xref: /openbmc/linux/sound/soc/intel/skylake/skl-topology.c (revision d1730c3dd90bfac6dffc29b1575837d45edca8cc)
1e4e2d2f4SJeeja KP /*
2e4e2d2f4SJeeja KP  *  skl-topology.c - Implements Platform component ALSA controls/widget
3e4e2d2f4SJeeja KP  *  handlers.
4e4e2d2f4SJeeja KP  *
5e4e2d2f4SJeeja KP  *  Copyright (C) 2014-2015 Intel Corp
6e4e2d2f4SJeeja KP  *  Author: Jeeja KP <jeeja.kp@intel.com>
7e4e2d2f4SJeeja KP  *  ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
8e4e2d2f4SJeeja KP  *
9e4e2d2f4SJeeja KP  * This program is free software; you can redistribute it and/or modify
10e4e2d2f4SJeeja KP  * it under the terms of the GNU General Public License as version 2, as
11e4e2d2f4SJeeja KP  * published by the Free Software Foundation.
12e4e2d2f4SJeeja KP  *
13e4e2d2f4SJeeja KP  * This program is distributed in the hope that it will be useful, but
14e4e2d2f4SJeeja KP  * WITHOUT ANY WARRANTY; without even the implied warranty of
15e4e2d2f4SJeeja KP  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
16e4e2d2f4SJeeja KP  * General Public License for more details.
17e4e2d2f4SJeeja KP  */
18e4e2d2f4SJeeja KP 
19e4e2d2f4SJeeja KP #include <linux/slab.h>
20e4e2d2f4SJeeja KP #include <linux/types.h>
21e4e2d2f4SJeeja KP #include <linux/firmware.h>
22e4e2d2f4SJeeja KP #include <sound/soc.h>
23e4e2d2f4SJeeja KP #include <sound/soc-topology.h>
24e4e2d2f4SJeeja KP #include "skl-sst-dsp.h"
25e4e2d2f4SJeeja KP #include "skl-sst-ipc.h"
26e4e2d2f4SJeeja KP #include "skl-topology.h"
27e4e2d2f4SJeeja KP #include "skl.h"
28e4e2d2f4SJeeja KP #include "skl-tplg-interface.h"
29e4e2d2f4SJeeja KP 
30f7590d4fSJeeja KP #define SKL_CH_FIXUP_MASK		(1 << 0)
31f7590d4fSJeeja KP #define SKL_RATE_FIXUP_MASK		(1 << 1)
32f7590d4fSJeeja KP #define SKL_FMT_FIXUP_MASK		(1 << 2)
33f7590d4fSJeeja KP 
34e4e2d2f4SJeeja KP /*
35e4e2d2f4SJeeja KP  * SKL DSP driver modelling uses only few DAPM widgets so for rest we will
36e4e2d2f4SJeeja KP  * ignore. This helpers checks if the SKL driver handles this widget type
37e4e2d2f4SJeeja KP  */
38e4e2d2f4SJeeja KP static int is_skl_dsp_widget_type(struct snd_soc_dapm_widget *w)
39e4e2d2f4SJeeja KP {
40e4e2d2f4SJeeja KP 	switch (w->id) {
41e4e2d2f4SJeeja KP 	case snd_soc_dapm_dai_link:
42e4e2d2f4SJeeja KP 	case snd_soc_dapm_dai_in:
43e4e2d2f4SJeeja KP 	case snd_soc_dapm_aif_in:
44e4e2d2f4SJeeja KP 	case snd_soc_dapm_aif_out:
45e4e2d2f4SJeeja KP 	case snd_soc_dapm_dai_out:
46e4e2d2f4SJeeja KP 	case snd_soc_dapm_switch:
47e4e2d2f4SJeeja KP 		return false;
48e4e2d2f4SJeeja KP 	default:
49e4e2d2f4SJeeja KP 		return true;
50e4e2d2f4SJeeja KP 	}
51e4e2d2f4SJeeja KP }
52e4e2d2f4SJeeja KP 
53e4e2d2f4SJeeja KP /*
54e4e2d2f4SJeeja KP  * Each pipelines needs memory to be allocated. Check if we have free memory
55e4e2d2f4SJeeja KP  * from available pool. Then only add this to pool
56e4e2d2f4SJeeja KP  * This is freed when pipe is deleted
57e4e2d2f4SJeeja KP  * Note: DSP does actual memory management we only keep track for complete
58e4e2d2f4SJeeja KP  * pool
59e4e2d2f4SJeeja KP  */
60e4e2d2f4SJeeja KP static bool skl_tplg_alloc_pipe_mem(struct skl *skl,
61e4e2d2f4SJeeja KP 				struct skl_module_cfg *mconfig)
62e4e2d2f4SJeeja KP {
63e4e2d2f4SJeeja KP 	struct skl_sst *ctx = skl->skl_sst;
64e4e2d2f4SJeeja KP 
65e4e2d2f4SJeeja KP 	if (skl->resource.mem + mconfig->pipe->memory_pages >
66e4e2d2f4SJeeja KP 				skl->resource.max_mem) {
67e4e2d2f4SJeeja KP 		dev_err(ctx->dev,
68e4e2d2f4SJeeja KP 				"%s: module_id %d instance %d\n", __func__,
69e4e2d2f4SJeeja KP 				mconfig->id.module_id,
70e4e2d2f4SJeeja KP 				mconfig->id.instance_id);
71e4e2d2f4SJeeja KP 		dev_err(ctx->dev,
72e4e2d2f4SJeeja KP 				"exceeds ppl memory available %d mem %d\n",
73e4e2d2f4SJeeja KP 				skl->resource.max_mem, skl->resource.mem);
74e4e2d2f4SJeeja KP 		return false;
75e4e2d2f4SJeeja KP 	}
76e4e2d2f4SJeeja KP 
77e4e2d2f4SJeeja KP 	skl->resource.mem += mconfig->pipe->memory_pages;
78e4e2d2f4SJeeja KP 	return true;
79e4e2d2f4SJeeja KP }
80e4e2d2f4SJeeja KP 
81e4e2d2f4SJeeja KP /*
82e4e2d2f4SJeeja KP  * Pipeline needs needs DSP CPU resources for computation, this is
83e4e2d2f4SJeeja KP  * quantified in MCPS (Million Clocks Per Second) required for module/pipe
84e4e2d2f4SJeeja KP  *
85e4e2d2f4SJeeja KP  * Each pipelines needs mcps to be allocated. Check if we have mcps for this
86e4e2d2f4SJeeja KP  * pipe. This adds the mcps to driver counter
87e4e2d2f4SJeeja KP  * This is removed on pipeline delete
88e4e2d2f4SJeeja KP  */
89e4e2d2f4SJeeja KP static bool skl_tplg_alloc_pipe_mcps(struct skl *skl,
90e4e2d2f4SJeeja KP 				struct skl_module_cfg *mconfig)
91e4e2d2f4SJeeja KP {
92e4e2d2f4SJeeja KP 	struct skl_sst *ctx = skl->skl_sst;
93e4e2d2f4SJeeja KP 
94e4e2d2f4SJeeja KP 	if (skl->resource.mcps + mconfig->mcps > skl->resource.max_mcps) {
95e4e2d2f4SJeeja KP 		dev_err(ctx->dev,
96e4e2d2f4SJeeja KP 			"%s: module_id %d instance %d\n", __func__,
97e4e2d2f4SJeeja KP 			mconfig->id.module_id, mconfig->id.instance_id);
98e4e2d2f4SJeeja KP 		dev_err(ctx->dev,
99e4e2d2f4SJeeja KP 			"exceeds ppl memory available %d > mem %d\n",
100e4e2d2f4SJeeja KP 			skl->resource.max_mcps, skl->resource.mcps);
101e4e2d2f4SJeeja KP 		return false;
102e4e2d2f4SJeeja KP 	}
103e4e2d2f4SJeeja KP 
104e4e2d2f4SJeeja KP 	skl->resource.mcps += mconfig->mcps;
105e4e2d2f4SJeeja KP 	return true;
106e4e2d2f4SJeeja KP }
107e4e2d2f4SJeeja KP 
108e4e2d2f4SJeeja KP /*
109e4e2d2f4SJeeja KP  * Free the mcps when tearing down
110e4e2d2f4SJeeja KP  */
111e4e2d2f4SJeeja KP static void
112e4e2d2f4SJeeja KP skl_tplg_free_pipe_mcps(struct skl *skl, struct skl_module_cfg *mconfig)
113e4e2d2f4SJeeja KP {
114e4e2d2f4SJeeja KP 	skl->resource.mcps -= mconfig->mcps;
115e4e2d2f4SJeeja KP }
116e4e2d2f4SJeeja KP 
117e4e2d2f4SJeeja KP /*
118e4e2d2f4SJeeja KP  * Free the memory when tearing down
119e4e2d2f4SJeeja KP  */
120e4e2d2f4SJeeja KP static void
121e4e2d2f4SJeeja KP skl_tplg_free_pipe_mem(struct skl *skl, struct skl_module_cfg *mconfig)
122e4e2d2f4SJeeja KP {
123e4e2d2f4SJeeja KP 	skl->resource.mem -= mconfig->pipe->memory_pages;
124e4e2d2f4SJeeja KP }
125e4e2d2f4SJeeja KP 
126f7590d4fSJeeja KP 
127f7590d4fSJeeja KP static void skl_dump_mconfig(struct skl_sst *ctx,
128f7590d4fSJeeja KP 					struct skl_module_cfg *mcfg)
129f7590d4fSJeeja KP {
130f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "Dumping config\n");
131f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "Input Format:\n");
132f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "channels = %d\n", mcfg->in_fmt.channels);
133f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "s_freq = %d\n", mcfg->in_fmt.s_freq);
134f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "ch_cfg = %d\n", mcfg->in_fmt.ch_cfg);
135f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "valid bit depth = %d\n",
136f7590d4fSJeeja KP 			mcfg->in_fmt.valid_bit_depth);
137f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "Output Format:\n");
138f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "channels = %d\n", mcfg->out_fmt.channels);
139f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "s_freq = %d\n", mcfg->out_fmt.s_freq);
140f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "valid bit depth = %d\n",
141f7590d4fSJeeja KP 			mcfg->out_fmt.valid_bit_depth);
142f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "ch_cfg = %d\n", mcfg->out_fmt.ch_cfg);
143f7590d4fSJeeja KP }
144f7590d4fSJeeja KP 
145f7590d4fSJeeja KP static void skl_tplg_update_params(struct skl_module_fmt *fmt,
146f7590d4fSJeeja KP 			struct skl_pipe_params *params, int fixup)
147f7590d4fSJeeja KP {
148f7590d4fSJeeja KP 	if (fixup & SKL_RATE_FIXUP_MASK)
149f7590d4fSJeeja KP 		fmt->s_freq = params->s_freq;
150f7590d4fSJeeja KP 	if (fixup & SKL_CH_FIXUP_MASK)
151f7590d4fSJeeja KP 		fmt->channels = params->ch;
152f7590d4fSJeeja KP 	if (fixup & SKL_FMT_FIXUP_MASK)
153f7590d4fSJeeja KP 		fmt->valid_bit_depth = params->s_fmt;
154f7590d4fSJeeja KP }
155f7590d4fSJeeja KP 
156f7590d4fSJeeja KP /*
157f7590d4fSJeeja KP  * A pipeline may have modules which impact the pcm parameters, like SRC,
158f7590d4fSJeeja KP  * channel converter, format converter.
