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1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Qualcomm Wireless Connectivity Subsystem Peripheral Image Loader
4  *
5  * Copyright (C) 2016 Linaro Ltd
6  * Copyright (C) 2014 Sony Mobile Communications AB
7  * Copyright (c) 2012-2013, The Linux Foundation. All rights reserved.
8  */
9 
10 #include <linux/clk.h>
11 #include <linux/delay.h>
12 #include <linux/firmware.h>
13 #include <linux/interrupt.h>
14 #include <linux/kernel.h>
15 #include <linux/module.h>
16 #include <linux/io.h>
17 #include <linux/of_address.h>
18 #include <linux/of_device.h>
19 #include <linux/platform_device.h>
20 #include <linux/pm_domain.h>
21 #include <linux/pm_runtime.h>
22 #include <linux/qcom_scm.h>
23 #include <linux/regulator/consumer.h>
24 #include <linux/remoteproc.h>
25 #include <linux/soc/qcom/mdt_loader.h>
26 #include <linux/soc/qcom/smem.h>
27 #include <linux/soc/qcom/smem_state.h>
28 #include <linux/rpmsg/qcom_smd.h>
29 
30 #include "qcom_common.h"
31 #include "remoteproc_internal.h"
32 #include "qcom_pil_info.h"
33 #include "qcom_wcnss.h"
34 
35 #define WCNSS_CRASH_REASON_SMEM		422
36 #define WCNSS_FIRMWARE_NAME		"wcnss.mdt"
37 #define WCNSS_PAS_ID			6
38 #define WCNSS_SSCTL_ID			0x13
39 
40 #define WCNSS_SPARE_NVBIN_DLND		BIT(25)
41 
42 #define WCNSS_PMU_IRIS_XO_CFG		BIT(3)
43 #define WCNSS_PMU_IRIS_XO_EN		BIT(4)
44 #define WCNSS_PMU_GC_BUS_MUX_SEL_TOP	BIT(5)
45 #define WCNSS_PMU_IRIS_XO_CFG_STS	BIT(6) /* 1: in progress, 0: done */
46 
47 #define WCNSS_PMU_IRIS_RESET		BIT(7)
48 #define WCNSS_PMU_IRIS_RESET_STS	BIT(8) /* 1: in progress, 0: done */
49 #define WCNSS_PMU_IRIS_XO_READ		BIT(9)
50 #define WCNSS_PMU_IRIS_XO_READ_STS	BIT(10)
51 
52 #define WCNSS_PMU_XO_MODE_MASK		GENMASK(2, 1)
53 #define WCNSS_PMU_XO_MODE_19p2		0
54 #define WCNSS_PMU_XO_MODE_48		3
55 
56 #define WCNSS_MAX_PDS			2
57 
58 struct wcnss_data {
59 	size_t pmu_offset;
60 	size_t spare_offset;
61 
62 	const char *pd_names[WCNSS_MAX_PDS];
63 	const struct wcnss_vreg_info *vregs;
64 	size_t num_vregs, num_pd_vregs;
65 };
66 
67 struct qcom_wcnss {
68 	struct device *dev;
69 	struct rproc *rproc;
70 
71 	void __iomem *pmu_cfg;
72 	void __iomem *spare_out;
73 
74 	bool use_48mhz_xo;
75 
76 	int wdog_irq;
77 	int fatal_irq;
78 	int ready_irq;
79 	int handover_irq;
80 	int stop_ack_irq;
81 
82 	struct qcom_smem_state *state;
83 	unsigned stop_bit;
84 
85 	struct mutex iris_lock;
86 	struct qcom_iris *iris;
87 
88 	struct device *pds[WCNSS_MAX_PDS];
89 	size_t num_pds;
90 	struct regulator_bulk_data *vregs;
91 	size_t num_vregs;
92 
93 	struct completion start_done;
94 	struct completion stop_done;
95 
96 	phys_addr_t mem_phys;
