rapidio: fix typos and minor edits
[linux-2.6/linux-acpi-2.6/ibm-acpi-2.6.git] / drivers / rapidio / rio.c
blob777e099a3d8f0899e2973d8007ad3d561d4ae008
1 /*
2 * RapidIO interconnect services
3 * (RapidIO Interconnect Specification, http://www.rapidio.org)
5 * Copyright 2005 MontaVista Software, Inc.
6 * Matt Porter <mporter@kernel.crashing.org>
8 * Copyright 2009 Integrated Device Technology, Inc.
9 * Alex Bounine <alexandre.bounine@idt.com>
10 * - Added Port-Write/Error Management initialization and handling
12 * This program is free software; you can redistribute it and/or modify it
13 * under the terms of the GNU General Public License as published by the
14 * Free Software Foundation; either version 2 of the License, or (at your
15 * option) any later version.
18 #include <linux/types.h>
19 #include <linux/kernel.h>
21 #include <linux/delay.h>
22 #include <linux/init.h>
23 #include <linux/rio.h>
24 #include <linux/rio_drv.h>
25 #include <linux/rio_ids.h>
26 #include <linux/rio_regs.h>
27 #include <linux/module.h>
28 #include <linux/spinlock.h>
29 #include <linux/slab.h>
30 #include <linux/interrupt.h>
32 #include "rio.h"
34 static LIST_HEAD(rio_mports);
36 /**
37 * rio_local_get_device_id - Get the base/extended device id for a port
38 * @port: RIO master port from which to get the deviceid
40 * Reads the base/extended device id from the local device
41 * implementing the master port. Returns the 8/16-bit device
42 * id.
44 u16 rio_local_get_device_id(struct rio_mport *port)
46 u32 result;
48 rio_local_read_config_32(port, RIO_DID_CSR, &result);
50 return (RIO_GET_DID(port->sys_size, result));
53 /**
54 * rio_request_inb_mbox - request inbound mailbox service
55 * @mport: RIO master port from which to allocate the mailbox resource
56 * @dev_id: Device specific pointer to pass on event
57 * @mbox: Mailbox number to claim
58 * @entries: Number of entries in inbound mailbox queue
59 * @minb: Callback to execute when inbound message is received
61 * Requests ownership of an inbound mailbox resource and binds
62 * a callback function to the resource. Returns %0 on success.
64 int rio_request_inb_mbox(struct rio_mport *mport,
65 void *dev_id,
66 int mbox,
67 int entries,
68 void (*minb) (struct rio_mport * mport, void *dev_id, int mbox,
69 int slot))
71 int rc = 0;
73 struct resource *res = kmalloc(sizeof(struct resource), GFP_KERNEL);
75 if (res) {
76 rio_init_mbox_res(res, mbox, mbox);
78 /* Make sure this mailbox isn't in use */
79 if ((rc =
80 request_resource(&mport->riores[RIO_INB_MBOX_RESOURCE],
81 res)) < 0) {
82 kfree(res);
83 goto out;
86 mport->inb_msg[mbox].res = res;
88 /* Hook the inbound message callback */
89 mport->inb_msg[mbox].mcback = minb;
91 rc = rio_open_inb_mbox(mport, dev_id, mbox, entries);
92 } else
93 rc = -ENOMEM;
95 out:
96 return rc;
99 /**
100 * rio_release_inb_mbox - release inbound mailbox message service
101 * @mport: RIO master port from which to release the mailbox resource
102 * @mbox: Mailbox number to release
104 * Releases ownership of an inbound mailbox resource. Returns 0
105 * if the request has been satisfied.
107 int rio_release_inb_mbox(struct rio_mport *mport, int mbox)
109 rio_close_inb_mbox(mport, mbox);
111 /* Release the mailbox resource */
112 return release_resource(mport->inb_msg[mbox].res);
116 * rio_request_outb_mbox - request outbound mailbox service
117 * @mport: RIO master port from which to allocate the mailbox resource
118 * @dev_id: Device specific pointer to pass on event
119 * @mbox: Mailbox number to claim
120 * @entries: Number of entries in outbound mailbox queue
121 * @moutb: Callback to execute when outbound message is sent
123 * Requests ownership of an outbound mailbox resource and binds
124 * a callback function to the resource. Returns 0 on success.