159f7590d4fSJeeja KP  * We need to calculate the output params by applying the 'fixup'
160f7590d4fSJeeja KP  * Topology will tell driver which type of fixup is to be applied by
161f7590d4fSJeeja KP  * supplying the fixup mask, so based on that we calculate the output
162f7590d4fSJeeja KP  *
163f7590d4fSJeeja KP  * Now In FE the pcm hw_params is source/target format. Same is applicable
164f7590d4fSJeeja KP  * for BE with its hw_params invoked.
165f7590d4fSJeeja KP  * here based on FE, BE pipeline and direction we calculate the input and
166f7590d4fSJeeja KP  * outfix and then apply that for a module
167f7590d4fSJeeja KP  */
168f7590d4fSJeeja KP static void skl_tplg_update_params_fixup(struct skl_module_cfg *m_cfg,
169f7590d4fSJeeja KP 		struct skl_pipe_params *params, bool is_fe)
170f7590d4fSJeeja KP {
171f7590d4fSJeeja KP 	int in_fixup, out_fixup;
172f7590d4fSJeeja KP 	struct skl_module_fmt *in_fmt, *out_fmt;
173f7590d4fSJeeja KP 
174f7590d4fSJeeja KP 	in_fmt = &m_cfg->in_fmt;
175f7590d4fSJeeja KP 	out_fmt = &m_cfg->out_fmt;
176f7590d4fSJeeja KP 
177f7590d4fSJeeja KP 	if (params->stream == SNDRV_PCM_STREAM_PLAYBACK) {
178f7590d4fSJeeja KP 		if (is_fe) {
179f7590d4fSJeeja KP 			in_fixup = m_cfg->params_fixup;
180f7590d4fSJeeja KP 			out_fixup = (~m_cfg->converter) &
181f7590d4fSJeeja KP 					m_cfg->params_fixup;
182f7590d4fSJeeja KP 		} else {
183f7590d4fSJeeja KP 			out_fixup = m_cfg->params_fixup;
184f7590d4fSJeeja KP 			in_fixup = (~m_cfg->converter) &
185f7590d4fSJeeja KP 					m_cfg->params_fixup;
186f7590d4fSJeeja KP 		}
187f7590d4fSJeeja KP 	} else {
188f7590d4fSJeeja KP 		if (is_fe) {
189f7590d4fSJeeja KP 			out_fixup = m_cfg->params_fixup;
190f7590d4fSJeeja KP 			in_fixup = (~m_cfg->converter) &
191f7590d4fSJeeja KP 					m_cfg->params_fixup;
192f7590d4fSJeeja KP 		} else {
193f7590d4fSJeeja KP 			in_fixup = m_cfg->params_fixup;
194f7590d4fSJeeja KP 			out_fixup = (~m_cfg->converter) &
195f7590d4fSJeeja KP 					m_cfg->params_fixup;
196f7590d4fSJeeja KP 		}
197f7590d4fSJeeja KP 	}
198f7590d4fSJeeja KP 
199f7590d4fSJeeja KP 	skl_tplg_update_params(in_fmt, params, in_fixup);
200f7590d4fSJeeja KP 	skl_tplg_update_params(out_fmt, params, out_fixup);
201f7590d4fSJeeja KP }
202f7590d4fSJeeja KP 
203f7590d4fSJeeja KP /*
204f7590d4fSJeeja KP  * A module needs input and output buffers, which are dependent upon pcm
205f7590d4fSJeeja KP  * params, so once we have calculate params, we need buffer calculation as
206f7590d4fSJeeja KP  * well.
207f7590d4fSJeeja KP  */
208f7590d4fSJeeja KP static void skl_tplg_update_buffer_size(struct skl_sst *ctx,
209f7590d4fSJeeja KP 				struct skl_module_cfg *mcfg)
210f7590d4fSJeeja KP {
211f7590d4fSJeeja KP 	int multiplier = 1;
212f7590d4fSJeeja KP 
213f7590d4fSJeeja KP 	if (mcfg->m_type == SKL_MODULE_TYPE_SRCINT)
214f7590d4fSJeeja KP 		multiplier = 5;
215f7590d4fSJeeja KP 
216f7590d4fSJeeja KP 	mcfg->ibs = (mcfg->in_fmt.s_freq / 1000) *
217f7590d4fSJeeja KP 				(mcfg->in_fmt.channels) *
218f7590d4fSJeeja KP 				(mcfg->in_fmt.bit_depth >> 3) *
219f7590d4fSJeeja KP 				multiplier;
220f7590d4fSJeeja KP 
221f7590d4fSJeeja KP 	mcfg->obs = (mcfg->out_fmt.s_freq / 1000) *
222f7590d4fSJeeja KP 				(mcfg->out_fmt.channels) *
223f7590d4fSJeeja KP 				(mcfg->out_fmt.bit_depth >> 3) *
224f7590d4fSJeeja KP 				multiplier;
225f7590d4fSJeeja KP }
226f7590d4fSJeeja KP 
227f7590d4fSJeeja KP static void skl_tplg_update_module_params(struct snd_soc_dapm_widget *w,
228f7590d4fSJeeja KP 							struct skl_sst *ctx)
229f7590d4fSJeeja KP {
230f7590d4fSJeeja KP 	struct skl_module_cfg *m_cfg = w->priv;
231f7590d4fSJeeja KP 	struct skl_pipe_params *params = m_cfg->pipe->p_params;
232f7590d4fSJeeja KP 	int p_conn_type = m_cfg->pipe->conn_type;
233f7590d4fSJeeja KP 	bool is_fe;
234f7590d4fSJeeja KP 
235f7590d4fSJeeja KP 	if (!m_cfg->params_fixup)
236f7590d4fSJeeja KP 		return;
237f7590d4fSJeeja KP 
238f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "Mconfig for widget=%s BEFORE updation\n",
239f7590d4fSJeeja KP 				w->name);
240f7590d4fSJeeja KP 
241f7590d4fSJeeja KP 	skl_dump_mconfig(ctx, m_cfg);
242f7590d4fSJeeja KP 
243f7590d4fSJeeja KP 	if (p_conn_type == SKL_PIPE_CONN_TYPE_FE)
244f7590d4fSJeeja KP 		is_fe = true;
245f7590d4fSJeeja KP 	else
246f7590d4fSJeeja KP 		is_fe = false;
247f7590d4fSJeeja KP 
248f7590d4fSJeeja KP 	skl_tplg_update_params_fixup(m_cfg, params, is_fe);
249f7590d4fSJeeja KP 	skl_tplg_update_buffer_size(ctx, m_cfg);
250f7590d4fSJeeja KP 
251f7590d4fSJeeja KP 	dev_dbg(ctx->dev, "Mconfig for widget=%s AFTER updation\n",
252f7590d4fSJeeja KP 				w->name);
253f7590d4fSJeeja KP 
254f7590d4fSJeeja KP 	skl_dump_mconfig(ctx, m_cfg);
255f7590d4fSJeeja KP }
256f7590d4fSJeeja KP 
257e4e2d2f4SJeeja KP /*
258e4e2d2f4SJeeja KP  * A pipe can have multiple modules, each of them will be a DAPM widget as
259e4e2d2f4SJeeja KP  * well. While managing a pipeline we need to get the list of all the
260e4e2d2f4SJeeja KP  * widgets in a pipelines, so this helper - skl_tplg_get_pipe_widget() helps
261e4e2d2f4SJeeja KP  * to get the SKL type widgets in that pipeline
262e4e2d2f4SJeeja KP  */
263e4e2d2f4SJeeja KP static int skl_tplg_alloc_pipe_widget(struct device *dev,
264e4e2d2f4SJeeja KP 	struct snd_soc_dapm_widget *w, struct skl_pipe *pipe)
265e4e2d2f4SJeeja KP {
266e4e2d2f4SJeeja KP 	struct skl_module_cfg *src_module = NULL;
267e4e2d2f4SJeeja KP 	struct snd_soc_dapm_path *p = NULL;
268e4e2d2f4SJeeja KP 	struct skl_pipe_module *p_module = NULL;
269e4e2d2f4SJeeja KP 
270e4e2d2f4SJeeja KP 	p_module = devm_kzalloc(dev, sizeof(*p_module), GFP_KERNEL);
271e4e2d2f4SJeeja KP 	if (!p_module)
272e4e2d2f4SJeeja KP 		return -ENOMEM;
273e4e2d2f4SJeeja KP 
274e4e2d2f4SJeeja KP 	p_module->w = w;
275e4e2d2f4SJeeja KP 	list_add_tail(&p_module->node, &pipe->w_list);
276e4e2d2f4SJeeja KP 
277e4e2d2f4SJeeja KP 	snd_soc_dapm_widget_for_each_sink_path(w, p) {
278e4e2d2f4SJeeja KP 		if ((p->sink->priv == NULL)
279e4e2d2f4SJeeja KP 				&& (!is_skl_dsp_widget_type(w)))
280e4e2d2f4SJeeja KP 			continue;
281e4e2d2f4SJeeja KP 
282e4e2d2f4SJeeja KP 		if ((p->sink->priv != NULL) && p->connect
283e4e2d2f4SJeeja KP 				&& is_skl_dsp_widget_type(p->sink)) {
284e4e2d2f4SJeeja KP 
285e4e2d2f4SJeeja KP 			src_module = p->sink->priv;
286e4e2d2f4SJeeja KP 			if (pipe->ppl_id == src_module->pipe->ppl_id)
287e4e2d2f4SJeeja KP 				skl_tplg_alloc_pipe_widget(dev,
288e4e2d2f4SJeeja KP 							p->sink, pipe);
289e4e2d2f4SJeeja KP 		}
290e4e2d2f4SJeeja KP 	}
291e4e2d2f4SJeeja KP 	return 0;
292e4e2d2f4SJeeja KP }
293e4e2d2f4SJeeja KP 
294e4e2d2f4SJeeja KP /*
295e4e2d2f4SJeeja KP  * Inside a pipe instance, we can have various modules. These modules need
296e4e2d2f4SJeeja KP  * to instantiated in DSP by invoking INIT_MODULE IPC, which is achieved by
297e4e2d2f4SJeeja KP  * skl_init_module() routine, so invoke that for all modules in a pipeline
298e4e2d2f4SJeeja KP  */
299e4e2d2f4SJeeja KP static int
300e4e2d2f4SJeeja KP skl_tplg_init_pipe_modules(struct skl *skl, struct skl_pipe *pipe)
301e4e2d2f4SJeeja KP {
302e4e2d2f4SJeeja KP 	struct skl_pipe_module *w_module;
303e4e2d2f4SJeeja KP 	struct snd_soc_dapm_widget *w;
304e4e2d2f4SJeeja KP 	struct skl_module_cfg *mconfig;
305e4e2d2f4SJeeja KP 	struct skl_sst *ctx = skl->skl_sst;
306e4e2d2f4SJeeja KP 	int ret = 0;
307e4e2d2f4SJeeja KP 
