1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Copyright (C) 2021-2024 Intel Corporation
4 * Copyright (C) 2026 Intel Corporation
5 */
6
7 #include <linux/etherdevice.h>
8 #include <linux/netdevice.h>
9 #include <linux/ieee80211.h>
10 #include <linux/rtnetlink.h>
11 #include <linux/module.h>
12 #include <linux/moduleparam.h>
13 #include <linux/mei_cl_bus.h>
14 #include <linux/rcupdate.h>
15 #include <linux/debugfs.h>
16 #include <linux/skbuff.h>
17 #include <linux/wait.h>
18 #include <linux/slab.h>
19 #include <linux/mm.h>
20
21 #include <net/cfg80211.h>
22
23 #include "internal.h"
24 #include "iwl-mei.h"
25 #include "trace.h"
26 #include "trace-data.h"
27 #include "sap.h"
28
29 MODULE_DESCRIPTION("The Intel(R) wireless / CSME firmware interface");
30 MODULE_LICENSE("GPL");
31
32 #define MEI_WLAN_UUID UUID_LE(0x13280904, 0x7792, 0x4fcb, \
33 0xa1, 0xaa, 0x5e, 0x70, 0xcb, 0xb1, 0xe8, 0x65)
34
35 /* After CSME takes ownership, it won't release it for 60 seconds to avoid
36 * frequent ownership transitions.
37 */
38 #define MEI_OWNERSHIP_RETAKE_TIMEOUT_MS msecs_to_jiffies(60000)
39
40 /*
41 * Since iwlwifi calls iwlmei without any context, hold a pointer to the
42 * mei_cl_device structure here.
43 * Define a mutex that will synchronize all the flows between iwlwifi and
44 * iwlmei.
45 * Note that iwlmei can't have several instances, so it ok to have static
46 * variables here.
47 */
48 static struct mei_cl_device *iwl_mei_global_cldev;
49 static DEFINE_MUTEX(iwl_mei_mutex);
50 static unsigned long iwl_mei_status;
51
52 enum iwl_mei_status_bits {
53 IWL_MEI_STATUS_SAP_CONNECTED,
54 };
55
iwl_mei_is_connected(void)56 bool iwl_mei_is_connected(void)
57 {
58 return test_bit(IWL_MEI_STATUS_SAP_CONNECTED, &iwl_mei_status);
59 }
60 EXPORT_SYMBOL_GPL(iwl_mei_is_connected);
61
62 #define SAP_CONTROL_BLOCK_ID 0x21504153 /* SAP! in ASCII */
63
64 struct iwl_sap_q_ctrl_blk {
65 __le32 wr_ptr;
66 __le32 rd_ptr;
67 __le32 size;
68 };
69
70 enum iwl_sap_q_idx {
71 SAP_QUEUE_IDX_NOTIF = 0,
72 SAP_QUEUE_IDX_DATA,
73 SAP_QUEUE_IDX_MAX,
74 };
75
76 struct iwl_sap_dir {
77 __le32 reserved;
78 struct iwl_sap_q_ctrl_blk q_ctrl_blk[SAP_QUEUE_IDX_MAX];
79 };
80
81 enum iwl_sap_dir_idx {
82 SAP_DIRECTION_HOST_TO_ME = 0,
83 SAP_DIRECTION_ME_TO_HOST,
84 SAP_DIRECTION_MAX,
85 };
86
87 struct iwl_sap_shared_mem_ctrl_blk {
88 __le32 sap_id;
89 __le32 size;
90 struct iwl_sap_dir dir[SAP_DIRECTION_MAX];
91 };
92
93 /*
94 * The shared area has the following layout:
95 *
96 * +-----------------------------------+
97 * |struct iwl_sap_shared_mem_ctrl_blk |
98 * +-----------------------------------+
99 * |Host -> ME data queue |
100 * +-----------------------------------+
101 * |Host -> ME notif queue |
102 * +-----------------------------------+
103 * |ME -> Host data queue |
104 * +-----------------------------------+
105 * |ME -> host notif queue |
106 * +-----------------------------------+
107 * |SAP control block id (SAP!) |
108 * +-----------------------------------+
109 */
110
111 #define SAP_H2M_DATA_Q_SZ 48256
112 #define SAP_M2H_DATA_Q_SZ 24128
113 #define SAP_H2M_NOTIF_Q_SZ_VER3 2240
114 #define SAP_H2M_NOTIF_Q_SZ_VER4 32768
115 #define SAP_M2H_NOTIF_Q_SZ 62720
116
117 #define _IWL_MEI_SAP_SHARED_MEM_SZ_VER3 \
118 (sizeof(struct iwl_sap_shared_mem_ctrl_blk) + \
119 SAP_H2M_DATA_Q_SZ + SAP_H2M_NOTIF_Q_SZ_VER3 + \
120 SAP_M2H_DATA_Q_SZ + SAP_M2H_NOTIF_Q_SZ + 4)
121
122 #define _IWL_MEI_SAP_SHARED_MEM_SZ_VER4 \
123 (sizeof(struct iwl_sap_shared_mem_ctrl_blk) + \
124 SAP_H2M_DATA_Q_SZ + SAP_H2M_NOTIF_Q_SZ_VER4 + \
125 SAP_M2H_DATA_Q_SZ + SAP_M2H_NOTIF_Q_SZ + 4)
126
127 struct iwl_mei_shared_mem_ptrs {
128 struct iwl_sap_shared_mem_ctrl_blk *ctrl;
129 void *q_head[SAP_DIRECTION_MAX][SAP_QUEUE_IDX_MAX];
130 size_t q_size[SAP_DIRECTION_MAX][SAP_QUEUE_IDX_MAX];
131 };
132
133 struct iwl_mei_filters {
134 struct rcu_head rcu_head;
135 struct iwl_sap_oob_filters filters;
136 };
137
138 /**
139 * struct iwl_mei - holds the private date for iwl_mei
140 *
141 * @get_nvm_wq: the wait queue for the get_nvm flow
142 * @send_csa_msg_wk: used to defer the transmission of the CHECK_SHARED_AREA
143 * message. Used so that we can send CHECK_SHARED_AREA from atomic
144 * contexts.
145 * @get_ownership_wq: the wait queue for the get_ownership_flow
146 * @shared_mem: the memory that is shared between CSME and the host
147 * @cldev: the pointer to the MEI client device
148 * @nvm: the data returned by the CSME for the NVM
149 * @filters: the filters sent by CSME
150 * @got_ownership: true if we own the device
151 * @amt_enabled: true if CSME has wireless enabled
152 * @csa_throttled: when true, we can't send CHECK_SHARED_AREA over the MEI
153 * bus, but rather need to wait until send_csa_msg_wk runs
154 * @csme_taking_ownership: true when CSME is taking ownership. Used to remember
155 * to send CSME_OWNERSHIP_CONFIRMED when the driver completes its down
156 * flow.
157 * @link_prot_state: true when we are in link protection PASSIVE
158 * @device_down: true if the device is down. Used to remember to send
159 * CSME_OWNERSHIP_CONFIRMED when the driver is already down.
160 * @csa_throttle_end_wk: used when &csa_throttled is true
161 * @pldr_wq: the wait queue for PLDR flow
162 * @pldr_active: PLDR flow is in progress
163 * @data_q_lock: protects the access to the data queues which are
164 * accessed without the mutex.
165 * @netdev_work: used to defer registering and unregistering of the netdev to
166 * avoid taking the rtnl lock in the SAP messages handlers.
167 * @ownership_dwork: used to re-ask for NIC ownership after ownership was taken
168 * by CSME or when a previous ownership request failed.
169 * @sap_seq_no: the sequence number for the SAP messages
170 * @seq_no: the sequence number for the SAP messages
171 * @dbgfs_dir: the debugfs dir entry
172 */
173 struct iwl_mei {
174 wait_queue_head_t get_nvm_wq;
175 struct work_struct send_csa_msg_wk;
176 wait_queue_head_t get_ownership_wq;
177 struct iwl_mei_shared_mem_ptrs shared_mem;
178 struct mei_cl_device *cldev;
179 struct iwl_mei_nvm *nvm;
180 struct iwl_mei_filters __rcu *filters;
181 bool got_ownership;
182 bool amt_enabled;
183 bool csa_throttled;
184 bool csme_taking_ownership;
185 bool link_prot_state;
186 bool device_down;
187 struct delayed_work csa_throttle_end_wk;
188 wait_queue_head_t pldr_wq;
189 bool pldr_active;
190 spinlock_t data_q_lock;
191 struct work_struct netdev_work;
192 struct delayed_work ownership_dwork;
193
194 atomic_t sap_seq_no;
195 atomic_t seq_no;
196
197 struct dentry *dbgfs_dir;
198 };
199
200 /**
201 * struct iwl_mei_cache - cache for the parameters from iwlwifi
202 * @ops: Callbacks to iwlwifi.
203 * @netdev: The netdev that will be used to transmit / receive packets.
204 * @conn_info: The connection info message triggered by iwlwifi's association.
205 * @power_limit: pointer to an array of 10 elements (le16) represents the power
206 * restrictions per chain.
207 * @rf_kill: rf kill state.
208 * @mcc: MCC info
209 * @mac_address: interface MAC address.
210 * @nvm_address: NVM MAC address.
211 * @priv: A pointer to iwlwifi.
212 * @sap_version: The SAP version to use. enum iwl_mei_sap_version.
213 *
214 * This used to cache the configurations coming from iwlwifi's way. The data
215 * is cached here so that we can buffer the configuration even if we don't have
216 * a bind from the mei bus and hence, on iwl_mei structure.
217 */
218 struct iwl_mei_cache {
219 const struct iwl_mei_ops *ops;
220 struct net_device __rcu *netdev;
221 const struct iwl_sap_notif_connection_info *conn_info;
222 const __le16 *power_limit;
223 u32 rf_kill;
224 u16 mcc;
225 u8 mac_address[6];
226 u8 nvm_address[6];
227 enum iwl_mei_sap_version sap_version;
228 void *priv;
229 };
230
231 static struct iwl_mei_cache iwl_mei_cache = {
232 .rf_kill = SAP_HW_RFKILL_DEASSERTED | SAP_SW_RFKILL_DEASSERTED
233 };
234
iwl_mei_free_shared_mem(struct mei_cl_device * cldev)235 static void iwl_mei_free_shared_mem(struct mei_cl_device *cldev)
236 {
237 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
238
239 if (mei_cldev_dma_unmap(cldev))
240 dev_err(&cldev->dev, "Couldn't unmap the shared mem properly\n");
241 memset(&mei->shared_mem, 0, sizeof(mei->shared_mem));
242 }
243
244 #define HBM_DMA_BUF_ID_WLAN 1
245
iwl_mei_alloc_mem_for_version(struct mei_cl_device * cldev,enum iwl_mei_sap_version version)246 static int iwl_mei_alloc_mem_for_version(struct mei_cl_device *cldev,
247 enum iwl_mei_sap_version version)
248 {
249 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
250 struct iwl_mei_shared_mem_ptrs *mem = &mei->shared_mem;
251 u32 mem_size = roundup(version == IWL_MEI_SAP_VERSION_4 ?
252 _IWL_MEI_SAP_SHARED_MEM_SZ_VER4 :
253 _IWL_MEI_SAP_SHARED_MEM_SZ_VER3, PAGE_SIZE);
254
255 iwl_mei_cache.sap_version = version;
256 mem->ctrl = mei_cldev_dma_map(cldev, HBM_DMA_BUF_ID_WLAN, mem_size);
257 if (IS_ERR(mem->ctrl)) {
258 int ret = PTR_ERR(mem->ctrl);
259
260 mem->ctrl = NULL;
261
262 return ret;
263 }
264
265 memset(mem->ctrl, 0, mem_size);
266
267 return 0;
268 }
269
iwl_mei_alloc_shared_mem(struct mei_cl_device * cldev)270 static int iwl_mei_alloc_shared_mem(struct mei_cl_device *cldev)
271 {
272 int ret;
273
274 /*
275 * SAP version 4 uses a larger Host to MEI notif queue.
