2 * Copyright (C) ST-Ericsson AB 2010
3 * Author: Daniel Martensson
4 * Dmitry.Tarnyagin / dmitry.tarnyagin@lockless.no
5 * License terms: GNU General Public License (GPL) version 2.
8 #define pr_fmt(fmt) KBUILD_MODNAME fmt
10 #include <linux/init.h>
11 #include <linux/module.h>
12 #include <linux/device.h>
13 #include <linux/netdevice.h>
14 #include <linux/string.h>
15 #include <linux/list.h>
16 #include <linux/interrupt.h>
17 #include <linux/delay.h>
18 #include <linux/sched.h>
19 #include <linux/if_arp.h>
20 #include <linux/timer.h>
21 #include <net/rtnetlink.h>
22 #include <linux/pkt_sched.h>
23 #include <net/caif/caif_layer.h>
24 #include <net/caif/caif_hsi.h>
26 MODULE_LICENSE("GPL");
27 MODULE_AUTHOR("Daniel Martensson");
28 MODULE_DESCRIPTION("CAIF HSI driver");
30 /* Returns the number of padding bytes for alignment. */
31 #define PAD_POW2(x, pow) ((((x)&((pow)-1)) == 0) ? 0 :\
32 (((pow)-((x)&((pow)-1)))))
34 static const struct cfhsi_config hsi_default_config
= {
36 /* Inactivity timeout on HSI, ms */
37 .inactivity_timeout
= HZ
,
39 /* Aggregation timeout (ms) of zero means no aggregation is done*/
40 .aggregation_timeout
= 1,
43 * HSI link layer flow-control thresholds.
44 * Threshold values for the HSI packet queue. Flow-control will be
45 * asserted when the number of packets exceeds q_high_mark. It will
46 * not be de-asserted before the number of packets drops below
48 * Warning: A high threshold value might increase throughput but it
49 * will at the same time prevent channel prioritization and increase
50 * the risk of flooding the modem. The high threshold should be above
57 * HSI padding options.
58 * Warning: must be a base of 2 (& operation used) and can not be zero !
67 static LIST_HEAD(cfhsi_list
);
69 static void cfhsi_inactivity_tout(struct timer_list
*t
)
71 struct cfhsi
*cfhsi
= from_timer(cfhsi
, t
, inactivity_timer
);
73 netdev_dbg(cfhsi
->ndev
, "%s.\n",
76 /* Schedule power down work queue. */
77 if (!test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))
78 queue_work(cfhsi
->wq
, &cfhsi
->wake_down_work
);
81 static void cfhsi_update_aggregation_stats(struct cfhsi
*cfhsi
,
82 const struct sk_buff
*skb
,
85 struct caif_payload_info
*info
;
88 info
= (struct caif_payload_info
*)&skb
->cb
;
89 hpad
= 1 + PAD_POW2((info
->hdr_len
+ 1), cfhsi
->cfg
.head_align
);
90 tpad
= PAD_POW2((skb
->len
+ hpad
), cfhsi
->cfg
.tail_align
);
91 len
= skb
->len
+ hpad
+ tpad
;
94 cfhsi
->aggregation_len
+= len
;
95 else if (direction
< 0)
96 cfhsi
->aggregation_len
-= len
;
99 static bool cfhsi_can_send_aggregate(struct cfhsi
*cfhsi
)
103 if (cfhsi
->cfg
.aggregation_timeout
== 0)
106 for (i
= 0; i
< CFHSI_PRIO_BEBK
; ++i
) {
107 if (cfhsi
->qhead
[i
].qlen
)
111 /* TODO: Use aggregation_len instead */
112 if (cfhsi
->qhead
[CFHSI_PRIO_BEBK
].qlen
>= CFHSI_MAX_PKTS
)
118 static struct sk_buff
*cfhsi_dequeue(struct cfhsi
*cfhsi
)
123 for (i
= 0; i
< CFHSI_PRIO_LAST
; ++i
) {
124 skb
= skb_dequeue(&cfhsi
->qhead
[i
]);
132 static int cfhsi_tx_queue_len(struct cfhsi
*cfhsi
)
135 for (i
= 0; i
< CFHSI_PRIO_LAST
; ++i
)
136 len
+= skb_queue_len(&cfhsi
->qhead
[i
]);
140 static void cfhsi_abort_tx(struct cfhsi
*cfhsi
)
145 spin_lock_bh(&cfhsi
->lock
);
146 skb
= cfhsi_dequeue(cfhsi
);
150 cfhsi
->ndev
->stats
.tx_errors
++;
151 cfhsi
->ndev
->stats
.tx_dropped
++;
152 cfhsi_update_aggregation_stats(cfhsi
, skb
, -1);
153 spin_unlock_bh(&cfhsi
->lock
);
156 cfhsi
->tx_state
= CFHSI_TX_STATE_IDLE
;
157 if (!test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))
158 mod_timer(&cfhsi
->inactivity_timer
,
159 jiffies
+ cfhsi
->cfg
.inactivity_timeout
);
160 spin_unlock_bh(&cfhsi
->lock
);
163 static int cfhsi_flush_fifo(struct cfhsi
*cfhsi
)
165 char buffer
[32]; /* Any reasonable value */
166 size_t fifo_occupancy
;
169 netdev_dbg(cfhsi
->ndev
, "%s.\n",
173 ret
= cfhsi
->ops
->cfhsi_fifo_occupancy(cfhsi
->ops
,
176 netdev_warn(cfhsi
->ndev
,
177 "%s: can't get FIFO occupancy: %d.\n",
180 } else if (!fifo_occupancy
)
181 /* No more data, exitting normally */
184 fifo_occupancy
= min(sizeof(buffer
), fifo_occupancy
);
185 set_bit(CFHSI_FLUSH_FIFO
, &cfhsi
->bits
);