308e4e2d2f4SJeeja KP 	list_for_each_entry(w_module, &pipe->w_list, node) {
309e4e2d2f4SJeeja KP 		w = w_module->w;
310e4e2d2f4SJeeja KP 		mconfig = w->priv;
311e4e2d2f4SJeeja KP 
312e4e2d2f4SJeeja KP 		/* check resource available */
313e4e2d2f4SJeeja KP 		if (!skl_tplg_alloc_pipe_mcps(skl, mconfig))
314e4e2d2f4SJeeja KP 			return -ENOMEM;
315e4e2d2f4SJeeja KP 
316f7590d4fSJeeja KP 		/*
317f7590d4fSJeeja KP 		 * apply fix/conversion to module params based on
318f7590d4fSJeeja KP 		 * FE/BE params
319f7590d4fSJeeja KP 		 */
320f7590d4fSJeeja KP 		skl_tplg_update_module_params(w, ctx);
321e4e2d2f4SJeeja KP 		ret = skl_init_module(ctx, mconfig, NULL);
322e4e2d2f4SJeeja KP 		if (ret < 0)
323e4e2d2f4SJeeja KP 			return ret;
324e4e2d2f4SJeeja KP 	}
325e4e2d2f4SJeeja KP 
326e4e2d2f4SJeeja KP 	return 0;
327e4e2d2f4SJeeja KP }
328d93f8e55SVinod Koul 
329d93f8e55SVinod Koul /*
330d93f8e55SVinod Koul  * Mixer module represents a pipeline. So in the Pre-PMU event of mixer we
331d93f8e55SVinod Koul  * need create the pipeline. So we do following:
332d93f8e55SVinod Koul  *   - check the resources
333d93f8e55SVinod Koul  *   - Create the pipeline
334d93f8e55SVinod Koul  *   - Initialize the modules in pipeline
335d93f8e55SVinod Koul  *   - finally bind all modules together
336d93f8e55SVinod Koul  */
337d93f8e55SVinod Koul static int skl_tplg_mixer_dapm_pre_pmu_event(struct snd_soc_dapm_widget *w,
338d93f8e55SVinod Koul 							struct skl *skl)
339d93f8e55SVinod Koul {
340d93f8e55SVinod Koul 	int ret;
341d93f8e55SVinod Koul 	struct skl_module_cfg *mconfig = w->priv;
342d93f8e55SVinod Koul 	struct skl_pipe_module *w_module;
343d93f8e55SVinod Koul 	struct skl_pipe *s_pipe = mconfig->pipe;
344d93f8e55SVinod Koul 	struct skl_module_cfg *src_module = NULL, *dst_module;
345d93f8e55SVinod Koul 	struct skl_sst *ctx = skl->skl_sst;
346d93f8e55SVinod Koul 
347d93f8e55SVinod Koul 	/* check resource available */
348d93f8e55SVinod Koul 	if (!skl_tplg_alloc_pipe_mcps(skl, mconfig))
349d93f8e55SVinod Koul 		return -EBUSY;
350d93f8e55SVinod Koul 
351d93f8e55SVinod Koul 	if (!skl_tplg_alloc_pipe_mem(skl, mconfig))
352d93f8e55SVinod Koul 		return -ENOMEM;
353d93f8e55SVinod Koul 
354d93f8e55SVinod Koul 	/*
355d93f8e55SVinod Koul 	 * Create a list of modules for pipe.
356d93f8e55SVinod Koul 	 * This list contains modules from source to sink
357d93f8e55SVinod Koul 	 */
358d93f8e55SVinod Koul 	ret = skl_create_pipeline(ctx, mconfig->pipe);
359d93f8e55SVinod Koul 	if (ret < 0)
360d93f8e55SVinod Koul 		return ret;
361d93f8e55SVinod Koul 
362d93f8e55SVinod Koul 	/*
363d93f8e55SVinod Koul 	 * we create a w_list of all widgets in that pipe. This list is not
364d93f8e55SVinod Koul 	 * freed on PMD event as widgets within a pipe are static. This
365d93f8e55SVinod Koul 	 * saves us cycles to get widgets in pipe every time.
366d93f8e55SVinod Koul 	 *
367d93f8e55SVinod Koul 	 * So if we have already initialized all the widgets of a pipeline
368d93f8e55SVinod Koul 	 * we skip, so check for list_empty and create the list if empty
369d93f8e55SVinod Koul 	 */
370d93f8e55SVinod Koul 	if (list_empty(&s_pipe->w_list)) {
371d93f8e55SVinod Koul 		ret = skl_tplg_alloc_pipe_widget(ctx->dev, w, s_pipe);
372d93f8e55SVinod Koul 		if (ret < 0)
373d93f8e55SVinod Koul 			return ret;
374d93f8e55SVinod Koul 	}
375d93f8e55SVinod Koul 
376d93f8e55SVinod Koul 	/* Init all pipe modules from source to sink */
377d93f8e55SVinod Koul 	ret = skl_tplg_init_pipe_modules(skl, s_pipe);
378d93f8e55SVinod Koul 	if (ret < 0)
379d93f8e55SVinod Koul 		return ret;
380d93f8e55SVinod Koul 
381d93f8e55SVinod Koul 	/* Bind modules from source to sink */
382d93f8e55SVinod Koul 	list_for_each_entry(w_module, &s_pipe->w_list, node) {
383d93f8e55SVinod Koul 		dst_module = w_module->w->priv;
384d93f8e55SVinod Koul 
385d93f8e55SVinod Koul 		if (src_module == NULL) {
386d93f8e55SVinod Koul 			src_module = dst_module;
387d93f8e55SVinod Koul 			continue;
388d93f8e55SVinod Koul 		}
389d93f8e55SVinod Koul 
390d93f8e55SVinod Koul 		ret = skl_bind_modules(ctx, src_module, dst_module);
391d93f8e55SVinod Koul 		if (ret < 0)
392d93f8e55SVinod Koul 			return ret;
393d93f8e55SVinod Koul 
394d93f8e55SVinod Koul 		src_module = dst_module;
395d93f8e55SVinod Koul 	}
396d93f8e55SVinod Koul 
397d93f8e55SVinod Koul 	return 0;
398d93f8e55SVinod Koul }
399d93f8e55SVinod Koul 
4008724ff17SJeeja KP static int skl_tplg_bind_sinks(struct snd_soc_dapm_widget *w,
4018724ff17SJeeja KP 				struct skl *skl,
4028724ff17SJeeja KP 				struct skl_module_cfg *src_mconfig)
403d93f8e55SVinod Koul {
404d93f8e55SVinod Koul 	struct snd_soc_dapm_path *p;
4058724ff17SJeeja KP 	struct snd_soc_dapm_widget *sink = NULL;
4068724ff17SJeeja KP 	struct skl_module_cfg *sink_mconfig;
407d93f8e55SVinod Koul 	struct skl_sst *ctx = skl->skl_sst;
4088724ff17SJeeja KP 	int ret;
409d93f8e55SVinod Koul 
4108724ff17SJeeja KP 	snd_soc_dapm_widget_for_each_sink_path(w, p) {
411d93f8e55SVinod Koul 		if (!p->connect)
412d93f8e55SVinod Koul 			continue;
413d93f8e55SVinod Koul 
414d93f8e55SVinod Koul 		dev_dbg(ctx->dev, "%s: src widget=%s\n", __func__, w->name);
415d93f8e55SVinod Koul 		dev_dbg(ctx->dev, "%s: sink widget=%s\n", __func__, p->sink->name);
416d93f8e55SVinod Koul 
4178724ff17SJeeja KP 		sink = p->sink;
418d93f8e55SVinod Koul 		/*
419d93f8e55SVinod Koul 		 * here we will check widgets in sink pipelines, so that
420d93f8e55SVinod Koul 		 * can be any widgets type and we are only interested if
421d93f8e55SVinod Koul 		 * they are ones used for SKL so check that first
422d93f8e55SVinod Koul 		 */
423d93f8e55SVinod Koul 		if ((p->sink->priv != NULL) &&
424d93f8e55SVinod Koul 					is_skl_dsp_widget_type(p->sink)) {
425d93f8e55SVinod Koul 
426d93f8e55SVinod Koul 			sink = p->sink;
427d93f8e55SVinod Koul 			sink_mconfig = sink->priv;
428d93f8e55SVinod Koul 
429d93f8e55SVinod Koul 			/* Bind source to sink, mixin is always source */
430d93f8e55SVinod Koul 			ret = skl_bind_modules(ctx, src_mconfig, sink_mconfig);
431d93f8e55SVinod Koul 			if (ret)
432d93f8e55SVinod Koul 				return ret;
433d93f8e55SVinod Koul 
434d93f8e55SVinod Koul 			/* Start sinks pipe first */
435d93f8e55SVinod Koul 			if (sink_mconfig->pipe->state != SKL_PIPE_STARTED) {
436*d1730c3dSJeeja KP 				if (sink_mconfig->pipe->conn_type !=
437*d1730c3dSJeeja KP 							SKL_PIPE_CONN_TYPE_FE)
438*d1730c3dSJeeja KP 					ret = skl_run_pipe(ctx,
439*d1730c3dSJeeja KP 							sink_mconfig->pipe);
440d93f8e55SVinod Koul 				if (ret)
441d93f8e55SVinod Koul 					return ret;
442d93f8e55SVinod Koul 			}
443d93f8e55SVinod Koul 		}
444d93f8e55SVinod Koul 	}
445d93f8e55SVinod Koul 
4468724ff17SJeeja KP 	if (!sink)
4478724ff17SJeeja KP 		return skl_tplg_bind_sinks(sink, skl, src_mconfig);
4488724ff17SJeeja KP 
4498724ff17SJeeja KP 	return 0;
4508724ff17SJeeja KP }
4518724ff17SJeeja KP 
4528724ff17SJeeja KP /*
4538724ff17SJeeja KP  * A PGA represents a module in a pipeline. So in the Pre-PMU event of PGA
4548724ff17SJeeja KP  * we need to do following:
4558724ff17SJeeja KP  *   - Bind to sink pipeline
4568724ff17SJeeja KP  *      Since the sink pipes can be running and we don't get mixer event on
4578724ff17SJeeja KP  *      connect for already running mixer, we need to find the sink pipes
4588724ff17SJeeja KP  *      here and bind to them. This way dynamic connect works.
