]> git.ipfire.org Git - thirdparty/cups.git/blame - backend/usb-darwin.c
Merge CUPS 1.4svn-r8058 (tentative CUPS 1.4b1)
[thirdparty/cups.git] / backend / usb-darwin.c
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ef416fc2 1/*
b19ccc9e 2* "$Id: usb-darwin.c 7953 2008-09-17 01:43:19Z mike $"
09a101d6 3*
ac884b6a 4* Copyright 2005-2008 Apple Inc. All rights reserved.
09a101d6 5*
6* IMPORTANT: This Apple software is supplied to you by Apple Computer,
7* Inc. ("Apple") in consideration of your agreement to the following
8* terms, and your use, installation, modification or redistribution of
9* this Apple software constitutes acceptance of these terms. If you do
10* not agree with these terms, please do not use, install, modify or
11* redistribute this Apple software.
12*
13* In consideration of your agreement to abide by the following terms, and
14* subject to these terms, Apple grants you a personal, non-exclusive
15* license, under Apple's copyrights in this original Apple software (the
16* "Apple Software"), to use, reproduce, modify and redistribute the Apple
17* Software, with or without modifications, in source and/or binary forms;
18* provided that if you redistribute the Apple Software in its entirety and
19* without modifications, you must retain this notice and the following
20* text and disclaimers in all such redistributions of the Apple Software.
21* Neither the name, trademarks, service marks or logos of Apple Computer,
22* Inc. may be used to endorse or promote products derived from the Apple
23* Software without specific prior written permission from Apple. Except
24* as expressly stated in this notice, no other rights or licenses, express
25* or implied, are granted by Apple herein, including but not limited to
26* any patent rights that may be infringed by your derivative works or by
27* other works in which the Apple Software may be incorporated.
28*
29* The Apple Software is provided by Apple on an "AS IS" basis. APPLE
30* MAKES NO WARRANTIES, EXPRESS OR IMPLIED, INCLUDING WITHOUT LIMITATION
31* THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY AND FITNESS
32* FOR A PARTICULAR PURPOSE, REGARDING THE APPLE SOFTWARE OR ITS USE AND
33* OPERATION ALONE OR IN COMBINATION WITH YOUR PRODUCTS.
34*
35* IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL
36* OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
37* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
38* INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE, REPRODUCTION,
39* MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED
40* AND WHETHER UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE),
41* STRICT LIABILITY OR OTHERWISE, EVEN IF APPLE HAS BEEN ADVISED OF THE
42* POSSIBILITY OF SUCH DAMAGE.
43*
44* Contents:
45*
46* list_devices() - List all USB devices.
47* print_device() - Print a file to a USB device.
48* sidechannel_thread() - Thread to handle side-channel requests.
49* read_thread() - Thread to read the backchannel data on.
50* list_device_cb() - list_device iterator callback.
51* find_device_cb() - print_device iterator callback.
52* status_timer_cb() - Status timer callback.
53* iterate_printers() - Iterate over all the printers.
54* device_added() - Device added notifier.
55* copy_deviceinfo() - Copy strings from the 1284 device ID.
56* release_deviceinfo() - Release deviceinfo strings.
57* load_classdriver() - Load a classdriver.
58* unload_classdriver() - Unload a classdriver.
59* load_printerdriver() - Load vendor's classdriver.
60* registry_open() - Open a connection to the printer.
61* registry_close() - Close the connection to the printer.
62* copy_deviceid() - Copy the 1284 device id string.
63* copy_devicestring() - Copy the 1284 device id string.
64* copy_value_for_key() - Copy value string associated with a key.
65* cfstr_create_trim() - Create CFString and trim whitespace characters.
66* parse_options() - Parse uri options.
67* setup_cfLanguage() - Create AppleLanguages array from LANG environment var.
749b1e90 68* run_legacy_backend() - Re-exec backend as ppc or i386.
09a101d6 69* sigterm_handler() - SIGTERM handler.
70* next_line() - Find the next line in a buffer.
71* parse_pserror() - Scan the backchannel data for postscript errors.
72* get_device_id() - Return IEEE-1284 device ID.
73*/
ef416fc2 74
75/*
09a101d6 76 * Include necessary headers.
ef416fc2 77 */
09a101d6 78
ef416fc2 79#include <stdio.h>
80#include <stdlib.h>
81#include <errno.h>
82#include <signal.h>
83#include <fcntl.h>
84#include <termios.h>
85#include <unistd.h>
ac884b6a 86#include <sys/stat.h>
e53920b9 87#include <sys/sysctl.h>
88#include <libgen.h>
09a101d6 89#include <mach/mach.h>
e53920b9 90#include <mach/mach_error.h>
91#include <mach/mach_time.h>
92#include <cups/debug.h>
f7deaa1a 93#include <cups/sidechannel.h>
323c5de1 94#include <cups/i18n.h>
db0bd74a 95#include "backend-private.h"
ef416fc2 96
e53920b9 97#include <CoreFoundation/CoreFoundation.h>
98#include <IOKit/usb/IOUSBLib.h>
99#include <IOKit/IOCFPlugIn.h>
ef416fc2 100
749b1e90 101#include <spawn.h>
e53920b9 102#include <pthread.h>
ef416fc2 103
749b1e90
MS
104extern char **environ;
105
f7deaa1a 106
09a101d6 107/*
108 * WAIT_EOF_DELAY is number of seconds we'll wait for responses from
109 * the printer after we've finished sending all the data
ef416fc2 110 */
09a101d6 111#define WAIT_EOF_DELAY 7
bc44d920 112#define WAIT_SIDE_DELAY 3
7dfedb92 113#define DEFAULT_TIMEOUT 5000L
ef416fc2 114
e53920b9 115#define USB_INTERFACE_KIND CFUUIDGetUUIDBytes(kIOUSBInterfaceInterfaceID190)
116#define kUSBLanguageEnglish 0x409
ef416fc2 117
09a101d6 118#define PRINTER_POLLING_INTERVAL 5 /* seconds */
119#define INITIAL_LOG_INTERVAL PRINTER_POLLING_INTERVAL
120#define SUBSEQUENT_LOG_INTERVAL 3 * INITIAL_LOG_INTERVAL
ef416fc2 121
09a101d6 122#define kUSBPrinterClassTypeID CFUUIDGetConstantUUIDWithBytes(NULL, 0x06, 0x04, 0x7D, 0x16, 0x53, 0xA2, 0x11, 0xD6, 0x92, 0x06, 0x00, 0x30, 0x65, 0x52, 0x45, 0x92)
123#define kUSBPrinterClassInterfaceID CFUUIDGetConstantUUIDWithBytes(NULL, 0x03, 0x34, 0x6D, 0x74, 0x53, 0xA3, 0x11, 0xD6, 0x9E, 0xA1, 0x76, 0x30, 0x65, 0x52, 0x45, 0x92)
ef416fc2 124
125#define kUSBClassDriverProperty CFSTR("USB Printing Class")
ef416fc2 126
e53920b9 127#define kUSBGenericTOPrinterClassDriver CFSTR("/System/Library/Printers/Libraries/USBGenericTOPrintingClass.plugin")
128#define kUSBPrinterClassDeviceNotOpen -9664 /*kPMInvalidIOMContext*/
ef416fc2 129
ef416fc2 130
e53920b9 131/*
132 * Section 5.3 USB Printing Class spec
133 */
134#define kUSBPrintingSubclass 1
135#define kUSBPrintingProtocolNoOpen 0
136#define kUSBPrintingProtocolUnidirectional 1
137#define kUSBPrintingProtocolBidirectional 2
138
139typedef IOUSBInterfaceInterface190 **printer_interface_t;
ef416fc2 140
09a101d6 141typedef struct iodevice_request_s /**** Device request ****/
ef416fc2 142{
09a101d6 143 UInt8 requestType;
e53920b9 144 UInt8 request;
145 UInt16 value;
146 UInt16 index;
147 UInt16 length;
09a101d6 148 void *buffer;
e53920b9 149} iodevice_request_t;
150
09a101d6 151typedef union /**** Centronics status byte ****/
152{
e53920b9 153 char b;
09a101d6 154 struct
155 {
e53920b9 156 unsigned reserved0:2;
157 unsigned paperError:1;
158 unsigned select:1;
159 unsigned notError:1;
160 unsigned reserved1:3;
161 } status;
162} centronics_status_t;
163
09a101d6 164typedef struct classdriver_s /**** g.classdriver context ****/
ef416fc2 165{
166 IUNKNOWN_C_GUTS;
e53920b9 167 CFPlugInRef plugin; /* release plugin */
168 IUnknownVTbl **factory; /* Factory */
169 void *vendorReference; /* vendor class specific usage */
170 UInt32 location; /* unique location in bus topology */
171 UInt8 interfaceNumber; /* Interface number */
172 UInt16 vendorID; /* Vendor id */
173 UInt16 productID; /* Product id */
174 printer_interface_t interface; /* identify the device to IOKit */
175 UInt8 outpipe; /* mandatory bulkOut pipe */
176 UInt8 inpipe; /* optional bulkIn pipe */
ef416fc2 177
e53920b9 178 /* general class requests */
09a101d6 179 kern_return_t (*DeviceRequest)(struct classdriver_s **printer, iodevice_request_t *iorequest, UInt16 timeout);
180 kern_return_t (*GetString)(struct classdriver_s **printer, UInt8 whichString, UInt16 language, UInt16 timeout, CFStringRef *result);
ef416fc2 181
e53920b9 182 /* standard printer class requests */
09a101d6 183 kern_return_t (*SoftReset)(struct classdriver_s **printer, UInt16 timeout);
184 kern_return_t (*GetCentronicsStatus)(struct classdriver_s **printer, centronics_status_t *result, UInt16 timeout);
185 kern_return_t (*GetDeviceID)(struct classdriver_s **printer, CFStringRef *devid, UInt16 timeout);
ef416fc2 186
e53920b9 187 /* standard bulk device requests */
09a101d6 188 kern_return_t (*ReadPipe)(struct classdriver_s **printer, UInt8 *buffer, UInt32 *count);
189 kern_return_t (*WritePipe)(struct classdriver_s **printer, UInt8 *buffer, UInt32 *count, Boolean eoj);
ef416fc2 190
e53920b9 191 /* interface requests */
09a101d6 192 kern_return_t (*Open)(struct classdriver_s **printer, UInt32 location, UInt8 protocol);
193 kern_return_t (*Abort)(struct classdriver_s **printer);
194 kern_return_t (*Close)(struct classdriver_s **printer);
ef416fc2 195
e53920b9 196 /* initialize and terminate */
09a101d6 197 kern_return_t (*Initialize)(struct classdriver_s **printer, struct classdriver_s **baseclass);
198 kern_return_t (*Terminate)(struct classdriver_s **printer);
ef416fc2 199
09a101d6 200} classdriver_t;
ef416fc2 201
e53920b9 202typedef Boolean (*iterator_callback_t)(void *refcon, io_service_t obj);
ef416fc2 203
09a101d6 204typedef struct iterator_reference_s /**** Iterator reference data */
205{
e53920b9 206 iterator_callback_t callback;
207 void *userdata;
208 Boolean keepRunning;
209} iterator_reference_t;
ef416fc2 210
09a101d6 211typedef struct globals_s
212{
213 io_service_t printer_obj;
214 classdriver_t **classdriver;
215
216 pthread_mutex_t read_thread_mutex;
217 pthread_cond_t read_thread_cond;
218 int read_thread_stop;
219 int read_thread_done;
ef416fc2 220
09a101d6 221 pthread_mutex_t readwrite_lock_mutex;
222 pthread_cond_t readwrite_lock_cond;
223 int readwrite_lock;
ef416fc2 224
e53920b9 225 CFStringRef make;
226 CFStringRef model;
227 CFStringRef serial;
e53920b9 228 UInt32 location;
bc44d920 229 UInt8 interfaceNum;
09a101d6 230
231 CFRunLoopTimerRef status_timer;
232
233 int print_fd; /* File descriptor to print */
234 ssize_t print_bytes; /* Print bytes read */
235
236 Boolean wait_eof;
237 int drain_output; /* Drain all pending output */
238 int bidi_flag; /* 0=unidirectional, 1=bidirectional */
bc44d920 239
240 pthread_mutex_t sidechannel_thread_mutex;
241 pthread_cond_t sidechannel_thread_cond;
242 int sidechannel_thread_stop;
243 int sidechannel_thread_done;
09a101d6 244} globals_t;
245
246
247/*
248 * Globals...