276 * Since it is unknown at this stage which SAP version is used by the
277 * CSME firmware on this platform, try to allocate the version 4 first.
278 * If the CSME firmware uses version 3, this allocation is expected to
279 * fail because the CSME firmware allocated less memory for our driver.
280 */
281 ret = iwl_mei_alloc_mem_for_version(cldev, IWL_MEI_SAP_VERSION_4);
282 if (ret)
283 ret = iwl_mei_alloc_mem_for_version(cldev,
284 IWL_MEI_SAP_VERSION_3);
285
286 return ret;
287 }
288
iwl_mei_init_shared_mem(struct iwl_mei * mei)289 static void iwl_mei_init_shared_mem(struct iwl_mei *mei)
290 {
291 struct iwl_mei_shared_mem_ptrs *mem = &mei->shared_mem;
292 struct iwl_sap_dir *h2m;
293 struct iwl_sap_dir *m2h;
294 int dir, queue;
295 u8 *q_head;
296
297 mem->ctrl->sap_id = cpu_to_le32(SAP_CONTROL_BLOCK_ID);
298
299 mem->ctrl->size = cpu_to_le32(sizeof(*mem->ctrl));
300
301 h2m = &mem->ctrl->dir[SAP_DIRECTION_HOST_TO_ME];
302 m2h = &mem->ctrl->dir[SAP_DIRECTION_ME_TO_HOST];
303
304 h2m->q_ctrl_blk[SAP_QUEUE_IDX_DATA].size =
305 cpu_to_le32(SAP_H2M_DATA_Q_SZ);
306 h2m->q_ctrl_blk[SAP_QUEUE_IDX_NOTIF].size =
307 iwl_mei_cache.sap_version == IWL_MEI_SAP_VERSION_3 ?
308 cpu_to_le32(SAP_H2M_NOTIF_Q_SZ_VER3) :
309 cpu_to_le32(SAP_H2M_NOTIF_Q_SZ_VER4);
310 m2h->q_ctrl_blk[SAP_QUEUE_IDX_DATA].size =
311 cpu_to_le32(SAP_M2H_DATA_Q_SZ);
312 m2h->q_ctrl_blk[SAP_QUEUE_IDX_NOTIF].size =
313 cpu_to_le32(SAP_M2H_NOTIF_Q_SZ);
314
315 /* q_head points to the start of the first queue */
316 q_head = (void *)(mem->ctrl + 1);
317
318 /* Initialize the queue heads */
319 for (dir = 0; dir < SAP_DIRECTION_MAX; dir++) {
320 for (queue = 0; queue < SAP_QUEUE_IDX_MAX; queue++) {
321 mem->q_head[dir][queue] = q_head;
322 q_head +=
323 le32_to_cpu(mem->ctrl->dir[dir].q_ctrl_blk[queue].size);
324 mem->q_size[dir][queue] =
325 le32_to_cpu(mem->ctrl->dir[dir].q_ctrl_blk[queue].size);
326 }
327 }
328
329 *(__le32 *)q_head = cpu_to_le32(SAP_CONTROL_BLOCK_ID);
330 }
331
iwl_mei_write_cyclic_buf(struct mei_cl_device * cldev,struct iwl_sap_q_ctrl_blk * notif_q,u8 * q_head,const struct iwl_sap_hdr * hdr,u32 q_sz)332 static ssize_t iwl_mei_write_cyclic_buf(struct mei_cl_device *cldev,
333 struct iwl_sap_q_ctrl_blk *notif_q,
334 u8 *q_head,
335 const struct iwl_sap_hdr *hdr,
336 u32 q_sz)
337 {
338 u32 rd = le32_to_cpu(READ_ONCE(notif_q->rd_ptr));
339 u32 wr = le32_to_cpu(READ_ONCE(notif_q->wr_ptr));
340 size_t room_in_buf;
341 size_t tx_sz = sizeof(*hdr) + le16_to_cpu(hdr->len);
342
343 if (rd > q_sz || wr > q_sz) {
344 dev_err(&cldev->dev,
345 "Pointers are past the end of the buffer\n");
346 return -EINVAL;
347 }
348
349 room_in_buf = wr >= rd ? q_sz - wr + rd : rd - wr;
350
351 /* we don't have enough room for the data to write */
352 if (room_in_buf < tx_sz) {
353 dev_err(&cldev->dev,
354 "Not enough room in the buffer\n");
355 return -ENOSPC;
356 }
357
358 if (wr + tx_sz <= q_sz) {
359 memcpy(q_head + wr, hdr, tx_sz);
360 } else {
361 memcpy(q_head + wr, hdr, q_sz - wr);
362 memcpy(q_head, (const u8 *)hdr + q_sz - wr, tx_sz - (q_sz - wr));
363 }
364
365 WRITE_ONCE(notif_q->wr_ptr, cpu_to_le32((wr + tx_sz) % q_sz));
366 return 0;
367 }
368
iwl_mei_host_to_me_data_pending(const struct iwl_mei * mei)369 static bool iwl_mei_host_to_me_data_pending(const struct iwl_mei *mei)
370 {
371 struct iwl_sap_q_ctrl_blk *notif_q;
372 struct iwl_sap_dir *dir;
373
374 dir = &mei->shared_mem.ctrl->dir[SAP_DIRECTION_HOST_TO_ME];
375 notif_q = &dir->q_ctrl_blk[SAP_QUEUE_IDX_DATA];
376
377 if (READ_ONCE(notif_q->wr_ptr) != READ_ONCE(notif_q->rd_ptr))
378 return true;
379
380 notif_q = &dir->q_ctrl_blk[SAP_QUEUE_IDX_NOTIF];
381 return READ_ONCE(notif_q->wr_ptr) != READ_ONCE(notif_q->rd_ptr);
382 }
383
iwl_mei_send_check_shared_area(struct mei_cl_device * cldev)384 static int iwl_mei_send_check_shared_area(struct mei_cl_device *cldev)
385 {
386 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
387 struct iwl_sap_me_msg_start msg = {
388 .hdr.type = cpu_to_le32(SAP_ME_MSG_CHECK_SHARED_AREA),
389 .hdr.seq_num = cpu_to_le32(atomic_inc_return(&mei->seq_no)),
390 };
391 int ret;
392
393 lockdep_assert_held(&iwl_mei_mutex);
394
395 if (mei->csa_throttled)
396 return 0;
397
398 trace_iwlmei_me_msg(&msg.hdr, true);
399 ret = mei_cldev_send(cldev, (void *)&msg, sizeof(msg));
400 if (ret != sizeof(msg)) {
401 dev_err(&cldev->dev,
402 "failed to send the SAP_ME_MSG_CHECK_SHARED_AREA message %d\n",
403 ret);
404 return ret;
405 }
406
407 mei->csa_throttled = true;
408
409 schedule_delayed_work(&mei->csa_throttle_end_wk,
410 msecs_to_jiffies(100));
411
412 return 0;
413 }
414
iwl_mei_csa_throttle_end_wk(struct work_struct * wk)415 static void iwl_mei_csa_throttle_end_wk(struct work_struct *wk)
416 {
417 struct iwl_mei *mei =
418 container_of(wk, struct iwl_mei, csa_throttle_end_wk.work);
419
420 mutex_lock(&iwl_mei_mutex);
421
422 mei->csa_throttled = false;
423
424 if (iwl_mei_host_to_me_data_pending(mei))
425 iwl_mei_send_check_shared_area(mei->cldev);
426
427 mutex_unlock(&iwl_mei_mutex);
428 }
429
iwl_mei_send_sap_msg_payload(struct mei_cl_device * cldev,struct iwl_sap_hdr * hdr)430 static int iwl_mei_send_sap_msg_payload(struct mei_cl_device *cldev,
431 struct iwl_sap_hdr *hdr)
432 {
433 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
434 struct iwl_sap_q_ctrl_blk *notif_q;
435 struct iwl_sap_dir *dir;
436 void *q_head;
437 u32 q_sz;
438 int ret;
439
440 lockdep_assert_held(&iwl_mei_mutex);
441
442 if (!mei->shared_mem.ctrl) {
443 dev_err(&cldev->dev,
444 "No shared memory, can't send any SAP message\n");
445 return -EINVAL;
446 }
447
448 if (!iwl_mei_is_connected()) {
449 dev_err(&cldev->dev,
450 "Can't send a SAP message if we're not connected\n");
451 return -ENODEV;
452 }
453
454 hdr->seq_num = cpu_to_le32(atomic_inc_return(&mei->sap_seq_no));
455 dev_dbg(&cldev->dev, "Sending %d\n", hdr->type);
456
457 dir = &mei->shared_mem.ctrl->dir[SAP_DIRECTION_HOST_TO_ME];
458 notif_q = &dir->q_ctrl_blk[SAP_QUEUE_IDX_NOTIF];
459 q_head = mei->shared_mem.q_head[SAP_DIRECTION_HOST_TO_ME][SAP_QUEUE_IDX_NOTIF];
460 q_sz = mei->shared_mem.q_size[SAP_DIRECTION_HOST_TO_ME][SAP_QUEUE_IDX_NOTIF];
461 ret = iwl_mei_write_cyclic_buf(cldev, notif_q, q_head, hdr, q_sz);
462
463 if (ret < 0)
464 return ret;
465
466 trace_iwlmei_sap_cmd(hdr, true);
467
468 return iwl_mei_send_check_shared_area(cldev);
469 }
470
iwl_mei_add_data_to_ring(struct sk_buff * skb,bool cb_tx)471 void iwl_mei_add_data_to_ring(struct sk_buff *skb, bool cb_tx)
472 {
473 struct iwl_sap_q_ctrl_blk *notif_q;
474 struct iwl_sap_dir *dir;
475 struct iwl_mei *mei;
476 size_t room_in_buf;
477 size_t tx_sz;
478 size_t hdr_sz;
479 u32 q_sz;
480 u32 rd;
481 u32 wr;
482 u8 *q_head;
483
484 if (!iwl_mei_global_cldev)
485 return;
486
487 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
488
489 /*
490 * We access this path for Rx packets (the more common case)
491 * and from Tx path when we send DHCP packets, the latter is
492 * very unlikely.
493 * Take the lock already here to make sure we see that remove()
494 * might have cleared the IWL_MEI_STATUS_SAP_CONNECTED bit.
495 */
496 spin_lock_bh(&mei->data_q_lock);
497
498 if (!iwl_mei_is_connected()) {
499 spin_unlock_bh(&mei->data_q_lock);
500 return;
501 }
502
503 /*
504 * We are in a RCU critical section and the remove from the CSME bus
505 * which would free this memory waits for the readers to complete (this
506 * is done in netdev_rx_handler_unregister).