4598724ff17SJeeja KP  *   - Start sink pipeline, if not running
4608724ff17SJeeja KP  *   - Then run current pipe
4618724ff17SJeeja KP  */
4628724ff17SJeeja KP static int skl_tplg_pga_dapm_pre_pmu_event(struct snd_soc_dapm_widget *w,
4638724ff17SJeeja KP 								struct skl *skl)
4648724ff17SJeeja KP {
4658724ff17SJeeja KP 	struct skl_module_cfg *src_mconfig;
4668724ff17SJeeja KP 	struct skl_sst *ctx = skl->skl_sst;
4678724ff17SJeeja KP 	int ret = 0;
4688724ff17SJeeja KP 
4698724ff17SJeeja KP 	src_mconfig = w->priv;
4708724ff17SJeeja KP 
4718724ff17SJeeja KP 	/*
4728724ff17SJeeja KP 	 * find which sink it is connected to, bind with the sink,
4738724ff17SJeeja KP 	 * if sink is not started, start sink pipe first, then start
4748724ff17SJeeja KP 	 * this pipe
4758724ff17SJeeja KP 	 */
4768724ff17SJeeja KP 	ret = skl_tplg_bind_sinks(w, skl, src_mconfig);
4778724ff17SJeeja KP 	if (ret)
4788724ff17SJeeja KP 		return ret;
4798724ff17SJeeja KP 
480d93f8e55SVinod Koul 	/* Start source pipe last after starting all sinks */
481*d1730c3dSJeeja KP 	if (src_mconfig->pipe->conn_type != SKL_PIPE_CONN_TYPE_FE)
482*d1730c3dSJeeja KP 		return skl_run_pipe(ctx, src_mconfig->pipe);
483d93f8e55SVinod Koul 
484d93f8e55SVinod Koul 	return 0;
485d93f8e55SVinod Koul }
486d93f8e55SVinod Koul 
4878724ff17SJeeja KP static struct snd_soc_dapm_widget *skl_get_src_dsp_widget(
4888724ff17SJeeja KP 		struct snd_soc_dapm_widget *w, struct skl *skl)
4898724ff17SJeeja KP {
4908724ff17SJeeja KP 	struct snd_soc_dapm_path *p;
4918724ff17SJeeja KP 	struct snd_soc_dapm_widget *src_w = NULL;
4928724ff17SJeeja KP 	struct skl_sst *ctx = skl->skl_sst;
4938724ff17SJeeja KP 
4948724ff17SJeeja KP 	snd_soc_dapm_widget_for_each_source_path(w, p) {
4958724ff17SJeeja KP 		src_w = p->source;
4968724ff17SJeeja KP 		if (!p->connect)
4978724ff17SJeeja KP 			continue;
4988724ff17SJeeja KP 
4998724ff17SJeeja KP 		dev_dbg(ctx->dev, "sink widget=%s\n", w->name);
5008724ff17SJeeja KP 		dev_dbg(ctx->dev, "src widget=%s\n", p->source->name);
5018724ff17SJeeja KP 
5028724ff17SJeeja KP 		/*
5038724ff17SJeeja KP 		 * here we will check widgets in sink pipelines, so that can
5048724ff17SJeeja KP 		 * be any widgets type and we are only interested if they are
5058724ff17SJeeja KP 		 * ones used for SKL so check that first
5068724ff17SJeeja KP 		 */
5078724ff17SJeeja KP 		if ((p->source->priv != NULL) &&
5088724ff17SJeeja KP 					is_skl_dsp_widget_type(p->source)) {
5098724ff17SJeeja KP 			return p->source;
5108724ff17SJeeja KP 		}
5118724ff17SJeeja KP 	}
5128724ff17SJeeja KP 
5138724ff17SJeeja KP 	if (src_w != NULL)
5148724ff17SJeeja KP 		return skl_get_src_dsp_widget(src_w, skl);
5158724ff17SJeeja KP 
5168724ff17SJeeja KP 	return NULL;
5178724ff17SJeeja KP }
5188724ff17SJeeja KP 
519d93f8e55SVinod Koul /*
520d93f8e55SVinod Koul  * in the Post-PMU event of mixer we need to do following:
521d93f8e55SVinod Koul  *   - Check if this pipe is running
522d93f8e55SVinod Koul  *   - if not, then
523d93f8e55SVinod Koul  *	- bind this pipeline to its source pipeline
524d93f8e55SVinod Koul  *	  if source pipe is already running, this means it is a dynamic
525d93f8e55SVinod Koul  *	  connection and we need to bind only to that pipe
526d93f8e55SVinod Koul  *	- start this pipeline
527d93f8e55SVinod Koul  */
528d93f8e55SVinod Koul static int skl_tplg_mixer_dapm_post_pmu_event(struct snd_soc_dapm_widget *w,
529d93f8e55SVinod Koul 							struct skl *skl)
530d93f8e55SVinod Koul {
531d93f8e55SVinod Koul 	int ret = 0;
532d93f8e55SVinod Koul 	struct snd_soc_dapm_widget *source, *sink;
533d93f8e55SVinod Koul 	struct skl_module_cfg *src_mconfig, *sink_mconfig;
534d93f8e55SVinod Koul 	struct skl_sst *ctx = skl->skl_sst;
535d93f8e55SVinod Koul 	int src_pipe_started = 0;
536d93f8e55SVinod Koul 
537d93f8e55SVinod Koul 	sink = w;
538d93f8e55SVinod Koul 	sink_mconfig = sink->priv;
539d93f8e55SVinod Koul 
540d93f8e55SVinod Koul 	/*
541d93f8e55SVinod Koul 	 * If source pipe is already started, that means source is driving
542d93f8e55SVinod Koul 	 * one more sink before this sink got connected, Since source is
543d93f8e55SVinod Koul 	 * started, bind this sink to source and start this pipe.
544d93f8e55SVinod Koul 	 */
5458724ff17SJeeja KP 	source = skl_get_src_dsp_widget(w, skl);
5468724ff17SJeeja KP 	if (source != NULL) {
547d93f8e55SVinod Koul 		src_mconfig = source->priv;
548d93f8e55SVinod Koul 		sink_mconfig = sink->priv;
549d93f8e55SVinod Koul 		src_pipe_started = 1;
550d93f8e55SVinod Koul 
551d93f8e55SVinod Koul 		/*
5528724ff17SJeeja KP 		 * check pipe state, then no need to bind or start the
5538724ff17SJeeja KP 		 * pipe
554d93f8e55SVinod Koul 		 */
555d93f8e55SVinod Koul 		if (src_mconfig->pipe->state != SKL_PIPE_STARTED)
556d93f8e55SVinod Koul 			src_pipe_started = 0;
557d93f8e55SVinod Koul 	}
558d93f8e55SVinod Koul 
559d93f8e55SVinod Koul 	if (src_pipe_started) {
560d93f8e55SVinod Koul 		ret = skl_bind_modules(ctx, src_mconfig, sink_mconfig);
561d93f8e55SVinod Koul 		if (ret)
562d93f8e55SVinod Koul 			return ret;
563d93f8e55SVinod Koul 
564*d1730c3dSJeeja KP 		if (sink_mconfig->pipe->conn_type != SKL_PIPE_CONN_TYPE_FE)
565d93f8e55SVinod Koul 			ret = skl_run_pipe(ctx, sink_mconfig->pipe);
566d93f8e55SVinod Koul 	}
567d93f8e55SVinod Koul 
568d93f8e55SVinod Koul 	return ret;
569d93f8e55SVinod Koul }
570d93f8e55SVinod Koul 
571d93f8e55SVinod Koul /*
572d93f8e55SVinod Koul  * in the Pre-PMD event of mixer we need to do following:
573d93f8e55SVinod Koul  *   - Stop the pipe
574d93f8e55SVinod Koul  *   - find the source connections and remove that from dapm_path_list
575d93f8e55SVinod Koul  *   - unbind with source pipelines if still connected
576d93f8e55SVinod Koul  */
577d93f8e55SVinod Koul static int skl_tplg_mixer_dapm_pre_pmd_event(struct snd_soc_dapm_widget *w,
578d93f8e55SVinod Koul 							struct skl *skl)
579d93f8e55SVinod Koul {
580d93f8e55SVinod Koul 	struct skl_module_cfg *src_mconfig, *sink_mconfig;
581ce1b5551SJeeja KP 	int ret = 0, i;
582d93f8e55SVinod Koul 	struct skl_sst *ctx = skl->skl_sst;
583d93f8e55SVinod Koul 
584ce1b5551SJeeja KP 	sink_mconfig = w->priv;
585d93f8e55SVinod Koul 
586d93f8e55SVinod Koul 	/* Stop the pipe */
587d93f8e55SVinod Koul 	ret = skl_stop_pipe(ctx, sink_mconfig->pipe);
588d93f8e55SVinod Koul 	if (ret)
589d93f8e55SVinod Koul 		return ret;
590d93f8e55SVinod Koul 
591ce1b5551SJeeja KP 	for (i = 0; i < sink_mconfig->max_in_queue; i++) {
592ce1b5551SJeeja KP 		if (sink_mconfig->m_in_pin[i].pin_state == SKL_PIN_BIND_DONE) {
593ce1b5551SJeeja KP 			src_mconfig = sink_mconfig->m_in_pin[i].tgt_mcfg;
594ce1b5551SJeeja KP 			if (!src_mconfig)
595ce1b5551SJeeja KP 				continue;
596d93f8e55SVinod Koul 			/*
597ce1b5551SJeeja KP 			 * If path_found == 1, that means pmd for source
598ce1b5551SJeeja KP 			 * pipe has not occurred, source is connected to
599ce1b5551SJeeja KP 			 * some other sink. so its responsibility of sink
600ce1b5551SJeeja KP 			 * to unbind itself from source.