186 ret
= cfhsi
->ops
->cfhsi_rx(buffer
, fifo_occupancy
,
189 clear_bit(CFHSI_FLUSH_FIFO
, &cfhsi
->bits
);
190 netdev_warn(cfhsi
->ndev
,
191 "%s: can't read data: %d.\n",
197 ret
= wait_event_interruptible_timeout(cfhsi
->flush_fifo_wait
,
198 !test_bit(CFHSI_FLUSH_FIFO
, &cfhsi
->bits
), ret
);
201 netdev_warn(cfhsi
->ndev
,
202 "%s: can't wait for flush complete: %d.\n",
207 netdev_warn(cfhsi
->ndev
,
208 "%s: timeout waiting for flush complete.\n",
217 static int cfhsi_tx_frm(struct cfhsi_desc
*desc
, struct cfhsi
*cfhsi
)
222 u8
*pfrm
= desc
->emb_frm
+ CFHSI_MAX_EMB_FRM_SZ
;
224 skb
= cfhsi_dequeue(cfhsi
);
231 /* Check if we can embed a CAIF frame. */
232 if (skb
->len
< CFHSI_MAX_EMB_FRM_SZ
) {
233 struct caif_payload_info
*info
;
237 /* Calculate needed head alignment and tail alignment. */
238 info
= (struct caif_payload_info
*)&skb
->cb
;
240 hpad
= 1 + PAD_POW2((info
->hdr_len
+ 1), cfhsi
->cfg
.head_align
);
241 tpad
= PAD_POW2((skb
->len
+ hpad
), cfhsi
->cfg
.tail_align
);
243 /* Check if frame still fits with added alignment. */
244 if ((skb
->len
+ hpad
+ tpad
) <= CFHSI_MAX_EMB_FRM_SZ
) {
245 u8
*pemb
= desc
->emb_frm
;
246 desc
->offset
= CFHSI_DESC_SHORT_SZ
;
247 *pemb
= (u8
)(hpad
- 1);
250 /* Update network statistics. */
251 spin_lock_bh(&cfhsi
->lock
);
252 cfhsi
->ndev
->stats
.tx_packets
++;
253 cfhsi
->ndev
->stats
.tx_bytes
+= skb
->len
;
254 cfhsi_update_aggregation_stats(cfhsi
, skb
, -1);
255 spin_unlock_bh(&cfhsi
->lock
);
257 /* Copy in embedded CAIF frame. */
258 skb_copy_bits(skb
, 0, pemb
, skb
->len
);
260 /* Consume the SKB */
266 /* Create payload CAIF frames. */
267 while (nfrms
< CFHSI_MAX_PKTS
) {
268 struct caif_payload_info
*info
;
273 skb
= cfhsi_dequeue(cfhsi
);
278 /* Calculate needed head alignment and tail alignment. */
279 info
= (struct caif_payload_info
*)&skb
->cb
;
281 hpad
= 1 + PAD_POW2((info
->hdr_len
+ 1), cfhsi
->cfg
.head_align
);
282 tpad
= PAD_POW2((skb
->len
+ hpad
), cfhsi
->cfg
.tail_align
);
284 /* Fill in CAIF frame length in descriptor. */
285 desc
->cffrm_len
[nfrms
] = hpad
+ skb
->len
+ tpad
;
287 /* Fill head padding information. */
288 *pfrm
= (u8
)(hpad
- 1);
291 /* Update network statistics. */
292 spin_lock_bh(&cfhsi
->lock
);
293 cfhsi
->ndev
->stats
.tx_packets
++;
294 cfhsi
->ndev
->stats
.tx_bytes
+= skb
->len
;
295 cfhsi_update_aggregation_stats(cfhsi
, skb
, -1);
296 spin_unlock_bh(&cfhsi
->lock
);
298 /* Copy in CAIF frame. */
299 skb_copy_bits(skb
, 0, pfrm
, skb
->len
);
301 /* Update payload length. */
302 pld_len
+= desc
->cffrm_len
[nfrms
];
304 /* Update frame pointer. */
305 pfrm
+= skb
->len
+ tpad
;
307 /* Consume the SKB */
311 /* Update number of frames. */
315 /* Unused length fields should be zero-filled (according to SPEC). */
316 while (nfrms
< CFHSI_MAX_PKTS
) {
317 desc
->cffrm_len
[nfrms
] = 0x0000;
321 /* Check if we can piggy-back another descriptor. */
322 if (cfhsi_can_send_aggregate(cfhsi
))
323 desc
->header
|= CFHSI_PIGGY_DESC
;
325 desc
->header
&= ~CFHSI_PIGGY_DESC
;
327 return CFHSI_DESC_SZ
+ pld_len
;
330 static void cfhsi_start_tx(struct cfhsi
*cfhsi
)
332 struct cfhsi_desc
*desc
= (struct cfhsi_desc
*)cfhsi
->tx_buf
;
335 netdev_dbg(cfhsi
->ndev
, "%s.\n", __func__
);
337 if (test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))
341 /* Create HSI frame. */
342 len
= cfhsi_tx_frm(desc
, cfhsi
);
344 spin_lock_bh(&cfhsi
->lock
);
345 if (unlikely(cfhsi_tx_queue_len(cfhsi
))) {
346 spin_unlock_bh(&cfhsi
->lock
);
350 cfhsi
->tx_state
= CFHSI_TX_STATE_IDLE
;
351 /* Start inactivity timer. */
352 mod_timer(&cfhsi
->inactivity_timer
,
353 jiffies
+ cfhsi
->cfg
.inactivity_timeout
);
354 spin_unlock_bh(&cfhsi
->lock
);
358 /* Set up new transfer. */
359 res
= cfhsi
->ops
->cfhsi_tx(cfhsi
->tx_buf
, len
, cfhsi
->ops
);
360 if (WARN_ON(res
< 0))
361 netdev_err(cfhsi
->ndev
, "%s: TX error %d.\n",
366 static void cfhsi_tx_done(struct cfhsi
*cfhsi
)
368 netdev_dbg(cfhsi
->ndev
, "%s.\n", __func__
);
370 if (test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))
374 * Send flow on if flow off has been previously signalled
375 * and number of packets is below low water mark.
