xref: /linux/drivers/soundwire/stream.c (revision 26ba30221c03364d6ed9910be8da4c1fd871b07b)
1 // SPDX-License-Identifier: (GPL-2.0 OR BSD-3-Clause)
2 // Copyright(c) 2015-18 Intel Corporation.
3 
4 /*
5  *  stream.c - SoundWire Bus stream operations.
6  */
7 
8 #include <linux/delay.h>
9 #include <linux/device.h>
10 #include <linux/init.h>
11 #include <linux/iopoll.h>
12 #include <linux/module.h>
13 #include <linux/slab.h>
14 #include <linux/soundwire/sdw_registers.h>
15 #include <linux/soundwire/sdw.h>
16 #include <linux/soundwire/sdw_type.h>
17 #include <linux/string_choices.h>
18 #include <sound/soc.h>
19 #include "bus.h"
20 
21 #define SDW_PORT_PREP_POLL_USEC	1000
22 
23 /*
24  * Array of supported rows and columns as per MIPI SoundWire Specification 1.1
25  *
26  * The rows are arranged as per the array index value programmed
27  * in register. The index 15 has dummy value 0 in order to fill hole.
28  */
29 int sdw_rows[SDW_FRAME_ROWS] = {48, 50, 60, 64, 75, 80, 125, 147,
30 			96, 100, 120, 128, 150, 160, 250, 0,
31 			192, 200, 240, 256, 72, 144, 90, 180};
32 EXPORT_SYMBOL(sdw_rows);
33 
34 int sdw_cols[SDW_FRAME_COLS] = {2, 4, 6, 8, 10, 12, 14, 16};
35 EXPORT_SYMBOL(sdw_cols);
36 
37 int sdw_find_col_index(int col)
38 {
39 	int i;
40 
41 	for (i = 0; i < SDW_FRAME_COLS; i++) {
42 		if (sdw_cols[i] == col)
43 			return i;
44 	}
45 
46 	pr_warn("Requested column not found, selecting lowest column no: 2\n");
47 	return 0;
48 }
49 EXPORT_SYMBOL(sdw_find_col_index);
50 
51 int sdw_find_row_index(int row)
52 {
53 	int i;
54 
55 	for (i = 0; i < SDW_FRAME_ROWS; i++) {
56 		if (sdw_rows[i] == row)
57 			return i;
58 	}
59 
60 	pr_warn("Requested row not found, selecting lowest row no: 48\n");
61 	return 0;
62 }
63 EXPORT_SYMBOL(sdw_find_row_index);
64 
65 static int _sdw_program_slave_port_params(struct sdw_bus *bus,
66 					  struct sdw_slave *slave,
67 					  struct sdw_transport_params *t_params,
68 					  enum sdw_dpn_type type)
69 {
70 	u32 addr1, addr2, addr3, addr4;
71 	int ret;
72 	u16 wbuf;
73 
74 	if (bus->params.next_bank) {
75 		addr1 = SDW_DPN_OFFSETCTRL2_B1(t_params->port_num);
76 		addr2 = SDW_DPN_BLOCKCTRL3_B1(t_params->port_num);
77 		addr3 = SDW_DPN_SAMPLECTRL2_B1(t_params->port_num);
78 		addr4 = SDW_DPN_HCTRL_B1(t_params->port_num);
79 	} else {
80 		addr1 = SDW_DPN_OFFSETCTRL2_B0(t_params->port_num);
81 		addr2 = SDW_DPN_BLOCKCTRL3_B0(t_params->port_num);
82 		addr3 = SDW_DPN_SAMPLECTRL2_B0(t_params->port_num);
83 		addr4 = SDW_DPN_HCTRL_B0(t_params->port_num);
84 	}
85 
86 	/* Program DPN_OffsetCtrl2 registers */
87 	ret = sdw_write_no_pm(slave, addr1, t_params->offset2);
88 	if (ret < 0) {
89 		dev_err(bus->dev, "DPN_OffsetCtrl2 register write failed\n");
90 		return ret;
91 	}
92 
93 	/* DP0 does not implement BlockCtrl3 */
94 	if (t_params->port_num) {
95 		/* Program DPN_BlockCtrl3 register */
96 		ret = sdw_write_no_pm(slave, addr2, t_params->blk_pkg_mode);
97 		if (ret < 0) {
98 			dev_err(bus->dev, "DPN_BlockCtrl3 register write failed\n");
99 			return ret;
100 		}
101 	}
102 
103 	/*
104 	 * Data ports are FULL, SIMPLE and REDUCED. This function handles
105 	 * FULL and REDUCED only and beyond this point only FULL is
106 	 * handled, so bail out if we are not FULL data port type
107 	 */
108 	if (type != SDW_DPN_FULL)
109 		return ret;
110 
111 	/* Program DPN_SampleCtrl2 register */
112 	wbuf = FIELD_GET(SDW_DPN_SAMPLECTRL_HIGH, t_params->sample_interval - 1);
113 
114 	ret = sdw_write_no_pm(slave, addr3, wbuf);
115 	if (ret < 0) {
116 		dev_err(bus->dev, "DPN_SampleCtrl2 register write failed\n");
117 		return ret;
118 	}
119 
120 	/* Program DPN_HCtrl register */
121 	wbuf = FIELD_PREP(SDW_DPN_HCTRL_HSTART, t_params->hstart);
122 	wbuf |= FIELD_PREP(SDW_DPN_HCTRL_HSTOP, t_params->hstop);
123 
124 	ret = sdw_write_no_pm(slave, addr4, wbuf);
125 	if (ret < 0)
126 		dev_err(bus->dev, "DPN_HCtrl register write failed\n");
127 
128 	return ret;
129 }
130 
131 static int sdw_program_slave_port_params(struct sdw_bus *bus,
132 					 struct sdw_slave_runtime *s_rt,
133 					 struct sdw_port_runtime *p_rt)
134 {
135 	struct sdw_transport_params *t_params = &p_rt->transport_params;
136 	struct sdw_port_params *p_params = &p_rt->port_params;
137 	struct sdw_slave_prop *slave_prop = &s_rt->slave->prop;
138 	u32 addr1, addr2, addr3, addr4, addr5, addr6;
139 	enum sdw_dpn_type port_type;
140 	bool read_only_wordlength;
141 	int ret;
142 	u8 wbuf;
143 
144 	if (s_rt->slave->is_mockup_device)
145 		return 0;
146 
147 	if (t_params->port_num) {
148 		struct sdw_dpn_prop *dpn_prop;
149 
150 		dpn_prop = sdw_get_slave_dpn_prop(s_rt->slave, s_rt->direction,
151 						  t_params->port_num);
152 		if (!dpn_prop)
153 			return -EINVAL;
154 
155 		read_only_wordlength = dpn_prop->read_only_wordlength;
156 		port_type = dpn_prop->type;
157 	} else {
158 		read_only_wordlength = false;
159 		port_type = SDW_DPN_FULL;
160 	}
161 
162 	addr1 = SDW_DPN_PORTCTRL(t_params->port_num);
163 	addr2 = SDW_DPN_BLOCKCTRL1(t_params->port_num);
164 
165 	if (bus->params.next_bank) {
166 		addr3 = SDW_DPN_SAMPLECTRL1_B1(t_params->port_num);
167 		addr4 = SDW_DPN_OFFSETCTRL1_B1(t_params->port_num);
168 		addr5 = SDW_DPN_BLOCKCTRL2_B1(t_params->port_num);
169 		addr6 = SDW_DPN_LANECTRL_B1(t_params->port_num);
170 
171 	} else {
172 		addr3 = SDW_DPN_SAMPLECTRL1_B0(t_params->port_num);
173 		addr4 = SDW_DPN_OFFSETCTRL1_B0(t_params->port_num);
174 		addr5 = SDW_DPN_BLOCKCTRL2_B0(t_params->port_num);
175 		addr6 = SDW_DPN_LANECTRL_B0(t_params->port_num);
176 	}
177 
178 	/* Program DPN_PortCtrl register */
179 	wbuf = FIELD_PREP(SDW_DPN_PORTCTRL_DATAMODE, p_params->data_mode);
180 	wbuf |= FIELD_PREP(SDW_DPN_PORTCTRL_FLOWMODE, p_params->flow_mode);
181 
182 	ret = sdw_update_no_pm(s_rt->slave, addr1, 0xF, wbuf);
183 	if (ret < 0) {
184 		dev_err(&s_rt->slave->dev,
185 			"DPN_PortCtrl register write failed for port %d\n",
186 			t_params->port_num);
187 		return ret;
188 	}
189 
190 	if (!read_only_wordlength) {
191 		/* Program DPN_BlockCtrl1 register */
192 		ret = sdw_write_no_pm(s_rt->slave, addr2, (p_params->bps - 1));
193 		if (ret < 0) {
194 			dev_err(&s_rt->slave->dev,
195 				"DPN_BlockCtrl1 register write failed for port %d\n",
196 				t_params->port_num);
197 			return ret;
198 		}
199 	}
200 
201 	/* Program DPN_SampleCtrl1 register */
202 	wbuf = (t_params->sample_interval - 1) & SDW_DPN_SAMPLECTRL_LOW;
203 	ret = sdw_write_no_pm(s_rt->slave, addr3, wbuf);
204 	if (ret < 0) {
205 		dev_err(&s_rt->slave->dev,
206 			"DPN_SampleCtrl1 register write failed for port %d\n",
207 			t_params->port_num);
208 		return ret;
209 	}
210 
211 	/* Program DPN_OffsetCtrl1 registers */
212 	ret = sdw_write_no_pm(s_rt->slave, addr4, t_params->offset1);
213 	if (ret < 0) {
214 		dev_err(&s_rt->slave->dev,
215 			"DPN_OffsetCtrl1 register write failed for port %d\n",
216 			t_params->port_num);
217 		return ret;
218 	}
219 
220 	/* Program DPN_BlockCtrl2 register*/
221 	if (t_params->blk_grp_ctrl_valid) {
222 		ret = sdw_write_no_pm(s_rt->slave, addr5, t_params->blk_grp_ctrl);
223 		if (ret < 0) {
224 			dev_err(&s_rt->slave->dev,
225 				"DPN_BlockCtrl2 reg write failed for port %d\n",
226 				t_params->port_num);
227 			return ret;
228 		}
229 	}
230 
231 	/* program DPN_LaneCtrl register */
232 	if (slave_prop->lane_control_support) {
233 		ret = sdw_write_no_pm(s_rt->slave, addr6, t_params->lane_ctrl);
234 		if (ret < 0) {
235 			dev_err(&s_rt->slave->dev,
236 				"DPN_LaneCtrl register write failed for port %d\n",
237 				t_params->port_num);
238 			return ret;
239 		}
240 	}
241 
242 	if (port_type != SDW_DPN_SIMPLE) {
243 		ret = _sdw_program_slave_port_params(bus, s_rt->slave,
244 						     t_params, port_type);
245 		if (ret < 0)
246 			dev_err(&s_rt->slave->dev,
247 				"Transport reg write failed for port: %d\n",
248 				t_params->port_num);
249 	}
250 
251 	return ret;
252 }
253 
254 static int sdw_program_master_port_params(struct sdw_bus *bus,
255 					  struct sdw_port_runtime *p_rt)
256 {
257 	int ret;
258 
259 	/*
260 	 * we need to set transport and port parameters for the port.
