xref: /linux/sound/soc/intel/catpt/messages.c (revision 384b13038715f16713d1b2bfe5fb927c8437e48b)
1 // SPDX-License-Identifier: GPL-2.0-only
2 //
3 // Copyright(c) 2020 Intel Corporation
4 //
5 // Author: Cezary Rojewski <cezary.rojewski@intel.com>
6 //
7 
8 #include <linux/slab.h>
9 #include "core.h"
10 #include "messages.h"
11 #include "registers.h"
12 
13 int catpt_ipc_get_fw_version(struct catpt_dev *cdev,
14 			     struct catpt_fw_version *version)
15 {
16 	union catpt_global_msg msg = CATPT_GLOBAL_MSG(GET_FW_VERSION);
17 	struct catpt_ipc_msg request = {{0}}, reply;
18 
19 	request.header = msg.val;
20 	reply.size = sizeof(*version);
21 	reply.data = version;
22 
23 	return catpt_dsp_send_msg(cdev, request, &reply, "get fw version");
24 }
25 
26 struct catpt_alloc_stream_input {
27 	enum catpt_path_id path_id:8;
28 	enum catpt_stream_type stream_type:8;
29 	enum catpt_format_id format_id:8;
30 	u8 reserved;
31 	struct catpt_audio_format input_format;
32 	struct catpt_ring_info ring_info;
33 	u8 num_entries;
34 	/* flex array with entries here */
35 	struct catpt_memory_info persistent_mem;
36 	struct catpt_memory_info scratch_mem;
37 	u32 num_notifications; /* obsolete */
38 } __packed;
39 
40 int catpt_ipc_alloc_stream(struct catpt_dev *cdev,
41 			   enum catpt_path_id path_id,
42 			   enum catpt_stream_type type,
43 			   struct catpt_audio_format *afmt,
44 			   struct catpt_ring_info *rinfo,
45 			   u8 num_modules,
46 			   struct catpt_module_entry *modules,
47 			   struct resource *persistent,
48 			   struct resource *scratch,
49 			   struct catpt_stream_info *sinfo)
50 {
51 	union catpt_global_msg msg = CATPT_GLOBAL_MSG(ALLOCATE_STREAM);
52 	struct catpt_alloc_stream_input input;
53 	struct catpt_ipc_msg request, reply;
54 	size_t size, arrsz;
55 	u8 *payload;
56 	off_t off;
57 	int ret;
58 
59 	off = offsetof(struct catpt_alloc_stream_input, persistent_mem);
60 	arrsz = sizeof(*modules) * num_modules;
61 	size = sizeof(input) + arrsz;
62 
63 	payload = kzalloc(size, GFP_KERNEL);
64 	if (!payload)
65 		return -ENOMEM;
66 
67 	memset(&input, 0, sizeof(input));
68 	input.path_id = path_id;
69 	input.stream_type = type;
70 	input.format_id = CATPT_FORMAT_PCM;
71 	input.input_format = *afmt;
72 	input.ring_info = *rinfo;
73 	input.num_entries = num_modules;
74 	input.persistent_mem.offset = catpt_to_dsp_offset(persistent->start);
75 	input.persistent_mem.size = resource_size(persistent);
76 	if (scratch) {
77 		input.scratch_mem.offset = catpt_to_dsp_offset(scratch->start);
78 		input.scratch_mem.size = resource_size(scratch);
79 	}
80 
81 	/* re-arrange the input: account for flex array 'entries' */
82 	memcpy(payload, &input, sizeof(input));
83 	memmove(payload + off + arrsz, payload + off, sizeof(input) - off);
84 	memcpy(payload + off, modules, arrsz);
85 
86 	request.header = msg.val;
87 	request.size = size;
88 	request.data = payload;
89 	reply.size = sizeof(*sinfo);
90 	reply.data = sinfo;
91 
92 	ret = catpt_dsp_send_msg(cdev, request, &reply, "alloc stream");
93 	kfree(payload);
94 	return ret;
95 }
96 
97 int catpt_ipc_free_stream(struct catpt_dev *cdev, u8 stream_hw_id)
98 {
99 	union catpt_global_msg msg = CATPT_GLOBAL_MSG(FREE_STREAM);
100 	struct catpt_ipc_msg request;
101 
102 	request.header = msg.val;
103 	request.size = sizeof(stream_hw_id);
104 	request.data = &stream_hw_id;
105 
106 	return catpt_dsp_send_msg(cdev, request, NULL, "free stream");
107 }
108 
109 int catpt_ipc_set_device_format(struct catpt_dev *cdev,
110 				struct catpt_ssp_device_format *devfmt)
111 {
112 	union catpt_global_msg msg = CATPT_GLOBAL_MSG(SET_DEVICE_FORMATS);
113 	struct catpt_ipc_msg request;
114 
115 	request.header = msg.val;
116 	request.size = sizeof(*devfmt);
117 	request.data = devfmt;
118 
119 	return catpt_dsp_send_msg(cdev, request, NULL, "set device format");
120 }
121 
