1// SPDX-License-Identifier: ISC
2/*
3 * Copyright (c) 2012-2017 Qualcomm Atheros, Inc.
4 * Copyright (c) 2018-2019, The Linux Foundation. All rights reserved.
5 */
6
7#include <linux/module.h>
8#include <linux/debugfs.h>
9#include <linux/seq_file.h>
10#include <linux/pci.h>
11#include <linux/rtnetlink.h>
12#include <linux/power_supply.h>
13#include "wil6210.h"
14#include "wmi.h"
15#include "txrx.h"
16#include "pmc.h"
17
18/* Nasty hack. Better have per device instances */
19static u32 mem_addr;
20static u32 dbg_txdesc_index;
21static u32 dbg_ring_index; /* 24+ for Rx, 0..23 for Tx */
22static u32 dbg_status_msg_index;
23/* 0..wil->num_rx_status_rings-1 for Rx, wil->tx_sring_idx for Tx */
24static u32 dbg_sring_index;
25
26enum dbg_off_type {
27	doff_u32 = 0,
28	doff_x32 = 1,
29	doff_ulong = 2,
30	doff_io32 = 3,
31	doff_u8 = 4
32};
33
34/* offset to "wil" */
35struct dbg_off {
36	const char *name;
37	umode_t mode;
38	ulong off;
39	enum dbg_off_type type;
40};
41
42static void wil_print_desc_edma(struct seq_file *s, struct wil6210_priv *wil,
43				struct wil_ring *ring,
44				char _s, char _h, int idx)
45{
46	u8 num_of_descs;
47	bool has_skb = false;
48
49	if (ring->is_rx) {
50		struct wil_rx_enhanced_desc *rx_d =
51			(struct wil_rx_enhanced_desc *)
52			&ring->va[idx].rx.enhanced;
53		u16 buff_id = le16_to_cpu(rx_d->mac.buff_id);
54
55		if (wil->rx_buff_mgmt.buff_arr &&
56		    wil_val_in_range(buff_id, 0, wil->rx_buff_mgmt.size))
57			has_skb = wil->rx_buff_mgmt.buff_arr[buff_id].skb;
58		seq_printf(s, "%c", (has_skb) ? _h : _s);
59	} else {
60		struct wil_tx_enhanced_desc *d =
61			(struct wil_tx_enhanced_desc *)
62			&ring->va[idx].tx.enhanced;
63
64		num_of_descs = (u8)d->mac.d[2];
65		has_skb = ring->ctx && ring->ctx[idx].skb;
66		if (num_of_descs >= 1)
67			seq_printf(s, "%c", has_skb ? _h : _s);
68		else
69			/* num_of_descs == 0, it's a frag in a list of descs */
70			seq_printf(s, "%c", has_skb ? 'h' : _s);
71	}
72}
73
74static void wil_print_ring(struct seq_file *s, struct wil6210_priv *wil,
75			   const char *name, struct wil_ring *ring,
76			   char _s, char _h)
77{
78	void __iomem *x;
79	u32 v;
80
81	seq_printf(s, "RING %s = {\n", name);
82	seq_printf(s, "  pa     = %pad\n", &ring->pa);
83	seq_printf(s, "  va     = 0x%p\n", ring->va);
84	seq_printf(s, "  size   = %d\n", ring->size);
85	if (wil->use_enhanced_dma_hw && ring->is_rx)
86		seq_printf(s, "  swtail = %u\n", *ring->edma_rx_swtail.va);
87	else
88		seq_printf(s, "  swtail = %d\n", ring->swtail);
89	seq_printf(s, "  swhead = %d\n", ring->swhead);
90	if (wil->use_enhanced_dma_hw) {
91		int ring_id = ring->is_rx ?
92			WIL_RX_DESC_RING_ID : ring - wil->ring_tx;
93		/* SUBQ_CONS is a table of 32 entries, one for each Q pair.
94		 * lower 16bits are for even ring_id and upper 16bits are for
95		 * odd ring_id
96		 */
97		x = wmi_addr(wil, RGF_DMA_SCM_SUBQ_CONS + 4 * (ring_id / 2));
98		v = readl_relaxed(x);
99
100		v = (ring_id % 2 ? (v >> 16) : (v & 0xffff));
101		seq_printf(s, "  hwhead = %u\n", v);
102	}
103	seq_printf(s, "  hwtail = [0x%08x] -> ", ring->hwtail);
104	x = wmi_addr(wil, ring->hwtail);
105	if (x) {
106		v = readl(x);
107		seq_printf(s, "0x%08x = %d\n", v, v);
108	} else {
109		seq_puts(s, "???\n");
110	}
111
112	if (ring->va && (ring->size <= (1 << WIL_RING_SIZE_ORDER_MAX))) {
113		uint i;
114
115		for (i = 0; i < ring->size; i++) {
116			if ((i % 128) == 0 && i != 0)
117				seq_puts(s, "\n");
118			if (wil->use_enhanced_dma_hw) {
119				wil_print_desc_edma(s, wil, ring, _s, _h, i);
120			} else {
121				volatile struct vring_tx_desc *d =
122					&ring->va[i].tx.legacy;
123				seq_printf(s, "%c", (d->dma.status & BIT(0)) ?
124					   _s : (ring->ctx[i].skb ? _h : 'h'));
125			}
126		}
127		seq_puts(s, "\n");
128	}
129	seq_puts(s, "}\n");
130}
131
132static int ring_show(struct seq_file *s, void *data)
133{
134	uint i;
135	struct wil6210_priv *wil = s->private;
136
137	wil_print_ring(s, wil, "rx", &wil->ring_rx, 'S', '_');
138
139	for (i = 0; i < ARRAY_SIZE(wil->ring_tx); i++) {
140		struct wil_ring *ring = &wil->ring_tx[i];
141		struct wil_ring_tx_data *txdata = &wil->ring_tx_data[i];
142
143		if (ring->va) {
144			int cid = wil->ring2cid_tid[i][0];
145			int tid = wil->ring2cid_tid[i][1];
146			u32 swhead = ring->swhead;
147			u32 swtail = ring->swtail;
148			int used = (ring->size + swhead - swtail)
149				   % ring->size;
150			int avail = ring->size - used - 1;
151			char name[10];
152			char sidle[10];
153			/* performance monitoring */
154			cycles_t now = get_cycles();
155			uint64_t idle = txdata->idle * 100;
156			uint64_t total = now - txdata->begin;
157
158			if (total != 0) {
159				do_div(idle, total);
160				snprintf(sidle, sizeof(sidle), "%3d%%",
161					 (int)idle);
162			} else {
163				snprintf(sidle, sizeof(sidle), "N/A");
164			}
165			txdata->begin = now;
166			txdata->idle = 0ULL;
167
168			snprintf(name, sizeof(name), "tx_%2d", i);
169
170			if (cid < wil->max_assoc_sta)
171				seq_printf(s,
172					   "\n%pM CID %d TID %d 1x%s BACK([%u] %u TU A%s) [%3d|%3d] idle %s\n",
173					   wil->sta[cid].addr, cid, tid,
174					   txdata->dot1x_open ? "+" : "-",
175					   txdata->agg_wsize,
176					   txdata->agg_timeout,
177					   txdata->agg_amsdu ? "+" : "-",
178					   used, avail, sidle);
179			else
180				seq_printf(s,
181					   "\nBroadcast 1x%s [%3d|%3d] idle %s\n",
182					   txdata->dot1x_open ? "+" : "-",
183					   used, avail, sidle);
184
185			wil_print_ring(s, wil, name, ring, '_', 'H');
186		}
187	}
188
189	return 0;
190}
191DEFINE_SHOW_ATTRIBUTE(ring);
192
193static void wil_print_sring(struct seq_file *s, struct wil6210_priv *wil,
194			    struct wil_status_ring *sring)
195{
196	void __iomem *x;
197	int sring_idx = sring - wil->srings;
198	u32 v;
199
200	seq_printf(s, "Status Ring %s [ %d ] = {\n",
201		   sring->is_rx ? "RX" : "TX", sring_idx);
202	seq_printf(s, "  pa     = %pad\n", &sring->pa);
203	seq_printf(s, "  va     = 0x%pK\n", sring->va);
204	seq_printf(s, "  size   = %d\n", sring->size);
205	seq_printf(s, "  elem_size   = %zu\n", sring->elem_size);
206	seq_printf(s, "  swhead = %d\n", sring->swhead);
207	if (wil->use_enhanced_dma_hw) {
208		/* COMPQ_PROD is a table of 32 entries, one for each Q pair.
209		 * lower 16bits are for even ring_id and upper 16bits are for
210		 * odd ring_id
211		 */
212		x = wmi_addr(wil, RGF_DMA_SCM_COMPQ_PROD + 4 * (sring_idx / 2));
213		v = readl_relaxed(x);
214
215		v = (sring_idx % 2 ? (v >> 16) : (v & 0xffff));
216		seq_printf(s, "  hwhead = %u\n", v);
217	}
218	seq_printf(s, "  hwtail = [0x%08x] -> ", sring->hwtail);
219	x = wmi_addr(wil, sring->hwtail);
220	if (x) {
221		v = readl_relaxed(x);
222		seq_printf(s, "0x%08x = %d\n", v, v);
223	} else {
224		seq_puts(s, "???\n");
225	}
226	seq_printf(s, "  desc_rdy_pol   = %d\n", sring->desc_rdy_pol);
227	seq_printf(s, "  invalid_buff_id_cnt   = %d\n",
228		   sring->invalid_buff_id_cnt);
229
230	if (sring->va && (sring->size <= (1 << WIL_RING_SIZE_ORDER_MAX))) {
231		uint i;
232
233		for (i = 0; i < sring->size; i++) {
234			u32 *sdword_0 =
235				(u32 *)(sring->va + (sring->elem_size * i));
236
237			if ((i % 128) == 0 && i != 0)
238				seq_puts(s, "\n");
239			if (i == sring->swhead)
240				seq_printf(s, "%c", (*sdword_0 & BIT(31)) ?
241					   'X' : 'x');
242			else
243				seq_printf(s, "%c", (*sdword_0 & BIT(31)) ?
244					   '1' : '0');
245		}
246		seq_puts(s, "\n");
247	}
248	seq_puts(s, "}\n");
249}
250
251static int srings_show(struct seq_file *s, void *data)
252{
253	struct wil6210_priv *wil = s->private;
254	int i = 0;
255
256	for (i = 0; i < WIL6210_MAX_STATUS_RINGS; i++)
257		if (wil->srings[i].va)
258			wil_print_sring(s, wil, &wil->srings[i]);
259
260	return 0;
261}
262DEFINE_SHOW_ATTRIBUTE(srings);
263
264static void wil_seq_hexdump(struct seq_file *s, void *p, int len,
265			    const char *prefix)
266{
267	seq_hex_dump(s, prefix, DUMP_PREFIX_NONE, 16, 1, p, len, false);
268}
269
270static void wil_print_mbox_ring(struct seq_file *s, const char *prefix,
271				void __iomem *off)
272{
273	struct wil6210_priv *wil = s->private;
274	struct wil6210_mbox_ring r;
275	int rsize;
276	uint i;
277
278	wil_halp_vote(wil);
279
280	if (wil_mem_access_lock(wil)) {
281		wil_halp_unvote(wil);
282		return;
283	}
284
285	wil_memcpy_fromio_32(&r, off, sizeof(r));
286	wil_mbox_ring_le2cpus(&r);
287	/*
288	 * we just read memory block from NIC. This memory may be
289	 * garbage. Check validity before using it.