249 */
250
251globals_t g = { 0 }; /* Globals */
ef416fc2 252
ef416fc2 253
e53920b9 254/*
255 * Local functions...
256 */
ef416fc2 257
09a101d6 258static Boolean find_device_cb(void *refcon, io_service_t obj);
259static Boolean list_device_cb(void *refcon, io_service_t obj);
260static CFStringRef cfstr_create_trim(const char *cstr);
261static CFStringRef copy_value_for_key(CFStringRef deviceID, CFStringRef *keys);
262static kern_return_t load_classdriver(CFStringRef driverPath, printer_interface_t intf, classdriver_t ***printerDriver);
263static kern_return_t load_printerdriver(CFStringRef *driverBundlePath);
264static kern_return_t registry_close();
265static kern_return_t registry_open(CFStringRef *driverBundlePath);
266static kern_return_t unload_classdriver();
267static OSStatus copy_deviceid(classdriver_t **printer, CFStringRef *deviceID);
268static void *read_thread(void *reference);
269static void *sidechannel_thread(void *reference);
e53920b9 270static void copy_deviceinfo(CFStringRef deviceIDString, CFStringRef *make, CFStringRef *model, CFStringRef *serial);
bc44d920 271static void copy_devicestring(io_service_t usbInterface, CFStringRef *deviceID, UInt32 *deviceLocation, UInt8 *interfaceNum);
09a101d6 272static void device_added(void *userdata, io_iterator_t iterator);
273static void get_device_id(cups_sc_status_t *status, char *data, int *datalen);
274static void iterate_printers(iterator_callback_t callBack, void *userdata);
db1f069b 275static void parse_options(char *options, char *serial, int serial_size, UInt32 *location, Boolean *wait_eof);
09a101d6 276static void release_deviceinfo(CFStringRef *make, CFStringRef *model, CFStringRef *serial);
e53920b9 277static void setup_cfLanguage(void);
09a101d6 278static void soft_reset();
279static void status_timer_cb(CFRunLoopTimerRef timer, void *info);
e53920b9 280
749b1e90 281#if defined(__i386__) || defined(__x86_64__)
e53920b9 282static pid_t child_pid; /* Child PID */
749b1e90 283static void run_legacy_backend(int argc, char *argv[], int fd); /* Starts child backend process running as a ppc executable */
e53920b9 284static void sigterm_handler(int sig); /* SIGTERM handler */
749b1e90 285#endif /* __i386__ || __x86_64__ */
ef416fc2 286
e53920b9 287#ifdef PARSE_PS_ERRORS
288static const char *next_line (const char *buffer);
289static void parse_pserror (char *sockBuffer, int len);
290#endif /* PARSE_PS_ERRORS */
ef416fc2 291
e53920b9 292#pragma mark -
ef416fc2 293
e53920b9 294/*
295 * 'list_devices()' - List all USB devices.
296 */
ef416fc2 297
e53920b9 298void list_devices()
ef416fc2 299{
09a101d6 300 iterate_printers(list_device_cb, NULL);
ef416fc2 301}
302
ef416fc2 303
e53920b9 304/*
305 * 'print_device()' - Print a file to a USB device.
306 */
ef416fc2 307
e53920b9 308int /* O - Exit status */
309print_device(const char *uri, /* I - Device URI */
310 const char *hostname, /* I - Hostname/manufacturer */
311 const char *resource, /* I - Resource/modelname */
db1f069b 312 char *options, /* I - Device options/serial number */
09a101d6 313 int print_fd, /* I - File descriptor to print */
e53920b9 314 int copies, /* I - Copies to print */
315 int argc, /* I - Number of command-line arguments (6 or 7) */
316 char *argv[]) /* I - Command-line arguments */
ef416fc2 317{
09a101d6 318 char serial[1024]; /* Serial number buffer */
319 OSStatus status; /* Function results */
320 pthread_t read_thread_id, /* Read thread */
db1f069b 321 sidechannel_thread_id;/* Side-channel thread */
ac884b6a
MS
322 int have_sidechannel = 0; /* Was the side-channel thread started? */
323 struct stat sidechannel_info; /* Side-channel file descriptor info */
09a101d6 324 char print_buffer[8192], /* Print data buffer */
325 *print_ptr; /* Pointer into print data buffer */
326 UInt32 location; /* Unique location in bus topology */
327 fd_set input_set; /* Input set for select() */
328 CFStringRef driverBundlePath; /* Class driver path */
329 int countdown, /* Logging interval */
330 nfds; /* Number of file descriptors */
331 ssize_t total_bytes; /* Total bytes written */
332 UInt32 bytes; /* Bytes written */
333 struct timeval *timeout, /* Timeout pointer */
334 stimeout; /* Timeout for select() */
335 struct timespec cond_timeout; /* pthread condition timeout */
e53920b9 336
db1f069b 337
ac884b6a
MS
338 /*
339 * See if the side-channel descriptor is valid...
340 */
341
342 have_sidechannel = !fstat(CUPS_SC_FD, &sidechannel_info) &&
343 S_ISSOCK(sidechannel_info.st_mode);
344
345 /*
346 * Localize using CoreFoundation...
347 */
348
e53920b9 349 setup_cfLanguage();
09a101d6 350
76cd9e37 351 parse_options(options, serial, sizeof(serial), &location, &g.wait_eof);
e53920b9 352
353 if (resource[0] == '/')
354 resource++;
355
09a101d6 356 g.print_fd = print_fd;
357 g.make = cfstr_create_trim(hostname);
358 g.model = cfstr_create_trim(resource);
359 g.serial = cfstr_create_trim(serial);
360 g.location = location;
e53920b9 361
7dfedb92
MS
362 if (!g.make || !g.model)
363 {
005dd1eb
MS
364 _cupsLangPuts(stderr, _("ERROR: Fatal USB error!\n"));
365
366 if (!g.make)
367 fputs("DEBUG: USB make string is NULL!\n", stderr);
368 if (!g.model)
369 fputs("DEBUG: USB model string is NULL!\n", stderr);
370
371 return (CUPS_BACKEND_STOP);
7dfedb92
MS
372 }
373
e53920b9 374 fputs("STATE: +connecting-to-device\n", stderr);
375
09a101d6 376 countdown = INITIAL_LOG_INTERVAL;
377
378 do
379 {
380 if (g.printer_obj)
381 {
382 IOObjectRelease(g.printer_obj);
383 unload_classdriver(&g.classdriver);
384 g.printer_obj = 0x0;
385 g.classdriver = 0x0;
ef416fc2 386 }
ef416fc2 387
c0e1af83 388 fprintf(stderr, "DEBUG: Looking for '%s %s'\n", hostname, resource);
09a101d6 389
390 iterate_printers(find_device_cb, NULL);
e53920b9 391
c0e1af83 392 fputs("DEBUG: Opening connection\n", stderr);
411affcf 393
394 driverBundlePath = NULL;
09a101d6 395
396 status = registry_open(&driverBundlePath);
397
749b1e90 398#if defined(__i386__) || defined(__x86_64__)
e53920b9 399 /*
749b1e90
MS
400 * If we were unable to load the class drivers for this printer it's
401 * probably because they're ppc or i386. In this case try to run this
402 * backend as i386 or ppc executables so we can use them...
e53920b9 403 */
09a101d6 404 if (status == -2)
405 {
749b1e90 406 run_legacy_backend(argc, argv, print_fd);
e53920b9 407 /* Never returns here */
ef416fc2 408 }
749b1e90 409#endif /* __i386__ || __x86_64__ */
09a101d6 410
411 if (status == -2)
412 {
411affcf 413 /*
414 * If we still were unable to load the class drivers for this printer log
415 * the error and stop the queue...
416 */
417
09a101d6 418 if (driverBundlePath == NULL || !CFStringGetCString(driverBundlePath, print_buffer, sizeof(print_buffer), kCFStringEncodingUTF8))
419 strlcpy(print_buffer, "USB class driver", sizeof(print_buffer));
411affcf 420
c0e1af83 421 fputs("STATE: +apple-missing-usbclassdriver-error\n", stderr);
005dd1eb
MS
422 _cupsLangPuts(stderr, _("ERROR: Fatal USB error!\n"));
423 fprintf(stderr, "DEBUG: Could not load %s\n", print_buffer);
411affcf 424
425 if (driverBundlePath)
426 CFRelease(driverBundlePath);
427
005dd1eb 428 return (CUPS_BACKEND_STOP);
411affcf 429 }
430
431 if (driverBundlePath)
432 CFRelease(driverBundlePath);
e53920b9 433
09a101d6 434 if (status != noErr)
435 {
436 sleep(PRINTER_POLLING_INTERVAL);
e53920b9 437 countdown -= PRINTER_POLLING_INTERVAL;
09a101d6 438 if (countdown <= 0)
439 {
005dd1eb
MS
440 _cupsLangPuts(stderr,
441 _("INFO: Waiting for printer to become available...\n"));
442 fprintf(stderr, "DEBUG: USB printer status: 0x%08x\n", (int)status);
e53920b9 443 countdown = SUBSEQUENT_LOG_INTERVAL; /* subsequent log entries, every 15 seconds */
444 }
445 }
446 } while (status != noErr);
ef416fc2 447
e53920b9 448 fputs("STATE: -connecting-to-device\n", stderr);
ef416fc2 449
e53920b9 450 /*
451 * Now that we are "connected" to the port, ignore SIGTERM so that we
452 * can finish out any page data the driver sends (e.g. to eject the
453 * current page... Only ignore SIGTERM if we are printing data from
454 * stdin (otherwise you can't cancel raw jobs...)
455 */
ef416fc2 456
09a101d6 457 if (!print_fd)
458 {
bc44d920 459 struct sigaction action; /* POSIX signal action */
460
461
e53920b9 462 memset(&action, 0, sizeof(action));
ef416fc2 463
e53920b9 464 sigemptyset(&action.sa_mask);
465 action.sa_handler = SIG_IGN;
466 sigaction(SIGTERM, &action, NULL);
e53920b9 467 }
ef416fc2 468
09a101d6 469 /*
ac884b6a 470 * Start the side channel thread if the descriptor is valid...
