1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * AMD SFH Client Layer 4 * Copyright 2020-2021 Advanced Micro Devices, Inc. 5 * Authors: Nehal Bakulchandra Shah <Nehal-Bakulchandra.Shah@amd.com> 6 * Sandeep Singh <Sandeep.singh@amd.com> 7 * Basavaraj Natikar <Basavaraj.Natikar@amd.com> 8 */ 9 10 #include <linux/dma-mapping.h> 11 #include <linux/hid.h> 12 #include <linux/list.h> 13 #include <linux/slab.h> 14 #include <linux/workqueue.h> 15 #include <linux/errno.h> 16 17 #include "hid_descriptor/amd_sfh_hid_desc.h" 18 #include "amd_sfh_pcie.h" 19 #include "amd_sfh_hid.h" 20 21 void amd_sfh_set_report(struct hid_device *hid, int report_id, 22 int report_type) 23 { 24 struct amdtp_hid_data *hid_data = hid->driver_data; 25 struct amdtp_cl_data *cli_data = hid_data->cli_data; 26 int i; 27 28 for (i = 0; i < cli_data->num_hid_devices; i++) { 29 if (cli_data->hid_sensor_hubs[i] == hid) { 30 cli_data->cur_hid_dev = i; 31 break; 32 } 33 } 34 amdtp_hid_wakeup(hid); 35 } 36 37 int amd_sfh_get_report(struct hid_device *hid, int report_id, int report_type) 38 { 39 struct amdtp_hid_data *hid_data = hid->driver_data; 40 struct amdtp_cl_data *cli_data = hid_data->cli_data; 41 struct request_list *req_list = &cli_data->req_list; 42 int i; 43 44 for (i = 0; i < cli_data->num_hid_devices; i++) { 45 if (cli_data->hid_sensor_hubs[i] == hid) { 46 struct request_list *new = kzalloc(sizeof(*new), GFP_KERNEL); 47 48 if (!new) 49 return -ENOMEM; 50 51 new->current_index = i; 52 new->sensor_idx = cli_data->sensor_idx[i]; 53 new->hid = hid; 54 new->report_type = report_type; 55 new->report_id = report_id; 56 cli_data->report_id[i] = report_id; 57 cli_data->request_done[i] = false; 58 list_add(&new->list, &req_list->list); 59 break; 60 } 61 } 62 schedule_delayed_work(&cli_data->work, 0); 63 return 0; 64 } 65 66 void amd_sfh_work(struct work_struct *work) 67 { 68 struct amdtp_cl_data *cli_data = container_of(work, struct amdtp_cl_data, work.work); 69 struct request_list *req_list = &cli_data->req_list; 70 struct amd_input_data *in_data = cli_data->in_data; 71 struct request_list *req_node; 72 u8 current_index, sensor_index; 73 struct amd_mp2_ops *mp2_ops; 74 struct amd_mp2_dev *mp2; 75 u8 report_id, node_type; 76 u8 report_size = 0; 77 78 req_node = list_last_entry(&req_list->list, struct request_list, list); 79 list_del(&req_node->list); 80 current_index = req_node->current_index; 81 sensor_index = req_node->sensor_idx; 82 report_id = req_node->report_id; 83 node_type = req_node->report_type; 84 kfree(req_node); 85 86 mp2 = container_of(in_data, struct amd_mp2_dev, in_data); 87 mp2_ops = mp2->mp2_ops; 88 if (node_type == HID_FEATURE_REPORT) { 89 report_size = mp2_ops->get_feat_rep(sensor_index, report_id, 90 cli_data->feature_report[current_index]); 91 if (report_size) 92 hid_input_report(cli_data->hid_sensor_hubs[current_index], 93 cli_data->report_type[current_index], 94 cli_data->feature_report[current_index], report_size, 0); 95 else 