261 	 * Transport parameters refers to the sample interval, offsets and
262 	 * hstart/stop etc of the data. Port parameters refers to word
263 	 * length, flow mode etc of the port
264 	 */
265 	ret = bus->port_ops->dpn_set_port_transport_params(bus,
266 					&p_rt->transport_params,
267 					bus->params.next_bank);
268 	if (ret < 0)
269 		return ret;
270 
271 	return bus->port_ops->dpn_set_port_params(bus,
272 						  &p_rt->port_params,
273 						  bus->params.next_bank);
274 }
275 
276 /**
277  * sdw_program_port_params() - Programs transport parameters of Master(s)
278  * and Slave(s)
279  *
280  * @m_rt: Master stream runtime
281  */
282 static int sdw_program_port_params(struct sdw_master_runtime *m_rt)
283 {
284 	struct sdw_slave_runtime *s_rt;
285 	struct sdw_bus *bus = m_rt->bus;
286 	struct sdw_port_runtime *p_rt;
287 	int ret = 0;
288 
289 	/* Program transport & port parameters for Slave(s) */
290 	list_for_each_entry(s_rt, &m_rt->slave_rt_list, m_rt_node) {
291 		list_for_each_entry(p_rt, &s_rt->port_list, port_node) {
292 			ret = sdw_program_slave_port_params(bus, s_rt, p_rt);
293 			if (ret < 0)
294 				return ret;
295 		}
296 	}
297 
298 	/* Program transport & port parameters for Master(s) */
299 	list_for_each_entry(p_rt, &m_rt->port_list, port_node) {
300 		ret = sdw_program_master_port_params(bus, p_rt);
301 		if (ret < 0)
302 			return ret;
303 	}
304 
305 	return 0;
306 }
307 
308 /**
309  * sdw_enable_disable_slave_ports: Enable/disable slave data port
310  *
311  * @bus: bus instance
312  * @s_rt: slave runtime
313  * @p_rt: port runtime
314  * @en: enable or disable operation
315  *
316  * This function only sets the enable/disable bits in the relevant bank, the
317  * actual enable/disable is done with a bank switch
318  */
319 static int sdw_enable_disable_slave_ports(struct sdw_bus *bus,
320 					  struct sdw_slave_runtime *s_rt,
321 					  struct sdw_port_runtime *p_rt,
322 					  bool en)
323 {
324 	struct sdw_transport_params *t_params = &p_rt->transport_params;
325 	u32 addr;
326 	int ret;
327 
328 	if (bus->params.next_bank)
329 		addr = SDW_DPN_CHANNELEN_B1(p_rt->num);
330 	else
331 		addr = SDW_DPN_CHANNELEN_B0(p_rt->num);
332 
333 	/*
334 	 * Since bus doesn't support sharing a port across two streams,
335 	 * it is safe to reset this register
336 	 */
337 	if (en)
338 		ret = sdw_write_no_pm(s_rt->slave, addr, p_rt->ch_mask);
339 	else
340 		ret = sdw_write_no_pm(s_rt->slave, addr, 0x0);
341 
342 	if (ret < 0)
343 		dev_err(&s_rt->slave->dev,
344 			"Slave chn_en reg write failed:%d port:%d\n",
345 			ret, t_params->port_num);
346 
347 	return ret;
348 }
349 
350 static int sdw_enable_disable_master_ports(struct sdw_master_runtime *m_rt,
351 					   struct sdw_port_runtime *p_rt,
352 					   bool en)
353 {
354 	struct sdw_transport_params *t_params = &p_rt->transport_params;
355 	struct sdw_bus *bus = m_rt->bus;
356 	struct sdw_enable_ch enable_ch;
357 	int ret;
358 
359 	enable_ch.port_num = p_rt->num;
360 	enable_ch.ch_mask = p_rt->ch_mask;
361 	enable_ch.enable = en;
362 
363 	/* Perform Master port channel(s) enable/disable */
364 	if (bus->port_ops->dpn_port_enable_ch) {
365 		ret = bus->port_ops->dpn_port_enable_ch(bus,
366 							&enable_ch,
367 							bus->params.next_bank);
368 		if (ret < 0) {
369 			dev_err(bus->dev,
370 				"Master chn_en write failed:%d port:%d\n",
371 				ret, t_params->port_num);
372 			return ret;
373 		}
374 	} else {
375 		dev_err(bus->dev,
376 			"dpn_port_enable_ch not supported, %s failed\n",
377 			str_enable_disable(en));
378 		return -EINVAL;
379 	}
380 
381 	return 0;
382 }
383 
384 /**
385  * sdw_enable_disable_ports() - Enable/disable port(s) for Master and
386  * Slave(s)
387  *
388  * @m_rt: Master stream runtime
389  * @en: mode (enable/disable)
390  */
391 static int sdw_enable_disable_ports(struct sdw_master_runtime *m_rt, bool en)
392 {
393 	struct sdw_port_runtime *s_port, *m_port;
394 	struct sdw_slave_runtime *s_rt;
395 	int ret = 0;
396 
397 	/* Enable/Disable Slave port(s) */
398 	list_for_each_entry(s_rt, &m_rt->slave_rt_list, m_rt_node) {
399 		list_for_each_entry(s_port, &s_rt->port_list, port_node) {
400 			ret = sdw_enable_disable_slave_ports(m_rt->bus, s_rt,
401 							     s_port, en);
402 			if (ret < 0)
403 				return ret;
404 		}
405 	}
406 
407 	/* Enable/Disable Master port(s) */
408 	list_for_each_entry(m_port, &m_rt->port_list, port_node) {
409 		ret = sdw_enable_disable_master_ports(m_rt, m_port, en);
410 		if (ret < 0)
411 			return ret;
412 	}
413 
414 	return 0;
415 }
416 
417 static int sdw_do_port_prep(struct sdw_slave_runtime *s_rt,
418 			    struct sdw_prepare_ch prep_ch,
419 			    enum sdw_port_prep_ops cmd)
420 {
421 	int ret = 0;
422 	struct sdw_slave *slave = s_rt->slave;
423 
424 	mutex_lock(&slave->sdw_dev_lock);
425 
426 	if (slave->probed) {
427 		struct device *dev = &slave->dev;
428 		struct sdw_driver *drv = drv_to_sdw_driver(dev->driver);
429 
430 		if (drv->ops && drv->ops->port_prep) {
431 			ret = drv->ops->port_prep(slave, &prep_ch, cmd);
432 			if (ret < 0)
433 				dev_err(dev, "Slave Port Prep cmd %d failed: %d\n",
434 					cmd, ret);
435 		}
436 	}
437 
438 	mutex_unlock(&slave->sdw_dev_lock);
439 
440 	return ret;
441 }
442 
443 static int sdw_prep_deprep_slave_ports(struct sdw_bus *bus,
444 				       struct sdw_slave_runtime *s_rt,
445 				       struct sdw_port_runtime *p_rt,
446 				       bool prep)
447 {
448 	struct sdw_dpn_prop *dpn_prop;
449 	struct sdw_prepare_ch prep_ch;
450 	u32 imp_def_interrupts;
451 	bool simple_ch_prep_sm;
452 	u32 ch_prep_timeout;
453 	bool intr = false;
454 	int ret = 0, val;
455 	u32 addr;
456 
457 	prep_ch.num = p_rt->num;
458 	prep_ch.ch_mask = p_rt->ch_mask;
459 
460 	if (p_rt->num) {
461 		dpn_prop = sdw_get_slave_dpn_prop(s_rt->slave, s_rt->direction, prep_ch.num);
462 		if (!dpn_prop) {
463 			dev_err(bus->dev,
464 				"Slave Port:%d properties not found\n", prep_ch.num);
465 			return -EINVAL;
466 		}
467 
468 		imp_def_interrupts = dpn_prop->imp_def_interrupts;
469 		simple_ch_prep_sm = dpn_prop->simple_ch_prep_sm;
470 		ch_prep_timeout = dpn_prop->ch_prep_timeout;
471 	} else {
472 		struct sdw_dp0_prop *dp0_prop = s_rt->slave->prop.dp0_prop;
473 
474 		if (!dp0_prop) {
475 			dev_err(bus->dev,
476 				"Slave DP0 properties not found\n");
477 			return -EINVAL;
478 		}
479 		imp_def_interrupts = dp0_prop->imp_def_interrupts;
480 		simple_ch_prep_sm =  dp0_prop->simple_ch_prep_sm;
481 		ch_prep_timeout = dp0_prop->ch_prep_timeout;
482 	}
483 
484 	prep_ch.prepare = prep;
485 
486 	prep_ch.bank = bus->params.next_bank;
487 
488 	if (imp_def_interrupts || !simple_ch_prep_sm ||
489 	    bus->params.s_data_mode != SDW_PORT_DATA_MODE_NORMAL)
490 		intr = true;
491 
492 	/*
493 	 * Enable interrupt before Port prepare.
494 	 * For Port de-prepare, it is assumed that port
495 	 * was prepared earlier
496 	 */
497 	if (prep && intr) {
498 		ret = sdw_configure_dpn_intr(s_rt->slave, p_rt->num, prep,
499 					     imp_def_interrupts);
500 		if (ret < 0)
501 			return ret;
502 	}
503 
504 	/* Inform slave about the impending port prepare */
505 	sdw_do_port_prep(s_rt, prep_ch, prep ? SDW_OPS_PORT_PRE_PREP : SDW_OPS_PORT_PRE_DEPREP);
506 
507 	/* Prepare Slave port implementing CP_SM */
508 	if (!simple_ch_prep_sm) {
509 		addr = SDW_DPN_PREPARECTRL(p_rt->num);
510 
511 		if (prep)
512 			ret = sdw_write_no_pm(s_rt->slave, addr, p_rt->ch_mask);
513 		else
514 			ret = sdw_write_no_pm(s_rt->slave, addr, 0x0);
515 
516 		if (ret < 0) {
517 			dev_err(&s_rt->slave->dev,
518 				"Slave prep_ctrl reg write failed\n");
519 			return ret;
520 		}
521 
522 		/*
523 		 * Poll for NOT_PREPARED==0. Cannot use the interrupt because
524 		 * this code holds bus_lock which blocks interrupt handling.