122 int catpt_ipc_enter_dxstate(struct catpt_dev *cdev, enum catpt_dx_state state,
123 			    struct catpt_dx_context *context)
124 {
125 	union catpt_global_msg msg = CATPT_GLOBAL_MSG(ENTER_DX_STATE);
126 	struct catpt_ipc_msg request, reply;
127 
128 	request.header = msg.val;
129 	request.size = sizeof(state);
130 	request.data = &state;
131 	reply.size = sizeof(*context);
132 	reply.data = context;
133 
134 	return catpt_dsp_send_msg(cdev, request, &reply, "enter dx state");
135 }
136 
137 int catpt_ipc_get_mixer_stream_info(struct catpt_dev *cdev,
138 				    struct catpt_mixer_stream_info *info)
139 {
140 	union catpt_global_msg msg = CATPT_GLOBAL_MSG(GET_MIXER_STREAM_INFO);
141 	struct catpt_ipc_msg request = {{0}}, reply;
142 
143 	request.header = msg.val;
144 	reply.size = sizeof(*info);
145 	reply.data = info;
146 
147 	return catpt_dsp_send_msg(cdev, request, &reply, "get mixer info");
148 }
149 
150 int catpt_ipc_reset_stream(struct catpt_dev *cdev, u8 stream_hw_id)
151 {
152 	union catpt_stream_msg msg = CATPT_STREAM_MSG(RESET_STREAM);
153 	struct catpt_ipc_msg request = {{0}};
154 
155 	msg.stream_hw_id = stream_hw_id;
156 	request.header = msg.val;
157 
158 	return catpt_dsp_send_msg(cdev, request, NULL, "reset stream");
159 }
160 
161 int catpt_ipc_pause_stream(struct catpt_dev *cdev, u8 stream_hw_id)
162 {
163 	union catpt_stream_msg msg = CATPT_STREAM_MSG(PAUSE_STREAM);
164 	struct catpt_ipc_msg request = {{0}};
165 
166 	msg.stream_hw_id = stream_hw_id;
167 	request.header = msg.val;
168 
169 	return catpt_dsp_send_msg(cdev, request, NULL, "pause stream");
170 }
171 
172 int catpt_ipc_resume_stream(struct catpt_dev *cdev, u8 stream_hw_id)
173 {
174 	union catpt_stream_msg msg = CATPT_STREAM_MSG(RESUME_STREAM);
175 	struct catpt_ipc_msg request = {{0}};
176 
177 	msg.stream_hw_id = stream_hw_id;
178 	request.header = msg.val;
179 
180 	return catpt_dsp_send_msg(cdev, request, NULL, "resume stream");
181 }
182 
183 struct catpt_set_volume_input {
184 	u32 channel;
185 	u32 target_volume;
186 	u64 curve_duration;
187 	u32 curve_type;
188 } __packed;
189 
190 int catpt_ipc_set_volume(struct catpt_dev *cdev, u8 stream_hw_id,
191 			 u32 channel, u32 volume,
192 			 u32 curve_duration,
193 			 enum catpt_audio_curve_type curve_type)
194 {
195 	union catpt_stream_msg msg = CATPT_STAGE_MSG(SET_VOLUME);
196 	struct catpt_ipc_msg request;
197 	struct catpt_set_volume_input input;
198 
199 	msg.stream_hw_id = stream_hw_id;
200 	input.channel = channel;
201 	input.target_volume = volume;
202 	input.curve_duration = curve_duration;
203 	input.curve_type = curve_type;
204 
205 	request.header = msg.val;
206 	request.size = sizeof(input);
207 	request.data = &input;
208 
209 	return catpt_dsp_send_msg(cdev, request, NULL, "set stream volume");
210 }
211 
212 struct catpt_set_write_pos_input {
213 	u32 new_write_pos;
214 	bool end_of_buffer;
215 	bool low_latency;
216 } __packed;
217 
218 int catpt_ipc_set_write_pos(struct catpt_dev *cdev, u8 stream_hw_id,
219 			    u32 pos, bool eob, bool ll)
220 {
221 	union catpt_stream_msg msg = CATPT_STAGE_MSG(SET_WRITE_POSITION);
222 	struct catpt_ipc_msg request;
223 	struct catpt_set_write_pos_input input;
224 
225 	msg.stream_hw_id = stream_hw_id;
226 	input.new_write_pos = pos;
227 	input.end_of_buffer = eob;
228 	input.low_latency = ll;
229 
230 	request.header = msg.val;
231 	request.size = sizeof(input);
232 	request.data = &input;
233 
234 	return catpt_dsp_send_msg(cdev, request, NULL, "set stream write pos");
235 }
236 
237 int catpt_ipc_mute_loopback(struct catpt_dev *cdev, u8 stream_hw_id, bool mute)
238 {
239 	union catpt_stream_msg msg = CATPT_STAGE_MSG(MUTE_LOOPBACK);
240 	struct catpt_ipc_msg request;
241 
242 	msg.stream_hw_id = stream_hw_id;
243 	request.header = msg.val;
244 	request.size = sizeof(mute);
245 	request.data = &mute;
246 
247 	return catpt_dsp_send_msg(cdev, request, NULL, "mute loopback");
248 }
249