1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * rio_cm - RapidIO Channelized Messaging Driver
5 * Copyright 2013-2016 Integrated Device Technology, Inc.
6 * Copyright (c) 2015, Prodrive Technologies
7 * Copyright (c) 2015, RapidIO Trade Association
10 #include <linux/module.h>
11 #include <linux/kernel.h>
12 #include <linux/dma-mapping.h>
13 #include <linux/delay.h>
14 #include <linux/sched.h>
15 #include <linux/rio.h>
16 #include <linux/rio_drv.h>
17 #include <linux/slab.h>
18 #include <linux/idr.h>
19 #include <linux/interrupt.h>
20 #include <linux/cdev.h>
22 #include <linux/poll.h>
23 #include <linux/reboot.h>
24 #include <linux/bitops.h>
25 #include <linux/printk.h>
26 #include <linux/rio_cm_cdev.h>
28 #define DRV_NAME "rio_cm"
29 #define DRV_VERSION "1.0.0"
30 #define DRV_AUTHOR "Alexandre Bounine <alexandre.bounine@idt.com>"
31 #define DRV_DESC "RapidIO Channelized Messaging Driver"
32 #define DEV_NAME "rio_cm"
34 /* Debug output filtering masks */
37 DBG_INIT
= BIT(0), /* driver init */
38 DBG_EXIT
= BIT(1), /* driver exit */
39 DBG_MPORT
= BIT(2), /* mport add/remove */
40 DBG_RDEV
= BIT(3), /* RapidIO device add/remove */
41 DBG_CHOP
= BIT(4), /* channel operations */
42 DBG_WAIT
= BIT(5), /* waiting for events */
43 DBG_TX
= BIT(6), /* message TX */
44 DBG_TX_EVENT
= BIT(7), /* message TX event */
45 DBG_RX_DATA
= BIT(8), /* inbound data messages */
46 DBG_RX_CMD
= BIT(9), /* inbound REQ/ACK/NACK messages */
51 #define riocm_debug(level, fmt, arg...) \
53 if (DBG_##level & dbg_level) \
54 pr_debug(DRV_NAME ": %s " fmt "\n", \
58 #define riocm_debug(level, fmt, arg...) \
59 no_printk(KERN_DEBUG pr_fmt(DRV_NAME fmt "\n"), ##arg)
62 #define riocm_warn(fmt, arg...) \
63 pr_warn(DRV_NAME ": %s WARNING " fmt "\n", __func__, ##arg)
65 #define riocm_error(fmt, arg...) \
66 pr_err(DRV_NAME ": %s ERROR " fmt "\n", __func__, ##arg)
70 module_param(cmbox
, int, S_IRUGO
);
71 MODULE_PARM_DESC(cmbox
, "RapidIO Mailbox number (default 1)");
73 static int chstart
= 256;
74 module_param(chstart
, int, S_IRUGO
);
75 MODULE_PARM_DESC(chstart
,
76 "Start channel number for dynamic allocation (default 256)");
79 static u32 dbg_level
= DBG_NONE
;
80 module_param(dbg_level
, uint
, S_IWUSR
| S_IRUGO
);
81 MODULE_PARM_DESC(dbg_level
, "Debugging output level (default 0 = none)");
84 MODULE_AUTHOR(DRV_AUTHOR
);
85 MODULE_DESCRIPTION(DRV_DESC
);
86 MODULE_LICENSE("GPL");
87 MODULE_VERSION(DRV_VERSION
);
89 #define RIOCM_TX_RING_SIZE 128
90 #define RIOCM_RX_RING_SIZE 128
91 #define RIOCM_CONNECT_TO 3 /* connect response TO (in sec) */
93 #define RIOCM_MAX_CHNUM 0xffff /* Use full range of u16 field */
94 #define RIOCM_CHNUM_AUTO 0
95 #define RIOCM_MAX_EP_COUNT 0x10000 /* Max number of endpoints */
107 enum rio_cm_pkt_type
{
119 struct rio_ch_base_bhdr
{
122 #define RIO_HDR_LETTER_MASK 0xffff0000
123 #define RIO_HDR_MBOX_MASK 0x0000ffff
127 } __attribute__((__packed__
));
129 struct rio_ch_chan_hdr
{
130 struct rio_ch_base_bhdr bhdr
;
136 } __attribute__((__packed__
));
139 struct list_head node
;
140 struct rio_dev
*rdev
;
146 struct list_head list
;
147 struct rio_mport
*mport
;
148 void *rx_buf
[RIOCM_RX_RING_SIZE
];
150 struct mutex rx_lock
;
152 void *tx_buf
[RIOCM_TX_RING_SIZE
];
156 struct list_head tx_reqs
;
159 struct list_head peers
;
161 struct workqueue_struct
*rx_wq
;
162 struct work_struct rx_work
;
165 struct chan_rx_ring
{
166 void *buf
[RIOCM_RX_RING_SIZE
];
171 /* Tracking RX buffers reported to upper level */
172 void *inuse
[RIOCM_RX_RING_SIZE
];
177 u16 id
; /* local channel ID */
178 struct kref ref
; /* channel refcount */
180 struct cm_dev
*cmdev
; /* associated CM device object */
181 struct rio_dev
*rdev
; /* remote RapidIO device */
182 enum rio_cm_state state
;
186 u32 loc_destid
; /* local destID */
187 u32 rem_destid
; /* remote destID */
188 u16 rem_channel
; /* remote channel ID */
189 struct list_head accept_queue
;
190 struct list_head ch_node
;
191 struct completion comp
;
192 struct completion comp_close
;
193 struct chan_rx_ring rx_ring
;
197 struct list_head node
;
198 struct rio_dev
*rdev
;
202 struct work_struct work
;
208 struct list_head node
;
209 u32 destid
; /* requester destID */
210 u16 chan
; /* requester channel ID */
211 struct cm_dev
*cmdev
;
215 * A channel_dev structure represents a CM_CDEV
216 * @cdev Character device
217 * @dev Associated device object
224 static struct rio_channel
*riocm_ch_alloc(u16 ch_num
);
225 static void riocm_ch_free(struct kref
*ref
);
226 static int riocm_post_send(struct cm_dev
*cm
, struct rio_dev
*rdev
,
227 void *buffer
, size_t len
);
228 static int riocm_ch_close(struct rio_channel
*ch
);
230 static DEFINE_SPINLOCK(idr_lock
);
231 static DEFINE_IDR(ch_idr
);
233 static LIST_HEAD(cm_dev_list
);
234 static DECLARE_RWSEM(rdev_sem
);
236 static struct class *dev_class
;
237 static unsigned int dev_major
;
238 static unsigned int dev_minor_base
;
239 static dev_t dev_number
;
240 static struct channel_dev riocm_cdev
;
242 #define is_msg_capable(src_ops, dst_ops) \
243 ((src_ops & RIO_SRC_OPS_DATA_MSG) && \
244 (dst_ops & RIO_DST_OPS_DATA_MSG))
245 #define dev_cm_capable(dev) \
246 is_msg_capable(dev->src_ops, dev->dst_ops)
248 static int riocm_cmp(struct rio_channel
*ch
, enum rio_cm_state cmp
)
252 spin_lock_bh(&ch
->lock
);
253 ret
= (ch
->state
== cmp
);
254 spin_unlock_bh(&ch
->lock
);
258 static int riocm_cmp_exch(struct rio_channel
*ch
,
259 enum rio_cm_state cmp
, enum rio_cm_state exch
)
263 spin_lock_bh(&ch
->lock
);
264 ret
= (ch
->state
== cmp
);
267 spin_unlock_bh(&ch
->lock
);
271 static enum rio_cm_state
riocm_exch(struct rio_channel
*ch
,
272 enum rio_cm_state exch
)
274 enum rio_cm_state old
;
276 spin_lock_bh(&ch
->lock
);
279 spin_unlock_bh(&ch
->lock
);
283 static struct rio_channel
*riocm_get_channel(u16 nr
)
285 struct rio_channel
*ch
;
287 spin_lock_bh(&idr_lock
);
288 ch
= idr_find(&ch_idr
, nr
);
291 spin_unlock_bh(&idr_lock
);
295 static void riocm_put_channel(struct rio_channel
*ch
)
297 kref_put(&ch
->ref
, riocm_ch_free
);
300 static void *riocm_rx_get_msg(struct cm_dev
*cm
)
305 msg
= rio_get_inb_message(cm
->mport
, cmbox
);
307 for (i
= 0; i
< RIOCM_RX_RING_SIZE
; i
++) {
308 if (cm
->rx_buf
[i
] == msg
) {
309 cm
->rx_buf
[i
] = NULL
;
315 if (i
== RIOCM_RX_RING_SIZE
)
316 riocm_warn("no record for buffer 0x%p", msg
);