96 pr_err("AMDSFH: Invalid report size\n"); 97 98 } else if (node_type == HID_INPUT_REPORT) { 99 report_size = mp2_ops->get_in_rep(current_index, sensor_index, report_id, in_data); 100 if (report_size) 101 hid_input_report(cli_data->hid_sensor_hubs[current_index], 102 cli_data->report_type[current_index], 103 in_data->input_report[current_index], report_size, 0); 104 else 105 pr_err("AMDSFH: Invalid report size\n"); 106 } 107 cli_data->cur_hid_dev = current_index; 108 cli_data->sensor_requested_cnt[current_index] = 0; 109 amdtp_hid_wakeup(cli_data->hid_sensor_hubs[current_index]); 110 } 111 112 void amd_sfh_work_buffer(struct work_struct *work) 113 { 114 struct amdtp_cl_data *cli_data = container_of(work, struct amdtp_cl_data, work_buffer.work); 115 struct amd_input_data *in_data = cli_data->in_data; 116 struct amd_mp2_dev *mp2; 117 u8 report_size; 118 int i; 119 120 for (i = 0; i < cli_data->num_hid_devices; i++) { 121 if (cli_data->sensor_sts[i] == SENSOR_ENABLED) { 122 mp2 = container_of(in_data, struct amd_mp2_dev, in_data); 123 report_size = mp2->mp2_ops->get_in_rep(i, cli_data->sensor_idx[i], 124 cli_data->report_id[i], in_data); 125 hid_input_report(cli_data->hid_sensor_hubs[i], HID_INPUT_REPORT, 126 in_data->input_report[i], report_size, 0); 127 } 128 } 129 schedule_delayed_work(&cli_data->work_buffer, msecs_to_jiffies(AMD_SFH_IDLE_LOOP)); 130 } 131 132 static u32 amd_sfh_wait_for_response(struct amd_mp2_dev *mp2, u8 sid, u32 sensor_sts) 133 { 134 if (mp2->mp2_ops->response) 135 sensor_sts = mp2->mp2_ops->response(mp2, sid, sensor_sts); 136 137 return sensor_sts; 138 } 139 140 static const char *get_sensor_name(int idx) 141 { 142 switch (idx) { 143 case accel_idx: 144 return "accelerometer"; 145 case gyro_idx: 146 return "gyroscope"; 147 case mag_idx: 148 return "magnetometer"; 149 case op_idx: 150 return "operating-mode"; 151 case als_idx: 152 case ACS_IDX: /* ambient color sensor */ 153 return "ALS"; 154 case HPD_IDX: 155 return "HPD"; 156 default: 157 return "unknown sensor type"; 158 } 159 } 160 161 static void amd_sfh_resume(struct amd_mp2_dev *mp2) 162 { 163 struct amdtp_cl_data *cl_data = mp2->cl_data; 164 struct amd_mp2_sensor_info info; 165 int i, status; 166 167 for (i = 0; i < cl_data->num_hid_devices; i++) { 168 if (cl_data->sensor_sts[i] == SENSOR_DISABLED) { 169 info.period = AMD_SFH_IDLE_LOOP; 170 info.sensor_idx = cl_data->sensor_idx[i]; 171 info.dma_address = cl_data->sensor_dma_addr[i]; 172 mp2->mp2_ops->start(mp2, info); 173 status = amd_sfh_wait_for_response 174 (mp2, cl_data->sensor_idx[i], SENSOR_ENABLED); 175 if (status == SENSOR_ENABLED) 176 cl_data->sensor_sts[i] = SENSOR_ENABLED; 177 dev_dbg(&mp2->pdev->dev, "resume sid 0x%x (%s) status 0x%x\n", 178 cl_data->sensor_idx[i], get_sensor_name(cl_data->sensor_idx[i]), 179 cl_data->sensor_sts[i]); 180 } 181 } 182 183 schedule_delayed_work(&cl_data->work_buffer, msecs_to_jiffies(AMD_SFH_IDLE_LOOP)); 184 amd_sfh_clear_intr(mp2); 185 } 186 