525 		 */
526 		ret = read_poll_timeout(sdw_read_no_pm, val,
527 					(val < 0) || ((val & p_rt->ch_mask) == 0),
528 					SDW_PORT_PREP_POLL_USEC, ch_prep_timeout * USEC_PER_MSEC,
529 					false, s_rt->slave, SDW_DPN_PREPARESTATUS(p_rt->num));
530 		if (ret || (val < 0)) {
531 			if (val < 0)
532 				ret = val;
533 
534 			dev_err(&s_rt->slave->dev,
535 				"Chn prep failed for port %d: %d\n", prep_ch.num, ret);
536 			return ret;
537 		}
538 	}
539 
540 	/* Inform slaves about ports prepared */
541 	sdw_do_port_prep(s_rt, prep_ch, prep ? SDW_OPS_PORT_POST_PREP : SDW_OPS_PORT_POST_DEPREP);
542 
543 	/* Disable interrupt after Port de-prepare */
544 	if (!prep && intr)
545 		ret = sdw_configure_dpn_intr(s_rt->slave, p_rt->num, prep,
546 					     imp_def_interrupts);
547 
548 	return ret;
549 }
550 
551 static int sdw_prep_deprep_master_ports(struct sdw_master_runtime *m_rt,
552 					struct sdw_port_runtime *p_rt,
553 					bool prep)
554 {
555 	struct sdw_transport_params *t_params = &p_rt->transport_params;
556 	struct sdw_bus *bus = m_rt->bus;
557 	const struct sdw_master_port_ops *ops = bus->port_ops;
558 	struct sdw_prepare_ch prep_ch;
559 	int ret = 0;
560 
561 	prep_ch.num = p_rt->num;
562 	prep_ch.ch_mask = p_rt->ch_mask;
563 	prep_ch.prepare = prep; /* Prepare/De-prepare */
564 	prep_ch.bank = bus->params.next_bank;
565 
566 	/* Pre-prepare/Pre-deprepare port(s) */
567 	if (ops->dpn_port_prep) {
568 		ret = ops->dpn_port_prep(bus, &prep_ch);
569 		if (ret < 0) {
570 			dev_err(bus->dev, "Port prepare failed for port:%d\n",
571 				t_params->port_num);
572 			return ret;
573 		}
574 	}
575 
576 	return ret;
577 }
578 
579 /**
580  * sdw_prep_deprep_ports() - Prepare/De-prepare port(s) for Master(s) and
581  * Slave(s)
582  *
583  * @m_rt: Master runtime handle
584  * @prep: Prepare or De-prepare
585  */
586 static int sdw_prep_deprep_ports(struct sdw_master_runtime *m_rt, bool prep)
587 {
588 	struct sdw_slave_runtime *s_rt;
589 	struct sdw_port_runtime *p_rt;
590 	int ret = 0;
591 
592 	/* Prepare/De-prepare Slave port(s) */
593 	list_for_each_entry(s_rt, &m_rt->slave_rt_list, m_rt_node) {
594 		list_for_each_entry(p_rt, &s_rt->port_list, port_node) {
595 			ret = sdw_prep_deprep_slave_ports(m_rt->bus, s_rt,
596 							  p_rt, prep);
597 			if (ret < 0)
598 				return ret;
599 		}
600 	}
601 
602 	/* Prepare/De-prepare Master port(s) */
603 	list_for_each_entry(p_rt, &m_rt->port_list, port_node) {
604 		ret = sdw_prep_deprep_master_ports(m_rt, p_rt, prep);
605 		if (ret < 0)
606 			return ret;
607 	}
608 
609 	return ret;
610 }
611 
612 /**
613  * sdw_notify_config() - Notify bus configuration
614  *
615  * @m_rt: Master runtime handle
616  *
617  * This function notifies the Master(s) and Slave(s) of the
618  * new bus configuration.
619  */
620 static int sdw_notify_config(struct sdw_master_runtime *m_rt)
621 {
622 	struct sdw_slave_runtime *s_rt;
623 	struct sdw_bus *bus = m_rt->bus;
624 	struct sdw_slave *slave;
625 	int ret;
626 
627 	if (bus->ops->set_bus_conf) {
628 		ret = bus->ops->set_bus_conf(bus, &bus->params);
629 		if (ret < 0)
630 			return ret;
631 	}
632 
633 	list_for_each_entry(s_rt, &m_rt->slave_rt_list, m_rt_node) {
634 		slave = s_rt->slave;
635 
636 		mutex_lock(&slave->sdw_dev_lock);
637 
638 		if (slave->probed) {
639 			struct device *dev = &slave->dev;
640 			struct sdw_driver *drv = drv_to_sdw_driver(dev->driver);
641 
642 			if (drv->ops && drv->ops->bus_config) {
643 				ret = drv->ops->bus_config(slave, &bus->params);
644 				if (ret < 0) {
645 					dev_err(dev, "Notify Slave: %d failed\n",
646 						slave->dev_num);
647 					mutex_unlock(&slave->sdw_dev_lock);
648 					return ret;
649 				}
650 			}
651 		}
652 
653 		mutex_unlock(&slave->sdw_dev_lock);
654 	}
655 
656 	return 0;
657 }
658 
659 /**
660  * sdw_program_params() - Program transport and port parameters for Master(s)
661  * and Slave(s)
662  *
663  * @bus: SDW bus instance
664  * @prepare: true if sdw_program_params() is called by _prepare.
665  */
666 static int sdw_program_params(struct sdw_bus *bus, bool prepare)
667 {
668 	struct sdw_master_runtime *m_rt;
669 	struct sdw_slave *slave;
670 	int ret = 0;
671 	u32 addr1;
672 
673 	/* Check if all Peripherals comply with SDCA */
674 	list_for_each_entry(slave, &bus->slaves, node) {
675 		if (!slave->dev_num_sticky)
676 			continue;
677 		if (!is_clock_scaling_supported_by_slave(slave)) {
678 			dev_dbg(&slave->dev, "The Peripheral doesn't comply with SDCA\n");
679 			goto manager_runtime;
680 		}
681 	}
682 
683 	if (bus->params.next_bank)
684 		addr1 = SDW_SCP_BUSCLOCK_SCALE_B1;
685 	else
686 		addr1 = SDW_SCP_BUSCLOCK_SCALE_B0;
687 
688 	/* Program SDW_SCP_BUSCLOCK_SCALE if all Peripherals comply with SDCA */
689 	list_for_each_entry(slave, &bus->slaves, node) {
690 		int scale_index;
691 		u8 base;
692 
693 		if (!slave->dev_num_sticky)
694 			continue;
695 		scale_index = sdw_slave_get_scale_index(slave, &base);
696 		if (scale_index < 0)
697 			return scale_index;
698 
699 		/* Skip the unattached Peripherals */
700 		if (!completion_done(&slave->enumeration_complete)) {
701 			dev_warn(&slave->dev,
702 				 "Not enumerated, skip programming BUSCLOCK_SCALE\n");
703 			continue;
704 		}
705 
706 		ret = sdw_write_no_pm(slave, addr1, scale_index);
707 		if (ret < 0) {
708 			dev_err(&slave->dev, "SDW_SCP_BUSCLOCK_SCALE register write failed\n");
709 			return ret;
710 		}
711 	}
712 
713 manager_runtime:
714 	list_for_each_entry(m_rt, &bus->m_rt_list, bus_node) {
715 
716 		/*
717 		 * this loop walks through all master runtimes for a
718 		 * bus, but the ports can only be configured while
719 		 * explicitly preparing a stream or handling an
720 		 * already-prepared stream otherwise.