126 int rio_request_outb_mbox(struct rio_mport *mport,
127 void *dev_id,
128 int mbox,
129 int entries,
130 void (*moutb) (struct rio_mport * mport, void *dev_id, int mbox, int slot))
132 int rc = 0;
134 struct resource *res = kmalloc(sizeof(struct resource), GFP_KERNEL);
136 if (res) {
137 rio_init_mbox_res(res, mbox, mbox);
139 /* Make sure this outbound mailbox isn't in use */
140 if ((rc =
141 request_resource(&mport->riores[RIO_OUTB_MBOX_RESOURCE],
142 res)) < 0) {
143 kfree(res);
144 goto out;
147 mport->outb_msg[mbox].res = res;
149 /* Hook the inbound message callback */
150 mport->outb_msg[mbox].mcback = moutb;
152 rc = rio_open_outb_mbox(mport, dev_id, mbox, entries);
153 } else
154 rc = -ENOMEM;
156 out:
157 return rc;
161 * rio_release_outb_mbox - release outbound mailbox message service
162 * @mport: RIO master port from which to release the mailbox resource
163 * @mbox: Mailbox number to release
165 * Releases ownership of an inbound mailbox resource. Returns 0
166 * if the request has been satisfied.
168 int rio_release_outb_mbox(struct rio_mport *mport, int mbox)
170 rio_close_outb_mbox(mport, mbox);
172 /* Release the mailbox resource */
173 return release_resource(mport->outb_msg[mbox].res);
177 * rio_setup_inb_dbell - bind inbound doorbell callback
178 * @mport: RIO master port to bind the doorbell callback
179 * @dev_id: Device specific pointer to pass on event
180 * @res: Doorbell message resource
181 * @dinb: Callback to execute when doorbell is received
183 * Adds a doorbell resource/callback pair into a port's
184 * doorbell event list. Returns 0 if the request has been
185 * satisfied.
187 static int
188 rio_setup_inb_dbell(struct rio_mport *mport, void *dev_id, struct resource *res,
189 void (*dinb) (struct rio_mport * mport, void *dev_id, u16 src, u16 dst,
190 u16 info))
192 int rc = 0;
193 struct rio_dbell *dbell;
195 if (!(dbell = kmalloc(sizeof(struct rio_dbell), GFP_KERNEL))) {
196 rc = -ENOMEM;
197 goto out;
200 dbell->res = res;
201 dbell->dinb = dinb;
202 dbell->dev_id = dev_id;
204 list_add_tail(&dbell->node, &mport->dbells);
206 out:
207 return rc;
211 * rio_request_inb_dbell - request inbound doorbell message service
212 * @mport: RIO master port from which to allocate the doorbell resource
213 * @dev_id: Device specific pointer to pass on event
214 * @start: Doorbell info range start
215 * @end: Doorbell info range end
216 * @dinb: Callback to execute when doorbell is received
218 * Requests ownership of an inbound doorbell resource and binds
219 * a callback function to the resource. Returns 0 if the request
220 * has been satisfied.
222 int rio_request_inb_dbell(struct rio_mport *mport,
223 void *dev_id,
224 u16 start,
225 u16 end,
226 void (*dinb) (struct rio_mport * mport, void *dev_id, u16 src,
227 u16 dst, u16 info))
229 int rc = 0;
231 struct resource *res = kmalloc(sizeof(struct resource), GFP_KERNEL);
233 if (res) {
234 rio_init_dbell_res(res, start, end);
236 /* Make sure these doorbells aren't in use */
237 if ((rc =
238 request_resource(&mport->riores[RIO_DOORBELL_RESOURCE],
239 res)) < 0) {
240 kfree(res);
241 goto out;
244 /* Hook the doorbell callback */
245 rc = rio_setup_inb_dbell(mport, dev_id, res, dinb);
246 } else
247 rc = -ENOMEM;
249 out:
250 return rc;
254 * rio_release_inb_dbell - release inbound doorbell message service
255 * @mport: RIO master port from which to release the doorbell resource
256 * @start: Doorbell info range start
257 * @end: Doorbell info range end
259 * Releases ownership of an inbound doorbell resource and removes
260 * callback from the doorbell event list. Returns 0 if the request
261 * has been satisfied.