377 spin_lock_bh(&cfhsi
->lock
);
378 if (cfhsi
->flow_off_sent
&&
379 cfhsi_tx_queue_len(cfhsi
) <= cfhsi
->cfg
.q_low_mark
&&
380 cfhsi
->cfdev
.flowctrl
) {
382 cfhsi
->flow_off_sent
= 0;
383 cfhsi
->cfdev
.flowctrl(cfhsi
->ndev
, ON
);
386 if (cfhsi_can_send_aggregate(cfhsi
)) {
387 spin_unlock_bh(&cfhsi
->lock
);
388 cfhsi_start_tx(cfhsi
);
390 mod_timer(&cfhsi
->aggregation_timer
,
391 jiffies
+ cfhsi
->cfg
.aggregation_timeout
);
392 spin_unlock_bh(&cfhsi
->lock
);
398 static void cfhsi_tx_done_cb(struct cfhsi_cb_ops
*cb_ops
)
402 cfhsi
= container_of(cb_ops
, struct cfhsi
, cb_ops
);
403 netdev_dbg(cfhsi
->ndev
, "%s.\n",
406 if (test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))
408 cfhsi_tx_done(cfhsi
);
411 static int cfhsi_rx_desc(struct cfhsi_desc
*desc
, struct cfhsi
*cfhsi
)
418 if ((desc
->header
& ~CFHSI_PIGGY_DESC
) ||
419 (desc
->offset
> CFHSI_MAX_EMB_FRM_SZ
)) {
420 netdev_err(cfhsi
->ndev
, "%s: Invalid descriptor.\n",
425 /* Check for embedded CAIF frame. */
429 pfrm
= ((u8
*)desc
) + desc
->offset
;
431 /* Remove offset padding. */
434 /* Read length of CAIF frame (little endian). */
436 len
|= ((*(pfrm
+1)) << 8) & 0xFF00;
437 len
+= 2; /* Add FCS fields. */
439 /* Sanity check length of CAIF frame. */
440 if (unlikely(len
> CFHSI_MAX_CAIF_FRAME_SZ
)) {
441 netdev_err(cfhsi
->ndev
, "%s: Invalid length.\n",
446 /* Allocate SKB (OK even in IRQ context). */
447 skb
= alloc_skb(len
+ 1, GFP_ATOMIC
);
449 netdev_err(cfhsi
->ndev
, "%s: Out of memory !\n",
453 caif_assert(skb
!= NULL
);
455 skb_put_data(skb
, pfrm
, len
);
457 skb
->protocol
= htons(ETH_P_CAIF
);
458 skb_reset_mac_header(skb
);
459 skb
->dev
= cfhsi
->ndev
;
462 * We are in a callback handler and
463 * unfortunately we don't know what context we're
471 /* Update network statistics. */
472 cfhsi
->ndev
->stats
.rx_packets
++;
473 cfhsi
->ndev
->stats
.rx_bytes
+= len
;
476 /* Calculate transfer length. */
477 plen
= desc
->cffrm_len
;
478 while (nfrms
< CFHSI_MAX_PKTS
&& *plen
) {
484 /* Check for piggy-backed descriptor. */
485 if (desc
->header
& CFHSI_PIGGY_DESC
)
486 xfer_sz
+= CFHSI_DESC_SZ
;
488 if ((xfer_sz
% 4) || (xfer_sz
> (CFHSI_BUF_SZ_RX
- CFHSI_DESC_SZ
))) {
489 netdev_err(cfhsi
->ndev
,
490 "%s: Invalid payload len: %d, ignored.\n",
497 static int cfhsi_rx_desc_len(struct cfhsi_desc
*desc
)
503 if ((desc
->header
& ~CFHSI_PIGGY_DESC
) ||
504 (desc
->offset
> CFHSI_MAX_EMB_FRM_SZ
)) {
506 pr_err("Invalid descriptor. %x %x\n", desc
->header
,
511 /* Calculate transfer length. */
512 plen
= desc
->cffrm_len
;
513 while (nfrms
< CFHSI_MAX_PKTS
&& *plen
) {
520 pr_err("Invalid payload len: %d, ignored.\n", xfer_sz
);
526 static int cfhsi_rx_pld(struct cfhsi_desc
*desc
, struct cfhsi
*cfhsi
)
533 /* Sanity check header and offset. */
534 if (WARN_ON((desc
->header
& ~CFHSI_PIGGY_DESC
) ||
535 (desc
->offset
> CFHSI_MAX_EMB_FRM_SZ
))) {
536 netdev_err(cfhsi
->ndev
, "%s: Invalid descriptor.\n",
541 /* Set frame pointer to start of payload. */
542 pfrm
= desc
->emb_frm
+ CFHSI_MAX_EMB_FRM_SZ
;
543 plen
= desc
->cffrm_len
;
545 /* Skip already processed frames. */
546 while (nfrms
< cfhsi
->rx_state
.nfrms
) {
554 while (nfrms
< CFHSI_MAX_PKTS
&& *plen
) {
559 /* CAIF frame starts after head padding. */
560 pcffrm
= pfrm
+ *pfrm
+ 1;
562 /* Read length of CAIF frame (little endian). */
564 len
|= ((*(pcffrm
+ 1)) << 8) & 0xFF00;
565 len
+= 2; /* Add FCS fields. */
567 /* Sanity check length of CAIF frames. */
568 if (unlikely(len
> CFHSI_MAX_CAIF_FRAME_SZ
)) {
569 netdev_err(cfhsi
->ndev
, "%s: Invalid length.\n",
574 /* Allocate SKB (OK even in IRQ context). */
575 skb
= alloc_skb(len
+ 1, GFP_ATOMIC
);
577 netdev_err(cfhsi
->ndev
, "%s: Out of memory !\n",
579 cfhsi
->rx_state
.nfrms
= nfrms
;
582 caif_assert(skb
!= NULL
);
584 skb_put_data(skb
, pcffrm
, len
);
586 skb
->protocol
= htons(ETH_P_CAIF
);
587 skb_reset_mac_header(skb
);
588 skb
->dev
= cfhsi
->ndev
;
591 * We're called in callback from HSI
592 * and don't know the context we're running in.