09a101d6 471 */
ef416fc2 472
09a101d6 473 pthread_mutex_init(&g.readwrite_lock_mutex, NULL);
474 pthread_cond_init(&g.readwrite_lock_cond, NULL);
475 g.readwrite_lock = 1;
f7deaa1a 476
ac884b6a 477 if (have_sidechannel)
09a101d6 478 {
bc44d920 479 g.sidechannel_thread_stop = 0;
480 g.sidechannel_thread_done = 0;
481
482 pthread_cond_init(&g.sidechannel_thread_cond, NULL);
483 pthread_mutex_init(&g.sidechannel_thread_mutex, NULL);
484
09a101d6 485 if (pthread_create(&sidechannel_thread_id, NULL, sidechannel_thread, NULL))
486 {
005dd1eb
MS
487 _cupsLangPuts(stderr, _("ERROR: Fatal USB error!\n"));
488 fputs("DEBUG: Couldn't create side-channel thread!\n", stderr);
489 return (CUPS_BACKEND_STOP);
09a101d6 490 }
491 }
f7deaa1a 492
09a101d6 493 /*
494 * Get the read thread going...
495 */
f7deaa1a 496
09a101d6 497 g.read_thread_stop = 0;
498 g.read_thread_done = 0;
f7deaa1a 499
09a101d6 500 pthread_cond_init(&g.read_thread_cond, NULL);
501 pthread_mutex_init(&g.read_thread_mutex, NULL);
f7deaa1a 502
09a101d6 503 if (pthread_create(&read_thread_id, NULL, read_thread, NULL))
504 {
005dd1eb
MS
505 _cupsLangPuts(stderr, _("ERROR: Fatal USB error!\n"));
506 fputs("DEBUG: Couldn't create read thread!\n", stderr);
507 return (CUPS_BACKEND_STOP);
e53920b9 508 }
ef416fc2 509
09a101d6 510 /*
511 * The main thread sends the print file...
512 */
f7deaa1a 513
09a101d6 514 g.drain_output = 0;
515 g.print_bytes = 0;
516 total_bytes = 0;
517 print_ptr = print_buffer;
ef416fc2 518
09a101d6 519 while (status == noErr && copies-- > 0)
520 {
005dd1eb 521 _cupsLangPuts(stderr, _("INFO: Sending print data...\n"));
757d2cad 522
09a101d6 523 if (print_fd != STDIN_FILENO)
524 {
749b1e90 525 fputs("PAGE: 1 1\n", stderr);
09a101d6 526 lseek(print_fd, 0, SEEK_SET);
ef416fc2 527 }
528
09a101d6 529 while (status == noErr)
530 {
531 FD_ZERO(&input_set);
e53920b9 532
09a101d6 533 if (!g.print_bytes)
534 FD_SET(print_fd, &input_set);
f7deaa1a 535
09a101d6 536 /*
537 * Calculate select timeout...
538 * If we have data waiting to send timeout is 100ms.
539 * else if we're draining print_fd timeout is 0.
540 * else we're waiting forever...
541 */
542
543 if (g.print_bytes)
544 {
545 stimeout.tv_sec = 0;
546 stimeout.tv_usec = 100000; /* 100ms */
547 timeout = &stimeout;
548 }
549 else if (g.drain_output)
550 {
551 stimeout.tv_sec = 0;
552 stimeout.tv_usec = 0;
553 timeout = &stimeout;
554 }
555 else
556 timeout = NULL;
557
558 /*
559 * I/O is unlocked around select...
560 */
561
562 pthread_mutex_lock(&g.readwrite_lock_mutex);
563 g.readwrite_lock = 0;
564 pthread_cond_signal(&g.readwrite_lock_cond);
565 pthread_mutex_unlock(&g.readwrite_lock_mutex);
566
567 nfds = select(print_fd + 1, &input_set, NULL, NULL, timeout);
568
569 /*
570 * Reacquire the lock...
571 */
572
573 pthread_mutex_lock(&g.readwrite_lock_mutex);
574 while (g.readwrite_lock)
575 pthread_cond_wait(&g.readwrite_lock_cond, &g.readwrite_lock_mutex);
576 g.readwrite_lock = 1;
577 pthread_mutex_unlock(&g.readwrite_lock_mutex);
578
579 if (nfds < 0)
580 {
581 if (errno == EINTR && total_bytes == 0)
582 {
583 fputs("DEBUG: Received an interrupt before any bytes were "
584 "written, aborting!\n", stderr);
585 return (0);
586 }
587 else if (errno != EAGAIN)
588 {
005dd1eb
MS
589 _cupsLangPuts(stderr, _("ERROR: Unable to read print data!\n"));
590 perror("DEBUG: select");
591 return (CUPS_BACKEND_STOP);
09a101d6 592 }
593 }
594
595 /*
596 * If drain output has finished send a response...
597 */
598
599 if (g.drain_output && !nfds && !g.print_bytes)
600 {
601 /* Send a response... */
602 cupsSideChannelWrite(CUPS_SC_CMD_DRAIN_OUTPUT, CUPS_SC_STATUS_OK, NULL, 0, 1.0);
603 g.drain_output = 0;
604 }
605
606 /*
607 * Check if we have print data ready...
608 */
609
610 if (FD_ISSET(print_fd, &input_set))
611 {
612 g.print_bytes = read(print_fd, print_buffer, sizeof(print_buffer));
613
614 if (g.print_bytes < 0)
615 {
616 /*
617 * Read error - bail if we don't see EAGAIN or EINTR...
618 */
619
620 if (errno != EAGAIN || errno != EINTR)
621 {
005dd1eb
MS
622 _cupsLangPuts(stderr, _("ERROR: Unable to read print data!\n"));
623 perror("DEBUG: read");
09a101d6 624 return CUPS_BACKEND_STOP;
625 }
626
627 g.print_bytes = 0;
f7deaa1a 628 }
09a101d6 629 else if (g.print_bytes == 0)
630 {
631 /*
632 * End of file, break out of the loop...
633 */
f7deaa1a 634
e53920b9 635 break;
ef416fc2 636 }
637
09a101d6 638 print_ptr = print_buffer;
639
640 fprintf(stderr, "DEBUG: Read %d bytes of print data...\n",
641 (int)g.print_bytes);
e53920b9 642 }
ef416fc2 643
09a101d6 644 if (g.print_bytes)
645 {
646 bytes = g.print_bytes;
ef416fc2 647
09a101d6 648 status = (*g.classdriver)->WritePipe(g.classdriver, (UInt8*)print_ptr, &bytes, 0);
f7deaa1a 649
09a101d6 650 /*
58dc1933
MS
651 * Ignore timeout errors, but retain the number of bytes written to
652 * avoid sending duplicate data (<rdar://problem/6254911>)...
09a101d6 653 */
e53920b9 654
09a101d6 655 if (status == kIOUSBTransactionTimeout)
09a101d6 656 status = 0;
ef416fc2 657
09a101d6 658 if (status || bytes < 0)
659 {
660 /*
661 * Write error - bail if we don't see an error we can retry...
662 */
f7deaa1a 663
09a101d6 664 OSStatus err = (*g.classdriver)->Abort(g.classdriver);
005dd1eb
MS
665 _cupsLangPuts(stderr, _("ERROR: Unable to send print data!\n"));
666 fprintf(stderr, "DEBUG: USB class driver WritePipe returned %ld\n",
667 (long)status);
668 fprintf(stderr, "DEBUG: USB class driver Abort returned %ld\n",
669 (long)err);
bc44d920 670 status = CUPS_BACKEND_STOP;
671 break;
09a101d6 672 }
673
674 fprintf(stderr, "DEBUG: Wrote %d bytes of print data...\n", (int)bytes);
675
676 g.print_bytes -= bytes;
677 print_ptr += bytes;
678 total_bytes += bytes;
f7deaa1a 679 }
09a101d6 680
681 if (print_fd != 0 && status == noErr)
682 fprintf(stderr, "DEBUG: Sending print file, %lld bytes...\n",
683 (off_t)total_bytes);
f7deaa1a 684 }
f7deaa1a 685 }
686
09a101d6 687 fprintf(stderr, "DEBUG: Sent %lld bytes...\n", (off_t)total_bytes);
f7deaa1a 688
09a101d6 689 /*
690 * Wait for the side channel thread to exit...
691 */
692
ac884b6a 693 if (have_sidechannel)
bc44d920 694 {
db1f069b
MS
695 close(CUPS_SC_FD);
696 pthread_mutex_lock(&g.readwrite_lock_mutex);
697 g.readwrite_lock = 0;
698 pthread_cond_signal(&g.readwrite_lock_cond);
699 pthread_mutex_unlock(&g.readwrite_lock_mutex);
700
701 g.sidechannel_thread_stop = 1;
702 pthread_mutex_lock(&g.sidechannel_thread_mutex);
703 if (!g.sidechannel_thread_done)
704 {
705 /*
706 * Wait for the side-channel thread to exit...
707 */
bc44d920 708
db1f069b
MS
709 cond_timeout.tv_sec = time(NULL) + WAIT_SIDE_DELAY;
710 cond_timeout.tv_nsec = 0;
711 if (pthread_cond_timedwait(&g.sidechannel_thread_cond,
712 &g.sidechannel_thread_mutex,
713 &cond_timeout) != 0)
714 {
715 /*
716 * Force the side-channel thread to exit...
717 */
718
719 pthread_kill(sidechannel_thread_id, SIGTERM);
720 }
721 }
722 pthread_mutex_unlock(&g.sidechannel_thread_mutex);
09a101d6 723
db1f069b
MS
724 pthread_join(sidechannel_thread_id, NULL);
725
726 pthread_cond_destroy(&g.sidechannel_thread_cond);
727 pthread_mutex_destroy(&g.sidechannel_thread_mutex);
728 }
bc44d920 729
09a101d6 730 pthread_cond_destroy(&g.readwrite_lock_cond);
731 pthread_mutex_destroy(&g.readwrite_lock_mutex);
732
733 /*
734 * Signal the read thread to stop...
735 */
736
737 g.read_thread_stop = 1;
738
739 /*
740 * Give the read thread WAIT_EOF_DELAY seconds to complete all the data. If
db1f069b 741 * we are not signaled in that time then force the thread to exit.
09a101d6 742 */
743
744 pthread_mutex_lock(&g.read_thread_mutex);
ef416fc2 745
09a101d6 746 if (!g.read_thread_done)
747 {
748 cond_timeout.tv_sec = time(NULL) + WAIT_EOF_DELAY;
749 cond_timeout.tv_nsec = 0;
ef416fc2 750
bc44d920 751 if (pthread_cond_timedwait(&g.read_thread_cond, &g.read_thread_mutex,
752 &cond_timeout) != 0)
db1f069b
MS
753 {
754 /*
755 * Force the read thread to exit...
756 */
757
758 pthread_kill(read_thread_id, SIGTERM);
759 }
09a101d6 760 }
761 pthread_mutex_unlock(&g.read_thread_mutex);
ef416fc2 762
09a101d6 763 pthread_join(read_thread_id, NULL); /* wait for the read thread to return */
e53920b9 764
09a101d6 765 pthread_cond_destroy(&g.read_thread_cond);
766 pthread_mutex_destroy(&g.read_thread_mutex);
f7deaa1a 767
09a101d6 768 /*
769 * Close the connection and input file and general clean up...