601d93f8e55SVinod Koul 			 */
602d93f8e55SVinod Koul 			ret = skl_stop_pipe(ctx, src_mconfig->pipe);
603d93f8e55SVinod Koul 			if (ret < 0)
604d93f8e55SVinod Koul 				return ret;
605d93f8e55SVinod Koul 
606ce1b5551SJeeja KP 			ret = skl_unbind_modules(ctx,
607ce1b5551SJeeja KP 						src_mconfig, sink_mconfig);
608ce1b5551SJeeja KP 		}
609d93f8e55SVinod Koul 	}
610d93f8e55SVinod Koul 
611d93f8e55SVinod Koul 	return ret;
612d93f8e55SVinod Koul }
613d93f8e55SVinod Koul 
614d93f8e55SVinod Koul /*
615d93f8e55SVinod Koul  * in the Post-PMD event of mixer we need to do following:
616d93f8e55SVinod Koul  *   - Free the mcps used
617d93f8e55SVinod Koul  *   - Free the mem used
618d93f8e55SVinod Koul  *   - Unbind the modules within the pipeline
619d93f8e55SVinod Koul  *   - Delete the pipeline (modules are not required to be explicitly
620d93f8e55SVinod Koul  *     deleted, pipeline delete is enough here
621d93f8e55SVinod Koul  */
622d93f8e55SVinod Koul static int skl_tplg_mixer_dapm_post_pmd_event(struct snd_soc_dapm_widget *w,
623d93f8e55SVinod Koul 							struct skl *skl)
624d93f8e55SVinod Koul {
625d93f8e55SVinod Koul 	struct skl_module_cfg *mconfig = w->priv;
626d93f8e55SVinod Koul 	struct skl_pipe_module *w_module;
627d93f8e55SVinod Koul 	struct skl_module_cfg *src_module = NULL, *dst_module;
628d93f8e55SVinod Koul 	struct skl_sst *ctx = skl->skl_sst;
629d93f8e55SVinod Koul 	struct skl_pipe *s_pipe = mconfig->pipe;
630d93f8e55SVinod Koul 	int ret = 0;
631d93f8e55SVinod Koul 
632d93f8e55SVinod Koul 	skl_tplg_free_pipe_mcps(skl, mconfig);
633d93f8e55SVinod Koul 
634d93f8e55SVinod Koul 	list_for_each_entry(w_module, &s_pipe->w_list, node) {
635d93f8e55SVinod Koul 		dst_module = w_module->w->priv;
636d93f8e55SVinod Koul 
637d93f8e55SVinod Koul 		if (src_module == NULL) {
638d93f8e55SVinod Koul 			src_module = dst_module;
639d93f8e55SVinod Koul 			continue;
640d93f8e55SVinod Koul 		}
641d93f8e55SVinod Koul 
642d93f8e55SVinod Koul 		ret = skl_unbind_modules(ctx, src_module, dst_module);
643d93f8e55SVinod Koul 		if (ret < 0)
644d93f8e55SVinod Koul 			return ret;
645d93f8e55SVinod Koul 
646d93f8e55SVinod Koul 		src_module = dst_module;
647d93f8e55SVinod Koul 	}
648d93f8e55SVinod Koul 
649d93f8e55SVinod Koul 	ret = skl_delete_pipe(ctx, mconfig->pipe);
650d93f8e55SVinod Koul 	skl_tplg_free_pipe_mem(skl, mconfig);
651d93f8e55SVinod Koul 
652d93f8e55SVinod Koul 	return ret;
653d93f8e55SVinod Koul }
654d93f8e55SVinod Koul 
655d93f8e55SVinod Koul /*
656d93f8e55SVinod Koul  * in the Post-PMD event of PGA we need to do following:
657d93f8e55SVinod Koul  *   - Free the mcps used
658d93f8e55SVinod Koul  *   - Stop the pipeline
659d93f8e55SVinod Koul  *   - In source pipe is connected, unbind with source pipelines
660d93f8e55SVinod Koul  */
661d93f8e55SVinod Koul static int skl_tplg_pga_dapm_post_pmd_event(struct snd_soc_dapm_widget *w,
662d93f8e55SVinod Koul 								struct skl *skl)
663d93f8e55SVinod Koul {
664d93f8e55SVinod Koul 	struct skl_module_cfg *src_mconfig, *sink_mconfig;
665ce1b5551SJeeja KP 	int ret = 0, i;
666d93f8e55SVinod Koul 	struct skl_sst *ctx = skl->skl_sst;
667d93f8e55SVinod Koul 
668ce1b5551SJeeja KP 	src_mconfig = w->priv;
669d93f8e55SVinod Koul 
670d93f8e55SVinod Koul 	skl_tplg_free_pipe_mcps(skl, src_mconfig);
671d93f8e55SVinod Koul 	/* Stop the pipe since this is a mixin module */
672d93f8e55SVinod Koul 	ret = skl_stop_pipe(ctx, src_mconfig->pipe);
673d93f8e55SVinod Koul 	if (ret)
674d93f8e55SVinod Koul 		return ret;
675d93f8e55SVinod Koul 
676ce1b5551SJeeja KP 	for (i = 0; i < src_mconfig->max_out_queue; i++) {
677ce1b5551SJeeja KP 		if (src_mconfig->m_out_pin[i].pin_state == SKL_PIN_BIND_DONE) {
678ce1b5551SJeeja KP 			sink_mconfig = src_mconfig->m_out_pin[i].tgt_mcfg;
679ce1b5551SJeeja KP 			if (!sink_mconfig)
680ce1b5551SJeeja KP 				continue;
681d93f8e55SVinod Koul 			/*
682ce1b5551SJeeja KP 			 * This is a connecter and if path is found that means
683d93f8e55SVinod Koul 			 * unbind between source and sink has not happened yet
684d93f8e55SVinod Koul 			 */
685ce1b5551SJeeja KP 			ret = skl_stop_pipe(ctx, sink_mconfig->pipe);
686d93f8e55SVinod Koul 			if (ret < 0)
687d93f8e55SVinod Koul 				return ret;
688ce1b5551SJeeja KP 			ret = skl_unbind_modules(ctx, src_mconfig,
689ce1b5551SJeeja KP 							sink_mconfig);
690ce1b5551SJeeja KP 		}
691d93f8e55SVinod Koul 	}
692d93f8e55SVinod Koul 
693d93f8e55SVinod Koul 	return ret;
694d93f8e55SVinod Koul }
695d93f8e55SVinod Koul 
696d93f8e55SVinod Koul /*
697d93f8e55SVinod Koul  * In modelling, we assume there will be ONLY one mixer in a pipeline.  If
698d93f8e55SVinod Koul  * mixer is not required then it is treated as static mixer aka vmixer with
699d93f8e55SVinod Koul  * a hard path to source module
700d93f8e55SVinod Koul  * So we don't need to check if source is started or not as hard path puts
701d93f8e55SVinod Koul  * dependency on each other
702d93f8e55SVinod Koul  */
703d93f8e55SVinod Koul static int skl_tplg_vmixer_event(struct snd_soc_dapm_widget *w,
704d93f8e55SVinod Koul 				struct snd_kcontrol *k, int event)
705d93f8e55SVinod Koul {
706d93f8e55SVinod Koul 	struct snd_soc_dapm_context *dapm = w->dapm;
707d93f8e55SVinod Koul 	struct skl *skl = get_skl_ctx(dapm->dev);
708d93f8e55SVinod Koul 
709d93f8e55SVinod Koul 	switch (event) {
710d93f8e55SVinod Koul 	case SND_SOC_DAPM_PRE_PMU:
711d93f8e55SVinod Koul 		return skl_tplg_mixer_dapm_pre_pmu_event(w, skl);
712d93f8e55SVinod Koul 
713d93f8e55SVinod Koul 	case SND_SOC_DAPM_POST_PMD:
714d93f8e55SVinod Koul 		return skl_tplg_mixer_dapm_post_pmd_event(w, skl);
715d93f8e55SVinod Koul 	}
716d93f8e55SVinod Koul 
717d93f8e55SVinod Koul 	return 0;
718d93f8e55SVinod Koul }
719d93f8e55SVinod Koul 
720d93f8e55SVinod Koul /*
721d93f8e55SVinod Koul  * In modelling, we assume there will be ONLY one mixer in a pipeline. If a
722d93f8e55SVinod Koul  * second one is required that is created as another pipe entity.
723d93f8e55SVinod Koul  * The mixer is responsible for pipe management and represent a pipeline
724d93f8e55SVinod Koul  * instance
725d93f8e55SVinod Koul  */
726d93f8e55SVinod Koul static int skl_tplg_mixer_event(struct snd_soc_dapm_widget *w,
727d93f8e55SVinod Koul 				struct snd_kcontrol *k, int event)
728d93f8e55SVinod Koul {
729d93f8e55SVinod Koul 	struct snd_soc_dapm_context *dapm = w->dapm;
730d93f8e55SVinod Koul 	struct skl *skl = get_skl_ctx(dapm->dev);
731d93f8e55SVinod Koul 
732d93f8e55SVinod Koul 	switch (event) {
733d93f8e55SVinod Koul 	case SND_SOC_DAPM_PRE_PMU:
734d93f8e55SVinod Koul 		return skl_tplg_mixer_dapm_pre_pmu_event(w, skl);
735d93f8e55SVinod Koul 
736d93f8e55SVinod Koul 	case SND_SOC_DAPM_POST_PMU:
737d93f8e55SVinod Koul 		return skl_tplg_mixer_dapm_post_pmu_event(w, skl);
738d93f8e55SVinod Koul 
739d93f8e55SVinod Koul 	case SND_SOC_DAPM_PRE_PMD:
740d93f8e55SVinod Koul 		return skl_tplg_mixer_dapm_pre_pmd_event(w, skl);
741d93f8e55SVinod Koul 
742d93f8e55SVinod Koul 	case SND_SOC_DAPM_POST_PMD:
743d93f8e55SVinod Koul 		return skl_tplg_mixer_dapm_post_pmd_event(w, skl);
744d93f8e55SVinod Koul 	}
745d93f8e55SVinod Koul 
746d93f8e55SVinod Koul 	return 0;
747d93f8e55SVinod Koul }
748d93f8e55SVinod Koul 
749d93f8e55SVinod Koul /*
750d93f8e55SVinod Koul  * In modelling, we assumed rest of the modules in pipeline are PGA. But we
751d93f8e55SVinod Koul  * are interested in last PGA (leaf PGA) in a pipeline to disconnect with
752d93f8e55SVinod Koul  * the sink when it is running (two FE to one BE or one FE to two BE)
753d93f8e55SVinod Koul  * scenarios
754d93f8e55SVinod Koul  */
755d93f8e55SVinod Koul static int skl_tplg_pga_event(struct snd_soc_dapm_widget *w,
756d93f8e55SVinod Koul 			struct snd_kcontrol *k, int event)
757d93f8e55SVinod Koul 
758d93f8e55SVinod Koul {
759d93f8e55SVinod Koul 	struct snd_soc_dapm_context *dapm = w->dapm;
760d93f8e55SVinod Koul 	struct skl *skl = get_skl_ctx(dapm->dev);
761d93f8e55SVinod Koul 
762d93f8e55SVinod Koul 	switch (event) {
763d93f8e55SVinod Koul 	case SND_SOC_DAPM_PRE_PMU:
764d93f8e55SVinod Koul 		return skl_tplg_pga_dapm_pre_pmu_event(w, skl);
765d93f8e55SVinod Koul 
766d93f8e55SVinod Koul 	case SND_SOC_DAPM_POST_PMD:
767d93f8e55SVinod Koul 		return skl_tplg_pga_dapm_post_pmd_event(w, skl);
768d93f8e55SVinod Koul 	}
769d93f8e55SVinod Koul 
770d93f8e55SVinod Koul 	return 0;
771d93f8e55SVinod Koul }
772cfb0a873SVinod Koul 
773cfb0a873SVinod Koul /*
774cfb0a873SVinod Koul  * The FE params are passed by hw_params of the DAI.