263 int rio_release_inb_dbell(struct rio_mport *mport, u16 start, u16 end)
265 int rc = 0, found = 0;
266 struct rio_dbell *dbell;
268 list_for_each_entry(dbell, &mport->dbells, node) {
269 if ((dbell->res->start == start) && (dbell->res->end == end)) {
270 found = 1;
271 break;
275 /* If we can't find an exact match, fail */
276 if (!found) {
277 rc = -EINVAL;
278 goto out;
281 /* Delete from list */
282 list_del(&dbell->node);
284 /* Release the doorbell resource */
285 rc = release_resource(dbell->res);
287 /* Free the doorbell event */
288 kfree(dbell);
290 out:
291 return rc;
295 * rio_request_outb_dbell - request outbound doorbell message range
296 * @rdev: RIO device from which to allocate the doorbell resource
297 * @start: Doorbell message range start
298 * @end: Doorbell message range end
300 * Requests ownership of a doorbell message range. Returns a resource
301 * if the request has been satisfied or %NULL on failure.
303 struct resource *rio_request_outb_dbell(struct rio_dev *rdev, u16 start,
304 u16 end)
306 struct resource *res = kmalloc(sizeof(struct resource), GFP_KERNEL);
308 if (res) {
309 rio_init_dbell_res(res, start, end);
311 /* Make sure these doorbells aren't in use */
312 if (request_resource(&rdev->riores[RIO_DOORBELL_RESOURCE], res)
313 < 0) {
314 kfree(res);
315 res = NULL;
319 return res;
323 * rio_release_outb_dbell - release outbound doorbell message range
324 * @rdev: RIO device from which to release the doorbell resource
325 * @res: Doorbell resource to be freed
327 * Releases ownership of a doorbell message range. Returns 0 if the
328 * request has been satisfied.
330 int rio_release_outb_dbell(struct rio_dev *rdev, struct resource *res)
332 int rc = release_resource(res);
334 kfree(res);
336 return rc;
340 * rio_request_inb_pwrite - request inbound port-write message service
341 * @mport: RIO device to which register inbound port-write callback routine
342 * @pwcback: Callback routine to execute when port-write is received
344 * Binds a port-write callback function to the RapidIO device.
345 * Returns 0 if the request has been satisfied.
347 int rio_request_inb_pwrite(struct rio_dev *rdev,
348 int (*pwcback)(struct rio_dev *rdev, union rio_pw_msg *msg, int step))
350 int rc = 0;
352 spin_lock(&rio_global_list_lock);
353 if (rdev->pwcback != NULL)
354 rc = -ENOMEM;
355 else
356 rdev->pwcback = pwcback;
358 spin_unlock(&rio_global_list_lock);
359 return rc;
361 EXPORT_SYMBOL_GPL(rio_request_inb_pwrite);
364 * rio_release_inb_pwrite - release inbound port-write message service
365 * @rdev: RIO device which registered for inbound port-write callback
367 * Removes callback from the rio_dev structure. Returns 0 if the request
368 * has been satisfied.
370 int rio_release_inb_pwrite(struct rio_dev *rdev)
372 int rc = -ENOMEM;
374 spin_lock(&rio_global_list_lock);
375 if (rdev->pwcback) {
376 rdev->pwcback = NULL;
377 rc = 0;
380 spin_unlock(&rio_global_list_lock);
381 return rc;
383 EXPORT_SYMBOL_GPL(rio_release_inb_pwrite);
386 * rio_mport_get_physefb - Helper function that returns register offset
387 * for Physical Layer Extended Features Block.