770 */
f7deaa1a 771
09a101d6 772 registry_close();
f7deaa1a 773
09a101d6 774 if (print_fd != STDIN_FILENO)
775 close(print_fd);
f7deaa1a 776
09a101d6 777 if (g.make != NULL)
778 CFRelease(g.make);
e53920b9 779
09a101d6 780 if (g.model != NULL)
781 CFRelease(g.model);
e53920b9 782
09a101d6 783 if (g.serial != NULL)
784 CFRelease(g.serial);
e53920b9 785
09a101d6 786 if (g.printer_obj != 0x0)
787 IOObjectRelease(g.printer_obj);
e53920b9 788
789 return status;
ef416fc2 790}
791
09a101d6 792
793/*
794 * 'read_thread()' - Thread to read the backchannel data on.
795 */
796
797static void *read_thread(void *reference)
798{
799 UInt8 readbuffer[512];
800 UInt32 rbytes;
801 kern_return_t readstatus;
802 struct mach_timebase_info timeBaseInfo;
803 uint64_t start,
804 delay;
805
806 /* Calculate what 250 milliSeconds are in mach absolute time...
807 */
808 mach_timebase_info(&timeBaseInfo);
809 delay = ((uint64_t)250000000 * (uint64_t)timeBaseInfo.denom) / (uint64_t)timeBaseInfo.numer;
810
811 do
812 {
813 /*
814 * Remember when we started so we can throttle the loop after the read call...
815 */
816
817 start = mach_absolute_time();
818
819 rbytes = sizeof(readbuffer);
820 readstatus = (*g.classdriver)->ReadPipe(g.classdriver, readbuffer, &rbytes);
821 if (readstatus == kIOReturnSuccess && rbytes > 0)
822 {
823 cupsBackChannelWrite((char*)readbuffer, rbytes, 1.0);
824
825 /* cntrl-d is echoed by the printer.
826 * NOTES:
827 * Xerox Phaser 6250D doesn't echo the cntrl-d.
828 * Xerox Phaser 6250D doesn't always send the product query.
829 */
830 if (g.wait_eof && readbuffer[rbytes-1] == 0x4)
831 break;
832
833#ifdef PARSE_PS_ERRORS
834 parse_pserror(readbuffer, rbytes);
835#endif
836 }
837
838 /*
839 * Make sure this loop executes no more than once every 250 miliseconds...
840 */
841
842 if ((readstatus != kIOReturnSuccess || rbytes == 0) && (g.wait_eof || !g.read_thread_stop))
843 mach_wait_until(start + delay);
844
845 } while (g.wait_eof || !g.read_thread_stop); /* Abort from main thread tests error here */
846
847 /*
848 * Let the main thread know that we have completed the read thread...
849 */
850
851 pthread_mutex_lock(&g.read_thread_mutex);
852 g.read_thread_done = 1;
853 pthread_cond_signal(&g.read_thread_cond);
854 pthread_mutex_unlock(&g.read_thread_mutex);
855
856 return NULL;
857}
858
859
860/*
861 * 'sidechannel_thread()' - Handle side-channel requests.
862 */
863
864static void*
865sidechannel_thread(void *reference)
866{
867 cups_sc_command_t command; /* Request command */
868 cups_sc_status_t status; /* Request/response status */
869 char data[2048]; /* Request/response data */
870 int datalen; /* Request/response data size */
871
bc44d920 872
873 do
09a101d6 874 {
875 datalen = sizeof(data);
876
877 if (cupsSideChannelRead(&command, &status, data, &datalen, 1.0))
bc44d920 878 continue;
09a101d6 879
880 switch (command)
881 {
882 case CUPS_SC_CMD_SOFT_RESET: /* Do a soft reset */
db1f069b
MS
883 if ((*g.classdriver)->SoftReset != NULL)
884 {
885 soft_reset();
886 cupsSideChannelWrite(command, CUPS_SC_STATUS_OK, NULL, 0, 1.0);
887 }
888 else
889 {
890 cupsSideChannelWrite(command, CUPS_SC_STATUS_NOT_IMPLEMENTED,
891 NULL, 0, 1.0);
892 }
09a101d6 893 break;
894
895 case CUPS_SC_CMD_DRAIN_OUTPUT: /* Drain all pending output */
896 g.drain_output = 1;
897 break;
898
899 case CUPS_SC_CMD_GET_BIDI: /* Is the connection bidirectional? */
900 data[0] = g.bidi_flag;
901 cupsSideChannelWrite(command, CUPS_SC_STATUS_OK, data, 1, 1.0);
902 break;
903
904 case CUPS_SC_CMD_GET_DEVICE_ID: /* Return IEEE-1284 device ID */
905 datalen = sizeof(data);
906 get_device_id(&status, data, &datalen);
907 cupsSideChannelWrite(command, CUPS_SC_STATUS_OK, data, datalen, 1.0);
908 break;
909
910 case CUPS_SC_CMD_GET_STATE: /* Return device state */
911 data[0] = CUPS_SC_STATE_ONLINE;
912 cupsSideChannelWrite(command, CUPS_SC_STATUS_OK, data, 1, 1.0);
913 break;
914
915 default:
916 cupsSideChannelWrite(command, CUPS_SC_STATUS_NOT_IMPLEMENTED,
917 NULL, 0, 1.0);
918 break;
919 }
920 }
bc44d920 921 while (!g.sidechannel_thread_stop);
922
923 pthread_mutex_lock(&g.sidechannel_thread_mutex);
924 g.sidechannel_thread_done = 1;
925 pthread_cond_signal(&g.sidechannel_thread_cond);
926 pthread_mutex_unlock(&g.sidechannel_thread_mutex);
927
09a101d6 928 return NULL;
929}
930
931
e53920b9 932#pragma mark -
ef416fc2 933/*
09a101d6 934 * 'iterate_printers()' - Iterate over all the printers.
935 */
936
937static void iterate_printers(iterator_callback_t callBack,
938 void *userdata)
939{
940 mach_port_t masterPort = 0x0;
941 kern_return_t kr = IOMasterPort (bootstrap_port, &masterPort);
942
943 if (kr == kIOReturnSuccess && masterPort != 0x0)
944 {
945 io_iterator_t addIterator = 0x0;
946
947 iterator_reference_t reference = { callBack, userdata, true };
948 IONotificationPortRef addNotification = IONotificationPortCreate(masterPort);
949
950 int klass = kUSBPrintingClass;
951 int subklass = kUSBPrintingSubclass;
952
953 CFNumberRef usb_klass = CFNumberCreate(NULL, kCFNumberIntType, &klass);
954 CFNumberRef usb_subklass = CFNumberCreate(NULL, kCFNumberIntType, &subklass);
955 CFMutableDictionaryRef usbPrinterMatchDictionary = IOServiceMatching(kIOUSBInterfaceClassName);
956
957 CFDictionaryAddValue(usbPrinterMatchDictionary, CFSTR("bInterfaceClass"), usb_klass);
958 CFDictionaryAddValue(usbPrinterMatchDictionary, CFSTR("bInterfaceSubClass"), usb_subklass);
959
960 CFRelease(usb_klass);
961 CFRelease(usb_subklass);
962
963 kr = IOServiceAddMatchingNotification(addNotification, kIOMatchedNotification, usbPrinterMatchDictionary, &device_added, &reference, &addIterator);
964 if (addIterator != 0x0)
965 {
966 device_added (&reference, addIterator);
967
968 if (reference.keepRunning)
969 {
970 CFRunLoopAddSource(CFRunLoopGetCurrent(), IONotificationPortGetRunLoopSource(addNotification), kCFRunLoopDefaultMode);
971 CFRunLoopRun();
972 }
973 IOObjectRelease(addIterator);
974 }
975 mach_port_deallocate(mach_task_self(), masterPort);
976 }
977}
978
979
980/*
981 * 'device_added()' - Device added notifier.
e53920b9 982 */
983
09a101d6 984static void device_added(void *userdata,
985 io_iterator_t iterator)
986{
987 iterator_reference_t *reference = userdata;
988
989 io_service_t obj;
990 while (reference->keepRunning && (obj = IOIteratorNext(iterator)) != 0x0)
991 {
992 if (reference->callback != NULL)
993 reference->keepRunning = reference->callback(reference->userdata, obj);
994
995 IOObjectRelease(obj);
996 }
997
998 /* One last call to the call back now that we are not longer have printers left to iterate...
999 */
1000 if (reference->keepRunning)
1001 reference->keepRunning = reference->callback(reference->userdata, 0x0);
1002
1003 if (!reference->keepRunning)
1004 CFRunLoopStop(CFRunLoopGetCurrent());
1005}
1006
1007
1008/*
1009 * 'list_device_cb()' - list_device iterator callback.
1010 */
1011
1012static Boolean list_device_cb(void *refcon,
1013 io_service_t obj)
ef416fc2 1014{
e53920b9 1015 Boolean keepRunning = (obj != 0x0);
1016
09a101d6 1017 if (keepRunning)
1018 {
e53920b9 1019 CFStringRef deviceIDString = NULL;
1020 UInt32 deviceLocation = 0;
bc44d920 1021 UInt8 interfaceNum = 0;
e53920b9 1022
bc44d920 1023 copy_devicestring(obj, &deviceIDString, &deviceLocation, &interfaceNum);
09a101d6 1024 if (deviceIDString != NULL)
1025 {
e53920b9 1026 CFStringRef make = NULL, model = NULL, serial = NULL;
f7deaa1a 1027 char uristr[1024], makestr[1024], modelstr[1024], serialstr[1024];
db0bd74a 1028 char optionsstr[1024], idstr[1024], make_modelstr[1024];
e53920b9 1029
1030 copy_deviceinfo(deviceIDString, &make, &model, &serial);
f7deaa1a 1031 CFStringGetCString(deviceIDString, idstr, sizeof(idstr),
1032 kCFStringEncodingUTF8);
db0bd74a
MS
1033 backendGetMakeModel(idstr, make_modelstr, sizeof(make_modelstr));
1034
1035 modelstr[0] = '/';
f7deaa1a 1036
0af14961
MS
1037 if (!make ||
1038 !CFStringGetCString(make, makestr, sizeof(makestr),
568fa3fa 1039 kCFStringEncodingUTF8))
f7deaa1a 1040 strcpy(makestr, "Unknown");
1041
0af14961
MS
1042 if (!model ||
1043 !CFStringGetCString(model, &modelstr[1], sizeof(modelstr)-1,
568fa3fa 1044 kCFStringEncodingUTF8))
f7deaa1a 1045 strcpy(modelstr + 1, "Printer");
e53920b9 1046
1047 optionsstr[0] = '\0';
1048 if (serial != NULL)
1049 {
1050 CFStringGetCString(serial, serialstr, sizeof(serialstr), kCFStringEncodingUTF8);
1051 snprintf(optionsstr, sizeof(optionsstr), "?serial=%s", serialstr);
1052 }
1053 else if (deviceLocation != 0)
09a101d6 1054 snprintf(optionsstr, sizeof(optionsstr), "?location=%x", (unsigned)deviceLocation);
e53920b9 1055
1056 httpAssembleURI(HTTP_URI_CODING_ALL, uristr, sizeof(uristr), "usb", NULL, makestr, 0, modelstr);
1057 strncat(uristr, optionsstr, sizeof(uristr));
1058
749b1e90
MS
1059 cupsBackendReport("direct", uristr, make_modelstr, make_modelstr, idstr,
1060 NULL);
e53920b9 1061
1062 release_deviceinfo(&make, &model, &serial);
1063 CFRelease(deviceIDString);
ef416fc2 1064 }
e53920b9 1065 }
1066
1067 return keepRunning;
ef416fc2 1068}
1069
1070
e53920b9 1071/*
09a101d6 1072 * 'find_device_cb()' - print_device iterator callback.
