• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 // SPDX-License-Identifier: GPL-2.0+
2 //
3 // soc-topology.c  --  ALSA SoC Topology
4 //
5 // Copyright (C) 2012 Texas Instruments Inc.
6 // Copyright (C) 2015 Intel Corporation.
7 //
8 // Authors: Liam Girdwood <liam.r.girdwood@linux.intel.com>
9 //		K, Mythri P <mythri.p.k@intel.com>
10 //		Prusty, Subhransu S <subhransu.s.prusty@intel.com>
11 //		B, Jayachandran <jayachandran.b@intel.com>
12 //		Abdullah, Omair M <omair.m.abdullah@intel.com>
13 //		Jin, Yao <yao.jin@intel.com>
14 //		Lin, Mengdong <mengdong.lin@intel.com>
15 //
16 //  Add support to read audio firmware topology alongside firmware text. The
17 //  topology data can contain kcontrols, DAPM graphs, widgets, DAIs, DAI links,
18 //  equalizers, firmware, coefficients etc.
19 //
20 //  This file only manages the core ALSA and ASoC components, all other bespoke
21 //  firmware topology data is passed to component drivers for bespoke handling.
22 
23 #include <linux/kernel.h>
24 #include <linux/export.h>
25 #include <linux/list.h>
26 #include <linux/firmware.h>
27 #include <linux/slab.h>
28 #include <sound/soc.h>
29 #include <sound/soc-dapm.h>
30 #include <sound/soc-topology.h>
31 #include <sound/tlv.h>
32 
33 #define SOC_TPLG_MAGIC_BIG_ENDIAN            0x436F5341 /* ASoC in reverse */
34 
35 /*
36  * We make several passes over the data (since it wont necessarily be ordered)
37  * and process objects in the following order. This guarantees the component
38  * drivers will be ready with any vendor data before the mixers and DAPM objects
39  * are loaded (that may make use of the vendor data).
40  */
41 #define SOC_TPLG_PASS_MANIFEST		0
42 #define SOC_TPLG_PASS_VENDOR		1
43 #define SOC_TPLG_PASS_MIXER		2
44 #define SOC_TPLG_PASS_WIDGET		3
45 #define SOC_TPLG_PASS_PCM_DAI		4
46 #define SOC_TPLG_PASS_GRAPH		5
47 #define SOC_TPLG_PASS_PINS		6
48 #define SOC_TPLG_PASS_BE_DAI		7
49 #define SOC_TPLG_PASS_LINK		8
50 
51 #define SOC_TPLG_PASS_START	SOC_TPLG_PASS_MANIFEST
52 #define SOC_TPLG_PASS_END	SOC_TPLG_PASS_LINK
53 
54 /* topology context */
55 struct soc_tplg {
56 	const struct firmware *fw;
57 
58 	/* runtime FW parsing */
59 	const u8 *pos;		/* read postion */
60 	const u8 *hdr_pos;	/* header position */
61 	unsigned int pass;	/* pass number */
62 
63 	/* component caller */
64 	struct device *dev;
65 	struct snd_soc_component *comp;
66 	u32 index;	/* current block index */
67 	u32 req_index;	/* required index, only loaded/free matching blocks */
68 
69 	/* vendor specific kcontrol operations */
70 	const struct snd_soc_tplg_kcontrol_ops *io_ops;
71 	int io_ops_count;
72 
73 	/* vendor specific bytes ext handlers, for TLV bytes controls */
74 	const struct snd_soc_tplg_bytes_ext_ops *bytes_ext_ops;
75 	int bytes_ext_ops_count;
76 
77 	/* optional fw loading callbacks to component drivers */
78 	struct snd_soc_tplg_ops *ops;
79 };
80 
81 static int soc_tplg_process_headers(struct soc_tplg *tplg);
82 static void soc_tplg_complete(struct soc_tplg *tplg);
83 static void soc_tplg_denum_remove_texts(struct soc_enum *se);
84 static void soc_tplg_denum_remove_values(struct soc_enum *se);
85 
86 /* check we dont overflow the data for this control chunk */
soc_tplg_check_elem_count(struct soc_tplg * tplg,size_t elem_size,unsigned int count,size_t bytes,const char * elem_type)87 static int soc_tplg_check_elem_count(struct soc_tplg *tplg, size_t elem_size,
88 	unsigned int count, size_t bytes, const char *elem_type)
89 {
90 	const u8 *end = tplg->pos + elem_size * count;
91 
92 	if (end > tplg->fw->data + tplg->fw->size) {
93 		dev_err(tplg->dev, "ASoC: %s overflow end of data\n",
94 			elem_type);
95 		return -EINVAL;
96 	}
97 
98 	/* check there is enough room in chunk for control.
99 	   extra bytes at the end of control are for vendor data here  */
100 	if (elem_size * count > bytes) {
101 		dev_err(tplg->dev,
102 			"ASoC: %s count %d of size %zu is bigger than chunk %zu\n",
103 			elem_type, count, elem_size, bytes);
104 		return -EINVAL;
105 	}
106 
107 	return 0;
108 }
109 
soc_tplg_is_eof(struct soc_tplg * tplg)110 static inline int soc_tplg_is_eof(struct soc_tplg *tplg)
111 {
112 	const u8 *end = tplg->hdr_pos;
113 
114 	if (end >= tplg->fw->data + tplg->fw->size)
115 		return 1;
116 	return 0;
117 }
118 
soc_tplg_get_hdr_offset(struct soc_tplg * tplg)119 static inline unsigned long soc_tplg_get_hdr_offset(struct soc_tplg *tplg)
120 {
121 	return (unsigned long)(tplg->hdr_pos - tplg->fw->data);
122 }
123 
soc_tplg_get_offset(struct soc_tplg * tplg)124 static inline unsigned long soc_tplg_get_offset(struct soc_tplg *tplg)
125 {
126 	return (unsigned long)(tplg->pos - tplg->fw->data);
127 }
128 
129 /* mapping of Kcontrol types and associated operations. */
130 static const struct snd_soc_tplg_kcontrol_ops io_ops[] = {
131 	{SND_SOC_TPLG_CTL_VOLSW, snd_soc_get_volsw,
132 		snd_soc_put_volsw, snd_soc_info_volsw},
133 	{SND_SOC_TPLG_CTL_VOLSW_SX, snd_soc_get_volsw_sx,
134 		snd_soc_put_volsw_sx, NULL},
135 	{SND_SOC_TPLG_CTL_ENUM, snd_soc_get_enum_double,
136 		snd_soc_put_enum_double, snd_soc_info_enum_double},
137 	{SND_SOC_TPLG_CTL_ENUM_VALUE, snd_soc_get_enum_double,
138 		snd_soc_put_enum_double, NULL},
139 	{SND_SOC_TPLG_CTL_BYTES, snd_soc_bytes_get,
140 		snd_soc_bytes_put, snd_soc_bytes_info},
141 	{SND_SOC_TPLG_CTL_RANGE, snd_soc_get_volsw_range,
142 		snd_soc_put_volsw_range, snd_soc_info_volsw_range},
143 	{SND_SOC_TPLG_CTL_VOLSW_XR_SX, snd_soc_get_xr_sx,
144 		snd_soc_put_xr_sx, snd_soc_info_xr_sx},
145 	{SND_SOC_TPLG_CTL_STROBE, snd_soc_get_strobe,
146 		snd_soc_put_strobe, NULL},
147 	{SND_SOC_TPLG_DAPM_CTL_VOLSW, snd_soc_dapm_get_volsw,
148 		snd_soc_dapm_put_volsw, snd_soc_info_volsw},
149 	{SND_SOC_TPLG_DAPM_CTL_ENUM_DOUBLE, snd_soc_dapm_get_enum_double,
150 		snd_soc_dapm_put_enum_double, snd_soc_info_enum_double},
151 	{SND_SOC_TPLG_DAPM_CTL_ENUM_VIRT, snd_soc_dapm_get_enum_double,
152 		snd_soc_dapm_put_enum_double, NULL},
153 	{SND_SOC_TPLG_DAPM_CTL_ENUM_VALUE, snd_soc_dapm_get_enum_double,
154 		snd_soc_dapm_put_enum_double, NULL},
155 	{SND_SOC_TPLG_DAPM_CTL_PIN, snd_soc_dapm_get_pin_switch,
156 		snd_soc_dapm_put_pin_switch, snd_soc_dapm_info_pin_switch},
157 };
158 
159 struct soc_tplg_map {
160 	int uid;
161 	int kid;
162 };
163 
164 /* mapping of widget types from UAPI IDs to kernel IDs */
165 static const struct soc_tplg_map dapm_map[] = {
166 	{SND_SOC_TPLG_DAPM_INPUT, snd_soc_dapm_input},
167 	{SND_SOC_TPLG_DAPM_OUTPUT, snd_soc_dapm_output},
168 	{SND_SOC_TPLG_DAPM_MUX, snd_soc_dapm_mux},
169 	{SND_SOC_TPLG_DAPM_MIXER, snd_soc_dapm_mixer},
170 	{SND_SOC_TPLG_DAPM_PGA, snd_soc_dapm_pga},
171 	{SND_SOC_TPLG_DAPM_OUT_DRV, snd_soc_dapm_out_drv},
172 	{SND_SOC_TPLG_DAPM_ADC, snd_soc_dapm_adc},
173 	{SND_SOC_TPLG_DAPM_DAC, snd_soc_dapm_dac},
174 	{SND_SOC_TPLG_DAPM_SWITCH, snd_soc_dapm_switch},
175 	{SND_SOC_TPLG_DAPM_PRE, snd_soc_dapm_pre},
176 	{SND_SOC_TPLG_DAPM_POST, snd_soc_dapm_post},
177 	{SND_SOC_TPLG_DAPM_AIF_IN, snd_soc_dapm_aif_in},
178 	{SND_SOC_TPLG_DAPM_AIF_OUT, snd_soc_dapm_aif_out},
179 	{SND_SOC_TPLG_DAPM_DAI_IN, snd_soc_dapm_dai_in},
180 	{SND_SOC_TPLG_DAPM_DAI_OUT, snd_soc_dapm_dai_out},
181 	{SND_SOC_TPLG_DAPM_DAI_LINK, snd_soc_dapm_dai_link},
182 	{SND_SOC_TPLG_DAPM_BUFFER, snd_soc_dapm_buffer},
183 	{SND_SOC_TPLG_DAPM_SCHEDULER, snd_soc_dapm_scheduler},
184 	{SND_SOC_TPLG_DAPM_EFFECT, snd_soc_dapm_effect},
185 	{SND_SOC_TPLG_DAPM_SIGGEN, snd_soc_dapm_siggen},
186 	{SND_SOC_TPLG_DAPM_SRC, snd_soc_dapm_src},
187 	{SND_SOC_TPLG_DAPM_ASRC, snd_soc_dapm_asrc},
188 	{SND_SOC_TPLG_DAPM_ENCODER, snd_soc_dapm_encoder},
189 	{SND_SOC_TPLG_DAPM_DECODER, snd_soc_dapm_decoder},
190 };
191 
tplc_chan_get_reg(struct soc_tplg * tplg,struct snd_soc_tplg_channel * chan,int map)192 static int tplc_chan_get_reg(struct soc_tplg *tplg,
193 	struct snd_soc_tplg_channel *chan, int map)
194 {
195 	int i;
196 
197 	for (i = 0; i < SND_SOC_TPLG_MAX_CHAN; i++) {
198 		if (le32_to_cpu(chan[i].id) == map)
199 			return le32_to_cpu(chan[i].reg);
200 	}
201 
202 	return -EINVAL;
203 }
204 
tplc_chan_get_shift(struct soc_tplg * tplg,struct snd_soc_tplg_channel * chan,int map)205 static int tplc_chan_get_shift(struct soc_tplg *tplg,
206 	struct snd_soc_tplg_channel *chan, int map)
207 {
208 	int i;
209 
210 	for (i = 0; i < SND_SOC_TPLG_MAX_CHAN; i++) {
211 		if (le32_to_cpu(chan[i].id) == map)
212 			return le32_to_cpu(chan[i].shift);
213 	}
214 
215 	return -EINVAL;
216 }
217 
get_widget_id(int tplg_type)218 static int get_widget_id(int tplg_type)
219 {
220 	int i;
221 
222 	for (i = 0; i < ARRAY_SIZE(dapm_map); i++) {
223 		if (tplg_type == dapm_map[i].uid)
224 			return dapm_map[i].kid;
225 	}
226 
227 	return -EINVAL;
228 }
229 
soc_bind_err(struct soc_tplg * tplg,struct snd_soc_tplg_ctl_hdr * hdr,int index)230 static inline void soc_bind_err(struct soc_tplg *tplg,
231 	struct snd_soc_tplg_ctl_hdr *hdr, int index)
232 {
233 	dev_err(tplg->dev,
234 		"ASoC: invalid control type (g,p,i) %d:%d:%d index %d at 0x%lx\n",
235 		hdr->ops.get, hdr->ops.put, hdr->ops.info, index,
236 		soc_tplg_get_offset(tplg));
237 }
238 
soc_control_err(struct soc_tplg * tplg,struct snd_soc_tplg_ctl_hdr * hdr,const char * name)239 static inline void soc_control_err(struct soc_tplg *tplg,
240 	struct snd_soc_tplg_ctl_hdr *hdr, const char *name)
241 {
242 	dev_err(tplg->dev,
243 		"ASoC: no complete mixer IO handler for %s type (g,p,i) %d:%d:%d at 0x%lx\n",
244 		name, hdr->ops.get, hdr->ops.put, hdr->ops.info,
245 		soc_tplg_get_offset(tplg));
246 }
247 
248 /* pass vendor data to component driver for processing */
soc_tplg_vendor_load(struct soc_tplg * tplg,struct snd_soc_tplg_hdr * hdr)249 static int soc_tplg_vendor_load(struct soc_tplg *tplg,
250 				struct snd_soc_tplg_hdr *hdr)
251 {
252 	int ret = 0;
253 
254 	if (tplg->ops && tplg->ops->vendor_load)
255 		ret = tplg->ops->vendor_load(tplg->comp, tplg->index, hdr);
256 	else {
257 		dev_err(tplg->dev, "ASoC: no vendor load callback for ID %d\n",
258 			hdr->vendor_type);
259 		return -EINVAL;
260 	}
261 
262 	if (ret < 0)
263 		dev_err(tplg->dev,
264 			"ASoC: vendor load failed at hdr offset %ld/0x%lx for type %d:%d\n",
265 			soc_tplg_get_hdr_offset(tplg),
266 			soc_tplg_get_hdr_offset(tplg),
267 			hdr->type, hdr->vendor_type);
268 	return ret;
269 }
270 
271 /* optionally pass new dynamic widget to component driver. This is mainly for
272  * external widgets where we can assign private data/ops */
soc_tplg_widget_load(struct soc_tplg * tplg,struct snd_soc_dapm_widget * w,struct snd_soc_tplg_dapm_widget * tplg_w)273 static int soc_tplg_widget_load(struct soc_tplg *tplg,
274 	struct snd_soc_dapm_widget *w, struct snd_soc_tplg_dapm_widget *tplg_w)
275 {
276 	if (tplg->ops && tplg->ops->widget_load)
277 		return tplg->ops->widget_load(tplg->comp, tplg->index, w,
278 			tplg_w);
279 
280 	return 0;
281 }
282 
283 /* optionally pass new dynamic widget to component driver. This is mainly for
284  * external widgets where we can assign private data/ops */
soc_tplg_widget_ready(struct soc_tplg * tplg,struct snd_soc_dapm_widget * w,struct snd_soc_tplg_dapm_widget * tplg_w)285 static int soc_tplg_widget_ready(struct soc_tplg *tplg,