507 */
508 dir = &mei->shared_mem.ctrl->dir[SAP_DIRECTION_HOST_TO_ME];
509 notif_q = &dir->q_ctrl_blk[SAP_QUEUE_IDX_DATA];
510 q_head = mei->shared_mem.q_head[SAP_DIRECTION_HOST_TO_ME][SAP_QUEUE_IDX_DATA];
511 q_sz = mei->shared_mem.q_size[SAP_DIRECTION_HOST_TO_ME][SAP_QUEUE_IDX_DATA];
512
513 rd = le32_to_cpu(READ_ONCE(notif_q->rd_ptr));
514 wr = le32_to_cpu(READ_ONCE(notif_q->wr_ptr));
515 hdr_sz = cb_tx ? sizeof(struct iwl_sap_cb_data) :
516 sizeof(struct iwl_sap_hdr);
517 tx_sz = skb->len + hdr_sz;
518
519 if (rd > q_sz || wr > q_sz) {
520 dev_err(&mei->cldev->dev,
521 "can't write the data: pointers are past the end of the buffer\n");
522 goto out;
523 }
524
525 room_in_buf = wr >= rd ? q_sz - wr + rd : rd - wr;
526
527 /* we don't have enough room for the data to write */
528 if (room_in_buf < tx_sz) {
529 dev_err(&mei->cldev->dev,
530 "Not enough room in the buffer for this data\n");
531 goto out;
532 }
533
534 if (skb_headroom(skb) < hdr_sz) {
535 dev_err(&mei->cldev->dev,
536 "Not enough headroom in the skb to write the SAP header\n");
537 goto out;
538 }
539
540 if (cb_tx) {
541 struct iwl_sap_cb_data *cb_hdr = skb_push(skb, sizeof(*cb_hdr));
542
543 memset(cb_hdr, 0, sizeof(*cb_hdr));
544 cb_hdr->hdr.type = cpu_to_le16(SAP_MSG_CB_DATA_PACKET);
545 cb_hdr->hdr.len = cpu_to_le16(skb->len - sizeof(cb_hdr->hdr));
546 cb_hdr->hdr.seq_num = cpu_to_le32(atomic_inc_return(&mei->sap_seq_no));
547 cb_hdr->to_me_filt_status = cpu_to_le32(BIT(CB_TX_DHCP_FILT_IDX));
548 cb_hdr->data_len = cpu_to_le32(skb->len - sizeof(*cb_hdr));
549 trace_iwlmei_sap_data(skb, IWL_SAP_TX_DHCP);
550 } else {
551 struct iwl_sap_hdr *hdr = skb_push(skb, sizeof(*hdr));
552
553 hdr->type = cpu_to_le16(SAP_MSG_DATA_PACKET);
554 hdr->len = cpu_to_le16(skb->len - sizeof(*hdr));
555 hdr->seq_num = cpu_to_le32(atomic_inc_return(&mei->sap_seq_no));
556 trace_iwlmei_sap_data(skb, IWL_SAP_TX_DATA_FROM_AIR);
557 }
558
559 if (wr + tx_sz <= q_sz) {
560 skb_copy_bits(skb, 0, q_head + wr, tx_sz);
561 } else {
562 skb_copy_bits(skb, 0, q_head + wr, q_sz - wr);
563 skb_copy_bits(skb, q_sz - wr, q_head, tx_sz - (q_sz - wr));
564 }
565
566 WRITE_ONCE(notif_q->wr_ptr, cpu_to_le32((wr + tx_sz) % q_sz));
567
568 out:
569 spin_unlock_bh(&mei->data_q_lock);
570 }
571
572 static int
iwl_mei_send_sap_msg(struct mei_cl_device * cldev,u16 type)573 iwl_mei_send_sap_msg(struct mei_cl_device *cldev, u16 type)
574 {
575 struct iwl_sap_hdr msg = {
576 .type = cpu_to_le16(type),
577 };
578
579 return iwl_mei_send_sap_msg_payload(cldev, &msg);
580 }
581
iwl_mei_send_csa_msg_wk(struct work_struct * wk)582 static void iwl_mei_send_csa_msg_wk(struct work_struct *wk)
583 {
584 struct iwl_mei *mei =
585 container_of(wk, struct iwl_mei, send_csa_msg_wk);
586
587 if (!iwl_mei_is_connected())
588 return;
589
590 mutex_lock(&iwl_mei_mutex);
591
592 iwl_mei_send_check_shared_area(mei->cldev);
593
594 mutex_unlock(&iwl_mei_mutex);
595 }
596
597 /* Called in a RCU read critical section from netif_receive_skb */
iwl_mei_rx_handler(struct sk_buff ** pskb)598 static rx_handler_result_t iwl_mei_rx_handler(struct sk_buff **pskb)
599 {
600 struct sk_buff *skb = *pskb;
601 struct iwl_mei *mei =
602 rcu_dereference(skb->dev->rx_handler_data);
603 struct iwl_mei_filters *filters = rcu_dereference(mei->filters);
604 bool rx_for_csme = false;
605 rx_handler_result_t res;
606
607 /*
608 * remove() unregisters this handler and synchronize_net, so this
609 * should never happen.
610 */
611 if (!iwl_mei_is_connected()) {
612 dev_err(&mei->cldev->dev,
613 "Got an Rx packet, but we're not connected to SAP?\n");
614 return RX_HANDLER_PASS;
615 }
616
617 if (filters)
618 res = iwl_mei_rx_filter(skb, &filters->filters, &rx_for_csme);
619 else
620 res = RX_HANDLER_PASS;
621
622 /*
623 * The data is already on the ring of the shared area, all we
624 * need to do is to tell the CSME firmware to check what we have
625 * there.
626 */
627 if (rx_for_csme)
628 schedule_work(&mei->send_csa_msg_wk);
629
630 if (res != RX_HANDLER_PASS) {
631 trace_iwlmei_sap_data(skb, IWL_SAP_RX_DATA_DROPPED_FROM_AIR);
632 dev_kfree_skb(skb);
633 }
634
635 return res;
636 }
637
iwl_mei_netdev_work(struct work_struct * wk)638 static void iwl_mei_netdev_work(struct work_struct *wk)
639 {
640 struct iwl_mei *mei =
641 container_of(wk, struct iwl_mei, netdev_work);
642 struct net_device *netdev;
643
644 /*
645 * First take rtnl and only then the mutex to avoid an ABBA
646 * with iwl_mei_set_netdev()
647 */
648 rtnl_lock();
649 mutex_lock(&iwl_mei_mutex);
650
651 netdev = rcu_dereference_protected(iwl_mei_cache.netdev,
652 lockdep_is_held(&iwl_mei_mutex));
653 if (netdev) {
654 if (mei->amt_enabled)
655 netdev_rx_handler_register(netdev, iwl_mei_rx_handler,
656 mei);
657 else
658 netdev_rx_handler_unregister(netdev);
659 }
660
661 mutex_unlock(&iwl_mei_mutex);
662 rtnl_unlock();
663 }
664
665 static void
iwl_mei_handle_rx_start_ok(struct mei_cl_device * cldev,const struct iwl_sap_me_msg_start_ok * rsp,ssize_t len)666 iwl_mei_handle_rx_start_ok(struct mei_cl_device *cldev,
667 const struct iwl_sap_me_msg_start_ok *rsp,
668 ssize_t len)
669 {
670 if (len != sizeof(*rsp)) {
671 dev_err(&cldev->dev,
672 "got invalid SAP_ME_MSG_START_OK from CSME firmware\n");
673 dev_err(&cldev->dev,
674 "size is incorrect: %zd instead of %zu\n",
675 len, sizeof(*rsp));
676 return;
677 }
678
679 if (rsp->supported_version != iwl_mei_cache.sap_version) {
680 dev_err(&cldev->dev,
681 "didn't get the expected version: got %d\n",
682 rsp->supported_version);
683 return;
684 }
685
686 mutex_lock(&iwl_mei_mutex);
687 set_bit(IWL_MEI_STATUS_SAP_CONNECTED, &iwl_mei_status);
688 /*
689 * We'll receive AMT_STATE SAP message in a bit and
690 * that will continue the flow
691 */
692 mutex_unlock(&iwl_mei_mutex);
693 }
694
iwl_mei_handle_csme_filters(struct mei_cl_device * cldev,const struct iwl_sap_csme_filters * filters)695 static void iwl_mei_handle_csme_filters(struct mei_cl_device *cldev,
696 const struct iwl_sap_csme_filters *filters)
697 {
698 struct iwl_mei *mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
699 struct iwl_mei_filters *new_filters;
700 struct iwl_mei_filters *old_filters;
701
702 old_filters =
703 rcu_dereference_protected(mei->filters,
704 lockdep_is_held(&iwl_mei_mutex));
705
706 new_filters = kzalloc_obj(*new_filters);
707 if (!new_filters)
708 return;
709
710 /* Copy the OOB filters */
711 new_filters->filters = filters->filters;
712
713 rcu_assign_pointer(mei->filters, new_filters);
714
715 if (old_filters)
716 kfree_rcu(old_filters, rcu_head);
717 }
718
719 static void
iwl_mei_handle_conn_status(struct mei_cl_device * cldev,const struct iwl_sap_notif_conn_status * status)720 iwl_mei_handle_conn_status(struct mei_cl_device *cldev,
721 const struct iwl_sap_notif_conn_status *status)
722 {
723 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
724 struct iwl_mei_conn_info conn_info = {
725 .lp_state = le32_to_cpu(status->link_prot_state),
726 .ssid_len = le32_to_cpu(status->conn_info.ssid_len),
727 .channel = status->conn_info.channel,
728 .band = status->conn_info.band,
729 .auth_mode = le32_to_cpu(status->conn_info.auth_mode),
730 .pairwise_cipher = le32_to_cpu(status->conn_info.pairwise_cipher),
731 };
732
733 if (!iwl_mei_cache.ops ||
734 conn_info.ssid_len > ARRAY_SIZE(conn_info.ssid))
735 return;
736
737 memcpy(conn_info.ssid, status->conn_info.ssid, conn_info.ssid_len);
738 ether_addr_copy(conn_info.bssid, status->conn_info.bssid);
739
740 iwl_mei_cache.ops->me_conn_status(iwl_mei_cache.priv, &conn_info);
741
742 mei->link_prot_state = status->link_prot_state;
743
744 /*
745 * Update the Rfkill state in case the host does not own the device:
746 * if we are in Link Protection, ask to not touch the device, else,
747 * unblock rfkill.
748 * If the host owns the device, inform the user space whether it can
749 * roam.