721 		 */
722 		if (!prepare &&
723 		    m_rt->stream->state == SDW_STREAM_CONFIGURED)
724 			continue;
725 
726 		ret = sdw_program_port_params(m_rt);
727 		if (ret < 0) {
728 			dev_err(bus->dev,
729 				"Program transport params failed: %d\n", ret);
730 			return ret;
731 		}
732 
733 		ret = sdw_notify_config(m_rt);
734 		if (ret < 0) {
735 			dev_err(bus->dev,
736 				"Notify bus config failed: %d\n", ret);
737 			return ret;
738 		}
739 
740 		/* Enable port(s) on alternate bank for all active streams */
741 		if (m_rt->stream->state != SDW_STREAM_ENABLED)
742 			continue;
743 
744 		ret = sdw_enable_disable_ports(m_rt, true);
745 		if (ret < 0) {
746 			dev_err(bus->dev, "Enable channel failed: %d\n", ret);
747 			return ret;
748 		}
749 	}
750 
751 	return ret;
752 }
753 
754 static int sdw_bank_switch(struct sdw_bus *bus, int m_rt_count)
755 {
756 	int col_index, row_index;
757 	bool multi_link;
758 	struct sdw_msg *wr_msg;
759 	u8 *wbuf;
760 	int ret;
761 	u16 addr;
762 
763 	wr_msg = kzalloc_obj(*wr_msg);
764 	if (!wr_msg)
765 		return -ENOMEM;
766 
767 	wbuf = kzalloc_obj(*wbuf);
768 	if (!wbuf) {
769 		ret = -ENOMEM;
770 		goto error_1;
771 	}
772 
773 	/* Get row and column index to program register */
774 	col_index = sdw_find_col_index(bus->params.col);
775 	row_index = sdw_find_row_index(bus->params.row);
776 	wbuf[0] = col_index | (row_index << 3);
777 
778 	if (bus->params.next_bank)
779 		addr = SDW_SCP_FRAMECTRL_B1;
780 	else
781 		addr = SDW_SCP_FRAMECTRL_B0;
782 
783 	sdw_fill_msg(wr_msg, NULL, addr, 1, SDW_BROADCAST_DEV_NUM,
784 		     SDW_MSG_FLAG_WRITE, wbuf);
785 	wr_msg->ssp_sync = true;
786 
787 	/*
788 	 * Set the multi_link flag only when both the hardware supports
789 	 * and hardware-based sync is required
790 	 */
791 	multi_link = bus->multi_link && (m_rt_count >= bus->hw_sync_min_links);
792 
793 	if (multi_link)
794 		ret = sdw_transfer_defer(bus, wr_msg);
795 	else
796 		ret = sdw_transfer(bus, wr_msg);
797 
798 	if (ret < 0 && ret != -ENODATA) {
799 		dev_err(bus->dev, "Slave frame_ctrl reg write failed\n");
800 		goto error;
801 	}
802 
803 	if (!multi_link) {
804 		kfree(wbuf);
805 		kfree(wr_msg);
806 		bus->defer_msg.msg = NULL;
807 		bus->params.curr_bank = !bus->params.curr_bank;
808 		bus->params.next_bank = !bus->params.next_bank;
809 	}
810 
811 	return 0;
812 
813 error:
814 	kfree(wbuf);
815 error_1:
816 	kfree(wr_msg);
817 	bus->defer_msg.msg = NULL;
818 	return ret;
819 }
820 
821 /**
822  * sdw_ml_sync_bank_switch: Multilink register bank switch
823  *
824  * @bus: SDW bus instance
825  * @multi_link: whether this is a multi-link stream with hardware-based sync
826  *
827  * Caller function should free the buffers on error
828  */
829 static int sdw_ml_sync_bank_switch(struct sdw_bus *bus, bool multi_link)
830 {
831 	unsigned long time_left;
832 
833 	if (!multi_link)
834 		return 0;
835 
836 	/* Wait for completion of transfer */
837 	time_left = wait_for_completion_timeout(&bus->defer_msg.complete,
838 						bus->bank_switch_timeout);
839 
840 	if (!time_left) {
841 		dev_err(bus->dev, "Controller Timed out on bank switch\n");
842 		return -ETIMEDOUT;
843 	}
844 
845 	bus->params.curr_bank = !bus->params.curr_bank;
846 	bus->params.next_bank = !bus->params.next_bank;
847 
848 	if (bus->defer_msg.msg) {
849 		kfree(bus->defer_msg.msg->buf);
850 		kfree(bus->defer_msg.msg);
851 		bus->defer_msg.msg = NULL;
852 	}
853 
854 	return 0;
855 }
856 
857 static int do_bank_switch(struct sdw_stream_runtime *stream)
858 {
859 	struct sdw_master_runtime *m_rt;
860 	const struct sdw_master_ops *ops;
861 	struct sdw_bus *bus;
862 	bool multi_link = false;
863 	int m_rt_count;
864 	int ret = 0;
865 
866 	m_rt_count = stream->m_rt_count;
867 
868 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
869 		bus = m_rt->bus;
870 		ops = bus->ops;
871 
872 		if (bus->multi_link && m_rt_count >= bus->hw_sync_min_links) {
873 			multi_link = true;
874 			mutex_lock(&bus->msg_lock);
875 		}
876 
877 		/* Pre-bank switch */
878 		if (ops->pre_bank_switch) {
879 			ret = ops->pre_bank_switch(bus);
880 			if (ret < 0) {
881 				dev_err(bus->dev,
882 					"Pre bank switch op failed: %d\n", ret);
883 				goto msg_unlock;
884 			}
885 		}
886 
887 		/*
888 		 * Perform Bank switch operation.
889 		 * For multi link cases, the actual bank switch is
890 		 * synchronized across all Masters and happens later as a
891 		 * part of post_bank_switch ops.
892 		 */
893 		ret = sdw_bank_switch(bus, m_rt_count);
894 		if (ret < 0) {
895 			dev_err(bus->dev, "Bank switch failed: %d\n", ret);
896 			goto error;
897 		}
898 	}
899 
900 	/*
901 	 * For multi link cases, it is expected that the bank switch is
902 	 * triggered by the post_bank_switch for the first Master in the list
903 	 * and for the other Masters the post_bank_switch() should return doing
904 	 * nothing.
905 	 */
906 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
907 		bus = m_rt->bus;
908 		ops = bus->ops;
909 
910 		/* Post-bank switch */
911 		if (ops->post_bank_switch) {
912 			ret = ops->post_bank_switch(bus);
913 			if (ret < 0) {
914 				dev_err(bus->dev,
915 					"Post bank switch op failed: %d\n",
916 					ret);
917 				goto error;
918 			}
919 		} else if (multi_link) {
920 			dev_err(bus->dev,
921 				"Post bank switch ops not implemented\n");
922 			ret = -EINVAL;
923 			goto error;
924 		}
925 
926 		/* Set the bank switch timeout to default, if not set */
927 		if (!bus->bank_switch_timeout)
928 			bus->bank_switch_timeout = DEFAULT_BANK_SWITCH_TIMEOUT;
929 
930 		/* Check if bank switch was successful */
931 		ret = sdw_ml_sync_bank_switch(bus, multi_link);
932 		if (ret < 0) {
933 			dev_err(bus->dev,
934 				"multi link bank switch failed: %d\n", ret);
935 			goto error;
936 		}
937 
938 		if (multi_link)
939 			mutex_unlock(&bus->msg_lock);
940 	}
941 
942 	return ret;
943 
944 error:
945 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
946 		bus = m_rt->bus;
947 		if (bus->defer_msg.msg) {
948 			kfree(bus->defer_msg.msg->buf);
949 			kfree(bus->defer_msg.msg);
950 			bus->defer_msg.msg = NULL;
951 		}
952 	}
953 
954 msg_unlock:
955 
956 	if (multi_link) {
957 		list_for_each_entry(m_rt, &stream->master_list, stream_node) {
958 			bus = m_rt->bus;
959 			if (mutex_is_locked(&bus->msg_lock))
960 				mutex_unlock(&bus->msg_lock);
961 		}
962 	}
963 
964 	return ret;
965 }
966 
967 static struct sdw_port_runtime *sdw_port_alloc(struct list_head *port_list)
968 {
969 	struct sdw_port_runtime *p_rt;
970 
971 	p_rt = kzalloc_obj(*p_rt);
972 	if (!p_rt)
973 		return NULL;
974 
975 	list_add_tail(&p_rt->port_node, port_list);
976 
977 	return p_rt;
978 }
979 
980 static int sdw_port_config(struct sdw_port_runtime *p_rt,
981 			   const struct sdw_port_config *port_config,
982 			   int port_index)
983 {
984 	p_rt->ch_mask = port_config[port_index].ch_mask;
985 	p_rt->num = port_config[port_index].num;
986 
987 	/*
988 	 * TODO: Check port capabilities for requested configuration
989 	 */
990 
991 	return 0;
992 }
993 
994 static void sdw_port_free(struct sdw_port_runtime *p_rt)
995 {
996 	list_del(&p_rt->port_node);
997 	kfree(p_rt);
998 }
999 
1000 static bool sdw_slave_port_allocated(struct sdw_slave_runtime *s_rt)
1001 {
1002 	return !list_empty(&s_rt->port_list);
1003 }
1004 
1005 static void sdw_slave_port_free(struct sdw_slave *slave,
1006 				struct sdw_stream_runtime *stream)
1007 {
1008 	struct sdw_port_runtime *p_rt, *_p_rt;
1009 	struct sdw_master_runtime *m_rt;
1010 	struct sdw_slave_runtime *s_rt;
1011 
1012 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1013 		list_for_each_entry(s_rt, &m_rt->slave_rt_list, m_rt_node) {
1014 			if (s_rt->slave != slave)
1015 				continue;
1016 
1017 			list_for_each_entry_safe(p_rt, _p_rt,
1018 						 &s_rt->port_list, port_node) {
1019 				sdw_port_free(p_rt);
1020 			}
1021 		}
1022 	}
1023 }
1024 
1025 static int sdw_slave_port_alloc(struct sdw_slave *slave,
1026 				struct sdw_slave_runtime *s_rt,
1027 				unsigned int num_config)
1028 {
1029 	struct sdw_port_runtime *p_rt;
1030 	int i;
1031 
1032 	/* Iterate for number of ports to perform initialization */
1033 	for (i = 0; i < num_config; i++) {
1034 		p_rt = sdw_port_alloc(&s_rt->port_list);
1035 		if (!p_rt)
1036 			return -ENOMEM;
1037 	}
1038 
1039 	return 0;
1040 }
1041 
1042 static int sdw_slave_port_is_valid_range(struct device *dev, int num)
1043 {
1044 	if (!SDW_VALID_PORT_RANGE(num)) {
1045 		dev_err(dev, "SoundWire: Invalid port number :%d\n", num);
1046 		return -EINVAL;
1047 	}
1048 
1049 	return 0;
1050 }
1051 
1052 static int sdw_slave_port_config(struct sdw_slave *slave,
1053 				 struct sdw_slave_runtime *s_rt,
1054 				 const struct sdw_port_config *port_config,
1055 				 bool is_bpt_stream)
1056 {
1057 	struct sdw_port_runtime *p_rt;
1058 	int ret;
1059 	int i;
1060 
1061 	i = 0;
1062 	list_for_each_entry(p_rt, &s_rt->port_list, port_node) {
1063 		/*
1064 		 * TODO: Check valid port range as defined by DisCo/
1065 		 * slave
1066 		 */
1067 		if (!is_bpt_stream) {
1068 			ret = sdw_slave_port_is_valid_range(&slave->dev, port_config[i].num);
1069 			if (ret < 0)
1070 				return ret;
1071 		} else if (port_config[i].num) {
1072 			return -EINVAL;
1073 		}
1074 
1075 		ret = sdw_port_config(p_rt, port_config, i);
1076 		if (ret < 0)
1077 			return ret;
1078 		i++;
1079 	}
1080 
1081 	return 0;
1082 }
1083 
1084 static bool sdw_master_port_allocated(struct sdw_master_runtime *m_rt)
1085 {
1086 	return !list_empty(&m_rt->port_list);
1087 }
1088 
1089 static void sdw_master_port_free(struct sdw_master_runtime *m_rt)
1090 {
1091 	struct sdw_port_runtime *p_rt, *_p_rt;
1092 
1093 	list_for_each_entry_safe(p_rt, _p_rt, &m_rt->port_list, port_node) {
1094 		sdw_port_free(p_rt);
1095 	}
1096 }
1097 
1098 static int sdw_master_port_alloc(struct sdw_master_runtime *m_rt,
1099 				 unsigned int num_ports)
1100 {
1101 	struct sdw_port_runtime *p_rt;
1102 	int i;
1103 
1104 	/* Iterate for number of ports to perform initialization */
1105 	for (i = 0; i < num_ports; i++) {
1106 		p_rt = sdw_port_alloc(&m_rt->port_list);
1107 		if (!p_rt)
1108 			return -ENOMEM;
1109 	}
1110 
1111 	return 0;
1112 }
1113 
1114 static int sdw_master_port_config(struct sdw_master_runtime *m_rt,
1115 				  const struct sdw_port_config *port_config)
1116 {
1117 	struct sdw_port_runtime *p_rt;
1118 	int ret;
1119 	int i;
1120 
1121 	i = 0;
1122 	list_for_each_entry(p_rt, &m_rt->port_list, port_node) {
1123 		ret = sdw_port_config(p_rt, port_config, i);
1124 		if (ret < 0)
1125 			return ret;
1126 		i++;
1127 	}
1128 
1129 	return 0;
1130 }
1131 
1132 /**
1133  * sdw_slave_rt_alloc() - Allocate a Slave runtime handle.