388 * @rdev: RIO device
391 rio_mport_get_physefb(struct rio_mport *port, int local,
392 u16 destid, u8 hopcount)
394 u32 ext_ftr_ptr;
395 u32 ftr_header;
397 ext_ftr_ptr = rio_mport_get_efb(port, local, destid, hopcount, 0);
399 while (ext_ftr_ptr) {
400 if (local)
401 rio_local_read_config_32(port, ext_ftr_ptr,
402 &ftr_header);
403 else
404 rio_mport_read_config_32(port, destid, hopcount,
405 ext_ftr_ptr, &ftr_header);
407 ftr_header = RIO_GET_BLOCK_ID(ftr_header);
408 switch (ftr_header) {
410 case RIO_EFB_SER_EP_ID_V13P:
411 case RIO_EFB_SER_EP_REC_ID_V13P:
412 case RIO_EFB_SER_EP_FREE_ID_V13P:
413 case RIO_EFB_SER_EP_ID:
414 case RIO_EFB_SER_EP_REC_ID:
415 case RIO_EFB_SER_EP_FREE_ID:
416 case RIO_EFB_SER_EP_FREC_ID:
418 return ext_ftr_ptr;
420 default:
421 break;
424 ext_ftr_ptr = rio_mport_get_efb(port, local, destid,
425 hopcount, ext_ftr_ptr);
428 return ext_ftr_ptr;
432 * rio_get_comptag - Begin or continue searching for a RIO device by component tag
433 * @comp_tag: RIO component tad to match
434 * @from: Previous RIO device found in search, or %NULL for new search
436 * Iterates through the list of known RIO devices. If a RIO device is
437 * found with a matching @comp_tag, a pointer to its device
438 * structure is returned. Otherwise, %NULL is returned. A new search
439 * is initiated by passing %NULL to the @from argument. Otherwise, if
440 * @from is not %NULL, searches continue from next device on the global
441 * list.
443 static struct rio_dev *rio_get_comptag(u32 comp_tag, struct rio_dev *from)
445 struct list_head *n;
446 struct rio_dev *rdev;
448 spin_lock(&rio_global_list_lock);
449 n = from ? from->global_list.next : rio_devices.next;
451 while (n && (n != &rio_devices)) {
452 rdev = rio_dev_g(n);
453 if (rdev->comp_tag == comp_tag)
454 goto exit;
455 n = n->next;
457 rdev = NULL;
458 exit:
459 spin_unlock(&rio_global_list_lock);
460 return rdev;
464 * rio_set_port_lockout - Sets/clears LOCKOUT bit (RIO EM 1.3) for a switch port.
465 * @rdev: Pointer to RIO device control structure
466 * @pnum: Switch port number to set LOCKOUT bit
467 * @lock: Operation : set (=1) or clear (=0)
469 int rio_set_port_lockout(struct rio_dev *rdev, u32 pnum, int lock)
471 u8 hopcount = 0xff;
472 u16 destid = rdev->destid;
473 u32 regval;
475 if (rdev->rswitch) {
476 destid = rdev->rswitch->destid;
477 hopcount = rdev->rswitch->hopcount;
480 rio_mport_read_config_32(rdev->net->hport, destid, hopcount,
481 rdev->phys_efptr + RIO_PORT_N_CTL_CSR(pnum),
482 &regval);
483 if (lock)
484 regval |= RIO_PORT_N_CTL_LOCKOUT;
485 else
486 regval &= ~RIO_PORT_N_CTL_LOCKOUT;
488 rio_mport_write_config_32(rdev->net->hport, destid, hopcount,
489 rdev->phys_efptr + RIO_PORT_N_CTL_CSR(pnum),
490 regval);
491 return 0;
495 * rio_inb_pwrite_handler - process inbound port-write message
496 * @pw_msg: pointer to inbound port-write message
498 * Processes an inbound port-write message. Returns 0 if the request
499 * has been satisfied.