97 	phys_addr_t mem_reloc;
98 	void *mem_region;
99 	size_t mem_size;
100 
101 	struct qcom_rproc_subdev smd_subdev;
102 	struct qcom_sysmon *sysmon;
103 };
104 
105 static const struct wcnss_data riva_data = {
106 	.pmu_offset = 0x28,
107 	.spare_offset = 0xb4,
108 
109 	.vregs = (struct wcnss_vreg_info[]) {
110 		{ "vddmx",  1050000, 1150000, 0 },
111 		{ "vddcx",  1050000, 1150000, 0 },
112 		{ "vddpx",  1800000, 1800000, 0 },
113 	},
114 	.num_vregs = 3,
115 };
116 
117 static const struct wcnss_data pronto_v1_data = {
118 	.pmu_offset = 0x1004,
119 	.spare_offset = 0x1088,
120 
121 	.pd_names = { "mx", "cx" },
122 	.vregs = (struct wcnss_vreg_info[]) {
123 		{ "vddmx", 950000, 1150000, 0 },
124 		{ "vddcx", .super_turbo = true},
125 		{ "vddpx", 1800000, 1800000, 0 },
126 	},
127 	.num_pd_vregs = 2,
128 	.num_vregs = 1,
129 };
130 
131 static const struct wcnss_data pronto_v2_data = {
132 	.pmu_offset = 0x1004,
133 	.spare_offset = 0x1088,
134 
135 	.pd_names = { "mx", "cx" },
136 	.vregs = (struct wcnss_vreg_info[]) {
137 		{ "vddmx", 1287500, 1287500, 0 },
138 		{ "vddcx", .super_turbo = true },
139 		{ "vddpx", 1800000, 1800000, 0 },
140 	},
141 	.num_pd_vregs = 2,
142 	.num_vregs = 1,
143 };
144 
wcnss_load(struct rproc * rproc,const struct firmware * fw)145 static int wcnss_load(struct rproc *rproc, const struct firmware *fw)
146 {
147 	struct qcom_wcnss *wcnss = (struct qcom_wcnss *)rproc->priv;
148 	int ret;
149 
150 	ret = qcom_mdt_load(wcnss->dev, fw, rproc->firmware, WCNSS_PAS_ID,
151 			    wcnss->mem_region, wcnss->mem_phys,
152 			    wcnss->mem_size, &wcnss->mem_reloc);
153 	if (ret)
154 		return ret;
155 
156 	qcom_pil_info_store("wcnss", wcnss->mem_phys, wcnss->mem_size);
157 
158 	return 0;
159 }
160 
wcnss_indicate_nv_download(struct qcom_wcnss * wcnss)161 static void wcnss_indicate_nv_download(struct qcom_wcnss *wcnss)
162 {
163 	u32 val;
164 
165 	/* Indicate NV download capability */
166 	val = readl(wcnss->spare_out);
167 	val |= WCNSS_SPARE_NVBIN_DLND;
168 	writel(val, wcnss->spare_out);
169 }
170 
wcnss_configure_iris(struct qcom_wcnss * wcnss)171 static void wcnss_configure_iris(struct qcom_wcnss *wcnss)
172 {
173 	u32 val;
174 
175 	/* Clear PMU cfg register */
176 	writel(0, wcnss->pmu_cfg);
177 
178 	val = WCNSS_PMU_GC_BUS_MUX_SEL_TOP | WCNSS_PMU_IRIS_XO_EN;
179 	writel(val, wcnss->pmu_cfg);
180 
181 	/* Clear XO_MODE */
182 	val &= ~WCNSS_PMU_XO_MODE_MASK;
183 	if (wcnss->use_48mhz_xo)
184 		val |= WCNSS_PMU_XO_MODE_48 << 1;
185 	else
186 		val |= WCNSS_PMU_XO_MODE_19p2 << 1;
187 	writel(val, wcnss->pmu_cfg);
188 
189 	/* Reset IRIS */
190 	val |= WCNSS_PMU_IRIS_RESET;
191 	writel(val, wcnss->pmu_cfg);
192 