750 */
751 if (mei->got_ownership)
752 iwl_mei_cache.ops->roaming_forbidden(iwl_mei_cache.priv,
753 status->link_prot_state);
754 else
755 iwl_mei_cache.ops->rfkill(iwl_mei_cache.priv,
756 status->link_prot_state, false);
757 }
758
iwl_mei_set_init_conf(struct iwl_mei * mei)759 static void iwl_mei_set_init_conf(struct iwl_mei *mei)
760 {
761 struct iwl_sap_notif_host_link_up link_msg = {
762 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_HOST_LINK_UP),
763 .hdr.len = cpu_to_le16(sizeof(link_msg) - sizeof(link_msg.hdr)),
764 };
765 struct iwl_sap_notif_country_code mcc_msg = {
766 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_COUNTRY_CODE),
767 .hdr.len = cpu_to_le16(sizeof(mcc_msg) - sizeof(mcc_msg.hdr)),
768 .mcc = cpu_to_le16(iwl_mei_cache.mcc),
769 };
770 struct iwl_sap_notif_sar_limits sar_msg = {
771 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_SAR_LIMITS),
772 .hdr.len = cpu_to_le16(sizeof(sar_msg) - sizeof(sar_msg.hdr)),
773 };
774 struct iwl_sap_notif_host_nic_info nic_info_msg = {
775 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_NIC_INFO),
776 .hdr.len = cpu_to_le16(sizeof(nic_info_msg) - sizeof(nic_info_msg.hdr)),
777 };
778 struct iwl_sap_msg_dw rfkill_msg = {
779 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_RADIO_STATE),
780 .hdr.len = cpu_to_le16(sizeof(rfkill_msg) - sizeof(rfkill_msg.hdr)),
781 .val = cpu_to_le32(iwl_mei_cache.rf_kill),
782 };
783
784 /* wifi driver has registered already */
785 if (iwl_mei_cache.ops) {
786 iwl_mei_send_sap_msg(mei->cldev,
787 SAP_MSG_NOTIF_WIFIDR_UP);
788 iwl_mei_cache.ops->sap_connected(iwl_mei_cache.priv);
789 }
790
791 iwl_mei_send_sap_msg(mei->cldev, SAP_MSG_NOTIF_WHO_OWNS_NIC);
792
793 if (iwl_mei_cache.conn_info) {
794 link_msg.conn_info = *iwl_mei_cache.conn_info;
795 iwl_mei_send_sap_msg_payload(mei->cldev, &link_msg.hdr);
796 }
797
798 iwl_mei_send_sap_msg_payload(mei->cldev, &mcc_msg.hdr);
799
800 if (iwl_mei_cache.power_limit) {
801 memcpy(sar_msg.sar_chain_info_table, iwl_mei_cache.power_limit,
802 sizeof(sar_msg.sar_chain_info_table));
803 iwl_mei_send_sap_msg_payload(mei->cldev, &sar_msg.hdr);
804 }
805
806 if (is_valid_ether_addr(iwl_mei_cache.mac_address)) {
807 ether_addr_copy(nic_info_msg.mac_address,
808 iwl_mei_cache.mac_address);
809 ether_addr_copy(nic_info_msg.nvm_address,
810 iwl_mei_cache.nvm_address);
811 iwl_mei_send_sap_msg_payload(mei->cldev, &nic_info_msg.hdr);
812 }
813
814 iwl_mei_send_sap_msg_payload(mei->cldev, &rfkill_msg.hdr);
815 }
816
iwl_mei_handle_amt_state(struct mei_cl_device * cldev,const struct iwl_sap_msg_dw * dw)817 static void iwl_mei_handle_amt_state(struct mei_cl_device *cldev,
818 const struct iwl_sap_msg_dw *dw)
819 {
820 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
821
822 mutex_lock(&iwl_mei_mutex);
823
824 if (mei->amt_enabled == !!le32_to_cpu(dw->val))
825 goto out;
826
827 mei->amt_enabled = dw->val;
828
829 if (mei->amt_enabled)
830 iwl_mei_set_init_conf(mei);
831 else if (iwl_mei_cache.ops)
832 iwl_mei_cache.ops->rfkill(iwl_mei_cache.priv, false, false);
833
834 schedule_work(&mei->netdev_work);
835
836 out:
837 mutex_unlock(&iwl_mei_mutex);
838 }
839
iwl_mei_handle_nic_owner(struct mei_cl_device * cldev,const struct iwl_sap_msg_dw * dw)840 static void iwl_mei_handle_nic_owner(struct mei_cl_device *cldev,
841 const struct iwl_sap_msg_dw *dw)
842 {
843 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
844
845 mei->got_ownership = dw->val != cpu_to_le32(SAP_NIC_OWNER_ME);
846 }
847
iwl_mei_handle_can_release_ownership(struct mei_cl_device * cldev,const void * payload)848 static void iwl_mei_handle_can_release_ownership(struct mei_cl_device *cldev,
849 const void *payload)
850 {
851 /* We can get ownership and driver is registered, go ahead */
852 if (iwl_mei_cache.ops)
853 iwl_mei_send_sap_msg(cldev,
854 SAP_MSG_NOTIF_HOST_ASKS_FOR_NIC_OWNERSHIP);
855 }
856
iwl_mei_handle_csme_taking_ownership(struct mei_cl_device * cldev,const void * payload)857 static void iwl_mei_handle_csme_taking_ownership(struct mei_cl_device *cldev,
858 const void *payload)
859 {
860 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
861
862 dev_info(&cldev->dev, "CSME takes ownership\n");
863
864 mei->got_ownership = false;
865
866 if (iwl_mei_cache.ops && !mei->device_down) {
867 /*
868 * Remember to send CSME_OWNERSHIP_CONFIRMED when the wifi
869 * driver is finished taking the device down.
870 */
871 mei->csme_taking_ownership = true;
872
873 iwl_mei_cache.ops->rfkill(iwl_mei_cache.priv, true, true);
874 } else {
875 iwl_mei_send_sap_msg(cldev,
876 SAP_MSG_NOTIF_CSME_OWNERSHIP_CONFIRMED);
877 schedule_delayed_work(&mei->ownership_dwork,
878 MEI_OWNERSHIP_RETAKE_TIMEOUT_MS);
879 }
880 }
881
iwl_mei_handle_nvm(struct mei_cl_device * cldev,const struct iwl_sap_nvm * sap_nvm)882 static void iwl_mei_handle_nvm(struct mei_cl_device *cldev,
883 const struct iwl_sap_nvm *sap_nvm)
884 {
885 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
886 const struct iwl_mei_nvm *mei_nvm = (const void *)sap_nvm;
887 int i;
888
889 kfree(mei->nvm);
890 mei->nvm = kzalloc_obj(*mei_nvm);
891 if (!mei->nvm)
892 return;
893
894 ether_addr_copy(mei->nvm->hw_addr, sap_nvm->hw_addr);
895 mei->nvm->n_hw_addrs = sap_nvm->n_hw_addrs;
896 mei->nvm->radio_cfg = le32_to_cpu(sap_nvm->radio_cfg);
897 mei->nvm->caps = le32_to_cpu(sap_nvm->caps);
898 mei->nvm->nvm_version = le32_to_cpu(sap_nvm->nvm_version);
899
900 for (i = 0; i < ARRAY_SIZE(mei->nvm->channels); i++)
901 mei->nvm->channels[i] = le32_to_cpu(sap_nvm->channels[i]);
902
903 wake_up_all(&mei->get_nvm_wq);
904 }
905
iwl_mei_handle_rx_host_own_req(struct mei_cl_device * cldev,const struct iwl_sap_msg_dw * dw)906 static void iwl_mei_handle_rx_host_own_req(struct mei_cl_device *cldev,
907 const struct iwl_sap_msg_dw *dw)
908 {
909 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
910
911 /*
912 * This means that we can't use the wifi device right now, CSME is not
913 * ready to let us use it.
914 */
915 if (!dw->val) {
916 dev_info(&cldev->dev, "Ownership req denied\n");
917 return;
918 }
919
920 mei->got_ownership = true;
921 wake_up_all(&mei->get_ownership_wq);
922
923 iwl_mei_send_sap_msg(cldev,
924 SAP_MSG_NOTIF_HOST_OWNERSHIP_CONFIRMED);
925
926 /* We can now start the connection, unblock rfkill */
927 if (iwl_mei_cache.ops)
928 iwl_mei_cache.ops->rfkill(iwl_mei_cache.priv, false, false);
929 }
930
iwl_mei_handle_pldr_ack(struct mei_cl_device * cldev,const struct iwl_sap_pldr_ack_data * ack)931 static void iwl_mei_handle_pldr_ack(struct mei_cl_device *cldev,
932 const struct iwl_sap_pldr_ack_data *ack)
933 {
934 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
935
936 mei->pldr_active = le32_to_cpu(ack->status) == SAP_PLDR_STATUS_SUCCESS;
937 wake_up_all(&mei->pldr_wq);
938 }
939
iwl_mei_handle_ping(struct mei_cl_device * cldev,const struct iwl_sap_hdr * hdr)940 static void iwl_mei_handle_ping(struct mei_cl_device *cldev,
941 const struct iwl_sap_hdr *hdr)
942 {
943 iwl_mei_send_sap_msg(cldev, SAP_MSG_NOTIF_PONG);
944 }
945
iwl_mei_handle_sap_msg(struct mei_cl_device * cldev,const struct iwl_sap_hdr * hdr)946 static void iwl_mei_handle_sap_msg(struct mei_cl_device *cldev,
947 const struct iwl_sap_hdr *hdr)
948 {
949 u16 len = le16_to_cpu(hdr->len) + sizeof(*hdr);
950 u16 type = le16_to_cpu(hdr->type);
951
952 dev_dbg(&cldev->dev,
953 "Got a new SAP message: type %d, len %d, seq %d\n",
954 le16_to_cpu(hdr->type), len,
955 le32_to_cpu(hdr->seq_num));
956
957 #define SAP_MSG_HANDLER(_cmd, _handler, _sz) \
958 case SAP_MSG_NOTIF_ ## _cmd: \
959 if (len < _sz) { \
960 dev_err(&cldev->dev, \
961 "Bad size for %d: %u < %u\n", \
962 le16_to_cpu(hdr->type), \
963 (unsigned int)len, \
964 (unsigned int)_sz); \
965 break; \
966 } \
967 mutex_lock(&iwl_mei_mutex); \
968 _handler(cldev, (const void *)hdr); \
969 mutex_unlock(&iwl_mei_mutex); \
970 break
971
972 #define SAP_MSG_HANDLER_NO_LOCK(_cmd, _handler, _sz) \
973 case SAP_MSG_NOTIF_ ## _cmd: \
974 if (len < _sz) { \
975 dev_err(&cldev->dev, \
976 "Bad size for %d: %u < %u\n", \
977 le16_to_cpu(hdr->type), \
978 (unsigned int)len, \
979 (unsigned int)_sz); \
980 break; \
981 } \
982 _handler(cldev, (const void *)hdr); \
983 break
984
985 #define SAP_MSG_HANDLER_NO_HANDLER(_cmd, _sz) \
986 case SAP_MSG_NOTIF_ ## _cmd: \
987 if (len < _sz) { \
988 dev_err(&cldev->dev, \
989 "Bad size for %d: %u < %u\n", \
990 le16_to_cpu(hdr->type), \
991 (unsigned int)len, \
992 (unsigned int)_sz); \
993 break; \
994 } \
995 break
996
997 switch (type) {
998 SAP_MSG_HANDLER(PING, iwl_mei_handle_ping, 0);
999 SAP_MSG_HANDLER(CSME_FILTERS,
1000 iwl_mei_handle_csme_filters,
1001 sizeof(struct iwl_sap_csme_filters));
1002 SAP_MSG_HANDLER(CSME_CONN_STATUS,
1003 iwl_mei_handle_conn_status,
1004 sizeof(struct iwl_sap_notif_conn_status));
1005 SAP_MSG_HANDLER_NO_LOCK(AMT_STATE,
1006 iwl_mei_handle_amt_state,
1007 sizeof(struct iwl_sap_msg_dw));
1008 SAP_MSG_HANDLER_NO_HANDLER(PONG, 0);
1009 SAP_MSG_HANDLER(NVM, iwl_mei_handle_nvm,
1010 sizeof(struct iwl_sap_nvm));
1011 SAP_MSG_HANDLER(CSME_REPLY_TO_HOST_OWNERSHIP_REQ,
1012 iwl_mei_handle_rx_host_own_req,
1013 sizeof(struct iwl_sap_msg_dw));
1014 SAP_MSG_HANDLER(NIC_OWNER, iwl_mei_handle_nic_owner,
1015 sizeof(struct iwl_sap_msg_dw));
1016 SAP_MSG_HANDLER(CSME_CAN_RELEASE_OWNERSHIP,
1017 iwl_mei_handle_can_release_ownership, 0);
1018 SAP_MSG_HANDLER(CSME_TAKING_OWNERSHIP,
1019 iwl_mei_handle_csme_taking_ownership, 0);
1020 SAP_MSG_HANDLER(PLDR_ACK, iwl_mei_handle_pldr_ack,
1021 sizeof(struct iwl_sap_pldr_ack_data));
1022 default:
1023 /*
1024 * This is not really an error, there are message that we decided
1025 * to ignore, yet, it is useful to be able to leave a note if debug
1026 * is enabled.