599 /* Update network statistics. */
600 cfhsi
->ndev
->stats
.rx_packets
++;
601 cfhsi
->ndev
->stats
.rx_bytes
+= len
;
612 static void cfhsi_rx_done(struct cfhsi
*cfhsi
)
615 int desc_pld_len
= 0, rx_len
, rx_state
;
616 struct cfhsi_desc
*desc
= NULL
;
618 struct cfhsi_desc
*piggy_desc
= NULL
;
620 desc
= (struct cfhsi_desc
*)cfhsi
->rx_buf
;
622 netdev_dbg(cfhsi
->ndev
, "%s\n", __func__
);
624 if (test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))
627 /* Update inactivity timer if pending. */
628 spin_lock_bh(&cfhsi
->lock
);
629 mod_timer_pending(&cfhsi
->inactivity_timer
,
630 jiffies
+ cfhsi
->cfg
.inactivity_timeout
);
631 spin_unlock_bh(&cfhsi
->lock
);
633 if (cfhsi
->rx_state
.state
== CFHSI_RX_STATE_DESC
) {
634 desc_pld_len
= cfhsi_rx_desc_len(desc
);
636 if (desc_pld_len
< 0)
639 rx_buf
= cfhsi
->rx_buf
;
640 rx_len
= desc_pld_len
;
641 if (desc_pld_len
> 0 && (desc
->header
& CFHSI_PIGGY_DESC
))
642 rx_len
+= CFHSI_DESC_SZ
;
643 if (desc_pld_len
== 0)
644 rx_buf
= cfhsi
->rx_flip_buf
;
646 rx_buf
= cfhsi
->rx_flip_buf
;
648 rx_len
= CFHSI_DESC_SZ
;
649 if (cfhsi
->rx_state
.pld_len
> 0 &&
650 (desc
->header
& CFHSI_PIGGY_DESC
)) {
652 piggy_desc
= (struct cfhsi_desc
*)
653 (desc
->emb_frm
+ CFHSI_MAX_EMB_FRM_SZ
+
654 cfhsi
->rx_state
.pld_len
);
656 cfhsi
->rx_state
.piggy_desc
= true;
658 /* Extract payload len from piggy-backed descriptor. */
659 desc_pld_len
= cfhsi_rx_desc_len(piggy_desc
);
660 if (desc_pld_len
< 0)
663 if (desc_pld_len
> 0) {
664 rx_len
= desc_pld_len
;
665 if (piggy_desc
->header
& CFHSI_PIGGY_DESC
)
666 rx_len
+= CFHSI_DESC_SZ
;
670 * Copy needed information from the piggy-backed
671 * descriptor to the descriptor in the start.
673 memcpy(rx_buf
, (u8
*)piggy_desc
,
674 CFHSI_DESC_SHORT_SZ
);
679 rx_state
= CFHSI_RX_STATE_PAYLOAD
;
680 rx_ptr
= rx_buf
+ CFHSI_DESC_SZ
;
682 rx_state
= CFHSI_RX_STATE_DESC
;
684 rx_len
= CFHSI_DESC_SZ
;
687 /* Initiate next read */
688 if (test_bit(CFHSI_AWAKE
, &cfhsi
->bits
)) {
689 /* Set up new transfer. */
690 netdev_dbg(cfhsi
->ndev
, "%s: Start RX.\n",
693 res
= cfhsi
->ops
->cfhsi_rx(rx_ptr
, rx_len
,
695 if (WARN_ON(res
< 0)) {
696 netdev_err(cfhsi
->ndev
, "%s: RX error %d.\n",
698 cfhsi
->ndev
->stats
.rx_errors
++;
699 cfhsi
->ndev
->stats
.rx_dropped
++;
703 if (cfhsi
->rx_state
.state
== CFHSI_RX_STATE_DESC
) {
704 /* Extract payload from descriptor */
705 if (cfhsi_rx_desc(desc
, cfhsi
) < 0)
708 /* Extract payload */
709 if (cfhsi_rx_pld(desc
, cfhsi
) < 0)
712 /* Extract any payload in piggyback descriptor. */
713 if (cfhsi_rx_desc(piggy_desc
, cfhsi
) < 0)
715 /* Mark no embedded frame after extracting it */
716 piggy_desc
->offset
= 0;
720 /* Update state info */
721 memset(&cfhsi
->rx_state
, 0, sizeof(cfhsi
->rx_state
));
722 cfhsi
->rx_state
.state
= rx_state
;
723 cfhsi
->rx_ptr
= rx_ptr
;
724 cfhsi
->rx_len
= rx_len
;
725 cfhsi
->rx_state
.pld_len
= desc_pld_len
;
726 cfhsi
->rx_state
.piggy_desc
= desc
->header
& CFHSI_PIGGY_DESC
;
728 if (rx_buf
!= cfhsi
->rx_buf
)
729 swap(cfhsi
->rx_buf
, cfhsi
->rx_flip_buf
);
733 netdev_err(cfhsi
->ndev
, "%s: Out of sync.\n", __func__
);
734 print_hex_dump_bytes("--> ", DUMP_PREFIX_NONE
,
735 cfhsi
->rx_buf
, CFHSI_DESC_SZ
);
736 schedule_work(&cfhsi
->out_of_sync_work
);
739 static void cfhsi_rx_slowpath(struct timer_list
*t
)
741 struct cfhsi
*cfhsi
= from_timer(cfhsi
, t
, rx_slowpath_timer
);
743 netdev_dbg(cfhsi
->ndev
, "%s.\n",
746 cfhsi_rx_done(cfhsi
);
749 static void cfhsi_rx_done_cb(struct cfhsi_cb_ops
*cb_ops
)
753 cfhsi
= container_of(cb_ops
, struct cfhsi
, cb_ops
);
754 netdev_dbg(cfhsi
->ndev
, "%s.\n",
757 if (test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))
760 if (test_and_clear_bit(CFHSI_FLUSH_FIFO
, &cfhsi
->bits
))
761 wake_up_interruptible(&cfhsi
->flush_fifo_wait
);
763 cfhsi_rx_done(cfhsi
);
766 static void cfhsi_wake_up(struct work_struct
*work
)
768 struct cfhsi
*cfhsi
= NULL
;
773 cfhsi
= container_of(work
, struct cfhsi
, wake_up_work
);
775 if (test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))
778 if (unlikely(test_bit(CFHSI_AWAKE
, &cfhsi
->bits
))) {
779 /* It happenes when wakeup is requested by
780 * both ends at the same time. */
781 clear_bit(CFHSI_WAKE_UP
, &cfhsi
->bits
);
782 clear_bit(CFHSI_WAKE_UP_ACK
, &cfhsi
->bits
);
786 /* Activate wake line. */
787 cfhsi