193 	/* Wait for PMU.iris_reg_reset_sts */
194 	while (readl(wcnss->pmu_cfg) & WCNSS_PMU_IRIS_RESET_STS)
195 		cpu_relax();
196 
197 	/* Clear IRIS reset */
198 	val &= ~WCNSS_PMU_IRIS_RESET;
199 	writel(val, wcnss->pmu_cfg);
200 
201 	/* Start IRIS XO configuration */
202 	val |= WCNSS_PMU_IRIS_XO_CFG;
203 	writel(val, wcnss->pmu_cfg);
204 
205 	/* Wait for XO configuration to finish */
206 	while (readl(wcnss->pmu_cfg) & WCNSS_PMU_IRIS_XO_CFG_STS)
207 		cpu_relax();
208 
209 	/* Stop IRIS XO configuration */
210 	val &= ~WCNSS_PMU_GC_BUS_MUX_SEL_TOP;
211 	val &= ~WCNSS_PMU_IRIS_XO_CFG;
212 	writel(val, wcnss->pmu_cfg);
213 
214 	/* Add some delay for XO to settle */
215 	msleep(20);
216 }
217 
wcnss_start(struct rproc * rproc)218 static int wcnss_start(struct rproc *rproc)
219 {
220 	struct qcom_wcnss *wcnss = (struct qcom_wcnss *)rproc->priv;
221 	int ret, i;
222 
223 	mutex_lock(&wcnss->iris_lock);
224 	if (!wcnss->iris) {
225 		dev_err(wcnss->dev, "no iris registered\n");
226 		ret = -EINVAL;
227 		goto release_iris_lock;
228 	}
229 
230 	for (i = 0; i < wcnss->num_pds; i++) {
231 		dev_pm_genpd_set_performance_state(wcnss->pds[i], INT_MAX);
232 		ret = pm_runtime_get_sync(wcnss->pds[i]);
233 		if (ret < 0) {
234 			pm_runtime_put_noidle(wcnss->pds[i]);
235 			goto disable_pds;
236 		}
237 	}
238 
239 	ret = regulator_bulk_enable(wcnss->num_vregs, wcnss->vregs);
240 	if (ret)
241 		goto disable_pds;
242 
243 	ret = qcom_iris_enable(wcnss->iris);
244 	if (ret)
245 		goto disable_regulators;
246 
247 	wcnss_indicate_nv_download(wcnss);
248 	wcnss_configure_iris(wcnss);
249 
250 	ret = qcom_scm_pas_auth_and_reset(WCNSS_PAS_ID);
251 	if (ret) {
252 		dev_err(wcnss->dev,
253 			"failed to authenticate image and release reset\n");
254 		goto disable_iris;
255 	}
256 
257 	ret = wait_for_completion_timeout(&wcnss->start_done,
258 					  msecs_to_jiffies(5000));
259 	if (wcnss->ready_irq > 0 && ret == 0) {
260 		/* We have a ready_irq, but it didn't fire in time. */
261 		dev_err(wcnss->dev, "start timed out\n");
262 		qcom_scm_pas_shutdown(WCNSS_PAS_ID);
263 		ret = -ETIMEDOUT;
264 		goto disable_iris;
265 	}
266 
267 	ret = 0;
268 
269 disable_iris:
270 	qcom_iris_disable(wcnss->iris);
271 disable_regulators:
272 	regulator_bulk_disable(wcnss->num_vregs, wcnss->vregs);
273 disable_pds:
274 	for (i--; i >= 0; i--) {
275 		pm_runtime_put(wcnss->pds[i]);
276 		dev_pm_genpd_set_performance_state(wcnss->pds[i], 0);
277 	}
278 release_iris_lock:
279 	mutex_unlock(&wcnss->iris_lock);
280 
281 	return ret;
282 }
283 
wcnss_stop(struct rproc * rproc)284 static int wcnss_stop(struct rproc *rproc)
285 {
286 	struct qcom_wcnss *wcnss = (struct qcom_wcnss *)rproc->priv;