1027 */
1028 dev_dbg(&cldev->dev, "Unsupported message: type %d, len %d\n",
1029 le16_to_cpu(hdr->type), len);
1030 }
1031
1032 #undef SAP_MSG_HANDLER
1033 #undef SAP_MSG_HANDLER_NO_LOCK
1034 }
1035
iwl_mei_read_from_q(const u8 * q_head,u32 q_sz,u32 * _rd,u32 wr,void * _buf,u32 len)1036 static void iwl_mei_read_from_q(const u8 *q_head, u32 q_sz,
1037 u32 *_rd, u32 wr,
1038 void *_buf, u32 len)
1039 {
1040 u8 *buf = _buf;
1041 u32 rd = *_rd;
1042
1043 if (rd + len <= q_sz) {
1044 if (buf)
1045 memcpy(buf, q_head + rd, len);
1046 rd += len;
1047 } else {
1048 if (buf) {
1049 memcpy(buf, q_head + rd, q_sz - rd);
1050 memcpy(buf + q_sz - rd, q_head, len - (q_sz - rd));
1051 }
1052 rd = len - (q_sz - rd);
1053 }
1054
1055 *_rd = rd;
1056 }
1057
1058 #define QOS_HDR_IV_SNAP_LEN (sizeof(struct ieee80211_qos_hdr) + \
1059 IEEE80211_TKIP_IV_LEN + \
1060 sizeof(rfc1042_header) + ETH_TLEN)
1061
iwl_mei_handle_sap_data(struct mei_cl_device * cldev,const u8 * q_head,u32 q_sz,u32 rd,u32 wr,ssize_t valid_rx_sz,struct sk_buff_head * tx_skbs)1062 static void iwl_mei_handle_sap_data(struct mei_cl_device *cldev,
1063 const u8 *q_head, u32 q_sz,
1064 u32 rd, u32 wr, ssize_t valid_rx_sz,
1065 struct sk_buff_head *tx_skbs)
1066 {
1067 struct iwl_sap_hdr hdr;
1068 struct net_device *netdev =
1069 rcu_dereference_protected(iwl_mei_cache.netdev,
1070 lockdep_is_held(&iwl_mei_mutex));
1071
1072 if (!netdev)
1073 return;
1074
1075 while (valid_rx_sz >= sizeof(hdr)) {
1076 struct ethhdr *ethhdr;
1077 unsigned char *data;
1078 struct sk_buff *skb;
1079 u16 len;
1080
1081 iwl_mei_read_from_q(q_head, q_sz, &rd, wr, &hdr, sizeof(hdr));
1082 valid_rx_sz -= sizeof(hdr);
1083 len = le16_to_cpu(hdr.len);
1084
1085 if (valid_rx_sz < len) {
1086 dev_err(&cldev->dev,
1087 "Data queue is corrupted: valid data len %zd, len %d\n",
1088 valid_rx_sz, len);
1089 break;
1090 }
1091
1092 valid_rx_sz -= len;
1093
1094 if (len < sizeof(*ethhdr)) {
1095 dev_err(&cldev->dev,
1096 "Data len is smaller than an ethernet header? len = %d\n",
1097 len);
1098 iwl_mei_read_from_q(q_head, q_sz, &rd, wr, NULL, len);
1099 continue;
1100 }
1101
1102 if (le16_to_cpu(hdr.type) != SAP_MSG_DATA_PACKET) {
1103 dev_err(&cldev->dev, "Unsupported Rx data: type %d, len %d\n",
1104 le16_to_cpu(hdr.type), len);
1105 iwl_mei_read_from_q(q_head, q_sz, &rd, wr, NULL, len);
1106 continue;
1107 }
1108
1109 /* We need enough room for the WiFi header + SNAP + IV */
1110 skb = netdev_alloc_skb(netdev, len + QOS_HDR_IV_SNAP_LEN);
1111 if (!skb) {
1112 iwl_mei_read_from_q(q_head, q_sz, &rd, wr, NULL, len);
1113 continue;
1114 }
1115
1116 skb_reserve(skb, QOS_HDR_IV_SNAP_LEN);
1117 ethhdr = skb_push(skb, sizeof(*ethhdr));
1118
1119 iwl_mei_read_from_q(q_head, q_sz, &rd, wr,
1120 ethhdr, sizeof(*ethhdr));
1121 len -= sizeof(*ethhdr);
1122
1123 skb_reset_mac_header(skb);
1124 skb_reset_network_header(skb);
1125 skb->protocol = ethhdr->h_proto;
1126
1127 data = skb_put(skb, len);
1128 iwl_mei_read_from_q(q_head, q_sz, &rd, wr, data, len);
1129
1130 /*
1131 * Enqueue the skb here so that it can be sent later when we
1132 * do not hold the mutex. TX'ing a packet with a mutex held is
1133 * possible, but it wouldn't be nice to forbid the TX path to
1134 * call any of iwlmei's functions, since every API from iwlmei
1135 * needs the mutex.
1136 */
1137 __skb_queue_tail(tx_skbs, skb);
1138 }
1139 }
1140
iwl_mei_handle_sap_rx_cmd(struct mei_cl_device * cldev,const u8 * q_head,u32 q_sz,u32 rd,u32 wr,ssize_t valid_rx_sz)1141 static void iwl_mei_handle_sap_rx_cmd(struct mei_cl_device *cldev,
1142 const u8 *q_head, u32 q_sz,
1143 u32 rd, u32 wr, ssize_t valid_rx_sz)
1144 {
1145 struct page *p = alloc_page(GFP_KERNEL);
1146 struct iwl_sap_hdr *hdr;
1147
1148 if (!p)
1149 return;
1150
1151 hdr = page_address(p);
1152
1153 while (valid_rx_sz >= sizeof(*hdr)) {
1154 u16 len;
1155
1156 iwl_mei_read_from_q(q_head, q_sz, &rd, wr, hdr, sizeof(*hdr));
1157 valid_rx_sz -= sizeof(*hdr);
1158 len = le16_to_cpu(hdr->len);
1159 if (len + sizeof(*hdr) > PAGE_SIZE) {
1160 dev_err(&cldev->dev,
1161 "SAP message is too big: %u\n", len);
1162 break;
1163 }
1164
1165 if (valid_rx_sz < len)
1166 break;
1167
1168 iwl_mei_read_from_q(q_head, q_sz, &rd, wr, hdr + 1, len);
1169
1170 trace_iwlmei_sap_cmd(hdr, false);
1171 iwl_mei_handle_sap_msg(cldev, hdr);
1172 valid_rx_sz -= len;
1173 }
1174
1175 /* valid_rx_sz must be 0 now... */
1176 if (valid_rx_sz)
1177 dev_err(&cldev->dev,
1178 "More data in the buffer although we read it all\n");
1179
1180 __free_page(p);
1181 }
1182
iwl_mei_handle_sap_rx(struct mei_cl_device * cldev,struct iwl_sap_q_ctrl_blk * notif_q,const u8 * q_head,struct sk_buff_head * skbs,u32 q_sz)1183 static void iwl_mei_handle_sap_rx(struct mei_cl_device *cldev,
1184 struct iwl_sap_q_ctrl_blk *notif_q,
1185 const u8 *q_head,
1186 struct sk_buff_head *skbs,
1187 u32 q_sz)
1188 {
1189 u32 rd = le32_to_cpu(READ_ONCE(notif_q->rd_ptr));
1190 u32 wr = le32_to_cpu(READ_ONCE(notif_q->wr_ptr));
1191 ssize_t valid_rx_sz;
1192
1193 if (rd > q_sz || wr > q_sz) {
1194 dev_err(&cldev->dev,
1195 "Pointers are past the buffer limit\n");
1196 return;
1197 }
1198
1199 if (rd == wr)
1200 return;
1201
1202 valid_rx_sz = wr > rd ? wr - rd : q_sz - rd + wr;
1203
1204 if (skbs)
1205 iwl_mei_handle_sap_data(cldev, q_head, q_sz, rd, wr,
1206 valid_rx_sz, skbs);
1207 else
1208 iwl_mei_handle_sap_rx_cmd(cldev, q_head, q_sz, rd, wr,
1209 valid_rx_sz);
1210
1211 /* Increment the read pointer to point to the write pointer */
1212 WRITE_ONCE(notif_q->rd_ptr, cpu_to_le32(wr));
1213 }
1214
iwl_mei_handle_check_shared_area(struct mei_cl_device * cldev)1215 static void iwl_mei_handle_check_shared_area(struct mei_cl_device *cldev)
1216 {
1217 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
1218 struct iwl_sap_q_ctrl_blk *notif_q;
1219 struct sk_buff_head tx_skbs;
1220 struct iwl_sap_dir *dir;
1221 void *q_head;
1222 u32 q_sz;
1223
1224 if (!mei->shared_mem.ctrl)
1225 return;
1226
1227 dir = &mei->shared_mem.ctrl->dir[SAP_DIRECTION_ME_TO_HOST];
1228 notif_q = &dir->q_ctrl_blk[SAP_QUEUE_IDX_NOTIF];
1229 q_head = mei->shared_mem.q_head[SAP_DIRECTION_ME_TO_HOST][SAP_QUEUE_IDX_NOTIF];
1230 q_sz = mei->shared_mem.q_size[SAP_DIRECTION_ME_TO_HOST][SAP_QUEUE_IDX_NOTIF];
1231
1232 /*
1233 * Do not hold the mutex here, but rather each and every message
1234 * handler takes it.
1235 * This allows message handlers to take it at a certain time.
1236 */
1237 iwl_mei_handle_sap_rx(cldev, notif_q, q_head, NULL, q_sz);
1238
1239 mutex_lock(&iwl_mei_mutex);
1240 dir = &mei->shared_mem.ctrl->dir[SAP_DIRECTION_ME_TO_HOST];
1241 notif_q = &dir->q_ctrl_blk[SAP_QUEUE_IDX_DATA];
1242 q_head = mei->shared_mem.q_head[SAP_DIRECTION_ME_TO_HOST][SAP_QUEUE_IDX_DATA];
1243 q_sz = mei->shared_mem.q_size[SAP_DIRECTION_ME_TO_HOST][SAP_QUEUE_IDX_DATA];
1244
1245 __skb_queue_head_init(&tx_skbs);
1246
1247 iwl_mei_handle_sap_rx(cldev, notif_q, q_head, &tx_skbs, q_sz);
1248
1249 if (skb_queue_empty(&tx_skbs)) {
1250 mutex_unlock(&iwl_mei_mutex);
1251 return;
1252 }
1253
1254 /*
1255 * Take the RCU read lock before we unlock the mutex to make sure that
1256 * even if the netdev is replaced by another non-NULL netdev right after
1257 * we unlock the mutex, the old netdev will still be valid when we
1258 * transmit the frames. We can't allow to replace the netdev here because
1259 * the skbs hold a pointer to the netdev.