775cfb0a873SVinod Koul  * On hw_params, the params are stored in Gateway module of the FE and we
776cfb0a873SVinod Koul  * need to calculate the format in DSP module configuration, that
777cfb0a873SVinod Koul  * conversion is done here
778cfb0a873SVinod Koul  */
779cfb0a873SVinod Koul int skl_tplg_update_pipe_params(struct device *dev,
780cfb0a873SVinod Koul 			struct skl_module_cfg *mconfig,
781cfb0a873SVinod Koul 			struct skl_pipe_params *params)
782cfb0a873SVinod Koul {
783cfb0a873SVinod Koul 	struct skl_pipe *pipe = mconfig->pipe;
784cfb0a873SVinod Koul 	struct skl_module_fmt *format = NULL;
785cfb0a873SVinod Koul 
786cfb0a873SVinod Koul 	memcpy(pipe->p_params, params, sizeof(*params));
787cfb0a873SVinod Koul 
788cfb0a873SVinod Koul 	if (params->stream == SNDRV_PCM_STREAM_PLAYBACK)
789cfb0a873SVinod Koul 		format = &mconfig->in_fmt;
790cfb0a873SVinod Koul 	else
791cfb0a873SVinod Koul 		format = &mconfig->out_fmt;
792cfb0a873SVinod Koul 
793cfb0a873SVinod Koul 	/* set the hw_params */
794cfb0a873SVinod Koul 	format->s_freq = params->s_freq;
795cfb0a873SVinod Koul 	format->channels = params->ch;
796cfb0a873SVinod Koul 	format->valid_bit_depth = skl_get_bit_depth(params->s_fmt);
797cfb0a873SVinod Koul 
798cfb0a873SVinod Koul 	/*
799cfb0a873SVinod Koul 	 * 16 bit is 16 bit container whereas 24 bit is in 32 bit
800cfb0a873SVinod Koul 	 * container so update bit depth accordingly
801cfb0a873SVinod Koul 	 */
802cfb0a873SVinod Koul 	switch (format->valid_bit_depth) {
803cfb0a873SVinod Koul 	case SKL_DEPTH_16BIT:
804cfb0a873SVinod Koul 		format->bit_depth = format->valid_bit_depth;
805cfb0a873SVinod Koul 		break;
806cfb0a873SVinod Koul 
807cfb0a873SVinod Koul 	case SKL_DEPTH_24BIT:
8086654f39eSJeeja KP 	case SKL_DEPTH_32BIT:
809cfb0a873SVinod Koul 		format->bit_depth = SKL_DEPTH_32BIT;
810cfb0a873SVinod Koul 		break;
811cfb0a873SVinod Koul 
812cfb0a873SVinod Koul 	default:
813cfb0a873SVinod Koul 		dev_err(dev, "Invalid bit depth %x for pipe\n",
814cfb0a873SVinod Koul 				format->valid_bit_depth);
815cfb0a873SVinod Koul 		return -EINVAL;
816cfb0a873SVinod Koul 	}
817cfb0a873SVinod Koul 
818cfb0a873SVinod Koul 	if (params->stream == SNDRV_PCM_STREAM_PLAYBACK) {
819cfb0a873SVinod Koul 		mconfig->ibs = (format->s_freq / 1000) *
820cfb0a873SVinod Koul 				(format->channels) *
821cfb0a873SVinod Koul 				(format->bit_depth >> 3);
822cfb0a873SVinod Koul 	} else {
823cfb0a873SVinod Koul 		mconfig->obs = (format->s_freq / 1000) *
824cfb0a873SVinod Koul 				(format->channels) *
825cfb0a873SVinod Koul 				(format->bit_depth >> 3);
826cfb0a873SVinod Koul 	}
827cfb0a873SVinod Koul 
828cfb0a873SVinod Koul 	return 0;
829cfb0a873SVinod Koul }
830cfb0a873SVinod Koul 
831cfb0a873SVinod Koul /*
832cfb0a873SVinod Koul  * Query the module config for the FE DAI
833cfb0a873SVinod Koul  * This is used to find the hw_params set for that DAI and apply to FE
834cfb0a873SVinod Koul  * pipeline
835cfb0a873SVinod Koul  */
836cfb0a873SVinod Koul struct skl_module_cfg *
837cfb0a873SVinod Koul skl_tplg_fe_get_cpr_module(struct snd_soc_dai *dai, int stream)
838cfb0a873SVinod Koul {
839cfb0a873SVinod Koul 	struct snd_soc_dapm_widget *w;
840cfb0a873SVinod Koul 	struct snd_soc_dapm_path *p = NULL;
841cfb0a873SVinod Koul 
842cfb0a873SVinod Koul 	if (stream == SNDRV_PCM_STREAM_PLAYBACK) {
843cfb0a873SVinod Koul 		w = dai->playback_widget;
844f0900eb2SSubhransu S. Prusty 		snd_soc_dapm_widget_for_each_sink_path(w, p) {
845cfb0a873SVinod Koul 			if (p->connect && p->sink->power &&
846a28f51dbSJeeja KP 					!is_skl_dsp_widget_type(p->sink))
847cfb0a873SVinod Koul 				continue;
848cfb0a873SVinod Koul 
849cfb0a873SVinod Koul 			if (p->sink->priv) {
850cfb0a873SVinod Koul 				dev_dbg(dai->dev, "set params for %s\n",
851cfb0a873SVinod Koul 						p->sink->name);
852cfb0a873SVinod Koul 				return p->sink->priv;
853cfb0a873SVinod Koul 			}
854cfb0a873SVinod Koul 		}
855cfb0a873SVinod Koul 	} else {
856cfb0a873SVinod Koul 		w = dai->capture_widget;
857f0900eb2SSubhransu S. Prusty 		snd_soc_dapm_widget_for_each_source_path(w, p) {
858cfb0a873SVinod Koul 			if (p->connect && p->source->power &&
859a28f51dbSJeeja KP 					!is_skl_dsp_widget_type(p->source))
860cfb0a873SVinod Koul 				continue;
861cfb0a873SVinod Koul 
862cfb0a873SVinod Koul 			if (p->source->priv) {
863cfb0a873SVinod Koul 				dev_dbg(dai->dev, "set params for %s\n",
864cfb0a873SVinod Koul 						p->source->name);
865cfb0a873SVinod Koul 				return p->source->priv;
866cfb0a873SVinod Koul 			}
867cfb0a873SVinod Koul 		}
868cfb0a873SVinod Koul 	}
869cfb0a873SVinod Koul 
870cfb0a873SVinod Koul 	return NULL;
871cfb0a873SVinod Koul }
872cfb0a873SVinod Koul 
873cfb0a873SVinod Koul static u8 skl_tplg_be_link_type(int dev_type)
874cfb0a873SVinod Koul {
875cfb0a873SVinod Koul 	int ret;
876cfb0a873SVinod Koul 
877cfb0a873SVinod Koul 	switch (dev_type) {
878cfb0a873SVinod Koul 	case SKL_DEVICE_BT:
879cfb0a873SVinod Koul 		ret = NHLT_LINK_SSP;
880cfb0a873SVinod Koul 		break;
881cfb0a873SVinod Koul 
882cfb0a873SVinod Koul 	case SKL_DEVICE_DMIC:
883cfb0a873SVinod Koul 		ret = NHLT_LINK_DMIC;
884cfb0a873SVinod Koul 		break;
885cfb0a873SVinod Koul 
886cfb0a873SVinod Koul 	case SKL_DEVICE_I2S:
887cfb0a873SVinod Koul 		ret = NHLT_LINK_SSP;
888cfb0a873SVinod Koul 		break;
889cfb0a873SVinod Koul 
890cfb0a873SVinod Koul 	case SKL_DEVICE_HDALINK:
891cfb0a873SVinod Koul 		ret = NHLT_LINK_HDA;
892cfb0a873SVinod Koul 		break;
893cfb0a873SVinod Koul 
894cfb0a873SVinod Koul 	default:
895cfb0a873SVinod Koul 		ret = NHLT_LINK_INVALID;
896cfb0a873SVinod Koul 		break;
897cfb0a873SVinod Koul 	}
898cfb0a873SVinod Koul 
899cfb0a873SVinod Koul 	return ret;
900cfb0a873SVinod Koul }
901cfb0a873SVinod Koul 
902cfb0a873SVinod Koul /*
903cfb0a873SVinod Koul  * Fill the BE gateway parameters
904cfb0a873SVinod Koul  * The BE gateway expects a blob of parameters which are kept in the ACPI
905cfb0a873SVinod Koul  * NHLT blob, so query the blob for interface type (i2s/pdm) and instance.