323 * riocm_rx_fill - fills a ring of receive buffers for given cm device
325 * @nent: max number of entries to fill
329 static void riocm_rx_fill(struct cm_dev
*cm
, int nent
)
333 if (cm
->rx_slots
== 0)
336 for (i
= 0; i
< RIOCM_RX_RING_SIZE
&& cm
->rx_slots
&& nent
; i
++) {
337 if (cm
->rx_buf
[i
] == NULL
) {
338 cm
->rx_buf
[i
] = kmalloc(RIO_MAX_MSG_SIZE
, GFP_KERNEL
);
339 if (cm
->rx_buf
[i
] == NULL
)
341 rio_add_inb_buffer(cm
->mport
, cmbox
, cm
->rx_buf
[i
]);
349 * riocm_rx_free - frees all receive buffers associated with given cm device
354 static void riocm_rx_free(struct cm_dev
*cm
)
358 for (i
= 0; i
< RIOCM_RX_RING_SIZE
; i
++) {
359 if (cm
->rx_buf
[i
] != NULL
) {
360 kfree(cm
->rx_buf
[i
]);
361 cm
->rx_buf
[i
] = NULL
;
367 * riocm_req_handler - connection request handler
369 * @req_data: pointer to the request packet
371 * Returns: 0 if success, or
372 * -EINVAL if channel is not in correct state,
373 * -ENODEV if cannot find a channel with specified ID,
374 * -ENOMEM if unable to allocate memory to store the request
376 static int riocm_req_handler(struct cm_dev
*cm
, void *req_data
)
378 struct rio_channel
*ch
;
379 struct conn_req
*req
;
380 struct rio_ch_chan_hdr
*hh
= req_data
;
383 chnum
= ntohs(hh
->dst_ch
);
385 ch
= riocm_get_channel(chnum
);
390 if (ch
->state
!= RIO_CM_LISTEN
) {
391 riocm_debug(RX_CMD
, "channel %d is not in listen state", chnum
);
392 riocm_put_channel(ch
);
396 req
= kzalloc(sizeof(*req
), GFP_KERNEL
);
398 riocm_put_channel(ch
);
402 req
->destid
= ntohl(hh
->bhdr
.src_id
);
403 req
->chan
= ntohs(hh
->src_ch
);
406 spin_lock_bh(&ch
->lock
);
407 list_add_tail(&req
->node
, &ch
->accept_queue
);
408 spin_unlock_bh(&ch
->lock
);
410 riocm_put_channel(ch
);
416 * riocm_resp_handler - response to connection request handler
417 * @resp_data: pointer to the response packet
419 * Returns: 0 if success, or
420 * -EINVAL if channel is not in correct state,
421 * -ENODEV if cannot find a channel with specified ID,
423 static int riocm_resp_handler(void *resp_data
)
425 struct rio_channel
*ch
;
426 struct rio_ch_chan_hdr
*hh
= resp_data
;
429 chnum
= ntohs(hh
->dst_ch
);
430 ch
= riocm_get_channel(chnum
);
434 if (ch
->state
!= RIO_CM_CONNECT
) {
435 riocm_put_channel(ch
);
439 riocm_exch(ch
, RIO_CM_CONNECTED
);
440 ch
->rem_channel
= ntohs(hh
->src_ch
);
442 riocm_put_channel(ch
);
448 * riocm_close_handler - channel close request handler
449 * @req_data: pointer to the request packet
451 * Returns: 0 if success, or
452 * -ENODEV if cannot find a channel with specified ID,
453 * + error codes returned by riocm_ch_close.
455 static int riocm_close_handler(void *data
)
457 struct rio_channel
*ch
;
458 struct rio_ch_chan_hdr
*hh
= data
;
461 riocm_debug(RX_CMD
, "for ch=%d", ntohs(hh
->dst_ch
));
463 spin_lock_bh(&idr_lock
);
464 ch
= idr_find(&ch_idr
, ntohs(hh
->dst_ch
));
466 spin_unlock_bh(&idr_lock
);
469 idr_remove(&ch_idr
, ch
->id
);
470 spin_unlock_bh(&idr_lock
);
472 riocm_exch(ch
, RIO_CM_DISCONNECT
);
474 ret
= riocm_ch_close(ch
);
476 riocm_debug(RX_CMD
, "riocm_ch_close() returned %d", ret
);
482 * rio_cm_handler - function that services request (non-data) packets
484 * @data: pointer to the packet
486 static void rio_cm_handler(struct cm_dev
*cm
, void *data
)
488 struct rio_ch_chan_hdr
*hdr
;
490 if (!rio_mport_is_running(cm
->mport
))
495 riocm_debug(RX_CMD
, "OP=%x for ch=%d from %d",
496 hdr
->ch_op
, ntohs(hdr
->dst_ch
), ntohs(hdr
->src_ch
));
498 switch (hdr
->ch_op
) {
500 riocm_req_handler(cm
, data
);
503 riocm_resp_handler(data
);
506 riocm_close_handler(data
);
509 riocm_error("Invalid packet header");
517 * rio_rx_data_handler - received data packet handler
521 * Returns: 0 if success, or
522 * -ENODEV if cannot find a channel with specified ID,
523 * -EIO if channel is not in CONNECTED state,
524 * -ENOMEM if channel RX queue is full (packet discarded)
526 static int rio_rx_data_handler(struct cm_dev
*cm
, void *buf
)
528 struct rio_ch_chan_hdr
*hdr
;
529 struct rio_channel
*ch
;
533 riocm_debug(RX_DATA
, "for ch=%d", ntohs(hdr
->dst_ch
));
535 ch
= riocm_get_channel(ntohs(hdr
->dst_ch
));
537 /* Discard data message for non-existing channel */
542 /* Place pointer to the buffer into channel's RX queue */
543 spin_lock(&ch
->lock
);
545 if (ch
->state
!= RIO_CM_CONNECTED
) {
546 /* Channel is not ready to receive data, discard a packet */
547 riocm_debug(RX_DATA
, "ch=%d is in wrong state=%d",
549 spin_unlock(&ch
->lock
);
551 riocm_put_channel(ch
);
555 if (ch
->rx_ring
.count
== RIOCM_RX_RING_SIZE
) {
556 /* If RX ring is full, discard a packet */
557 riocm_debug(RX_DATA
, "ch=%d is full", ch
->id
);
558 spin_unlock(&ch
->lock
);
560 riocm_put_channel(ch
);
564 ch
->rx_ring
.buf
[ch
->rx_ring
.head
] = buf
;
567 ch
->rx_ring
.head
%= RIOCM_RX_RING_SIZE
;
571 spin_unlock(&ch
->lock
);
572 riocm_put_channel(ch
);
578 * rio_ibmsg_handler - inbound message packet handler
580 static void rio_ibmsg_handler(struct work_struct
*work
)
582 struct cm_dev
*cm
= container_of(work
, struct cm_dev
, rx_work
);
584 struct rio_ch_chan_hdr
*hdr
;
586 if (!rio_mport_is_running(cm
->mport
))
590 mutex_lock(&cm
->rx_lock
);
591 data
= riocm_rx_get_msg(cm
);
593 riocm_rx_fill(cm
, 1);
594 mutex_unlock(&cm
->rx_lock
);
601 if (hdr
->bhdr
.type
!= RIO_CM_CHAN
) {
602 /* For now simply discard packets other than channel */
603 riocm_error("Unsupported TYPE code (0x%x). Msg dropped",
609 /* Process a channel message */
610 if (hdr
->ch_op
== CM_DATA_MSG
)
611 rio_rx_data_handler(cm
, data
);
613 rio_cm_handler(cm
, data
);
617 static void riocm_inb_msg_event(struct rio_mport
*mport
, void *dev_id
,
620 struct cm_dev
*cm
= dev_id
;
622 if (rio_mport_is_running(cm
->mport
) && !work_pending(&cm
->rx_work
))
623 queue_work(cm
->rx_wq
, &cm
->rx_work
);
627 * rio_txcq_handler - TX completion handler
629 * @slot: TX queue slot
631 * TX completion handler also ensures that pending request packets are placed
632 * into transmit queue as soon as a free slot becomes available. This is done
633 * to give higher priority to request packets during high intensity data flow.
635 static void rio_txcq_handler(struct cm_dev
*cm
, int slot
)
639 /* ATTN: Add TX completion notification if/when direct buffer
640 * transfer is implemented. At this moment only correct tracking
641 * of tx_count is important.