290	 */
291	rsize = r.size / sizeof(struct wil6210_mbox_ring_desc);
292
293	seq_printf(s, "ring %s = {\n", prefix);
294	seq_printf(s, "  base = 0x%08x\n", r.base);
295	seq_printf(s, "  size = 0x%04x bytes -> %d entries\n", r.size, rsize);
296	seq_printf(s, "  tail = 0x%08x\n", r.tail);
297	seq_printf(s, "  head = 0x%08x\n", r.head);
298	seq_printf(s, "  entry size = %d\n", r.entry_size);
299
300	if (r.size % sizeof(struct wil6210_mbox_ring_desc)) {
301		seq_printf(s, "  ??? size is not multiple of %zd, garbage?\n",
302			   sizeof(struct wil6210_mbox_ring_desc));
303		goto out;
304	}
305
306	if (!wmi_addr(wil, r.base) ||
307	    !wmi_addr(wil, r.tail) ||
308	    !wmi_addr(wil, r.head)) {
309		seq_puts(s, "  ??? pointers are garbage?\n");
310		goto out;
311	}
312
313	for (i = 0; i < rsize; i++) {
314		struct wil6210_mbox_ring_desc d;
315		struct wil6210_mbox_hdr hdr;
316		size_t delta = i * sizeof(d);
317		void __iomem *x = wil->csr + HOSTADDR(r.base) + delta;
318
319		wil_memcpy_fromio_32(&d, x, sizeof(d));
320
321		seq_printf(s, "  [%2x] %s %s%s 0x%08x", i,
322			   d.sync ? "F" : "E",
323			   (r.tail - r.base == delta) ? "t" : " ",
324			   (r.head - r.base == delta) ? "h" : " ",
325			   le32_to_cpu(d.addr));
326		if (0 == wmi_read_hdr(wil, d.addr, &hdr)) {
327			u16 len = le16_to_cpu(hdr.len);
328
329			seq_printf(s, " -> %04x %04x %04x %02x\n",
330				   le16_to_cpu(hdr.seq), len,
331				   le16_to_cpu(hdr.type), hdr.flags);
332			if (len <= MAX_MBOXITEM_SIZE) {
333				unsigned char databuf[MAX_MBOXITEM_SIZE];
334				void __iomem *src = wmi_buffer(wil, d.addr) +
335					sizeof(struct wil6210_mbox_hdr);
336				/*
337				 * No need to check @src for validity -
338				 * we already validated @d.addr while
339				 * reading header
340				 */
341				wil_memcpy_fromio_32(databuf, src, len);
342				wil_seq_hexdump(s, databuf, len, "      : ");
343			}
344		} else {
345			seq_puts(s, "\n");
346		}
347	}
348 out:
349	seq_puts(s, "}\n");
350	wil_mem_access_unlock(wil);
351	wil_halp_unvote(wil);
352}
353
354static int mbox_show(struct seq_file *s, void *data)
355{
356	struct wil6210_priv *wil = s->private;
357	int ret;
358
359	ret = wil_pm_runtime_get(wil);
360	if (ret < 0)
361		return ret;
362
363	wil_print_mbox_ring(s, "tx", wil->csr + HOST_MBOX +
364		       offsetof(struct wil6210_mbox_ctl, tx));
365	wil_print_mbox_ring(s, "rx", wil->csr + HOST_MBOX +
366		       offsetof(struct wil6210_mbox_ctl, rx));
367
368	wil_pm_runtime_put(wil);
369
370	return 0;
371}
372DEFINE_SHOW_ATTRIBUTE(mbox);
373
374static int wil_debugfs_iomem_x32_set(void *data, u64 val)
375{
376	struct wil_debugfs_iomem_data *d = (struct
377					    wil_debugfs_iomem_data *)data;
378	struct wil6210_priv *wil = d->wil;
379	int ret;
380
381	ret = wil_pm_runtime_get(wil);
382	if (ret < 0)
383		return ret;
384
385	writel_relaxed(val, (void __iomem *)d->offset);
386
387	wmb(); /* make sure write propagated to HW */
388
389	wil_pm_runtime_put(wil);
390
391	return 0;
392}
393
394static int wil_debugfs_iomem_x32_get(void *data, u64 *val)
395{
396	struct wil_debugfs_iomem_data *d = (struct
397					    wil_debugfs_iomem_data *)data;
398	struct wil6210_priv *wil = d->wil;
399	int ret;
400
401	ret = wil_pm_runtime_get(wil);
402	if (ret < 0)
403		return ret;
404
405	*val = readl((void __iomem *)d->offset);
406
407	wil_pm_runtime_put(wil);
408
409	return 0;
410}
411
412DEFINE_DEBUGFS_ATTRIBUTE(fops_iomem_x32, wil_debugfs_iomem_x32_get,
413			 wil_debugfs_iomem_x32_set, "0x%08llx\n");
414
415static void wil_debugfs_create_iomem_x32(const char *name, umode_t mode,
416					 struct dentry *parent, void *value,
417					 struct wil6210_priv *wil)
418{
419	struct wil_debugfs_iomem_data *data = &wil->dbg_data.data_arr[
420					      wil->dbg_data.iomem_data_count];
421
422	data->wil = wil;
423	data->offset = value;
424
425	debugfs_create_file_unsafe(name, mode, parent, data, &fops_iomem_x32);
426	wil->dbg_data.iomem_data_count++;
427}
428
429static int wil_debugfs_ulong_set(void *data, u64 val)
430{
431	*(ulong *)data = val;
432	return 0;
433}
434
435static int wil_debugfs_ulong_get(void *data, u64 *val)
436{
437	*val = *(ulong *)data;
438	return 0;
439}
440
441DEFINE_DEBUGFS_ATTRIBUTE(wil_fops_ulong, wil_debugfs_ulong_get,
442			 wil_debugfs_ulong_set, "0x%llx\n");
443
444/**
445 * wil6210_debugfs_init_offset - create set of debugfs files
446 * @wil: driver's context, used for printing
447 * @dbg: directory on the debugfs, where files will be created
448 * @base: base address used in address calculation
449 * @tbl: table with file descriptions. Should be terminated with empty element.
450 *
451 * Creates files accordingly to the @tbl.
452 */
453static void wil6210_debugfs_init_offset(struct wil6210_priv *wil,
454					struct dentry *dbg, void *base,
455					const struct dbg_off * const tbl)
456{
457	int i;
458
459	for (i = 0; tbl[i].name; i++) {
460		switch (tbl[i].type) {
461		case doff_u32:
462			debugfs_create_u32(tbl[i].name, tbl[i].mode, dbg,
463					   base + tbl[i].off);
464			break;
465		case doff_x32:
466			debugfs_create_x32(tbl[i].name, tbl[i].mode, dbg,
467					   base + tbl[i].off);
468			break;
469		case doff_ulong:
470			debugfs_create_file_unsafe(tbl[i].name, tbl[i].mode,
471						   dbg, base + tbl[i].off,
472						   &wil_fops_ulong);
473			break;
474		case doff_io32:
475			wil_debugfs_create_iomem_x32(tbl[i].name, tbl[i].mode,
476						     dbg, base + tbl[i].off,
477						     wil);
478			break;
479		case doff_u8:
480			debugfs_create_u8(tbl[i].name, tbl[i].mode, dbg,
481					  base + tbl[i].off);
482			break;
483		}
484	}
485}
486
487static const struct dbg_off isr_off[] = {
488	{"ICC", 0644, offsetof(struct RGF_ICR, ICC), doff_io32},
489	{"ICR", 0644, offsetof(struct RGF_ICR, ICR), doff_io32},
490	{"ICM", 0644, offsetof(struct RGF_ICR, ICM), doff_io32},
491	{"ICS",	0244, offsetof(struct RGF_ICR, ICS), doff_io32},
492	{"IMV", 0644, offsetof(struct RGF_ICR, IMV), doff_io32},
493	{"IMS",	0244, offsetof(struct RGF_ICR, IMS), doff_io32},
494	{"IMC",	0244, offsetof(struct RGF_ICR, IMC), doff_io32},
495	{},
496};
497
498static void wil6210_debugfs_create_ISR(struct wil6210_priv *wil,
499				       const char *name, struct dentry *parent,
500				       u32 off)
501{
502	struct dentry *d = debugfs_create_dir(name, parent);
503
504	wil6210_debugfs_init_offset(wil, d, (void * __force)wil->csr + off,
505				    isr_off);
506}
507
508static const struct dbg_off pseudo_isr_off[] = {
509	{"CAUSE",   0444, HOSTADDR(RGF_DMA_PSEUDO_CAUSE), doff_io32},
510	{"MASK_SW", 0444, HOSTADDR(RGF_DMA_PSEUDO_CAUSE_MASK_SW), doff_io32},
511	{"MASK_FW", 0444, HOSTADDR(RGF_DMA_PSEUDO_CAUSE_MASK_FW), doff_io32},
512	{},
513};
514
515static void wil6210_debugfs_create_pseudo_ISR(struct wil6210_priv *wil,
516					      struct dentry *parent)
517{
518	struct dentry *d = debugfs_create_dir("PSEUDO_ISR", parent);
519
520	wil6210_debugfs_init_offset(wil, d, (void * __force)wil->csr,
521				    pseudo_isr_off);
522}
523
524static const struct dbg_off lgc_itr_cnt_off[] = {
525	{"TRSH", 0644, HOSTADDR(RGF_DMA_ITR_CNT_TRSH), doff_io32},
526	{"DATA", 0644, HOSTADDR(RGF_DMA_ITR_CNT_DATA), doff_io32},
527	{"CTL",  0644, HOSTADDR(RGF_DMA_ITR_CNT_CRL), doff_io32},
528	{},
529};
530
531static const struct dbg_off tx_itr_cnt_off[] = {
532	{"TRSH", 0644, HOSTADDR(RGF_DMA_ITR_TX_CNT_TRSH),
533	 doff_io32},
534	{"DATA", 0644, HOSTADDR(RGF_DMA_ITR_TX_CNT_DATA),
535	 doff_io32},
536	{"CTL",  0644, HOSTADDR(RGF_DMA_ITR_TX_CNT_CTL),
537	 doff_io32},
538	{"IDL_TRSH", 0644, HOSTADDR(RGF_DMA_ITR_TX_IDL_CNT_TRSH),
539	 doff_io32},
540	{"IDL_DATA", 0644, HOSTADDR(RGF_DMA_ITR_TX_IDL_CNT_DATA),
541	 doff_io32},
542	{"IDL_CTL",  0644, HOSTADDR(RGF_DMA_ITR_TX_IDL_CNT_CTL),
543	 doff_io32},
544	{},
545};
546
547static const struct dbg_off rx_itr_cnt_off[] = {
548	{"TRSH", 0644, HOSTADDR(RGF_DMA_ITR_RX_CNT_TRSH),
549	 doff_io32},
550	{"DATA", 0644, HOSTADDR(RGF_DMA_ITR_RX_CNT_DATA),
551	 doff_io32},
552	{"CTL",  0644, HOSTADDR(RGF_DMA_ITR_RX_CNT_CTL),
553	 doff_io32},
554	{"IDL_TRSH", 0644, HOSTADDR(RGF_DMA_ITR_RX_IDL_CNT_TRSH),
555	 doff_io32},
556	{"IDL_DATA", 0644, HOSTADDR(RGF_DMA_ITR_RX_IDL_CNT_DATA),
557	 doff_io32},
558	{"IDL_CTL",  0644, HOSTADDR(RGF_DMA_ITR_RX_IDL_CNT_CTL),
559	 doff_io32},
560	{},
561};
562
563static int wil6210_debugfs_create_ITR_CNT(struct wil6210_priv *wil,
564					  struct dentry *parent)
565{
566	struct dentry *d, *dtx, *drx;
567
568	d = debugfs_create_dir("ITR_CNT", parent);
569
570	dtx = debugfs_create_dir("TX", d);
571	drx = debugfs_create_dir("RX", d);
572
573	wil6210_debugfs_init_offset(wil, d, (void * __force)wil->csr,
574				    lgc_itr_cnt_off);
575
576	wil6210_debugfs_init_offset(wil, dtx, (void * __force)wil->csr,
577				    tx_itr_cnt_off);
578
579	wil6210_debugfs_init_offset(wil, drx, (void * __force)wil->csr,
580				    rx_itr_cnt_off);
581	return 0;
582}
583
584static int memread_show(struct seq_file *s, void *data)
585{
586	struct wil6210_priv *wil = s->private;
587	void __iomem *a;
588	int ret;
589
590	ret = wil_pm_runtime_get(wil);
591	if (ret < 0)
592		return ret;
593
594	ret = wil_mem_access_lock(wil);
595	if (ret) {
596		wil_pm_runtime_put(wil);
597		return ret;
598	}
599
600	a = wmi_buffer(wil, cpu_to_le32(mem_addr));
601
602	if (a)