1260 */
1261 rcu_read_lock();
1262
1263 mutex_unlock(&iwl_mei_mutex);
1264
1265 if (!rcu_access_pointer(iwl_mei_cache.netdev)) {
1266 dev_err(&cldev->dev, "Can't Tx without a netdev\n");
1267 skb_queue_purge(&tx_skbs);
1268 goto out;
1269 }
1270
1271 while (!skb_queue_empty(&tx_skbs)) {
1272 struct sk_buff *skb = __skb_dequeue(&tx_skbs);
1273
1274 trace_iwlmei_sap_data(skb, IWL_SAP_RX_DATA_TO_AIR);
1275 dev_queue_xmit(skb);
1276 }
1277
1278 out:
1279 rcu_read_unlock();
1280 }
1281
iwl_mei_rx(struct mei_cl_device * cldev)1282 static void iwl_mei_rx(struct mei_cl_device *cldev)
1283 {
1284 struct iwl_sap_me_msg_hdr *hdr;
1285 u8 msg[100];
1286 ssize_t ret;
1287
1288 ret = mei_cldev_recv(cldev, (u8 *)&msg, sizeof(msg));
1289 if (ret < 0) {
1290 dev_err(&cldev->dev, "failed to receive data: %zd\n", ret);
1291 return;
1292 }
1293
1294 if (ret == 0) {
1295 dev_err(&cldev->dev, "got an empty response\n");
1296 return;
1297 }
1298
1299 hdr = (void *)msg;
1300 trace_iwlmei_me_msg(hdr, false);
1301
1302 switch (le32_to_cpu(hdr->type)) {
1303 case SAP_ME_MSG_START_OK:
1304 BUILD_BUG_ON(sizeof(struct iwl_sap_me_msg_start_ok) >
1305 sizeof(msg));
1306
1307 iwl_mei_handle_rx_start_ok(cldev, (void *)msg, ret);
1308 break;
1309 case SAP_ME_MSG_CHECK_SHARED_AREA:
1310 iwl_mei_handle_check_shared_area(cldev);
1311 break;
1312 default:
1313 dev_err(&cldev->dev, "got a RX notification: %d\n",
1314 le32_to_cpu(hdr->type));
1315 break;
1316 }
1317 }
1318
iwl_mei_send_start(struct mei_cl_device * cldev)1319 static int iwl_mei_send_start(struct mei_cl_device *cldev)
1320 {
1321 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
1322 struct iwl_sap_me_msg_start msg = {
1323 .hdr.type = cpu_to_le32(SAP_ME_MSG_START),
1324 .hdr.seq_num = cpu_to_le32(atomic_inc_return(&mei->seq_no)),
1325 .hdr.len = cpu_to_le32(sizeof(msg)),
1326 .supported_versions[0] = iwl_mei_cache.sap_version,
1327 .init_data_seq_num = cpu_to_le16(0x100),
1328 .init_notif_seq_num = cpu_to_le16(0x800),
1329 };
1330 int ret;
1331
1332 trace_iwlmei_me_msg(&msg.hdr, true);
1333 ret = mei_cldev_send(cldev, (void *)&msg, sizeof(msg));
1334 if (ret != sizeof(msg)) {
1335 dev_err(&cldev->dev,
1336 "failed to send the SAP_ME_MSG_START message %d\n",
1337 ret);
1338 return ret;
1339 }
1340
1341 return 0;
1342 }
1343
iwl_mei_enable(struct mei_cl_device * cldev)1344 static int iwl_mei_enable(struct mei_cl_device *cldev)
1345 {
1346 int ret;
1347
1348 ret = mei_cldev_enable(cldev);
1349 if (ret < 0) {
1350 dev_err(&cldev->dev, "failed to enable the device: %d\n", ret);
1351 return ret;
1352 }
1353
1354 ret = mei_cldev_register_rx_cb(cldev, iwl_mei_rx);
1355 if (ret) {
1356 dev_err(&cldev->dev,
1357 "failed to register to the rx cb: %d\n", ret);
1358 mei_cldev_disable(cldev);
1359 return ret;
1360 }
1361
1362 return 0;
1363 }
1364
iwl_mei_get_nvm(void)1365 struct iwl_mei_nvm *iwl_mei_get_nvm(void)
1366 {
1367 struct iwl_mei_nvm *nvm = NULL;
1368 struct iwl_mei *mei;
1369 int ret;
1370
1371 mutex_lock(&iwl_mei_mutex);
1372
1373 if (!iwl_mei_is_connected())
1374 goto out;
1375
1376 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1377
1378 if (!mei)
1379 goto out;
1380
1381 ret = iwl_mei_send_sap_msg(iwl_mei_global_cldev,
1382 SAP_MSG_NOTIF_GET_NVM);
1383 if (ret)
1384 goto out;
1385
1386 mutex_unlock(&iwl_mei_mutex);
1387
1388 ret = wait_event_timeout(mei->get_nvm_wq, mei->nvm, 2 * HZ);
1389 if (!ret)
1390 return NULL;
1391
1392 mutex_lock(&iwl_mei_mutex);
1393
1394 if (!iwl_mei_is_connected())
1395 goto out;
1396
1397 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1398
1399 if (!mei)
1400 goto out;
1401
1402 if (mei->nvm)
1403 nvm = kmemdup(mei->nvm, sizeof(*mei->nvm), GFP_KERNEL);
1404
1405 out:
1406 mutex_unlock(&iwl_mei_mutex);
1407 return nvm;
1408 }
1409 EXPORT_SYMBOL_GPL(iwl_mei_get_nvm);
1410
1411 #define IWL_MEI_PLDR_NUM_RETRIES 3
1412
iwl_mei_pldr_req(void)1413 int iwl_mei_pldr_req(void)
1414 {
1415 struct iwl_mei *mei;
1416 int ret;
1417 struct iwl_sap_pldr_data msg = {
1418 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_PLDR),
1419 .hdr.len = cpu_to_le16(sizeof(msg) - sizeof(msg.hdr)),
1420 };
1421 int i;
1422
1423 mutex_lock(&iwl_mei_mutex);
1424
1425 /* In case we didn't have a bind */
1426 if (!iwl_mei_is_connected()) {
1427 ret = 0;
1428 goto out;
1429 }
1430
1431 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1432
1433 if (!mei) {
1434 ret = -ENODEV;
1435 goto out;
1436 }
1437
1438 if (!mei->amt_enabled) {
1439 ret = 0;
1440 goto out;
1441 }
1442
1443 for (i = 0; i < IWL_MEI_PLDR_NUM_RETRIES; i++) {
1444 ret = iwl_mei_send_sap_msg_payload(mei->cldev, &msg.hdr);
1445 mutex_unlock(&iwl_mei_mutex);
1446 if (ret)
1447 return ret;
1448
1449 ret = wait_event_timeout(mei->pldr_wq, mei->pldr_active, HZ / 2);
1450 if (ret)
1451 break;
1452
1453 /* Take the mutex for the next iteration */
1454 mutex_lock(&iwl_mei_mutex);
1455 }
1456
1457 if (ret)
1458 return 0;
1459
1460 ret = -ETIMEDOUT;
1461 out:
1462 mutex_unlock(&iwl_mei_mutex);
1463 return ret;
1464 }
1465 EXPORT_SYMBOL_GPL(iwl_mei_pldr_req);
1466
iwl_mei_get_ownership(void)1467 int iwl_mei_get_ownership(void)
1468 {
1469 struct iwl_mei *mei;
1470 int ret;
1471
1472 mutex_lock(&iwl_mei_mutex);
1473
1474 /* In case we didn't have a bind */
1475 if (!iwl_mei_is_connected()) {
1476 ret = 0;
1477 goto out;
1478 }
1479
1480 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1481
1482 if (!mei) {
1483 ret = -ENODEV;
1484 goto out;
1485 }
1486
1487 if (!mei->amt_enabled) {
1488 ret = 0;
1489 goto out;
1490 }
1491
1492 if (mei->got_ownership) {
1493 ret = 0;
1494 goto out;
1495 }
1496
1497 ret = iwl_mei_send_sap_msg(mei->cldev,
1498 SAP_MSG_NOTIF_HOST_ASKS_FOR_NIC_OWNERSHIP);
1499 if (ret)
1500 goto out;
1501
1502 mutex_unlock(&iwl_mei_mutex);
1503
1504 ret = wait_event_timeout(mei->get_ownership_wq,
1505 mei->got_ownership, HZ / 2);
1506 if (!ret) {
1507 schedule_delayed_work(&mei->ownership_dwork,
1508 MEI_OWNERSHIP_RETAKE_TIMEOUT_MS);
1509 return -ETIMEDOUT;
1510 }
1511
1512 return 0;
1513 out:
1514 mutex_unlock(&iwl_mei_mutex);
1515 return ret;
1516 }
1517 EXPORT_SYMBOL_GPL(iwl_mei_get_ownership);
1518
iwl_mei_alive_notif(bool success)1519 void iwl_mei_alive_notif(bool success)
1520 {
1521 struct iwl_mei *mei;
1522 struct iwl_sap_pldr_end_data msg = {
1523 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_PLDR_END),
1524 .hdr.len = cpu_to_le16(sizeof(msg) - sizeof(msg.hdr)),
1525 .status = success ? cpu_to_le32(SAP_PLDR_STATUS_SUCCESS) :
1526 cpu_to_le32(SAP_PLDR_STATUS_FAILURE),
1527 };
1528
1529 mutex_lock(&iwl_mei_mutex);
1530
1531 if (!iwl_mei_is_connected())
1532 goto out;
1533
1534 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1535 if (!mei || !mei->pldr_active)
1536 goto out;
1537
1538 mei->pldr_active = false;
1539
1540 iwl_mei_send_sap_msg_payload(mei->cldev, &msg.hdr);
1541 out:
1542 mutex_unlock(&iwl_mei_mutex);
1543 }
1544 EXPORT_SYMBOL_GPL(iwl_mei_alive_notif);
1545
iwl_mei_host_associated(const struct iwl_mei_conn_info * conn_info,const struct iwl_mei_colloc_info * colloc_info)1546 void iwl_mei_host_associated(const struct iwl_mei_conn_info *conn_info,
1547 const struct iwl_mei_colloc_info *colloc_info)
1548 {
1549 struct iwl_sap_notif_host_link_up msg = {
1550 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_HOST_LINK_UP),
1551 .hdr.len = cpu_to_le16(sizeof(msg) - sizeof(msg.hdr)),
1552 .conn_info = {
1553 .ssid_len = cpu_to_le32(conn_info->ssid_len),
1554 .channel = conn_info->channel,
1555 .band = conn_info->band,
1556 .pairwise_cipher = cpu_to_le32(conn_info->pairwise_cipher),
1557 .auth_mode = cpu_to_le32(conn_info->auth_mode),
1558 },
1559 };
1560 struct iwl_mei *mei;
1561
1562 if (conn_info->ssid_len > ARRAY_SIZE(msg.conn_info.ssid))
1563 return;
1564
1565 memcpy(msg.conn_info.ssid, conn_info->ssid, conn_info->ssid_len);
1566 memcpy(msg.conn_info.bssid, conn_info->bssid, ETH_ALEN);
1567
1568 if (colloc_info) {
1569 msg.colloc_channel = colloc_info->channel;
1570 msg.colloc_band = colloc_info->channel <= 14 ? 0 : 1;
1571 memcpy(msg.colloc_bssid, colloc_info->bssid, ETH_ALEN);
1572 }
1573
1574 mutex_lock(&iwl_mei_mutex);
1575
1576 if (!iwl_mei_is_connected())
1577 goto out;
1578
1579 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1580
1581 if (!mei || !mei->amt_enabled)
1582 goto out;
1583
1584 iwl_mei_send_sap_msg_payload(mei->cldev, &msg.hdr);
1585
1586 out:
1587 kfree(iwl_mei_cache.conn_info);
1588 iwl_mei_cache.conn_info =
1589 kmemdup(&msg.conn_info, sizeof(msg.conn_info), GFP_KERNEL);
1590 mutex_unlock(&iwl_mei_mutex);
1591 }
1592 EXPORT_SYMBOL_GPL(iwl_mei_host_associated);
1593
iwl_mei_host_disassociated(void)1594 void iwl_mei_host_disassociated(void)
1595 {
1596 struct iwl_mei *mei;
1597 struct iwl_sap_notif_host_link_down msg = {
1598 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_HOST_LINK_DOWN),
1599 .hdr.len = cpu_to_le16(sizeof(msg) - sizeof(msg.hdr)),
1600 .type = HOST_LINK_DOWN_TYPE_TEMPORARY,
1601 };
1602
1603 mutex_lock(&iwl_mei_mutex);
1604
1605 if (!iwl_mei_is_connected())
1606 goto out;
1607
1608 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1609
1610 if (!mei || !mei->amt_enabled)
1611 goto out;
1612
1613 iwl_mei_send_sap_msg_payload(mei->cldev, &msg.hdr);
1614
1615 out:
1616 kfree(iwl_mei_cache.conn_info);
1617 iwl_mei_cache.conn_info = NULL;
1618 mutex_unlock(&iwl_mei_mutex);
1619 }
1620 EXPORT_SYMBOL_GPL(iwl_mei_host_disassociated);
1621
iwl_mei_set_rfkill_state(bool hw_rfkill,bool sw_rfkill)1622 void iwl_mei_set_rfkill_state(bool hw_rfkill, bool sw_rfkill)
1623 {
1624 struct iwl_mei *mei;
1625 u32 rfkill_state = 0;
1626 struct iwl_sap_msg_dw msg = {
1627 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_RADIO_STATE),
1628 .hdr.len = cpu_to_le16(sizeof(msg) - sizeof(msg.hdr)),
1629 };
1630
1631 if (!sw_rfkill)
1632 rfkill_state |= SAP_SW_RFKILL_DEASSERTED;
1633