1134  *
1135  * @slave: Slave handle
1136  * @m_rt: Master runtime handle
1137  *
1138  * This function is to be called with bus_lock held.
1139  */
1140 static struct sdw_slave_runtime
1141 *sdw_slave_rt_alloc(struct sdw_slave *slave,
1142 		    struct sdw_master_runtime *m_rt)
1143 {
1144 	struct sdw_slave_runtime *s_rt;
1145 
1146 	s_rt = kzalloc_obj(*s_rt);
1147 	if (!s_rt)
1148 		return NULL;
1149 
1150 	INIT_LIST_HEAD(&s_rt->port_list);
1151 	s_rt->slave = slave;
1152 
1153 	list_add_tail(&s_rt->m_rt_node, &m_rt->slave_rt_list);
1154 
1155 	return s_rt;
1156 }
1157 
1158 /**
1159  * sdw_slave_rt_config() - Configure a Slave runtime handle.
1160  *
1161  * @s_rt: Slave runtime handle
1162  * @stream_config: Stream configuration
1163  *
1164  * This function is to be called with bus_lock held.
1165  */
1166 static int sdw_slave_rt_config(struct sdw_slave_runtime *s_rt,
1167 			       struct sdw_stream_config *stream_config)
1168 {
1169 	s_rt->ch_count = stream_config->ch_count;
1170 	s_rt->direction = stream_config->direction;
1171 
1172 	return 0;
1173 }
1174 
1175 static struct sdw_slave_runtime *sdw_slave_rt_find(struct sdw_slave *slave,
1176 						   struct sdw_stream_runtime *stream)
1177 {
1178 	struct sdw_slave_runtime *s_rt, *_s_rt;
1179 	struct sdw_master_runtime *m_rt;
1180 
1181 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1182 		/* Retrieve Slave runtime handle */
1183 		list_for_each_entry_safe(s_rt, _s_rt,
1184 					 &m_rt->slave_rt_list, m_rt_node) {
1185 			if (s_rt->slave == slave)
1186 				return s_rt;
1187 		}
1188 	}
1189 	return NULL;
1190 }
1191 
1192 /**
1193  * sdw_slave_rt_free() - Free Slave(s) runtime handle
1194  *
1195  * @slave: Slave handle.
1196  * @stream: Stream runtime handle.
1197  *
1198  * This function is to be called with bus_lock held.
1199  */
1200 static void sdw_slave_rt_free(struct sdw_slave *slave,
1201 			      struct sdw_stream_runtime *stream)
1202 {
1203 	struct sdw_slave_runtime *s_rt;
1204 
1205 	s_rt = sdw_slave_rt_find(slave, stream);
1206 	if (s_rt) {
1207 		list_del(&s_rt->m_rt_node);
1208 		kfree(s_rt);
1209 	}
1210 }
1211 
1212 static struct sdw_master_runtime
1213 *sdw_master_rt_find(struct sdw_bus *bus,
1214 		    struct sdw_stream_runtime *stream)
1215 {
1216 	struct sdw_master_runtime *m_rt;
1217 
1218 	/* Retrieve Bus handle if already available */
1219 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1220 		if (m_rt->bus == bus)
1221 			return m_rt;
1222 	}
1223 
1224 	return NULL;
1225 }
1226 
1227 /**
1228  * sdw_master_rt_alloc() - Allocates a Master runtime handle
1229  *
1230  * @bus: SDW bus instance
1231  * @stream: Stream runtime handle.
1232  *
1233  * This function is to be called with bus_lock held.
1234  */
1235 static struct sdw_master_runtime
1236 *sdw_master_rt_alloc(struct sdw_bus *bus,
1237 		     struct sdw_stream_runtime *stream)
1238 {
1239 	struct sdw_master_runtime *m_rt, *walk_m_rt;
1240 	struct list_head *insert_after;
1241 
1242 	if (stream->type == SDW_STREAM_BPT) {
1243 		if (bus->stream_refcount > 0 || bus->bpt_stream_refcount > 0) {
1244 			dev_err(bus->dev, "%s: %d/%d audio/BPT stream already allocated\n",
1245 				__func__, bus->stream_refcount, bus->bpt_stream_refcount);
1246 			return ERR_PTR(-EBUSY);
1247 		}
1248 	} else {
1249 		if (bus->bpt_stream_refcount > 0) {
1250 			dev_err(bus->dev, "%s: BPT stream already allocated\n",
1251 				__func__);
1252 			return ERR_PTR(-EAGAIN);
1253 		}
1254 	}
1255 
1256 	m_rt = kzalloc_obj(*m_rt);
1257 	if (!m_rt)
1258 		return NULL;
1259 
1260 	/* Initialization of Master runtime handle */
1261 	INIT_LIST_HEAD(&m_rt->port_list);
1262 	INIT_LIST_HEAD(&m_rt->slave_rt_list);
1263 
1264 	/*
1265 	 * Add in order of bus id so that when taking the bus_lock
1266 	 * of multiple buses they will always be taken in the same
1267 	 * order to prevent a mutex deadlock.
1268 	 */
1269 	insert_after = &stream->master_list;
1270 	list_for_each_entry_reverse(walk_m_rt, &stream->master_list, stream_node) {
1271 		if (walk_m_rt->bus->id < bus->id) {
1272 			insert_after = &walk_m_rt->stream_node;
1273 			break;
1274 		}
1275 	}
1276 	list_add(&m_rt->stream_node, insert_after);
1277 
1278 	list_add_tail(&m_rt->bus_node, &bus->m_rt_list);
1279 
1280 	m_rt->bus = bus;
1281 	m_rt->stream = stream;
1282 
1283 	bus->stream_refcount++;
1284 	if (stream->type == SDW_STREAM_BPT)
1285 		bus->bpt_stream_refcount++;
1286 
1287 	return m_rt;
1288 }
1289 
1290 /**
1291  * sdw_master_rt_config() - Configure Master runtime handle
1292  *
1293  * @m_rt: Master runtime handle
1294  * @stream_config: Stream configuration
1295  *
1296  * This function is to be called with bus_lock held.
1297  */
1298 
1299 static int sdw_master_rt_config(struct sdw_master_runtime *m_rt,
1300 				struct sdw_stream_config *stream_config)
1301 {
1302 	m_rt->ch_count = stream_config->ch_count;
1303 	m_rt->direction = stream_config->direction;
1304 
1305 	return 0;
1306 }
1307 
1308 /**
1309  * sdw_master_rt_free() - Free Master runtime handle
1310  *
1311  * @m_rt: Master runtime node
1312  * @stream: Stream runtime handle.
1313  *
1314  * This function is to be called with bus_lock held
1315  * It frees the Master runtime handle and associated Slave(s) runtime
1316  * handle. If this is called first then sdw_slave_rt_free() will have
1317  * no effect as Slave(s) runtime handle would already be freed up.
1318  */
1319 static void sdw_master_rt_free(struct sdw_master_runtime *m_rt,
1320 			       struct sdw_stream_runtime *stream)
1321 {
1322 	struct sdw_slave_runtime *s_rt, *_s_rt;
1323 	struct sdw_bus *bus = m_rt->bus;
1324 
1325 	list_for_each_entry_safe(s_rt, _s_rt, &m_rt->slave_rt_list, m_rt_node) {
1326 		sdw_slave_port_free(s_rt->slave, stream);
1327 		sdw_slave_rt_free(s_rt->slave, stream);
1328 	}
1329 
1330 	list_del(&m_rt->stream_node);
1331 	list_del(&m_rt->bus_node);
1332 	kfree(m_rt);
1333 
1334 	if (stream->type == SDW_STREAM_BPT)
1335 		bus->bpt_stream_refcount--;
1336 	bus->stream_refcount--;
1337 }
1338 
1339 /**
1340  * sdw_config_stream() - Configure the allocated stream
1341  *
1342  * @dev: SDW device
1343  * @stream: SoundWire stream
1344  * @stream_config: Stream configuration for audio stream
1345  * @is_slave: is API called from Slave or Master
1346  *
1347  * This function is to be called with bus_lock held.
1348  */
1349 static int sdw_config_stream(struct device *dev,
1350 			     struct sdw_stream_runtime *stream,
1351 			     struct sdw_stream_config *stream_config,
1352 			     bool is_slave)
1353 {
1354 	/*
1355 	 * Update the stream rate, channel and bps based on data
1356 	 * source. For more than one data source (multilink),
1357 	 * match the rate, bps, stream type and increment number of channels.
1358 	 *
1359 	 * If rate/bps is zero, it means the values are not set, so skip
1360 	 * comparison and allow the value to be set and stored in stream
1361 	 */
1362 	if (stream->params.rate &&
1363 	    stream->params.rate != stream_config->frame_rate) {
1364 		dev_err(dev, "rate not matching, stream:%s\n", stream->name);
1365 		return -EINVAL;
1366 	}
1367 
1368 	if (stream->params.bps &&
1369 	    stream->params.bps != stream_config->bps) {
1370 		dev_err(dev, "bps not matching, stream:%s\n", stream->name);
1371 		return -EINVAL;
1372 	}
1373 
1374 	stream->type = stream_config->type;
1375 	stream->params.rate = stream_config->frame_rate;
1376 	stream->params.bps = stream_config->bps;
1377 
1378 	/* TODO: Update this check during Device-device support */
1379 	if (is_slave)
1380 		stream->params.ch_count += stream_config->ch_count;
1381 
1382 	return 0;
1383 }
1384 
1385 /**
1386  * sdw_get_slave_dpn_prop() - Get Slave port capabilities
1387  *
1388  * @slave: Slave handle
1389  * @direction: Data direction.
