xref: /linux/drivers/media/platform/mediatek/vcodec/decoder/vdec_vpu_if.c (revision d7aa60d966461ca6114dc348e97889dc8850ff7f)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * Copyright (c) 2016 MediaTek Inc.
4  * Author: PC Chen <pc.chen@mediatek.com>
5  */
6 
7 #include "mtk_vcodec_dec_drv.h"
8 #include "vdec_drv_if.h"
9 #include "vdec_ipi_msg.h"
10 #include "vdec_vpu_if.h"
11 
12 static void handle_init_ack_msg(const struct vdec_vpu_ipi_init_ack *msg)
13 {
14 	struct vdec_vpu_inst *vpu = (struct vdec_vpu_inst *)
15 					(unsigned long)msg->ap_inst_addr;
16 
17 	mtk_vdec_debug(vpu->ctx, "+ ap_inst_addr = 0x%llx", msg->ap_inst_addr);
18 
19 	/* mapping VPU address to kernel virtual address */
20 	/* the content in vsi is initialized to 0 in VPU */
21 	vpu->vsi = mtk_vcodec_fw_map_dm_addr(vpu->ctx->dev->fw_handler,
22 					     msg->vpu_inst_addr);
23 	vpu->inst_addr = msg->vpu_inst_addr;
24 
25 	mtk_vdec_debug(vpu->ctx, "- vpu_inst_addr = 0x%x", vpu->inst_addr);
26 
27 	/* Set default ABI version if dealing with unversioned firmware. */
28 	vpu->fw_abi_version = 0;
29 	/*
30 	 * Instance ID is only used if ABI version >= 2. Initialize it with
31 	 * garbage by default.
32 	 */
33 	vpu->inst_id = 0xdeadbeef;
34 
35 	/* VPU firmware does not contain a version field. */
36 	if (mtk_vcodec_fw_get_type(vpu->ctx->dev->fw_handler) == VPU)
37 		return;
38 
39 	/* Check firmware version. */
40 	vpu->fw_abi_version = msg->vdec_abi_version;
41 	mtk_vdec_debug(vpu->ctx, "firmware version 0x%x\n", vpu->fw_abi_version);
42 	switch (vpu->fw_abi_version) {
43 	case 1:
44 		break;
45 	case 2:
46 		vpu->inst_id = msg->inst_id;
47 		break;
48 	default:
49 		mtk_vdec_err(vpu->ctx, "unhandled firmware version 0x%x\n", vpu->fw_abi_version);
50 		vpu->failure = 1;
51 		break;
52 	}
53 }
54 
55 static void handle_get_param_msg_ack(const struct vdec_vpu_ipi_get_param_ack *msg)
56 {
57 	struct vdec_vpu_inst *vpu = (struct vdec_vpu_inst *)
58 					(unsigned long)msg->ap_inst_addr;
59 
60 	mtk_vdec_debug(vpu->ctx, "+ ap_inst_addr = 0x%llx", msg->ap_inst_addr);
61 
62 	/* param_type is enum vdec_get_param_type */
63 	switch (msg->param_type) {
64 	case GET_PARAM_PIC_INFO:
65 		vpu->fb_sz[0] = msg->data[0];
66 		vpu->fb_sz[1] = msg->data[1];
67 		break;
68 	default:
69 		mtk_vdec_err(vpu->ctx, "invalid get param type=%d", msg->param_type);
70 		vpu->failure = 1;
71 		break;
72 	}
73 }
74 
75 static bool vpu_dec_check_ap_inst(struct mtk_vcodec_dec_dev *dec_dev, struct vdec_vpu_inst *vpu)
76 {
77 	struct mtk_vcodec_dec_ctx *ctx;
78 	unsigned long flags;
79 	int ret = false;
80 
81 	spin_lock_irqsave(&dec_dev->dev_ctx_lock, flags);
82 	list_for_each_entry(ctx, &dec_dev->ctx_list, list) {
83 		if (!IS_ERR_OR_NULL(ctx) && ctx->vpu_inst == vpu) {
84 			ret = true;
85 			break;
86 		}
87 	}
88 	spin_unlock_irqrestore(&dec_dev->dev_ctx_lock, flags);
89 
90 	return ret;
91 }
92 
93 /*
94  * vpu_dec_ipi_handler - Handler for VPU ipi message.
95  *
96  * @data: ipi message
97  * @len : length of ipi message
98  * @priv: callback private data which is passed by decoder when register.
99  *
100  * This function runs in interrupt context and it means there's an IPI MSG
101  * from VPU.