->ops
->cfhsi_wake_up(cfhsi
->ops
);
789 netdev_dbg(cfhsi
->ndev
, "%s: Start waiting.\n",
792 /* Wait for acknowledge. */
793 ret
= CFHSI_WAKE_TOUT
;
794 ret
= wait_event_interruptible_timeout(cfhsi
->wake_up_wait
,
795 test_and_clear_bit(CFHSI_WAKE_UP_ACK
,
797 if (unlikely(ret
< 0)) {
798 /* Interrupted by signal. */
799 netdev_err(cfhsi
->ndev
, "%s: Signalled: %ld.\n",
802 clear_bit(CFHSI_WAKE_UP
, &cfhsi
->bits
);
803 cfhsi
->ops
->cfhsi_wake_down(cfhsi
->ops
);
806 bool ca_wake
= false;
807 size_t fifo_occupancy
= 0;
810 netdev_dbg(cfhsi
->ndev
, "%s: Timeout.\n",
813 /* Check FIFO to check if modem has sent something. */
814 WARN_ON(cfhsi
->ops
->cfhsi_fifo_occupancy(cfhsi
->ops
,
817 netdev_dbg(cfhsi
->ndev
, "%s: Bytes in FIFO: %u.\n",
818 __func__
, (unsigned) fifo_occupancy
);
820 /* Check if we misssed the interrupt. */
821 WARN_ON(cfhsi
->ops
->cfhsi_get_peer_wake(cfhsi
->ops
,
825 netdev_err(cfhsi
->ndev
, "%s: CA Wake missed !.\n",
828 /* Clear the CFHSI_WAKE_UP_ACK bit to prevent race. */
829 clear_bit(CFHSI_WAKE_UP_ACK
, &cfhsi
->bits
);
831 /* Continue execution. */
835 clear_bit(CFHSI_WAKE_UP
, &cfhsi
->bits
);
836 cfhsi
->ops
->cfhsi_wake_down(cfhsi
->ops
);
840 netdev_dbg(cfhsi
->ndev
, "%s: Woken.\n",
843 /* Clear power up bit. */
844 set_bit(CFHSI_AWAKE
, &cfhsi
->bits
);
845 clear_bit(CFHSI_WAKE_UP
, &cfhsi
->bits
);
847 /* Resume read operation. */
848 netdev_dbg(cfhsi
->ndev
, "%s: Start RX.\n", __func__
);
849 res
= cfhsi
->ops
->cfhsi_rx(cfhsi
->rx_ptr
, cfhsi
->rx_len
, cfhsi
->ops
);
851 if (WARN_ON(res
< 0))
852 netdev_err(cfhsi
->ndev
, "%s: RX err %d.\n", __func__
, res
);
854 /* Clear power up acknowledment. */
855 clear_bit(CFHSI_WAKE_UP_ACK
, &cfhsi
->bits
);
857 spin_lock_bh(&cfhsi
->lock
);
859 /* Resume transmit if queues are not empty. */
860 if (!cfhsi_tx_queue_len(cfhsi
)) {
861 netdev_dbg(cfhsi
->ndev
, "%s: Peer wake, start timer.\n",
863 /* Start inactivity timer. */
864 mod_timer(&cfhsi
->inactivity_timer
,
865 jiffies
+ cfhsi
->cfg
.inactivity_timeout
);
866 spin_unlock_bh(&cfhsi
->lock
);
870 netdev_dbg(cfhsi
->ndev
, "%s: Host wake.\n",
873 spin_unlock_bh(&cfhsi
->lock
);
875 /* Create HSI frame. */
876 len
= cfhsi_tx_frm((struct cfhsi_desc
*)cfhsi
->tx_buf
, cfhsi
);
878 if (likely(len
> 0)) {
879 /* Set up new transfer. */
880 res
= cfhsi
->ops
->cfhsi_tx(cfhsi
->tx_buf
, len
, cfhsi
->ops
);
881 if (WARN_ON(res
< 0)) {
882 netdev_err(cfhsi
->ndev
, "%s: TX error %d.\n",
884 cfhsi_abort_tx(cfhsi
);
887 netdev_err(cfhsi
->ndev
,
888 "%s: Failed to create HSI frame: %d.\n",
893 static void cfhsi_wake_down(struct work_struct
*work
)
896 struct cfhsi
*cfhsi
= NULL
;
897 size_t fifo_occupancy
= 0;
898 int retry
= CFHSI_WAKE_TOUT
;
900 cfhsi
= container_of(work
, struct cfhsi
, wake_down_work
);
901 netdev_dbg(cfhsi
->ndev
, "%s.\n", __func__
);
903 if (test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))
906 /* Deactivate wake line. */
907 cfhsi
->ops
->cfhsi_wake_down(cfhsi
->ops
);
909 /* Wait for acknowledge. */
910 ret
= CFHSI_WAKE_TOUT
;
911 ret
= wait_event_interruptible_timeout(cfhsi
->wake_down_wait
,
912 test_and_clear_bit(CFHSI_WAKE_DOWN_ACK
,
915 /* Interrupted by signal. */
916 netdev_err(cfhsi
->ndev
, "%s: Signalled: %ld.\n",
923 netdev_err(cfhsi
->ndev
, "%s: Timeout.\n", __func__
);
925 /* Check if we misssed the interrupt. */
926 WARN_ON(cfhsi
->ops
->cfhsi_get_peer_wake(cfhsi
->ops
,
929 netdev_err(cfhsi
->ndev
, "%s: CA Wake missed !.\n",
933 /* Check FIFO occupancy. */
935 WARN_ON(cfhsi
->ops
->cfhsi_fifo_occupancy(cfhsi
->ops
,
941 set_current_state(TASK_INTERRUPTIBLE
);
947 netdev_err(cfhsi
->ndev
, "%s: FIFO Timeout.\n", __func__
);
949 /* Clear AWAKE condition. */
950 clear_bit(CFHSI_AWAKE
, &cfhsi
->bits
);
952 /* Cancel pending RX requests. */
953 cfhsi
->ops
->cfhsi_rx_cancel(cfhsi
->ops
);
956 static void cfhsi_out_of_sync(struct work_struct
*work
)
958 struct cfhsi
*cfhsi
= NULL
;
960 cfhsi
= container_of(work
, struct cfhsi
, out_of_sync_work
);
963 dev_close(cfhsi
->ndev
);
967 static void cfhsi_wake_up_cb(struct cfhsi_cb_ops
*cb_ops
)
969 struct cfhsi
*cfhsi
= NULL
;
971 cfhsi
= container_of(cb_ops
, struct cfhsi
, cb_ops
);
972 netdev_dbg(cfhsi
->ndev
, "%s.\n",
975 set_bit(CFHSI_WAKE_UP_ACK
, &cfhsi
->bits
);
976 wake_up_interruptible(&cfhsi
->wake_up_wait
);