643 riocm_debug(TX_EVENT
, "for mport_%d slot %d tx_cnt %d",
644 cm
->mport
->id
, slot
, cm
->tx_cnt
);
646 spin_lock(&cm
->tx_lock
);
647 ack_slot
= cm
->tx_ack_slot
;
649 if (ack_slot
== slot
)
650 riocm_debug(TX_EVENT
, "slot == ack_slot");
652 while (cm
->tx_cnt
&& ((ack_slot
!= slot
) ||
653 (cm
->tx_cnt
== RIOCM_TX_RING_SIZE
))) {
655 cm
->tx_buf
[ack_slot
] = NULL
;
657 ack_slot
&= (RIOCM_TX_RING_SIZE
- 1);
661 if (cm
->tx_cnt
< 0 || cm
->tx_cnt
> RIOCM_TX_RING_SIZE
)
662 riocm_error("tx_cnt %d out of sync", cm
->tx_cnt
);
664 WARN_ON((cm
->tx_cnt
< 0) || (cm
->tx_cnt
> RIOCM_TX_RING_SIZE
));
666 cm
->tx_ack_slot
= ack_slot
;
669 * If there are pending requests, insert them into transmit queue
671 if (!list_empty(&cm
->tx_reqs
) && (cm
->tx_cnt
< RIOCM_TX_RING_SIZE
)) {
672 struct tx_req
*req
, *_req
;
675 list_for_each_entry_safe(req
, _req
, &cm
->tx_reqs
, node
) {
676 list_del(&req
->node
);
677 cm
->tx_buf
[cm
->tx_slot
] = req
->buffer
;
678 rc
= rio_add_outb_message(cm
->mport
, req
->rdev
, cmbox
,
679 req
->buffer
, req
->len
);
685 cm
->tx_slot
&= (RIOCM_TX_RING_SIZE
- 1);
686 if (cm
->tx_cnt
== RIOCM_TX_RING_SIZE
)
691 spin_unlock(&cm
->tx_lock
);
694 static void riocm_outb_msg_event(struct rio_mport
*mport
, void *dev_id
,
697 struct cm_dev
*cm
= dev_id
;
699 if (cm
&& rio_mport_is_running(cm
->mport
))
700 rio_txcq_handler(cm
, slot
);
703 static int riocm_queue_req(struct cm_dev
*cm
, struct rio_dev
*rdev
,
704 void *buffer
, size_t len
)
709 treq
= kzalloc(sizeof(*treq
), GFP_KERNEL
);
714 treq
->buffer
= buffer
;
717 spin_lock_irqsave(&cm
->tx_lock
, flags
);
718 list_add_tail(&treq
->node
, &cm
->tx_reqs
);
719 spin_unlock_irqrestore(&cm
->tx_lock
, flags
);
724 * riocm_post_send - helper function that places packet into msg TX queue
726 * @rdev: target RapidIO device object (required by outbound msg interface)
727 * @buffer: pointer to a packet buffer to send
728 * @len: length of data to transfer
729 * @req: request priority flag
731 * Returns: 0 if success, or error code otherwise.
733 static int riocm_post_send(struct cm_dev
*cm
, struct rio_dev
*rdev
,
734 void *buffer
, size_t len
)
739 spin_lock_irqsave(&cm
->tx_lock
, flags
);
741 if (cm
->mport
== NULL
) {
746 if (cm
->tx_cnt
== RIOCM_TX_RING_SIZE
) {
747 riocm_debug(TX
, "Tx Queue is full");
752 cm
->tx_buf
[cm
->tx_slot
] = buffer
;
753 rc
= rio_add_outb_message(cm
->mport
, rdev
, cmbox
, buffer
, len
);
755 riocm_debug(TX
, "Add buf@%p destid=%x tx_slot=%d tx_cnt=%d",
756 buffer
, rdev
->destid
, cm
->tx_slot
, cm
->tx_cnt
);
760 cm
->tx_slot
&= (RIOCM_TX_RING_SIZE
- 1);
763 spin_unlock_irqrestore(&cm
->tx_lock
, flags
);
768 * riocm_ch_send - sends a data packet to a remote device
769 * @ch_id: local channel ID
770 * @buf: pointer to a data buffer to send (including CM header)
771 * @len: length of data to transfer (including CM header)
773 * ATTN: ASSUMES THAT THE HEADER SPACE IS RESERVED PART OF THE DATA PACKET
775 * Returns: 0 if success, or
776 * -EINVAL if one or more input parameters is/are not valid,
777 * -ENODEV if cannot find a channel with specified ID,
778 * -EAGAIN if a channel is not in CONNECTED state,
779 * + error codes returned by HW send routine.
781 static int riocm_ch_send(u16 ch_id
, void *buf
, int len
)
783 struct rio_channel
*ch
;
784 struct rio_ch_chan_hdr
*hdr
;
787 if (buf
== NULL
|| ch_id
== 0 || len
== 0 || len
> RIO_MAX_MSG_SIZE
)
790 ch
= riocm_get_channel(ch_id
);
792 riocm_error("%s(%d) ch_%d not found", current
->comm
,
793 task_pid_nr(current
), ch_id
);
797 if (!riocm_cmp(ch
, RIO_CM_CONNECTED
)) {
803 * Fill buffer header section with corresponding channel data
807 hdr
->bhdr
.src_id
= htonl(ch
->loc_destid
);
808 hdr
->bhdr
.dst_id
= htonl(ch
->rem_destid
);
809 hdr
->bhdr
.src_mbox
= cmbox
;
810 hdr
->bhdr
.dst_mbox
= cmbox
;
811 hdr
->bhdr
.type
= RIO_CM_CHAN
;
812 hdr
->ch_op
= CM_DATA_MSG
;
813 hdr
->dst_ch
= htons(ch
->rem_channel
);
814 hdr
->src_ch
= htons(ch
->id
);
815 hdr
->msg_len
= htons((u16
)len
);
817 /* ATTN: the function call below relies on the fact that underlying
818 * HW-specific add_outb_message() routine copies TX data into its own
819 * internal transfer buffer (true for all RIONET compatible mport
820 * drivers). Must be reviewed if mport driver uses the buffer directly.
823 ret
= riocm_post_send(ch
->cmdev
, ch
->rdev
, buf
, len
);
825 riocm_debug(TX
, "ch %d send_err=%d", ch
->id
, ret
);
827 riocm_put_channel(ch
);
831 static int riocm_ch_free_rxbuf(struct rio_channel
*ch
, void *buf
)
833 int i
, ret
= -EINVAL
;
835 spin_lock_bh(&ch
->lock
);
837 for (i
= 0; i
< RIOCM_RX_RING_SIZE
; i
++) {
838 if (ch
->rx_ring
.inuse
[i
] == buf
) {
839 ch
->rx_ring
.inuse
[i
] = NULL
;
840 ch
->rx_ring
.inuse_cnt
--;
846 spin_unlock_bh(&ch
->lock
);
855 * riocm_ch_receive - fetch a data packet received for the specified channel
856 * @ch: local channel ID
857 * @buf: pointer to a packet buffer
858 * @timeout: timeout to wait for incoming packet (in jiffies)
860 * Returns: 0 and valid buffer pointer if success, or NULL pointer and one of:
861 * -EAGAIN if a channel is not in CONNECTED state,
862 * -ENOMEM if in-use tracking queue is full,
863 * -ETIME if wait timeout expired,
864 * -EINTR if wait was interrupted.
866 static int riocm_ch_receive(struct rio_channel
*ch
, void **buf
, long timeout
)
872 if (!riocm_cmp(ch
, RIO_CM_CONNECTED
)) {
877 if (ch
->rx_ring
.inuse_cnt
== RIOCM_RX_RING_SIZE
) {
878 /* If we do not have entries to track buffers given to upper
879 * layer, reject request.