102  */
103 static void vpu_dec_ipi_handler(void *data, unsigned int len, void *priv)
104 {
105 	struct mtk_vcodec_dec_dev *dec_dev;
106 	const struct vdec_vpu_ipi_ack *msg = data;
107 	struct vdec_vpu_inst *vpu;
108 
109 	dec_dev = (struct mtk_vcodec_dec_dev *)priv;
110 	vpu = (struct vdec_vpu_inst *)(unsigned long)msg->ap_inst_addr;
111 	if (!priv || !vpu) {
112 		pr_err(MTK_DBG_V4L2_STR "ap_inst_addr is NULL, did the SCP hang or crash?");
113 		return;
114 	}
115 
116 	if (!vpu_dec_check_ap_inst(dec_dev, vpu) || msg->msg_id < VPU_IPIMSG_DEC_INIT_ACK ||
117 	    msg->msg_id > VPU_IPIMSG_DEC_GET_PARAM_ACK) {
118 		mtk_v4l2_vdec_err(vpu->ctx, "vdec msg id not correctly => 0x%x", msg->msg_id);
119 		vpu->failure = -EINVAL;
120 		goto error;
121 	}
122 
123 	vpu->failure = msg->status;
124 	if (msg->status != 0)
125 		goto error;
126 
127 	switch (msg->msg_id) {
128 	case VPU_IPIMSG_DEC_INIT_ACK:
129 		handle_init_ack_msg(data);
130 		break;
131 
132 	case VPU_IPIMSG_DEC_START_ACK:
133 	case VPU_IPIMSG_DEC_END_ACK:
134 	case VPU_IPIMSG_DEC_DEINIT_ACK:
135 	case VPU_IPIMSG_DEC_RESET_ACK:
136 	case VPU_IPIMSG_DEC_CORE_ACK:
137 	case VPU_IPIMSG_DEC_CORE_END_ACK:
138 		break;
139 
140 	case VPU_IPIMSG_DEC_GET_PARAM_ACK:
141 		handle_get_param_msg_ack(data);
142 		break;
143 	default:
144 		mtk_vdec_err(vpu->ctx, "invalid msg=%X", msg->msg_id);
145 		break;
146 	}
147 
148 error:
149 	vpu->signaled = 1;
150 }
151 
152 static int vcodec_vpu_send_msg(struct vdec_vpu_inst *vpu, void *msg, int len)
153 {
154 	int err, id, msgid;
155 
156 	msgid = *(uint32_t *)msg;
157 	mtk_vdec_debug(vpu->ctx, "id=%X", msgid);
158 
159 	vpu->failure = 0;
160 	vpu->signaled = 0;
161 
162 	if (vpu->ctx->dev->vdec_pdata->hw_arch == MTK_VDEC_LAT_SINGLE_CORE) {
163 		if (msgid == AP_IPIMSG_DEC_CORE ||
164 		    msgid == AP_IPIMSG_DEC_CORE_END)
165 			id = vpu->core_id;
166 		else
167 			id = vpu->id;
168 	} else {
169 		id = vpu->id;
170 	}
171 
172 	err = mtk_vcodec_fw_ipi_send(vpu->ctx->dev->fw_handler, id, msg,
173 				     len, 2000);
174 	if (err) {
175 		mtk_vdec_err(vpu->ctx, "send fail vpu_id=%d msg_id=%X status=%d",
176 			     id, msgid, err);
177 		return err;
178 	}
179 
180 	return vpu->failure;
181 }
182 
183 static int vcodec_send_ap_ipi(struct vdec_vpu_inst *vpu, unsigned int msg_id)
184 {
185 	struct vdec_ap_ipi_cmd msg;
186 	int err = 0;
187 
188 	mtk_vdec_debug(vpu->ctx, "+ id=%X", msg_id);
189 
190 	memset(&msg, 0, sizeof(msg));
191 	msg.msg_id = msg_id;
192 	if (vpu->fw_abi_version < 2)
193 		msg.vpu_inst_addr = vpu->inst_addr;
194 	else
195 		msg.inst_id = vpu->inst_id;
196 	msg.codec_type = vpu->codec_type;
197 
198 	err = vcodec_vpu_send_msg(vpu, &msg, sizeof(msg));
199 	mtk_vdec_debug(vpu->ctx, "- id=%X ret=%d", msg_id, err);
200 	return err;
201 }
202 
203 int vpu_dec_init(struct vdec_vpu_inst *vpu)
204 {
205 	struct vdec_ap_ipi_init msg;
206 	int err;
207 
208 	init_waitqueue_head(&vpu->wq);
209 	vpu->handler = vpu_dec_ipi_handler;
210 	vpu->ctx->vpu_inst = vpu;
211 
212 	err = mtk_vcodec_fw_ipi_register(vpu->ctx->dev->fw_handler, vpu->id,