286 	struct snd_soc_dapm_widget *w, struct snd_soc_tplg_dapm_widget *tplg_w)
287 {
288 	if (tplg->ops && tplg->ops->widget_ready)
289 		return tplg->ops->widget_ready(tplg->comp, tplg->index, w,
290 			tplg_w);
291 
292 	return 0;
293 }
294 
295 /* pass DAI configurations to component driver for extra initialization */
soc_tplg_dai_load(struct soc_tplg * tplg,struct snd_soc_dai_driver * dai_drv,struct snd_soc_tplg_pcm * pcm,struct snd_soc_dai * dai)296 static int soc_tplg_dai_load(struct soc_tplg *tplg,
297 	struct snd_soc_dai_driver *dai_drv,
298 	struct snd_soc_tplg_pcm *pcm, struct snd_soc_dai *dai)
299 {
300 	if (tplg->ops && tplg->ops->dai_load)
301 		return tplg->ops->dai_load(tplg->comp, tplg->index, dai_drv,
302 			pcm, dai);
303 
304 	return 0;
305 }
306 
307 /* pass link configurations to component driver for extra initialization */
soc_tplg_dai_link_load(struct soc_tplg * tplg,struct snd_soc_dai_link * link,struct snd_soc_tplg_link_config * cfg)308 static int soc_tplg_dai_link_load(struct soc_tplg *tplg,
309 	struct snd_soc_dai_link *link, struct snd_soc_tplg_link_config *cfg)
310 {
311 	if (tplg->ops && tplg->ops->link_load)
312 		return tplg->ops->link_load(tplg->comp, tplg->index, link, cfg);
313 
314 	return 0;
315 }
316 
317 /* tell the component driver that all firmware has been loaded in this request */
soc_tplg_complete(struct soc_tplg * tplg)318 static void soc_tplg_complete(struct soc_tplg *tplg)
319 {
320 	if (tplg->ops && tplg->ops->complete)
321 		tplg->ops->complete(tplg->comp);
322 }
323 
324 /* add a dynamic kcontrol */
soc_tplg_add_dcontrol(struct snd_card * card,struct device * dev,const struct snd_kcontrol_new * control_new,const char * prefix,void * data,struct snd_kcontrol ** kcontrol)325 static int soc_tplg_add_dcontrol(struct snd_card *card, struct device *dev,
326 	const struct snd_kcontrol_new *control_new, const char *prefix,
327 	void *data, struct snd_kcontrol **kcontrol)
328 {
329 	int err;
330 
331 	*kcontrol = snd_soc_cnew(control_new, data, control_new->name, prefix);
332 	if (*kcontrol == NULL) {
333 		dev_err(dev, "ASoC: Failed to create new kcontrol %s\n",
334 		control_new->name);
335 		return -ENOMEM;
336 	}
337 
338 	err = snd_ctl_add(card, *kcontrol);
339 	if (err < 0) {
340 		dev_err(dev, "ASoC: Failed to add %s: %d\n",
341 			control_new->name, err);
342 		return err;
343 	}
344 
345 	return 0;
346 }
347 
348 /* add a dynamic kcontrol for component driver */
soc_tplg_add_kcontrol(struct soc_tplg * tplg,struct snd_kcontrol_new * k,struct snd_kcontrol ** kcontrol)349 static int soc_tplg_add_kcontrol(struct soc_tplg *tplg,
350 	struct snd_kcontrol_new *k, struct snd_kcontrol **kcontrol)
351 {
352 	struct snd_soc_component *comp = tplg->comp;
353 
354 	return soc_tplg_add_dcontrol(comp->card->snd_card,
355 				comp->dev, k, comp->name_prefix, comp, kcontrol);
356 }
357 
358 /* remove a mixer kcontrol */
remove_mixer(struct snd_soc_component * comp,struct snd_soc_dobj * dobj,int pass)359 static void remove_mixer(struct snd_soc_component *comp,
360 	struct snd_soc_dobj *dobj, int pass)
361 {
362 	struct snd_card *card = comp->card->snd_card;
363 	struct soc_mixer_control *sm =
364 		container_of(dobj, struct soc_mixer_control, dobj);
365 	const unsigned int *p = NULL;
366 
367 	if (pass != SOC_TPLG_PASS_MIXER)
368 		return;
369 
370 	if (dobj->ops && dobj->ops->control_unload)
371 		dobj->ops->control_unload(comp, dobj);
372 
373 	if (dobj->control.kcontrol->tlv.p)
374 		p = dobj->control.kcontrol->tlv.p;
375 	snd_ctl_remove(card, dobj->control.kcontrol);
376 	list_del(&dobj->list);
377 	kfree(sm);
378 	kfree(p);
379 }
380 
381 /* remove an enum kcontrol */
remove_enum(struct snd_soc_component * comp,struct snd_soc_dobj * dobj,int pass)382 static void remove_enum(struct snd_soc_component *comp,
383 	struct snd_soc_dobj *dobj, int pass)
384 {
385 	struct snd_card *card = comp->card->snd_card;
386 	struct soc_enum *se = container_of(dobj, struct soc_enum, dobj);
387 
388 	if (pass != SOC_TPLG_PASS_MIXER)
389 		return;
390 
391 	if (dobj->ops && dobj->ops->control_unload)
392 		dobj->ops->control_unload(comp, dobj);
393 
394 	snd_ctl_remove(card, dobj->control.kcontrol);
395 	list_del(&dobj->list);
396 
397 	soc_tplg_denum_remove_values(se);
398 	soc_tplg_denum_remove_texts(se);
399 	kfree(se);
400 }
401 
402 /* remove a byte kcontrol */
remove_bytes(struct snd_soc_component * comp,struct snd_soc_dobj * dobj,int pass)403 static void remove_bytes(struct snd_soc_component *comp,
404 	struct snd_soc_dobj *dobj, int pass)
405 {
406 	struct snd_card *card = comp->card->snd_card;
407 	struct soc_bytes_ext *sb =
408 		container_of(dobj, struct soc_bytes_ext, dobj);
409 
410 	if (pass != SOC_TPLG_PASS_MIXER)
411 		return;
412 
413 	if (dobj->ops && dobj->ops->control_unload)
414 		dobj->ops->control_unload(comp, dobj);
415 
416 	snd_ctl_remove(card, dobj->control.kcontrol);
417 	list_del(&dobj->list);
418 	kfree(sb);
419 }
420 
421 /* remove a route */
remove_route(struct snd_soc_component * comp,struct snd_soc_dobj * dobj,int pass)422 static void remove_route(struct snd_soc_component *comp,
423 			 struct snd_soc_dobj *dobj, int pass)
424 {
425 	struct snd_soc_dapm_route *route =
426 		container_of(dobj, struct snd_soc_dapm_route, dobj);
427 
428 	if (pass != SOC_TPLG_PASS_GRAPH)
429 		return;
430 
431 	if (dobj->ops && dobj->ops->dapm_route_unload)
432 		dobj->ops->dapm_route_unload(comp, dobj);
433 
434 	list_del(&dobj->list);
435 	kfree(route);
436 }
437 
438 /* remove a widget and it's kcontrols - routes must be removed first */
remove_widget(struct snd_soc_component * comp,struct snd_soc_dobj * dobj,int pass)439 static void remove_widget(struct snd_soc_component *comp,
440 	struct snd_soc_dobj *dobj, int pass)
441 {
442 	struct snd_card *card = comp->card->snd_card;
443 	struct snd_soc_dapm_widget *w =
444 		container_of(dobj, struct snd_soc_dapm_widget, dobj);
445 	int i;
446 
447 	if (pass != SOC_TPLG_PASS_WIDGET)
448 		return;
449 
450 	if (dobj->ops && dobj->ops->widget_unload)
451 		dobj->ops->widget_unload(comp, dobj);
452 
453 	if (!w->kcontrols)
454 		goto free_news;
455 
456 	/*
457 	 * Dynamic Widgets either have 1..N enum kcontrols or mixers.
458 	 * The enum may either have an array of values or strings.
459 	 */
460 	if (dobj->widget.kcontrol_type == SND_SOC_TPLG_TYPE_ENUM) {
461 		/* enumerated widget mixer */
462 		for (i = 0; w->kcontrols != NULL && i < w->num_kcontrols; i++) {
463 			struct snd_kcontrol *kcontrol = w->kcontrols[i];
464 			struct soc_enum *se =
465 				(struct soc_enum *)kcontrol->private_value;
466 
467 			snd_ctl_remove(card, kcontrol);
468 
469 			/* free enum kcontrol's dvalues and dtexts */
470 			soc_tplg_denum_remove_values(se);
471 			soc_tplg_denum_remove_texts(se);
472 
473 			kfree(se);
474 			kfree(w->kcontrol_news[i].name);
475 		}
476 	} else {
477 		/* volume mixer or bytes controls */
478 		for (i = 0; w->kcontrols != NULL && i < w->num_kcontrols; i++) {
479 			struct snd_kcontrol *kcontrol = w->kcontrols[i];
480 
481 			if (dobj->widget.kcontrol_type
482 			    == SND_SOC_TPLG_TYPE_MIXER)
483 				kfree(kcontrol->tlv.p);
484 
485 			/* Private value is used as struct soc_mixer_control
486 			 * for volume mixers or soc_bytes_ext for bytes
487 			 * controls.
488 			 */
489 			kfree((void *)kcontrol->private_value);
490 			snd_ctl_remove(card, kcontrol);
491 			kfree(w->kcontrol_news[i].name);
492 		}
493 	}
494 
495 free_news:
496 	kfree(w->kcontrol_news);
497 
498 	list_del(&dobj->list);
499 
500 	/* widget w is freed by soc-dapm.c */
501 }
502 
503 /* remove DAI configurations */
remove_dai(struct snd_soc_component * comp,struct snd_soc_dobj * dobj,int pass)504 static void remove_dai(struct snd_soc_component *comp,
505 	struct snd_soc_dobj *dobj, int pass)
506 {
507 	struct snd_soc_dai_driver *dai_drv =
508 		container_of(dobj, struct snd_soc_dai_driver, dobj);
509 	struct snd_soc_dai *dai, *_dai;
510 
511 	if (pass != SOC_TPLG_PASS_PCM_DAI)
512 		return;
513 
514 	if (dobj->ops && dobj->ops->dai_unload)
515 		dobj->ops->dai_unload(comp, dobj);
516 
517 	for_each_component_dais_safe(comp, dai, _dai)
518 		if (dai->driver == dai_drv)
519 			snd_soc_unregister_dai(dai);
520 
521 	kfree(dai_drv->playback.stream_name);
522 	kfree(dai_drv->capture.stream_name);
523 	kfree(dai_drv->name);
524 	list_del(&dobj->list);
525 	kfree(dai_drv);
526 }
527 
528 /* remove link configurations */
remove_link(struct snd_soc_component * comp,struct snd_soc_dobj * dobj,int pass)529 static void remove_link(struct snd_soc_component *comp,
530 	struct snd_soc_dobj *dobj, int pass)
531 {
532 	struct snd_soc_dai_link *link =
533 		container_of(dobj, struct snd_soc_dai_link, dobj);
534 
535 	if (pass != SOC_TPLG_PASS_PCM_DAI)
536 		return;
537 
538 	if (dobj->ops && dobj->ops->link_unload)
539 		dobj->ops->link_unload(comp, dobj);
540 
541 	list_del(&dobj->list);
542 	snd_soc_remove_pcm_runtime(comp->card,
543 			snd_soc_get_pcm_runtime(comp->card, link));
544 
545 	kfree(link->name);
546 	kfree(link->stream_name);
547 	kfree(link->cpus->dai_name);
548 	kfree(link);
549 }
550 
551 /* unload dai link */
remove_backend_link(struct snd_soc_component * comp,struct snd_soc_dobj * dobj,int pass)552 static void remove_backend_link(struct snd_soc_component *comp,
553 	struct snd_soc_dobj *dobj, int pass)
554 {
555 	if (pass != SOC_TPLG_PASS_LINK)
556 		return;
557 
558 	if (dobj->ops && dobj->ops->link_unload)
559 		dobj->ops->link_unload(comp, dobj);
560 
561 	/*
562 	 * We don't free the link here as what remove_link() do since BE
563 	 * links are not allocated by topology.
564 	 * We however need to reset the dobj type to its initial values
565 	 */
566 	dobj->type = SND_SOC_DOBJ_NONE;
567 	list_del(&dobj->list);
568 }
569 
570 /* bind a kcontrol to it's IO handlers */
soc_tplg_kcontrol_bind_io(struct snd_soc_tplg_ctl_hdr * hdr,struct snd_kcontrol_new * k,const struct soc_tplg * tplg)571 static int soc_tplg_kcontrol_bind_io(struct snd_soc_tplg_ctl_hdr *hdr,
572 	struct snd_kcontrol_new *k,
573 	const struct soc_tplg *tplg)
574 {
575 	const struct snd_soc_tplg_kcontrol_ops *ops;
576 	const struct snd_soc_tplg_bytes_ext_ops *ext_ops;
577 	int num_ops, i;
578 
579 	if (le32_to_cpu(hdr->ops.info) == SND_SOC_TPLG_CTL_BYTES
580 		&& k->iface & SNDRV_CTL_ELEM_IFACE_MIXER
581 		&& (k->access & SNDRV_CTL_ELEM_ACCESS_TLV_READ
582 		    || k->access & SNDRV_CTL_ELEM_ACCESS_TLV_WRITE)
583 		&& k->access & SNDRV_CTL_ELEM_ACCESS_TLV_CALLBACK) {
584 		struct soc_bytes_ext *sbe;
585 		struct snd_soc_tplg_bytes_control *be;
586 
587 		sbe = (struct soc_bytes_ext *)k->private_value;
588 		be = container_of(hdr, struct snd_soc_tplg_bytes_control, hdr);
589 
590 		/* TLV bytes controls need standard kcontrol info handler,
591 		 * TLV callback and extended put/get handlers.
592 		 */
593 		k->info = snd_soc_bytes_info_ext;
594 		k->tlv.c = snd_soc_bytes_tlv_callback;
595 
596 		/*
597 		 * When a topology-based implementation abuses the
598 		 * control interface and uses bytes_ext controls of
599 		 * more than 512 bytes, we need to disable the size
600 		 * checks, otherwise accesses to such controls will
601 		 * return an -EINVAL error and prevent the card from
602 		 * being configured.