603		seq_printf(s, "[0x%08x] = 0x%08x\n", mem_addr, readl(a));
604	else
605		seq_printf(s, "[0x%08x] = INVALID\n", mem_addr);
606
607	wil_mem_access_unlock(wil);
608	wil_pm_runtime_put(wil);
609
610	return 0;
611}
612DEFINE_SHOW_ATTRIBUTE(memread);
613
614static ssize_t wil_read_file_ioblob(struct file *file, char __user *user_buf,
615				    size_t count, loff_t *ppos)
616{
617	enum { max_count = 4096 };
618	struct wil_blob_wrapper *wil_blob = file->private_data;
619	struct wil6210_priv *wil = wil_blob->wil;
620	loff_t aligned_pos, pos = *ppos;
621	size_t available = wil_blob->blob.size;
622	void *buf;
623	size_t unaligned_bytes, aligned_count, ret;
624	int rc;
625
626	if (pos < 0)
627		return -EINVAL;
628
629	if (pos >= available || !count)
630		return 0;
631
632	if (count > available - pos)
633		count = available - pos;
634	if (count > max_count)
635		count = max_count;
636
637	/* set pos to 4 bytes aligned */
638	unaligned_bytes = pos % 4;
639	aligned_pos = pos - unaligned_bytes;
640	aligned_count = count + unaligned_bytes;
641
642	buf = kmalloc(aligned_count, GFP_KERNEL);
643	if (!buf)
644		return -ENOMEM;
645
646	rc = wil_pm_runtime_get(wil);
647	if (rc < 0) {
648		kfree(buf);
649		return rc;
650	}
651
652	rc = wil_mem_access_lock(wil);
653	if (rc) {
654		kfree(buf);
655		wil_pm_runtime_put(wil);
656		return rc;
657	}
658
659	wil_memcpy_fromio_32(buf, (const void __iomem *)
660			     wil_blob->blob.data + aligned_pos, aligned_count);
661
662	ret = copy_to_user(user_buf, buf + unaligned_bytes, count);
663
664	wil_mem_access_unlock(wil);
665	wil_pm_runtime_put(wil);
666
667	kfree(buf);
668	if (ret == count)
669		return -EFAULT;
670
671	count -= ret;
672	*ppos = pos + count;
673
674	return count;
675}
676
677static const struct file_operations fops_ioblob = {
678	.read =		wil_read_file_ioblob,
679	.open =		simple_open,
680	.llseek =	default_llseek,
681};
682
683static
684struct dentry *wil_debugfs_create_ioblob(const char *name,
685					 umode_t mode,
686					 struct dentry *parent,
687					 struct wil_blob_wrapper *wil_blob)
688{
689	return debugfs_create_file(name, mode, parent, wil_blob, &fops_ioblob);
690}
691
692/*---write channel 1..4 to rxon for it, 0 to rxoff---*/
693static ssize_t wil_write_file_rxon(struct file *file, const char __user *buf,
694				   size_t len, loff_t *ppos)
695{
696	struct wil6210_priv *wil = file->private_data;
697	int rc;
698	long channel;
699	bool on;
700
701	char *kbuf = memdup_user_nul(buf, len);
702
703	if (IS_ERR(kbuf))
704		return PTR_ERR(kbuf);
705	rc = kstrtol(kbuf, 0, &channel);
706	kfree(kbuf);
707	if (rc)
708		return rc;
709
710	if ((channel < 0) || (channel > 4)) {
711		wil_err(wil, "Invalid channel %ld\n", channel);
712		return -EINVAL;
713	}
714	on = !!channel;
715
716	if (on) {
717		rc = wmi_set_channel(wil, (int)channel);
718		if (rc)
719			return rc;
720	}
721
722	rc = wmi_rxon(wil, on);
723	if (rc)
724		return rc;
725
726	return len;
727}
728
729static const struct file_operations fops_rxon = {
730	.write = wil_write_file_rxon,
731	.open  = simple_open,
732};
733
734static ssize_t wil_write_file_rbufcap(struct file *file,
735				      const char __user *buf,
736				      size_t count, loff_t *ppos)
737{
738	struct wil6210_priv *wil = file->private_data;
739	int val;
740	int rc;
741
742	rc = kstrtoint_from_user(buf, count, 0, &val);
743	if (rc) {
744		wil_err(wil, "Invalid argument\n");
745		return rc;
746	}
747	/* input value: negative to disable, 0 to use system default,
748	 * 1..ring size to set descriptor threshold
749	 */
750	wil_info(wil, "%s RBUFCAP, descriptors threshold - %d\n",
751		 val < 0 ? "Disabling" : "Enabling", val);
752
753	if (!wil->ring_rx.va || val > wil->ring_rx.size) {
754		wil_err(wil, "Invalid descriptors threshold, %d\n", val);
755		return -EINVAL;
756	}
757
758	rc = wmi_rbufcap_cfg(wil, val < 0 ? 0 : 1, val < 0 ? 0 : val);
759	if (rc) {
760		wil_err(wil, "RBUFCAP config failed: %d\n", rc);
761		return rc;
762	}
763
764	return count;
765}
766
767static const struct file_operations fops_rbufcap = {
768	.write = wil_write_file_rbufcap,
769	.open  = simple_open,
770};
771
772/* block ack control, write:
773 * - "add <ringid> <agg_size> <timeout>" to trigger ADDBA
774 * - "del_tx <ringid> <reason>" to trigger DELBA for Tx side
775 * - "del_rx <CID> <TID> <reason>" to trigger DELBA for Rx side
776 */
777static ssize_t wil_write_back(struct file *file, const char __user *buf,
778			      size_t len, loff_t *ppos)
779{
780	struct wil6210_priv *wil = file->private_data;
781	int rc;
782	char *kbuf = kmalloc(len + 1, GFP_KERNEL);
783	char cmd[9];
784	int p1, p2, p3;
785
786	if (!kbuf)
787		return -ENOMEM;
788
789	rc = simple_write_to_buffer(kbuf, len, ppos, buf, len);
790	if (rc != len) {
791		kfree(kbuf);
792		return rc >= 0 ? -EIO : rc;
793	}
794
795	kbuf[len] = '\0';
796	rc = sscanf(kbuf, "%8s %d %d %d", cmd, &p1, &p2, &p3);
797	kfree(kbuf);
798
799	if (rc < 0)
800		return rc;
801	if (rc < 2)
802		return -EINVAL;
803
804	if ((strcmp(cmd, "add") == 0) ||
805	    (strcmp(cmd, "del_tx") == 0)) {
806		struct wil_ring_tx_data *txdata;
807
808		if (p1 < 0 || p1 >= WIL6210_MAX_TX_RINGS) {
809			wil_err(wil, "BACK: invalid ring id %d\n", p1);
810			return -EINVAL;
811		}
812		txdata = &wil->ring_tx_data[p1];
813		if (strcmp(cmd, "add") == 0) {
814			if (rc < 3) {
815				wil_err(wil, "BACK: add require at least 2 params\n");
816				return -EINVAL;
817			}
818			if (rc < 4)
819				p3 = 0;
820			wmi_addba(wil, txdata->mid, p1, p2, p3);
821		} else {
822			if (rc < 3)
823				p2 = WLAN_REASON_QSTA_LEAVE_QBSS;
824			wmi_delba_tx(wil, txdata->mid, p1, p2);
825		}
826	} else if (strcmp(cmd, "del_rx") == 0) {
827		struct wil_sta_info *sta;
828
829		if (rc < 3) {
830			wil_err(wil,
831				"BACK: del_rx require at least 2 params\n");
832			return -EINVAL;
833		}
834		if (p1 < 0 || p1 >= wil->max_assoc_sta) {
835			wil_err(wil, "BACK: invalid CID %d\n", p1);
836			return -EINVAL;
837		}
838		if (rc < 4)
839			p3 = WLAN_REASON_QSTA_LEAVE_QBSS;
840		sta = &wil->sta[p1];
841		wmi_delba_rx(wil, sta->mid, p1, p2, p3);
842	} else {
843		wil_err(wil, "BACK: Unrecognized command \"%s\"\n", cmd);
844		return -EINVAL;
845	}
846
847	return len;
848}
849
850static ssize_t wil_read_back(struct file *file, char __user *user_buf,
851			     size_t count, loff_t *ppos)
852{
853	static const char text[] = "block ack control, write:\n"
854	" - \"add <ringid> <agg_size> <timeout>\" to trigger ADDBA\n"
855	"If missing, <timeout> defaults to 0\n"
856	" - \"del_tx <ringid> <reason>\" to trigger DELBA for Tx side\n"
857	" - \"del_rx <CID> <TID> <reason>\" to trigger DELBA for Rx side\n"
858	"If missing, <reason> set to \"STA_LEAVING\" (36)\n";
859
860	return simple_read_from_buffer(user_buf, count, ppos, text,
861				       sizeof(text));
862}
863
864static const struct file_operations fops_back = {
865	.read = wil_read_back,
866	.write = wil_write_back,
867	.open  = simple_open,
868};
869
870/* pmc control, write:
871 * - "alloc <num descriptors> <descriptor_size>" to allocate PMC
872 * - "free" to release memory allocated for PMC
873 */
874static ssize_t wil_write_pmccfg(struct file *file, const char __user *buf,
875				size_t len, loff_t *ppos)
876{
877	struct wil6210_priv *wil = file->private_data;
878	int rc;
879	char *kbuf = kmalloc(len + 1, GFP_KERNEL);
880	char cmd[9];
881	int num_descs, desc_size;
882
883	if (!kbuf)
884		return -ENOMEM;
885
886	rc = simple_write_to_buffer(kbuf, len, ppos, buf, len);
887	if (rc != len) {
888		kfree(kbuf);
889		return rc >= 0 ? -EIO : rc;
890	}
891
892	kbuf[len] = '\0';
893	rc = sscanf(kbuf, "%8s %d %d", cmd, &num_descs, &desc_size);
894	kfree(kbuf);
895
896	if (rc < 0)
897		return rc;
898
899	if (rc < 1) {
900		wil_err(wil, "pmccfg: no params given\n");
901		return -EINVAL;
902	}
903
904	if (0 == strcmp(cmd, "alloc")) {
905		if (rc != 3) {
906			wil_err(wil, "pmccfg: alloc requires 2 params\n");
907			return -EINVAL;
908		}
909		wil_pmc_alloc(wil, num_descs, desc_size);
910	} else if (0 == strcmp(cmd, "free")) {
911		if (rc != 1) {
912			wil_err(wil, "pmccfg: free does not have any params\n");
913			return -EINVAL;
914		}
915		wil_pmc_free(wil, true);
916	} else {
917		wil_err(wil, "pmccfg: Unrecognized command \"%s\"\n", cmd);
918		return -EINVAL;
919	}
920
921	return len;
922}
923
924static ssize_t wil_read_pmccfg(struct file *file, char __user *user_buf,
925			       size_t count, loff_t *ppos)
926{
927	struct wil6210_priv *wil = file->private_data;
928	char text[256];
929	char help[] = "pmc control, write:\n"
930	" - \"alloc <num descriptors> <descriptor_size>\" to allocate pmc\n"
931	" - \"free\" to free memory allocated for pmc\n";
932
933	snprintf(text, sizeof(text), "Last command status: %d\n\n%s",
934		 wil_pmc_last_cmd_status(wil), help);
935
936	return simple_read_from_buffer(user_buf, count, ppos, text,
937				       strlen(text) + 1);
938}
939
940static const struct file_operations fops_pmccfg = {
941	.read = wil_read_pmccfg,
942	.write = wil_write_pmccfg,
943	.open  = simple_open,
944};
945
946static const struct file_operations fops_pmcdata = {
947	.open		= simple_open,
948	.read		= wil_pmc_read,
949	.llseek		= wil_pmc_llseek,
950};
951
952static int wil_pmcring_seq_open(struct inode *inode, struct file *file)
953{