885 wret
= wait_for_completion_interruptible_timeout(&ch
->comp
, timeout
);
887 riocm_debug(WAIT
, "wait on %d returned %ld", ch
->id
, wret
);
891 else if (wret
== -ERESTARTSYS
)
894 ret
= riocm_cmp(ch
, RIO_CM_CONNECTED
) ? 0 : -ECONNRESET
;
899 spin_lock_bh(&ch
->lock
);
901 rxmsg
= ch
->rx_ring
.buf
[ch
->rx_ring
.tail
];
902 ch
->rx_ring
.buf
[ch
->rx_ring
.tail
] = NULL
;
905 ch
->rx_ring
.tail
%= RIOCM_RX_RING_SIZE
;
908 for (i
= 0; i
< RIOCM_RX_RING_SIZE
; i
++) {
909 if (ch
->rx_ring
.inuse
[i
] == NULL
) {
910 ch
->rx_ring
.inuse
[i
] = rxmsg
;
911 ch
->rx_ring
.inuse_cnt
++;
918 /* We have no entry to store pending message: drop it */
923 spin_unlock_bh(&ch
->lock
);
930 * riocm_ch_connect - sends a connect request to a remote device
931 * @loc_ch: local channel ID
932 * @cm: CM device to send connect request
933 * @peer: target RapidIO device
934 * @rem_ch: remote channel ID
936 * Returns: 0 if success, or
937 * -EINVAL if the channel is not in IDLE state,
938 * -EAGAIN if no connection request available immediately,
939 * -ETIME if ACK response timeout expired,
940 * -EINTR if wait for response was interrupted.
942 static int riocm_ch_connect(u16 loc_ch
, struct cm_dev
*cm
,
943 struct cm_peer
*peer
, u16 rem_ch
)
945 struct rio_channel
*ch
= NULL
;
946 struct rio_ch_chan_hdr
*hdr
;
950 ch
= riocm_get_channel(loc_ch
);
954 if (!riocm_cmp_exch(ch
, RIO_CM_IDLE
, RIO_CM_CONNECT
)) {
960 ch
->rdev
= peer
->rdev
;
962 ch
->loc_destid
= cm
->mport
->host_deviceid
;
963 ch
->rem_channel
= rem_ch
;
966 * Send connect request to the remote RapidIO device
969 hdr
= kzalloc(sizeof(*hdr
), GFP_KERNEL
);
975 hdr
->bhdr
.src_id
= htonl(ch
->loc_destid
);
976 hdr
->bhdr
.dst_id
= htonl(peer
->rdev
->destid
);
977 hdr
->bhdr
.src_mbox
= cmbox
;
978 hdr
->bhdr
.dst_mbox
= cmbox
;
979 hdr
->bhdr
.type
= RIO_CM_CHAN
;
980 hdr
->ch_op
= CM_CONN_REQ
;
981 hdr
->dst_ch
= htons(rem_ch
);
982 hdr
->src_ch
= htons(loc_ch
);
984 /* ATTN: the function call below relies on the fact that underlying
985 * HW-specific add_outb_message() routine copies TX data into its
986 * internal transfer buffer. Must be reviewed if mport driver uses
987 * this buffer directly.
989 ret
= riocm_post_send(cm
, peer
->rdev
, hdr
, sizeof(*hdr
));
994 ret
= riocm_queue_req(cm
, peer
->rdev
, hdr
, sizeof(*hdr
));
1000 riocm_cmp_exch(ch
, RIO_CM_CONNECT
, RIO_CM_IDLE
);
1004 /* Wait for connect response from the remote device */
1005 wret
= wait_for_completion_interruptible_timeout(&ch
->comp
,
1006 RIOCM_CONNECT_TO
* HZ
);
1007 riocm_debug(WAIT
, "wait on %d returns %ld", ch
->id
, wret
);
1011 else if (wret
== -ERESTARTSYS
)
1014 ret
= riocm_cmp(ch
, RIO_CM_CONNECTED
) ? 0 : -1;
1017 riocm_put_channel(ch
);
1021 static int riocm_send_ack(struct rio_channel
*ch
)
1023 struct rio_ch_chan_hdr
*hdr
;
1026 hdr
= kzalloc(sizeof(*hdr
), GFP_KERNEL
);
1030 hdr
->bhdr
.src_id
= htonl(ch
->loc_destid
);
1031 hdr
->bhdr
.dst_id
= htonl(ch
->rem_destid
);
1032 hdr
->dst_ch
= htons(ch
->rem_channel
);
1033 hdr
->src_ch
= htons(ch
->id
);
1034 hdr
->bhdr
.src_mbox
= cmbox
;
1035 hdr
->bhdr
.dst_mbox
= cmbox
;
1036 hdr
->bhdr
.type
= RIO_CM_CHAN
;
1037 hdr
->ch_op
= CM_CONN_ACK
;
1039 /* ATTN: the function call below relies on the fact that underlying
1040 * add_outb_message() routine copies TX data into its internal transfer
1041 * buffer. Review if switching to direct buffer version.
1043 ret
= riocm_post_send(ch
->cmdev
, ch
->rdev
, hdr
, sizeof(*hdr
));
1045 if (ret
== -EBUSY
&& !riocm_queue_req(ch
->cmdev
,
1046 ch
->rdev
, hdr
, sizeof(*hdr
)))
1051 riocm_error("send ACK to ch_%d on %s failed (ret=%d)",
1052 ch
->id
, rio_name(ch
->rdev
), ret
);
1057 * riocm_ch_accept - accept incoming connection request
1058 * @ch_id: channel ID
1059 * @new_ch_id: local mport device
1060 * @timeout: wait timeout (if 0 non-blocking call, do not wait if connection
1061 * request is not available).
1063 * Returns: pointer to new channel struct if success, or error-valued pointer:
1064 * -ENODEV - cannot find specified channel or mport,
1065 * -EINVAL - the channel is not in IDLE state,
1066 * -EAGAIN - no connection request available immediately (timeout=0),
1067 * -ENOMEM - unable to allocate new channel,
1068 * -ETIME - wait timeout expired,
1069 * -EINTR - wait was interrupted.
1071 static struct rio_channel
*riocm_ch_accept(u16 ch_id
, u16
*new_ch_id
,
1074 struct rio_channel
*ch
;
1075 struct rio_channel
*new_ch
;
1076 struct conn_req
*req
;
1077 struct cm_peer
*peer
;
1082 ch
= riocm_get_channel(ch_id
);
1084 return ERR_PTR(-EINVAL
);
1086 if (!riocm_cmp(ch
, RIO_CM_LISTEN
)) {
1091 /* Don't sleep if this is a non blocking call */
1093 if (!try_wait_for_completion(&ch
->comp
)) {
1098 riocm_debug(WAIT
, "on %d", ch
->id
);
1100 wret
= wait_for_completion_interruptible_timeout(&ch
->comp
,
1105 } else if (wret
== -ERESTARTSYS
) {
1111 spin_lock_bh(&ch
->lock
);
1113 if (ch
->state
!= RIO_CM_LISTEN
) {
1115 } else if (list_empty(&ch
->accept_queue
)) {
1116 riocm_debug(WAIT
, "on %d accept_queue is empty on completion",
1121 spin_unlock_bh(&ch
->lock
);
1124 riocm_debug(WAIT
, "on %d returns %d", ch
->id
, err
);
1128 /* Create new channel for this connection */
1129 new_ch
= riocm_ch_alloc(RIOCM_CHNUM_AUTO
);
1131 if (IS_ERR(new_ch
)) {
1132 riocm_error("failed to get channel for new req (%ld)",
1138 spin_lock_bh(&ch
->lock
);
1140 req
= list_first_entry(&ch
->accept_queue
, struct conn_req
, node
);
1141 list_del(&req
->node
);
1142 new_ch
->cmdev
= ch
->cmdev
;
1143 new_ch
->loc_destid
= ch
->loc_destid
;
1144 new_ch
->rem_destid
= req
->destid
;
1145 new_ch
->rem_channel
= req
->chan
;
1147 spin_unlock_bh(&ch
->lock
);
1148 riocm_put_channel(ch
);
1152 down_read(&rdev_sem
);
1153 /* Find requester's device object */
1154 list_for_each_entry(peer
, &new_ch
->cmdev
->peers
, node
) {
1155 if (peer
->rdev
->destid
== new_ch
->rem_destid
) {
1156 riocm_debug(RX_CMD
, "found matching device(%s)",
1157 rio_name(peer
->rdev
));
1165 /* If peer device object not found, simply ignore the request */
1167 goto err_put_new_ch
;
1170 new_ch
->rdev
= peer
->rdev
;
1171 new_ch
->state
= RIO_CM_CONNECTED
;
1172 spin_lock_init(&new_ch
->lock
);
1174 /* Acknowledge the connection request. */
1175 riocm_send_ack(new_ch
);
1177 *new_ch_id
= new_ch
->id
;
1181 spin_lock_bh(&idr_lock
);
1182 idr_remove(&ch_idr
, new_ch
->id
);
1183 spin_unlock_bh(&idr_lock
);
1184 riocm_put_channel(new_ch
);
1188 riocm_put_channel(ch
);
1190 return ERR_PTR(err
);
1194 * riocm_ch_listen - puts a channel into LISTEN state
1195 * @ch_id: channel ID
1197 * Returns: 0 if success, or
1198 * -EINVAL if the specified channel does not exists or
1199 * is not in CHAN_BOUND state.