978 if (test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))
981 /* Schedule wake up work queue if the peer initiates. */
982 if (!test_and_set_bit(CFHSI_WAKE_UP
, &cfhsi
->bits
))
983 queue_work(cfhsi
->wq
, &cfhsi
->wake_up_work
);
986 static void cfhsi_wake_down_cb(struct cfhsi_cb_ops
*cb_ops
)
988 struct cfhsi
*cfhsi
= NULL
;
990 cfhsi
= container_of(cb_ops
, struct cfhsi
, cb_ops
);
991 netdev_dbg(cfhsi
->ndev
, "%s.\n",
994 /* Initiating low power is only permitted by the host (us). */
995 set_bit(CFHSI_WAKE_DOWN_ACK
, &cfhsi
->bits
);
996 wake_up_interruptible(&cfhsi
->wake_down_wait
);
999 static void cfhsi_aggregation_tout(struct timer_list
*t
)
1001 struct cfhsi
*cfhsi
= from_timer(cfhsi
, t
, aggregation_timer
);
1003 netdev_dbg(cfhsi
->ndev
, "%s.\n",
1006 cfhsi_start_tx(cfhsi
);
1009 static int cfhsi_xmit(struct sk_buff
*skb
, struct net_device
*dev
)
1011 struct cfhsi
*cfhsi
= NULL
;
1019 cfhsi
= netdev_priv(dev
);
1021 switch (skb
->priority
) {
1022 case TC_PRIO_BESTEFFORT
:
1023 case TC_PRIO_FILLER
:
1025 prio
= CFHSI_PRIO_BEBK
;
1027 case TC_PRIO_INTERACTIVE_BULK
:
1028 prio
= CFHSI_PRIO_VI
;
1030 case TC_PRIO_INTERACTIVE
:
1031 prio
= CFHSI_PRIO_VO
;
1033 case TC_PRIO_CONTROL
:
1035 prio
= CFHSI_PRIO_CTL
;
1039 spin_lock_bh(&cfhsi
->lock
);
1041 /* Update aggregation statistics */
1042 cfhsi_update_aggregation_stats(cfhsi
, skb
, 1);
1045 skb_queue_tail(&cfhsi
->qhead
[prio
], skb
);
1047 /* Sanity check; xmit should not be called after unregister_netdev */
1048 if (WARN_ON(test_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
))) {
1049 spin_unlock_bh(&cfhsi
->lock
);
1050 cfhsi_abort_tx(cfhsi
);
1054 /* Send flow off if number of packets is above high water mark. */
1055 if (!cfhsi
->flow_off_sent
&&
1056 cfhsi_tx_queue_len(cfhsi
) > cfhsi
->cfg
.q_high_mark
&&
1057 cfhsi
->cfdev
.flowctrl
) {
1058 cfhsi
->flow_off_sent
= 1;
1059 cfhsi
->cfdev
.flowctrl(cfhsi
->ndev
, OFF
);
1062 if (cfhsi
->tx_state
== CFHSI_TX_STATE_IDLE
) {
1063 cfhsi
->tx_state
= CFHSI_TX_STATE_XFER
;
1068 /* Send aggregate if it is possible */
1069 bool aggregate_ready
=
1070 cfhsi_can_send_aggregate(cfhsi
) &&
1071 del_timer(&cfhsi
->aggregation_timer
) > 0;
1072 spin_unlock_bh(&cfhsi
->lock
);
1073 if (aggregate_ready
)
1074 cfhsi_start_tx(cfhsi
);
1078 /* Delete inactivity timer if started. */
1079 timer_active
= del_timer_sync(&cfhsi
->inactivity_timer
);
1081 spin_unlock_bh(&cfhsi
->lock
);
1084 struct cfhsi_desc
*desc
= (struct cfhsi_desc
*)cfhsi
->tx_buf
;
1088 /* Create HSI frame. */
1089 len
= cfhsi_tx_frm(desc
, cfhsi
);
1092 /* Set up new transfer. */
1093 res
= cfhsi
->ops
->cfhsi_tx(cfhsi
->tx_buf
, len
, cfhsi
->ops
);
1094 if (WARN_ON(res
< 0)) {
1095 netdev_err(cfhsi
->ndev
, "%s: TX error %d.\n",
1097 cfhsi_abort_tx(cfhsi
);
1100 /* Schedule wake up work queue if the we initiate. */
1101 if (!test_and_set_bit(CFHSI_WAKE_UP
, &cfhsi
->bits
))
1102 queue_work(cfhsi
->wq
, &cfhsi
->wake_up_work
);
1108 static const struct net_device_ops cfhsi_netdevops
;
1110 static void cfhsi_setup(struct net_device
*dev
)
1113 struct cfhsi
*cfhsi
= netdev_priv(dev
);
1115 dev
->type
= ARPHRD_CAIF
;
1116 dev
->flags
= IFF_POINTOPOINT
| IFF_NOARP
;
1117 dev
->mtu
= CFHSI_MAX_CAIF_FRAME_SZ
;
1118 dev
->priv_flags
|= IFF_NO_QUEUE
;
1119 dev
->needs_free_netdev
= true;
1120 dev
->netdev_ops
= &cfhsi_netdevops
;
1121 for (i
= 0; i
< CFHSI_PRIO_LAST
; ++i
)
1122 skb_queue_head_init(&cfhsi
->qhead
[i
]);
1123 cfhsi
->cfdev
.link_select
= CAIF_LINK_HIGH_BANDW
;
1124 cfhsi
->cfdev
.use_frag
= false;
1125 cfhsi
->cfdev
.use_stx
= false;
1126 cfhsi
->cfdev
.use_fcs
= false;
1128 cfhsi
->cfg
= hsi_default_config
;
1131 static int cfhsi_open(struct net_device
*ndev
)
1133 struct cfhsi
*cfhsi
= netdev_priv(ndev
);
1136 clear_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
);
1138 /* Initialize state vaiables. */
1139 cfhsi
->tx_state
= CFHSI_TX_STATE_IDLE
;
1140 cfhsi
->rx_state
.state
= CFHSI_RX_STATE_DESC
;
1143 cfhsi
->flow_off_sent
= 0;
1146 * Allocate a TX buffer with the size of a HSI packet descriptors
1147 * and the necessary room for CAIF payload frames.
1149 cfhsi
->tx_buf
= kzalloc(CFHSI_BUF_SZ_TX
, GFP_KERNEL
);
1150 if (!cfhsi
->tx_buf
) {
1156 * Allocate a RX buffer with the size of two HSI packet descriptors and
1157 * the necessary room for CAIF payload frames.