e53920b9 1073 */
ef416fc2 1074
09a101d6 1075static Boolean find_device_cb(void *refcon,
1076 io_service_t obj)
e53920b9 1077{
1078 Boolean keepLooking = true;
1079
09a101d6 1080 if (obj != 0x0)
1081 {
e53920b9 1082 CFStringRef idString = NULL;
1083 UInt32 location = -1;
bc44d920 1084 UInt8 interfaceNum = 0;
e53920b9 1085
bc44d920 1086 copy_devicestring(obj, &idString, &location, &interfaceNum);
09a101d6 1087 if (idString != NULL)
1088 {
e53920b9 1089 CFStringRef make = NULL, model = NULL, serial = NULL;
1090
1091 copy_deviceinfo(idString, &make, &model, &serial);
7dfedb92 1092 if (make && CFStringCompare(make, g.make, kCFCompareCaseInsensitive) == kCFCompareEqualTo)
09a101d6 1093 {
7dfedb92 1094 if (model && CFStringCompare(model, g.model, kCFCompareCaseInsensitive) == kCFCompareEqualTo)
09a101d6 1095 {
1096 if (g.serial != NULL && CFStringGetLength(g.serial) > 0)
1097 {
1098 if (serial != NULL && CFStringCompare(serial, g.serial, kCFCompareCaseInsensitive) == kCFCompareEqualTo)
1099 {
e53920b9 1100 IOObjectRetain(obj);
09a101d6 1101 g.printer_obj = obj;
e53920b9 1102 keepLooking = false;
ef416fc2 1103 }
e53920b9 1104 }
09a101d6 1105 else
1106 {
1107 if (g.printer_obj != 0)
1108 IOObjectRelease(g.printer_obj);
1109
1110 g.printer_obj = obj;
e53920b9 1111 IOObjectRetain(obj);
1112
09a101d6 1113 if (g.location == 0 || g.location == location)
e53920b9 1114 keepLooking = false;
e53920b9 1115 }
bc44d920 1116 if ( !keepLooking )
1117 g.interfaceNum = interfaceNum;
ef416fc2 1118 }
e53920b9 1119 }
1120
1121 release_deviceinfo(&make, &model, &serial);
1122 CFRelease(idString);
ef416fc2 1123 }
e53920b9 1124 }
09a101d6 1125 else
1126 {
1127 keepLooking = (g.printer_obj == 0);
1128 if (obj == 0x0 && keepLooking)
1129 {
1130 CFRunLoopTimerContext context = { 0, refcon, NULL, NULL, NULL };
1131 CFRunLoopTimerRef timer = CFRunLoopTimerCreate(NULL, CFAbsoluteTimeGetCurrent() + 1.0, 10, 0x0, 0x0, status_timer_cb, &context);
1132 if (timer != NULL)
1133 {
7594b224 1134 CFRunLoopAddTimer(CFRunLoopGetCurrent(), timer, kCFRunLoopDefaultMode);
09a101d6 1135 g.status_timer = timer;
7594b224 1136 }
1137 }
1138 }
09a101d6 1139
1140 if (!keepLooking && g.status_timer != NULL)
1141 {
c5571a1d 1142 fputs("STATE: -offline-report\n", stderr);
080811b1 1143 _cupsLangPuts(stderr, _("INFO: Printer is now online.\n"));
09a101d6 1144 CFRunLoopRemoveTimer(CFRunLoopGetCurrent(), g.status_timer, kCFRunLoopDefaultMode);
1145 CFRelease(g.status_timer);
1146 g.status_timer = NULL;
e53920b9 1147 }
ef416fc2 1148
e53920b9 1149 return keepLooking;
ef416fc2 1150}
1151
1152
e53920b9 1153/*
09a101d6 1154 * 'status_timer_cb()' - Status timer callback.
ef416fc2 1155 */
e53920b9 1156
09a101d6 1157static void status_timer_cb(CFRunLoopTimerRef timer,
1158 void *info)
ef416fc2 1159{
c5571a1d 1160 fputs("STATE: +offline-report\n", stderr);
749b1e90 1161 _cupsLangPuts(stderr, _("INFO: Printer is offline.\n"));
0a682745
MS
1162
1163 if (getenv("CLASS") != NULL)
1164 {
1165 /*
1166 * If the CLASS environment variable is set, the job was submitted
1167 * to a class and not to a specific queue. In this case, we want
1168 * to abort immediately so that the job can be requeued on the next
1169 * available printer in the class.
1170 *
1171 * Sleep 5 seconds to keep the job from requeuing too rapidly...
1172 */
1173
1174 sleep(5);
1175
1176 exit(CUPS_BACKEND_FAILED);
1177 }
ef416fc2 1178}
1179
ef416fc2 1180
e53920b9 1181#pragma mark -
1182/*
1183 * 'copy_deviceinfo()' - Copy strings from the 1284 device ID.
1184 */
ef416fc2 1185
09a101d6 1186static void copy_deviceinfo(CFStringRef deviceIDString,
1187 CFStringRef *make,
1188 CFStringRef *model,
1189 CFStringRef *serial)
1190{
e53920b9 1191 CFStringRef modelKeys[] = { CFSTR("MDL:"), CFSTR("MODEL:"), NULL };
1192 CFStringRef makeKeys[] = { CFSTR("MFG:"), CFSTR("MANUFACTURER:"), NULL };
1193 CFStringRef serialKeys[] = { CFSTR("SN:"), CFSTR("SERN:"), NULL };
1194
1195 if (make != NULL)
0af14961 1196 *make = copy_value_for_key(deviceIDString, makeKeys);
568fa3fa 1197
e53920b9 1198 if (model != NULL)
0af14961 1199 *model = copy_value_for_key(deviceIDString, modelKeys);
568fa3fa 1200
e53920b9 1201 if (serial != NULL)
1202 *serial = copy_value_for_key(deviceIDString, serialKeys);
1203}
ef416fc2 1204
ef416fc2 1205
e53920b9 1206/*
1207 * 'release_deviceinfo()' - Release deviceinfo strings.
1208 */
ef416fc2 1209
09a101d6 1210static void release_deviceinfo(CFStringRef *make,
1211 CFStringRef *model,
1212 CFStringRef *serial)
ef416fc2 1213{
09a101d6 1214 if (make != NULL && *make != NULL)
1215 {
e53920b9 1216 CFRelease(*make);
1217 *make = NULL;
1218 }
1219
09a101d6 1220 if (model != NULL && *model != NULL)
1221 {
e53920b9 1222 CFRelease(*model);
1223 *model = NULL;
1224 }
1225
09a101d6 1226 if (serial != NULL && *serial != NULL)
1227 {
e53920b9 1228 CFRelease(*serial);
1229 *serial = NULL;
1230 }
1231}
1232
1233
1234#pragma mark -
1235/*
1236 * 'load_classdriver()' - Load a classdriver.
1237 */
1238
09a101d6 1239static kern_return_t load_classdriver(CFStringRef driverPath,
1240 printer_interface_t intf,
1241 classdriver_t ***printerDriver)
e53920b9 1242{
1243 kern_return_t kr = kUSBPrinterClassDeviceNotOpen;
09a101d6 1244 classdriver_t **driver = NULL;
e53920b9 1245 CFStringRef bundle = (driverPath == NULL ? kUSBGenericTOPrinterClassDriver : driverPath);
1246
09a101d6 1247 if (bundle != NULL)
1248 {
e53920b9 1249 CFURLRef url = CFURLCreateWithFileSystemPath(NULL, bundle, kCFURLPOSIXPathStyle, true);
1250 CFPlugInRef plugin = (url != NULL ? CFPlugInCreate(NULL, url) : NULL);
1251
09a101d6 1252 if (url != NULL)
e53920b9 1253 CFRelease(url);
1254
09a101d6 1255 if (plugin != NULL)
1256 {
e53920b9 1257 CFArrayRef factories = CFPlugInFindFactoriesForPlugInTypeInPlugIn(kUSBPrinterClassTypeID, plugin);
09a101d6 1258 if (factories != NULL && CFArrayGetCount(factories) > 0)
1259 {
e53920b9 1260 CFUUIDRef factoryID = CFArrayGetValueAtIndex(factories, 0);
1261 IUnknownVTbl **iunknown = CFPlugInInstanceCreate(NULL, factoryID, kUSBPrinterClassTypeID);
09a101d6 1262 if (iunknown != NULL)
1263 {
e53920b9 1264 kr = (*iunknown)->QueryInterface(iunknown, CFUUIDGetUUIDBytes(kUSBPrinterClassInterfaceID), (LPVOID *)&driver);
09a101d6 1265 if (kr == kIOReturnSuccess && driver != NULL)
1266 {
1267 classdriver_t **genericDriver = NULL;
1268 if (driverPath != NULL && CFStringCompare(driverPath, kUSBGenericTOPrinterClassDriver, 0) != kCFCompareEqualTo)
e53920b9 1269 kr = load_classdriver(NULL, intf, &genericDriver);
e53920b9 1270
09a101d6 1271 if (kr == kIOReturnSuccess)
1272 {
e53920b9 1273 (*driver)->interface = intf;
1274 (*driver)->Initialize(driver, genericDriver);
1275
1276 (*driver)->plugin = plugin;
1277 (*driver)->interface = intf;
1278 *printerDriver = driver;
1279 }
1280 }
1281 (*iunknown)->Release(iunknown);
1282 }
1283 CFRelease(factories);
1284 }
ef416fc2 1285 }
e53920b9 1286 }
1287
e53920b9 1288 char bundlestr[1024];
1289 CFStringGetCString(bundle, bundlestr, sizeof(bundlestr), kCFStringEncodingUTF8);
c0e1af83 1290 fprintf(stderr, "DEBUG: load_classdriver(%s) (kr:0x%08x)\n", bundlestr, (int)kr);
ef416fc2 1291
e53920b9 1292 return kr;
ef416fc2 1293}
1294
1295
e53920b9 1296/*
1297 * 'unload_classdriver()' - Unload a classdriver.
1298 */
ef416fc2 1299
09a101d6 1300static kern_return_t unload_classdriver(classdriver_t ***classdriver)
e53920b9 1301{
09a101d6 1302 if (*classdriver != NULL)
1303 {
1304 (**classdriver)->Release(*classdriver);
1305 *classdriver = NULL;
e53920b9 1306 }
ef416fc2 1307
e53920b9 1308 return kIOReturnSuccess;
1309}
ef416fc2 1310
ef416fc2 1311
e53920b9 1312/*
09a101d6 1313 * 'load_printerdriver()' - Load vendor's classdriver.