1201 static int riocm_ch_listen(u16 ch_id
)
1203 struct rio_channel
*ch
= NULL
;
1206 riocm_debug(CHOP
, "(ch_%d)", ch_id
);
1208 ch
= riocm_get_channel(ch_id
);
1211 if (!riocm_cmp_exch(ch
, RIO_CM_CHAN_BOUND
, RIO_CM_LISTEN
))
1213 riocm_put_channel(ch
);
1218 * riocm_ch_bind - associate a channel object and an mport device
1219 * @ch_id: channel ID
1220 * @mport_id: local mport device ID
1221 * @context: pointer to the additional caller's context
1223 * Returns: 0 if success, or
1224 * -ENODEV if cannot find specified mport,
1225 * -EINVAL if the specified channel does not exist or
1226 * is not in IDLE state.
1228 static int riocm_ch_bind(u16 ch_id
, u8 mport_id
, void *context
)
1230 struct rio_channel
*ch
= NULL
;
1234 riocm_debug(CHOP
, "ch_%d to mport_%d", ch_id
, mport_id
);
1236 /* Find matching cm_dev object */
1237 down_read(&rdev_sem
);
1238 list_for_each_entry(cm
, &cm_dev_list
, list
) {
1239 if ((cm
->mport
->id
== mport_id
) &&
1240 rio_mport_is_running(cm
->mport
)) {
1249 ch
= riocm_get_channel(ch_id
);
1255 spin_lock_bh(&ch
->lock
);
1256 if (ch
->state
!= RIO_CM_IDLE
) {
1257 spin_unlock_bh(&ch
->lock
);
1263 ch
->loc_destid
= cm
->mport
->host_deviceid
;
1264 ch
->context
= context
;
1265 ch
->state
= RIO_CM_CHAN_BOUND
;
1266 spin_unlock_bh(&ch
->lock
);
1268 riocm_put_channel(ch
);
1275 * riocm_ch_alloc - channel object allocation helper routine
1276 * @ch_num: channel ID (1 ... RIOCM_MAX_CHNUM, 0 = automatic)
1278 * Return value: pointer to newly created channel object,
1279 * or error-valued pointer
1281 static struct rio_channel
*riocm_ch_alloc(u16 ch_num
)
1285 struct rio_channel
*ch
;
1287 ch
= kzalloc(sizeof(*ch
), GFP_KERNEL
);
1289 return ERR_PTR(-ENOMEM
);
1292 /* If requested, try to obtain the specified channel ID */
1296 /* Obtain channel ID from the dynamic allocation range */
1298 end
= RIOCM_MAX_CHNUM
+ 1;
1301 idr_preload(GFP_KERNEL
);
1302 spin_lock_bh(&idr_lock
);
1303 id
= idr_alloc_cyclic(&ch_idr
, ch
, start
, end
, GFP_NOWAIT
);
1304 spin_unlock_bh(&idr_lock
);
1309 return ERR_PTR(id
== -ENOSPC
? -EBUSY
: id
);
1313 ch
->state
= RIO_CM_IDLE
;
1314 spin_lock_init(&ch
->lock
);
1315 INIT_LIST_HEAD(&ch
->accept_queue
);
1316 INIT_LIST_HEAD(&ch
->ch_node
);
1317 init_completion(&ch
->comp
);
1318 init_completion(&ch
->comp_close
);
1319 kref_init(&ch
->ref
);
1320 ch
->rx_ring
.head
= 0;
1321 ch
->rx_ring
.tail
= 0;
1322 ch
->rx_ring
.count
= 0;
1323 ch
->rx_ring
.inuse_cnt
= 0;
1329 * riocm_ch_create - creates a new channel object and allocates ID for it
1330 * @ch_num: channel ID (1 ... RIOCM_MAX_CHNUM, 0 = automatic)
1332 * Allocates and initializes a new channel object. If the parameter ch_num > 0
1333 * and is within the valid range, riocm_ch_create tries to allocate the
1334 * specified ID for the new channel. If ch_num = 0, channel ID will be assigned
1335 * automatically from the range (chstart ... RIOCM_MAX_CHNUM).
1336 * Module parameter 'chstart' defines start of an ID range available for dynamic
1337 * allocation. Range below 'chstart' is reserved for pre-defined ID numbers.
1338 * Available channel numbers are limited by 16-bit size of channel numbers used
1339 * in the packet header.
1341 * Return value: PTR to rio_channel structure if successful (with channel number
1342 * updated via pointer) or error-valued pointer if error.
1344 static struct rio_channel
*riocm_ch_create(u16
*ch_num
)
1346 struct rio_channel
*ch
= NULL
;
1348 ch
= riocm_ch_alloc(*ch_num
);
1351 riocm_debug(CHOP
, "Failed to allocate channel %d (err=%ld)",
1352 *ch_num
, PTR_ERR(ch
));
1360 * riocm_ch_free - channel object release routine
1361 * @ref: pointer to a channel's kref structure
1363 static void riocm_ch_free(struct kref
*ref
)
1365 struct rio_channel
*ch
= container_of(ref
, struct rio_channel
, ref
);
1368 riocm_debug(CHOP
, "(ch_%d)", ch
->id
);
1370 if (ch
->rx_ring
.inuse_cnt
) {
1372 i
< RIOCM_RX_RING_SIZE
&& ch
->rx_ring
.inuse_cnt
; i
++) {
1373 if (ch
->rx_ring
.inuse
[i
] != NULL
) {
1374 kfree(ch
->rx_ring
.inuse
[i
]);
1375 ch
->rx_ring
.inuse_cnt
--;
1380 if (ch
->rx_ring
.count
)
1381 for (i
= 0; i
< RIOCM_RX_RING_SIZE
&& ch
->rx_ring
.count
; i
++) {
1382 if (ch
->rx_ring
.buf
[i
] != NULL
) {
1383 kfree(ch
->rx_ring
.buf
[i
]);
1384 ch
->rx_ring
.count
--;
1388 complete(&ch
->comp_close
);
1391 static int riocm_send_close(struct rio_channel
*ch
)
1393 struct rio_ch_chan_hdr
*hdr
;
1397 * Send CH_CLOSE notification to the remote RapidIO device
1400 hdr
= kzalloc(sizeof(*hdr
), GFP_KERNEL
);
1404 hdr
->bhdr
.src_id
= htonl(ch
->loc_destid
);
1405 hdr
->bhdr
.dst_id
= htonl(ch
->rem_destid
);
1406 hdr
->bhdr
.src_mbox
= cmbox
;
1407 hdr
->bhdr
.dst_mbox
= cmbox
;
1408 hdr
->bhdr
.type
= RIO_CM_CHAN
;
1409 hdr
->ch_op
= CM_CONN_CLOSE
;
1410 hdr
->dst_ch
= htons(ch
->rem_channel
);
1411 hdr
->src_ch
= htons(ch
->id
);
1413 /* ATTN: the function call below relies on the fact that underlying
1414 * add_outb_message() routine copies TX data into its internal transfer
1415 * buffer. Needs to be reviewed if switched to direct buffer mode.