1390  * @port_num: Port number
1391  */
1392 struct sdw_dpn_prop *sdw_get_slave_dpn_prop(struct sdw_slave *slave,
1393 					    enum sdw_data_direction direction,
1394 					    unsigned int port_num)
1395 {
1396 	struct sdw_dpn_prop *dpn_prop;
1397 	u8 num_ports;
1398 	int i;
1399 
1400 	if (!port_num) {
1401 		dev_err(&slave->dev, "%s: port_num is zero\n", __func__);
1402 		return NULL;
1403 	}
1404 
1405 	if (direction == SDW_DATA_DIR_TX) {
1406 		num_ports = hweight32(slave->prop.source_ports);
1407 		dpn_prop = slave->prop.src_dpn_prop;
1408 	} else {
1409 		num_ports = hweight32(slave->prop.sink_ports);
1410 		dpn_prop = slave->prop.sink_dpn_prop;
1411 	}
1412 
1413 	for (i = 0; i < num_ports; i++) {
1414 		if (dpn_prop[i].num == port_num)
1415 			return &dpn_prop[i];
1416 	}
1417 
1418 	return NULL;
1419 }
1420 
1421 /**
1422  * sdw_acquire_bus_lock: Acquire bus lock for all Master runtime(s)
1423  *
1424  * @stream: SoundWire stream
1425  *
1426  * Acquire bus_lock for each of the master runtime(m_rt) part of this
1427  * stream to reconfigure the bus.
1428  * NOTE: This function is called from SoundWire stream ops and is
1429  * expected that a global lock is held before acquiring bus_lock.
1430  */
1431 static void sdw_acquire_bus_lock(struct sdw_stream_runtime *stream)
1432 {
1433 	struct sdw_master_runtime *m_rt;
1434 	struct sdw_bus *bus;
1435 
1436 	/* Iterate for all Master(s) in Master list */
1437 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1438 		bus = m_rt->bus;
1439 
1440 		mutex_lock(&bus->bus_lock);
1441 	}
1442 }
1443 
1444 /**
1445  * sdw_release_bus_lock: Release bus lock for all Master runtime(s)
1446  *
1447  * @stream: SoundWire stream
1448  *
1449  * Release the previously held bus_lock after reconfiguring the bus.
1450  * NOTE: This function is called from SoundWire stream ops and is
1451  * expected that a global lock is held before releasing bus_lock.
1452  */
1453 static void sdw_release_bus_lock(struct sdw_stream_runtime *stream)
1454 {
1455 	struct sdw_master_runtime *m_rt;
1456 	struct sdw_bus *bus;
1457 
1458 	/* Iterate for all Master(s) in Master list */
1459 	list_for_each_entry_reverse(m_rt, &stream->master_list, stream_node) {
1460 		bus = m_rt->bus;
1461 		mutex_unlock(&bus->bus_lock);
1462 	}
1463 }
1464 
1465 static int _sdw_prepare_stream(struct sdw_stream_runtime *stream,
1466 			       bool update_params)
1467 {
1468 	struct sdw_master_runtime *m_rt;
1469 	struct sdw_bus *bus;
1470 	struct sdw_master_prop *prop;
1471 	struct sdw_bus_params params;
1472 	int ret;
1473 
1474 	/* Prepare  Master(s) and Slave(s) port(s) associated with stream */
1475 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1476 		bus = m_rt->bus;
1477 		prop = &bus->prop;
1478 		memcpy(&params, &bus->params, sizeof(params));
1479 
1480 		/* TODO: Support Asynchronous mode */
1481 		if ((prop->max_clk_freq % stream->params.rate) != 0) {
1482 			dev_err(bus->dev, "Async mode not supported\n");
1483 			return -EINVAL;
1484 		}
1485 
1486 		if (update_params) {
1487 			/* Increment cumulative bus bandwidth */
1488 			/* TODO: Update this during Device-Device support */
1489 			bus->params.bandwidth += m_rt->stream->params.rate *
1490 				m_rt->ch_count * m_rt->stream->params.bps;
1491 
1492 			/* Compute params */
1493 			if (bus->compute_params) {
1494 				ret = bus->compute_params(bus, stream);
1495 				if (ret < 0) {
1496 					dev_err(bus->dev, "Compute params failed: %d\n",
1497 						ret);
1498 					goto restore_params;
1499 				}
1500 			}
1501 		}
1502 
1503 		/* Program params */
1504 		ret = sdw_program_params(bus, true);
1505 		if (ret < 0) {
1506 			dev_err(bus->dev, "Program params failed: %d\n", ret);
1507 			goto restore_params;
1508 		}
1509 	}
1510 
1511 	ret = do_bank_switch(stream);
1512 	if (ret < 0) {
1513 		pr_err("%s: do_bank_switch failed: %d\n", __func__, ret);
1514 		goto restore_params;
1515 	}
1516 
1517 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1518 		bus = m_rt->bus;
1519 
1520 		/* Prepare port(s) on the new clock configuration */
1521 		ret = sdw_prep_deprep_ports(m_rt, true);
1522 		if (ret < 0) {
1523 			dev_err(bus->dev, "Prepare port(s) failed ret = %d\n",
1524 				ret);
1525 			goto restore_params;
1526 		}
1527 	}
1528 
1529 	stream->state = SDW_STREAM_PREPARED;
1530 
1531 	return ret;
1532 
1533 restore_params:
1534 	memcpy(&bus->params, &params, sizeof(params));
1535 	return ret;
1536 }
1537 
1538 /**
1539  * sdw_prepare_stream() - Prepare SoundWire stream
1540  *
1541  * @stream: Soundwire stream
1542  *
1543  * Documentation/driver-api/soundwire/stream.rst explains this API in detail
1544  */
1545 int sdw_prepare_stream(struct sdw_stream_runtime *stream)
1546 {
1547 	bool update_params = true;
1548 	int ret;
1549 
1550 	if (!stream) {
1551 		pr_err("SoundWire: Handle not found for stream\n");
1552 		return -EINVAL;
1553 	}
1554 
1555 	sdw_acquire_bus_lock(stream);
1556 
1557 	if (stream->state == SDW_STREAM_PREPARED) {
1558 		ret = 0;
1559 		goto state_err;
1560 	}
1561 
1562 	if (stream->state != SDW_STREAM_CONFIGURED &&
1563 	    stream->state != SDW_STREAM_DEPREPARED &&
1564 	    stream->state != SDW_STREAM_DISABLED) {
1565 		pr_err("%s: %s: inconsistent state state %d\n",
1566 		       __func__, stream->name, stream->state);
1567 		ret = -EINVAL;
1568 		goto state_err;
1569 	}
1570 
1571 	/*
1572 	 * when the stream is DISABLED, this means sdw_prepare_stream()
1573 	 * is called as a result of an underflow or a resume operation.
1574 	 * In this case, the bus parameters shall not be recomputed, but
1575 	 * still need to be re-applied
1576 	 */
1577 	if (stream->state == SDW_STREAM_DISABLED)
1578 		update_params = false;
1579 
1580 	ret = _sdw_prepare_stream(stream, update_params);
1581 
1582 state_err:
1583 	sdw_release_bus_lock(stream);
1584 	return ret;
1585 }
1586 EXPORT_SYMBOL(sdw_prepare_stream);
1587 
1588 static int _sdw_enable_stream(struct sdw_stream_runtime *stream)
1589 {
1590 	struct sdw_master_runtime *m_rt;
1591 	struct sdw_bus *bus;
1592 	int ret;
1593 
1594 	/* Enable Master(s) and Slave(s) port(s) associated with stream */
1595 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1596 		bus = m_rt->bus;
1597 
1598 		/* Program params */
1599 		ret = sdw_program_params(bus, false);
1600 		if (ret < 0) {
1601 			dev_err(bus->dev, "%s: Program params failed: %d\n", __func__, ret);
1602 			return ret;
1603 		}
1604 
1605 		/* Enable port(s) */
1606 		ret = sdw_enable_disable_ports(m_rt, true);
1607 		if (ret < 0) {
1608 			dev_err(bus->dev,
1609 				"Enable port(s) failed ret: %d\n", ret);
1610 			return ret;
1611 		}
1612 	}
1613 
1614 	ret = do_bank_switch(stream);
1615 	if (ret < 0) {
1616 		pr_err("%s: do_bank_switch failed: %d\n", __func__, ret);
1617 		return ret;
1618 	}
1619 
1620 	stream->state = SDW_STREAM_ENABLED;
1621 	return 0;
1622 }
1623 
1624 /**
1625  * sdw_enable_stream() - Enable SoundWire stream
1626  *
1627  * @stream: Soundwire stream
1628  *
1629  * Documentation/driver-api/soundwire/stream.rst explains this API in detail
1630  */
1631 int sdw_enable_stream(struct sdw_stream_runtime *stream)
1632 {
1633 	int ret;
1634 
1635 	if (!stream) {
1636 		pr_err("SoundWire: Handle not found for stream\n");
1637 		return -EINVAL;
1638 	}
1639 
1640 	sdw_acquire_bus_lock(stream);
1641 
1642 	if (stream->state == SDW_STREAM_ENABLED) {
1643 		ret = 0;
1644 		goto state_err;
1645 	}
1646 
1647 	if (stream->state != SDW_STREAM_PREPARED &&
1648 	    stream->state != SDW_STREAM_DISABLED) {
1649 		pr_err("%s: %s: inconsistent state state %d\n",
1650 		       __func__, stream->name, stream->state);
1651 		ret = -EINVAL;
1652 		goto state_err;
1653 	}
1654 
1655 	ret = _sdw_enable_stream(stream);
1656 
1657 state_err:
1658 	sdw_release_bus_lock(stream);
1659 	return ret;
1660 }
1661 EXPORT_SYMBOL(sdw_enable_stream);
1662 
1663 static int _sdw_disable_stream(struct sdw_stream_runtime *stream)
1664 {
1665 	struct sdw_master_runtime *m_rt;
1666 	int ret;
1667 
1668 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1669 		struct sdw_bus *bus = m_rt->bus;
1670 
1671 		/* Disable port(s) */
1672 		ret = sdw_enable_disable_ports(m_rt, false);
1673 		if (ret < 0) {
1674 			dev_err(bus->dev, "Disable port(s) failed: %d\n", ret);
1675 			return ret;
1676 		}
1677 	}
1678 	stream->state = SDW_STREAM_DISABLED;
1679 
1680 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1681 		struct sdw_bus *bus = m_rt->bus;
1682 
1683 		/* Program params */
1684 		ret = sdw_program_params(bus, false);
1685 		if (ret < 0) {
1686 			dev_err(bus->dev, "%s: Program params failed: %d\n", __func__, ret);
1687 			return ret;
1688 		}
1689 	}
1690 
1691 	ret = do_bank_switch(stream);
1692 	if (ret < 0) {
1693 		pr_err("%s: do_bank_switch failed: %d\n", __func__, ret);
1694 		return ret;
1695 	}
1696 
1697 	/* make sure alternate bank (previous current) is also disabled */
1698 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1699 		struct sdw_bus *bus = m_rt->bus;
1700 
1701 		/* Disable port(s) */
1702 		ret = sdw_enable_disable_ports(m_rt, false);