213 					 vpu->handler, "vdec", vpu->ctx->dev);
214 	if (err) {
215 		mtk_vdec_err(vpu->ctx, "vpu_ipi_register fail status=%d", err);
216 		return err;
217 	}
218 
219 	if (vpu->ctx->dev->vdec_pdata->hw_arch == MTK_VDEC_LAT_SINGLE_CORE) {
220 		err = mtk_vcodec_fw_ipi_register(vpu->ctx->dev->fw_handler,
221 						 vpu->core_id, vpu->handler,
222 						 "vdec", vpu->ctx->dev);
223 		if (err) {
224 			mtk_vdec_err(vpu->ctx, "vpu_ipi_register core fail status=%d", err);
225 			return err;
226 		}
227 	}
228 
229 	memset(&msg, 0, sizeof(msg));
230 	msg.msg_id = AP_IPIMSG_DEC_INIT;
231 	msg.ap_inst_addr = (unsigned long)vpu;
232 	msg.codec_type = vpu->codec_type;
233 
234 	mtk_vdec_debug(vpu->ctx, "vdec_inst=%p", vpu);
235 
236 	err = vcodec_vpu_send_msg(vpu, (void *)&msg, sizeof(msg));
237 
238 	if (IS_ERR_OR_NULL(vpu->vsi)) {
239 		mtk_vdec_err(vpu->ctx, "invalid vdec vsi, status=%d", err);
240 		return -EINVAL;
241 	}
242 
243 	mtk_vdec_debug(vpu->ctx, "- ret=%d", err);
244 	return err;
245 }
246 
247 int vpu_dec_start(struct vdec_vpu_inst *vpu, uint32_t *data, unsigned int len)
248 {
249 	struct vdec_ap_ipi_dec_start msg;
250 	int i;
251 	int err = 0;
252 
253 	if (len > ARRAY_SIZE(msg.data)) {
254 		mtk_vdec_err(vpu->ctx, "invalid len = %d\n", len);
255 		return -EINVAL;
256 	}
257 
258 	memset(&msg, 0, sizeof(msg));
259 	msg.msg_id = AP_IPIMSG_DEC_START;
260 	if (vpu->fw_abi_version < 2)
261 		msg.vpu_inst_addr = vpu->inst_addr;
262 	else
263 		msg.inst_id = vpu->inst_id;
264 
265 	for (i = 0; i < len; i++)
266 		msg.data[i] = data[i];
267 	msg.codec_type = vpu->codec_type;
268 
269 	err = vcodec_vpu_send_msg(vpu, (void *)&msg, sizeof(msg));
270 	mtk_vdec_debug(vpu->ctx, "- ret=%d", err);
271 	return err;
272 }
273 
274 int vpu_dec_get_param(struct vdec_vpu_inst *vpu, uint32_t *data,
275 		      unsigned int len, unsigned int param_type)
276 {
277 	struct vdec_ap_ipi_get_param msg;
278 	int err;
279 
280 	if (len > ARRAY_SIZE(msg.data)) {
281 		mtk_vdec_err(vpu->ctx, "invalid len = %d\n", len);
282 		return -EINVAL;
283 	}
284 
285 	memset(&msg, 0, sizeof(msg));
286 	msg.msg_id = AP_IPIMSG_DEC_GET_PARAM;
287 	msg.inst_id = vpu->inst_id;
288 	memcpy(msg.data, data, sizeof(unsigned int) * len);
289 	msg.param_type = param_type;
290 	msg.codec_type = vpu->codec_type;
291 
292 	err = vcodec_vpu_send_msg(vpu, (void *)&msg, sizeof(msg));
293 	mtk_vdec_debug(vpu->ctx, "- ret=%d", err);
294 	return err;
295 }
296 
297 int vpu_dec_core(struct vdec_vpu_inst *vpu)
298 {
299 	return vcodec_send_ap_ipi(vpu, AP_IPIMSG_DEC_CORE);
300 }
301 
302 int vpu_dec_end(struct vdec_vpu_inst *vpu)
303 {
304 	return vcodec_send_ap_ipi(vpu, AP_IPIMSG_DEC_END);
305 }
306 
307 int vpu_dec_core_end(struct vdec_vpu_inst *vpu)
308 {
309 	return vcodec_send_ap_ipi(vpu, AP_IPIMSG_DEC_CORE_END);
310 }
311 
312 int vpu_dec_deinit(struct vdec_vpu_inst *vpu)
313 {
314 	return vcodec_send_ap_ipi(vpu, AP_IPIMSG_DEC_DEINIT);
315 }
316 
317 int vpu_dec_reset(struct vdec_vpu_inst *vpu)
318 {
319 	return vcodec_send_ap_ipi(vpu, AP_IPIMSG_DEC_RESET);
320 }
321