1417 ret
= riocm_post_send(ch
->cmdev
, ch
->rdev
, hdr
, sizeof(*hdr
));
1419 if (ret
== -EBUSY
&& !riocm_queue_req(ch
->cmdev
, ch
->rdev
,
1425 riocm_error("ch(%d) send CLOSE failed (ret=%d)", ch
->id
, ret
);
1431 * riocm_ch_close - closes a channel object with specified ID (by local request)
1432 * @ch: channel to be closed
1434 static int riocm_ch_close(struct rio_channel
*ch
)
1436 unsigned long tmo
= msecs_to_jiffies(3000);
1437 enum rio_cm_state state
;
1441 riocm_debug(CHOP
, "ch_%d by %s(%d)",
1442 ch
->id
, current
->comm
, task_pid_nr(current
));
1444 state
= riocm_exch(ch
, RIO_CM_DESTROYING
);
1445 if (state
== RIO_CM_CONNECTED
)
1446 riocm_send_close(ch
);
1448 complete_all(&ch
->comp
);
1450 riocm_put_channel(ch
);
1451 wret
= wait_for_completion_interruptible_timeout(&ch
->comp_close
, tmo
);
1453 riocm_debug(WAIT
, "wait on %d returns %ld", ch
->id
, wret
);
1456 /* Timeout on wait occurred */
1457 riocm_debug(CHOP
, "%s(%d) timed out waiting for ch %d",
1458 current
->comm
, task_pid_nr(current
), ch
->id
);
1460 } else if (wret
== -ERESTARTSYS
) {
1461 /* Wait_for_completion was interrupted by a signal */
1462 riocm_debug(CHOP
, "%s(%d) wait for ch %d was interrupted",
1463 current
->comm
, task_pid_nr(current
), ch
->id
);
1468 riocm_debug(CHOP
, "ch_%d resources released", ch
->id
);
1471 riocm_debug(CHOP
, "failed to release ch_%d resources", ch
->id
);
1478 * riocm_cdev_open() - Open character device
1480 static int riocm_cdev_open(struct inode
*inode
, struct file
*filp
)
1482 riocm_debug(INIT
, "by %s(%d) filp=%p ",
1483 current
->comm
, task_pid_nr(current
), filp
);
1485 if (list_empty(&cm_dev_list
))
1492 * riocm_cdev_release() - Release character device
1494 static int riocm_cdev_release(struct inode
*inode
, struct file
*filp
)
1496 struct rio_channel
*ch
, *_c
;
1500 riocm_debug(EXIT
, "by %s(%d) filp=%p",
1501 current
->comm
, task_pid_nr(current
), filp
);
1503 /* Check if there are channels associated with this file descriptor */
1504 spin_lock_bh(&idr_lock
);
1505 idr_for_each_entry(&ch_idr
, ch
, i
) {
1506 if (ch
&& ch
->filp
== filp
) {
1507 riocm_debug(EXIT
, "ch_%d not released by %s(%d)",
1508 ch
->id
, current
->comm
,
1509 task_pid_nr(current
));
1510 idr_remove(&ch_idr
, ch
->id
);
1511 list_add(&ch
->ch_node
, &list
);
1514 spin_unlock_bh(&idr_lock
);
1516 if (!list_empty(&list
)) {
1517 list_for_each_entry_safe(ch
, _c
, &list
, ch_node
) {
1518 list_del(&ch
->ch_node
);
1527 * cm_ep_get_list_size() - Reports number of endpoints in the network
1529 static int cm_ep_get_list_size(void __user
*arg
)
1531 u32 __user
*p
= arg
;
1536 if (get_user(mport_id
, p
))
1538 if (mport_id
>= RIO_MAX_MPORTS
)
1541 /* Find a matching cm_dev object */
1542 down_read(&rdev_sem
);
1543 list_for_each_entry(cm
, &cm_dev_list
, list
) {
1544 if (cm
->mport
->id
== mport_id
) {
1547 if (copy_to_user(arg
, &count
, sizeof(u32
)))
1558 * cm_ep_get_list() - Returns list of attached endpoints
1560 static int cm_ep_get_list(void __user
*arg
)
1563 struct cm_peer
*peer
;
1571 if (copy_from_user(&info
, arg
, sizeof(info
)))
1574 if (info
[1] >= RIO_MAX_MPORTS
|| info
[0] > RIOCM_MAX_EP_COUNT
)
1577 /* Find a matching cm_dev object */
1578 down_read(&rdev_sem
);
1579 list_for_each_entry(cm
, &cm_dev_list
, list
)
1580 if (cm
->mport
->id
== (u8
)info
[1])
1587 nent
= min(info
[0], cm
->npeers
);
1588 buf
= kcalloc(nent
+ 2, sizeof(u32
), GFP_KERNEL
);
1594 entry_ptr
= (u32
*)((uintptr_t)buf
+ 2*sizeof(u32
));
1596 list_for_each_entry(peer
, &cm
->peers
, node
) {
1597 *entry_ptr
= (u32
)peer
->rdev
->destid
;
1604 ((u32
*)buf
)[0] = i
; /* report an updated number of entries */
1605 ((u32
*)buf
)[1] = info
[1]; /* put back an mport ID */
1606 if (copy_to_user(arg
, buf
, sizeof(u32
) * (info
[0] + 2)))
1614 * cm_mport_get_list() - Returns list of available local mport devices
1616 static int cm_mport_get_list(void __user
*arg
)
1625 if (copy_from_user(&entries
, arg
, sizeof(entries
)))
1627 if (entries
== 0 || entries
> RIO_MAX_MPORTS
)
1629 buf
= kcalloc(entries
+ 1, sizeof(u32
), GFP_KERNEL
);
1633 /* Scan all registered cm_dev objects */
1634 entry_ptr
= (u32
*)((uintptr_t)buf
+ sizeof(u32
));
1635 down_read(&rdev_sem
);
1636 list_for_each_entry(cm
, &cm_dev_list
, list
) {
1637 if (count
++ < entries
) {
1638 *entry_ptr
= (cm
->mport
->id
<< 16) |
1639 cm
->mport
->host_deviceid
;
1645 *((u32
*)buf
) = count
; /* report a real number of entries */
1646 if (copy_to_user(arg
, buf
, sizeof(u32
) * (count
+ 1)))
1654 * cm_chan_create() - Create a message exchange channel
1656 static int cm_chan_create(struct file
*filp
, void __user
*arg
)
1658 u16 __user
*p
= arg
;
1660 struct rio_channel
*ch
;
1662 if (get_user(ch_num
, p
))
1665 riocm_debug(CHOP
, "ch_%d requested by %s(%d)",
1666 ch_num
, current
->comm
, task_pid_nr(current
));
1667 ch
= riocm_ch_create(&ch_num
);
1672 riocm_debug(CHOP
, "ch_%d created by %s(%d)",
1673 ch_num
, current
->comm
, task_pid_nr(current
));
1674 return put_user(ch_num
, p
);
1678 * cm_chan_close() - Close channel
1679 * @filp: Pointer to file object
1680 * @arg: Channel to close
1682 static int cm_chan_close(struct file
*filp
, void __user
*arg
)
1684 u16 __user
*p
= arg
;
1686 struct rio_channel
*ch
;
1688 if (get_user(ch_num
, p
))
1691 riocm_debug(CHOP
, "ch_%d by %s(%d)",
1692 ch_num
, current
->comm
, task_pid_nr(current
));
1694 spin_lock_bh(&idr_lock
);
1695 ch
= idr_find(&ch_idr
, ch_num
);
1697 spin_unlock_bh(&idr_lock
);
1700 if (ch
->filp
!= filp
) {
1701 spin_unlock_bh(&idr_lock
);
1704 idr_remove(&ch_idr
, ch
->id
);
1705 spin_unlock_bh(&idr_lock
);
1707 return riocm_ch_close(ch
);
1711 * cm_chan_bind() - Bind channel
1712 * @arg: Channel number
1714 static int cm_chan_bind(void __user
*arg
)
1716 struct rio_cm_channel chan
;
1718 if (copy_from_user(&chan
, arg
, sizeof(chan
)))
1720 if (chan
.mport_id
>= RIO_MAX_MPORTS
)
1723 return riocm_ch_bind(chan
.id
, chan
.mport_id
, NULL
);
1727 * cm_chan_listen() - Listen on channel
1728 * @arg: Channel number
1730 static int cm_chan_listen(void __user
*arg
)
1732 u16 __user
*p
= arg
;
1735 if (get_user(ch_num
, p
))
1738 return riocm_ch_listen(ch_num
);
1742 * cm_chan_accept() - Accept incoming connection
1743 * @filp: Pointer to file object
1744 * @arg: Channel number
1746 static int cm_chan_accept(struct file
*filp
, void __user
*arg
)
1748 struct rio_cm_accept param
;
1750 struct rio_channel
*ch
;
1752 if (copy_from_user(¶m
, arg
, sizeof(param
)))
1755 riocm_debug(CHOP
, "on ch_%d by %s(%d)",
1756 param
.ch_num
, current
->comm
, task_pid_nr(current
));
1758 accept_to
= param
.wait_to
?