906cfb0a873SVinod Koul  * The port can have multiple settings so pick based on the PCM
907cfb0a873SVinod Koul  * parameters
908cfb0a873SVinod Koul  */
909cfb0a873SVinod Koul static int skl_tplg_be_fill_pipe_params(struct snd_soc_dai *dai,
910cfb0a873SVinod Koul 				struct skl_module_cfg *mconfig,
911cfb0a873SVinod Koul 				struct skl_pipe_params *params)
912cfb0a873SVinod Koul {
913cfb0a873SVinod Koul 	struct skl_pipe *pipe = mconfig->pipe;
914cfb0a873SVinod Koul 	struct nhlt_specific_cfg *cfg;
915cfb0a873SVinod Koul 	struct skl *skl = get_skl_ctx(dai->dev);
916cfb0a873SVinod Koul 	int link_type = skl_tplg_be_link_type(mconfig->dev_type);
917cfb0a873SVinod Koul 
918cfb0a873SVinod Koul 	memcpy(pipe->p_params, params, sizeof(*params));
919cfb0a873SVinod Koul 
920b30c275eSJeeja KP 	if (link_type == NHLT_LINK_HDA)
921b30c275eSJeeja KP 		return 0;
922b30c275eSJeeja KP 
923cfb0a873SVinod Koul 	/* update the blob based on virtual bus_id*/
924cfb0a873SVinod Koul 	cfg = skl_get_ep_blob(skl, mconfig->vbus_id, link_type,
925cfb0a873SVinod Koul 					params->s_fmt, params->ch,
926cfb0a873SVinod Koul 					params->s_freq, params->stream);
927cfb0a873SVinod Koul 	if (cfg) {
928cfb0a873SVinod Koul 		mconfig->formats_config.caps_size = cfg->size;
929bc03281aSJeeja KP 		mconfig->formats_config.caps = (u32 *) &cfg->caps;
930cfb0a873SVinod Koul 	} else {
931cfb0a873SVinod Koul 		dev_err(dai->dev, "Blob NULL for id %x type %d dirn %d\n",
932cfb0a873SVinod Koul 					mconfig->vbus_id, link_type,
933cfb0a873SVinod Koul 					params->stream);
934cfb0a873SVinod Koul 		dev_err(dai->dev, "PCM: ch %d, freq %d, fmt %d\n",
935cfb0a873SVinod Koul 				 params->ch, params->s_freq, params->s_fmt);
936cfb0a873SVinod Koul 		return -EINVAL;
937cfb0a873SVinod Koul 	}
938cfb0a873SVinod Koul 
939cfb0a873SVinod Koul 	return 0;
940cfb0a873SVinod Koul }
941cfb0a873SVinod Koul 
942cfb0a873SVinod Koul static int skl_tplg_be_set_src_pipe_params(struct snd_soc_dai *dai,
943cfb0a873SVinod Koul 				struct snd_soc_dapm_widget *w,
944cfb0a873SVinod Koul 				struct skl_pipe_params *params)
945cfb0a873SVinod Koul {
946cfb0a873SVinod Koul 	struct snd_soc_dapm_path *p;
9474d8adccbSSubhransu S. Prusty 	int ret = -EIO;
948cfb0a873SVinod Koul 
949f0900eb2SSubhransu S. Prusty 	snd_soc_dapm_widget_for_each_source_path(w, p) {
950cfb0a873SVinod Koul 		if (p->connect && is_skl_dsp_widget_type(p->source) &&
951cfb0a873SVinod Koul 						p->source->priv) {
952cfb0a873SVinod Koul 
9534d8adccbSSubhransu S. Prusty 			if (!p->source->power) {
9544d8adccbSSubhransu S. Prusty 				ret = skl_tplg_be_fill_pipe_params(
955cfb0a873SVinod Koul 						dai, p->source->priv,
956cfb0a873SVinod Koul 						params);
9574d8adccbSSubhransu S. Prusty 				if (ret < 0)
9584d8adccbSSubhransu S. Prusty 					return ret;
959cfb0a873SVinod Koul 			} else {
9604d8adccbSSubhransu S. Prusty 				return -EBUSY;
9614d8adccbSSubhransu S. Prusty 			}
9624d8adccbSSubhransu S. Prusty 		} else {
9634d8adccbSSubhransu S. Prusty 			ret = skl_tplg_be_set_src_pipe_params(
964cfb0a873SVinod Koul 						dai, p->source,	params);
9654d8adccbSSubhransu S. Prusty 			if (ret < 0)
9664d8adccbSSubhransu S. Prusty 				return ret;
967cfb0a873SVinod Koul 		}
968cfb0a873SVinod Koul 	}
969cfb0a873SVinod Koul 
9704d8adccbSSubhransu S. Prusty 	return ret;
971cfb0a873SVinod Koul }
972cfb0a873SVinod Koul 
973cfb0a873SVinod Koul static int skl_tplg_be_set_sink_pipe_params(struct snd_soc_dai *dai,
974cfb0a873SVinod Koul 	struct snd_soc_dapm_widget *w, struct skl_pipe_params *params)
975cfb0a873SVinod Koul {
976cfb0a873SVinod Koul 	struct snd_soc_dapm_path *p = NULL;
9774d8adccbSSubhransu S. Prusty 	int ret = -EIO;
978cfb0a873SVinod Koul 
979f0900eb2SSubhransu S. Prusty 	snd_soc_dapm_widget_for_each_sink_path(w, p) {
980cfb0a873SVinod Koul 		if (p->connect && is_skl_dsp_widget_type(p->sink) &&
981cfb0a873SVinod Koul 						p->sink->priv) {
982cfb0a873SVinod Koul 
9834d8adccbSSubhransu S. Prusty 			if (!p->sink->power) {
9844d8adccbSSubhransu S. Prusty 				ret = skl_tplg_be_fill_pipe_params(
985cfb0a873SVinod Koul 						dai, p->sink->priv, params);
9864d8adccbSSubhransu S. Prusty 				if (ret < 0)
9874d8adccbSSubhransu S. Prusty 					return ret;
9884d8adccbSSubhransu S. Prusty 			} else {
989cfb0a873SVinod Koul 				return -EBUSY;
9904d8adccbSSubhransu S. Prusty 			}
991cfb0a873SVinod Koul 
992cfb0a873SVinod Koul 		} else {
9934d8adccbSSubhransu S. Prusty 			ret = skl_tplg_be_set_sink_pipe_params(
994cfb0a873SVinod Koul 						dai, p->sink, params);
9954d8adccbSSubhransu S. Prusty 			if (ret < 0)
9964d8adccbSSubhransu S. Prusty 				return ret;
997cfb0a873SVinod Koul 		}
998cfb0a873SVinod Koul 	}
999cfb0a873SVinod Koul 
10004d8adccbSSubhransu S. Prusty 	return ret;
1001cfb0a873SVinod Koul }
1002cfb0a873SVinod Koul 
1003cfb0a873SVinod Koul /*
1004cfb0a873SVinod Koul  * BE hw_params can be a source parameters (capture) or sink parameters
1005cfb0a873SVinod Koul  * (playback). Based on sink and source we need to either find the source
1006cfb0a873SVinod Koul  * list or the sink list and set the pipeline parameters
1007cfb0a873SVinod Koul  */
1008cfb0a873SVinod Koul int skl_tplg_be_update_params(struct snd_soc_dai *dai,
1009cfb0a873SVinod Koul 				struct skl_pipe_params *params)
1010cfb0a873SVinod Koul {
1011cfb0a873SVinod Koul 	struct snd_soc_dapm_widget *w;
1012cfb0a873SVinod Koul 
1013cfb0a873SVinod Koul 	if (params->stream == SNDRV_PCM_STREAM_PLAYBACK) {
1014cfb0a873SVinod Koul 		w = dai->playback_widget;
1015cfb0a873SVinod Koul 
1016cfb0a873SVinod Koul 		return skl_tplg_be_set_src_pipe_params(dai, w, params);
1017cfb0a873SVinod Koul 
1018cfb0a873SVinod Koul 	} else {
1019cfb0a873SVinod Koul 		w = dai->capture_widget;
1020cfb0a873SVinod Koul 
1021cfb0a873SVinod Koul 		return skl_tplg_be_set_sink_pipe_params(dai, w, params);
1022cfb0a873SVinod Koul 	}
1023cfb0a873SVinod Koul 
1024cfb0a873SVinod Koul 	return 0;
1025cfb0a873SVinod Koul }
10263af36706SVinod Koul 
10273af36706SVinod Koul static const struct snd_soc_tplg_widget_events skl_tplg_widget_ops[] = {
10283af36706SVinod Koul 	{SKL_MIXER_EVENT, skl_tplg_mixer_event},
10293af36706SVinod Koul 	{SKL_VMIXER_EVENT, skl_tplg_vmixer_event},
10303af36706SVinod Koul 	{SKL_PGA_EVENT, skl_tplg_pga_event},
10313af36706SVinod Koul };
10323af36706SVinod Koul 
10333af36706SVinod Koul /*
10343af36706SVinod Koul  * The topology binary passes the pin info for a module so initialize the pin
10353af36706SVinod Koul  * info passed into module instance
10363af36706SVinod Koul  */
10376abca1d7SJeeja KP static void skl_fill_module_pin_info(struct skl_dfw_module_pin *dfw_pin,
10383af36706SVinod Koul 						struct skl_module_pin *m_pin,
10396abca1d7SJeeja KP 						bool is_dynamic, int max_pin)
10403af36706SVinod Koul {
10413af36706SVinod Koul 	int i;
10423af36706SVinod Koul 
10433af36706SVinod Koul 	for (i = 0; i < max_pin; i++) {
10446abca1d7SJeeja KP 		m_pin[i].id.module_id = dfw_pin[i].module_id;
10456abca1d7SJeeja KP 		m_pin[i].id.instance_id = dfw_pin[i].instance_id;
10463af36706SVinod Koul 		m_pin[i].in_use = false;
10476abca1d7SJeeja KP 		m_pin[i].is_dynamic = is_dynamic;
10484f745708SJeeja KP 		m_pin[i].pin_state = SKL_PIN_UNBIND;
10493af36706SVinod Koul 	}
10503af36706SVinod Koul }
10513af36706SVinod Koul 
10523af36706SVinod Koul /*
10533af36706SVinod Koul  * Add pipeline from topology binary into driver pipeline list
10543af36706SVinod Koul  *
10553af36706SVinod Koul  * If already added we return that instance
10563af36706SVinod Koul  * Otherwise we create a new instance and add into driver list
10573af36706SVinod Koul  */
10583af36706SVinod Koul static struct skl_pipe *skl_tplg_add_pipe(struct device *dev,
10593af36706SVinod Koul 			struct skl *skl, struct skl_dfw_pipe *dfw_pipe)
10603af36706SVinod Koul {
10613af36706SVinod Koul 	struct skl_pipeline *ppl;
10623af36706SVinod Koul 	struct skl_pipe *pipe;
10633af36706SVinod Koul 	struct skl_pipe_params *params;
10643af36706SVinod Koul 
10653af36706SVinod Koul 	list_for_each_entry(ppl, &skl->ppl_list, node) {
10663af36706SVinod Koul 		if (ppl->pipe->ppl_id == dfw_pipe->pipe_id)
10673af36706SVinod Koul 			return ppl->pipe;
10683af36706SVinod Koul 	}
10693af36706SVinod Koul 
10703af36706SVinod Koul 	ppl = devm_kzalloc(dev, sizeof(*ppl), GFP_KERNEL);
10713af36706SVinod Koul 	if (!ppl)
10723af36706SVinod Koul 		return NULL;
10733af36706SVinod Koul 
10743af36706SVinod Koul 	pipe = devm_kzalloc(dev, sizeof(*pipe), GFP_KERNEL);
10753af36706SVinod Koul 	if (!pipe)
10763af36706SVinod Koul 		return NULL;
10773af36706SVinod Koul 
10783af36706SVinod Koul 	params = devm_kzalloc(dev, sizeof(*params), GFP_KERNEL);
10793af36706SVinod Koul 	if (!params)
10803af36706SVinod Koul 		return NULL;
10813af36706SVinod Koul 
10823af36706SVinod Koul 	pipe->ppl_id = dfw_pipe->pipe_id;
10833af36706SVinod Koul 	pipe->memory_pages = dfw_pipe->memory_pages;
10843af36706SVinod Koul 	pipe->pipe_priority = dfw_pipe->pipe_priority;