1703 		if (ret < 0) {
1704 			dev_err(bus->dev, "Disable port(s) failed: %d\n", ret);
1705 			return ret;
1706 		}
1707 	}
1708 
1709 	return 0;
1710 }
1711 
1712 /**
1713  * sdw_disable_stream() - Disable SoundWire stream
1714  *
1715  * @stream: Soundwire stream
1716  *
1717  * Documentation/driver-api/soundwire/stream.rst explains this API in detail
1718  */
1719 int sdw_disable_stream(struct sdw_stream_runtime *stream)
1720 {
1721 	int ret;
1722 
1723 	if (!stream) {
1724 		pr_err("SoundWire: Handle not found for stream\n");
1725 		return -EINVAL;
1726 	}
1727 
1728 	sdw_acquire_bus_lock(stream);
1729 
1730 	if (stream->state == SDW_STREAM_DISABLED) {
1731 		ret = 0;
1732 		goto state_err;
1733 	}
1734 
1735 	if (stream->state != SDW_STREAM_ENABLED) {
1736 		pr_err("%s: %s: inconsistent state state %d\n",
1737 		       __func__, stream->name, stream->state);
1738 		ret = -EINVAL;
1739 		goto state_err;
1740 	}
1741 
1742 	ret = _sdw_disable_stream(stream);
1743 
1744 state_err:
1745 	sdw_release_bus_lock(stream);
1746 	return ret;
1747 }
1748 EXPORT_SYMBOL(sdw_disable_stream);
1749 
1750 static int _sdw_deprepare_stream(struct sdw_stream_runtime *stream)
1751 {
1752 	struct sdw_master_runtime *m_rt;
1753 	struct sdw_port_runtime *p_rt;
1754 	unsigned int multi_lane_bandwidth;
1755 	unsigned int bandwidth;
1756 	struct sdw_bus *bus;
1757 	int state = stream->state;
1758 	int ret = 0;
1759 
1760 	/*
1761 	 * first mark the state as DEPREPARED so that it is not taken into account
1762 	 * for bit allocation
1763 	 */
1764 	stream->state = SDW_STREAM_DEPREPARED;
1765 
1766 	list_for_each_entry(m_rt, &stream->master_list, stream_node) {
1767 		bus = m_rt->bus;
1768 		/* De-prepare port(s) */
1769 		ret = sdw_prep_deprep_ports(m_rt, false);
1770 		if (ret < 0) {
1771 			dev_err(bus->dev,
1772 				"De-prepare port(s) failed: %d\n", ret);
1773 			stream->state = state;
1774 			return ret;
1775 		}
1776 
1777 		multi_lane_bandwidth = 0;
1778 
1779 		list_for_each_entry(p_rt, &m_rt->port_list, port_node) {
1780 			if (!p_rt->lane)
1781 				continue;
1782 
1783 			bandwidth = m_rt->stream->params.rate * hweight32(p_rt->ch_mask) *
1784 				    m_rt->stream->params.bps;
1785 			multi_lane_bandwidth += bandwidth;
1786 			bus->lane_used_bandwidth[p_rt->lane] -= bandwidth;
1787 			if (!bus->lane_used_bandwidth[p_rt->lane])
1788 				p_rt->lane = 0;
1789 		}
1790 		/* TODO: Update this during Device-Device support */
1791 		bandwidth = m_rt->stream->params.rate * m_rt->ch_count * m_rt->stream->params.bps;
1792 		bus->params.bandwidth -= bandwidth - multi_lane_bandwidth;
1793 
1794 		/* Compute params */
1795 		if (bus->compute_params) {
1796 			ret = bus->compute_params(bus, stream);
1797 			if (ret < 0) {
1798 				dev_err(bus->dev, "Compute params failed: %d\n",
1799 					ret);
1800 				stream->state = state;
1801 				return ret;
1802 			}
1803 		}
1804 
1805 		/* Program params */
1806 		ret = sdw_program_params(bus, false);
1807 		if (ret < 0) {
1808 			dev_err(bus->dev, "%s: Program params failed: %d\n", __func__, ret);
1809 			stream->state = state;
1810 			return ret;
1811 		}
1812 	}
1813 
1814 	return do_bank_switch(stream);
1815 }
1816 
1817 /**
1818  * sdw_deprepare_stream() - Deprepare SoundWire stream
1819  *
1820  * @stream: Soundwire stream
1821  *
1822  * Documentation/driver-api/soundwire/stream.rst explains this API in detail
1823  */
1824 int sdw_deprepare_stream(struct sdw_stream_runtime *stream)
1825 {
1826 	int ret;
1827 
1828 	if (!stream) {
1829 		pr_err("SoundWire: Handle not found for stream\n");
1830 		return -EINVAL;
1831 	}
1832 
1833 	sdw_acquire_bus_lock(stream);
1834 
1835 	if (stream->state == SDW_STREAM_DEPREPARED) {
1836 		ret = 0;
1837 		goto state_err;
1838 	}
1839 
1840 	if (stream->state != SDW_STREAM_PREPARED &&
1841 	    stream->state != SDW_STREAM_DISABLED) {
1842 		pr_err("%s: %s: inconsistent state state %d\n",
1843 		       __func__, stream->name, stream->state);
1844 		ret = -EINVAL;
1845 		goto state_err;
1846 	}
1847 
1848 	ret = _sdw_deprepare_stream(stream);
1849 
1850 state_err:
1851 	sdw_release_bus_lock(stream);
1852 	return ret;
1853 }
1854 EXPORT_SYMBOL(sdw_deprepare_stream);
1855 
1856 static int set_stream(struct snd_pcm_substream *substream,
1857 		      struct sdw_stream_runtime *sdw_stream)
1858 {
1859 	struct snd_soc_pcm_runtime *rtd = snd_soc_substream_to_rtd(substream);
1860 	struct snd_soc_dai *dai;
1861 	int ret = 0;
1862 	int i;
1863 
1864 	/* Set stream pointer on all DAIs */
1865 	for_each_rtd_dais(rtd, i, dai) {
1866 		ret = snd_soc_dai_set_stream(dai, sdw_stream, substream->stream);
1867 		if (ret < 0) {
1868 			dev_err(rtd->dev, "failed to set stream pointer on dai %s\n", dai->name);
1869 			break;
1870 		}
1871 	}
1872 
1873 	return ret;
1874 }
1875 
1876 /**
1877  * sdw_alloc_stream() - Allocate and return stream runtime
1878  *
1879  * @stream_name: SoundWire stream name
1880  * @type: stream type (could be PCM ,PDM or BPT)
1881  *
1882  * Allocates a SoundWire stream runtime instance.
1883  * sdw_alloc_stream should be called only once per stream. Typically
1884  * invoked from ALSA/ASoC machine/platform driver.
1885  */
1886 struct sdw_stream_runtime *sdw_alloc_stream(const char *stream_name, enum sdw_stream_type type)
1887 {
1888 	struct sdw_stream_runtime *stream;
1889 
1890 	stream = kzalloc_obj(*stream);
1891 	if (!stream)
1892 		return NULL;
1893 
1894 	stream->name = stream_name;
1895 	INIT_LIST_HEAD(&stream->master_list);
1896 	stream->state = SDW_STREAM_ALLOCATED;
1897 	stream->m_rt_count = 0;
1898 	stream->type = type;
1899 
1900 	return stream;
1901 }
1902 EXPORT_SYMBOL(sdw_alloc_stream);
1903 
1904 /**
1905  * sdw_startup_stream() - Startup SoundWire stream
1906  *
1907  * @sdw_substream: Soundwire stream
1908  *
1909  * Documentation/driver-api/soundwire/stream.rst explains this API in detail
1910  */
1911 int sdw_startup_stream(void *sdw_substream)
1912 {
1913 	struct snd_pcm_substream *substream = sdw_substream;
1914 	struct snd_soc_pcm_runtime *rtd = snd_soc_substream_to_rtd(substream);
1915 	struct sdw_stream_runtime *sdw_stream;
1916 	char *name;
1917 	int ret;
1918 
1919 	if (substream->stream == SNDRV_PCM_STREAM_PLAYBACK)
1920 		name = kasprintf(GFP_KERNEL, "%s-Playback", substream->name);
1921 	else
1922 		name = kasprintf(GFP_KERNEL, "%s-Capture", substream->name);
1923 
1924 	if (!name)
1925 		return -ENOMEM;
1926 
1927 	sdw_stream = sdw_alloc_stream(name, SDW_STREAM_PCM);
1928 	if (!sdw_stream) {
1929 		dev_err(rtd->dev, "alloc stream failed for substream DAI %s\n", substream->name);
1930 		ret = -ENOMEM;
1931 		goto error;
1932 	}
1933 
1934 	ret = set_stream(substream, sdw_stream);
1935 	if (ret < 0)
1936 		goto release_stream;
1937 	return 0;
1938 
1939 release_stream:
1940 	sdw_release_stream(sdw_stream);
1941 	set_stream(substream, NULL);
1942 error:
1943 	kfree(name);
1944 	return ret;
1945 }
1946 EXPORT_SYMBOL(sdw_startup_stream);
1947 
1948 /**
1949  * sdw_shutdown_stream() - Shutdown SoundWire stream
1950  *
1951  * @sdw_substream: Soundwire stream
1952  *
1953  * Documentation/driver-api/soundwire/stream.rst explains this API in detail
1954  */
1955 void sdw_shutdown_stream(void *sdw_substream)
1956 {
1957 	struct snd_pcm_substream *substream = sdw_substream;
1958 	struct snd_soc_pcm_runtime *rtd = snd_soc_substream_to_rtd(substream);
1959 	struct sdw_stream_runtime *sdw_stream;
1960 	struct snd_soc_dai *dai;
1961 
1962 	/* Find stream from first CPU DAI */
1963 	dai = snd_soc_rtd_to_cpu(rtd, 0);
1964 
1965 	sdw_stream = snd_soc_dai_get_stream(dai, substream->stream);
1966 
1967 	if (IS_ERR(sdw_stream)) {
1968 		dev_err(rtd->dev, "no stream found for DAI %s\n", dai->name);
1969 		return;
1970 	}
1971 
1972 	/* release memory */
1973 	kfree(sdw_stream->name);
1974 	sdw_release_stream(sdw_stream);
1975 
1976 	/* clear DAI data */
1977 	set_stream(substream, NULL);
1978 }
1979 EXPORT_SYMBOL(sdw_shutdown_stream);
1980 
1981 /**
1982  * sdw_release_stream() - Free the assigned stream runtime
1983  *
1984  * @stream: SoundWire stream runtime
1985  *
1986  * sdw_release_stream should be called only once per stream
1987  */
1988 void sdw_release_stream(struct sdw_stream_runtime *stream)
1989 {
1990 	kfree(stream);
1991 }
1992 EXPORT_SYMBOL(sdw_release_stream);
1993 
1994 /**
1995  * sdw_stream_add_master() - Allocate and add master runtime to a stream
1996  *
1997  * @bus: SDW Bus instance
1998  * @stream_config: Stream configuration for audio stream
1999  * @port_config: Port configuration for audio stream
2000  * @num_ports: Number of ports
2001  * @stream: SoundWire stream
2002  */
2003 int sdw_stream_add_master(struct sdw_bus *bus,
2004 			  struct sdw_stream_config *stream_config,
2005 			  const struct sdw_port_config *port_config,
2006 			  unsigned int num_ports,
2007 			  struct sdw_stream_runtime *stream)
2008 {
2009 	struct sdw_master_runtime *m_rt;
2010 	bool alloc_master_rt = false;
2011 	int ret;
2012 
2013 	mutex_lock(&bus->bus_lock);
2014 
2015 	/*
2016 	 * For multi link streams, add the second master only if
2017 	 * the bus supports it.