603 		 */
604 		if (IS_ENABLED(CONFIG_SND_CTL_VALIDATION) && sbe->max > 512)
605 			k->access |= SNDRV_CTL_ELEM_ACCESS_SKIP_CHECK;
606 
607 		ext_ops = tplg->bytes_ext_ops;
608 		num_ops = tplg->bytes_ext_ops_count;
609 		for (i = 0; i < num_ops; i++) {
610 			if (!sbe->put &&
611 			    ext_ops[i].id == le32_to_cpu(be->ext_ops.put))
612 				sbe->put = ext_ops[i].put;
613 			if (!sbe->get &&
614 			    ext_ops[i].id == le32_to_cpu(be->ext_ops.get))
615 				sbe->get = ext_ops[i].get;
616 		}
617 
618 		if ((k->access & SNDRV_CTL_ELEM_ACCESS_TLV_READ) && !sbe->get)
619 			return -EINVAL;
620 		if ((k->access & SNDRV_CTL_ELEM_ACCESS_TLV_WRITE) && !sbe->put)
621 			return -EINVAL;
622 		return 0;
623 	}
624 
625 	/* try and map vendor specific kcontrol handlers first */
626 	ops = tplg->io_ops;
627 	num_ops = tplg->io_ops_count;
628 	for (i = 0; i < num_ops; i++) {
629 
630 		if (k->put == NULL && ops[i].id == le32_to_cpu(hdr->ops.put))
631 			k->put = ops[i].put;
632 		if (k->get == NULL && ops[i].id == le32_to_cpu(hdr->ops.get))
633 			k->get = ops[i].get;
634 		if (k->info == NULL && ops[i].id == le32_to_cpu(hdr->ops.info))
635 			k->info = ops[i].info;
636 	}
637 
638 	/* vendor specific handlers found ? */
639 	if (k->put && k->get && k->info)
640 		return 0;
641 
642 	/* none found so try standard kcontrol handlers */
643 	ops = io_ops;
644 	num_ops = ARRAY_SIZE(io_ops);
645 	for (i = 0; i < num_ops; i++) {
646 
647 		if (k->put == NULL && ops[i].id == le32_to_cpu(hdr->ops.put))
648 			k->put = ops[i].put;
649 		if (k->get == NULL && ops[i].id == le32_to_cpu(hdr->ops.get))
650 			k->get = ops[i].get;
651 		if (k->info == NULL && ops[i].id == le32_to_cpu(hdr->ops.info))
652 			k->info = ops[i].info;
653 	}
654 
655 	/* standard handlers found ? */
656 	if (k->put && k->get && k->info)
657 		return 0;
658 
659 	/* nothing to bind */
660 	return -EINVAL;
661 }
662 
663 /* bind a widgets to it's evnt handlers */
snd_soc_tplg_widget_bind_event(struct snd_soc_dapm_widget * w,const struct snd_soc_tplg_widget_events * events,int num_events,u16 event_type)664 int snd_soc_tplg_widget_bind_event(struct snd_soc_dapm_widget *w,
665 		const struct snd_soc_tplg_widget_events *events,
666 		int num_events, u16 event_type)
667 {
668 	int i;
669 
670 	w->event = NULL;
671 
672 	for (i = 0; i < num_events; i++) {
673 		if (event_type == events[i].type) {
674 
675 			/* found - so assign event */
676 			w->event = events[i].event_handler;
677 			return 0;
678 		}
679 	}
680 
681 	/* not found */
682 	return -EINVAL;
683 }
684 EXPORT_SYMBOL_GPL(snd_soc_tplg_widget_bind_event);
685 
686 /* optionally pass new dynamic kcontrol to component driver. */
soc_tplg_init_kcontrol(struct soc_tplg * tplg,struct snd_kcontrol_new * k,struct snd_soc_tplg_ctl_hdr * hdr)687 static int soc_tplg_init_kcontrol(struct soc_tplg *tplg,
688 	struct snd_kcontrol_new *k, struct snd_soc_tplg_ctl_hdr *hdr)
689 {
690 	if (tplg->ops && tplg->ops->control_load)
691 		return tplg->ops->control_load(tplg->comp, tplg->index, k,
692 			hdr);
693 
694 	return 0;
695 }
696 
697 
soc_tplg_create_tlv_db_scale(struct soc_tplg * tplg,struct snd_kcontrol_new * kc,struct snd_soc_tplg_tlv_dbscale * scale)698 static int soc_tplg_create_tlv_db_scale(struct soc_tplg *tplg,
699 	struct snd_kcontrol_new *kc, struct snd_soc_tplg_tlv_dbscale *scale)
700 {
701 	unsigned int item_len = 2 * sizeof(unsigned int);
702 	unsigned int *p;
703 
704 	p = kzalloc(item_len + 2 * sizeof(unsigned int), GFP_KERNEL);
705 	if (!p)
706 		return -ENOMEM;
707 
708 	p[0] = SNDRV_CTL_TLVT_DB_SCALE;
709 	p[1] = item_len;
710 	p[2] = le32_to_cpu(scale->min);
711 	p[3] = (le32_to_cpu(scale->step) & TLV_DB_SCALE_MASK)
712 		| (le32_to_cpu(scale->mute) ? TLV_DB_SCALE_MUTE : 0);
713 
714 	kc->tlv.p = (void *)p;
715 	return 0;
716 }
717 
soc_tplg_create_tlv(struct soc_tplg * tplg,struct snd_kcontrol_new * kc,struct snd_soc_tplg_ctl_hdr * tc)718 static int soc_tplg_create_tlv(struct soc_tplg *tplg,
719 	struct snd_kcontrol_new *kc, struct snd_soc_tplg_ctl_hdr *tc)
720 {
721 	struct snd_soc_tplg_ctl_tlv *tplg_tlv;
722 	u32 access = le32_to_cpu(tc->access);
723 
724 	if (!(access & SNDRV_CTL_ELEM_ACCESS_TLV_READWRITE))
725 		return 0;
726 
727 	if (!(access & SNDRV_CTL_ELEM_ACCESS_TLV_CALLBACK)) {
728 		tplg_tlv = &tc->tlv;
729 		switch (le32_to_cpu(tplg_tlv->type)) {
730 		case SNDRV_CTL_TLVT_DB_SCALE:
731 			return soc_tplg_create_tlv_db_scale(tplg, kc,
732 					&tplg_tlv->scale);
733 
734 		/* TODO: add support for other TLV types */
735 		default:
736 			dev_dbg(tplg->dev, "Unsupported TLV type %d\n",
737 					tplg_tlv->type);
738 			return -EINVAL;
739 		}
740 	}
741 
742 	return 0;
743 }
744 
soc_tplg_free_tlv(struct soc_tplg * tplg,struct snd_kcontrol_new * kc)745 static inline void soc_tplg_free_tlv(struct soc_tplg *tplg,
746 	struct snd_kcontrol_new *kc)
747 {
748 	kfree(kc->tlv.p);
749 }
750 
soc_tplg_dbytes_create(struct soc_tplg * tplg,unsigned int count,size_t size)751 static int soc_tplg_dbytes_create(struct soc_tplg *tplg, unsigned int count,
752 	size_t size)
753 {
754 	struct snd_soc_tplg_bytes_control *be;
755 	struct soc_bytes_ext *sbe;
756 	struct snd_kcontrol_new kc;
757 	int i;
758 	int err = 0;
759 
760 	if (soc_tplg_check_elem_count(tplg,
761 		sizeof(struct snd_soc_tplg_bytes_control), count,
762 			size, "mixer bytes")) {
763 		dev_err(tplg->dev, "ASoC: Invalid count %d for byte control\n",
764 			count);
765 		return -EINVAL;
766 	}
767 
768 	for (i = 0; i < count; i++) {
769 		be = (struct snd_soc_tplg_bytes_control *)tplg->pos;
770 
771 		/* validate kcontrol */
772 		if (strnlen(be->hdr.name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
773 			SNDRV_CTL_ELEM_ID_NAME_MAXLEN)
774 			return -EINVAL;
775 
776 		sbe = kzalloc(sizeof(*sbe), GFP_KERNEL);
777 		if (sbe == NULL)
778 			return -ENOMEM;
779 
780 		tplg->pos += (sizeof(struct snd_soc_tplg_bytes_control) +
781 			      le32_to_cpu(be->priv.size));
782 
783 		dev_dbg(tplg->dev,
784 			"ASoC: adding bytes kcontrol %s with access 0x%x\n",
785 			be->hdr.name, be->hdr.access);
786 
787 		memset(&kc, 0, sizeof(kc));
788 		kc.name = be->hdr.name;
789 		kc.private_value = (long)sbe;
790 		kc.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
791 		kc.access = le32_to_cpu(be->hdr.access);
792 
793 		sbe->max = le32_to_cpu(be->max);
794 		sbe->dobj.type = SND_SOC_DOBJ_BYTES;
795 		sbe->dobj.ops = tplg->ops;
796 		INIT_LIST_HEAD(&sbe->dobj.list);
797 
798 		/* map io handlers */
799 		err = soc_tplg_kcontrol_bind_io(&be->hdr, &kc, tplg);
800 		if (err) {
801 			soc_control_err(tplg, &be->hdr, be->hdr.name);
802 			kfree(sbe);
803 			break;
804 		}
805 
806 		/* pass control to driver for optional further init */
807 		err = soc_tplg_init_kcontrol(tplg, &kc,
808 			(struct snd_soc_tplg_ctl_hdr *)be);
809 		if (err < 0) {
810 			dev_err(tplg->dev, "ASoC: failed to init %s\n",
811 				be->hdr.name);
812 			kfree(sbe);
813 			break;
814 		}
815 
816 		/* register control here */
817 		err = soc_tplg_add_kcontrol(tplg, &kc,
818 			&sbe->dobj.control.kcontrol);
819 		if (err < 0) {
820 			dev_err(tplg->dev, "ASoC: failed to add %s\n",
821 				be->hdr.name);
822 			kfree(sbe);
823 			break;
824 		}
825 
826 		list_add(&sbe->dobj.list, &tplg->comp->dobj_list);
827 	}
828 	return err;
829 
830 }
831 
soc_tplg_dmixer_create(struct soc_tplg * tplg,unsigned int count,size_t size)832 static int soc_tplg_dmixer_create(struct soc_tplg *tplg, unsigned int count,
833 	size_t size)
834 {
835 	struct snd_soc_tplg_mixer_control *mc;
836 	struct soc_mixer_control *sm;
837 	struct snd_kcontrol_new kc;
838 	int i;
839 	int err = 0;
840 
841 	if (soc_tplg_check_elem_count(tplg,
842 		sizeof(struct snd_soc_tplg_mixer_control),
843 		count, size, "mixers")) {
844 
845 		dev_err(tplg->dev, "ASoC: invalid count %d for controls\n",
846 			count);
847 		return -EINVAL;
848 	}
849 
850 	for (i = 0; i < count; i++) {
851 		mc = (struct snd_soc_tplg_mixer_control *)tplg->pos;
852 
853 		/* validate kcontrol */
854 		if (strnlen(mc->hdr.name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
855 			SNDRV_CTL_ELEM_ID_NAME_MAXLEN)
856 			return -EINVAL;
857 
858 		sm = kzalloc(sizeof(*sm), GFP_KERNEL);
859 		if (sm == NULL)
860 			return -ENOMEM;
861 		tplg->pos += (sizeof(struct snd_soc_tplg_mixer_control) +
862 			      le32_to_cpu(mc->priv.size));
863 
864 		dev_dbg(tplg->dev,
865 			"ASoC: adding mixer kcontrol %s with access 0x%x\n",
866 			mc->hdr.name, mc->hdr.access);
867 
868 		memset(&kc, 0, sizeof(kc));
869 		kc.name = mc->hdr.name;
870 		kc.private_value = (long)sm;
871 		kc.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
872 		kc.access = le32_to_cpu(mc->hdr.access);
873 
874 		/* we only support FL/FR channel mapping atm */
875 		sm->reg = tplc_chan_get_reg(tplg, mc->channel,
876 			SNDRV_CHMAP_FL);
877 		sm->rreg = tplc_chan_get_reg(tplg, mc->channel,
878 			SNDRV_CHMAP_FR);
879 		sm->shift = tplc_chan_get_shift(tplg, mc->channel,
880 			SNDRV_CHMAP_FL);
881 		sm->rshift = tplc_chan_get_shift(tplg, mc->channel,
882 			SNDRV_CHMAP_FR);
883 
884 		sm->max = le32_to_cpu(mc->max);
885 		sm->min = le32_to_cpu(mc->min);
886 		sm->invert = le32_to_cpu(mc->invert);
887 		sm->platform_max = le32_to_cpu(mc->platform_max);
888 		sm->dobj.index = tplg->index;
889 		sm->dobj.ops = tplg->ops;
890 		sm->dobj.type = SND_SOC_DOBJ_MIXER;
891 		INIT_LIST_HEAD(&sm->dobj.list);
892 
893 		/* map io handlers */
894 		err = soc_tplg_kcontrol_bind_io(&mc->hdr, &kc, tplg);
895 		if (err) {
896 			soc_control_err(tplg, &mc->hdr, mc->hdr.name);
897 			kfree(sm);
898 			break;
899 		}
900 
901 		/* create any TLV data */
902 		err = soc_tplg_create_tlv(tplg, &kc, &mc->hdr);
903 		if (err < 0) {
904 			dev_err(tplg->dev, "ASoC: failed to create TLV %s\n",
905 				mc->hdr.name);
906 			kfree(sm);
907 			break;
908 		}
909 
910 		/* pass control to driver for optional further init */
911 		err = soc_tplg_init_kcontrol(tplg, &kc,
912 			(struct snd_soc_tplg_ctl_hdr *) mc);
913 		if (err < 0) {
914 			dev_err(tplg->dev, "ASoC: failed to init %s\n",
915 				mc->hdr.name);
916 			soc_tplg_free_tlv(tplg, &kc);
917 			kfree(sm);
918 			break;
919 		}
920 
921 		/* register control here */
922 		err = soc_tplg_add_kcontrol(tplg, &kc,
923 			&sm->dobj.control.kcontrol);
924 		if (err < 0) {
925 			dev_err(tplg->dev, "ASoC: failed to add %s\n",
926 				mc->hdr.name);
927 			soc_tplg_free_tlv(tplg, &kc);
928 			kfree(sm);
929 			break;
930 		}
931 
932 		list_add(&sm->dobj.list, &tplg->comp->dobj_list);
933 	}
934 
935 	return err;
936 }
937 
soc_tplg_denum_create_texts(struct soc_enum * se,struct snd_soc_tplg_enum_control * ec)938 static int soc_tplg_denum_create_texts(struct soc_enum *se,
939 	struct snd_soc_tplg_enum_control *ec)
940 {
941 	int i, ret;
942 
943 	se->dobj.control.dtexts =
944 		kcalloc(le32_to_cpu(ec->items), sizeof(char *), GFP_KERNEL);
945 	if (se->dobj.control.dtexts == NULL)
946 		return -ENOMEM;
947 
948 	for (i = 0; i < le32_to_cpu(ec->items); i++) {
949 
950 		if (strnlen(ec->texts[i], SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
951 			SNDRV_CTL_ELEM_ID_NAME_MAXLEN) {
952 			ret = -EINVAL;
953 			goto err;
954 		}
955 
956 		se->dobj.control.dtexts[i] = kstrdup(ec->texts[i], GFP_KERNEL);
957 		if (!se->dobj.control.dtexts[i]) {
958 			ret = -ENOMEM;
959 			goto err;
960 		}
961 	}
962 
963 	se->items = le32_to_cpu(ec->items);
964 	se->texts = (const char * const *)se->dobj.control.dtexts;
965 	return 0;
966 
967 err:
968 	se->items = i;
969 	soc_tplg_denum_remove_texts(se);
970 	return ret;
971 }
972 
soc_tplg_denum_remove_texts(struct soc_enum * se)973 static inline void soc_tplg_denum_remove_texts(struct soc_enum *se)
974 {
975 	int i = se->items;
976 
977 	for (--i; i >= 0; i--)
978 		kfree(se->dobj.control.dtexts[i]);
979 	kfree(se->dobj.control.dtexts);
980 }
981 
soc_tplg_denum_create_values(struct soc_enum * se,struct snd_soc_tplg_enum_control * ec)982 static int soc_tplg_denum_create_values(struct soc_enum *se,
983 	struct snd_soc_tplg_enum_control *ec)
984 {
985 	int i;
986 
987 	if (le32_to_cpu(ec->items) > sizeof(*ec->values))
988 		return -EINVAL;
989 
990 	se->dobj.control.dvalues = kzalloc(le32_to_cpu(ec->items) *
991 					   sizeof(*se->dobj.control.dvalues),
992 					   GFP_KERNEL);
993 	if (!se->dobj.control.dvalues)
994 		return -ENOMEM;
995 
996 	/* convert from little-endian */
997 	for (i = 0; i < le32_to_cpu(ec->items); i++) {
998 		se->dobj.control.dvalues[i] = le32_to_cpu(ec->values[i]);
999 	}
1000 
1001 	return 0;
1002 }
1003 
soc_tplg_denum_remove_values(struct soc_enum * se)1004 static inline void soc_tplg_denum_remove_values(struct soc_enum *se)
1005 {
1006 	kfree(se->dobj.control.dvalues);
1007 }
1008 
soc_tplg_denum_create(struct soc_tplg * tplg,unsigned int count,size_t size)1009 static int soc_tplg_denum_create(struct soc_tplg *tplg, unsigned int count,
1010 	size_t size)
1011 {
1012 	struct snd_soc_tplg_enum_control *ec;
1013 	struct soc_enum *se;
1014 	struct snd_kcontrol_new kc;
1015 	int i;
1016 	int err = 0;
