buf
, length
);
1009 print_stats(buf
, length
);
1019 poptFreeContext(con
);