1634 if (!hw_rfkill)
1635 rfkill_state |= SAP_HW_RFKILL_DEASSERTED;
1636
1637 mutex_lock(&iwl_mei_mutex);
1638
1639 if (!iwl_mei_is_connected())
1640 goto out;
1641
1642 msg.val = cpu_to_le32(rfkill_state);
1643
1644 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1645
1646 if (!mei || !mei->amt_enabled)
1647 goto out;
1648
1649 iwl_mei_send_sap_msg_payload(mei->cldev, &msg.hdr);
1650
1651 out:
1652 iwl_mei_cache.rf_kill = rfkill_state;
1653 mutex_unlock(&iwl_mei_mutex);
1654 }
1655 EXPORT_SYMBOL_GPL(iwl_mei_set_rfkill_state);
1656
iwl_mei_set_nic_info(const u8 * mac_address,const u8 * nvm_address)1657 void iwl_mei_set_nic_info(const u8 *mac_address, const u8 *nvm_address)
1658 {
1659 struct iwl_mei *mei;
1660 struct iwl_sap_notif_host_nic_info msg = {
1661 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_NIC_INFO),
1662 .hdr.len = cpu_to_le16(sizeof(msg) - sizeof(msg.hdr)),
1663 };
1664
1665 mutex_lock(&iwl_mei_mutex);
1666
1667 if (!iwl_mei_is_connected())
1668 goto out;
1669
1670 ether_addr_copy(msg.mac_address, mac_address);
1671 ether_addr_copy(msg.nvm_address, nvm_address);
1672
1673 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1674
1675 if (!mei || !mei->amt_enabled)
1676 goto out;
1677
1678 iwl_mei_send_sap_msg_payload(mei->cldev, &msg.hdr);
1679
1680 out:
1681 ether_addr_copy(iwl_mei_cache.mac_address, mac_address);
1682 ether_addr_copy(iwl_mei_cache.nvm_address, nvm_address);
1683 mutex_unlock(&iwl_mei_mutex);
1684 }
1685 EXPORT_SYMBOL_GPL(iwl_mei_set_nic_info);
1686
iwl_mei_set_country_code(u16 mcc)1687 void iwl_mei_set_country_code(u16 mcc)
1688 {
1689 struct iwl_mei *mei;
1690 struct iwl_sap_notif_country_code msg = {
1691 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_COUNTRY_CODE),
1692 .hdr.len = cpu_to_le16(sizeof(msg) - sizeof(msg.hdr)),
1693 .mcc = cpu_to_le16(mcc),
1694 };
1695
1696 mutex_lock(&iwl_mei_mutex);
1697
1698 if (!iwl_mei_is_connected())
1699 goto out;
1700
1701 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1702
1703 if (!mei || !mei->amt_enabled)
1704 goto out;
1705
1706 iwl_mei_send_sap_msg_payload(mei->cldev, &msg.hdr);
1707
1708 out:
1709 iwl_mei_cache.mcc = mcc;
1710 mutex_unlock(&iwl_mei_mutex);
1711 }
1712 EXPORT_SYMBOL_GPL(iwl_mei_set_country_code);
1713
iwl_mei_set_power_limit(const __le16 * power_limit)1714 void iwl_mei_set_power_limit(const __le16 *power_limit)
1715 {
1716 struct iwl_mei *mei;
1717 struct iwl_sap_notif_sar_limits msg = {
1718 .hdr.type = cpu_to_le16(SAP_MSG_NOTIF_SAR_LIMITS),
1719 .hdr.len = cpu_to_le16(sizeof(msg) - sizeof(msg.hdr)),
1720 };
1721
1722 mutex_lock(&iwl_mei_mutex);
1723
1724 if (!iwl_mei_is_connected())
1725 goto out;
1726
1727 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1728
1729 if (!mei || !mei->amt_enabled)
1730 goto out;
1731
1732 memcpy(msg.sar_chain_info_table, power_limit, sizeof(msg.sar_chain_info_table));
1733
1734 iwl_mei_send_sap_msg_payload(mei->cldev, &msg.hdr);
1735
1736 out:
1737 kfree(iwl_mei_cache.power_limit);
1738 iwl_mei_cache.power_limit = kmemdup(power_limit,
1739 sizeof(msg.sar_chain_info_table), GFP_KERNEL);
1740 mutex_unlock(&iwl_mei_mutex);
1741 }
1742 EXPORT_SYMBOL_GPL(iwl_mei_set_power_limit);
1743
iwl_mei_set_netdev(struct net_device * netdev)1744 void iwl_mei_set_netdev(struct net_device *netdev)
1745 {
1746 struct iwl_mei *mei;
1747
1748 mutex_lock(&iwl_mei_mutex);
1749
1750 if (!iwl_mei_is_connected()) {
1751 rcu_assign_pointer(iwl_mei_cache.netdev, netdev);
1752 goto out;
1753 }
1754
1755 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1756
1757 if (!mei)
1758 goto out;
1759
1760 if (!netdev) {
1761 struct net_device *dev =
1762 rcu_dereference_protected(iwl_mei_cache.netdev,
1763 lockdep_is_held(&iwl_mei_mutex));
1764
1765 if (!dev)
1766 goto out;
1767
1768 netdev_rx_handler_unregister(dev);
1769 }
1770
1771 rcu_assign_pointer(iwl_mei_cache.netdev, netdev);
1772
1773 if (netdev && mei->amt_enabled)
1774 netdev_rx_handler_register(netdev, iwl_mei_rx_handler, mei);
1775
1776 out:
1777 mutex_unlock(&iwl_mei_mutex);
1778 }
1779 EXPORT_SYMBOL_GPL(iwl_mei_set_netdev);
1780
iwl_mei_device_state(bool up)1781 void iwl_mei_device_state(bool up)
1782 {
1783 struct iwl_mei *mei;
1784
1785 mutex_lock(&iwl_mei_mutex);
1786
1787 if (!iwl_mei_is_connected())
1788 goto out;
1789
1790 mei = mei_cldev_get_drvdata(iwl_mei_global_cldev);
1791
1792 if (!mei)
1793 goto out;
1794
1795 mei->device_down = !up;
1796
1797 if (up || !mei->csme_taking_ownership)
1798 goto out;
1799
1800 iwl_mei_send_sap_msg(mei->cldev,
1801 SAP_MSG_NOTIF_CSME_OWNERSHIP_CONFIRMED);
1802 mei->csme_taking_ownership = false;
1803 schedule_delayed_work(&mei->ownership_dwork,
1804 MEI_OWNERSHIP_RETAKE_TIMEOUT_MS);
1805 out:
1806 mutex_unlock(&iwl_mei_mutex);
1807 }
1808 EXPORT_SYMBOL_GPL(iwl_mei_device_state);
1809
iwl_mei_register(void * priv,const struct iwl_mei_ops * ops)1810 int iwl_mei_register(void *priv, const struct iwl_mei_ops *ops)
1811 {
1812 int ret;
1813
1814 /*
1815 * We must have a non-NULL priv pointer to not crash when there are
1816 * multiple WiFi devices.
1817 */
1818 if (!priv)
1819 return -EINVAL;
1820
1821 mutex_lock(&iwl_mei_mutex);
1822
1823 /* do not allow registration if someone else already registered */
1824 if (iwl_mei_cache.priv || iwl_mei_cache.ops) {
1825 ret = -EBUSY;
1826 goto out;
1827 }
1828
1829 iwl_mei_cache.priv = priv;
1830 iwl_mei_cache.ops = ops;
1831
1832 if (iwl_mei_global_cldev) {
1833 struct iwl_mei *mei =
1834 mei_cldev_get_drvdata(iwl_mei_global_cldev);
1835
1836 /* we have already a SAP connection */
1837 if (iwl_mei_is_connected()) {
1838 if (mei->amt_enabled)
1839 iwl_mei_send_sap_msg(mei->cldev,
1840 SAP_MSG_NOTIF_WIFIDR_UP);
1841 ops->rfkill(priv, mei->link_prot_state, false);
1842 }
1843 }
1844 ret = 0;
1845
1846 out:
1847 mutex_unlock(&iwl_mei_mutex);
1848 return ret;
1849 }
1850 EXPORT_SYMBOL_GPL(iwl_mei_register);
1851
iwl_mei_start_unregister(void)1852 void iwl_mei_start_unregister(void)
1853 {
1854 mutex_lock(&iwl_mei_mutex);
1855
1856 /* At this point, the wifi driver should have removed the netdev */
1857 if (rcu_access_pointer(iwl_mei_cache.netdev))
1858 pr_err("Still had a netdev pointer set upon unregister\n");
1859
1860 kfree(iwl_mei_cache.conn_info);
1861 iwl_mei_cache.conn_info = NULL;
1862 kfree(iwl_mei_cache.power_limit);
1863 iwl_mei_cache.power_limit = NULL;
1864 iwl_mei_cache.ops = NULL;
1865 /* leave iwl_mei_cache.priv non-NULL to prevent any new registration */
1866
1867 mutex_unlock(&iwl_mei_mutex);
1868 }
1869 EXPORT_SYMBOL_GPL(iwl_mei_start_unregister);
1870
iwl_mei_unregister_complete(void)1871 void iwl_mei_unregister_complete(void)
1872 {
1873 mutex_lock(&iwl_mei_mutex);
1874
1875 iwl_mei_cache.priv = NULL;
1876
1877 if (iwl_mei_global_cldev) {
1878 struct iwl_mei *mei =
1879 mei_cldev_get_drvdata(iwl_mei_global_cldev);
1880
1881 if (mei->amt_enabled)
1882 iwl_mei_send_sap_msg(mei->cldev,
1883 SAP_MSG_NOTIF_WIFIDR_DOWN);
1884 mei->got_ownership = false;
1885 }
1886
1887 mutex_unlock(&iwl_mei_mutex);
1888 }
1889 EXPORT_SYMBOL_GPL(iwl_mei_unregister_complete);
1890
1891 #if IS_ENABLED(CONFIG_DEBUG_FS)
1892
1893 static ssize_t
iwl_mei_dbgfs_send_start_message_write(struct file * file,const char __user * user_buf,size_t count,loff_t * ppos)1894 iwl_mei_dbgfs_send_start_message_write(struct file *file,
1895 const char __user *user_buf,
1896 size_t count, loff_t *ppos)
1897 {
1898 int ret;
1899
1900 mutex_lock(&iwl_mei_mutex);
1901
1902 if (!iwl_mei_global_cldev) {
1903 ret = -ENODEV;
1904 goto out;
1905 }
1906
1907 ret = iwl_mei_send_start(iwl_mei_global_cldev);
1908
1909 out:
1910 mutex_unlock(&iwl_mei_mutex);
1911 return ret ?: count;
1912 }
1913
1914 static const struct file_operations iwl_mei_dbgfs_send_start_message_ops = {
1915 .write = iwl_mei_dbgfs_send_start_message_write,
1916 .open = simple_open,
1917 .llseek = default_llseek,
1918 };
1919
iwl_mei_dbgfs_req_ownership_write(struct file * file,const char __user * user_buf,size_t count,loff_t * ppos)1920 static ssize_t iwl_mei_dbgfs_req_ownership_write(struct file *file,
1921 const char __user *user_buf,
1922 size_t count, loff_t *ppos)
1923 {
1924 iwl_mei_get_ownership();
1925
1926 return count;
1927 }
1928
1929 static const struct file_operations iwl_mei_dbgfs_req_ownership_ops = {
1930 .write = iwl_mei_dbgfs_req_ownership_write,
1931 .open = simple_open,
1932 .llseek = default_llseek,
1933 };
1934
iwl_mei_dbgfs_register(struct iwl_mei * mei)1935 static void iwl_mei_dbgfs_register(struct iwl_mei *mei)
1936 {
1937 mei->dbgfs_dir = debugfs_create_dir(KBUILD_MODNAME, NULL);
1938
1939 if (!mei->dbgfs_dir)
1940 return;
1941
1942 debugfs_create_ulong("status", S_IRUSR,
1943 mei->dbgfs_dir, &iwl_mei_status);
1944 debugfs_create_file("send_start_message", S_IWUSR, mei->dbgfs_dir,
1945 mei, &iwl_mei_dbgfs_send_start_message_ops);
1946 debugfs_create_file("req_ownership", S_IWUSR, mei->dbgfs_dir,
1947 mei, &iwl_mei_dbgfs_req_ownership_ops);
1948 }
1949
iwl_mei_dbgfs_unregister(struct iwl_mei * mei)1950 static void iwl_mei_dbgfs_unregister(struct iwl_mei *mei)
1951 {
1952 debugfs_remove_recursive(mei->dbgfs_dir);
1953 mei->dbgfs_dir = NULL;
1954 }
1955
1956 #else
1957
iwl_mei_dbgfs_register(struct iwl_mei * mei)1958 static void iwl_mei_dbgfs_register(struct iwl_mei *mei) {}
iwl_mei_dbgfs_unregister(struct iwl_mei * mei)1959 static void iwl_mei_dbgfs_unregister(struct iwl_mei *mei) {}
1960
1961 #endif /* CONFIG_DEBUG_FS */
1962
iwl_mei_ownership_dwork(struct work_struct * wk)1963 static void iwl_mei_ownership_dwork(struct work_struct *wk)
1964 {
1965 iwl_mei_get_ownership();
1966 }
1967
1968 #define ALLOC_SHARED_MEM_RETRY_MAX_NUM 3
1969
1970 /*
1971 * iwl_mei_probe - the probe function called by the mei bus enumeration
1972 *
1973 * This allocates the data needed by iwlmei and sets a pointer to this data
1974 * into the mei_cl_device's drvdata.