411affcf 1314 *
1315 * If driverBundlePath is not NULL on return it is the callers responsbility to release it!
e53920b9 1316 */
ef416fc2 1317
09a101d6 1318static kern_return_t load_printerdriver(CFStringRef *driverBundlePath)
ef416fc2 1319{
7594b224 1320 IOCFPlugInInterface **iodev = NULL;
1321 SInt32 score;
1322 kern_return_t kr;
1323 printer_interface_t intf;
1324 HRESULT res;
1325
09a101d6 1326 kr = IOCreatePlugInInterfaceForService(g.printer_obj, kIOUSBInterfaceUserClientTypeID, kIOCFPlugInInterfaceID, &iodev, &score);
7594b224 1327 if (kr == kIOReturnSuccess)
1328 {
1329 if ((res = (*iodev)->QueryInterface(iodev, USB_INTERFACE_KIND, (LPVOID *) &intf)) == noErr)
1330 {
09a101d6 1331 *driverBundlePath = IORegistryEntryCreateCFProperty(g.printer_obj, kUSBClassDriverProperty, NULL, kNilOptions);
e53920b9 1332
09a101d6 1333 kr = load_classdriver(*driverBundlePath, intf, &g.classdriver);
ef416fc2 1334
e53920b9 1335 if (kr != kIOReturnSuccess)
1336 (*intf)->Release(intf);
1337 }
1338 IODestroyPlugInInterface(iodev);
1339 }
1340 return kr;
ef416fc2 1341}
1342
1343
e53920b9 1344/*
1345 * 'registry_open()' - Open a connection to the printer.
1346 */
ef416fc2 1347
09a101d6 1348static kern_return_t registry_open(CFStringRef *driverBundlePath)
e53920b9 1349{
09a101d6 1350 g.bidi_flag = 0; /* 0=unidirectional */
f7deaa1a 1351
09a101d6 1352 kern_return_t kr = load_printerdriver(driverBundlePath);
1353 if (kr != kIOReturnSuccess)
e53920b9 1354 kr = -2;
ef416fc2 1355
09a101d6 1356 if (g.classdriver != NULL)
1357 {
bc44d920 1358 (*g.classdriver)->interfaceNumber = g.interfaceNum;
09a101d6 1359 kr = (*g.classdriver)->Open(g.classdriver, g.location, kUSBPrintingProtocolBidirectional);
1360 if (kr != kIOReturnSuccess || (*g.classdriver)->interface == NULL)
1361 {
1362 kr = (*g.classdriver)->Open(g.classdriver, g.location, kUSBPrintingProtocolUnidirectional);
1363 if (kr == kIOReturnSuccess)
1364 {
1365 if ((*g.classdriver)->interface == NULL)
1366 {
1367 (*g.classdriver)->Close(g.classdriver);
e53920b9 1368 kr = -1;
1369 }
1370 }
1371 }
09a101d6 1372 else
1373 g.bidi_flag = 1; /* 1=bidirectional */
e53920b9 1374 }
ef416fc2 1375
09a101d6 1376 if (kr != kIOReturnSuccess)
1377 unload_classdriver(&g.classdriver);
ef416fc2 1378
e53920b9 1379 return kr;
1380}
ef416fc2 1381
ef416fc2 1382
e53920b9 1383/*
1384 * 'registry_close()' - Close the connection to the printer.
1385 */
ef416fc2 1386
09a101d6 1387static kern_return_t registry_close()
ef416fc2 1388{
09a101d6 1389 if (g.classdriver != NULL)
1390 (*g.classdriver)->Close(g.classdriver);
1391
1392 unload_classdriver(&g.classdriver);
e53920b9 1393 return kIOReturnSuccess;
ef416fc2 1394}
1395
1396
e53920b9 1397/*
1398 * 'copy_deviceid()' - Copy the 1284 device id string.
1399 */
1400
09a101d6 1401static OSStatus copy_deviceid(classdriver_t **classdriver,
1402 CFStringRef *deviceID)
ef416fc2 1403{
e53920b9 1404 CFStringRef devID = NULL,
1405
1406 deviceMake = NULL,
1407 deviceModel = NULL,
1408 deviceSerial = NULL;
1409
09a101d6 1410 OSStatus err = (*classdriver)->GetDeviceID(classdriver, &devID, DEFAULT_TIMEOUT);
e53920b9 1411
1412 copy_deviceinfo(devID, &deviceMake, &deviceModel, &deviceSerial);
1413
09a101d6 1414 if (deviceMake == NULL || deviceModel == NULL || deviceSerial == NULL)
1415 {
e53920b9 1416 IOUSBDeviceDescriptor desc;
1417 iodevice_request_t request;
1418
09a101d6 1419 request.requestType = USBmakebmRequestType(kUSBIn, kUSBStandard, kUSBDevice);
e53920b9 1420 request.request = kUSBRqGetDescriptor;
1421 request.value = (kUSBDeviceDesc << 8) | 0;
1422 request.index = 0;
1423 request.length = sizeof(desc);
1424 request.buffer = &desc;
09a101d6 1425 err = (*classdriver)->DeviceRequest(classdriver, &request, DEFAULT_TIMEOUT);
1426 if (err == kIOReturnSuccess)
1427 {
e53920b9 1428 CFMutableStringRef newDevID = CFStringCreateMutable(NULL, 0);
1429
09a101d6 1430 if (deviceMake == NULL)
1431 {
e53920b9 1432 CFStringRef data = NULL;
09a101d6 1433 err = (*classdriver)->GetString(classdriver, desc.iManufacturer, kUSBLanguageEnglish, DEFAULT_TIMEOUT, &data);
1434 if (data != NULL)
1435 {
e53920b9 1436 CFStringAppendFormat(newDevID, NULL, CFSTR("MFG:%@;"), data);
1437 CFRelease(data);
ef416fc2 1438 }
e53920b9 1439 }
1440
09a101d6 1441 if (deviceModel == NULL)
1442 {
e53920b9 1443 CFStringRef data = NULL;
09a101d6 1444 err = (*classdriver)->GetString(classdriver, desc.iProduct, kUSBLanguageEnglish, DEFAULT_TIMEOUT, &data);
1445 if (data != NULL)
1446 {
e53920b9 1447 CFStringAppendFormat(newDevID, NULL, CFSTR("MDL:%@;"), data);
1448 CFRelease(data);
ef416fc2 1449 }
e53920b9 1450 }
1451
09a101d6 1452 if (deviceSerial == NULL && desc.iSerialNumber != 0)
1453 {
e53920b9 1454 CFStringRef data = NULL;
09a101d6 1455 err = (*classdriver)->GetString(classdriver, desc.iSerialNumber, kUSBLanguageEnglish, DEFAULT_TIMEOUT, &data);
1456 if (data != NULL)
1457 {
e53920b9 1458 CFStringAppendFormat(newDevID, NULL, CFSTR("SERN:%@;"), data);
1459 CFRelease(data);
ef416fc2 1460 }
e53920b9 1461 }
ef416fc2 1462
09a101d6 1463 if (devID != NULL)
1464 {
e53920b9 1465 CFStringAppend(newDevID, devID);
1466 CFRelease(devID);
1467 }
ef416fc2 1468
e53920b9 1469 *deviceID = newDevID;
1470 }
1471 }
09a101d6 1472 else
1473 {
e53920b9 1474 *deviceID = devID;
1475 }
1476 release_deviceinfo(&deviceMake, &deviceModel, &deviceSerial);
ef416fc2 1477
e53920b9 1478 return err;
1479}
ef416fc2 1480
ef416fc2 1481
e53920b9 1482/*
1483 * 'copy_devicestring()' - Copy the 1284 device id string.
1484 */
ef416fc2 1485
09a101d6 1486static void copy_devicestring(io_service_t usbInterface,
1487 CFStringRef *deviceID,
bc44d920 1488 UInt32 *deviceLocation,
1489 UInt8 *interfaceNumber )
e53920b9 1490{
7594b224 1491 IOCFPlugInInterface **iodev = NULL;
1492 SInt32 score;
1493 kern_return_t kr;
1494 printer_interface_t intf;
1495 HRESULT res;
09a101d6 1496 classdriver_t **klassDriver = NULL;
7594b224 1497 CFStringRef driverBundlePath;
1498
09a101d6 1499 if ((kr = IOCreatePlugInInterfaceForService(usbInterface,
1500 kIOUSBInterfaceUserClientTypeID,
1501 kIOCFPlugInInterfaceID,
1502 &iodev, &score)) == kIOReturnSuccess)
7594b224 1503 {
09a101d6 1504 if ((res = (*iodev)->QueryInterface(iodev, USB_INTERFACE_KIND, (LPVOID *)
1505 &intf)) == noErr)
7594b224 1506 {
09a101d6 1507 (*intf)->GetLocationID(intf, deviceLocation);
bc44d920 1508 (*intf)->GetInterfaceNumber(intf, interfaceNumber);
e53920b9 1509
09a101d6 1510 driverBundlePath = IORegistryEntryCreateCFProperty(usbInterface,
1511 kUSBClassDriverProperty,
1512 NULL, kNilOptions);
e53920b9 1513
7594b224 1514 kr = load_classdriver(driverBundlePath, intf, &klassDriver);
ef416fc2 1515
7594b224 1516 if (kr != kIOReturnSuccess && driverBundlePath != NULL)
1517 kr = load_classdriver(NULL, intf, &klassDriver);
1518
09a101d6 1519 if (kr == kIOReturnSuccess && klassDriver != NULL)
1520 kr = copy_deviceid(klassDriver, deviceID);
ef416fc2 1521
7594b224 1522 unload_classdriver(&klassDriver);
1523
1524 if (driverBundlePath != NULL)
1525 CFRelease(driverBundlePath);
ef416fc2 1526
e53920b9 1527 /* (*intf)->Release(intf); */
09a101d6 1528 }
e53920b9 1529 IODestroyPlugInInterface(iodev);
1530 }
1531}
ef416fc2 1532
ef416fc2 1533
e53920b9 1534#pragma mark -
1535/*
1536 * 'copy_value_for_key()' - Copy value string associated with a key.