1017 
1018 	if (soc_tplg_check_elem_count(tplg,
1019 		sizeof(struct snd_soc_tplg_enum_control),
1020 		count, size, "enums")) {
1021 
1022 		dev_err(tplg->dev, "ASoC: invalid count %d for enum controls\n",
1023 			count);
1024 		return -EINVAL;
1025 	}
1026 
1027 	for (i = 0; i < count; i++) {
1028 		ec = (struct snd_soc_tplg_enum_control *)tplg->pos;
1029 
1030 		/* validate kcontrol */
1031 		if (strnlen(ec->hdr.name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
1032 			SNDRV_CTL_ELEM_ID_NAME_MAXLEN)
1033 			return -EINVAL;
1034 
1035 		se = kzalloc((sizeof(*se)), GFP_KERNEL);
1036 		if (se == NULL)
1037 			return -ENOMEM;
1038 
1039 		tplg->pos += (sizeof(struct snd_soc_tplg_enum_control) +
1040 			      le32_to_cpu(ec->priv.size));
1041 
1042 		dev_dbg(tplg->dev, "ASoC: adding enum kcontrol %s size %d\n",
1043 			ec->hdr.name, ec->items);
1044 
1045 		memset(&kc, 0, sizeof(kc));
1046 		kc.name = ec->hdr.name;
1047 		kc.private_value = (long)se;
1048 		kc.iface = SNDRV_CTL_ELEM_IFACE_MIXER;
1049 		kc.access = le32_to_cpu(ec->hdr.access);
1050 
1051 		se->reg = tplc_chan_get_reg(tplg, ec->channel, SNDRV_CHMAP_FL);
1052 		se->shift_l = tplc_chan_get_shift(tplg, ec->channel,
1053 			SNDRV_CHMAP_FL);
1054 		se->shift_r = tplc_chan_get_shift(tplg, ec->channel,
1055 			SNDRV_CHMAP_FL);
1056 
1057 		se->mask = le32_to_cpu(ec->mask);
1058 		se->dobj.index = tplg->index;
1059 		se->dobj.type = SND_SOC_DOBJ_ENUM;
1060 		se->dobj.ops = tplg->ops;
1061 		INIT_LIST_HEAD(&se->dobj.list);
1062 
1063 		switch (le32_to_cpu(ec->hdr.ops.info)) {
1064 		case SND_SOC_TPLG_DAPM_CTL_ENUM_VALUE:
1065 		case SND_SOC_TPLG_CTL_ENUM_VALUE:
1066 			err = soc_tplg_denum_create_values(se, ec);
1067 			if (err < 0) {
1068 				dev_err(tplg->dev,
1069 					"ASoC: could not create values for %s\n",
1070 					ec->hdr.name);
1071 				goto err_denum;
1072 			}
1073 			fallthrough;
1074 		case SND_SOC_TPLG_CTL_ENUM:
1075 		case SND_SOC_TPLG_DAPM_CTL_ENUM_DOUBLE:
1076 		case SND_SOC_TPLG_DAPM_CTL_ENUM_VIRT:
1077 			err = soc_tplg_denum_create_texts(se, ec);
1078 			if (err < 0) {
1079 				dev_err(tplg->dev,
1080 					"ASoC: could not create texts for %s\n",
1081 					ec->hdr.name);
1082 				goto err_denum;
1083 			}
1084 			break;
1085 		default:
1086 			err = -EINVAL;
1087 			dev_err(tplg->dev,
1088 				"ASoC: invalid enum control type %d for %s\n",
1089 				ec->hdr.ops.info, ec->hdr.name);
1090 			goto err_denum;
1091 		}
1092 
1093 		/* map io handlers */
1094 		err = soc_tplg_kcontrol_bind_io(&ec->hdr, &kc, tplg);
1095 		if (err) {
1096 			soc_control_err(tplg, &ec->hdr, ec->hdr.name);
1097 			goto err_denum;
1098 		}
1099 
1100 		/* pass control to driver for optional further init */
1101 		err = soc_tplg_init_kcontrol(tplg, &kc,
1102 			(struct snd_soc_tplg_ctl_hdr *) ec);
1103 		if (err < 0) {
1104 			dev_err(tplg->dev, "ASoC: failed to init %s\n",
1105 				ec->hdr.name);
1106 			goto err_denum;
1107 		}
1108 
1109 		/* register control here */
1110 		err = soc_tplg_add_kcontrol(tplg,
1111 					    &kc, &se->dobj.control.kcontrol);
1112 		if (err < 0) {
1113 			dev_err(tplg->dev, "ASoC: could not add kcontrol %s\n",
1114 				ec->hdr.name);
1115 			goto err_denum;
1116 		}
1117 
1118 		list_add(&se->dobj.list, &tplg->comp->dobj_list);
1119 	}
1120 	return 0;
1121 
1122 err_denum:
1123 	kfree(se);
1124 	return err;
1125 }
1126 
soc_tplg_kcontrol_elems_load(struct soc_tplg * tplg,struct snd_soc_tplg_hdr * hdr)1127 static int soc_tplg_kcontrol_elems_load(struct soc_tplg *tplg,
1128 	struct snd_soc_tplg_hdr *hdr)
1129 {
1130 	struct snd_soc_tplg_ctl_hdr *control_hdr;
1131 	int ret;
1132 	int i;
1133 
1134 	dev_dbg(tplg->dev, "ASoC: adding %d kcontrols at 0x%lx\n", hdr->count,
1135 		soc_tplg_get_offset(tplg));
1136 
1137 	for (i = 0; i < le32_to_cpu(hdr->count); i++) {
1138 
1139 		control_hdr = (struct snd_soc_tplg_ctl_hdr *)tplg->pos;
1140 
1141 		if (le32_to_cpu(control_hdr->size) != sizeof(*control_hdr)) {
1142 			dev_err(tplg->dev, "ASoC: invalid control size\n");
1143 			return -EINVAL;
1144 		}
1145 
1146 		switch (le32_to_cpu(control_hdr->ops.info)) {
1147 		case SND_SOC_TPLG_CTL_VOLSW:
1148 		case SND_SOC_TPLG_CTL_STROBE:
1149 		case SND_SOC_TPLG_CTL_VOLSW_SX:
1150 		case SND_SOC_TPLG_CTL_VOLSW_XR_SX:
1151 		case SND_SOC_TPLG_CTL_RANGE:
1152 		case SND_SOC_TPLG_DAPM_CTL_VOLSW:
1153 		case SND_SOC_TPLG_DAPM_CTL_PIN:
1154 			ret = soc_tplg_dmixer_create(tplg, 1,
1155 					le32_to_cpu(hdr->payload_size));
1156 			break;
1157 		case SND_SOC_TPLG_CTL_ENUM:
1158 		case SND_SOC_TPLG_CTL_ENUM_VALUE:
1159 		case SND_SOC_TPLG_DAPM_CTL_ENUM_DOUBLE:
1160 		case SND_SOC_TPLG_DAPM_CTL_ENUM_VIRT:
1161 		case SND_SOC_TPLG_DAPM_CTL_ENUM_VALUE:
1162 			ret = soc_tplg_denum_create(tplg, 1,
1163 					le32_to_cpu(hdr->payload_size));
1164 			break;
1165 		case SND_SOC_TPLG_CTL_BYTES:
1166 			ret = soc_tplg_dbytes_create(tplg, 1,
1167 					le32_to_cpu(hdr->payload_size));
1168 			break;
1169 		default:
1170 			soc_bind_err(tplg, control_hdr, i);
1171 			return -EINVAL;
1172 		}
1173 		if (ret < 0) {
1174 			dev_err(tplg->dev, "ASoC: invalid control\n");
1175 			return ret;
1176 		}
1177 
1178 	}
1179 
1180 	return 0;
1181 }
1182 
1183 /* optionally pass new dynamic kcontrol to component driver. */
soc_tplg_add_route(struct soc_tplg * tplg,struct snd_soc_dapm_route * route)1184 static int soc_tplg_add_route(struct soc_tplg *tplg,
1185 	struct snd_soc_dapm_route *route)
1186 {
1187 	if (tplg->ops && tplg->ops->dapm_route_load)
1188 		return tplg->ops->dapm_route_load(tplg->comp, tplg->index,
1189 			route);
1190 
1191 	return 0;
1192 }
1193 
soc_tplg_dapm_graph_elems_load(struct soc_tplg * tplg,struct snd_soc_tplg_hdr * hdr)1194 static int soc_tplg_dapm_graph_elems_load(struct soc_tplg *tplg,
1195 	struct snd_soc_tplg_hdr *hdr)
1196 {
1197 	struct snd_soc_dapm_context *dapm = &tplg->comp->dapm;
1198 	struct snd_soc_tplg_dapm_graph_elem *elem;
1199 	struct snd_soc_dapm_route **routes;
1200 	int count, i, j;
1201 	int ret = 0;
1202 
1203 	count = le32_to_cpu(hdr->count);
1204 
1205 	if (soc_tplg_check_elem_count(tplg,
1206 		sizeof(struct snd_soc_tplg_dapm_graph_elem),
1207 		count, le32_to_cpu(hdr->payload_size), "graph")) {
1208 
1209 		dev_err(tplg->dev, "ASoC: invalid count %d for DAPM routes\n",
1210 			count);
1211 		return -EINVAL;
1212 	}
1213 
1214 	dev_dbg(tplg->dev, "ASoC: adding %d DAPM routes for index %d\n", count,
1215 		hdr->index);
1216 
1217 	/* allocate memory for pointer to array of dapm routes */
1218 	routes = kcalloc(count, sizeof(struct snd_soc_dapm_route *),
1219 			 GFP_KERNEL);
1220 	if (!routes)
1221 		return -ENOMEM;
1222 
1223 	/*
1224 	 * allocate memory for each dapm route in the array.
1225 	 * This needs to be done individually so that
1226 	 * each route can be freed when it is removed in remove_route().
1227 	 */
1228 	for (i = 0; i < count; i++) {
1229 		routes[i] = kzalloc(sizeof(*routes[i]), GFP_KERNEL);
1230 		if (!routes[i]) {
1231 			/* free previously allocated memory */
1232 			for (j = 0; j < i; j++)
1233 				kfree(routes[j]);
1234 
1235 			kfree(routes);
1236 			return -ENOMEM;
1237 		}
1238 	}
1239 
1240 	for (i = 0; i < count; i++) {
1241 		elem = (struct snd_soc_tplg_dapm_graph_elem *)tplg->pos;
1242 		tplg->pos += sizeof(struct snd_soc_tplg_dapm_graph_elem);
1243 
1244 		/* validate routes */
1245 		if (strnlen(elem->source, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
1246 			    SNDRV_CTL_ELEM_ID_NAME_MAXLEN) {
1247 			ret = -EINVAL;
1248 			break;
1249 		}
1250 		if (strnlen(elem->sink, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
1251 			    SNDRV_CTL_ELEM_ID_NAME_MAXLEN) {
1252 			ret = -EINVAL;
1253 			break;
1254 		}
1255 		if (strnlen(elem->control, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
1256 			    SNDRV_CTL_ELEM_ID_NAME_MAXLEN) {
1257 			ret = -EINVAL;
1258 			break;
1259 		}
1260 
1261 		routes[i]->source = elem->source;
1262 		routes[i]->sink = elem->sink;
1263 
1264 		/* set to NULL atm for tplg users */
1265 		routes[i]->connected = NULL;
1266 		if (strnlen(elem->control, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) == 0)
1267 			routes[i]->control = NULL;
1268 		else
1269 			routes[i]->control = elem->control;
1270 
1271 		/* add route dobj to dobj_list */
1272 		routes[i]->dobj.type = SND_SOC_DOBJ_GRAPH;
1273 		routes[i]->dobj.ops = tplg->ops;
1274 		routes[i]->dobj.index = tplg->index;
1275 		list_add(&routes[i]->dobj.list, &tplg->comp->dobj_list);
1276 
1277 		ret = soc_tplg_add_route(tplg, routes[i]);
1278 		if (ret < 0) {
1279 			dev_err(tplg->dev, "ASoC: topology: add_route failed: %d\n", ret);
1280 			/*
1281 			 * this route was added to the list, it will
1282 			 * be freed in remove_route() so increment the
1283 			 * counter to skip it in the error handling
1284 			 * below.
1285 			 */
1286 			i++;
1287 			break;
1288 		}
1289 
1290 		/* add route, but keep going if some fail */
1291 		snd_soc_dapm_add_routes(dapm, routes[i], 1);
1292 	}
1293 
1294 	/*
1295 	 * free memory allocated for all dapm routes not added to the
1296 	 * list in case of error
1297 	 */
1298 	if (ret < 0) {
1299 		while (i < count)
1300 			kfree(routes[i++]);
1301 	}
1302 
1303 	/*
1304 	 * free pointer to array of dapm routes as this is no longer needed.
1305 	 * The memory allocated for each dapm route will be freed
1306 	 * when it is removed in remove_route().
1307 	 */
1308 	kfree(routes);
1309 
1310 	return ret;
1311 }
1312 
soc_tplg_dapm_widget_dmixer_create(struct soc_tplg * tplg,int num_kcontrols)1313 static struct snd_kcontrol_new *soc_tplg_dapm_widget_dmixer_create(
1314 	struct soc_tplg *tplg, int num_kcontrols)
1315 {
1316 	struct snd_kcontrol_new *kc;
1317 	struct soc_mixer_control *sm;
1318 	struct snd_soc_tplg_mixer_control *mc;
1319 	int i, err;
1320 
1321 	kc = kcalloc(num_kcontrols, sizeof(*kc), GFP_KERNEL);
1322 	if (kc == NULL)
1323 		return NULL;
1324 
1325 	for (i = 0; i < num_kcontrols; i++) {
1326 		mc = (struct snd_soc_tplg_mixer_control *)tplg->pos;
1327 
1328 		/* validate kcontrol */
1329 		if (strnlen(mc->hdr.name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
1330 			SNDRV_CTL_ELEM_ID_NAME_MAXLEN)
1331 			goto err_sm;
1332 
1333 		sm = kzalloc(sizeof(*sm), GFP_KERNEL);
1334 		if (sm == NULL)
1335 			goto err_sm;
1336 
1337 		tplg->pos += (sizeof(struct snd_soc_tplg_mixer_control) +
1338 			      le32_to_cpu(mc->priv.size));
1339 
1340 		dev_dbg(tplg->dev, " adding DAPM widget mixer control %s at %d\n",
1341 			mc->hdr.name, i);
1342 
1343 		kc[i].private_value = (long)sm;
1344 		kc[i].name = kstrdup(mc->hdr.name, GFP_KERNEL);
1345 		if (kc[i].name == NULL)
1346 			goto err_sm;
1347 		kc[i].iface = SNDRV_CTL_ELEM_IFACE_MIXER;
1348 		kc[i].access = le32_to_cpu(mc->hdr.access);
1349 
1350 		/* we only support FL/FR channel mapping atm */
1351 		sm->reg = tplc_chan_get_reg(tplg, mc->channel,
1352 			SNDRV_CHMAP_FL);
1353 		sm->rreg = tplc_chan_get_reg(tplg, mc->channel,
1354 			SNDRV_CHMAP_FR);
1355 		sm->shift = tplc_chan_get_shift(tplg, mc->channel,
1356 			SNDRV_CHMAP_FL);
1357 		sm->rshift = tplc_chan_get_shift(tplg, mc->channel,
1358 			SNDRV_CHMAP_FR);
1359 
1360 		sm->max = le32_to_cpu(mc->max);
1361 		sm->min = le32_to_cpu(mc->min);
1362 		sm->invert = le32_to_cpu(mc->invert);
1363 		sm->platform_max = le32_to_cpu(mc->platform_max);
1364 		sm->dobj.index = tplg->index;
1365 		INIT_LIST_HEAD(&sm->dobj.list);
1366 
1367 		/* map io handlers */
1368 		err = soc_tplg_kcontrol_bind_io(&mc->hdr, &kc[i], tplg);
1369 		if (err) {
1370 			soc_control_err(tplg, &mc->hdr, mc->hdr.name);
1371 			goto err_sm;
1372 		}
1373 
1374 		/* create any TLV data */
1375 		err = soc_tplg_create_tlv(tplg, &kc[i], &mc->hdr);
1376 		if (err < 0) {
1377 			dev_err(tplg->dev, "ASoC: failed to create TLV %s\n",
1378 				mc->hdr.name);
1379 			goto err_sm;
1380 		}
1381 
1382 		/* pass control to driver for optional further init */
1383 		err = soc_tplg_init_kcontrol(tplg, &kc[i],
1384 			(struct snd_soc_tplg_ctl_hdr *)mc);
1385 		if (err < 0) {
1386 			dev_err(tplg->dev, "ASoC: failed to init %s\n",
1387 				mc->hdr.name);
1388 			goto err_sm;
1389 		}
1390 	}
1391 	return kc;
1392 
1393 err_sm:
1394 	for (; i >= 0; i--) {
1395 		soc_tplg_free_tlv(tplg, &kc[i]);
1396 		sm = (struct soc_mixer_control *)kc[i].private_value;
1397 		kfree(sm);
1398 		kfree(kc[i].name);
1399 	}
1400 	kfree(kc);
1401 
1402 	return NULL;
1403 }
1404 
soc_tplg_dapm_widget_denum_create(struct soc_tplg * tplg,int num_kcontrols)1405 static struct snd_kcontrol_new *soc_tplg_dapm_widget_denum_create(
1406 	struct soc_tplg *tplg, int num_kcontrols)
1407 {
1408 	struct snd_kcontrol_new *kc;
1409 	struct snd_soc_tplg_enum_control *ec;
1410 	struct soc_enum *se;
1411 	int i, err;
1412 
1413 	kc = kcalloc(num_kcontrols, sizeof(*kc), GFP_KERNEL);
1414 	if (kc == NULL)
1415 		return NULL;
1416 
1417 	for (i = 0; i < num_kcontrols; i++) {
1418 		ec = (struct snd_soc_tplg_enum_control *)tplg->pos;
1419 		/* validate kcontrol */
1420 		if (strnlen(ec->hdr.name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