287 	int ret;
288 
289 	if (wcnss->state) {
290 		qcom_smem_state_update_bits(wcnss->state,
291 					    BIT(wcnss->stop_bit),
292 					    BIT(wcnss->stop_bit));
293 
294 		ret = wait_for_completion_timeout(&wcnss->stop_done,
295 						  msecs_to_jiffies(5000));
296 		if (ret == 0)
297 			dev_err(wcnss->dev, "timed out on wait\n");
298 
299 		qcom_smem_state_update_bits(wcnss->state,
300 					    BIT(wcnss->stop_bit),
301 					    0);
302 	}
303 
304 	ret = qcom_scm_pas_shutdown(WCNSS_PAS_ID);
305 	if (ret)
306 		dev_err(wcnss->dev, "failed to shutdown: %d\n", ret);
307 
308 	return ret;
309 }
310 
wcnss_da_to_va(struct rproc * rproc,u64 da,size_t len,bool * is_iomem)311 static void *wcnss_da_to_va(struct rproc *rproc, u64 da, size_t len, bool *is_iomem)
312 {
313 	struct qcom_wcnss *wcnss = (struct qcom_wcnss *)rproc->priv;
314 	int offset;
315 
316 	offset = da - wcnss->mem_reloc;
317 	if (offset < 0 || offset + len > wcnss->mem_size)
318 		return NULL;
319 
320 	return wcnss->mem_region + offset;
321 }
322 
323 static const struct rproc_ops wcnss_ops = {
324 	.start = wcnss_start,
325 	.stop = wcnss_stop,
326 	.da_to_va = wcnss_da_to_va,
327 	.parse_fw = qcom_register_dump_segments,
328 	.load = wcnss_load,
329 };
330 
wcnss_wdog_interrupt(int irq,void * dev)331 static irqreturn_t wcnss_wdog_interrupt(int irq, void *dev)
332 {
333 	struct qcom_wcnss *wcnss = dev;
334 
335 	rproc_report_crash(wcnss->rproc, RPROC_WATCHDOG);
336 
337 	return IRQ_HANDLED;
338 }
339 
wcnss_fatal_interrupt(int irq,void * dev)340 static irqreturn_t wcnss_fatal_interrupt(int irq, void *dev)
341 {
342 	struct qcom_wcnss *wcnss = dev;
343 	size_t len;
344 	char *msg;
345 
346 	msg = qcom_smem_get(QCOM_SMEM_HOST_ANY, WCNSS_CRASH_REASON_SMEM, &len);
347 	if (!IS_ERR(msg) && len > 0 && msg[0])
348 		dev_err(wcnss->dev, "fatal error received: %s\n", msg);
349 
350 	rproc_report_crash(wcnss->rproc, RPROC_FATAL_ERROR);
351 
352 	return IRQ_HANDLED;
353 }
354 
wcnss_ready_interrupt(int irq,void * dev)355 static irqreturn_t wcnss_ready_interrupt(int irq, void *dev)
356 {
357 	struct qcom_wcnss *wcnss = dev;
358 
359 	complete(&wcnss->start_done);
360 
361 	return IRQ_HANDLED;
362 }
363 
wcnss_handover_interrupt(int irq,void * dev)364 static irqreturn_t wcnss_handover_interrupt(int irq, void *dev)
365 {
366 	/*
367 	 * XXX: At this point we're supposed to release the resources that we
368 	 * have been holding on behalf of the WCNSS. Unfortunately this
369 	 * interrupt comes way before the other side seems to be done.
370 	 *
371 	 * So we're currently relying on the ready interrupt firing later then
372 	 * this and we just disable the resources at the end of wcnss_start().