954	return single_open(file, wil_pmcring_read, inode->i_private);
955}
956
957static const struct file_operations fops_pmcring = {
958	.open		= wil_pmcring_seq_open,
959	.release	= single_release,
960	.read		= seq_read,
961	.llseek		= seq_lseek,
962};
963
964/*---tx_mgmt---*/
965/* Write mgmt frame to this file to send it */
966static ssize_t wil_write_file_txmgmt(struct file *file, const char __user *buf,
967				     size_t len, loff_t *ppos)
968{
969	struct wil6210_priv *wil = file->private_data;
970	struct wiphy *wiphy = wil_to_wiphy(wil);
971	struct wireless_dev *wdev = wil->main_ndev->ieee80211_ptr;
972	struct cfg80211_mgmt_tx_params params;
973	int rc;
974	void *frame;
975
976	memset(&params, 0, sizeof(params));
977
978	if (!len)
979		return -EINVAL;
980
981	frame = memdup_user(buf, len);
982	if (IS_ERR(frame))
983		return PTR_ERR(frame);
984
985	params.buf = frame;
986	params.len = len;
987
988	rc = wil_cfg80211_mgmt_tx(wiphy, wdev, &params, NULL);
989
990	kfree(frame);
991	wil_info(wil, "-> %d\n", rc);
992
993	return len;
994}
995
996static const struct file_operations fops_txmgmt = {
997	.write = wil_write_file_txmgmt,
998	.open  = simple_open,
999};
1000
1001/* Write WMI command (w/o mbox header) to this file to send it
1002 * WMI starts from wil6210_mbox_hdr_wmi header
1003 */
1004static ssize_t wil_write_file_wmi(struct file *file, const char __user *buf,
1005				  size_t len, loff_t *ppos)
1006{
1007	struct wil6210_priv *wil = file->private_data;
1008	struct wil6210_vif *vif = ndev_to_vif(wil->main_ndev);
1009	struct wmi_cmd_hdr *wmi;
1010	void *cmd;
1011	int cmdlen = len - sizeof(struct wmi_cmd_hdr);
1012	u16 cmdid;
1013	int rc1;
1014
1015	if (cmdlen < 0 || *ppos != 0)
1016		return -EINVAL;
1017
1018	wmi = memdup_user(buf, len);
1019	if (IS_ERR(wmi))
1020		return PTR_ERR(wmi);
1021
1022	cmd = (cmdlen > 0) ? &wmi[1] : NULL;
1023	cmdid = le16_to_cpu(wmi->command_id);
1024
1025	rc1 = wmi_send(wil, cmdid, vif->mid, cmd, cmdlen);
1026	kfree(wmi);
1027
1028	wil_info(wil, "0x%04x[%d] -> %d\n", cmdid, cmdlen, rc1);
1029
1030	return len;
1031}
1032
1033static const struct file_operations fops_wmi = {
1034	.write = wil_write_file_wmi,
1035	.open  = simple_open,
1036};
1037
1038static void wil_seq_print_skb(struct seq_file *s, struct sk_buff *skb)
1039{
1040	int i = 0;
1041	int len = skb_headlen(skb);
1042	void *p = skb->data;
1043	int nr_frags = skb_shinfo(skb)->nr_frags;
1044
1045	seq_printf(s, "    len = %d\n", len);
1046	wil_seq_hexdump(s, p, len, "      : ");
1047
1048	if (nr_frags) {
1049		seq_printf(s, "    nr_frags = %d\n", nr_frags);
1050		for (i = 0; i < nr_frags; i++) {
1051			const skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
1052
1053			len = skb_frag_size(frag);
1054			p = skb_frag_address_safe(frag);
1055			seq_printf(s, "    [%2d] : len = %d\n", i, len);
1056			wil_seq_hexdump(s, p, len, "      : ");
1057		}
1058	}
1059}
1060
1061/*---------Tx/Rx descriptor------------*/
1062static int txdesc_show(struct seq_file *s, void *data)
1063{
1064	struct wil6210_priv *wil = s->private;
1065	struct wil_ring *ring;
1066	bool tx;
1067	int ring_idx = dbg_ring_index;
1068	int txdesc_idx = dbg_txdesc_index;
1069	volatile struct vring_tx_desc *d;
1070	volatile u32 *u;
1071	struct sk_buff *skb;
1072
1073	if (wil->use_enhanced_dma_hw) {
1074		/* RX ring index == 0 */
1075		if (ring_idx >= WIL6210_MAX_TX_RINGS) {
1076			seq_printf(s, "invalid ring index %d\n", ring_idx);
1077			return 0;
1078		}
1079		tx = ring_idx > 0; /* desc ring 0 is reserved for RX */
1080	} else {
1081		/* RX ring index == WIL6210_MAX_TX_RINGS */
1082		if (ring_idx > WIL6210_MAX_TX_RINGS) {
1083			seq_printf(s, "invalid ring index %d\n", ring_idx);
1084			return 0;
1085		}
1086		tx = (ring_idx < WIL6210_MAX_TX_RINGS);
1087	}
1088
1089	ring = tx ? &wil->ring_tx[ring_idx] : &wil->ring_rx;
1090
1091	if (!ring->va) {
1092		if (tx)
1093			seq_printf(s, "No Tx[%2d] RING\n", ring_idx);
1094		else
1095			seq_puts(s, "No Rx RING\n");
1096		return 0;
1097	}
1098
1099	if (txdesc_idx >= ring->size) {
1100		if (tx)
1101			seq_printf(s, "[%2d] TxDesc index (%d) >= size (%d)\n",
1102				   ring_idx, txdesc_idx, ring->size);
1103		else
1104			seq_printf(s, "RxDesc index (%d) >= size (%d)\n",
1105				   txdesc_idx, ring->size);
1106		return 0;
1107	}
1108
1109	/* use struct vring_tx_desc for Rx as well,
1110	 * only field used, .dma.length, is the same
1111	 */
1112	d = &ring->va[txdesc_idx].tx.legacy;
1113	u = (volatile u32 *)d;
1114	skb = NULL;
1115
1116	if (wil->use_enhanced_dma_hw) {
1117		if (tx) {
1118			skb = ring->ctx ? ring->ctx[txdesc_idx].skb : NULL;
1119		} else if (wil->rx_buff_mgmt.buff_arr) {
1120			struct wil_rx_enhanced_desc *rx_d =
1121				(struct wil_rx_enhanced_desc *)
1122				&ring->va[txdesc_idx].rx.enhanced;
1123			u16 buff_id = le16_to_cpu(rx_d->mac.buff_id);
1124
1125			if (!wil_val_in_range(buff_id, 0,
1126					      wil->rx_buff_mgmt.size))
1127				seq_printf(s, "invalid buff_id %d\n", buff_id);
1128			else
1129				skb = wil->rx_buff_mgmt.buff_arr[buff_id].skb;
1130		}
1131	} else {
1132		skb = ring->ctx[txdesc_idx].skb;
1133	}
1134	if (tx)
1135		seq_printf(s, "Tx[%2d][%3d] = {\n", ring_idx,
1136			   txdesc_idx);
1137	else
1138		seq_printf(s, "Rx[%3d] = {\n", txdesc_idx);
1139	seq_printf(s, "  MAC = 0x%08x 0x%08x 0x%08x 0x%08x\n",
1140		   u[0], u[1], u[2], u[3]);
1141	seq_printf(s, "  DMA = 0x%08x 0x%08x 0x%08x 0x%08x\n",
1142		   u[4], u[5], u[6], u[7]);
1143	seq_printf(s, "  SKB = 0x%p\n", skb);
1144
1145	if (skb) {
1146		skb_get(skb);
1147		wil_seq_print_skb(s, skb);
1148		kfree_skb(skb);
1149	}
1150	seq_puts(s, "}\n");
1151
1152	return 0;
1153}
1154DEFINE_SHOW_ATTRIBUTE(txdesc);
1155
1156/*---------Tx/Rx status message------------*/
1157static int status_msg_show(struct seq_file *s, void *data)
1158{
1159	struct wil6210_priv *wil = s->private;
1160	int sring_idx = dbg_sring_index;
1161	struct wil_status_ring *sring;
1162	bool tx;
1163	u32 status_msg_idx = dbg_status_msg_index;
1164	u32 *u;
1165
1166	if (sring_idx >= WIL6210_MAX_STATUS_RINGS) {
1167		seq_printf(s, "invalid status ring index %d\n", sring_idx);
1168		return 0;
1169	}
1170
1171	sring = &wil->srings[sring_idx];
1172	tx = !sring->is_rx;
1173
1174	if (!sring->va) {
1175		seq_printf(s, "No %cX status ring\n", tx ? 'T' : 'R');
1176		return 0;
1177	}
1178
1179	if (status_msg_idx >= sring->size) {
1180		seq_printf(s, "%cxDesc index (%d) >= size (%d)\n",
1181			   tx ? 'T' : 'R', status_msg_idx, sring->size);
1182		return 0;
1183	}
1184
1185	u = sring->va + (sring->elem_size * status_msg_idx);
1186
1187	seq_printf(s, "%cx[%d][%3d] = {\n",
1188		   tx ? 'T' : 'R', sring_idx, status_msg_idx);
1189
1190	seq_printf(s, "  0x%08x 0x%08x 0x%08x 0x%08x\n",
1191		   u[0], u[1], u[2], u[3]);
1192	if (!tx && !wil->use_compressed_rx_status)
1193		seq_printf(s, "  0x%08x 0x%08x 0x%08x 0x%08x\n",
1194			   u[4], u[5], u[6], u[7]);
1195
1196	seq_puts(s, "}\n");
1197
1198	return 0;
1199}
1200DEFINE_SHOW_ATTRIBUTE(status_msg);
1201
1202static int wil_print_rx_buff(struct seq_file *s, struct list_head *lh)
1203{
1204	struct wil_rx_buff *it;
1205	int i = 0;
1206
1207	list_for_each_entry(it, lh, list) {
1208		if ((i % 16) == 0 && i != 0)
1209			seq_puts(s, "\n    ");
1210		seq_printf(s, "[%4d] ", it->id);
1211		i++;
1212	}
1213	seq_printf(s, "\nNumber of buffers: %u\n", i);
1214
1215	return i;
1216}
1217
1218static int rx_buff_mgmt_show(struct seq_file *s, void *data)
1219{
1220	struct wil6210_priv *wil = s->private;
1221	struct wil_rx_buff_mgmt *rbm = &wil->rx_buff_mgmt;
1222	int num_active;
1223	int num_free;
1224
1225	if (!rbm->buff_arr)
1226		return -EINVAL;
1227
1228	seq_printf(s, "  size = %zu\n", rbm->size);
1229	seq_printf(s, "  free_list_empty_cnt = %lu\n",
1230		   rbm->free_list_empty_cnt);
1231
1232	/* Print active list */
1233	seq_puts(s, "  Active list:\n");
1234	num_active = wil_print_rx_buff(s, &rbm->active);
1235	seq_puts(s, "\n  Free list:\n");
1236	num_free = wil_print_rx_buff(s, &rbm->free);
1237
1238	seq_printf(s, "  Total number of buffers: %u\n",
1239		   num_active + num_free);
1240
1241	return 0;
1242}
1243DEFINE_SHOW_ATTRIBUTE(rx_buff_mgmt);
1244
1245/*---------beamforming------------*/
1246static char *wil_bfstatus_str(u32 status)
1247{
1248	switch (status) {
1249	case 0:
1250		return "Failed";
1251	case 1:
1252		return "OK";
1253	case 2:
1254		return "Retrying";
1255	default:
1256		return "??";
1257	}
1258}
1259
1260static bool is_all_zeros(void * const x_, size_t sz)
1261{
1262	/* if reply is all-0, ignore this CID */
1263	u32 *x = x_;
1264	int n;
1265
1266	for (n = 0; n < sz / sizeof(*x); n++)
1267		if (x[n])
1268			return false;
1269
1270	return true;
1271}
1272
1273static int bf_show(struct seq_file *s, void *data)
1274{
1275	int rc;
1276	int i;
1277	struct wil6210_priv *wil = s->private;
1278	struct wil6210_vif *vif = ndev_to_vif(wil->main_ndev);
1279	struct wmi_notify_req_cmd cmd = {
1280		.interval_usec = 0,
1281	};
1282	struct {
1283		struct wmi_cmd_hdr wmi;
1284		struct wmi_notify_req_done_event evt;
1285	} __packed reply;
1286
1287	memset(&reply, 0, sizeof(reply));
1288
1289	for (i = 0; i < wil->max_assoc_sta; i++) {
1290		u32 status;
1291
1292		cmd.cid = i;
1293		rc = wmi_call(wil, WMI_NOTIFY_REQ_CMDID, vif->mid,
1294			      &cmd, sizeof(cmd),