1421 			    SNDRV_CTL_ELEM_ID_NAME_MAXLEN)
1422 			goto err_se;
1423 
1424 		se = kzalloc(sizeof(*se), GFP_KERNEL);
1425 		if (se == NULL)
1426 			goto err_se;
1427 
1428 		tplg->pos += (sizeof(struct snd_soc_tplg_enum_control) +
1429 			      le32_to_cpu(ec->priv.size));
1430 
1431 		dev_dbg(tplg->dev, " adding DAPM widget enum control %s\n",
1432 			ec->hdr.name);
1433 
1434 		kc[i].private_value = (long)se;
1435 		kc[i].name = kstrdup(ec->hdr.name, GFP_KERNEL);
1436 		if (kc[i].name == NULL)
1437 			goto err_se;
1438 		kc[i].iface = SNDRV_CTL_ELEM_IFACE_MIXER;
1439 		kc[i].access = le32_to_cpu(ec->hdr.access);
1440 
1441 		/* we only support FL/FR channel mapping atm */
1442 		se->reg = tplc_chan_get_reg(tplg, ec->channel, SNDRV_CHMAP_FL);
1443 		se->shift_l = tplc_chan_get_shift(tplg, ec->channel,
1444 						  SNDRV_CHMAP_FL);
1445 		se->shift_r = tplc_chan_get_shift(tplg, ec->channel,
1446 						  SNDRV_CHMAP_FR);
1447 
1448 		se->items = le32_to_cpu(ec->items);
1449 		se->mask = le32_to_cpu(ec->mask);
1450 		se->dobj.index = tplg->index;
1451 
1452 		switch (le32_to_cpu(ec->hdr.ops.info)) {
1453 		case SND_SOC_TPLG_CTL_ENUM_VALUE:
1454 		case SND_SOC_TPLG_DAPM_CTL_ENUM_VALUE:
1455 			err = soc_tplg_denum_create_values(se, ec);
1456 			if (err < 0) {
1457 				dev_err(tplg->dev, "ASoC: could not create values for %s\n",
1458 					ec->hdr.name);
1459 				goto err_se;
1460 			}
1461 			fallthrough;
1462 		case SND_SOC_TPLG_CTL_ENUM:
1463 		case SND_SOC_TPLG_DAPM_CTL_ENUM_DOUBLE:
1464 		case SND_SOC_TPLG_DAPM_CTL_ENUM_VIRT:
1465 			err = soc_tplg_denum_create_texts(se, ec);
1466 			if (err < 0) {
1467 				dev_err(tplg->dev, "ASoC: could not create texts for %s\n",
1468 					ec->hdr.name);
1469 				goto err_se;
1470 			}
1471 			break;
1472 		default:
1473 			dev_err(tplg->dev, "ASoC: invalid enum control type %d for %s\n",
1474 				ec->hdr.ops.info, ec->hdr.name);
1475 			goto err_se;
1476 		}
1477 
1478 		/* map io handlers */
1479 		err = soc_tplg_kcontrol_bind_io(&ec->hdr, &kc[i], tplg);
1480 		if (err) {
1481 			soc_control_err(tplg, &ec->hdr, ec->hdr.name);
1482 			goto err_se;
1483 		}
1484 
1485 		/* pass control to driver for optional further init */
1486 		err = soc_tplg_init_kcontrol(tplg, &kc[i],
1487 			(struct snd_soc_tplg_ctl_hdr *)ec);
1488 		if (err < 0) {
1489 			dev_err(tplg->dev, "ASoC: failed to init %s\n",
1490 				ec->hdr.name);
1491 			goto err_se;
1492 		}
1493 	}
1494 
1495 	return kc;
1496 
1497 err_se:
1498 	for (; i >= 0; i--) {
1499 		/* free values and texts */
1500 		se = (struct soc_enum *)kc[i].private_value;
1501 
1502 		if (se) {
1503 			soc_tplg_denum_remove_values(se);
1504 			soc_tplg_denum_remove_texts(se);
1505 		}
1506 
1507 		kfree(se);
1508 		kfree(kc[i].name);
1509 	}
1510 	kfree(kc);
1511 
1512 	return NULL;
1513 }
1514 
soc_tplg_dapm_widget_dbytes_create(struct soc_tplg * tplg,int num_kcontrols)1515 static struct snd_kcontrol_new *soc_tplg_dapm_widget_dbytes_create(
1516 	struct soc_tplg *tplg, int num_kcontrols)
1517 {
1518 	struct snd_soc_tplg_bytes_control *be;
1519 	struct soc_bytes_ext *sbe;
1520 	struct snd_kcontrol_new *kc;
1521 	int i, err;
1522 
1523 	kc = kcalloc(num_kcontrols, sizeof(*kc), GFP_KERNEL);
1524 	if (!kc)
1525 		return NULL;
1526 
1527 	for (i = 0; i < num_kcontrols; i++) {
1528 		be = (struct snd_soc_tplg_bytes_control *)tplg->pos;
1529 
1530 		/* validate kcontrol */
1531 		if (strnlen(be->hdr.name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
1532 			SNDRV_CTL_ELEM_ID_NAME_MAXLEN)
1533 			goto err_sbe;
1534 
1535 		sbe = kzalloc(sizeof(*sbe), GFP_KERNEL);
1536 		if (sbe == NULL)
1537 			goto err_sbe;
1538 
1539 		tplg->pos += (sizeof(struct snd_soc_tplg_bytes_control) +
1540 			      le32_to_cpu(be->priv.size));
1541 
1542 		dev_dbg(tplg->dev,
1543 			"ASoC: adding bytes kcontrol %s with access 0x%x\n",
1544 			be->hdr.name, be->hdr.access);
1545 
1546 		kc[i].private_value = (long)sbe;
1547 		kc[i].name = kstrdup(be->hdr.name, GFP_KERNEL);
1548 		if (kc[i].name == NULL)
1549 			goto err_sbe;
1550 		kc[i].iface = SNDRV_CTL_ELEM_IFACE_MIXER;
1551 		kc[i].access = le32_to_cpu(be->hdr.access);
1552 
1553 		sbe->max = le32_to_cpu(be->max);
1554 		INIT_LIST_HEAD(&sbe->dobj.list);
1555 
1556 		/* map standard io handlers and check for external handlers */
1557 		err = soc_tplg_kcontrol_bind_io(&be->hdr, &kc[i], tplg);
1558 		if (err) {
1559 			soc_control_err(tplg, &be->hdr, be->hdr.name);
1560 			goto err_sbe;
1561 		}
1562 
1563 		/* pass control to driver for optional further init */
1564 		err = soc_tplg_init_kcontrol(tplg, &kc[i],
1565 			(struct snd_soc_tplg_ctl_hdr *)be);
1566 		if (err < 0) {
1567 			dev_err(tplg->dev, "ASoC: failed to init %s\n",
1568 				be->hdr.name);
1569 			goto err_sbe;
1570 		}
1571 	}
1572 
1573 	return kc;
1574 
1575 err_sbe:
1576 	for (; i >= 0; i--) {
1577 		sbe = (struct soc_bytes_ext *)kc[i].private_value;
1578 		kfree(sbe);
1579 		kfree(kc[i].name);
1580 	}
1581 	kfree(kc);
1582 
1583 	return NULL;
1584 }
1585 
soc_tplg_dapm_widget_create(struct soc_tplg * tplg,struct snd_soc_tplg_dapm_widget * w)1586 static int soc_tplg_dapm_widget_create(struct soc_tplg *tplg,
1587 	struct snd_soc_tplg_dapm_widget *w)
1588 {
1589 	struct snd_soc_dapm_context *dapm = &tplg->comp->dapm;
1590 	struct snd_soc_dapm_widget template, *widget;
1591 	struct snd_soc_tplg_ctl_hdr *control_hdr;
1592 	struct snd_soc_card *card = tplg->comp->card;
1593 	unsigned int kcontrol_type;
1594 	int ret = 0;
1595 
1596 	if (strnlen(w->name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
1597 		SNDRV_CTL_ELEM_ID_NAME_MAXLEN)
1598 		return -EINVAL;
1599 	if (strnlen(w->sname, SNDRV_CTL_ELEM_ID_NAME_MAXLEN) ==
1600 		SNDRV_CTL_ELEM_ID_NAME_MAXLEN)
1601 		return -EINVAL;
1602 
1603 	dev_dbg(tplg->dev, "ASoC: creating DAPM widget %s id %d\n",
1604 		w->name, w->id);
1605 
1606 	memset(&template, 0, sizeof(template));
1607 
1608 	/* map user to kernel widget ID */
1609 	template.id = get_widget_id(le32_to_cpu(w->id));
1610 	if ((int)template.id < 0)
1611 		return template.id;
1612 
1613 	/* strings are allocated here, but used and freed by the widget */
1614 	template.name = kstrdup(w->name, GFP_KERNEL);
1615 	if (!template.name)
1616 		return -ENOMEM;
1617 	template.sname = kstrdup(w->sname, GFP_KERNEL);
1618 	if (!template.sname) {
1619 		ret = -ENOMEM;
1620 		goto err;
1621 	}
1622 	template.reg = le32_to_cpu(w->reg);
1623 	template.shift = le32_to_cpu(w->shift);
1624 	template.mask = le32_to_cpu(w->mask);
1625 	template.subseq = le32_to_cpu(w->subseq);
1626 	template.on_val = w->invert ? 0 : 1;
1627 	template.off_val = w->invert ? 1 : 0;
1628 	template.ignore_suspend = le32_to_cpu(w->ignore_suspend);
1629 	template.event_flags = le16_to_cpu(w->event_flags);
1630 	template.dobj.index = tplg->index;
1631 
1632 	tplg->pos +=
1633 		(sizeof(struct snd_soc_tplg_dapm_widget) +
1634 		 le32_to_cpu(w->priv.size));
1635 
1636 	if (w->num_kcontrols == 0) {
1637 		kcontrol_type = 0;
1638 		template.num_kcontrols = 0;
1639 		goto widget;
1640 	}
1641 
1642 	control_hdr = (struct snd_soc_tplg_ctl_hdr *)tplg->pos;
1643 	dev_dbg(tplg->dev, "ASoC: template %s has %d controls of type %x\n",
1644 		w->name, w->num_kcontrols, control_hdr->type);
1645 
1646 	switch (le32_to_cpu(control_hdr->ops.info)) {
1647 	case SND_SOC_TPLG_CTL_VOLSW:
1648 	case SND_SOC_TPLG_CTL_STROBE:
1649 	case SND_SOC_TPLG_CTL_VOLSW_SX:
1650 	case SND_SOC_TPLG_CTL_VOLSW_XR_SX:
1651 	case SND_SOC_TPLG_CTL_RANGE:
1652 	case SND_SOC_TPLG_DAPM_CTL_VOLSW:
1653 		kcontrol_type = SND_SOC_TPLG_TYPE_MIXER;  /* volume mixer */
1654 		template.num_kcontrols = le32_to_cpu(w->num_kcontrols);
1655 		template.kcontrol_news =
1656 			soc_tplg_dapm_widget_dmixer_create(tplg,
1657 			template.num_kcontrols);
1658 		if (!template.kcontrol_news) {
1659 			ret = -ENOMEM;
1660 			goto hdr_err;
1661 		}
1662 		break;
1663 	case SND_SOC_TPLG_CTL_ENUM:
1664 	case SND_SOC_TPLG_CTL_ENUM_VALUE:
1665 	case SND_SOC_TPLG_DAPM_CTL_ENUM_DOUBLE:
1666 	case SND_SOC_TPLG_DAPM_CTL_ENUM_VIRT:
1667 	case SND_SOC_TPLG_DAPM_CTL_ENUM_VALUE:
1668 		kcontrol_type = SND_SOC_TPLG_TYPE_ENUM;	/* enumerated mixer */
1669 		template.num_kcontrols = le32_to_cpu(w->num_kcontrols);
1670 		template.kcontrol_news =
1671 			soc_tplg_dapm_widget_denum_create(tplg,
1672 			template.num_kcontrols);
1673 		if (!template.kcontrol_news) {
1674 			ret = -ENOMEM;
1675 			goto hdr_err;
1676 		}
1677 		break;
1678 	case SND_SOC_TPLG_CTL_BYTES:
1679 		kcontrol_type = SND_SOC_TPLG_TYPE_BYTES; /* bytes control */
1680 		template.num_kcontrols = le32_to_cpu(w->num_kcontrols);
1681 		template.kcontrol_news =
1682 			soc_tplg_dapm_widget_dbytes_create(tplg,
1683 				template.num_kcontrols);
1684 		if (!template.kcontrol_news) {
1685 			ret = -ENOMEM;
1686 			goto hdr_err;
1687 		}
1688 		break;
1689 	default:
1690 		dev_err(tplg->dev, "ASoC: invalid widget control type %d:%d:%d\n",
1691 			control_hdr->ops.get, control_hdr->ops.put,
1692 			le32_to_cpu(control_hdr->ops.info));
1693 		ret = -EINVAL;
1694 		goto hdr_err;
1695 	}
1696 
1697 widget:
1698 	ret = soc_tplg_widget_load(tplg, &template, w);
1699 	if (ret < 0)
1700 		goto hdr_err;
1701 
1702 	/* card dapm mutex is held by the core if we are loading topology
1703 	 * data during sound card init. */
1704 	if (card->instantiated)
1705 		widget = snd_soc_dapm_new_control(dapm, &template);
1706 	else
1707 		widget = snd_soc_dapm_new_control_unlocked(dapm, &template);
1708 	if (IS_ERR(widget)) {
1709 		ret = PTR_ERR(widget);
1710 		goto hdr_err;
1711 	}
1712 
1713 	widget->dobj.type = SND_SOC_DOBJ_WIDGET;
1714 	widget->dobj.widget.kcontrol_type = kcontrol_type;
1715 	widget->dobj.ops = tplg->ops;
1716 	widget->dobj.index = tplg->index;
1717 	list_add(&widget->dobj.list, &tplg->comp->dobj_list);
1718 
1719 	ret = soc_tplg_widget_ready(tplg, widget, w);
1720 	if (ret < 0)
1721 		goto ready_err;
1722 
1723 	kfree(template.sname);
1724 	kfree(template.name);
1725 
1726 	return 0;
1727 
1728 ready_err:
1729 	snd_soc_tplg_widget_remove(widget);
1730 	snd_soc_dapm_free_widget(widget);
1731 hdr_err:
1732 	kfree(template.sname);
1733 err:
1734 	kfree(template.name);
1735 	return ret;
1736 }
1737 
soc_tplg_dapm_widget_elems_load(struct soc_tplg * tplg,struct snd_soc_tplg_hdr * hdr)1738 static int soc_tplg_dapm_widget_elems_load(struct soc_tplg *tplg,
1739 	struct snd_soc_tplg_hdr *hdr)
1740 {
1741 	struct snd_soc_tplg_dapm_widget *widget;
1742 	int ret, count, i;
1743 
1744 	count = le32_to_cpu(hdr->count);
1745 
1746 	dev_dbg(tplg->dev, "ASoC: adding %d DAPM widgets\n", count);
1747 
1748 	for (i = 0; i < count; i++) {
1749 		widget = (struct snd_soc_tplg_dapm_widget *) tplg->pos;
1750 		if (le32_to_cpu(widget->size) != sizeof(*widget)) {
1751 			dev_err(tplg->dev, "ASoC: invalid widget size\n");
1752 			return -EINVAL;
1753 		}
1754 
1755 		ret = soc_tplg_dapm_widget_create(tplg, widget);
1756 		if (ret < 0) {
1757 			dev_err(tplg->dev, "ASoC: failed to load widget %s\n",
1758 				widget->name);
1759 			return ret;
1760 		}
1761 	}
1762 
1763 	return 0;
1764 }
1765 
soc_tplg_dapm_complete(struct soc_tplg * tplg)1766 static int soc_tplg_dapm_complete(struct soc_tplg *tplg)
1767 {
1768 	struct snd_soc_card *card = tplg->comp->card;
1769 	int ret;
1770 
1771 	/* Card might not have been registered at this point.
1772 	 * If so, just return success.
1773 	*/
1774 	if (!card || !card->instantiated) {
1775 		dev_warn(tplg->dev, "ASoC: Parent card not yet available,"
1776 			" widget card binding deferred\n");
1777 		return 0;
1778 	}
1779 
1780 	ret = snd_soc_dapm_new_widgets(card);
1781 	if (ret < 0)
1782 		dev_err(tplg->dev, "ASoC: failed to create new widgets %d\n",
1783 			ret);
1784 
1785 	return 0;
1786 }
1787 
set_stream_info(struct snd_soc_pcm_stream * stream,struct snd_soc_tplg_stream_caps * caps)1788 static int set_stream_info(struct snd_soc_pcm_stream *stream,
1789 	struct snd_soc_tplg_stream_caps *caps)
1790 {
1791 	stream->stream_name = kstrdup(caps->name, GFP_KERNEL);
1792 	if (!stream->stream_name)
1793 		return -ENOMEM;
1794 
1795 	stream->channels_min = le32_to_cpu(caps->channels_min);
1796 	stream->channels_max = le32_to_cpu(caps->channels_max);
1797 	stream->rates = le32_to_cpu(caps->rates);
1798 	stream->rate_min = le32_to_cpu(caps->rate_min);
1799 	stream->rate_max = le32_to_cpu(caps->rate_max);
1800 	stream->formats = le64_to_cpu(caps->formats);
1801 	stream->sig_bits = le32_to_cpu(caps->sig_bits);
1802 
1803 	return 0;
1804 }
1805 
set_dai_flags(struct snd_soc_dai_driver * dai_drv,unsigned int flag_mask,unsigned int flags)1806 static void set_dai_flags(struct snd_soc_dai_driver *dai_drv,
1807 			  unsigned int flag_mask, unsigned int flags)
1808 {
1809 	if (flag_mask & SND_SOC_TPLG_DAI_FLGBIT_SYMMETRIC_RATES)
1810 		dai_drv->symmetric_rates =
1811 			flags & SND_SOC_TPLG_DAI_FLGBIT_SYMMETRIC_RATES ? 1 : 0;
1812 
1813 	if (flag_mask & SND_SOC_TPLG_DAI_FLGBIT_SYMMETRIC_CHANNELS)
1814 		dai_drv->symmetric_channels =
1815 			flags & SND_SOC_TPLG_DAI_FLGBIT_SYMMETRIC_CHANNELS ?