501 int rio_inb_pwrite_handler(union rio_pw_msg *pw_msg)
503 struct rio_dev *rdev;
504 struct rio_mport *mport;
505 u8 hopcount;
506 u16 destid;
507 u32 err_status;
508 int rc, portnum;
510 rdev = rio_get_comptag(pw_msg->em.comptag, NULL);
511 if (rdev == NULL) {
512 /* Someting bad here (probably enumeration error) */
513 pr_err("RIO: %s No matching device for CTag 0x%08x\n",
514 __func__, pw_msg->em.comptag);
515 return -EIO;
518 pr_debug("RIO: Port-Write message from %s\n", rio_name(rdev));
520 #ifdef DEBUG_PW
522 u32 i;
523 for (i = 0; i < RIO_PW_MSG_SIZE/sizeof(u32);) {
524 pr_debug("0x%02x: %08x %08x %08x %08x",
525 i*4, pw_msg->raw[i], pw_msg->raw[i + 1],
526 pw_msg->raw[i + 2], pw_msg->raw[i + 3]);
527 i += 4;
529 pr_debug("\n");
531 #endif
533 /* Call an external service function (if such is registered
534 * for this device). This may be the service for endpoints that send
535 * device-specific port-write messages. End-point messages expected
536 * to be handled completely by EP specific device driver.
537 * For switches rc==0 signals that no standard processing required.
539 if (rdev->pwcback != NULL) {
540 rc = rdev->pwcback(rdev, pw_msg, 0);
541 if (rc == 0)
542 return 0;
545 /* For End-point devices processing stops here */
546 if (!(rdev->pef & RIO_PEF_SWITCH))
547 return 0;
549 if (rdev->phys_efptr == 0) {
550 pr_err("RIO_PW: Bad switch initialization for %s\n",
551 rio_name(rdev));
552 return 0;
555 mport = rdev->net->hport;
556 destid = rdev->rswitch->destid;
557 hopcount = rdev->rswitch->hopcount;
560 * Process the port-write notification from switch
563 portnum = pw_msg->em.is_port & 0xFF;
565 if (rdev->rswitch->em_handle)
566 rdev->rswitch->em_handle(rdev, portnum);
568 rio_mport_read_config_32(mport, destid, hopcount,
569 rdev->phys_efptr + RIO_PORT_N_ERR_STS_CSR(portnum),
570 &err_status);
571 pr_debug("RIO_PW: SP%d_ERR_STS_CSR=0x%08x\n", portnum, err_status);
573 if (pw_msg->em.errdetect) {
574 pr_debug("RIO_PW: RIO_EM_P%d_ERR_DETECT=0x%08x\n",
575 portnum, pw_msg->em.errdetect);
576 /* Clear EM Port N Error Detect CSR */
577 rio_mport_write_config_32(mport, destid, hopcount,
578 rdev->em_efptr + RIO_EM_PN_ERR_DETECT(portnum), 0);
581 if (pw_msg->em.ltlerrdet) {
582 pr_debug("RIO_PW: RIO_EM_LTL_ERR_DETECT=0x%08x\n",
583 pw_msg->em.ltlerrdet);
584 /* Clear EM L/T Layer Error Detect CSR */
585 rio_mport_write_config_32(mport, destid, hopcount,
586 rdev->em_efptr + RIO_EM_LTL_ERR_DETECT, 0);
589 /* Clear Port Errors */
590 rio_mport_write_config_32(mport, destid, hopcount,
591 rdev->phys_efptr + RIO_PORT_N_ERR_STS_CSR(portnum),
592 err_status & RIO_PORT_N_ERR_STS_CLR_MASK);
594 if (rdev->rswitch->port_ok & (1 << portnum)) {
595 if (err_status & RIO_PORT_N_ERR_STS_PORT_UNINIT) {
596 rdev->rswitch->port_ok &= ~(1 << portnum);
597 rio_set_port_lockout(rdev, portnum, 1);
599 rio_mport_write_config_32(mport, destid, hopcount,
600 rdev->phys_efptr +
601 RIO_PORT_N_ACK_STS_CSR(portnum),
602 RIO_PORT_N_ACK_CLEAR);
604 /* Schedule Extraction Service */
605 pr_debug("RIO_PW: Device Extraction on [%s]-P%d\n",
606 rio_name(rdev), portnum);
608 } else {
609 if (err_status & RIO_PORT_N_ERR_STS_PORT_OK) {
610 rdev->rswitch->port_ok |= (1 << portnum);
611 rio_set_port_lockout(rdev, portnum, 0);
613 /* Schedule Insertion Service */
614 pr_debug("RIO_PW: Device Insertion on [%s]-P%d\n",
615 rio_name(rdev), portnum);
619 /* Clear Port-Write Pending bit */
620 rio_mport_write_config_32(mport, destid, hopcount,
621 rdev->phys_efptr + RIO_PORT_N_ERR_STS_CSR(portnum),
622 RIO_PORT_N_ERR_STS_PW_PEND);