1759 msecs_to_jiffies(param
.wait_to
) : 0;
1761 ch
= riocm_ch_accept(param
.ch_num
, ¶m
.ch_num
, accept_to
);
1766 riocm_debug(CHOP
, "new ch_%d for %s(%d)",
1767 ch
->id
, current
->comm
, task_pid_nr(current
));
1769 if (copy_to_user(arg
, ¶m
, sizeof(param
)))
1775 * cm_chan_connect() - Connect on channel
1776 * @arg: Channel information
1778 static int cm_chan_connect(void __user
*arg
)
1780 struct rio_cm_channel chan
;
1782 struct cm_peer
*peer
;
1785 if (copy_from_user(&chan
, arg
, sizeof(chan
)))
1787 if (chan
.mport_id
>= RIO_MAX_MPORTS
)
1790 down_read(&rdev_sem
);
1792 /* Find matching cm_dev object */
1793 list_for_each_entry(cm
, &cm_dev_list
, list
) {
1794 if (cm
->mport
->id
== chan
.mport_id
) {
1803 if (chan
.remote_destid
>= RIO_ANY_DESTID(cm
->mport
->sys_size
)) {
1808 /* Find corresponding RapidIO endpoint device object */
1811 list_for_each_entry(peer
, &cm
->peers
, node
) {
1812 if (peer
->rdev
->destid
== chan
.remote_destid
) {
1823 return riocm_ch_connect(chan
.id
, cm
, peer
, chan
.remote_channel
);
1830 * cm_chan_msg_send() - Send a message through channel
1831 * @arg: Outbound message information
1833 static int cm_chan_msg_send(void __user
*arg
)
1835 struct rio_cm_msg msg
;
1839 if (copy_from_user(&msg
, arg
, sizeof(msg
)))
1841 if (msg
.size
> RIO_MAX_MSG_SIZE
)
1844 buf
= memdup_user((void __user
*)(uintptr_t)msg
.msg
, msg
.size
);
1846 return PTR_ERR(buf
);
1848 ret
= riocm_ch_send(msg
.ch_num
, buf
, msg
.size
);
1855 * cm_chan_msg_rcv() - Receive a message through channel
1856 * @arg: Inbound message information
1858 static int cm_chan_msg_rcv(void __user
*arg
)
1860 struct rio_cm_msg msg
;
1861 struct rio_channel
*ch
;
1864 int ret
= 0, msg_size
;
1866 if (copy_from_user(&msg
, arg
, sizeof(msg
)))
1869 if (msg
.ch_num
== 0 || msg
.size
== 0)
1872 ch
= riocm_get_channel(msg
.ch_num
);
1876 rxto
= msg
.rxto
? msecs_to_jiffies(msg
.rxto
) : MAX_SCHEDULE_TIMEOUT
;
1878 ret
= riocm_ch_receive(ch
, &buf
, rxto
);
1882 msg_size
= min(msg
.size
, (u16
)(RIO_MAX_MSG_SIZE
));
1884 if (copy_to_user((void __user
*)(uintptr_t)msg
.msg
, buf
, msg_size
))
1887 riocm_ch_free_rxbuf(ch
, buf
);
1889 riocm_put_channel(ch
);
1894 * riocm_cdev_ioctl() - IOCTL requests handler
1897 riocm_cdev_ioctl(struct file
*filp
, unsigned int cmd
, unsigned long arg
)
1900 case RIO_CM_EP_GET_LIST_SIZE
:
1901 return cm_ep_get_list_size((void __user
*)arg
);
1902 case RIO_CM_EP_GET_LIST
:
1903 return cm_ep_get_list((void __user
*)arg
);
1904 case RIO_CM_CHAN_CREATE
:
1905 return cm_chan_create(filp
, (void __user
*)arg
);
1906 case RIO_CM_CHAN_CLOSE
:
1907 return cm_chan_close(filp
, (void __user
*)arg
);
1908 case RIO_CM_CHAN_BIND
:
1909 return cm_chan_bind((void __user
*)arg
);
1910 case RIO_CM_CHAN_LISTEN
:
1911 return cm_chan_listen((void __user
*)arg
);
1912 case RIO_CM_CHAN_ACCEPT
:
1913 return cm_chan_accept(filp
, (void __user
*)arg
);
1914 case RIO_CM_CHAN_CONNECT
:
1915 return cm_chan_connect((void __user
*)arg
);
1916 case RIO_CM_CHAN_SEND
:
1917 return cm_chan_msg_send((void __user
*)arg
);
1918 case RIO_CM_CHAN_RECEIVE
:
1919 return cm_chan_msg_rcv((void __user
*)arg
);
1920 case RIO_CM_MPORT_GET_LIST
:
1921 return cm_mport_get_list((void __user
*)arg
);
1929 static const struct file_operations riocm_cdev_fops
= {
1930 .owner
= THIS_MODULE
,
1931 .open
= riocm_cdev_open
,
1932 .release
= riocm_cdev_release
,
1933 .unlocked_ioctl
= riocm_cdev_ioctl
,
1937 * riocm_add_dev - add new remote RapidIO device into channel management core
1938 * @dev: device object associated with RapidIO device
1939 * @sif: subsystem interface
1941 * Adds the specified RapidIO device (if applicable) into peers list of
1942 * the corresponding channel management device (cm_dev).
1944 static int riocm_add_dev(struct device
*dev
, struct subsys_interface
*sif
)
1946 struct cm_peer
*peer
;
1947 struct rio_dev
*rdev
= to_rio_dev(dev
);
1950 /* Check if the remote device has capabilities required to support CM */
1951 if (!dev_cm_capable(rdev
))
1954 riocm_debug(RDEV
, "(%s)", rio_name(rdev
));
1956 peer
= kmalloc(sizeof(*peer
), GFP_KERNEL
);
1960 /* Find a corresponding cm_dev object */
1961 down_write(&rdev_sem
);
1962 list_for_each_entry(cm
, &cm_dev_list
, list
) {
1963 if (cm
->mport
== rdev
->net
->hport
)
1967 up_write(&rdev_sem
);
1973 list_add_tail(&peer
->node
, &cm
->peers
);
1976 up_write(&rdev_sem
);
1981 * riocm_remove_dev - remove remote RapidIO device from channel management core
1982 * @dev: device object associated with RapidIO device
1983 * @sif: subsystem interface
1985 * Removes the specified RapidIO device (if applicable) from peers list of
1986 * the corresponding channel management device (cm_dev).
1988 static void riocm_remove_dev(struct device
*dev
, struct subsys_interface
*sif
)
1990 struct rio_dev
*rdev
= to_rio_dev(dev
);
1992 struct cm_peer
*peer
;
1993 struct rio_channel
*ch
, *_c
;
1998 /* Check if the remote device has capabilities required to support CM */
1999 if (!dev_cm_capable(rdev
))
2002 riocm_debug(RDEV
, "(%s)", rio_name(rdev
));
2004 /* Find matching cm_dev object */
2005 down_write(&rdev_sem
);
2006 list_for_each_entry(cm
, &cm_dev_list
, list
) {
2007 if (cm
->mport
== rdev
->net
->hport
) {
2014 up_write(&rdev_sem
);
2018 /* Remove remote device from the list of peers */
2020 list_for_each_entry(peer
, &cm
->peers
, node
) {
2021 if (peer
->rdev
== rdev
) {
2022 riocm_debug(RDEV
, "removing peer %s", rio_name(rdev
));
2024 list_del(&peer
->node
);
2031 up_write(&rdev_sem
);
2037 * Release channels associated with this peer
2040 spin_lock_bh(&idr_lock
);
2041 idr_for_each_entry(&ch_idr
, ch
, i
) {
2042 if (ch
&& ch
->rdev
== rdev
) {
2043 if (atomic_read(&rdev
->state
) != RIO_DEVICE_SHUTDOWN
)
2044 riocm_exch(ch
, RIO_CM_DISCONNECT
);
2045 idr_remove(&ch_idr
, ch
->id
);
2046 list_add(&ch
->ch_node
, &list
);
2049 spin_unlock_bh(&idr_lock
);
2051 if (!list_empty(&list
)) {
2052 list_for_each_entry_safe(ch
, _c
, &list
, ch_node
) {
2053 list_del(&ch
->ch_node
);
2060 * riocm_cdev_add() - Create rio_cm char device
2061 * @devno: device number assigned to device (MAJ + MIN)
2063 static int riocm_cdev_add(dev_t devno
)
2067 cdev_init(&riocm_cdev
.cdev
, &riocm_cdev_fops
);
2068 riocm_cdev
.cdev
.owner
= THIS_MODULE
;
2069 ret
= cdev_add(&riocm_cdev
.cdev
, devno
, 1);
2071 riocm_error("Cannot register a device with error %d", ret
);
2075 riocm_cdev
.dev
= device_create(dev_class
, NULL
, devno
, NULL
, DEV_NAME
);
2076 if (IS_ERR(riocm_cdev
.dev
)) {
2077 cdev_del(&riocm_cdev
.cdev
);
2078 return PTR_ERR(riocm_cdev
.dev
);
2081 riocm_debug(MPORT
, "Added %s cdev(%d:%d)",
2082 DEV_NAME
, MAJOR(devno
), MINOR(devno
));
2088 * riocm_add_mport - add new local mport device into channel management core
2089 * @dev: device object associated with mport
2090 * @class_intf: class interface
2092 * When a new mport device is added, CM immediately reserves inbound and
2093 * outbound RapidIO mailboxes that will be used.