1537 */
ef416fc2 1538
09a101d6 1539static CFStringRef copy_value_for_key(CFStringRef deviceID,
1540 CFStringRef *keys)
ef416fc2 1541{
e53920b9 1542 CFStringRef value = NULL;
1543 CFArrayRef kvPairs = deviceID != NULL ? CFStringCreateArrayBySeparatingStrings(NULL, deviceID, CFSTR(";")) : NULL;
1544 CFIndex max = kvPairs != NULL ? CFArrayGetCount(kvPairs) : 0;
1545 CFIndex idx = 0;
1546
09a101d6 1547 while (idx < max && value == NULL)
1548 {
e53920b9 1549 CFStringRef kvpair = CFArrayGetValueAtIndex(kvPairs, idx);
1550 CFIndex idxx = 0;
09a101d6 1551 while (keys[idxx] != NULL && value == NULL)
1552 {
e53920b9 1553 CFRange range = CFStringFind(kvpair, keys[idxx], kCFCompareCaseInsensitive);
09a101d6 1554 if (range.length != -1)
1555 {
1556 if (range.location != 0)
1557 {
e53920b9 1558 CFMutableStringRef theString = CFStringCreateMutableCopy(NULL, 0, kvpair);
1559 CFStringTrimWhitespace(theString);
1560 range = CFStringFind(theString, keys[idxx], kCFCompareCaseInsensitive);
09a101d6 1561 if (range.location == 0)
e53920b9 1562 value = CFStringCreateWithSubstring(NULL, theString, CFRangeMake(range.length, CFStringGetLength(theString) - range.length));
09a101d6 1563
e53920b9 1564 CFRelease(theString);
1565 }
09a101d6 1566 else
1567 {
e53920b9 1568 CFStringRef theString = CFStringCreateWithSubstring(NULL, kvpair, CFRangeMake(range.length, CFStringGetLength(kvpair) - range.length));
1569 CFMutableStringRef theString2 = CFStringCreateMutableCopy(NULL, 0, theString);
1570 CFRelease(theString);
ef416fc2 1571
e53920b9 1572 CFStringTrimWhitespace(theString2);
1573 value = theString2;
ef416fc2 1574 }
e53920b9 1575 }
1576 idxx++;
ef416fc2 1577 }
e53920b9 1578 idx++;
1579 }
1580
1581 if (kvPairs != NULL)
09a101d6 1582 CFRelease(kvPairs);
e53920b9 1583 return value;
ef416fc2 1584}
1585
1586
411affcf 1587/*
09a101d6 1588 * 'cfstr_create_trim()' - Create CFString and trim whitespace characters.
411affcf 1589 */
1590
09a101d6 1591CFStringRef cfstr_create_trim(const char *cstr)
411affcf 1592{
1593 CFStringRef cfstr;
1594 CFMutableStringRef cfmutablestr = NULL;
09a101d6 1595
411affcf 1596 if ((cfstr = CFStringCreateWithCString(NULL, cstr, kCFStringEncodingUTF8)) != NULL)
1597 {
1598 if ((cfmutablestr = CFStringCreateMutableCopy(NULL, 1024, cfstr)) != NULL)
1599 CFStringTrimWhitespace(cfmutablestr);
1600
1601 CFRelease(cfstr);
1602 }
1603 return (CFStringRef) cfmutablestr;
1604}
1605
1606
e53920b9 1607#pragma mark -
1608/*
db1f069b 1609 * 'parse_options()' - Parse URI options.
e53920b9 1610 */
ef416fc2 1611
db1f069b 1612static void parse_options(char *options,
09a101d6 1613 char *serial,
76cd9e37 1614 int serial_size,
09a101d6 1615 UInt32 *location,
1616 Boolean *wait_eof)
e53920b9 1617{
db1f069b
MS
1618 char sep, /* Separator character */
1619 *name, /* Name of option */
1620 *value; /* Value of option */
1621
ef416fc2 1622
e53920b9 1623 if (serial)
1624 *serial = '\0';
1625 if (location)
1626 *location = 0;
ef416fc2 1627
e53920b9 1628 if (!options)
1629 return;
ef416fc2 1630
db1f069b 1631 while (*options)
09a101d6 1632 {
db1f069b
MS
1633 /*
1634 * Get the name...
1635 */
ef416fc2 1636
db1f069b 1637 name = options;
ef416fc2 1638
db1f069b 1639 while (*options && *options != '=' && *options != '+' && *options != '&')
e53920b9 1640 options ++;
ef416fc2 1641
db1f069b
MS
1642 if ((sep = *options) != '\0')
1643 *options++ = '\0';
ef416fc2 1644
db1f069b
MS
1645 if (sep == '=')
1646 {
1647 /*
1648 * Get the value...
1649 */
ef416fc2 1650
db1f069b
MS
1651 value = options;
1652
1653 while (*options && *options != '+' && *options != '&')
e53920b9 1654 options ++;
db1f069b
MS
1655
1656 if (*options)
1657 *options++ = '\0';
e53920b9 1658 }
db1f069b
MS
1659 else
1660 value = (char *)"";
ef416fc2 1661
db1f069b
MS
1662 /*
1663 * Process the option...
1664 */
1665
1666 if (!strcasecmp(name, "waiteof"))
09a101d6 1667 {
db1f069b
MS
1668 if (!strcasecmp(value, "on") ||
1669 !strcasecmp(value, "yes") ||
1670 !strcasecmp(value, "true"))
09a101d6 1671 *wait_eof = true;
db1f069b
MS
1672 else if (!strcasecmp(value, "off") ||
1673 !strcasecmp(value, "no") ||
1674 !strcasecmp(value, "false"))
09a101d6 1675 *wait_eof = false;
1676 else
db1f069b
MS
1677 _cupsLangPrintf(stderr,
1678 _("WARNING: Boolean expected for waiteof option "
1679 "\"%s\"\n"), value);
e53920b9 1680 }
db1f069b 1681 else if (!strcasecmp(name, "serial"))
76cd9e37 1682 strlcpy(serial, value, serial_size);
db1f069b 1683 else if (!strcasecmp(name, "location") && location)
e53920b9 1684 *location = strtol(value, NULL, 16);
e53920b9 1685 }
e53920b9 1686}
ef416fc2 1687
ef416fc2 1688
e53920b9 1689/*!
1690 * @function setup_cfLanguage
ac884b6a 1691 * @abstract Convert the contents of the CUPS 'APPLE_LANGUAGE' environment
e53920b9 1692 * variable into a one element CF array of languages.
1693 *
1694 * @discussion Each submitted job comes with a natural language. CUPS passes
1695 * that language in an environment variable. We take that language
1696 * and jam it into the AppleLanguages array so that CF will use
1697 * it when reading localized resources. We need to do this before
1698 * any CF code reads and caches the languages array, so this function
1699 * should be called early in main()
1700 */
1701static void setup_cfLanguage(void)
1702{
1703 CFStringRef lang[1] = {NULL};
1704 CFArrayRef langArray = NULL;
1705 const char *requestedLang = NULL;
1706
ac884b6a
MS
1707 if ((requestedLang = getenv("APPLE_LANGUAGE")) == NULL)
1708 requestedLang = getenv("LANG");
1709
09a101d6 1710 if (requestedLang != NULL)
1711 {
e53920b9 1712 lang[0] = CFStringCreateWithCString(kCFAllocatorDefault, requestedLang, kCFStringEncodingUTF8);
1713 langArray = CFArrayCreate(kCFAllocatorDefault, (const void **)lang, sizeof(lang) / sizeof(lang[0]), &kCFTypeArrayCallBacks);
1714
1715 CFPreferencesSetAppValue(CFSTR("AppleLanguages"), langArray, kCFPreferencesCurrentApplication);
005dd1eb 1716 fprintf(stderr, "DEBUG: usb: AppleLanguages=\"%s\"\n", requestedLang);
e53920b9 1717
1718 CFRelease(lang[0]);
1719 CFRelease(langArray);
e53920b9 1720 }
09a101d6 1721 else
ac884b6a 1722 fputs("DEBUG: usb: LANG and APPLE_LANGUAGE environment variables missing.\n", stderr);
e53920b9 1723}
ef416fc2 1724
e53920b9 1725#pragma mark -
749b1e90 1726#if defined(__i386__) || defined(__x86_64__)
e53920b9 1727/*!
749b1e90 1728 * @function run_legacy_backend
e53920b9 1729 *
749b1e90 1730 * @abstract Starts child backend process running as a ppc or i386 executable.
e53920b9 1731 *
1732 * @result Never returns; always calls exit().
1733 *
09a101d6 1734 * @discussion
e53920b9 1735 */
749b1e90
MS
1736static void run_legacy_backend(int argc,
1737 char *argv[],
1738 int fd)
e53920b9 1739{
1740 int i;
1741 int exitstatus = 0;
1742 int childstatus;
1743 pid_t waitpid_status;
1744 char *my_argv[32];
749b1e90 1745 char *usb_legacy_status;
ef416fc2 1746
749b1e90
MS
1747 /*
1748 * If we're running as x86_64 or i386 and couldn't load the class driver
1749 * (because it's ppc or i386), then try to re-exec ourselves in ppc or i386
1750 * mode to try again. If we don't have a ppc or i386 architecture we may be
1751 * running with the same architecture again so guard against this by setting
1752 * and testing an environment variable...
1753 */
e53920b9 1754
749b1e90
MS
1755# ifdef __x86_64__
1756 usb_legacy_status = getenv("USB_I386_STATUS");
1757# else
1758 usb_legacy_status = getenv("USB_PPC_STATUS");
1759# endif /* __x86_64__ */
1760
1761 if (!usb_legacy_status)
09a101d6 1762 {
bc44d920 1763 /*
1764 * Setup a SIGTERM handler then block it before forking...
1765 */
ef416fc2 1766
bc44d920 1767 struct sigaction action; /* POSIX signal action */
1768 sigset_t newmask, /* New signal mask */
1769 oldmask; /* Old signal mask */
58dc1933
MS
1770 char usbpath[1024]; /* Path to USB backend */
1771 const char *cups_serverbin;/* Path to CUPS binaries */
1772
bc44d920 1773
1774 memset(&action, 0, sizeof(action));
1775 sigaddset(&action.sa_mask, SIGTERM);
1776 action.sa_handler = sigterm_handler;
1777 sigaction(SIGTERM, &action, NULL);
1778
1779 sigemptyset(&newmask);
1780 sigaddset(&newmask, SIGTERM);
1781 sigprocmask(SIG_BLOCK, &newmask, &oldmask);
ef416fc2 1782
749b1e90
MS
1783 /*
1784 * Set the environment variable...
1785 */
bc44d920 1786
749b1e90
MS
1787# ifdef __x86_64__
1788 setenv("USB_I386_STATUS", "1", false);
1789# else
1790 setenv("USB_PPC_STATUS", "1", false);
1791# endif /* __x86_64__ */
bc44d920 1792
749b1e90
MS
1793 /*
1794 * Tell the kernel to use the specified CPU architecture...
1795 */
bc44d920 1796
749b1e90
MS
1797# ifdef __x86_64__
1798 cpu_type_t cpu = CPU_TYPE_I386;
1799# else
1800 cpu_type_t cpu = CPU_TYPE_POWERPC;
1801# endif /* __x86_64__ */
9a4f8274 1802 size_t ocount = 1;
749b1e90 1803 posix_spawnattr_t attrs;
ef416fc2 1804
749b1e90
MS
1805 if (!posix_spawnattr_init(&attrs))
1806 {
b19ccc9e
MS
1807 posix_spawnattr_setsigdefault(&attrs, &oldmask);
1808 if (posix_spawnattr_setbinpref_np(&attrs, 1, &cpu, &ocount) || ocount != 1)
9a4f8274
MS
1809 {
1810# ifdef __x86_64__
1811 perror("DEBUG: Unable to set binary preference to i386");
1812# else
1813 perror("DEBUG: Unable to set binary preference to ppc");
1814# endif /* __x86_64__ */
1815 _cupsLangPrintf(stderr, _("Unable to use legacy USB class driver!\n"));
1816 exit(CUPS_BACKEND_STOP);
1817 }
749b1e90 1818 }
bc44d920 1819
749b1e90
MS
1820 /*
1821 * Set up the arguments and call posix_spawn...