624 return 0;
626 EXPORT_SYMBOL_GPL(rio_inb_pwrite_handler);
629 * rio_mport_get_efb - get pointer to next extended features block
630 * @port: Master port to issue transaction
631 * @local: Indicate a local master port or remote device access
632 * @destid: Destination ID of the device
633 * @hopcount: Number of switch hops to the device
634 * @from: Offset of current Extended Feature block header (if 0 starts
635 * from ExtFeaturePtr)
638 rio_mport_get_efb(struct rio_mport *port, int local, u16 destid,
639 u8 hopcount, u32 from)
641 u32 reg_val;
643 if (from == 0) {
644 if (local)
645 rio_local_read_config_32(port, RIO_ASM_INFO_CAR,
646 &reg_val);
647 else
648 rio_mport_read_config_32(port, destid, hopcount,
649 RIO_ASM_INFO_CAR, &reg_val);
650 return reg_val & RIO_EXT_FTR_PTR_MASK;
651 } else {
652 if (local)
653 rio_local_read_config_32(port, from, &reg_val);
654 else
655 rio_mport_read_config_32(port, destid, hopcount,
656 from, &reg_val);
657 return RIO_GET_BLOCK_ID(reg_val);
662 * rio_mport_get_feature - query for devices' extended features
663 * @port: Master port to issue transaction
664 * @local: Indicate a local master port or remote device access
665 * @destid: Destination ID of the device
666 * @hopcount: Number of switch hops to the device
667 * @ftr: Extended feature code
669 * Tell if a device supports a given RapidIO capability.
670 * Returns the offset of the requested extended feature
671 * block within the device's RIO configuration space or
672 * 0 in case the device does not support it. Possible
673 * values for @ftr:
675 * %RIO_EFB_PAR_EP_ID LP/LVDS EP Devices
677 * %RIO_EFB_PAR_EP_REC_ID LP/LVDS EP Recovery Devices
679 * %RIO_EFB_PAR_EP_FREE_ID LP/LVDS EP Free Devices
681 * %RIO_EFB_SER_EP_ID LP/Serial EP Devices
683 * %RIO_EFB_SER_EP_REC_ID LP/Serial EP Recovery Devices
685 * %RIO_EFB_SER_EP_FREE_ID LP/Serial EP Free Devices
688 rio_mport_get_feature(struct rio_mport * port, int local, u16 destid,
689 u8 hopcount, int ftr)
691 u32 asm_info, ext_ftr_ptr, ftr_header;
693 if (local)
694 rio_local_read_config_32(port, RIO_ASM_INFO_CAR, &asm_info);
695 else
696 rio_mport_read_config_32(port, destid, hopcount,
697 RIO_ASM_INFO_CAR, &asm_info);
699 ext_ftr_ptr = asm_info & RIO_EXT_FTR_PTR_MASK;
701 while (ext_ftr_ptr) {
702 if (local)
703 rio_local_read_config_32(port, ext_ftr_ptr,
704 &ftr_header);
705 else
706 rio_mport_read_config_32(port, destid, hopcount,
707 ext_ftr_ptr, &ftr_header);
708 if (RIO_GET_BLOCK_ID(ftr_header) == ftr)
709 return ext_ftr_ptr;
710 if (!(ext_ftr_ptr = RIO_GET_BLOCK_PTR(ftr_header)))
711 break;
714 return 0;
718 * rio_get_asm - Begin or continue searching for a RIO device by vid/did/asm_vid/asm_did
719 * @vid: RIO vid to match or %RIO_ANY_ID to match all vids
720 * @did: RIO did to match or %RIO_ANY_ID to match all dids
721 * @asm_vid: RIO asm_vid to match or %RIO_ANY_ID to match all asm_vids
722 * @asm_did: RIO asm_did to match or %RIO_ANY_ID to match all asm_dids
723 * @from: Previous RIO device found in search, or %NULL for new search
725 * Iterates through the list of known RIO devices. If a RIO device is
726 * found with a matching @vid, @did, @asm_vid, @asm_did, the reference
727 * count to the device is incrememted and a pointer to its device
728 * structure is returned. Otherwise, %NULL is returned. A new search
729 * is initiated by passing %NULL to the @from argument. Otherwise, if
730 * @from is not %NULL, searches continue from next device on the global
731 * list. The reference count for @from is always decremented if it is
732 * not %NULL.