10853af36706SVinod Koul 	pipe->conn_type = dfw_pipe->conn_type;
10863af36706SVinod Koul 	pipe->state = SKL_PIPE_INVALID;
10873af36706SVinod Koul 	pipe->p_params = params;
10883af36706SVinod Koul 	INIT_LIST_HEAD(&pipe->w_list);
10893af36706SVinod Koul 
10903af36706SVinod Koul 	ppl->pipe = pipe;
10913af36706SVinod Koul 	list_add(&ppl->node, &skl->ppl_list);
10923af36706SVinod Koul 
10933af36706SVinod Koul 	return ppl->pipe;
10943af36706SVinod Koul }
10953af36706SVinod Koul 
10963af36706SVinod Koul /*
10973af36706SVinod Koul  * Topology core widget load callback
10983af36706SVinod Koul  *
10993af36706SVinod Koul  * This is used to save the private data for each widget which gives
11003af36706SVinod Koul  * information to the driver about module and pipeline parameters which DSP
11013af36706SVinod Koul  * FW expects like ids, resource values, formats etc
11023af36706SVinod Koul  */
11033af36706SVinod Koul static int skl_tplg_widget_load(struct snd_soc_component *cmpnt,
11043af36706SVinod Koul 				struct snd_soc_dapm_widget *w,
11053af36706SVinod Koul 				struct snd_soc_tplg_dapm_widget *tplg_w)
11063af36706SVinod Koul {
11073af36706SVinod Koul 	int ret;
11083af36706SVinod Koul 	struct hdac_ext_bus *ebus = snd_soc_component_get_drvdata(cmpnt);
11093af36706SVinod Koul 	struct skl *skl = ebus_to_skl(ebus);
11103af36706SVinod Koul 	struct hdac_bus *bus = ebus_to_hbus(ebus);
11113af36706SVinod Koul 	struct skl_module_cfg *mconfig;
11123af36706SVinod Koul 	struct skl_pipe *pipe;
1113b663a8c5SJeeja KP 	struct skl_dfw_module *dfw_config =
1114b663a8c5SJeeja KP 				(struct skl_dfw_module *)tplg_w->priv.data;
11153af36706SVinod Koul 
11163af36706SVinod Koul 	if (!tplg_w->priv.size)
11173af36706SVinod Koul 		goto bind_event;
11183af36706SVinod Koul 
11193af36706SVinod Koul 	mconfig = devm_kzalloc(bus->dev, sizeof(*mconfig), GFP_KERNEL);
11203af36706SVinod Koul 
11213af36706SVinod Koul 	if (!mconfig)
11223af36706SVinod Koul 		return -ENOMEM;
11233af36706SVinod Koul 
11243af36706SVinod Koul 	w->priv = mconfig;
11253af36706SVinod Koul 	mconfig->id.module_id = dfw_config->module_id;
11263af36706SVinod Koul 	mconfig->id.instance_id = dfw_config->instance_id;
11273af36706SVinod Koul 	mconfig->mcps = dfw_config->max_mcps;
11283af36706SVinod Koul 	mconfig->ibs = dfw_config->ibs;
11293af36706SVinod Koul 	mconfig->obs = dfw_config->obs;
11303af36706SVinod Koul 	mconfig->core_id = dfw_config->core_id;
11313af36706SVinod Koul 	mconfig->max_in_queue = dfw_config->max_in_queue;
11323af36706SVinod Koul 	mconfig->max_out_queue = dfw_config->max_out_queue;
11333af36706SVinod Koul 	mconfig->is_loadable = dfw_config->is_loadable;
11343af36706SVinod Koul 	mconfig->in_fmt.channels = dfw_config->in_fmt.channels;
11353af36706SVinod Koul 	mconfig->in_fmt.s_freq = dfw_config->in_fmt.freq;
11363af36706SVinod Koul 	mconfig->in_fmt.bit_depth = dfw_config->in_fmt.bit_depth;
1137b663a8c5SJeeja KP 	mconfig->in_fmt.valid_bit_depth =
1138b663a8c5SJeeja KP 				dfw_config->in_fmt.valid_bit_depth;
11393af36706SVinod Koul 	mconfig->in_fmt.ch_cfg = dfw_config->in_fmt.ch_cfg;
11403af36706SVinod Koul 	mconfig->out_fmt.channels = dfw_config->out_fmt.channels;
11413af36706SVinod Koul 	mconfig->out_fmt.s_freq = dfw_config->out_fmt.freq;
11423af36706SVinod Koul 	mconfig->out_fmt.bit_depth = dfw_config->out_fmt.bit_depth;
1143b663a8c5SJeeja KP 	mconfig->out_fmt.valid_bit_depth =
1144b663a8c5SJeeja KP 				dfw_config->out_fmt.valid_bit_depth;
11453af36706SVinod Koul 	mconfig->out_fmt.ch_cfg = dfw_config->out_fmt.ch_cfg;
11463af36706SVinod Koul 	mconfig->params_fixup = dfw_config->params_fixup;
11473af36706SVinod Koul 	mconfig->converter = dfw_config->converter;
11483af36706SVinod Koul 	mconfig->m_type = dfw_config->module_type;
11493af36706SVinod Koul 	mconfig->vbus_id = dfw_config->vbus_id;
11503af36706SVinod Koul 
11513af36706SVinod Koul 	pipe = skl_tplg_add_pipe(bus->dev, skl, &dfw_config->pipe);
11523af36706SVinod Koul 	if (pipe)
11533af36706SVinod Koul 		mconfig->pipe = pipe;
11543af36706SVinod Koul 
11553af36706SVinod Koul 	mconfig->dev_type = dfw_config->dev_type;
11563af36706SVinod Koul 	mconfig->hw_conn_type = dfw_config->hw_conn_type;
11573af36706SVinod Koul 	mconfig->time_slot = dfw_config->time_slot;
11583af36706SVinod Koul 	mconfig->formats_config.caps_size = dfw_config->caps.caps_size;
11593af36706SVinod Koul 
1160b663a8c5SJeeja KP 	mconfig->m_in_pin = devm_kzalloc(bus->dev,
1161b663a8c5SJeeja KP 				(mconfig->max_in_queue) *
11623af36706SVinod Koul 					sizeof(*mconfig->m_in_pin),
11633af36706SVinod Koul 				GFP_KERNEL);
11643af36706SVinod Koul 	if (!mconfig->m_in_pin)
11653af36706SVinod Koul 		return -ENOMEM;
11663af36706SVinod Koul 
11676abca1d7SJeeja KP 	mconfig->m_out_pin = devm_kzalloc(bus->dev, (mconfig->max_out_queue) *
11683af36706SVinod Koul 						sizeof(*mconfig->m_out_pin),
11693af36706SVinod Koul 						GFP_KERNEL);
11703af36706SVinod Koul 	if (!mconfig->m_out_pin)
11713af36706SVinod Koul 		return -ENOMEM;
11723af36706SVinod Koul 
11736abca1d7SJeeja KP 	skl_fill_module_pin_info(dfw_config->in_pin, mconfig->m_in_pin,
11746abca1d7SJeeja KP 						dfw_config->is_dynamic_in_pin,
11753af36706SVinod Koul 						mconfig->max_in_queue);
11766abca1d7SJeeja KP 
11776abca1d7SJeeja KP 	skl_fill_module_pin_info(dfw_config->out_pin, mconfig->m_out_pin,
11786abca1d7SJeeja KP 						 dfw_config->is_dynamic_out_pin,
11793af36706SVinod Koul 							mconfig->max_out_queue);
11803af36706SVinod Koul 
11816abca1d7SJeeja KP 
11823af36706SVinod Koul 	if (mconfig->formats_config.caps_size == 0)
11833af36706SVinod Koul 		goto bind_event;
11843af36706SVinod Koul 
11853af36706SVinod Koul 	mconfig->formats_config.caps = (u32 *)devm_kzalloc(bus->dev,
11863af36706SVinod Koul 			mconfig->formats_config.caps_size, GFP_KERNEL);
11873af36706SVinod Koul 
11883af36706SVinod Koul 	if (mconfig->formats_config.caps == NULL)
11893af36706SVinod Koul 		return -ENOMEM;
11903af36706SVinod Koul 
11913af36706SVinod Koul 	memcpy(mconfig->formats_config.caps, dfw_config->caps.caps,
11923af36706SVinod Koul 					 dfw_config->caps.caps_size);
11933af36706SVinod Koul 
11943af36706SVinod Koul bind_event:
11953af36706SVinod Koul 	if (tplg_w->event_type == 0) {
11963373f716SVinod Koul 		dev_dbg(bus->dev, "ASoC: No event handler required\n");
11973af36706SVinod Koul 		return 0;
11983af36706SVinod Koul 	}
11993af36706SVinod Koul 
12003af36706SVinod Koul 	ret = snd_soc_tplg_widget_bind_event(w, skl_tplg_widget_ops,
1201b663a8c5SJeeja KP 					ARRAY_SIZE(skl_tplg_widget_ops),
1202b663a8c5SJeeja KP 					tplg_w->event_type);
12033af36706SVinod Koul 
12043af36706SVinod Koul 	if (ret) {
12053af36706SVinod Koul 		dev_err(bus->dev, "%s: No matching event handlers found for %d\n",
12063af36706SVinod Koul 					__func__, tplg_w->event_type);
12073af36706SVinod Koul 		return -EINVAL;
12083af36706SVinod Koul 	}
12093af36706SVinod Koul 
12103af36706SVinod Koul 	return 0;
12113af36706SVinod Koul }
12123af36706SVinod Koul 
12133af36706SVinod Koul static struct snd_soc_tplg_ops skl_tplg_ops  = {
12143af36706SVinod Koul 	.widget_load = skl_tplg_widget_load,
12153af36706SVinod Koul };
12163af36706SVinod Koul 
12173af36706SVinod Koul /* This will be read from topology manifest, currently defined here */
12183af36706SVinod Koul #define SKL_MAX_MCPS 30000000
12193af36706SVinod Koul #define SKL_FW_MAX_MEM 1000000
12203af36706SVinod Koul 
12213af36706SVinod Koul /*
12223af36706SVinod Koul  * SKL topology init routine
12233af36706SVinod Koul  */
12243af36706SVinod Koul int skl_tplg_init(struct snd_soc_platform *platform, struct hdac_ext_bus *ebus)
12253af36706SVinod Koul {
12263af36706SVinod Koul 	int ret;
12273af36706SVinod Koul 	const struct firmware *fw;
12283af36706SVinod Koul 	struct hdac_bus *bus = ebus_to_hbus(ebus);
12293af36706SVinod Koul 	struct skl *skl = ebus_to_skl(ebus);
12303af36706SVinod Koul 
12313af36706SVinod Koul 	ret = request_firmware(&fw, "dfw_sst.bin", bus->dev);
12323af36706SVinod Koul 	if (ret < 0) {
1233b663a8c5SJeeja KP 		dev_err(bus->dev, "tplg fw %s load failed with %d\n",
12343af36706SVinod Koul 				"dfw_sst.bin", ret);
12353af36706SVinod Koul 		return ret;
12363af36706SVinod Koul 	}
12373af36706SVinod Koul 
12383af36706SVinod Koul 	/*
12393af36706SVinod Koul 	 * The complete tplg for SKL is loaded as index 0, we don't use
12403af36706SVinod Koul 	 * any other index
12413af36706SVinod Koul 	 */
1242b663a8c5SJeeja KP 	ret = snd_soc_tplg_component_load(&platform->component,
1243b663a8c5SJeeja KP 					&skl_tplg_ops, fw, 0);
12443af36706SVinod Koul 	if (ret < 0) {
12453af36706SVinod Koul 		dev_err(bus->dev, "tplg component load failed%d\n", ret);
12463af36706SVinod Koul 		return -EINVAL;
12473af36706SVinod Koul 	}
12483af36706SVinod Koul 
12493af36706SVinod Koul 	skl->resource.max_mcps = SKL_MAX_MCPS;
12503af36706SVinod Koul 	skl->resource.max_mem = SKL_FW_MAX_MEM;
12513af36706SVinod Koul 
12523af36706SVinod Koul 	return 0;
12533af36706SVinod Koul }
1254