1822 */
ef416fc2 1823
58dc1933
MS
1824 if ((cups_serverbin = getenv("CUPS_SERVERBIN")) == NULL)
1825 cups_serverbin = CUPS_SERVERBIN;
1826 snprintf(usbpath, sizeof(usbpath), "%s/backend/usb", cups_serverbin);
1827
749b1e90
MS
1828 for (i = 0; i < argc && i < (sizeof(my_argv) / sizeof(my_argv[0])) - 1; i ++)
1829 my_argv[i] = argv[i];
ef416fc2 1830
749b1e90 1831 my_argv[i] = NULL;
ef416fc2 1832
58dc1933 1833 if (posix_spawn(&child_pid, usbpath, NULL, &attrs, my_argv, environ))
09a101d6 1834 {
58dc1933
MS
1835 fprintf(stderr, "DEBUG: Unable to exec %s: %s\n", usbpath,
1836 strerror(errno));
9a4f8274 1837 _cupsLangPrintf(stderr, _("Unable to use legacy USB class driver!\n"));
749b1e90 1838 exit(CUPS_BACKEND_STOP);
bc44d920 1839 }
e53920b9 1840
bc44d920 1841 /*
1842 * Unblock signals...
1843 */
e53920b9 1844
bc44d920 1845 sigprocmask(SIG_SETMASK, &oldmask, NULL);
e53920b9 1846
bc44d920 1847 /*
1848 * Close the fds we won't be using then wait for the child backend to exit.
1849 */
1850
1851 close(fd);
1852 close(1);
1853
005dd1eb
MS
1854 fprintf(stderr, "DEBUG: Started usb(legacy) backend (PID %d)\n",
1855 (int)child_pid);
bc44d920 1856
1857 while ((waitpid_status = waitpid(child_pid, &childstatus, 0)) == (pid_t)-1 && errno == EINTR)
1858 usleep(1000);
1859
1860 if (WIFSIGNALED(childstatus))
1861 {
749b1e90 1862 exitstatus = CUPS_BACKEND_STOP;
005dd1eb 1863 fprintf(stderr, "DEBUG: usb(legacy) backend %d crashed on signal %d!\n",
749b1e90 1864 child_pid, WTERMSIG(childstatus));
ef416fc2 1865 }
09a101d6 1866 else
1867 {
bc44d920 1868 if ((exitstatus = WEXITSTATUS(childstatus)) != 0)
005dd1eb
MS
1869 fprintf(stderr,
1870 "DEBUG: usb(legacy) backend %d stopped with status %d!\n",
1871 child_pid, exitstatus);
bc44d920 1872 else
005dd1eb
MS
1873 fprintf(stderr, "DEBUG: usb(legacy) backend %d exited with no errors\n",
1874 child_pid);
e53920b9 1875 }
1876 }
09a101d6 1877 else
1878 {
005dd1eb 1879 fputs("DEBUG: usb(legacy) backend running native again\n", stderr);
749b1e90 1880 exitstatus = CUPS_BACKEND_STOP;
e53920b9 1881 }
ef416fc2 1882
e53920b9 1883 exit(exitstatus);
1884}
ef416fc2 1885
e53920b9 1886/*
1887 * 'sigterm_handler()' - SIGTERM handler.
1888 */
ef416fc2 1889
e53920b9 1890static void sigterm_handler(int sig)
ef416fc2 1891{
e53920b9 1892 /* If we started a child process pass the signal on to it...
1893 */
1894 if (child_pid)
1895 kill(child_pid, sig);
1896
1897 exit(1);
ef416fc2 1898}
1899
749b1e90 1900#endif /* __i386__ || __x86_64__ */
ef416fc2 1901
ef416fc2 1902
e53920b9 1903#ifdef PARSE_PS_ERRORS
1904/*
1905 * 'next_line()' - Find the next line in a buffer.
1906 */
ef416fc2 1907
e53920b9 1908static const char *next_line (const char *buffer)
ef416fc2 1909{
e53920b9 1910 const char *cptr, *lptr = NULL;
ef416fc2 1911
e53920b9 1912 for (cptr = buffer; *cptr && lptr == NULL; cptr++)
1913 if (*cptr == '\n' || *cptr == '\r')
1914 lptr = cptr;
1915 return lptr;
ef416fc2 1916}
1917
ef416fc2 1918
e53920b9 1919/*
1920 * 'parse_pserror()' - Scan the backchannel data for postscript errors.
1921 */
ef416fc2 1922
09a101d6 1923static void parse_pserror(char *sockBuffer,
1924 int len)
ef416fc2 1925{
e53920b9 1926 static char gErrorBuffer[1024] = "";
1927 static char *gErrorBufferPtr = gErrorBuffer;
1928 static char *gErrorBufferEndPtr = gErrorBuffer + sizeof(gErrorBuffer);
1929
1930 char *pCommentBegin, *pCommentEnd, *pLineEnd;
1931 char *logLevel;
1932 char logstr[1024];
1933 int logstrlen;
1934
1935 if (gErrorBufferPtr + len > gErrorBufferEndPtr - 1)
1936 gErrorBufferPtr = gErrorBuffer;
1937 if (len > sizeof(gErrorBuffer) - 1)
1938 len = sizeof(gErrorBuffer) - 1;
1939
1940 memcpy(gErrorBufferPtr, (const void *)sockBuffer, len);
1941 gErrorBufferPtr += len;
1942 *(gErrorBufferPtr + 1) = '\0';
1943
e53920b9 1944 pLineEnd = (char *)next_line((const char *)gErrorBuffer);
09a101d6 1945 while (pLineEnd != NULL)
1946 {
e53920b9 1947 *pLineEnd++ = '\0';
1948
1949 pCommentBegin = strstr(gErrorBuffer,"%%[");
1950 pCommentEnd = strstr(gErrorBuffer, "]%%");
09a101d6 1951 if (pCommentBegin != gErrorBuffer && pCommentEnd != NULL)
1952 {
e53920b9 1953 pCommentEnd += 3; /* Skip past "]%%" */
1954 *pCommentEnd = '\0'; /* There's always room for the nul */
1955
1956 if (strncasecmp(pCommentBegin, "%%[ Error:", 10) == 0)
1957 logLevel = "DEBUG";
1958 else if (strncasecmp(pCommentBegin, "%%[ Flushing", 12) == 0)
1959 logLevel = "DEBUG";
1960 else
1961 logLevel = "INFO";
1962
09a101d6 1963 if ((logstrlen = snprintf(logstr, sizeof(logstr), "%s: %s\n", logLevel, pCommentBegin)) >= sizeof(logstr))
1964 {
e53920b9 1965 /* If the string was trucnated make sure it has a linefeed before the nul */
1966 logstrlen = sizeof(logstr) - 1;
1967 logstr[logstrlen - 1] = '\n';
1968 }
1969 write(STDERR_FILENO, logstr, logstrlen);
ef416fc2 1970 }
ef416fc2 1971
e53920b9 1972 /* move everything over... */
1973 strcpy(gErrorBuffer, pLineEnd);
1974 gErrorBufferPtr = gErrorBuffer;
1975 pLineEnd = (char *)next_line((const char *)gErrorBuffer);
1976 }
ef416fc2 1977}
e53920b9 1978#endif /* PARSE_PS_ERRORS */
ef416fc2 1979
e53920b9 1980
1981/*
db1f069b 1982 * 'soft_reset()' - Send a soft reset to the device.
ef416fc2 1983 */
e53920b9 1984
09a101d6 1985static void soft_reset()
ef416fc2 1986{
09a101d6 1987 fd_set input_set; /* Input set for select() */
1988 struct timeval stimeout; /* Timeout for select() */
1989 char buffer[2048]; /* Buffer */
1990 struct timespec cond_timeout; /* pthread condition timeout */
e53920b9 1991
09a101d6 1992 /*
1993 * Send an abort once a second until the I/O lock is released by the main thread...
1994 */
e53920b9 1995
09a101d6 1996 pthread_mutex_lock(&g.readwrite_lock_mutex);
1997 while (g.readwrite_lock)
1998 {
1999 (*g.classdriver)->Abort(g.classdriver);
ef416fc2 2000
09a101d6 2001 cond_timeout.tv_sec = time(NULL) + 1;
2002 cond_timeout.tv_nsec = 0;
e53920b9 2003
09a101d6 2004 pthread_cond_timedwait(&g.readwrite_lock_cond, &g.readwrite_lock_mutex, &cond_timeout);
2005 }
f7deaa1a 2006
09a101d6 2007 g.readwrite_lock = 1;
2008 pthread_mutex_unlock(&g.readwrite_lock_mutex);
f7deaa1a 2009
09a101d6 2010 /*
2011 * Flush bytes waiting on print_fd...
2012 */
f7deaa1a 2013
09a101d6 2014 g.print_bytes = 0;
f7deaa1a 2015
09a101d6 2016 FD_ZERO(&input_set);
2017 FD_SET(g.print_fd, &input_set);
f7deaa1a 2018
09a101d6 2019 stimeout.tv_sec = 0;
2020 stimeout.tv_usec = 0;
f7deaa1a 2021
09a101d6 2022 while (select(g.print_fd+1, &input_set, NULL, NULL, &stimeout) > 0)
2023 if (read(g.print_fd, buffer, sizeof(buffer)) <= 0)
2024 break;
f7deaa1a 2025
09a101d6 2026 /*
2027 * Send the reset...
2028 */
f7deaa1a 2029
7dfedb92 2030 (*g.classdriver)->SoftReset(g.classdriver, DEFAULT_TIMEOUT);
f7deaa1a 2031
09a101d6 2032 /*
2033 * Release the I/O lock...
2034 */
f7deaa1a 2035
09a101d6 2036 pthread_mutex_lock(&g.readwrite_lock_mutex);
2037 g.readwrite_lock = 0;
2038 pthread_cond_signal(&g.readwrite_lock_cond);
2039 pthread_mutex_unlock(&g.readwrite_lock_mutex);
f7deaa1a 2040}
2041
f7deaa1a 2042
2043/*
09a101d6 2044 * 'get_device_id()' - Return IEEE-1284 device ID.
f7deaa1a 2045 */
f7deaa1a 2046
09a101d6 2047static void get_device_id(cups_sc_status_t *status,
2048 char *data,
2049 int *datalen)
2050{
f7deaa1a 2051 UInt32 deviceLocation = 0;
bc44d920 2052 UInt8 interfaceNum = 0;
f7deaa1a 2053 CFStringRef deviceIDString = NULL;
2054
2055 /* GetDeviceID */
bc44d920 2056 copy_devicestring(g.printer_obj, &deviceIDString, &deviceLocation, &interfaceNum);
09a101d6 2057 if (deviceIDString)
2058 {
2059 CFStringGetCString(deviceIDString, data, *datalen, kCFStringEncodingUTF8);
2060 *datalen = strlen(data);
2061 CFRelease(deviceIDString);
f7deaa1a 2062 }
09a101d6 2063 *status = CUPS_SC_STATUS_OK;
f7deaa1a 2064}
2065
f7deaa1a 2066
2067/*
b19ccc9e 2068 * End of "$Id: usb-darwin.c 7953 2008-09-17 01:43:19Z mike $".
ef416fc2 2069 */