1159 cfhsi
->rx_buf
= kzalloc(CFHSI_BUF_SZ_RX
, GFP_KERNEL
);
1160 if (!cfhsi
->rx_buf
) {
1165 cfhsi
->rx_flip_buf
= kzalloc(CFHSI_BUF_SZ_RX
, GFP_KERNEL
);
1166 if (!cfhsi
->rx_flip_buf
) {
1168 goto err_alloc_rx_flip
;
1171 /* Initialize aggregation timeout */
1172 cfhsi
->cfg
.aggregation_timeout
= hsi_default_config
.aggregation_timeout
;
1174 /* Initialize recieve vaiables. */
1175 cfhsi
->rx_ptr
= cfhsi
->rx_buf
;
1176 cfhsi
->rx_len
= CFHSI_DESC_SZ
;
1178 /* Initialize spin locks. */
1179 spin_lock_init(&cfhsi
->lock
);
1181 /* Set up the driver. */
1182 cfhsi
->cb_ops
.tx_done_cb
= cfhsi_tx_done_cb
;
1183 cfhsi
->cb_ops
.rx_done_cb
= cfhsi_rx_done_cb
;
1184 cfhsi
->cb_ops
.wake_up_cb
= cfhsi_wake_up_cb
;
1185 cfhsi
->cb_ops
.wake_down_cb
= cfhsi_wake_down_cb
;
1187 /* Initialize the work queues. */
1188 INIT_WORK(&cfhsi
->wake_up_work
, cfhsi_wake_up
);
1189 INIT_WORK(&cfhsi
->wake_down_work
, cfhsi_wake_down
);
1190 INIT_WORK(&cfhsi
->out_of_sync_work
, cfhsi_out_of_sync
);
1192 /* Clear all bit fields. */
1193 clear_bit(CFHSI_WAKE_UP_ACK
, &cfhsi
->bits
);
1194 clear_bit(CFHSI_WAKE_DOWN_ACK
, &cfhsi
->bits
);
1195 clear_bit(CFHSI_WAKE_UP
, &cfhsi
->bits
);
1196 clear_bit(CFHSI_AWAKE
, &cfhsi
->bits
);
1198 /* Create work thread. */
1199 cfhsi
->wq
= alloc_ordered_workqueue(cfhsi
->ndev
->name
, WQ_MEM_RECLAIM
);
1201 netdev_err(cfhsi
->ndev
, "%s: Failed to create work queue.\n",
1207 /* Initialize wait queues. */
1208 init_waitqueue_head(&cfhsi
->wake_up_wait
);
1209 init_waitqueue_head(&cfhsi
->wake_down_wait
);
1210 init_waitqueue_head(&cfhsi
->flush_fifo_wait
);
1212 /* Setup the inactivity timer. */
1213 timer_setup(&cfhsi
->inactivity_timer
, cfhsi_inactivity_tout
, 0);
1214 /* Setup the slowpath RX timer. */
1215 timer_setup(&cfhsi
->rx_slowpath_timer
, cfhsi_rx_slowpath
, 0);
1216 /* Setup the aggregation timer. */
1217 timer_setup(&cfhsi
->aggregation_timer
, cfhsi_aggregation_tout
, 0);
1219 /* Activate HSI interface. */
1220 res
= cfhsi
->ops
->cfhsi_up(cfhsi
->ops
);
1222 netdev_err(cfhsi
->ndev
,
1223 "%s: can't activate HSI interface: %d.\n",
1229 res
= cfhsi_flush_fifo(cfhsi
);
1231 netdev_err(cfhsi
->ndev
, "%s: Can't flush FIFO: %d.\n",
1238 cfhsi
->ops
->cfhsi_down(cfhsi
->ops
);
1240 destroy_workqueue(cfhsi
->wq
);
1242 kfree(cfhsi
->rx_flip_buf
);
1244 kfree(cfhsi
->rx_buf
);
1246 kfree(cfhsi
->tx_buf
);
1251 static int cfhsi_close(struct net_device
*ndev
)
1253 struct cfhsi
*cfhsi
= netdev_priv(ndev
);
1254 u8
*tx_buf
, *rx_buf
, *flip_buf
;
1256 /* going to shutdown driver */
1257 set_bit(CFHSI_SHUTDOWN
, &cfhsi
->bits
);
1259 /* Delete timers if pending */
1260 del_timer_sync(&cfhsi
->inactivity_timer
);
1261 del_timer_sync(&cfhsi
->rx_slowpath_timer
);
1262 del_timer_sync(&cfhsi
->aggregation_timer
);
1264 /* Cancel pending RX request (if any) */
1265 cfhsi
->ops
->cfhsi_rx_cancel(cfhsi
->ops
);
1267 /* Destroy workqueue */
1268 destroy_workqueue(cfhsi
->wq
);
1270 /* Store bufferes: will be freed later. */
1271 tx_buf
= cfhsi
->tx_buf
;
1272 rx_buf
= cfhsi
->rx_buf
;
1273 flip_buf
= cfhsi
->rx_flip_buf
;
1274 /* Flush transmit queues. */
1275 cfhsi_abort_tx(cfhsi
);
1277 /* Deactivate interface */
1278 cfhsi
->ops
->cfhsi_down(cfhsi
->ops
);
1287 static void cfhsi_uninit(struct net_device
*dev
)
1289 struct cfhsi
*cfhsi
= netdev_priv(dev
);
1291 symbol_put(cfhsi_get_device
);
1292 list_del(&cfhsi
->list
);
1295 static const struct net_device_ops cfhsi_netdevops
= {
1296 .ndo_uninit
= cfhsi_uninit
,
1297 .ndo_open
= cfhsi_open
,
1298 .ndo_stop
= cfhsi_close
,
1299 .ndo_start_xmit
= cfhsi_xmit
1302 static void cfhsi_netlink_parms(struct nlattr
*data
[], struct cfhsi
*cfhsi
)
1307 pr_debug("no params data found\n");
1311 i
= __IFLA_CAIF_HSI_INACTIVITY_TOUT
;
1313 * Inactivity timeout in millisecs. Lowest possible value is 1,
1314 * and highest possible is NEXT_TIMER_MAX_DELTA.