1295			      WMI_NOTIFY_REQ_DONE_EVENTID, &reply,
1296			      sizeof(reply), WIL_WMI_CALL_GENERAL_TO_MS);
1297		/* if reply is all-0, ignore this CID */
1298		if (rc || is_all_zeros(&reply.evt, sizeof(reply.evt)))
1299			continue;
1300
1301		status = le32_to_cpu(reply.evt.status);
1302		seq_printf(s, "CID %d {\n"
1303			   "  TSF = 0x%016llx\n"
1304			   "  TxMCS = %2d TxTpt = %4d\n"
1305			   "  SQI = %4d\n"
1306			   "  RSSI = %4d\n"
1307			   "  Status = 0x%08x %s\n"
1308			   "  Sectors(rx:tx) my %2d:%2d peer %2d:%2d\n"
1309			   "  Goodput(rx:tx) %4d:%4d\n"
1310			   "}\n",
1311			   i,
1312			   le64_to_cpu(reply.evt.tsf),
1313			   le16_to_cpu(reply.evt.bf_mcs),
1314			   le32_to_cpu(reply.evt.tx_tpt),
1315			   reply.evt.sqi,
1316			   reply.evt.rssi,
1317			   status, wil_bfstatus_str(status),
1318			   le16_to_cpu(reply.evt.my_rx_sector),
1319			   le16_to_cpu(reply.evt.my_tx_sector),
1320			   le16_to_cpu(reply.evt.other_rx_sector),
1321			   le16_to_cpu(reply.evt.other_tx_sector),
1322			   le32_to_cpu(reply.evt.rx_goodput),
1323			   le32_to_cpu(reply.evt.tx_goodput));
1324	}
1325	return 0;
1326}
1327DEFINE_SHOW_ATTRIBUTE(bf);
1328
1329/*---------temp------------*/
1330static void print_temp(struct seq_file *s, const char *prefix, s32 t)
1331{
1332	switch (t) {
1333	case 0:
1334	case WMI_INVALID_TEMPERATURE:
1335		seq_printf(s, "%s N/A\n", prefix);
1336	break;
1337	default:
1338		seq_printf(s, "%s %s%d.%03d\n", prefix, (t < 0 ? "-" : ""),
1339			   abs(t / 1000), abs(t % 1000));
1340		break;
1341	}
1342}
1343
1344static int temp_show(struct seq_file *s, void *data)
1345{
1346	struct wil6210_priv *wil = s->private;
1347	int rc, i;
1348
1349	if (test_bit(WMI_FW_CAPABILITY_TEMPERATURE_ALL_RF,
1350		     wil->fw_capabilities)) {
1351		struct wmi_temp_sense_all_done_event sense_all_evt;
1352
1353		wil_dbg_misc(wil,
1354			     "WMI_FW_CAPABILITY_TEMPERATURE_ALL_RF is supported");
1355		rc = wmi_get_all_temperatures(wil, &sense_all_evt);
1356		if (rc) {
1357			seq_puts(s, "Failed\n");
1358			return 0;
1359		}
1360		print_temp(s, "T_mac   =",
1361			   le32_to_cpu(sense_all_evt.baseband_t1000));
1362		seq_printf(s, "Connected RFs [0x%08x]\n",
1363			   sense_all_evt.rf_bitmap);
1364		for (i = 0; i < WMI_MAX_XIF_PORTS_NUM; i++) {
1365			seq_printf(s, "RF[%d]   = ", i);
1366			print_temp(s, "",
1367				   le32_to_cpu(sense_all_evt.rf_t1000[i]));
1368		}
1369	} else {
1370		s32 t_m, t_r;
1371
1372		wil_dbg_misc(wil,
1373			     "WMI_FW_CAPABILITY_TEMPERATURE_ALL_RF is not supported");
1374		rc = wmi_get_temperature(wil, &t_m, &t_r);
1375		if (rc) {
1376			seq_puts(s, "Failed\n");
1377			return 0;
1378		}
1379		print_temp(s, "T_mac   =", t_m);
1380		print_temp(s, "T_radio =", t_r);
1381	}
1382	return 0;
1383}
1384DEFINE_SHOW_ATTRIBUTE(temp);
1385
1386/*---------freq------------*/
1387static int freq_show(struct seq_file *s, void *data)
1388{
1389	struct wil6210_priv *wil = s->private;
1390	struct wireless_dev *wdev = wil->main_ndev->ieee80211_ptr;
1391	u32 freq = wdev->chandef.chan ? wdev->chandef.chan->center_freq : 0;
1392
1393	seq_printf(s, "Freq = %d\n", freq);
1394
1395	return 0;
1396}
1397DEFINE_SHOW_ATTRIBUTE(freq);
1398
1399/*---------link------------*/
1400static int link_show(struct seq_file *s, void *data)
1401{
1402	struct wil6210_priv *wil = s->private;
1403	struct station_info *sinfo;
1404	int i, rc = 0;
1405
1406	sinfo = kzalloc(sizeof(*sinfo), GFP_KERNEL);
1407	if (!sinfo)
1408		return -ENOMEM;
1409
1410	for (i = 0; i < wil->max_assoc_sta; i++) {
1411		struct wil_sta_info *p = &wil->sta[i];
1412		char *status = "unknown";
1413		struct wil6210_vif *vif;
1414		u8 mid;
1415
1416		switch (p->status) {
1417		case wil_sta_unused:
1418			status = "unused   ";
1419			break;
1420		case wil_sta_conn_pending:
1421			status = "pending  ";
1422			break;
1423		case wil_sta_connected:
1424			status = "connected";
1425			break;
1426		}
1427		mid = (p->status != wil_sta_unused) ? p->mid : U8_MAX;
1428		seq_printf(s, "[%d][MID %d] %pM %s\n",
1429			   i, mid, p->addr, status);
1430
1431		if (p->status != wil_sta_connected)
1432			continue;
1433
1434		vif = (mid < GET_MAX_VIFS(wil)) ? wil->vifs[mid] : NULL;
1435		if (vif) {
1436			rc = wil_cid_fill_sinfo(vif, i, sinfo);
1437			if (rc)
1438				goto out;
1439
1440			seq_printf(s, "  Tx_mcs = %d\n", sinfo->txrate.mcs);
1441			seq_printf(s, "  Rx_mcs = %d\n", sinfo->rxrate.mcs);
1442			seq_printf(s, "  SQ     = %d\n", sinfo->signal);
1443		} else {
1444			seq_puts(s, "  INVALID MID\n");
1445		}
1446	}
1447
1448out:
1449	kfree(sinfo);
1450	return rc;
1451}
1452DEFINE_SHOW_ATTRIBUTE(link);
1453
1454/*---------info------------*/
1455static int info_show(struct seq_file *s, void *data)
1456{
1457	struct wil6210_priv *wil = s->private;
1458	struct net_device *ndev = wil->main_ndev;
1459	int is_ac = power_supply_is_system_supplied();
1460	int rx = atomic_xchg(&wil->isr_count_rx, 0);
1461	int tx = atomic_xchg(&wil->isr_count_tx, 0);
1462	static ulong rxf_old, txf_old;
1463	ulong rxf = ndev->stats.rx_packets;
1464	ulong txf = ndev->stats.tx_packets;
1465	unsigned int i;
1466
1467	/* >0 : AC; 0 : battery; <0 : error */
1468	seq_printf(s, "AC powered : %d\n", is_ac);
1469	seq_printf(s, "Rx irqs:packets : %8d : %8ld\n", rx, rxf - rxf_old);
1470	seq_printf(s, "Tx irqs:packets : %8d : %8ld\n", tx, txf - txf_old);
1471	rxf_old = rxf;
1472	txf_old = txf;
1473
1474#define CHECK_QSTATE(x) (state & BIT(__QUEUE_STATE_ ## x)) ? \
1475	" " __stringify(x) : ""
1476
1477	for (i = 0; i < ndev->num_tx_queues; i++) {
1478		struct netdev_queue *txq = netdev_get_tx_queue(ndev, i);
1479		unsigned long state = txq->state;
1480
1481		seq_printf(s, "Tx queue[%i] state : 0x%lx%s%s%s\n", i, state,
1482			   CHECK_QSTATE(DRV_XOFF),
1483			   CHECK_QSTATE(STACK_XOFF),
1484			   CHECK_QSTATE(FROZEN)
1485			  );
1486	}
1487#undef CHECK_QSTATE
1488	return 0;
1489}
1490DEFINE_SHOW_ATTRIBUTE(info);
1491
1492/*---------recovery------------*/
1493/* mode = [manual|auto]
1494 * state = [idle|pending|running]
1495 */
1496static ssize_t wil_read_file_recovery(struct file *file, char __user *user_buf,
1497				      size_t count, loff_t *ppos)
1498{
1499	struct wil6210_priv *wil = file->private_data;
1500	char buf[80];
1501	int n;
1502	static const char * const sstate[] = {"idle", "pending", "running"};
1503
1504	n = snprintf(buf, sizeof(buf), "mode = %s\nstate = %s\n",
1505		     no_fw_recovery ? "manual" : "auto",
1506		     sstate[wil->recovery_state]);
1507
1508	n = min_t(int, n, sizeof(buf));
1509
1510	return simple_read_from_buffer(user_buf, count, ppos,
1511				       buf, n);
1512}
1513
1514static ssize_t wil_write_file_recovery(struct file *file,
1515				       const char __user *buf_,
1516				       size_t count, loff_t *ppos)
1517{
1518	struct wil6210_priv *wil = file->private_data;
1519	static const char run_command[] = "run";
1520	char buf[sizeof(run_command) + 1]; /* to detect "runx" */
1521	ssize_t rc;
1522
1523	if (wil->recovery_state != fw_recovery_pending) {
1524		wil_err(wil, "No recovery pending\n");
1525		return -EINVAL;
1526	}
1527
1528	if (*ppos != 0) {
1529		wil_err(wil, "Offset [%d]\n", (int)*ppos);
1530		return -EINVAL;
1531	}
1532
1533	if (count > sizeof(buf)) {
1534		wil_err(wil, "Input too long, len = %d\n", (int)count);
1535		return -EINVAL;
1536	}
1537
1538	rc = simple_write_to_buffer(buf, sizeof(buf) - 1, ppos, buf_, count);
1539	if (rc < 0)
1540		return rc;
1541
1542	buf[rc] = '\0';
1543	if (0 == strcmp(buf, run_command))
1544		wil_set_recovery_state(wil, fw_recovery_running);
1545	else
1546		wil_err(wil, "Bad recovery command \"%s\"\n", buf);
1547
1548	return rc;
1549}
1550
1551static const struct file_operations fops_recovery = {
1552	.read = wil_read_file_recovery,
1553	.write = wil_write_file_recovery,
1554	.open  = simple_open,
1555};
1556
1557/*---------Station matrix------------*/
1558static void wil_print_rxtid(struct seq_file *s, struct wil_tid_ampdu_rx *r)
1559{
1560	int i;
1561	u16 index = ((r->head_seq_num - r->ssn) & 0xfff) % r->buf_size;
1562	unsigned long long drop_dup = r->drop_dup, drop_old = r->drop_old;
1563	unsigned long long drop_dup_mcast = r->drop_dup_mcast;
1564
1565	seq_printf(s, "([%2d]) 0x%03x [", r->buf_size, r->head_seq_num);
1566	for (i = 0; i < r->buf_size; i++) {
1567		if (i == index)
1568			seq_printf(s, "%c", r->reorder_buf[i] ? 'O' : '|');
1569		else
1570			seq_printf(s, "%c", r->reorder_buf[i] ? '*' : '_');
1571	}
1572	seq_printf(s,
1573		   "] total %llu drop %llu (dup %llu + old %llu + dup mcast %llu) last 0x%03x\n",
1574		   r->total, drop_dup + drop_old + drop_dup_mcast, drop_dup,
1575		   drop_old, drop_dup_mcast, r->ssn_last_drop);
1576}
1577
1578static void wil_print_rxtid_crypto(struct seq_file *s, int tid,
1579				   struct wil_tid_crypto_rx *c)
1580{
1581	int i;
1582
1583	for (i = 0; i < 4; i++) {
1584		struct wil_tid_crypto_rx_single *cc = &c->key_id[i];
1585
1586		if (cc->key_set)
1587			goto has_keys;
1588	}
1589	return;
1590
1591has_keys:
1592	if (tid < WIL_STA_TID_NUM)
1593		seq_printf(s, "  [%2d] PN", tid);
1594	else
1595		seq_puts(s, "  [GR] PN");
1596
1597	for (i = 0; i < 4; i++) {
1598		struct wil_tid_crypto_rx_single *cc = &c->key_id[i];
1599
1600		seq_printf(s, " [%i%s]%6phN", i, cc->key_set ? "+" : "-",