373 	 */
374 
375 	return IRQ_HANDLED;
376 }
377 
wcnss_stop_ack_interrupt(int irq,void * dev)378 static irqreturn_t wcnss_stop_ack_interrupt(int irq, void *dev)
379 {
380 	struct qcom_wcnss *wcnss = dev;
381 
382 	complete(&wcnss->stop_done);
383 
384 	return IRQ_HANDLED;
385 }
386 
wcnss_init_pds(struct qcom_wcnss * wcnss,const char * const pd_names[WCNSS_MAX_PDS])387 static int wcnss_init_pds(struct qcom_wcnss *wcnss,
388 			  const char * const pd_names[WCNSS_MAX_PDS])
389 {
390 	int i, ret;
391 
392 	for (i = 0; i < WCNSS_MAX_PDS; i++) {
393 		if (!pd_names[i])
394 			break;
395 
396 		wcnss->pds[i] = dev_pm_domain_attach_by_name(wcnss->dev, pd_names[i]);
397 		if (IS_ERR_OR_NULL(wcnss->pds[i])) {
398 			ret = PTR_ERR(wcnss->pds[i]) ? : -ENODATA;
399 			for (i--; i >= 0; i--)
400 				dev_pm_domain_detach(wcnss->pds[i], false);
401 			return ret;
402 		}
403 	}
404 	wcnss->num_pds = i;
405 
406 	return 0;
407 }
408 
wcnss_release_pds(struct qcom_wcnss * wcnss)409 static void wcnss_release_pds(struct qcom_wcnss *wcnss)
410 {
411 	int i;
412 
413 	for (i = 0; i < wcnss->num_pds; i++)
414 		dev_pm_domain_detach(wcnss->pds[i], false);
415 }
416 
wcnss_init_regulators(struct qcom_wcnss * wcnss,const struct wcnss_vreg_info * info,int num_vregs,int num_pd_vregs)417 static int wcnss_init_regulators(struct qcom_wcnss *wcnss,
418 				 const struct wcnss_vreg_info *info,
419 				 int num_vregs, int num_pd_vregs)
420 {
421 	struct regulator_bulk_data *bulk;
422 	int ret;
423 	int i;
424 
425 	/*
426 	 * If attaching the power domains suceeded we can skip requesting
427 	 * the regulators for the power domains. For old device trees we need to
428 	 * reserve extra space to manage them through the regulator interface.
429 	 */
430 	if (wcnss->num_pds)
431 		info += num_pd_vregs;
432 	else
433 		num_vregs += num_pd_vregs;
434 
435 	bulk = devm_kcalloc(wcnss->dev,
436 			    num_vregs, sizeof(struct regulator_bulk_data),
437 			    GFP_KERNEL);
438 	if (!bulk)
439 		return -ENOMEM;
440 
441 	for (i = 0; i < num_vregs; i++)
442 		bulk[i].supply = info[i].name;
443 
444 	ret = devm_regulator_bulk_get(wcnss->dev, num_vregs, bulk);
445 	if (ret)
446 		return ret;
447 
448 	for (i = 0; i < num_vregs; i++) {
449 		if (info[i].max_voltage)
450 			regulator_set_voltage(bulk[i].consumer,
451 					      info[i].min_voltage,
452 					      info[i].max_voltage);
453 
454 		if (info[i].load_uA)
455 			regulator_set_load(bulk[i].consumer, info[i].load_uA);
456 	}
457 
458 	wcnss->vregs = bulk;
459 	wcnss->num_vregs = num_vregs;
460 
461 	return 0;
462 }
463 
wcnss_request_irq(struct qcom_wcnss * wcnss,struct platform_device * pdev,const char * name,bool optional,irq_handler_t thread_fn)464 static int wcnss_request_irq(struct qcom_wcnss *wcnss,
465 			     struct platform_device *pdev,
466 			     const char *name,
467 			     bool optional,
468 			     irq_handler_t thread_fn)
469 {
470 	int ret;
471 	int irq_number;
472 
473 	ret = platform_get_irq_byname(pdev, name);
474 	if (ret < 0 && optional) {
475 		dev_dbg(&pdev->dev, "no %s IRQ defined, ignoring\n", name);
476 		return 0;
477 	} else if (ret < 0) {