734 struct rio_dev *rio_get_asm(u16 vid, u16 did,
735 u16 asm_vid, u16 asm_did, struct rio_dev *from)
737 struct list_head *n;
738 struct rio_dev *rdev;
740 WARN_ON(in_interrupt());
741 spin_lock(&rio_global_list_lock);
742 n = from ? from->global_list.next : rio_devices.next;
744 while (n && (n != &rio_devices)) {
745 rdev = rio_dev_g(n);
746 if ((vid == RIO_ANY_ID || rdev->vid == vid) &&
747 (did == RIO_ANY_ID || rdev->did == did) &&
748 (asm_vid == RIO_ANY_ID || rdev->asm_vid == asm_vid) &&
749 (asm_did == RIO_ANY_ID || rdev->asm_did == asm_did))
750 goto exit;
751 n = n->next;
753 rdev = NULL;
754 exit:
755 rio_dev_put(from);
756 rdev = rio_dev_get(rdev);
757 spin_unlock(&rio_global_list_lock);
758 return rdev;
762 * rio_get_device - Begin or continue searching for a RIO device by vid/did
763 * @vid: RIO vid to match or %RIO_ANY_ID to match all vids
764 * @did: RIO did to match or %RIO_ANY_ID to match all dids
765 * @from: Previous RIO device found in search, or %NULL for new search
767 * Iterates through the list of known RIO devices. If a RIO device is
768 * found with a matching @vid and @did, the reference count to the
769 * device is incrememted and a pointer to its device structure is returned.
770 * Otherwise, %NULL is returned. A new search is initiated by passing %NULL
771 * to the @from argument. Otherwise, if @from is not %NULL, searches
772 * continue from next device on the global list. The reference count for
773 * @from is always decremented if it is not %NULL.
775 struct rio_dev *rio_get_device(u16 vid, u16 did, struct rio_dev *from)
777 return rio_get_asm(vid, did, RIO_ANY_ID, RIO_ANY_ID, from);
781 * rio_std_route_add_entry - Add switch route table entry using standard
782 * registers defined in RIO specification rev.1.3
783 * @mport: Master port to issue transaction
784 * @destid: Destination ID of the device
785 * @hopcount: Number of switch hops to the device
786 * @table: routing table ID (global or port-specific)
787 * @route_destid: destID entry in the RT
788 * @route_port: destination port for specified destID
790 int rio_std_route_add_entry(struct rio_mport *mport, u16 destid, u8 hopcount,
791 u16 table, u16 route_destid, u8 route_port)
793 if (table == RIO_GLOBAL_TABLE) {
794 rio_mport_write_config_32(mport, destid, hopcount,
795 RIO_STD_RTE_CONF_DESTID_SEL_CSR,
796 (u32)route_destid);
797 rio_mport_write_config_32(mport, destid, hopcount,
798 RIO_STD_RTE_CONF_PORT_SEL_CSR,
799 (u32)route_port);
802 udelay(10);
803 return 0;
807 * rio_std_route_get_entry - Read switch route table entry (port number)
808 * assosiated with specified destID using standard registers defined in RIO
809 * specification rev.1.3
810 * @mport: Master port to issue transaction
811 * @destid: Destination ID of the device
812 * @hopcount: Number of switch hops to the device
813 * @table: routing table ID (global or port-specific)
814 * @route_destid: destID entry in the RT
815 * @route_port: returned destination port for specified destID
817 int rio_std_route_get_entry(struct rio_mport *mport, u16 destid, u8 hopcount,
818 u16 table, u16 route_destid, u8 *route_port)
820 u32 result;
822 if (table == RIO_GLOBAL_TABLE) {
823 rio_mport_write_config_32(mport, destid, hopcount,
824 RIO_STD_RTE_CONF_DESTID_SEL_CSR, route_destid);
825 rio_mport_read_config_32(mport, destid, hopcount,
826 RIO_STD_RTE_CONF_PORT_SEL_CSR, &result);
828 *route_port = (u8)result;
831 return 0;
835 * rio_std_route_clr_table - Clear swotch route table using standard registers
836 * defined in RIO specification rev.1.3.