1317 u32 inactivity_timeout
= nla_get_u32(data
[i
]);
1318 /* Pre-calculate inactivity timeout. */
1319 cfhsi
->cfg
.inactivity_timeout
= inactivity_timeout
* HZ
/ 1000;
1320 if (cfhsi
->cfg
.inactivity_timeout
== 0)
1321 cfhsi
->cfg
.inactivity_timeout
= 1;
1322 else if (cfhsi
->cfg
.inactivity_timeout
> NEXT_TIMER_MAX_DELTA
)
1323 cfhsi
->cfg
.inactivity_timeout
= NEXT_TIMER_MAX_DELTA
;
1326 i
= __IFLA_CAIF_HSI_AGGREGATION_TOUT
;
1328 cfhsi
->cfg
.aggregation_timeout
= nla_get_u32(data
[i
]);
1330 i
= __IFLA_CAIF_HSI_HEAD_ALIGN
;
1332 cfhsi
->cfg
.head_align
= nla_get_u32(data
[i
]);
1334 i
= __IFLA_CAIF_HSI_TAIL_ALIGN
;
1336 cfhsi
->cfg
.tail_align
= nla_get_u32(data
[i
]);
1338 i
= __IFLA_CAIF_HSI_QHIGH_WATERMARK
;
1340 cfhsi
->cfg
.q_high_mark
= nla_get_u32(data
[i
]);
1342 i
= __IFLA_CAIF_HSI_QLOW_WATERMARK
;
1344 cfhsi
->cfg
.q_low_mark
= nla_get_u32(data
[i
]);
1347 static int caif_hsi_changelink(struct net_device
*dev
, struct nlattr
*tb
[],
1348 struct nlattr
*data
[],
1349 struct netlink_ext_ack
*extack
)
1351 cfhsi_netlink_parms(data
, netdev_priv(dev
));
1352 netdev_state_change(dev
);
1356 static const struct nla_policy caif_hsi_policy
[__IFLA_CAIF_HSI_MAX
+ 1] = {
1357 [__IFLA_CAIF_HSI_INACTIVITY_TOUT
] = { .type
= NLA_U32
, .len
= 4 },
1358 [__IFLA_CAIF_HSI_AGGREGATION_TOUT
] = { .type
= NLA_U32
, .len
= 4 },
1359 [__IFLA_CAIF_HSI_HEAD_ALIGN
] = { .type
= NLA_U32
, .len
= 4 },
1360 [__IFLA_CAIF_HSI_TAIL_ALIGN
] = { .type
= NLA_U32
, .len
= 4 },
1361 [__IFLA_CAIF_HSI_QHIGH_WATERMARK
] = { .type
= NLA_U32
, .len
= 4 },
1362 [__IFLA_CAIF_HSI_QLOW_WATERMARK
] = { .type
= NLA_U32
, .len
= 4 },
1365 static size_t caif_hsi_get_size(const struct net_device
*dev
)
1369 for (i
= __IFLA_CAIF_HSI_UNSPEC
+ 1; i
< __IFLA_CAIF_HSI_MAX
; i
++)
1370 s
+= nla_total_size(caif_hsi_policy
[i
].len
);
1374 static int caif_hsi_fill_info(struct sk_buff
*skb
, const struct net_device
*dev
)
1376 struct cfhsi
*cfhsi
= netdev_priv(dev
);
1378 if (nla_put_u32(skb
, __IFLA_CAIF_HSI_INACTIVITY_TOUT
,
1379 cfhsi
->cfg
.inactivity_timeout
) ||
1380 nla_put_u32(skb
, __IFLA_CAIF_HSI_AGGREGATION_TOUT
,
1381 cfhsi
->cfg
.aggregation_timeout
) ||
1382 nla_put_u32(skb
, __IFLA_CAIF_HSI_HEAD_ALIGN
,
1383 cfhsi
->cfg
.head_align
) ||
1384 nla_put_u32(skb
, __IFLA_CAIF_HSI_TAIL_ALIGN
,
1385 cfhsi
->cfg
.tail_align
) ||
1386 nla_put_u32(skb
, __IFLA_CAIF_HSI_QHIGH_WATERMARK
,
1387 cfhsi
->cfg
.q_high_mark
) ||
1388 nla_put_u32(skb
, __IFLA_CAIF_HSI_QLOW_WATERMARK
,
1389 cfhsi
->cfg
.q_low_mark
))
1395 static int caif_hsi_newlink(struct net
*src_net
, struct net_device
*dev
,
1396 struct nlattr
*tb
[], struct nlattr
*data
[],
1397 struct netlink_ext_ack
*extack
)
1399 struct cfhsi
*cfhsi
= NULL
;
1400 struct cfhsi_ops
*(*get_ops
)(void);
1404 cfhsi
= netdev_priv(dev
);
1405 cfhsi_netlink_parms(data
, cfhsi
);
1407 get_ops
= symbol_get(cfhsi_get_ops
);
1409 pr_err("%s: failed to get the cfhsi_ops\n", __func__
);
1413 /* Assign the HSI device. */
1414 cfhsi
->ops
= (*get_ops
)();
1416 pr_err("%s: failed to get the cfhsi_ops\n", __func__
);
1420 /* Assign the driver to this HSI device. */
1421 cfhsi
->ops
->cb_ops
= &cfhsi
->cb_ops
;
1422 if (register_netdevice(dev
)) {
1423 pr_warn("%s: caif_hsi device registration failed\n", __func__
);
1426 /* Add CAIF HSI device to list. */
1427 list_add_tail(&cfhsi
->list
, &cfhsi_list
);
1431 symbol_put(cfhsi_get_ops
);
1435 static struct rtnl_link_ops caif_hsi_link_ops __read_mostly
= {
1437 .priv_size
= sizeof(struct cfhsi
),
1438 .setup
= cfhsi_setup
,
1439 .maxtype
= __IFLA_CAIF_HSI_MAX
,
1440 .policy
= caif_hsi_policy
,
1441 .newlink
= caif_hsi_newlink
,
1442 .changelink
= caif_hsi_changelink
,
1443 .get_size
= caif_hsi_get_size
,
1444 .fill_info
= caif_hsi_fill_info
,
1447 static void __exit
cfhsi_exit_module(void)
1449 struct list_head
*list_node
;
1450 struct list_head
*n
;
1451 struct cfhsi
*cfhsi
;
1453 rtnl_link_unregister(&caif_hsi_link_ops
);
1456 list_for_each_safe(list_node
, n
, &cfhsi_list
) {
1457 cfhsi
= list_entry(list_node
, struct cfhsi
, list
);
1458 unregister_netdev(cfhsi
->ndev
);
1463 static int __init
cfhsi_init_module(void)
1465 return rtnl_link_register(&caif_hsi_link_ops
);
1468 module_init(cfhsi_init_module
);
1469 module_exit(cfhsi_exit_module
);