478 		dev_err(&pdev->dev, "no %s IRQ defined\n", name);
479 		return ret;
480 	}
481 
482 	irq_number = ret;
483 
484 	ret = devm_request_threaded_irq(&pdev->dev, ret,
485 					NULL, thread_fn,
486 					IRQF_TRIGGER_RISING | IRQF_ONESHOT,
487 					"wcnss", wcnss);
488 	if (ret) {
489 		dev_err(&pdev->dev, "request %s IRQ failed\n", name);
490 		return ret;
491 	}
492 
493 	/* Return the IRQ number if the IRQ was successfully acquired */
494 	return irq_number;
495 }
496 
wcnss_alloc_memory_region(struct qcom_wcnss * wcnss)497 static int wcnss_alloc_memory_region(struct qcom_wcnss *wcnss)
498 {
499 	struct device_node *node;
500 	struct resource r;
501 	int ret;
502 
503 	node = of_parse_phandle(wcnss->dev->of_node, "memory-region", 0);
504 	if (!node) {
505 		dev_err(wcnss->dev, "no memory-region specified\n");
506 		return -EINVAL;
507 	}
508 
509 	ret = of_address_to_resource(node, 0, &r);
510 	of_node_put(node);
511 	if (ret)
512 		return ret;
513 
514 	wcnss->mem_phys = wcnss->mem_reloc = r.start;
515 	wcnss->mem_size = resource_size(&r);
516 	wcnss->mem_region = devm_ioremap_wc(wcnss->dev, wcnss->mem_phys, wcnss->mem_size);
517 	if (!wcnss->mem_region) {
518 		dev_err(wcnss->dev, "unable to map memory region: %pa+%zx\n",
519 			&r.start, wcnss->mem_size);
520 		return -EBUSY;
521 	}
522 
523 	return 0;
524 }
525 
wcnss_probe(struct platform_device * pdev)526 static int wcnss_probe(struct platform_device *pdev)
527 {
528 	const char *fw_name = WCNSS_FIRMWARE_NAME;
529 	const struct wcnss_data *data;
530 	struct qcom_wcnss *wcnss;
531 	struct resource *res;
532 	struct rproc *rproc;
533 	void __iomem *mmio;
534 	int ret;
535 
536 	data = of_device_get_match_data(&pdev->dev);
537 
538 	if (!qcom_scm_is_available())
539 		return -EPROBE_DEFER;
540 
541 	if (!qcom_scm_pas_supported(WCNSS_PAS_ID)) {
542 		dev_err(&pdev->dev, "PAS is not available for WCNSS\n");
543 		return -ENXIO;
544 	}
545 
546 	ret = of_property_read_string(pdev->dev.of_node, "firmware-name",
547 				      &fw_name);
548 	if (ret < 0 && ret != -EINVAL)
549 		return ret;
550 
551 	rproc = rproc_alloc(&pdev->dev, pdev->name, &wcnss_ops,
552 			    fw_name, sizeof(*wcnss));
553 	if (!rproc) {
554 		dev_err(&pdev->dev, "unable to allocate remoteproc\n");
555 		return -ENOMEM;
556 	}
557 	rproc_coredump_set_elf_info(rproc, ELFCLASS32, EM_NONE);
558 
559 	wcnss = (struct qcom_wcnss *)rproc->priv;
560 	wcnss->dev = &pdev->dev;
561 	wcnss->rproc = rproc;
562 	platform_set_drvdata(pdev, wcnss);
563 
564 	init_completion(&wcnss->start_done);
565 	init_completion(&wcnss->stop_done);
566 
567 	mutex_init(&wcnss->iris_lock);
568 
569 	res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "pmu");
570 	mmio = devm_ioremap_resource(&pdev->dev, res);
571 	if (IS_ERR(mmio)) {
572 		ret = PTR_ERR(mmio);
573 		goto free_rproc;
574 	}
575 
576 	ret = wcnss_alloc_memory_region(wcnss);
577 	if (ret)
578 		goto free_rproc;
579 
580 	wcnss->pmu_cfg = mmio + data->pmu_offset;
581 	wcnss->spare_out = mmio + data->spare_offset;
582 
583 	/*
584 	 * We might need to fallback to regulators instead of power domains
585 	 * for old device trees. Don't report an error in that case.