837 * @mport: Master port to issue transaction
838 * @local: Indicate a local master port or remote device access
839 * @destid: Destination ID of the device
840 * @hopcount: Number of switch hops to the device
841 * @table: routing table ID (global or port-specific)
843 int rio_std_route_clr_table(struct rio_mport *mport, u16 destid, u8 hopcount,
844 u16 table)
846 u32 max_destid = 0xff;
847 u32 i, pef, id_inc = 1, ext_cfg = 0;
848 u32 port_sel = RIO_INVALID_ROUTE;
850 if (table == RIO_GLOBAL_TABLE) {
851 rio_mport_read_config_32(mport, destid, hopcount,
852 RIO_PEF_CAR, &pef);
854 if (mport->sys_size) {
855 rio_mport_read_config_32(mport, destid, hopcount,
856 RIO_SWITCH_RT_LIMIT,
857 &max_destid);
858 max_destid &= RIO_RT_MAX_DESTID;
861 if (pef & RIO_PEF_EXT_RT) {
862 ext_cfg = 0x80000000;
863 id_inc = 4;
864 port_sel = (RIO_INVALID_ROUTE << 24) |
865 (RIO_INVALID_ROUTE << 16) |
866 (RIO_INVALID_ROUTE << 8) |
867 RIO_INVALID_ROUTE;
870 for (i = 0; i <= max_destid;) {
871 rio_mport_write_config_32(mport, destid, hopcount,
872 RIO_STD_RTE_CONF_DESTID_SEL_CSR,
873 ext_cfg | i);
874 rio_mport_write_config_32(mport, destid, hopcount,
875 RIO_STD_RTE_CONF_PORT_SEL_CSR,
876 port_sel);
877 i += id_inc;
881 udelay(10);
882 return 0;
885 static void rio_fixup_device(struct rio_dev *dev)
889 static int __devinit rio_init(void)
891 struct rio_dev *dev = NULL;
893 while ((dev = rio_get_device(RIO_ANY_ID, RIO_ANY_ID, dev)) != NULL) {
894 rio_fixup_device(dev);
896 return 0;
899 device_initcall(rio_init);
901 int __devinit rio_init_mports(void)
903 int rc = 0;
904 struct rio_mport *port;
906 list_for_each_entry(port, &rio_mports, node) {
907 if (!request_mem_region(port->iores.start,
908 port->iores.end - port->iores.start,
909 port->name)) {
910 printk(KERN_ERR
911 "RIO: Error requesting master port region 0x%016llx-0x%016llx\n",
912 (u64)port->iores.start, (u64)port->iores.end - 1);
913 rc = -ENOMEM;
914 goto out;
917 if (port->host_deviceid >= 0)
918 rio_enum_mport(port);
919 else
920 rio_disc_mport(port);
923 out:
924 return rc;
927 void rio_register_mport(struct rio_mport *port)
929 list_add_tail(&port->node, &rio_mports);
932 EXPORT_SYMBOL_GPL(rio_local_get_device_id);
933 EXPORT_SYMBOL_GPL(rio_get_device);
934 EXPORT_SYMBOL_GPL(rio_get_asm);
935 EXPORT_SYMBOL_GPL(rio_request_inb_dbell);
936 EXPORT_SYMBOL_GPL(rio_release_inb_dbell);
937 EXPORT_SYMBOL_GPL(rio_request_outb_dbell);
938 EXPORT_SYMBOL_GPL(rio_release_outb_dbell);
939 EXPORT_SYMBOL_GPL(rio_request_inb_mbox);
940 EXPORT_SYMBOL_GPL(rio_release_inb_mbox);
941 EXPORT_SYMBOL_GPL(rio_request_outb_mbox);
942 EXPORT_SYMBOL_GPL(rio_release_outb_mbox);