2095 static int riocm_add_mport(struct device
*dev
,
2096 struct class_interface
*class_intf
)
2101 struct rio_mport
*mport
= to_rio_mport(dev
);
2103 riocm_debug(MPORT
, "add mport %s", mport
->name
);
2105 cm
= kzalloc(sizeof(*cm
), GFP_KERNEL
);
2111 rc
= rio_request_outb_mbox(mport
, cm
, cmbox
,
2112 RIOCM_TX_RING_SIZE
, riocm_outb_msg_event
);
2114 riocm_error("failed to allocate OBMBOX_%d on %s",
2115 cmbox
, mport
->name
);
2120 rc
= rio_request_inb_mbox(mport
, cm
, cmbox
,
2121 RIOCM_RX_RING_SIZE
, riocm_inb_msg_event
);
2123 riocm_error("failed to allocate IBMBOX_%d on %s",
2124 cmbox
, mport
->name
);
2125 rio_release_outb_mbox(mport
, cmbox
);
2131 * Allocate and register inbound messaging buffers to be ready
2132 * to receive channel and system management requests
2134 for (i
= 0; i
< RIOCM_RX_RING_SIZE
; i
++)
2135 cm
->rx_buf
[i
] = NULL
;
2137 cm
->rx_slots
= RIOCM_RX_RING_SIZE
;
2138 mutex_init(&cm
->rx_lock
);
2139 riocm_rx_fill(cm
, RIOCM_RX_RING_SIZE
);
2140 cm
->rx_wq
= create_workqueue(DRV_NAME
"/rxq");
2142 riocm_error("failed to allocate IBMBOX_%d on %s",
2143 cmbox
, mport
->name
);
2144 rio_release_outb_mbox(mport
, cmbox
);
2149 INIT_WORK(&cm
->rx_work
, rio_ibmsg_handler
);
2153 cm
->tx_ack_slot
= 0;
2154 spin_lock_init(&cm
->tx_lock
);
2156 INIT_LIST_HEAD(&cm
->peers
);
2158 INIT_LIST_HEAD(&cm
->tx_reqs
);
2160 down_write(&rdev_sem
);
2161 list_add_tail(&cm
->list
, &cm_dev_list
);
2162 up_write(&rdev_sem
);
2168 * riocm_remove_mport - remove local mport device from channel management core
2169 * @dev: device object associated with mport
2170 * @class_intf: class interface
2172 * Removes a local mport device from the list of registered devices that provide
2173 * channel management services. Returns an error if the specified mport is not
2174 * registered with the CM core.
2176 static void riocm_remove_mport(struct device
*dev
,
2177 struct class_interface
*class_intf
)
2179 struct rio_mport
*mport
= to_rio_mport(dev
);
2181 struct cm_peer
*peer
, *temp
;
2182 struct rio_channel
*ch
, *_c
;
2187 riocm_debug(MPORT
, "%s", mport
->name
);
2189 /* Find a matching cm_dev object */
2190 down_write(&rdev_sem
);
2191 list_for_each_entry(cm
, &cm_dev_list
, list
) {
2192 if (cm
->mport
== mport
) {
2193 list_del(&cm
->list
);
2198 up_write(&rdev_sem
);
2202 flush_workqueue(cm
->rx_wq
);
2203 destroy_workqueue(cm
->rx_wq
);
2205 /* Release channels bound to this mport */
2206 spin_lock_bh(&idr_lock
);
2207 idr_for_each_entry(&ch_idr
, ch
, i
) {
2208 if (ch
->cmdev
== cm
) {
2209 riocm_debug(RDEV
, "%s drop ch_%d",
2210 mport
->name
, ch
->id
);
2211 idr_remove(&ch_idr
, ch
->id
);
2212 list_add(&ch
->ch_node
, &list
);
2215 spin_unlock_bh(&idr_lock
);
2217 if (!list_empty(&list
)) {
2218 list_for_each_entry_safe(ch
, _c
, &list
, ch_node
) {
2219 list_del(&ch
->ch_node
);
2224 rio_release_inb_mbox(mport
, cmbox
);
2225 rio_release_outb_mbox(mport
, cmbox
);
2227 /* Remove and free peer entries */
2228 if (!list_empty(&cm
->peers
))
2229 riocm_debug(RDEV
, "ATTN: peer list not empty");
2230 list_for_each_entry_safe(peer
, temp
, &cm
->peers
, node
) {
2231 riocm_debug(RDEV
, "removing peer %s", rio_name(peer
->rdev
));
2232 list_del(&peer
->node
);
2238 riocm_debug(MPORT
, "%s done", mport
->name
);
2241 static int rio_cm_shutdown(struct notifier_block
*nb
, unsigned long code
,
2244 struct rio_channel
*ch
;
2248 riocm_debug(EXIT
, ".");
2251 * If there are any channels left in connected state send
2252 * close notification to the connection partner.
2253 * First build a list of channels that require a closing
2254 * notification because function riocm_send_close() should
2255 * be called outside of spinlock protected code.
2257 spin_lock_bh(&idr_lock
);
2258 idr_for_each_entry(&ch_idr
, ch
, i
) {
2259 if (ch
->state
== RIO_CM_CONNECTED
) {
2260 riocm_debug(EXIT
, "close ch %d", ch
->id
);
2261 idr_remove(&ch_idr
, ch
->id
);
2262 list_add(&ch
->ch_node
, &list
);
2265 spin_unlock_bh(&idr_lock
);
2267 list_for_each_entry(ch
, &list
, ch_node
)
2268 riocm_send_close(ch
);
2274 * riocm_interface handles addition/removal of remote RapidIO devices
2276 static struct subsys_interface riocm_interface
= {
2278 .subsys
= &rio_bus_type
,
2279 .add_dev
= riocm_add_dev
,
2280 .remove_dev
= riocm_remove_dev
,
2284 * rio_mport_interface handles addition/removal local mport devices
2286 static struct class_interface rio_mport_interface __refdata
= {
2287 .class = &rio_mport_class
,
2288 .add_dev
= riocm_add_mport
,
2289 .remove_dev
= riocm_remove_mport
,
2292 static struct notifier_block rio_cm_notifier
= {
2293 .notifier_call
= rio_cm_shutdown
,
2296 static int __init
riocm_init(void)
2300 /* Create device class needed by udev */
2301 dev_class
= class_create(THIS_MODULE
, DRV_NAME
);
2302 if (IS_ERR(dev_class
)) {
2303 riocm_error("Cannot create " DRV_NAME
" class");
2304 return PTR_ERR(dev_class
);
2307 ret
= alloc_chrdev_region(&dev_number
, 0, 1, DRV_NAME
);
2309 class_destroy(dev_class
);
2313 dev_major
= MAJOR(dev_number
);
2314 dev_minor_base
= MINOR(dev_number
);
2315 riocm_debug(INIT
, "Registered class with %d major", dev_major
);
2318 * Register as rapidio_port class interface to get notifications about
2319 * mport additions and removals.
2321 ret
= class_interface_register(&rio_mport_interface
);
2323 riocm_error("class_interface_register error: %d", ret
);
2328 * Register as RapidIO bus interface to get notifications about
2329 * addition/removal of remote RapidIO devices.
2331 ret
= subsys_interface_register(&riocm_interface
);
2333 riocm_error("subsys_interface_register error: %d", ret
);
2337 ret
= register_reboot_notifier(&rio_cm_notifier
);
2339 riocm_error("failed to register reboot notifier (err=%d)", ret
);
2343 ret
= riocm_cdev_add(dev_number
);
2345 unregister_reboot_notifier(&rio_cm_notifier
);
2352 subsys_interface_unregister(&riocm_interface
);
2354 class_interface_unregister(&rio_mport_interface
);
2356 unregister_chrdev_region(dev_number
, 1);
2357 class_destroy(dev_class
);
2361 static void __exit
riocm_exit(void)
2363 riocm_debug(EXIT
, "enter");
2364 unregister_reboot_notifier(&rio_cm_notifier
);
2365 subsys_interface_unregister(&riocm_interface
);
2366 class_interface_unregister(&rio_mport_interface
);
2367 idr_destroy(&ch_idr
);
2369 device_unregister(riocm_cdev
.dev
);
2370 cdev_del(&(riocm_cdev
.cdev
));
2372 class_destroy(dev_class
);
2373 unregister_chrdev_region(dev_number
, 1);
2376 late_initcall(riocm_init
);
2377 module_exit(riocm_exit
);