1601			   cc->pn);
1602	}
1603	seq_puts(s, "\n");
1604}
1605
1606static int sta_show(struct seq_file *s, void *data)
1607__acquires(&p->tid_rx_lock) __releases(&p->tid_rx_lock)
1608{
1609	struct wil6210_priv *wil = s->private;
1610	int i, tid, mcs;
1611
1612	for (i = 0; i < wil->max_assoc_sta; i++) {
1613		struct wil_sta_info *p = &wil->sta[i];
1614		char *status = "unknown";
1615		u8 aid = 0;
1616		u8 mid;
1617		bool sta_connected = false;
1618
1619		switch (p->status) {
1620		case wil_sta_unused:
1621			status = "unused   ";
1622			break;
1623		case wil_sta_conn_pending:
1624			status = "pending  ";
1625			break;
1626		case wil_sta_connected:
1627			status = "connected";
1628			aid = p->aid;
1629			break;
1630		}
1631		mid = (p->status != wil_sta_unused) ? p->mid : U8_MAX;
1632		if (mid < GET_MAX_VIFS(wil)) {
1633			struct wil6210_vif *vif = wil->vifs[mid];
1634
1635			if (vif->wdev.iftype == NL80211_IFTYPE_STATION &&
1636			    p->status == wil_sta_connected)
1637				sta_connected = true;
1638		}
1639		/* print roam counter only for connected stations */
1640		if (sta_connected)
1641			seq_printf(s, "[%d] %pM connected (roam counter %d) MID %d AID %d\n",
1642				   i, p->addr, p->stats.ft_roams, mid, aid);
1643		else
1644			seq_printf(s, "[%d] %pM %s MID %d AID %d\n", i,
1645				   p->addr, status, mid, aid);
1646
1647		if (p->status == wil_sta_connected) {
1648			spin_lock_bh(&p->tid_rx_lock);
1649			for (tid = 0; tid < WIL_STA_TID_NUM; tid++) {
1650				struct wil_tid_ampdu_rx *r = p->tid_rx[tid];
1651				struct wil_tid_crypto_rx *c =
1652						&p->tid_crypto_rx[tid];
1653
1654				if (r) {
1655					seq_printf(s, "  [%2d] ", tid);
1656					wil_print_rxtid(s, r);
1657				}
1658
1659				wil_print_rxtid_crypto(s, tid, c);
1660			}
1661			wil_print_rxtid_crypto(s, WIL_STA_TID_NUM,
1662					       &p->group_crypto_rx);
1663			spin_unlock_bh(&p->tid_rx_lock);
1664			seq_printf(s,
1665				   "Rx invalid frame: non-data %lu, short %lu, large %lu, replay %lu\n",
1666				   p->stats.rx_non_data_frame,
1667				   p->stats.rx_short_frame,
1668				   p->stats.rx_large_frame,
1669				   p->stats.rx_replay);
1670			seq_printf(s,
1671				   "mic error %lu, key error %lu, amsdu error %lu, csum error %lu\n",
1672				   p->stats.rx_mic_error,
1673				   p->stats.rx_key_error,
1674				   p->stats.rx_amsdu_error,
1675				   p->stats.rx_csum_err);
1676
1677			seq_puts(s, "Rx/MCS:");
1678			for (mcs = 0; mcs < ARRAY_SIZE(p->stats.rx_per_mcs);
1679			     mcs++)
1680				seq_printf(s, " %lld",
1681					   p->stats.rx_per_mcs[mcs]);
1682			seq_puts(s, "\n");
1683		}
1684	}
1685
1686	return 0;
1687}
1688DEFINE_SHOW_ATTRIBUTE(sta);
1689
1690static int mids_show(struct seq_file *s, void *data)
1691{
1692	struct wil6210_priv *wil = s->private;
1693	struct wil6210_vif *vif;
1694	struct net_device *ndev;
1695	int i;
1696
1697	mutex_lock(&wil->vif_mutex);
1698	for (i = 0; i < GET_MAX_VIFS(wil); i++) {
1699		vif = wil->vifs[i];
1700
1701		if (vif) {
1702			ndev = vif_to_ndev(vif);
1703			seq_printf(s, "[%d] %pM %s\n", i, ndev->dev_addr,
1704				   ndev->name);
1705		} else {
1706			seq_printf(s, "[%d] unused\n", i);
1707		}
1708	}
1709	mutex_unlock(&wil->vif_mutex);
1710
1711	return 0;
1712}
1713DEFINE_SHOW_ATTRIBUTE(mids);
1714
1715static int wil_tx_latency_debugfs_show(struct seq_file *s, void *data)
1716__acquires(&p->tid_rx_lock) __releases(&p->tid_rx_lock)
1717{
1718	struct wil6210_priv *wil = s->private;
1719	int i, bin;
1720
1721	for (i = 0; i < wil->max_assoc_sta; i++) {
1722		struct wil_sta_info *p = &wil->sta[i];
1723		char *status = "unknown";
1724		u8 aid = 0;
1725		u8 mid;
1726
1727		if (!p->tx_latency_bins)
1728			continue;
1729
1730		switch (p->status) {
1731		case wil_sta_unused:
1732			status = "unused   ";
1733			break;
1734		case wil_sta_conn_pending:
1735			status = "pending  ";
1736			break;
1737		case wil_sta_connected:
1738			status = "connected";
1739			aid = p->aid;
1740			break;
1741		}
1742		mid = (p->status != wil_sta_unused) ? p->mid : U8_MAX;
1743		seq_printf(s, "[%d] %pM %s MID %d AID %d\n", i, p->addr, status,
1744			   mid, aid);
1745
1746		if (p->status == wil_sta_connected) {
1747			u64 num_packets = 0;
1748			u64 tx_latency_avg = p->stats.tx_latency_total_us;
1749
1750			seq_puts(s, "Tx/Latency bin:");
1751			for (bin = 0; bin < WIL_NUM_LATENCY_BINS; bin++) {
1752				seq_printf(s, " %lld",
1753					   p->tx_latency_bins[bin]);
1754				num_packets += p->tx_latency_bins[bin];
1755			}
1756			seq_puts(s, "\n");
1757			if (!num_packets)
1758				continue;
1759			do_div(tx_latency_avg, num_packets);
1760			seq_printf(s, "Tx/Latency min/avg/max (us): %d/%lld/%d",
1761				   p->stats.tx_latency_min_us,
1762				   tx_latency_avg,
1763				   p->stats.tx_latency_max_us);
1764
1765			seq_puts(s, "\n");
1766		}
1767	}
1768
1769	return 0;
1770}
1771
1772static int wil_tx_latency_seq_open(struct inode *inode, struct file *file)
1773{
1774	return single_open(file, wil_tx_latency_debugfs_show,
1775			   inode->i_private);
1776}
1777
1778static ssize_t wil_tx_latency_write(struct file *file, const char __user *buf,
1779				    size_t len, loff_t *ppos)
1780{
1781	struct seq_file *s = file->private_data;
1782	struct wil6210_priv *wil = s->private;
1783	int val, rc, i;
1784	bool enable;
1785
1786	rc = kstrtoint_from_user(buf, len, 0, &val);
1787	if (rc) {
1788		wil_err(wil, "Invalid argument\n");
1789		return rc;
1790	}
1791	if (val == 1)
1792		/* default resolution */
1793		val = 500;
1794	if (val && (val < 50 || val > 1000)) {
1795		wil_err(wil, "Invalid resolution %d\n", val);
1796		return -EINVAL;
1797	}
1798
1799	enable = !!val;
1800	if (wil->tx_latency == enable)
1801		return len;
1802
1803	wil_info(wil, "%s TX latency measurements (resolution %dusec)\n",
1804		 enable ? "Enabling" : "Disabling", val);
1805
1806	if (enable) {
1807		size_t sz = sizeof(u64) * WIL_NUM_LATENCY_BINS;
1808
1809		wil->tx_latency_res = val;
1810		for (i = 0; i < wil->max_assoc_sta; i++) {
1811			struct wil_sta_info *sta = &wil->sta[i];
1812
1813			kfree(sta->tx_latency_bins);
1814			sta->tx_latency_bins = kzalloc(sz, GFP_KERNEL);
1815			if (!sta->tx_latency_bins)
1816				return -ENOMEM;
1817			sta->stats.tx_latency_min_us = U32_MAX;
1818			sta->stats.tx_latency_max_us = 0;
1819			sta->stats.tx_latency_total_us = 0;
1820		}
1821	}
1822	wil->tx_latency = enable;
1823
1824	return len;
1825}
1826
1827static const struct file_operations fops_tx_latency = {
1828	.open		= wil_tx_latency_seq_open,
1829	.release	= single_release,
1830	.read		= seq_read,
1831	.write		= wil_tx_latency_write,
1832	.llseek		= seq_lseek,
1833};
1834
1835static void wil_link_stats_print_basic(struct wil6210_vif *vif,
1836				       struct seq_file *s,
1837				       struct wmi_link_stats_basic *basic)
1838{
1839	char per[5] = "?";
1840
1841	if (basic->per_average != 0xff)
1842		snprintf(per, sizeof(per), "%d%%", basic->per_average);
1843
1844	seq_printf(s, "CID %d {\n"
1845		   "\tTxMCS %d TxTpt %d\n"
1846		   "\tGoodput(rx:tx) %d:%d\n"
1847		   "\tRxBcastFrames %d\n"
1848		   "\tRSSI %d SQI %d SNR %d PER %s\n"
1849		   "\tRx RFC %d Ant num %d\n"
1850		   "\tSectors(rx:tx) my %d:%d peer %d:%d\n"
1851		   "}\n",
1852		   basic->cid,
1853		   basic->bf_mcs, le32_to_cpu(basic->tx_tpt),
1854		   le32_to_cpu(basic->rx_goodput),
1855		   le32_to_cpu(basic->tx_goodput),
1856		   le32_to_cpu(basic->rx_bcast_frames),
1857		   basic->rssi, basic->sqi, basic->snr, per,
1858		   basic->selected_rfc, basic->rx_effective_ant_num,
1859		   basic->my_rx_sector, basic->my_tx_sector,
1860		   basic->other_rx_sector, basic->other_tx_sector);
1861}
1862
1863static void wil_link_stats_print_global(struct wil6210_priv *wil,
1864					struct seq_file *s,
1865					struct wmi_link_stats_global *global)
1866{
1867	seq_printf(s, "Frames(rx:tx) %d:%d\n"
1868		   "BA Frames(rx:tx) %d:%d\n"
1869		   "Beacons %d\n"
1870		   "Rx Errors (MIC:CRC) %d:%d\n"
1871		   "Tx Errors (no ack) %d\n",
1872		   le32_to_cpu(global->rx_frames),
1873		   le32_to_cpu(global->tx_frames),
1874		   le32_to_cpu(global->rx_ba_frames),
1875		   le32_to_cpu(global->tx_ba_frames),
1876		   le32_to_cpu(global->tx_beacons),
1877		   le32_to_cpu(global->rx_mic_errors),
1878		   le32_to_cpu(global->rx_crc_errors),
1879		   le32_to_cpu(global->tx_fail_no_ack));
1880}
1881
1882static void wil_link_stats_debugfs_show_vif(struct wil6210_vif *vif,
1883					    struct seq_file *s)
1884{
1885	struct wil6210_priv *wil = vif_to_wil(vif);
1886	struct wmi_link_stats_basic *stats;
1887	int i;
1888
1889	if (!vif->fw_stats_ready) {
1890		seq_puts(s, "no statistics\n");
1891		return;
1892	}
1893
1894	seq_printf(s, "TSF %lld\n", vif->fw_stats_tsf);
1895	for (i = 0; i < wil->max_assoc_sta; i++) {
1896		if (wil->sta[i].status == wil_sta_unused)
1897			continue;
1898		if (wil->sta[i].mid != vif->mid)
1899			continue;
1900
1901		stats = &wil->sta[i].fw_stats_basic;
1902		wil_link_stats_print_basic(vif, s, stats);
1903	}
1904}
1905
1906static int wil_link_stats_debugfs_show(struct seq_file *s, void *data)
1907{
1908	struct wil6210_priv *wil = s->private;
1909	struct wil6210_vif *vif;
1910	int i, rc;
1911
1912	rc = mutex_lock_interruptible(&wil->vif_mutex);
1913	if (rc)
1914		return rc;
1915
1916	/* iterate over all MIDs and show per-cid statistics. Then show the