1816 			1 : 0;
1817 
1818 	if (flag_mask & SND_SOC_TPLG_DAI_FLGBIT_SYMMETRIC_SAMPLEBITS)
1819 		dai_drv->symmetric_samplebits =
1820 			flags & SND_SOC_TPLG_DAI_FLGBIT_SYMMETRIC_SAMPLEBITS ?
1821 			1 : 0;
1822 }
1823 
soc_tplg_dai_create(struct soc_tplg * tplg,struct snd_soc_tplg_pcm * pcm)1824 static int soc_tplg_dai_create(struct soc_tplg *tplg,
1825 	struct snd_soc_tplg_pcm *pcm)
1826 {
1827 	struct snd_soc_dai_driver *dai_drv;
1828 	struct snd_soc_pcm_stream *stream;
1829 	struct snd_soc_tplg_stream_caps *caps;
1830 	struct snd_soc_dai *dai;
1831 	struct snd_soc_dapm_context *dapm =
1832 		snd_soc_component_get_dapm(tplg->comp);
1833 	int ret;
1834 
1835 	dai_drv = kzalloc(sizeof(struct snd_soc_dai_driver), GFP_KERNEL);
1836 	if (dai_drv == NULL)
1837 		return -ENOMEM;
1838 
1839 	if (strlen(pcm->dai_name)) {
1840 		dai_drv->name = kstrdup(pcm->dai_name, GFP_KERNEL);
1841 		if (!dai_drv->name) {
1842 			ret = -ENOMEM;
1843 			goto err;
1844 		}
1845 	}
1846 	dai_drv->id = le32_to_cpu(pcm->dai_id);
1847 
1848 	if (pcm->playback) {
1849 		stream = &dai_drv->playback;
1850 		caps = &pcm->caps[SND_SOC_TPLG_STREAM_PLAYBACK];
1851 		ret = set_stream_info(stream, caps);
1852 		if (ret < 0)
1853 			goto err;
1854 	}
1855 
1856 	if (pcm->capture) {
1857 		stream = &dai_drv->capture;
1858 		caps = &pcm->caps[SND_SOC_TPLG_STREAM_CAPTURE];
1859 		ret = set_stream_info(stream, caps);
1860 		if (ret < 0)
1861 			goto err;
1862 	}
1863 
1864 	if (pcm->compress)
1865 		dai_drv->compress_new = snd_soc_new_compress;
1866 
1867 	/* pass control to component driver for optional further init */
1868 	ret = soc_tplg_dai_load(tplg, dai_drv, pcm, NULL);
1869 	if (ret < 0) {
1870 		dev_err(tplg->comp->dev, "ASoC: DAI loading failed\n");
1871 		goto err;
1872 	}
1873 
1874 	dai_drv->dobj.index = tplg->index;
1875 	dai_drv->dobj.ops = tplg->ops;
1876 	dai_drv->dobj.type = SND_SOC_DOBJ_PCM;
1877 	list_add(&dai_drv->dobj.list, &tplg->comp->dobj_list);
1878 
1879 	/* register the DAI to the component */
1880 	dai = snd_soc_register_dai(tplg->comp, dai_drv, false);
1881 	if (!dai)
1882 		return -ENOMEM;
1883 
1884 	/* Create the DAI widgets here */
1885 	ret = snd_soc_dapm_new_dai_widgets(dapm, dai);
1886 	if (ret != 0) {
1887 		dev_err(dai->dev, "Failed to create DAI widgets %d\n", ret);
1888 		snd_soc_unregister_dai(dai);
1889 		return ret;
1890 	}
1891 
1892 	return 0;
1893 
1894 err:
1895 	kfree(dai_drv->playback.stream_name);
1896 	kfree(dai_drv->capture.stream_name);
1897 	kfree(dai_drv->name);
1898 	kfree(dai_drv);
1899 
1900 	return ret;
1901 }
1902 
set_link_flags(struct snd_soc_dai_link * link,unsigned int flag_mask,unsigned int flags)1903 static void set_link_flags(struct snd_soc_dai_link *link,
1904 		unsigned int flag_mask, unsigned int flags)
1905 {
1906 	if (flag_mask & SND_SOC_TPLG_LNK_FLGBIT_SYMMETRIC_RATES)
1907 		link->symmetric_rates =
1908 			flags & SND_SOC_TPLG_LNK_FLGBIT_SYMMETRIC_RATES ? 1 : 0;
1909 
1910 	if (flag_mask & SND_SOC_TPLG_LNK_FLGBIT_SYMMETRIC_CHANNELS)
1911 		link->symmetric_channels =
1912 			flags & SND_SOC_TPLG_LNK_FLGBIT_SYMMETRIC_CHANNELS ?
1913 			1 : 0;
1914 
1915 	if (flag_mask & SND_SOC_TPLG_LNK_FLGBIT_SYMMETRIC_SAMPLEBITS)
1916 		link->symmetric_samplebits =
1917 			flags & SND_SOC_TPLG_LNK_FLGBIT_SYMMETRIC_SAMPLEBITS ?
1918 			1 : 0;
1919 
1920 	if (flag_mask & SND_SOC_TPLG_LNK_FLGBIT_VOICE_WAKEUP)
1921 		link->ignore_suspend =
1922 		flags & SND_SOC_TPLG_LNK_FLGBIT_VOICE_WAKEUP ?
1923 		1 : 0;
1924 }
1925 
1926 /* create the FE DAI link */
soc_tplg_fe_link_create(struct soc_tplg * tplg,struct snd_soc_tplg_pcm * pcm)1927 static int soc_tplg_fe_link_create(struct soc_tplg *tplg,
1928 	struct snd_soc_tplg_pcm *pcm)
1929 {
1930 	struct snd_soc_dai_link *link;
1931 	struct snd_soc_dai_link_component *dlc;
1932 	int ret;
1933 
1934 	/* link + cpu + codec + platform */
1935 	link = kzalloc(sizeof(*link) + (3 * sizeof(*dlc)), GFP_KERNEL);
1936 	if (link == NULL)
1937 		return -ENOMEM;
1938 
1939 	dlc = (struct snd_soc_dai_link_component *)(link + 1);
1940 
1941 	link->cpus	= &dlc[0];
1942 	link->codecs	= &dlc[1];
1943 	link->platforms	= &dlc[2];
1944 
1945 	link->num_cpus	 = 1;
1946 	link->num_codecs = 1;
1947 	link->num_platforms = 1;
1948 
1949 	link->dobj.index = tplg->index;
1950 	link->dobj.ops = tplg->ops;
1951 	link->dobj.type = SND_SOC_DOBJ_DAI_LINK;
1952 
1953 	if (strlen(pcm->pcm_name)) {
1954 		link->name = kstrdup(pcm->pcm_name, GFP_KERNEL);
1955 		link->stream_name = kstrdup(pcm->pcm_name, GFP_KERNEL);
1956 		if (!link->name || !link->stream_name) {
1957 			ret = -ENOMEM;
1958 			goto err;
1959 		}
1960 	}
1961 	link->id = le32_to_cpu(pcm->pcm_id);
1962 
1963 	if (strlen(pcm->dai_name)) {
1964 		link->cpus->dai_name = kstrdup(pcm->dai_name, GFP_KERNEL);
1965 		if (!link->cpus->dai_name) {
1966 			ret = -ENOMEM;
1967 			goto err;
1968 		}
1969 	}
1970 
1971 	link->codecs->name = "snd-soc-dummy";
1972 	link->codecs->dai_name = "snd-soc-dummy-dai";
1973 
1974 	link->platforms->name = "snd-soc-dummy";
1975 
1976 	/* enable DPCM */
1977 	link->dynamic = 1;
1978 	link->dpcm_playback = le32_to_cpu(pcm->playback);
1979 	link->dpcm_capture = le32_to_cpu(pcm->capture);
1980 	if (pcm->flag_mask)
1981 		set_link_flags(link,
1982 			       le32_to_cpu(pcm->flag_mask),
1983 			       le32_to_cpu(pcm->flags));
1984 
1985 	/* pass control to component driver for optional further init */
1986 	ret = soc_tplg_dai_link_load(tplg, link, NULL);
1987 	if (ret < 0) {
1988 		dev_err(tplg->comp->dev, "ASoC: FE link loading failed\n");
1989 		goto err;
1990 	}
1991 
1992 	ret = snd_soc_add_pcm_runtime(tplg->comp->card, link);
1993 	if (ret < 0) {
1994 		dev_err(tplg->comp->dev, "ASoC: adding FE link failed\n");
1995 		goto err;
1996 	}
1997 
1998 	list_add(&link->dobj.list, &tplg->comp->dobj_list);
1999 
2000 	return 0;
2001 err:
2002 	kfree(link->name);
2003 	kfree(link->stream_name);
2004 	kfree(link->cpus->dai_name);
2005 	kfree(link);
2006 	return ret;
2007 }
2008 
2009 /* create a FE DAI and DAI link from the PCM object */
soc_tplg_pcm_create(struct soc_tplg * tplg,struct snd_soc_tplg_pcm * pcm)2010 static int soc_tplg_pcm_create(struct soc_tplg *tplg,
2011 	struct snd_soc_tplg_pcm *pcm)
2012 {
2013 	int ret;
2014 
2015 	ret = soc_tplg_dai_create(tplg, pcm);
2016 	if (ret < 0)
2017 		return ret;
2018 
2019 	return  soc_tplg_fe_link_create(tplg, pcm);
2020 }
2021 
2022 /* copy stream caps from the old version 4 of source */
stream_caps_new_ver(struct snd_soc_tplg_stream_caps * dest,struct snd_soc_tplg_stream_caps_v4 * src)2023 static void stream_caps_new_ver(struct snd_soc_tplg_stream_caps *dest,
2024 				struct snd_soc_tplg_stream_caps_v4 *src)
2025 {
2026 	dest->size = cpu_to_le32(sizeof(*dest));
2027 	memcpy(dest->name, src->name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN);
2028 	dest->formats = src->formats;
2029 	dest->rates = src->rates;
2030 	dest->rate_min = src->rate_min;
2031 	dest->rate_max = src->rate_max;
2032 	dest->channels_min = src->channels_min;
2033 	dest->channels_max = src->channels_max;
2034 	dest->periods_min = src->periods_min;
2035 	dest->periods_max = src->periods_max;
2036 	dest->period_size_min = src->period_size_min;
2037 	dest->period_size_max = src->period_size_max;
2038 	dest->buffer_size_min = src->buffer_size_min;
2039 	dest->buffer_size_max = src->buffer_size_max;
2040 }
2041 
2042 /**
2043  * pcm_new_ver - Create the new version of PCM from the old version.
2044  * @tplg: topology context
2045  * @src: older version of pcm as a source
2046  * @pcm: latest version of pcm created from the source
2047  *
2048  * Support from vesion 4. User should free the returned pcm manually.
2049  */
pcm_new_ver(struct soc_tplg * tplg,struct snd_soc_tplg_pcm * src,struct snd_soc_tplg_pcm ** pcm)2050 static int pcm_new_ver(struct soc_tplg *tplg,
2051 		       struct snd_soc_tplg_pcm *src,
2052 		       struct snd_soc_tplg_pcm **pcm)
2053 {
2054 	struct snd_soc_tplg_pcm *dest;
2055 	struct snd_soc_tplg_pcm_v4 *src_v4;
2056 	int i;
2057 
2058 	*pcm = NULL;
2059 
2060 	if (le32_to_cpu(src->size) != sizeof(*src_v4)) {
2061 		dev_err(tplg->dev, "ASoC: invalid PCM size\n");
2062 		return -EINVAL;
2063 	}
2064 
2065 	dev_warn(tplg->dev, "ASoC: old version of PCM\n");
2066 	src_v4 = (struct snd_soc_tplg_pcm_v4 *)src;
2067 	dest = kzalloc(sizeof(*dest), GFP_KERNEL);
2068 	if (!dest)
2069 		return -ENOMEM;
2070 
2071 	dest->size = cpu_to_le32(sizeof(*dest)); /* size of latest abi version */
2072 	memcpy(dest->pcm_name, src_v4->pcm_name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN);
2073 	memcpy(dest->dai_name, src_v4->dai_name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN);
2074 	dest->pcm_id = src_v4->pcm_id;
2075 	dest->dai_id = src_v4->dai_id;
2076 	dest->playback = src_v4->playback;
2077 	dest->capture = src_v4->capture;
2078 	dest->compress = src_v4->compress;
2079 	dest->num_streams = src_v4->num_streams;
2080 	for (i = 0; i < le32_to_cpu(dest->num_streams); i++)
2081 		memcpy(&dest->stream[i], &src_v4->stream[i],
2082 		       sizeof(struct snd_soc_tplg_stream));
2083 
2084 	for (i = 0; i < 2; i++)
2085 		stream_caps_new_ver(&dest->caps[i], &src_v4->caps[i]);
2086 
2087 	*pcm = dest;
2088 	return 0;
2089 }
2090 
soc_tplg_pcm_elems_load(struct soc_tplg * tplg,struct snd_soc_tplg_hdr * hdr)2091 static int soc_tplg_pcm_elems_load(struct soc_tplg *tplg,
2092 	struct snd_soc_tplg_hdr *hdr)
2093 {
2094 	struct snd_soc_tplg_pcm *pcm, *_pcm;
2095 	int count;
2096 	int size;
2097 	int i;
2098 	bool abi_match;
2099 	int ret;
2100 
2101 	count = le32_to_cpu(hdr->count);
2102 
2103 	/* check the element size and count */
2104 	pcm = (struct snd_soc_tplg_pcm *)tplg->pos;
2105 	size = le32_to_cpu(pcm->size);
2106 	if (size > sizeof(struct snd_soc_tplg_pcm)
2107 		|| size < sizeof(struct snd_soc_tplg_pcm_v4)) {
2108 		dev_err(tplg->dev, "ASoC: invalid size %d for PCM elems\n",
2109 			size);
2110 		return -EINVAL;
2111 	}
2112 
2113 	if (soc_tplg_check_elem_count(tplg,
2114 				      size, count,
2115 				      le32_to_cpu(hdr->payload_size),
2116 				      "PCM DAI")) {
2117 		dev_err(tplg->dev, "ASoC: invalid count %d for PCM DAI elems\n",
2118 			count);
2119 		return -EINVAL;
2120 	}
2121 
2122 	for (i = 0; i < count; i++) {
2123 		pcm = (struct snd_soc_tplg_pcm *)tplg->pos;
2124 		size = le32_to_cpu(pcm->size);
2125 
2126 		/* check ABI version by size, create a new version of pcm
2127 		 * if abi not match.
2128 		 */
2129 		if (size == sizeof(*pcm)) {
2130 			abi_match = true;
2131 			_pcm = pcm;
2132 		} else {
2133 			abi_match = false;
2134 			ret = pcm_new_ver(tplg, pcm, &_pcm);
2135 			if (ret < 0)
2136 				return ret;
2137 		}
2138 
2139 		/* create the FE DAIs and DAI links */
2140 		ret = soc_tplg_pcm_create(tplg, _pcm);
2141 		if (ret < 0) {
2142 			if (!abi_match)
2143 				kfree(_pcm);
2144 			return ret;
2145 		}
2146 
2147 		/* offset by version-specific struct size and
2148 		 * real priv data size
2149 		 */
2150 		tplg->pos += size + le32_to_cpu(_pcm->priv.size);
2151 
2152 		if (!abi_match)
2153 			kfree(_pcm); /* free the duplicated one */
2154 	}
2155 
2156 	dev_dbg(tplg->dev, "ASoC: adding %d PCM DAIs\n", count);
2157 
2158 	return 0;
2159 }
2160 
2161 /**
2162  * set_link_hw_format - Set the HW audio format of the physical DAI link.
2163  * @link: &snd_soc_dai_link which should be updated
2164  * @cfg: physical link configs.
2165  *
2166  * Topology context contains a list of supported HW formats (configs) and
2167  * a default format ID for the physical link. This function will use this
2168  * default ID to choose the HW format to set the link's DAI format for init.