1975 * It starts the SAP protocol by sending the SAP_ME_MSG_START without
1976 * waiting for the answer. The answer will be caught later by the Rx callback.
1977 */
iwl_mei_probe(struct mei_cl_device * cldev,const struct mei_cl_device_id * id)1978 static int iwl_mei_probe(struct mei_cl_device *cldev,
1979 const struct mei_cl_device_id *id)
1980 {
1981 int alloc_retry = ALLOC_SHARED_MEM_RETRY_MAX_NUM;
1982 struct iwl_mei *mei;
1983 int ret;
1984
1985 mei = devm_kzalloc(&cldev->dev, sizeof(*mei), GFP_KERNEL);
1986 if (!mei)
1987 return -ENOMEM;
1988
1989 init_waitqueue_head(&mei->get_nvm_wq);
1990 INIT_WORK(&mei->send_csa_msg_wk, iwl_mei_send_csa_msg_wk);
1991 INIT_DELAYED_WORK(&mei->csa_throttle_end_wk,
1992 iwl_mei_csa_throttle_end_wk);
1993 init_waitqueue_head(&mei->get_ownership_wq);
1994 init_waitqueue_head(&mei->pldr_wq);
1995 spin_lock_init(&mei->data_q_lock);
1996 INIT_WORK(&mei->netdev_work, iwl_mei_netdev_work);
1997 INIT_DELAYED_WORK(&mei->ownership_dwork, iwl_mei_ownership_dwork);
1998
1999 mei_cldev_set_drvdata(cldev, mei);
2000 mei->cldev = cldev;
2001 mei->device_down = true;
2002
2003 do {
2004 ret = iwl_mei_alloc_shared_mem(cldev);
2005 if (!ret)
2006 break;
2007 /*
2008 * The CSME firmware needs to boot the internal WLAN client.
2009 * This can take time in certain configurations (usually
2010 * upon resume and when the whole CSME firmware is shut down
2011 * during suspend).
2012 *
2013 * Wait a bit before retrying and hope we'll succeed next time.
2014 */
2015
2016 dev_dbg(&cldev->dev,
2017 "Couldn't allocate the shared memory: %d, attempt %d / %d\n",
2018 ret, alloc_retry, ALLOC_SHARED_MEM_RETRY_MAX_NUM);
2019 msleep(100);
2020 alloc_retry--;
2021 } while (alloc_retry);
2022
2023 if (ret) {
2024 dev_err(&cldev->dev, "Couldn't allocate the shared memory: %d\n",
2025 ret);
2026 goto free;
2027 }
2028
2029 iwl_mei_init_shared_mem(mei);
2030
2031 ret = iwl_mei_enable(cldev);
2032 if (ret)
2033 goto free_shared_mem;
2034
2035 iwl_mei_dbgfs_register(mei);
2036
2037 /*
2038 * We now have a Rx function in place, start the SAP protocol
2039 * we expect to get the SAP_ME_MSG_START_OK response later on.
2040 */
2041 mutex_lock(&iwl_mei_mutex);
2042 ret = iwl_mei_send_start(cldev);
2043 mutex_unlock(&iwl_mei_mutex);
2044 if (ret)
2045 goto debugfs_unregister;
2046
2047 /* must be last */
2048 iwl_mei_global_cldev = cldev;
2049
2050 return 0;
2051
2052 debugfs_unregister:
2053 iwl_mei_dbgfs_unregister(mei);
2054 mei_cldev_disable(cldev);
2055 free_shared_mem:
2056 iwl_mei_free_shared_mem(cldev);
2057 free:
2058 mei_cldev_set_drvdata(cldev, NULL);
2059 devm_kfree(&cldev->dev, mei);
2060
2061 return ret;
2062 }
2063
2064 #define SEND_SAP_MAX_WAIT_ITERATION 10
2065 #define IWLMEI_DEVICE_DOWN_WAIT_ITERATION 50
2066
iwl_mei_remove(struct mei_cl_device * cldev)2067 static void iwl_mei_remove(struct mei_cl_device *cldev)
2068 {
2069 struct iwl_mei *mei = mei_cldev_get_drvdata(cldev);
2070 int i;
2071
2072 /*
2073 * We are being removed while the bus is active, it means we are
2074 * going to suspend/ shutdown, so the NIC will disappear.
2075 */
2076 if (mei_cldev_enabled(cldev) && iwl_mei_cache.ops) {
2077 unsigned int iter = IWLMEI_DEVICE_DOWN_WAIT_ITERATION;
2078 bool down = false;
2079
2080 /*
2081 * In case of suspend, wait for the mac to stop and don't remove
2082 * the interface. This will allow the interface to come back
2083 * on resume.
2084 */
2085 while (!down && iter--) {
2086 mdelay(1);
2087
2088 mutex_lock(&iwl_mei_mutex);
2089 down = mei->device_down;
2090 mutex_unlock(&iwl_mei_mutex);
2091 }
2092
2093 if (!down)
2094 iwl_mei_cache.ops->nic_stolen(iwl_mei_cache.priv);
2095 }
2096
2097 if (rcu_access_pointer(iwl_mei_cache.netdev)) {
2098 struct net_device *dev;
2099
2100 /*
2101 * First take rtnl and only then the mutex to avoid an ABBA
2102 * with iwl_mei_set_netdev()
2103 */
2104 rtnl_lock();
2105 mutex_lock(&iwl_mei_mutex);
2106
2107 /*
2108 * If we are suspending and the wifi driver hasn't removed it's netdev
2109 * yet, do it now. In any case, don't change the cache.netdev pointer.
2110 */
2111 dev = rcu_dereference_protected(iwl_mei_cache.netdev,
2112 lockdep_is_held(&iwl_mei_mutex));
2113
2114 netdev_rx_handler_unregister(dev);
2115 mutex_unlock(&iwl_mei_mutex);
2116 rtnl_unlock();
2117 }
2118
2119 mutex_lock(&iwl_mei_mutex);
2120
2121 /* Tell CSME that we are going down so that it won't access the
2122 * memory anymore, make sure this message goes through immediately.
2123 */
2124 mei->csa_throttled = false;
2125 iwl_mei_send_sap_msg(mei->cldev,
2126 SAP_MSG_NOTIF_HOST_GOES_DOWN);
2127
2128 for (i = 0; i < SEND_SAP_MAX_WAIT_ITERATION; i++) {
2129 if (!iwl_mei_host_to_me_data_pending(mei))
2130 break;
2131
2132 msleep(20);
2133 }
2134
2135 /* If we couldn't make sure that CSME saw the HOST_GOES_DOWN
2136 * message, it means that it will probably keep reading memory
2137 * that we are going to unmap and free, expect IOMMU error
2138 * messages.
2139 */
2140 if (i == SEND_SAP_MAX_WAIT_ITERATION)
2141 dev_err(&mei->cldev->dev,
2142 "Couldn't get ACK from CSME on HOST_GOES_DOWN message\n");
2143
2144 mutex_unlock(&iwl_mei_mutex);
2145
2146 /*
2147 * This looks strange, but this lock is taken here to make sure that
2148 * iwl_mei_add_data_to_ring called from the Tx path sees that we
2149 * clear the IWL_MEI_STATUS_SAP_CONNECTED bit.
2150 * Rx isn't a problem because the rx_handler can't be called after
2151 * having been unregistered.
2152 */
2153 spin_lock_bh(&mei->data_q_lock);
2154 clear_bit(IWL_MEI_STATUS_SAP_CONNECTED, &iwl_mei_status);
2155 spin_unlock_bh(&mei->data_q_lock);
2156
2157 if (iwl_mei_cache.ops)
2158 iwl_mei_cache.ops->rfkill(iwl_mei_cache.priv, false, false);
2159
2160 /*
2161 * mei_cldev_disable will return only after all the MEI Rx is done.
2162 * It must be called when iwl_mei_mutex is *not* held, since it waits
2163 * for our Rx handler to complete.
2164 * After it returns, no new Rx will start.
2165 */
2166 mei_cldev_disable(cldev);
2167
2168 /*
2169 * Since the netdev was already removed and the netdev's removal
2170 * includes a call to synchronize_net() so that we know there won't be
2171 * any new Rx that will trigger the following workers.
2172 */
2173 cancel_work_sync(&mei->send_csa_msg_wk);
2174 cancel_delayed_work_sync(&mei->csa_throttle_end_wk);
2175 cancel_work_sync(&mei->netdev_work);
2176 cancel_delayed_work_sync(&mei->ownership_dwork);
2177
2178 /*
2179 * If someone waits for the ownership, let him know that we are going
2180 * down and that we are not connected anymore. He'll be able to take
2181 * the device.
2182 */
2183 wake_up_all(&mei->get_ownership_wq);
2184 wake_up_all(&mei->pldr_wq);
2185
2186 mutex_lock(&iwl_mei_mutex);
2187
2188 iwl_mei_global_cldev = NULL;
2189
2190 wake_up_all(&mei->get_nvm_wq);
2191
2192 iwl_mei_free_shared_mem(cldev);
2193
2194 iwl_mei_dbgfs_unregister(mei);
2195
2196 mei_cldev_set_drvdata(cldev, NULL);
2197
2198 kfree(mei->nvm);
2199
2200 kfree(rcu_access_pointer(mei->filters));
2201
2202 devm_kfree(&cldev->dev, mei);
2203
2204 mutex_unlock(&iwl_mei_mutex);
2205 }
2206
2207 static const struct mei_cl_device_id iwl_mei_tbl[] = {
2208 {
2209 .name = KBUILD_MODNAME,
2210 .uuid = MEI_WLAN_UUID,
2211 .version = MEI_CL_VERSION_ANY,
2212 },
2213
2214 /* required last entry */
2215 { }
2216 };
2217
2218 /*
2219 * Do not export the device table because this module is loaded by
2220 * iwlwifi's dependency.
2221 */
2222
2223 static struct mei_cl_driver iwl_mei_cl_driver = {
2224 .id_table = iwl_mei_tbl,
2225 .name = KBUILD_MODNAME,
2226 .probe = iwl_mei_probe,
2227 .remove = iwl_mei_remove,
2228 };
2229
2230 module_mei_cl_driver(iwl_mei_cl_driver);
2231