586 	 */
587 	ret = wcnss_init_pds(wcnss, data->pd_names);
588 	if (ret && (ret != -ENODATA || !data->num_pd_vregs))
589 		goto free_rproc;
590 
591 	ret = wcnss_init_regulators(wcnss, data->vregs, data->num_vregs,
592 				    data->num_pd_vregs);
593 	if (ret)
594 		goto detach_pds;
595 
596 	ret = wcnss_request_irq(wcnss, pdev, "wdog", false, wcnss_wdog_interrupt);
597 	if (ret < 0)
598 		goto detach_pds;
599 	wcnss->wdog_irq = ret;
600 
601 	ret = wcnss_request_irq(wcnss, pdev, "fatal", false, wcnss_fatal_interrupt);
602 	if (ret < 0)
603 		goto detach_pds;
604 	wcnss->fatal_irq = ret;
605 
606 	ret = wcnss_request_irq(wcnss, pdev, "ready", true, wcnss_ready_interrupt);
607 	if (ret < 0)
608 		goto detach_pds;
609 	wcnss->ready_irq = ret;
610 
611 	ret = wcnss_request_irq(wcnss, pdev, "handover", true, wcnss_handover_interrupt);
612 	if (ret < 0)
613 		goto detach_pds;
614 	wcnss->handover_irq = ret;
615 
616 	ret = wcnss_request_irq(wcnss, pdev, "stop-ack", true, wcnss_stop_ack_interrupt);
617 	if (ret < 0)
618 		goto detach_pds;
619 	wcnss->stop_ack_irq = ret;
620 
621 	if (wcnss->stop_ack_irq) {
622 		wcnss->state = devm_qcom_smem_state_get(&pdev->dev, "stop",
623 							&wcnss->stop_bit);
624 		if (IS_ERR(wcnss->state)) {
625 			ret = PTR_ERR(wcnss->state);
626 			goto detach_pds;
627 		}
628 	}
629 
630 	qcom_add_smd_subdev(rproc, &wcnss->smd_subdev);
631 	wcnss->sysmon = qcom_add_sysmon_subdev(rproc, "wcnss", WCNSS_SSCTL_ID);
632 	if (IS_ERR(wcnss->sysmon)) {
633 		ret = PTR_ERR(wcnss->sysmon);
634 		goto detach_pds;
635 	}
636 
637 	wcnss->iris = qcom_iris_probe(&pdev->dev, &wcnss->use_48mhz_xo);
638 	if (IS_ERR(wcnss->iris)) {
639 		ret = PTR_ERR(wcnss->iris);
640 		goto detach_pds;
641 	}
642 
643 	ret = rproc_add(rproc);
644 	if (ret)
645 		goto remove_iris;
646 
647 	return 0;
648 
649 remove_iris:
650 	qcom_iris_remove(wcnss->iris);
651 detach_pds:
652 	wcnss_release_pds(wcnss);
653 free_rproc:
654 	rproc_free(rproc);
655 
656 	return ret;
657 }
658 
wcnss_remove(struct platform_device * pdev)659 static int wcnss_remove(struct platform_device *pdev)
660 {
661 	struct qcom_wcnss *wcnss = platform_get_drvdata(pdev);
662 
663 	qcom_iris_remove(wcnss->iris);
664 
665 	rproc_del(wcnss->rproc);
666 
667 	qcom_remove_sysmon_subdev(wcnss->sysmon);
668 	qcom_remove_smd_subdev(wcnss->rproc, &wcnss->smd_subdev);
669 	wcnss_release_pds(wcnss);
670 	rproc_free(wcnss->rproc);
671 
672 	return 0;
673 }
674 
675 static const struct of_device_id wcnss_of_match[] = {
676 	{ .compatible = "qcom,riva-pil", &riva_data },
677 	{ .compatible = "qcom,pronto-v1-pil", &pronto_v1_data },
678 	{ .compatible = "qcom,pronto-v2-pil", &pronto_v2_data },
679 	{ },
680 };
681 MODULE_DEVICE_TABLE(of, wcnss_of_match);
682 
683 static struct platform_driver wcnss_driver = {
684 	.probe = wcnss_probe,
685 	.remove = wcnss_remove,
686 	.driver = {
687 		.name = "qcom-wcnss-pil",
688 		.of_match_table = wcnss_of_match,
689 	},
690 };
691 
692 module_platform_driver(wcnss_driver);
693 
694 MODULE_DESCRIPTION("Qualcomm Peripheral Image Loader for Wireless Subsystem");
695 MODULE_LICENSE("GPL v2");
696