2169  */
set_link_hw_format(struct snd_soc_dai_link * link,struct snd_soc_tplg_link_config * cfg)2170 static void set_link_hw_format(struct snd_soc_dai_link *link,
2171 			struct snd_soc_tplg_link_config *cfg)
2172 {
2173 	struct snd_soc_tplg_hw_config *hw_config;
2174 	unsigned char bclk_master, fsync_master;
2175 	unsigned char invert_bclk, invert_fsync;
2176 	int i;
2177 
2178 	for (i = 0; i < le32_to_cpu(cfg->num_hw_configs); i++) {
2179 		hw_config = &cfg->hw_config[i];
2180 		if (hw_config->id != cfg->default_hw_config_id)
2181 			continue;
2182 
2183 		link->dai_fmt = le32_to_cpu(hw_config->fmt) &
2184 			SND_SOC_DAIFMT_FORMAT_MASK;
2185 
2186 		/* clock gating */
2187 		switch (hw_config->clock_gated) {
2188 		case SND_SOC_TPLG_DAI_CLK_GATE_GATED:
2189 			link->dai_fmt |= SND_SOC_DAIFMT_GATED;
2190 			break;
2191 
2192 		case SND_SOC_TPLG_DAI_CLK_GATE_CONT:
2193 			link->dai_fmt |= SND_SOC_DAIFMT_CONT;
2194 			break;
2195 
2196 		default:
2197 			/* ignore the value */
2198 			break;
2199 		}
2200 
2201 		/* clock signal polarity */
2202 		invert_bclk = hw_config->invert_bclk;
2203 		invert_fsync = hw_config->invert_fsync;
2204 		if (!invert_bclk && !invert_fsync)
2205 			link->dai_fmt |= SND_SOC_DAIFMT_NB_NF;
2206 		else if (!invert_bclk && invert_fsync)
2207 			link->dai_fmt |= SND_SOC_DAIFMT_NB_IF;
2208 		else if (invert_bclk && !invert_fsync)
2209 			link->dai_fmt |= SND_SOC_DAIFMT_IB_NF;
2210 		else
2211 			link->dai_fmt |= SND_SOC_DAIFMT_IB_IF;
2212 
2213 		/* clock masters */
2214 		bclk_master = (hw_config->bclk_master ==
2215 			       SND_SOC_TPLG_BCLK_CM);
2216 		fsync_master = (hw_config->fsync_master ==
2217 				SND_SOC_TPLG_FSYNC_CM);
2218 		if (bclk_master && fsync_master)
2219 			link->dai_fmt |= SND_SOC_DAIFMT_CBM_CFM;
2220 		else if (!bclk_master && fsync_master)
2221 			link->dai_fmt |= SND_SOC_DAIFMT_CBS_CFM;
2222 		else if (bclk_master && !fsync_master)
2223 			link->dai_fmt |= SND_SOC_DAIFMT_CBM_CFS;
2224 		else
2225 			link->dai_fmt |= SND_SOC_DAIFMT_CBS_CFS;
2226 	}
2227 }
2228 
2229 /**
2230  * link_new_ver - Create a new physical link config from the old
2231  * version of source.
2232  * @tplg: topology context
2233  * @src: old version of phyical link config as a source
2234  * @link: latest version of physical link config created from the source
2235  *
2236  * Support from vesion 4. User need free the returned link config manually.
2237  */
link_new_ver(struct soc_tplg * tplg,struct snd_soc_tplg_link_config * src,struct snd_soc_tplg_link_config ** link)2238 static int link_new_ver(struct soc_tplg *tplg,
2239 			struct snd_soc_tplg_link_config *src,
2240 			struct snd_soc_tplg_link_config **link)
2241 {
2242 	struct snd_soc_tplg_link_config *dest;
2243 	struct snd_soc_tplg_link_config_v4 *src_v4;
2244 	int i;
2245 
2246 	*link = NULL;
2247 
2248 	if (le32_to_cpu(src->size) !=
2249 	    sizeof(struct snd_soc_tplg_link_config_v4)) {
2250 		dev_err(tplg->dev, "ASoC: invalid physical link config size\n");
2251 		return -EINVAL;
2252 	}
2253 
2254 	dev_warn(tplg->dev, "ASoC: old version of physical link config\n");
2255 
2256 	src_v4 = (struct snd_soc_tplg_link_config_v4 *)src;
2257 	dest = kzalloc(sizeof(*dest), GFP_KERNEL);
2258 	if (!dest)
2259 		return -ENOMEM;
2260 
2261 	dest->size = cpu_to_le32(sizeof(*dest));
2262 	dest->id = src_v4->id;
2263 	dest->num_streams = src_v4->num_streams;
2264 	for (i = 0; i < le32_to_cpu(dest->num_streams); i++)
2265 		memcpy(&dest->stream[i], &src_v4->stream[i],
2266 		       sizeof(struct snd_soc_tplg_stream));
2267 
2268 	*link = dest;
2269 	return 0;
2270 }
2271 
2272 /**
2273  * snd_soc_find_dai_link - Find a DAI link
2274  *
2275  * @card: soc card
2276  * @id: DAI link ID to match
2277  * @name: DAI link name to match, optional
2278  * @stream_name: DAI link stream name to match, optional
2279  *
2280  * This function will search all existing DAI links of the soc card to
2281  * find the link of the same ID. Since DAI links may not have their
2282  * unique ID, so name and stream name should also match if being
2283  * specified.
2284  *
2285  * Return: pointer of DAI link, or NULL if not found.
2286  */
snd_soc_find_dai_link(struct snd_soc_card * card,int id,const char * name,const char * stream_name)2287 static struct snd_soc_dai_link *snd_soc_find_dai_link(struct snd_soc_card *card,
2288 						      int id, const char *name,
2289 						      const char *stream_name)
2290 {
2291 	struct snd_soc_pcm_runtime *rtd;
2292 	struct snd_soc_dai_link *link;
2293 
2294 	for_each_card_rtds(card, rtd) {
2295 		link = rtd->dai_link;
2296 
2297 		if (link->id != id)
2298 			continue;
2299 
2300 		if (name && (!link->name || strcmp(name, link->name)))
2301 			continue;
2302 
2303 		if (stream_name && (!link->stream_name
2304 				    || strcmp(stream_name, link->stream_name)))
2305 			continue;
2306 
2307 		return link;
2308 	}
2309 
2310 	return NULL;
2311 }
2312 
2313 /* Find and configure an existing physical DAI link */
soc_tplg_link_config(struct soc_tplg * tplg,struct snd_soc_tplg_link_config * cfg)2314 static int soc_tplg_link_config(struct soc_tplg *tplg,
2315 	struct snd_soc_tplg_link_config *cfg)
2316 {
2317 	struct snd_soc_dai_link *link;
2318 	const char *name, *stream_name;
2319 	size_t len;
2320 	int ret;
2321 
2322 	len = strnlen(cfg->name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN);
2323 	if (len == SNDRV_CTL_ELEM_ID_NAME_MAXLEN)
2324 		return -EINVAL;
2325 	else if (len)
2326 		name = cfg->name;
2327 	else
2328 		name = NULL;
2329 
2330 	len = strnlen(cfg->stream_name, SNDRV_CTL_ELEM_ID_NAME_MAXLEN);
2331 	if (len == SNDRV_CTL_ELEM_ID_NAME_MAXLEN)
2332 		return -EINVAL;
2333 	else if (len)
2334 		stream_name = cfg->stream_name;
2335 	else
2336 		stream_name = NULL;
2337 
2338 	link = snd_soc_find_dai_link(tplg->comp->card, le32_to_cpu(cfg->id),
2339 				     name, stream_name);
2340 	if (!link) {
2341 		dev_err(tplg->dev, "ASoC: physical link %s (id %d) not exist\n",
2342 			name, cfg->id);
2343 		return -EINVAL;
2344 	}
2345 
2346 	/* hw format */
2347 	if (cfg->num_hw_configs)
2348 		set_link_hw_format(link, cfg);
2349 
2350 	/* flags */
2351 	if (cfg->flag_mask)
2352 		set_link_flags(link,
2353 			       le32_to_cpu(cfg->flag_mask),
2354 			       le32_to_cpu(cfg->flags));
2355 
2356 	/* pass control to component driver for optional further init */
2357 	ret = soc_tplg_dai_link_load(tplg, link, cfg);
2358 	if (ret < 0) {
2359 		dev_err(tplg->dev, "ASoC: physical link loading failed\n");
2360 		return ret;
2361 	}
2362 
2363 	/* for unloading it in snd_soc_tplg_component_remove */
2364 	link->dobj.index = tplg->index;
2365 	link->dobj.ops = tplg->ops;
2366 	link->dobj.type = SND_SOC_DOBJ_BACKEND_LINK;
2367 	list_add(&link->dobj.list, &tplg->comp->dobj_list);
2368 
2369 	return 0;
2370 }
2371 
2372 
2373 /* Load physical link config elements from the topology context */
soc_tplg_link_elems_load(struct soc_tplg * tplg,struct snd_soc_tplg_hdr * hdr)2374 static int soc_tplg_link_elems_load(struct soc_tplg *tplg,
2375 	struct snd_soc_tplg_hdr *hdr)
2376 {
2377 	struct snd_soc_tplg_link_config *link, *_link;
2378 	int count;
2379 	int size;
2380 	int i, ret;
2381 	bool abi_match;
2382 
2383 	count = le32_to_cpu(hdr->count);
2384 
2385 	/* check the element size and count */
2386 	link = (struct snd_soc_tplg_link_config *)tplg->pos;
2387 	size = le32_to_cpu(link->size);
2388 	if (size > sizeof(struct snd_soc_tplg_link_config)
2389 		|| size < sizeof(struct snd_soc_tplg_link_config_v4)) {
2390 		dev_err(tplg->dev, "ASoC: invalid size %d for physical link elems\n",
2391 			size);
2392 		return -EINVAL;
2393 	}
2394 
2395 	if (soc_tplg_check_elem_count(tplg,
2396 				      size, count,
2397 				      le32_to_cpu(hdr->payload_size),
2398 				      "physical link config")) {
2399 		dev_err(tplg->dev, "ASoC: invalid count %d for physical link elems\n",
2400 			count);
2401 		return -EINVAL;
2402 	}
2403 
2404 	/* config physical DAI links */
2405 	for (i = 0; i < count; i++) {
2406 		link = (struct snd_soc_tplg_link_config *)tplg->pos;
2407 		size = le32_to_cpu(link->size);
2408 		if (size == sizeof(*link)) {
2409 			abi_match = true;
2410 			_link = link;
2411 		} else {
2412 			abi_match = false;
2413 			ret = link_new_ver(tplg, link, &_link);
2414 			if (ret < 0)
2415 				return ret;
2416 		}
2417 
2418 		ret = soc_tplg_link_config(tplg, _link);
2419 		if (ret < 0) {
2420 			if (!abi_match)
2421 				kfree(_link);
2422 			return ret;
2423 		}
2424 
2425 		/* offset by version-specific struct size and
2426 		 * real priv data size
2427 		 */
2428 		tplg->pos += size + le32_to_cpu(_link->priv.size);
2429 
2430 		if (!abi_match)
2431 			kfree(_link); /* free the duplicated one */
2432 	}
2433 
2434 	return 0;
2435 }
2436 
2437 /**
2438  * soc_tplg_dai_config - Find and configure an existing physical DAI.
2439  * @tplg: topology context
2440  * @d: physical DAI configs.
2441  *
2442  * The physical dai should already be registered by the platform driver.
2443  * The platform driver should specify the DAI name and ID for matching.
2444  */
soc_tplg_dai_config(struct soc_tplg * tplg,struct snd_soc_tplg_dai * d)2445 static int soc_tplg_dai_config(struct soc_tplg *tplg,
2446 			       struct snd_soc_tplg_dai *d)
2447 {
2448 	struct snd_soc_dai_link_component dai_component;
2449 	struct snd_soc_dai *dai;
2450 	struct snd_soc_dai_driver *dai_drv;
2451 	struct snd_soc_pcm_stream *stream;
2452 	struct snd_soc_tplg_stream_caps *caps;
2453 	int ret;
2454 
2455 	memset(&dai_component, 0, sizeof(dai_component));
2456 
2457 	dai_component.dai_name = d->dai_name;
2458 	dai = snd_soc_find_dai(&dai_component);
2459 	if (!dai) {
2460 		dev_err(tplg->dev, "ASoC: physical DAI %s not registered\n",
2461 			d->dai_name);
2462 		return -EINVAL;
2463 	}
2464 
2465 	if (le32_to_cpu(d->dai_id) != dai->id) {
2466 		dev_err(tplg->dev, "ASoC: physical DAI %s id mismatch\n",
2467 			d->dai_name);
2468 		return -EINVAL;
2469 	}
2470 
2471 	dai_drv = dai->driver;
2472 	if (!dai_drv)
2473 		return -EINVAL;
2474 
2475 	if (d->playback) {
2476 		stream = &dai_drv->playback;
2477 		caps = &d->caps[SND_SOC_TPLG_STREAM_PLAYBACK];
2478 		ret = set_stream_info(stream, caps);
2479 		if (ret < 0)
2480 			goto err;
2481 	}
2482 
2483 	if (d->capture) {
2484 		stream = &dai_drv->capture;
2485 		caps = &d->caps[SND_SOC_TPLG_STREAM_CAPTURE];
2486 		ret = set_stream_info(stream, caps);
2487 		if (ret < 0)
2488 			goto err;
2489 	}
2490 
2491 	if (d->flag_mask)
2492 		set_dai_flags(dai_drv,
2493 			      le32_to_cpu(d->flag_mask),
2494 			      le32_to_cpu(d->flags));
2495 
2496 	/* pass control to component driver for optional further init */
2497 	ret = soc_tplg_dai_load(tplg, dai_drv, NULL, dai);
2498 	if (ret < 0) {
2499 		dev_err(tplg->comp->dev, "ASoC: DAI loading failed\n");
2500 		goto err;
2501 	}
2502 
2503 	return 0;
2504 
2505 err:
2506 	kfree(dai_drv->playback.stream_name);
2507 	kfree(dai_drv->capture.stream_name);
2508 	return ret;
2509 }
2510 
2511 /* load physical DAI elements */
soc_tplg_dai_elems_load(struct soc_tplg * tplg,struct snd_soc_tplg_hdr * hdr)2512 static int soc_tplg_dai_elems_load(struct soc_tplg *tplg,
2513 				   struct snd_soc_tplg_hdr *hdr)
2514 {
2515 	struct snd_soc_tplg_dai *dai;
2516 	int count;
2517 	int i, ret;
2518 
2519 	count = le32_to_cpu(hdr->count);
2520 
2521 	/* config the existing BE DAIs */
2522 	for (i = 0; i < count; i++) {
2523 		dai = (struct snd_soc_tplg_dai *)tplg->pos;
2524 		if (le32_to_cpu(dai->size) != sizeof(*dai)) {
2525 			dev_err(tplg->dev, "ASoC: invalid physical DAI size\n");
2526 			return -EINVAL;
2527 		}
2528 
2529 		ret = soc_tplg_dai_config(tplg, dai);
2530 		if (ret < 0) {
2531 			dev_err(tplg->dev, "ASoC: failed to configure DAI\n");
2532 			return ret;
2533 		}
2534 
2535 		tplg->pos += (sizeof(*dai) + le32_to_cpu(dai->priv.size));
2536 	}
2537 
2538 	dev_dbg(tplg->dev, "ASoC: Configure %d BE DAIs\n", count);
2539 	return 0;
2540 }
2541 
2542 /**
2543  * manifest_new_ver - Create a new version of manifest from the old version
2544  * of source.
2545  * @tplg: topology context
2546  * @src: old version of manifest as a source
2547  * @manifest: latest version of manifest created from the source
2548  *
2549  * Support from vesion 4. Users need free the returned manifest manually.