1917	 * global statistics
1918	 */
1919	for (i = 0; i < GET_MAX_VIFS(wil); i++) {
1920		vif = wil->vifs[i];
1921
1922		seq_printf(s, "MID %d ", i);
1923		if (!vif) {
1924			seq_puts(s, "unused\n");
1925			continue;
1926		}
1927
1928		wil_link_stats_debugfs_show_vif(vif, s);
1929	}
1930
1931	mutex_unlock(&wil->vif_mutex);
1932
1933	return 0;
1934}
1935
1936static int wil_link_stats_seq_open(struct inode *inode, struct file *file)
1937{
1938	return single_open(file, wil_link_stats_debugfs_show, inode->i_private);
1939}
1940
1941static ssize_t wil_link_stats_write(struct file *file, const char __user *buf,
1942				    size_t len, loff_t *ppos)
1943{
1944	struct seq_file *s = file->private_data;
1945	struct wil6210_priv *wil = s->private;
1946	int cid, interval, rc, i;
1947	struct wil6210_vif *vif;
1948	char *kbuf = kmalloc(len + 1, GFP_KERNEL);
1949
1950	if (!kbuf)
1951		return -ENOMEM;
1952
1953	rc = simple_write_to_buffer(kbuf, len, ppos, buf, len);
1954	if (rc != len) {
1955		kfree(kbuf);
1956		return rc >= 0 ? -EIO : rc;
1957	}
1958
1959	kbuf[len] = '\0';
1960	/* specify cid (use -1 for all cids) and snapshot interval in ms */
1961	rc = sscanf(kbuf, "%d %d", &cid, &interval);
1962	kfree(kbuf);
1963	if (rc < 0)
1964		return rc;
1965	if (rc < 2 || interval < 0)
1966		return -EINVAL;
1967
1968	wil_info(wil, "request link statistics, cid %d interval %d\n",
1969		 cid, interval);
1970
1971	rc = mutex_lock_interruptible(&wil->vif_mutex);
1972	if (rc)
1973		return rc;
1974
1975	for (i = 0; i < GET_MAX_VIFS(wil); i++) {
1976		vif = wil->vifs[i];
1977		if (!vif)
1978			continue;
1979
1980		rc = wmi_link_stats_cfg(vif, WMI_LINK_STATS_TYPE_BASIC,
1981					(cid == -1 ? 0xff : cid), interval);
1982		if (rc)
1983			wil_err(wil, "link statistics failed for mid %d\n", i);
1984	}
1985	mutex_unlock(&wil->vif_mutex);
1986
1987	return len;
1988}
1989
1990static const struct file_operations fops_link_stats = {
1991	.open		= wil_link_stats_seq_open,
1992	.release	= single_release,
1993	.read		= seq_read,
1994	.write		= wil_link_stats_write,
1995	.llseek		= seq_lseek,
1996};
1997
1998static int
1999wil_link_stats_global_debugfs_show(struct seq_file *s, void *data)
2000{
2001	struct wil6210_priv *wil = s->private;
2002
2003	if (!wil->fw_stats_global.ready)
2004		return 0;
2005
2006	seq_printf(s, "TSF %lld\n", wil->fw_stats_global.tsf);
2007	wil_link_stats_print_global(wil, s, &wil->fw_stats_global.stats);
2008
2009	return 0;
2010}
2011
2012static int
2013wil_link_stats_global_seq_open(struct inode *inode, struct file *file)
2014{
2015	return single_open(file, wil_link_stats_global_debugfs_show,
2016			   inode->i_private);
2017}
2018
2019static ssize_t
2020wil_link_stats_global_write(struct file *file, const char __user *buf,
2021			    size_t len, loff_t *ppos)
2022{
2023	struct seq_file *s = file->private_data;
2024	struct wil6210_priv *wil = s->private;
2025	int interval, rc;
2026	struct wil6210_vif *vif = ndev_to_vif(wil->main_ndev);
2027
2028	/* specify snapshot interval in ms */
2029	rc = kstrtoint_from_user(buf, len, 0, &interval);
2030	if (rc || interval < 0) {
2031		wil_err(wil, "Invalid argument\n");
2032		return -EINVAL;
2033	}
2034
2035	wil_info(wil, "request global link stats, interval %d\n", interval);
2036
2037	rc = wmi_link_stats_cfg(vif, WMI_LINK_STATS_TYPE_GLOBAL, 0, interval);
2038	if (rc)
2039		wil_err(wil, "global link stats failed %d\n", rc);
2040
2041	return rc ? rc : len;
2042}
2043
2044static const struct file_operations fops_link_stats_global = {
2045	.open		= wil_link_stats_global_seq_open,
2046	.release	= single_release,
2047	.read		= seq_read,
2048	.write		= wil_link_stats_global_write,
2049	.llseek		= seq_lseek,
2050};
2051
2052static ssize_t wil_read_file_led_cfg(struct file *file, char __user *user_buf,
2053				     size_t count, loff_t *ppos)
2054{
2055	char buf[80];
2056	int n;
2057
2058	n = snprintf(buf, sizeof(buf),
2059		     "led_id is set to %d, echo 1 to enable, 0 to disable\n",
2060		     led_id);
2061
2062	n = min_t(int, n, sizeof(buf));
2063
2064	return simple_read_from_buffer(user_buf, count, ppos,
2065				       buf, n);
2066}
2067
2068static ssize_t wil_write_file_led_cfg(struct file *file,
2069				      const char __user *buf_,
2070				      size_t count, loff_t *ppos)
2071{
2072	struct wil6210_priv *wil = file->private_data;
2073	int val;
2074	int rc;
2075
2076	rc = kstrtoint_from_user(buf_, count, 0, &val);
2077	if (rc) {
2078		wil_err(wil, "Invalid argument\n");
2079		return rc;
2080	}
2081
2082	wil_info(wil, "%s led %d\n", val ? "Enabling" : "Disabling", led_id);
2083	rc = wmi_led_cfg(wil, val);
2084	if (rc) {
2085		wil_info(wil, "%s led %d failed\n",
2086			 val ? "Enabling" : "Disabling", led_id);
2087		return rc;
2088	}
2089
2090	return count;
2091}
2092
2093static const struct file_operations fops_led_cfg = {
2094	.read = wil_read_file_led_cfg,
2095	.write = wil_write_file_led_cfg,
2096	.open  = simple_open,
2097};
2098
2099/* led_blink_time, write:
2100 * "<blink_on_slow> <blink_off_slow> <blink_on_med> <blink_off_med> <blink_on_fast> <blink_off_fast>
2101 */
2102static ssize_t wil_write_led_blink_time(struct file *file,
2103					const char __user *buf,
2104					size_t len, loff_t *ppos)
2105{
2106	int rc;
2107	char *kbuf = kmalloc(len + 1, GFP_KERNEL);
2108
2109	if (!kbuf)
2110		return -ENOMEM;
2111
2112	rc = simple_write_to_buffer(kbuf, len, ppos, buf, len);
2113	if (rc != len) {
2114		kfree(kbuf);
2115		return rc >= 0 ? -EIO : rc;
2116	}
2117
2118	kbuf[len] = '\0';
2119	rc = sscanf(kbuf, "%d %d %d %d %d %d",
2120		    &led_blink_time[WIL_LED_TIME_SLOW].on_ms,
2121		    &led_blink_time[WIL_LED_TIME_SLOW].off_ms,
2122		    &led_blink_time[WIL_LED_TIME_MED].on_ms,
2123		    &led_blink_time[WIL_LED_TIME_MED].off_ms,
2124		    &led_blink_time[WIL_LED_TIME_FAST].on_ms,
2125		    &led_blink_time[WIL_LED_TIME_FAST].off_ms);
2126	kfree(kbuf);
2127
2128	if (rc < 0)
2129		return rc;
2130	if (rc < 6)
2131		return -EINVAL;
2132
2133	return len;
2134}
2135
2136static ssize_t wil_read_led_blink_time(struct file *file, char __user *user_buf,
2137				       size_t count, loff_t *ppos)
2138{
2139	static char text[400];
2140
2141	snprintf(text, sizeof(text),
2142		 "To set led blink on/off time variables write:\n"
2143		 "<blink_on_slow> <blink_off_slow> <blink_on_med> "
2144		 "<blink_off_med> <blink_on_fast> <blink_off_fast>\n"
2145		 "The current values are:\n"
2146		 "%d %d %d %d %d %d\n",
2147		 led_blink_time[WIL_LED_TIME_SLOW].on_ms,
2148		 led_blink_time[WIL_LED_TIME_SLOW].off_ms,
2149		 led_blink_time[WIL_LED_TIME_MED].on_ms,
2150		 led_blink_time[WIL_LED_TIME_MED].off_ms,
2151		 led_blink_time[WIL_LED_TIME_FAST].on_ms,
2152		 led_blink_time[WIL_LED_TIME_FAST].off_ms);
2153
2154	return simple_read_from_buffer(user_buf, count, ppos, text,
2155				       sizeof(text));
2156}
2157
2158static const struct file_operations fops_led_blink_time = {
2159	.read = wil_read_led_blink_time,
2160	.write = wil_write_led_blink_time,
2161	.open  = simple_open,
2162};
2163
2164/*---------FW capabilities------------*/
2165static int wil_fw_capabilities_debugfs_show(struct seq_file *s, void *data)
2166{
2167	struct wil6210_priv *wil = s->private;
2168
2169	seq_printf(s, "fw_capabilities : %*pb\n", WMI_FW_CAPABILITY_MAX,
2170		   wil->fw_capabilities);
2171
2172	return 0;
2173}
2174
2175static int wil_fw_capabilities_seq_open(struct inode *inode, struct file *file)
2176{
2177	return single_open(file, wil_fw_capabilities_debugfs_show,
2178			   inode->i_private);
2179}
2180
2181static const struct file_operations fops_fw_capabilities = {
2182	.open		= wil_fw_capabilities_seq_open,
2183	.release	= single_release,
2184	.read		= seq_read,
2185	.llseek		= seq_lseek,
2186};
2187
2188/*---------FW version------------*/
2189static int wil_fw_version_debugfs_show(struct seq_file *s, void *data)
2190{
2191	struct wil6210_priv *wil = s->private;
2192
2193	if (wil->fw_version[0])
2194		seq_printf(s, "%s\n", wil->fw_version);
2195	else
2196		seq_puts(s, "N/A\n");
2197
2198	return 0;
2199}
2200
2201static int wil_fw_version_seq_open(struct inode *inode, struct file *file)
2202{
2203	return single_open(file, wil_fw_version_debugfs_show,
2204			   inode->i_private);
2205}
2206
2207static const struct file_operations fops_fw_version = {
2208	.open		= wil_fw_version_seq_open,
2209	.release	= single_release,
2210	.read		= seq_read,
2211	.llseek		= seq_lseek,
2212};
2213
2214/*---------suspend_stats---------*/
2215static ssize_t wil_write_suspend_stats(struct file *file,
2216				       const char __user *buf,
2217				       size_t len, loff_t *ppos)
2218{
2219	struct wil6210_priv *wil = file->private_data;
2220
2221	memset(&wil->suspend_stats, 0, sizeof(wil->suspend_stats));
2222
2223	return len;
2224}
2225
2226static ssize_t wil_read_suspend_stats(struct file *file,
2227				      char __user *user_buf,
2228				      size_t count, loff_t *ppos)
2229{
2230	struct wil6210_priv *wil = file->private_data;
2231	char *text;
2232	int n, ret, text_size = 500;
2233
2234	text = kmalloc(text_size, GFP_KERNEL);
2235	if (!text)
2236		return -ENOMEM;
2237
2238	n = snprintf(text, text_size,
2239		     "Radio on suspend statistics:\n"
2240		     "successful suspends:%ld failed suspends:%ld\n"