2018 	 * Check if bus->multi_link is set
2019 	 */
2020 	if (!bus->multi_link && stream->m_rt_count > 0) {
2021 		dev_err(bus->dev,
2022 			"Multilink not supported, link %d\n", bus->link_id);
2023 		ret = -EINVAL;
2024 		goto unlock;
2025 	}
2026 
2027 	/*
2028 	 * check if Master is already allocated (e.g. as a result of Slave adding
2029 	 * it first), if so skip allocation and go to configuration
2030 	 */
2031 	m_rt = sdw_master_rt_find(bus, stream);
2032 	if (!m_rt) {
2033 		m_rt = sdw_master_rt_alloc(bus, stream);
2034 		if (IS_ERR(m_rt)) {
2035 			ret = PTR_ERR(m_rt);
2036 			dev_err(bus->dev, "%s: Master runtime alloc failed for stream:%s: %d\n",
2037 				__func__, stream->name, ret);
2038 			goto unlock;
2039 		}
2040 		if (!m_rt) {
2041 			dev_err(bus->dev, "%s: Master runtime alloc failed for stream:%s\n",
2042 				__func__, stream->name);
2043 			ret = -ENOMEM;
2044 			goto unlock;
2045 		}
2046 
2047 		alloc_master_rt = true;
2048 	}
2049 
2050 	if (!sdw_master_port_allocated(m_rt)) {
2051 		ret = sdw_master_port_alloc(m_rt, num_ports);
2052 		if (ret)
2053 			goto alloc_error;
2054 
2055 		stream->m_rt_count++;
2056 	}
2057 
2058 	ret = sdw_master_rt_config(m_rt, stream_config);
2059 	if (ret < 0)
2060 		goto unlock;
2061 
2062 	ret = sdw_config_stream(bus->dev, stream, stream_config, false);
2063 	if (ret)
2064 		goto unlock;
2065 
2066 	ret = sdw_master_port_config(m_rt, port_config);
2067 
2068 	goto unlock;
2069 
2070 alloc_error:
2071 	/*
2072 	 * we only cleanup what was allocated in this routine
2073 	 */
2074 	if (alloc_master_rt)
2075 		sdw_master_rt_free(m_rt, stream);
2076 unlock:
2077 	mutex_unlock(&bus->bus_lock);
2078 	return ret;
2079 }
2080 EXPORT_SYMBOL(sdw_stream_add_master);
2081 
2082 /**
2083  * sdw_stream_remove_master() - Remove master from sdw_stream
2084  *
2085  * @bus: SDW Bus instance
2086  * @stream: SoundWire stream
2087  *
2088  * This removes and frees port_rt and master_rt from a stream
2089  */
2090 int sdw_stream_remove_master(struct sdw_bus *bus,
2091 			     struct sdw_stream_runtime *stream)
2092 {
2093 	struct sdw_master_runtime *m_rt, *_m_rt;
2094 
2095 	mutex_lock(&bus->bus_lock);
2096 
2097 	list_for_each_entry_safe(m_rt, _m_rt,
2098 				 &stream->master_list, stream_node) {
2099 		if (m_rt->bus != bus)
2100 			continue;
2101 
2102 		sdw_master_port_free(m_rt);
2103 		sdw_master_rt_free(m_rt, stream);
2104 		stream->m_rt_count--;
2105 	}
2106 
2107 	if (list_empty(&stream->master_list))
2108 		stream->state = SDW_STREAM_RELEASED;
2109 
2110 	mutex_unlock(&bus->bus_lock);
2111 
2112 	return 0;
2113 }
2114 EXPORT_SYMBOL(sdw_stream_remove_master);
2115 
2116 /**
2117  * sdw_stream_add_slave() - Allocate and add master/slave runtime to a stream
2118  *
2119  * @slave: SDW Slave instance
2120  * @stream_config: Stream configuration for audio stream
2121  * @stream: SoundWire stream
2122  * @port_config: Port configuration for audio stream
2123  * @num_ports: Number of ports
2124  *
2125  * It is expected that Slave is added before adding Master
2126  * to the Stream.
2127  *
2128  */
2129 int sdw_stream_add_slave(struct sdw_slave *slave,
2130 			 struct sdw_stream_config *stream_config,
2131 			 const struct sdw_port_config *port_config,
2132 			 unsigned int num_ports,
2133 			 struct sdw_stream_runtime *stream)
2134 {
2135 	struct sdw_slave_runtime *s_rt;
2136 	struct sdw_master_runtime *m_rt;
2137 	bool alloc_master_rt = false;
2138 	bool alloc_slave_rt = false;
2139 
2140 	int ret;
2141 
2142 	mutex_lock(&slave->bus->bus_lock);
2143 
2144 	/*
2145 	 * check if Master is already allocated, if so skip allocation
2146 	 * and go to configuration
2147 	 */
2148 	m_rt = sdw_master_rt_find(slave->bus, stream);
2149 	if (!m_rt) {
2150 		/*
2151 		 * If this API is invoked by Slave first then m_rt is not valid.
2152 		 * So, allocate m_rt and add Slave to it.
2153 		 */
2154 		m_rt = sdw_master_rt_alloc(slave->bus, stream);
2155 		if (IS_ERR(m_rt)) {
2156 			ret = PTR_ERR(m_rt);
2157 			dev_err(&slave->dev, "%s: Master runtime alloc failed for stream:%s: %d\n",
2158 				__func__, stream->name, ret);
2159 			goto unlock;
2160 		}
2161 		if (!m_rt) {
2162 			dev_err(&slave->dev, "%s: Master runtime alloc failed for stream:%s\n",
2163 				__func__, stream->name);
2164 			ret = -ENOMEM;
2165 			goto unlock;
2166 		}
2167 
2168 		alloc_master_rt = true;
2169 	}
2170 
2171 	s_rt = sdw_slave_rt_find(slave, stream);
2172 	if (!s_rt) {
2173 		s_rt = sdw_slave_rt_alloc(slave, m_rt);
2174 		if (!s_rt) {
2175 			dev_err(&slave->dev, "Slave runtime alloc failed for stream:%s\n",
2176 				stream->name);
2177 			ret = -ENOMEM;
2178 			goto alloc_error;
2179 		}
2180 
2181 		alloc_slave_rt = true;
2182 	}
2183 
2184 	if (!sdw_slave_port_allocated(s_rt)) {
2185 		ret = sdw_slave_port_alloc(slave, s_rt, num_ports);
2186 		if (ret)
2187 			goto alloc_error;
2188 	}
2189 
2190 	ret =  sdw_master_rt_config(m_rt, stream_config);
2191 	if (ret)
2192 		goto unlock;
2193 
2194 	ret = sdw_slave_rt_config(s_rt, stream_config);
2195 	if (ret)
2196 		goto unlock;
2197 
2198 	ret = sdw_config_stream(&slave->dev, stream, stream_config, true);
2199 	if (ret)
2200 		goto unlock;
2201 
2202 	ret = sdw_slave_port_config(slave, s_rt, port_config,
2203 				    stream->type == SDW_STREAM_BPT);
2204 	if (ret)
2205 		goto unlock;
2206 
2207 	/*
2208 	 * Change stream state to CONFIGURED on first Slave add.
2209 	 * Bus is not aware of number of Slave(s) in a stream at this
2210 	 * point so cannot depend on all Slave(s) to be added in order to
2211 	 * change stream state to CONFIGURED.
2212 	 */
2213 	stream->state = SDW_STREAM_CONFIGURED;
2214 	goto unlock;
2215 
2216 alloc_error:
2217 	/*
2218 	 * we only cleanup what was allocated in this routine. The 'else if'
2219 	 * is intentional, the 'master_rt_free' will call sdw_slave_rt_free()
2220 	 * internally.
2221 	 */
2222 	if (alloc_master_rt)
2223 		sdw_master_rt_free(m_rt, stream);
2224 	else if (alloc_slave_rt)
2225 		sdw_slave_rt_free(slave, stream);
2226 unlock:
2227 	mutex_unlock(&slave->bus->bus_lock);
2228 	return ret;
2229 }
2230 EXPORT_SYMBOL(sdw_stream_add_slave);
2231 
2232 /**
2233  * sdw_stream_remove_slave() - Remove slave from sdw_stream
2234  *
2235  * @slave: SDW Slave instance
2236  * @stream: SoundWire stream
2237  *
2238  * This removes and frees port_rt and slave_rt from a stream.
2239  * If stream is NULL or an ERR_PTR, do nothing and return 0.
2240  */
2241 int sdw_stream_remove_slave(struct sdw_slave *slave,
2242 			    struct sdw_stream_runtime *stream)
2243 {
2244 	if (IS_ERR_OR_NULL(stream))
2245 		return 0;
2246 
2247 	mutex_lock(&slave->bus->bus_lock);
2248 
2249 	sdw_slave_port_free(slave, stream);
2250 	sdw_slave_rt_free(slave, stream);
2251 
2252 	mutex_unlock(&slave->bus->bus_lock);
2253 
2254 	return 0;
2255 }
2256 EXPORT_SYMBOL(sdw_stream_remove_slave);
2257