2550  */
manifest_new_ver(struct soc_tplg * tplg,struct snd_soc_tplg_manifest * src,struct snd_soc_tplg_manifest ** manifest)2551 static int manifest_new_ver(struct soc_tplg *tplg,
2552 			    struct snd_soc_tplg_manifest *src,
2553 			    struct snd_soc_tplg_manifest **manifest)
2554 {
2555 	struct snd_soc_tplg_manifest *dest;
2556 	struct snd_soc_tplg_manifest_v4 *src_v4;
2557 	int size;
2558 
2559 	*manifest = NULL;
2560 
2561 	size = le32_to_cpu(src->size);
2562 	if (size != sizeof(*src_v4)) {
2563 		dev_warn(tplg->dev, "ASoC: invalid manifest size %d\n",
2564 			 size);
2565 		if (size)
2566 			return -EINVAL;
2567 		src->size = cpu_to_le32(sizeof(*src_v4));
2568 	}
2569 
2570 	dev_warn(tplg->dev, "ASoC: old version of manifest\n");
2571 
2572 	src_v4 = (struct snd_soc_tplg_manifest_v4 *)src;
2573 	dest = kzalloc(sizeof(*dest) + le32_to_cpu(src_v4->priv.size),
2574 		       GFP_KERNEL);
2575 	if (!dest)
2576 		return -ENOMEM;
2577 
2578 	dest->size = cpu_to_le32(sizeof(*dest)); /* size of latest abi version */
2579 	dest->control_elems = src_v4->control_elems;
2580 	dest->widget_elems = src_v4->widget_elems;
2581 	dest->graph_elems = src_v4->graph_elems;
2582 	dest->pcm_elems = src_v4->pcm_elems;
2583 	dest->dai_link_elems = src_v4->dai_link_elems;
2584 	dest->priv.size = src_v4->priv.size;
2585 	if (dest->priv.size)
2586 		memcpy(dest->priv.data, src_v4->priv.data,
2587 		       le32_to_cpu(src_v4->priv.size));
2588 
2589 	*manifest = dest;
2590 	return 0;
2591 }
2592 
soc_tplg_manifest_load(struct soc_tplg * tplg,struct snd_soc_tplg_hdr * hdr)2593 static int soc_tplg_manifest_load(struct soc_tplg *tplg,
2594 				  struct snd_soc_tplg_hdr *hdr)
2595 {
2596 	struct snd_soc_tplg_manifest *manifest, *_manifest;
2597 	bool abi_match;
2598 	int ret = 0;
2599 
2600 	manifest = (struct snd_soc_tplg_manifest *)tplg->pos;
2601 
2602 	/* check ABI version by size, create a new manifest if abi not match */
2603 	if (le32_to_cpu(manifest->size) == sizeof(*manifest)) {
2604 		abi_match = true;
2605 		_manifest = manifest;
2606 	} else {
2607 		abi_match = false;
2608 		ret = manifest_new_ver(tplg, manifest, &_manifest);
2609 		if (ret < 0)
2610 			return ret;
2611 	}
2612 
2613 	/* pass control to component driver for optional further init */
2614 	if (tplg->ops && tplg->ops->manifest)
2615 		ret = tplg->ops->manifest(tplg->comp, tplg->index, _manifest);
2616 
2617 	if (!abi_match)	/* free the duplicated one */
2618 		kfree(_manifest);
2619 
2620 	return ret;
2621 }
2622 
2623 /* validate header magic, size and type */
soc_valid_header(struct soc_tplg * tplg,struct snd_soc_tplg_hdr * hdr)2624 static int soc_valid_header(struct soc_tplg *tplg,
2625 	struct snd_soc_tplg_hdr *hdr)
2626 {
2627 	if (soc_tplg_get_hdr_offset(tplg) >= tplg->fw->size)
2628 		return 0;
2629 
2630 	if (le32_to_cpu(hdr->size) != sizeof(*hdr)) {
2631 		dev_err(tplg->dev,
2632 			"ASoC: invalid header size for type %d at offset 0x%lx size 0x%zx.\n",
2633 			le32_to_cpu(hdr->type), soc_tplg_get_hdr_offset(tplg),
2634 			tplg->fw->size);
2635 		return -EINVAL;
2636 	}
2637 
2638 	/* big endian firmware objects not supported atm */
2639 	if (le32_to_cpu(hdr->magic) == SOC_TPLG_MAGIC_BIG_ENDIAN) {
2640 		dev_err(tplg->dev,
2641 			"ASoC: pass %d big endian not supported header got %x at offset 0x%lx size 0x%zx.\n",
2642 			tplg->pass, hdr->magic,
2643 			soc_tplg_get_hdr_offset(tplg), tplg->fw->size);
2644 		return -EINVAL;
2645 	}
2646 
2647 	if (le32_to_cpu(hdr->magic) != SND_SOC_TPLG_MAGIC) {
2648 		dev_err(tplg->dev,
2649 			"ASoC: pass %d does not have a valid header got %x at offset 0x%lx size 0x%zx.\n",
2650 			tplg->pass, hdr->magic,
2651 			soc_tplg_get_hdr_offset(tplg), tplg->fw->size);
2652 		return -EINVAL;
2653 	}
2654 
2655 	/* Support ABI from version 4 */
2656 	if (le32_to_cpu(hdr->abi) > SND_SOC_TPLG_ABI_VERSION ||
2657 	    le32_to_cpu(hdr->abi) < SND_SOC_TPLG_ABI_VERSION_MIN) {
2658 		dev_err(tplg->dev,
2659 			"ASoC: pass %d invalid ABI version got 0x%x need 0x%x at offset 0x%lx size 0x%zx.\n",
2660 			tplg->pass, hdr->abi,
2661 			SND_SOC_TPLG_ABI_VERSION, soc_tplg_get_hdr_offset(tplg),
2662 			tplg->fw->size);
2663 		return -EINVAL;
2664 	}
2665 
2666 	if (hdr->payload_size == 0) {
2667 		dev_err(tplg->dev, "ASoC: header has 0 size at offset 0x%lx.\n",
2668 			soc_tplg_get_hdr_offset(tplg));
2669 		return -EINVAL;
2670 	}
2671 
2672 	return 1;
2673 }
2674 
2675 /* check header type and call appropriate handler */
soc_tplg_load_header(struct soc_tplg * tplg,struct snd_soc_tplg_hdr * hdr)2676 static int soc_tplg_load_header(struct soc_tplg *tplg,
2677 	struct snd_soc_tplg_hdr *hdr)
2678 {
2679 	int (*elem_load)(struct soc_tplg *tplg,
2680 			 struct snd_soc_tplg_hdr *hdr);
2681 	unsigned int hdr_pass;
2682 
2683 	tplg->pos = tplg->hdr_pos + sizeof(struct snd_soc_tplg_hdr);
2684 
2685 	/* check for matching ID */
2686 	if (le32_to_cpu(hdr->index) != tplg->req_index &&
2687 		tplg->req_index != SND_SOC_TPLG_INDEX_ALL)
2688 		return 0;
2689 
2690 	tplg->index = le32_to_cpu(hdr->index);
2691 
2692 	switch (le32_to_cpu(hdr->type)) {
2693 	case SND_SOC_TPLG_TYPE_MIXER:
2694 	case SND_SOC_TPLG_TYPE_ENUM:
2695 	case SND_SOC_TPLG_TYPE_BYTES:
2696 		hdr_pass = SOC_TPLG_PASS_MIXER;
2697 		elem_load = soc_tplg_kcontrol_elems_load;
2698 		break;
2699 	case SND_SOC_TPLG_TYPE_DAPM_GRAPH:
2700 		hdr_pass = SOC_TPLG_PASS_GRAPH;
2701 		elem_load = soc_tplg_dapm_graph_elems_load;
2702 		break;
2703 	case SND_SOC_TPLG_TYPE_DAPM_WIDGET:
2704 		hdr_pass = SOC_TPLG_PASS_WIDGET;
2705 		elem_load = soc_tplg_dapm_widget_elems_load;
2706 		break;
2707 	case SND_SOC_TPLG_TYPE_PCM:
2708 		hdr_pass = SOC_TPLG_PASS_PCM_DAI;
2709 		elem_load = soc_tplg_pcm_elems_load;
2710 		break;
2711 	case SND_SOC_TPLG_TYPE_DAI:
2712 		hdr_pass = SOC_TPLG_PASS_BE_DAI;
2713 		elem_load = soc_tplg_dai_elems_load;
2714 		break;
2715 	case SND_SOC_TPLG_TYPE_DAI_LINK:
2716 	case SND_SOC_TPLG_TYPE_BACKEND_LINK:
2717 		/* physical link configurations */
2718 		hdr_pass = SOC_TPLG_PASS_LINK;
2719 		elem_load = soc_tplg_link_elems_load;
2720 		break;
2721 	case SND_SOC_TPLG_TYPE_MANIFEST:
2722 		hdr_pass = SOC_TPLG_PASS_MANIFEST;
2723 		elem_load = soc_tplg_manifest_load;
2724 		break;
2725 	default:
2726 		/* bespoke vendor data object */
2727 		hdr_pass = SOC_TPLG_PASS_VENDOR;
2728 		elem_load = soc_tplg_vendor_load;
2729 		break;
2730 	}
2731 
2732 	if (tplg->pass == hdr_pass) {
2733 		dev_dbg(tplg->dev,
2734 			"ASoC: Got 0x%x bytes of type %d version %d vendor %d at pass %d\n",
2735 			hdr->payload_size, hdr->type, hdr->version,
2736 			hdr->vendor_type, tplg->pass);
2737 		return elem_load(tplg, hdr);
2738 	}
2739 
2740 	return 0;
2741 }
2742 
2743 /* process the topology file headers */
soc_tplg_process_headers(struct soc_tplg * tplg)2744 static int soc_tplg_process_headers(struct soc_tplg *tplg)
2745 {
2746 	struct snd_soc_tplg_hdr *hdr;
2747 	int ret;
2748 
2749 	tplg->pass = SOC_TPLG_PASS_START;
2750 
2751 	/* process the header types from start to end */
2752 	while (tplg->pass <= SOC_TPLG_PASS_END) {
2753 
2754 		tplg->hdr_pos = tplg->fw->data;
2755 		hdr = (struct snd_soc_tplg_hdr *)tplg->hdr_pos;
2756 
2757 		while (!soc_tplg_is_eof(tplg)) {
2758 
2759 			/* make sure header is valid before loading */
2760 			ret = soc_valid_header(tplg, hdr);
2761 			if (ret < 0) {
2762 				dev_err(tplg->dev,
2763 					"ASoC: topology: invalid header: %d\n", ret);
2764 				return ret;
2765 			} else if (ret == 0) {
2766 				break;
2767 			}
2768 
2769 			/* load the header object */
2770 			ret = soc_tplg_load_header(tplg, hdr);
2771 			if (ret < 0) {
2772 				dev_err(tplg->dev,
2773 					"ASoC: topology: could not load header: %d\n", ret);
2774 				return ret;
2775 			}
2776 
2777 			/* goto next header */
2778 			tplg->hdr_pos += le32_to_cpu(hdr->payload_size) +
2779 				sizeof(struct snd_soc_tplg_hdr);
2780 			hdr = (struct snd_soc_tplg_hdr *)tplg->hdr_pos;
2781 		}
2782 
2783 		/* next data type pass */
2784 		tplg->pass++;
2785 	}
2786 
2787 	/* signal DAPM we are complete */
2788 	ret = soc_tplg_dapm_complete(tplg);
2789 	if (ret < 0)
2790 		dev_err(tplg->dev,
2791 			"ASoC: failed to initialise DAPM from Firmware\n");
2792 
2793 	return ret;
2794 }
2795 
soc_tplg_load(struct soc_tplg * tplg)2796 static int soc_tplg_load(struct soc_tplg *tplg)
2797 {
2798 	int ret;
2799 
2800 	ret = soc_tplg_process_headers(tplg);
2801 	if (ret == 0)
2802 		soc_tplg_complete(tplg);
2803 
2804 	return ret;
2805 }
2806 
2807 /* load audio component topology from "firmware" file */
snd_soc_tplg_component_load(struct snd_soc_component * comp,struct snd_soc_tplg_ops * ops,const struct firmware * fw,u32 id)2808 int snd_soc_tplg_component_load(struct snd_soc_component *comp,
2809 	struct snd_soc_tplg_ops *ops, const struct firmware *fw, u32 id)
2810 {
2811 	struct soc_tplg tplg;
2812 	int ret;
2813 
2814 	/* component needs to exist to keep and reference data while parsing */
2815 	if (!comp)
2816 		return -EINVAL;
2817 
2818 	/* setup parsing context */
2819 	memset(&tplg, 0, sizeof(tplg));
2820 	tplg.fw = fw;
2821 	tplg.dev = comp->dev;
2822 	tplg.comp = comp;
2823 	tplg.ops = ops;
2824 	tplg.req_index = id;
2825 	tplg.io_ops = ops->io_ops;
2826 	tplg.io_ops_count = ops->io_ops_count;
2827 	tplg.bytes_ext_ops = ops->bytes_ext_ops;
2828 	tplg.bytes_ext_ops_count = ops->bytes_ext_ops_count;
2829 
2830 	ret = soc_tplg_load(&tplg);
2831 	/* free the created components if fail to load topology */
2832 	if (ret)
2833 		snd_soc_tplg_component_remove(comp, SND_SOC_TPLG_INDEX_ALL);
2834 
2835 	return ret;
2836 }
2837 EXPORT_SYMBOL_GPL(snd_soc_tplg_component_load);
2838 
2839 /* remove this dynamic widget */
snd_soc_tplg_widget_remove(struct snd_soc_dapm_widget * w)2840 void snd_soc_tplg_widget_remove(struct snd_soc_dapm_widget *w)
2841 {
2842 	/* make sure we are a widget */
2843 	if (w->dobj.type != SND_SOC_DOBJ_WIDGET)
2844 		return;
2845 
2846 	remove_widget(w->dapm->component, &w->dobj, SOC_TPLG_PASS_WIDGET);
2847 }
2848 EXPORT_SYMBOL_GPL(snd_soc_tplg_widget_remove);
2849 
2850 /* remove all dynamic widgets from this DAPM context */
snd_soc_tplg_widget_remove_all(struct snd_soc_dapm_context * dapm,u32 index)2851 void snd_soc_tplg_widget_remove_all(struct snd_soc_dapm_context *dapm,
2852 	u32 index)
2853 {
2854 	struct snd_soc_dapm_widget *w, *next_w;
2855 
2856 	for_each_card_widgets_safe(dapm->card, w, next_w) {
2857 
2858 		/* make sure we are a widget with correct context */
2859 		if (w->dobj.type != SND_SOC_DOBJ_WIDGET || w->dapm != dapm)
2860 			continue;
2861 
2862 		/* match ID */
2863 		if (w->dobj.index != index &&
2864 			w->dobj.index != SND_SOC_TPLG_INDEX_ALL)
2865 			continue;
2866 		/* check and free and dynamic widget kcontrols */
2867 		snd_soc_tplg_widget_remove(w);
2868 		snd_soc_dapm_free_widget(w);
2869 	}
2870 	snd_soc_dapm_reset_cache(dapm);
2871 }
2872 EXPORT_SYMBOL_GPL(snd_soc_tplg_widget_remove_all);
2873 
2874 /* remove dynamic controls from the component driver */
snd_soc_tplg_component_remove(struct snd_soc_component * comp,u32 index)2875 int snd_soc_tplg_component_remove(struct snd_soc_component *comp, u32 index)
2876 {
2877 	struct snd_card *card = comp->card->snd_card;
2878 	struct snd_soc_dobj *dobj, *next_dobj;
2879 	int pass = SOC_TPLG_PASS_END;
2880 
2881 	/* process the header types from end to start */
2882 	while (pass >= SOC_TPLG_PASS_START) {
2883 
2884 		/* remove mixer controls */
2885 		down_write(&card->controls_rwsem);
2886 		list_for_each_entry_safe(dobj, next_dobj, &comp->dobj_list,
2887 			list) {
2888 
2889 			/* match index */
2890 			if (dobj->index != index &&
2891 				index != SND_SOC_TPLG_INDEX_ALL)
2892 				continue;
2893 
2894 			switch (dobj->type) {
2895 			case SND_SOC_DOBJ_MIXER:
2896 				remove_mixer(comp, dobj, pass);
2897 				break;
2898 			case SND_SOC_DOBJ_ENUM:
2899 				remove_enum(comp, dobj, pass);
2900 				break;
2901 			case SND_SOC_DOBJ_BYTES:
2902 				remove_bytes(comp, dobj, pass);
2903 				break;
2904 			case SND_SOC_DOBJ_GRAPH:
2905 				remove_route(comp, dobj, pass);
2906 				break;
2907 			case SND_SOC_DOBJ_WIDGET:
2908 				remove_widget(comp, dobj, pass);
2909 				break;
2910 			case SND_SOC_DOBJ_PCM:
2911 				remove_dai(comp, dobj, pass);
2912 				break;
2913 			case SND_SOC_DOBJ_DAI_LINK:
2914 				remove_link(comp, dobj, pass);
2915 				break;
2916 			case SND_SOC_DOBJ_BACKEND_LINK:
2917 				/*
2918 				 * call link_unload ops if extra
2919 				 * deinitialization is needed.
2920 				 */
2921 				remove_backend_link(comp, dobj, pass);
2922 				break;
2923 			default:
2924 				dev_err(comp->dev, "ASoC: invalid component type %d for removal\n",
2925 					dobj->type);
2926 				break;
2927 			}
2928 		}
2929 		up_write(&card->controls_rwsem);
2930 		pass--;
2931 	}
2932 
2933 	/* let caller know if FW can be freed when no objects are left */
2934 	return !list_empty(&comp->dobj_list);
2935 }
2936 EXPORT_SYMBOL_GPL(snd_soc_tplg_component_remove);
2937