2241		     "successful resumes:%ld failed resumes:%ld\n"
2242		     "rejected by device:%ld\n"
2243		     "Radio off suspend statistics:\n"
2244		     "successful suspends:%ld failed suspends:%ld\n"
2245		     "successful resumes:%ld failed resumes:%ld\n"
2246		     "General statistics:\n"
2247		     "rejected by host:%ld\n",
2248		     wil->suspend_stats.r_on.successful_suspends,
2249		     wil->suspend_stats.r_on.failed_suspends,
2250		     wil->suspend_stats.r_on.successful_resumes,
2251		     wil->suspend_stats.r_on.failed_resumes,
2252		     wil->suspend_stats.rejected_by_device,
2253		     wil->suspend_stats.r_off.successful_suspends,
2254		     wil->suspend_stats.r_off.failed_suspends,
2255		     wil->suspend_stats.r_off.successful_resumes,
2256		     wil->suspend_stats.r_off.failed_resumes,
2257		     wil->suspend_stats.rejected_by_host);
2258
2259	n = min_t(int, n, text_size);
2260
2261	ret = simple_read_from_buffer(user_buf, count, ppos, text, n);
2262
2263	kfree(text);
2264
2265	return ret;
2266}
2267
2268static const struct file_operations fops_suspend_stats = {
2269	.read = wil_read_suspend_stats,
2270	.write = wil_write_suspend_stats,
2271	.open  = simple_open,
2272};
2273
2274/*---------compressed_rx_status---------*/
2275static ssize_t wil_compressed_rx_status_write(struct file *file,
2276					      const char __user *buf,
2277					      size_t len, loff_t *ppos)
2278{
2279	struct seq_file *s = file->private_data;
2280	struct wil6210_priv *wil = s->private;
2281	int compressed_rx_status;
2282	int rc;
2283
2284	rc = kstrtoint_from_user(buf, len, 0, &compressed_rx_status);
2285	if (rc) {
2286		wil_err(wil, "Invalid argument\n");
2287		return rc;
2288	}
2289
2290	if (wil_has_active_ifaces(wil, true, false)) {
2291		wil_err(wil, "cannot change edma config after iface is up\n");
2292		return -EPERM;
2293	}
2294
2295	wil_info(wil, "%sable compressed_rx_status\n",
2296		 compressed_rx_status ? "En" : "Dis");
2297
2298	wil->use_compressed_rx_status = compressed_rx_status;
2299
2300	return len;
2301}
2302
2303static int
2304wil_compressed_rx_status_show(struct seq_file *s, void *data)
2305{
2306	struct wil6210_priv *wil = s->private;
2307
2308	seq_printf(s, "%d\n", wil->use_compressed_rx_status);
2309
2310	return 0;
2311}
2312
2313static int
2314wil_compressed_rx_status_seq_open(struct inode *inode, struct file *file)
2315{
2316	return single_open(file, wil_compressed_rx_status_show,
2317			   inode->i_private);
2318}
2319
2320static const struct file_operations fops_compressed_rx_status = {
2321	.open  = wil_compressed_rx_status_seq_open,
2322	.release = single_release,
2323	.read = seq_read,
2324	.write = wil_compressed_rx_status_write,
2325	.llseek	= seq_lseek,
2326};
2327
2328/*----------------*/
2329static void wil6210_debugfs_init_blobs(struct wil6210_priv *wil,
2330				       struct dentry *dbg)
2331{
2332	int i;
2333	char name[32];
2334
2335	for (i = 0; i < ARRAY_SIZE(fw_mapping); i++) {
2336		struct wil_blob_wrapper *wil_blob = &wil->blobs[i];
2337		struct debugfs_blob_wrapper *blob = &wil_blob->blob;
2338		const struct fw_map *map = &fw_mapping[i];
2339
2340		if (!map->name)
2341			continue;
2342
2343		wil_blob->wil = wil;
2344		blob->data = (void * __force)wil->csr + HOSTADDR(map->host);
2345		blob->size = map->to - map->from;
2346		snprintf(name, sizeof(name), "blob_%s", map->name);
2347		wil_debugfs_create_ioblob(name, 0444, dbg, wil_blob);
2348	}
2349}
2350
2351/* misc files */
2352static const struct {
2353	const char *name;
2354	umode_t mode;
2355	const struct file_operations *fops;
2356} dbg_files[] = {
2357	{"mbox",	0444,		&mbox_fops},
2358	{"rings",	0444,		&ring_fops},
2359	{"stations", 0444,		&sta_fops},
2360	{"mids",	0444,		&mids_fops},
2361	{"desc",	0444,		&txdesc_fops},
2362	{"bf",		0444,		&bf_fops},
2363	{"mem_val",	0644,		&memread_fops},
2364	{"rxon",	0244,		&fops_rxon},
2365	{"tx_mgmt",	0244,		&fops_txmgmt},
2366	{"wmi_send", 0244,		&fops_wmi},
2367	{"back",	0644,		&fops_back},
2368	{"pmccfg",	0644,		&fops_pmccfg},
2369	{"pmcdata",	0444,		&fops_pmcdata},
2370	{"pmcring",	0444,		&fops_pmcring},
2371	{"temp",	0444,		&temp_fops},
2372	{"freq",	0444,		&freq_fops},
2373	{"link",	0444,		&link_fops},
2374	{"info",	0444,		&info_fops},
2375	{"recovery", 0644,		&fops_recovery},
2376	{"led_cfg",	0644,		&fops_led_cfg},
2377	{"led_blink_time",	0644,	&fops_led_blink_time},
2378	{"fw_capabilities",	0444,	&fops_fw_capabilities},
2379	{"fw_version",	0444,		&fops_fw_version},
2380	{"suspend_stats",	0644,	&fops_suspend_stats},
2381	{"compressed_rx_status", 0644,	&fops_compressed_rx_status},
2382	{"srings",	0444,		&srings_fops},
2383	{"status_msg",	0444,		&status_msg_fops},
2384	{"rx_buff_mgmt",	0444,	&rx_buff_mgmt_fops},
2385	{"tx_latency",	0644,		&fops_tx_latency},
2386	{"link_stats",	0644,		&fops_link_stats},
2387	{"link_stats_global",	0644,	&fops_link_stats_global},
2388	{"rbufcap",	0244,		&fops_rbufcap},
2389};
2390
2391static void wil6210_debugfs_init_files(struct wil6210_priv *wil,
2392				       struct dentry *dbg)
2393{
2394	int i;
2395
2396	for (i = 0; i < ARRAY_SIZE(dbg_files); i++)
2397		debugfs_create_file(dbg_files[i].name, dbg_files[i].mode, dbg,
2398				    wil, dbg_files[i].fops);
2399}
2400
2401/* interrupt control blocks */
2402static const struct {
2403	const char *name;
2404	u32 icr_off;
2405} dbg_icr[] = {
2406	{"USER_ICR",		HOSTADDR(RGF_USER_USER_ICR)},
2407	{"DMA_EP_TX_ICR",	HOSTADDR(RGF_DMA_EP_TX_ICR)},
2408	{"DMA_EP_RX_ICR",	HOSTADDR(RGF_DMA_EP_RX_ICR)},
2409	{"DMA_EP_MISC_ICR",	HOSTADDR(RGF_DMA_EP_MISC_ICR)},
2410};
2411
2412static void wil6210_debugfs_init_isr(struct wil6210_priv *wil,
2413				     struct dentry *dbg)
2414{
2415	int i;
2416
2417	for (i = 0; i < ARRAY_SIZE(dbg_icr); i++)
2418		wil6210_debugfs_create_ISR(wil, dbg_icr[i].name, dbg,
2419					   dbg_icr[i].icr_off);
2420}
2421
2422#define WIL_FIELD(name, mode, type) { __stringify(name), mode, \
2423	offsetof(struct wil6210_priv, name), type}
2424
2425/* fields in struct wil6210_priv */
2426static const struct dbg_off dbg_wil_off[] = {
2427	WIL_FIELD(status[0],	0644,	doff_ulong),
2428	WIL_FIELD(hw_version,	0444,	doff_x32),
2429	WIL_FIELD(recovery_count, 0444,	doff_u32),
2430	WIL_FIELD(discovery_mode, 0644,	doff_u8),
2431	WIL_FIELD(chip_revision, 0444,	doff_u8),
2432	WIL_FIELD(abft_len, 0644,		doff_u8),
2433	WIL_FIELD(wakeup_trigger, 0644,		doff_u8),
2434	WIL_FIELD(ring_idle_trsh, 0644,	doff_u32),
2435	WIL_FIELD(num_rx_status_rings, 0644,	doff_u8),
2436	WIL_FIELD(rx_status_ring_order, 0644,	doff_u32),
2437	WIL_FIELD(tx_status_ring_order, 0644,	doff_u32),
2438	WIL_FIELD(rx_buff_id_count, 0644,	doff_u32),
2439	WIL_FIELD(amsdu_en, 0644,	doff_u8),
2440	{},
2441};
2442
2443static const struct dbg_off dbg_wil_regs[] = {
2444	{"RGF_MAC_MTRL_COUNTER_0", 0444, HOSTADDR(RGF_MAC_MTRL_COUNTER_0),
2445		doff_io32},
2446	{"RGF_USER_USAGE_1", 0444, HOSTADDR(RGF_USER_USAGE_1), doff_io32},
2447	{"RGF_USER_USAGE_2", 0444, HOSTADDR(RGF_USER_USAGE_2), doff_io32},
2448	{},
2449};
2450
2451/* static parameters */
2452static const struct dbg_off dbg_statics[] = {
2453	{"desc_index",	0644, (ulong)&dbg_txdesc_index, doff_u32},
2454	{"ring_index",	0644, (ulong)&dbg_ring_index, doff_u32},
2455	{"mem_addr",	0644, (ulong)&mem_addr, doff_u32},
2456	{"led_polarity", 0644, (ulong)&led_polarity, doff_u8},
2457	{"status_index", 0644, (ulong)&dbg_status_msg_index, doff_u32},
2458	{"sring_index",	0644, (ulong)&dbg_sring_index, doff_u32},
2459	{"drop_if_ring_full", 0644, (ulong)&drop_if_ring_full, doff_u8},
2460	{},
2461};
2462
2463static const int dbg_off_count = 4 * (ARRAY_SIZE(isr_off) - 1) +
2464				ARRAY_SIZE(dbg_wil_regs) - 1 +
2465				ARRAY_SIZE(pseudo_isr_off) - 1 +
2466				ARRAY_SIZE(lgc_itr_cnt_off) - 1 +
2467				ARRAY_SIZE(tx_itr_cnt_off) - 1 +
2468				ARRAY_SIZE(rx_itr_cnt_off) - 1;
2469
2470int wil6210_debugfs_init(struct wil6210_priv *wil)
2471{
2472	struct dentry *dbg = wil->debug = debugfs_create_dir(WIL_NAME,
2473			wil_to_wiphy(wil)->debugfsdir);
2474	if (IS_ERR_OR_NULL(dbg))
2475		return -ENODEV;
2476
2477	wil->dbg_data.data_arr = kcalloc(dbg_off_count,
2478					 sizeof(struct wil_debugfs_iomem_data),
2479					 GFP_KERNEL);
2480	if (!wil->dbg_data.data_arr) {
2481		debugfs_remove_recursive(dbg);
2482		wil->debug = NULL;
2483		return -ENOMEM;
2484	}
2485
2486	wil->dbg_data.iomem_data_count = 0;
2487
2488	wil_pmc_init(wil);
2489
2490	wil6210_debugfs_init_files(wil, dbg);
2491	wil6210_debugfs_init_isr(wil, dbg);
2492	wil6210_debugfs_init_blobs(wil, dbg);
2493	wil6210_debugfs_init_offset(wil, dbg, wil, dbg_wil_off);
2494	wil6210_debugfs_init_offset(wil, dbg, (void * __force)wil->csr,
2495				    dbg_wil_regs);
2496	wil6210_debugfs_init_offset(wil, dbg, NULL, dbg_statics);
2497
2498	wil6210_debugfs_create_pseudo_ISR(wil, dbg);
2499
2500	wil6210_debugfs_create_ITR_CNT(wil, dbg);
2501
2502	return 0;
2503}
2504
2505void wil6210_debugfs_remove(struct wil6210_priv *wil)
2506{
2507	int i;
2508
2509	debugfs_remove_recursive(wil->debug);
2510	wil->debug = NULL;
2511
2512	kfree(wil->dbg_data.data_arr);
2513	for (i = 0; i < wil->max_assoc_sta; i++)
2514		kfree(wil->sta[i].tx_latency_bins);
2515
2516	/* free pmc memory without sending command to fw, as it will
2517	 * be reset on the way down anyway
2518	 */
2519	wil_pmc_free(wil, false);
2520}
2521