187 static void amd_sfh_suspend(struct amd_mp2_dev *mp2) 188 { 189 struct amdtp_cl_data *cl_data = mp2->cl_data; 190 int i, status; 191 192 for (i = 0; i < cl_data->num_hid_devices; i++) { 193 if (cl_data->sensor_idx[i] != HPD_IDX && 194 cl_data->sensor_sts[i] == SENSOR_ENABLED) { 195 mp2->mp2_ops->stop(mp2, cl_data->sensor_idx[i]); 196 status = amd_sfh_wait_for_response 197 (mp2, cl_data->sensor_idx[i], SENSOR_DISABLED); 198 if (status != SENSOR_ENABLED) 199 cl_data->sensor_sts[i] = SENSOR_DISABLED; 200 dev_dbg(&mp2->pdev->dev, "suspend sid 0x%x (%s) status 0x%x\n", 201 cl_data->sensor_idx[i], get_sensor_name(cl_data->sensor_idx[i]), 202 cl_data->sensor_sts[i]); 203 } 204 } 205 206 cancel_delayed_work_sync(&cl_data->work_buffer); 207 amd_sfh_clear_intr(mp2); 208 } 209 210 int amd_sfh_hid_client_init(struct amd_mp2_dev *privdata) 211 { 212 struct amd_input_data *in_data = &privdata->in_data; 213 struct amdtp_cl_data *cl_data = privdata->cl_data; 214 struct amd_mp2_ops *mp2_ops = privdata->mp2_ops; 215 struct amd_mp2_sensor_info info; 216 struct request_list *req_list; 217 struct device *dev; 218 u32 feature_report_size; 219 u32 input_report_size; 220 int rc, i; 221 u8 cl_idx; 222 223 req_list = &cl_data->req_list; 224 dev = &privdata->pdev->dev; 225 amd_sfh_set_desc_ops(mp2_ops); 226 227 mp2_ops->suspend = amd_sfh_suspend; 228 mp2_ops->resume = amd_sfh_resume; 229 230 cl_data->num_hid_devices = amd_mp2_get_sensor_num(privdata, &cl_data->sensor_idx[0]); 231 if (cl_data->num_hid_devices == 0) 232 return -ENODEV; 233 cl_data->is_any_sensor_enabled = false; 234 235 INIT_DELAYED_WORK(&cl_data->work, amd_sfh_work); 236 INIT_DELAYED_WORK(&cl_data->work_buffer, amd_sfh_work_buffer); 237 INIT_LIST_HEAD(&req_list->list); 238 cl_data->in_data = in_data; 239 240 for (i = 0; i < cl_data->num_hid_devices; i++) { 241 in_data->sensor_virt_addr[i] = dmam_alloc_coherent(dev, sizeof(int) * 8, 242 &cl_data->sensor_dma_addr[i], 243 GFP_KERNEL); 244 if (!in_data->sensor_virt_addr[i]) { 245 rc = -ENOMEM; 246 goto cleanup; 247 } 248 249 if (cl_data->sensor_idx[i] == op_idx) { 250 info.period = AMD_SFH_IDLE_LOOP; 251 info.sensor_idx = cl_data->sensor_idx[i]; 252 info.dma_address = cl_data->sensor_dma_addr[i]; 253 mp2_ops->start(privdata, info); 254 cl_data->sensor_sts[i] = amd_sfh_wait_for_response(privdata, 255 cl_data->sensor_idx[i], 256 SENSOR_ENABLED); 257 if (cl_data->sensor_sts[i] == SENSOR_ENABLED) 258 cl_data->is_any_sensor_enabled = true; 259 continue; 260 } 261 262 cl_data->sensor_sts[i] = SENSOR_DISABLED; 263 cl_data->sensor_requested_cnt[i] = 0; 264 cl_data->cur_hid_dev = i; 265 cl_idx = cl_data->sensor_idx[i]; 266 cl_data->report_descr_sz[i] = mp2_ops->get_desc_sz(cl_idx, descr_size); 267 if (!cl_data->report_descr_sz[i]) { 268 rc = -EINVAL; 269 goto cleanup; 270 } 271 feature_report_size = mp2_ops->get_desc_sz(cl_idx, feature_size); 272 if (!feature_report_size) { 273 rc = -EINVAL; 274 goto cleanup; 275 } 276 input_report_size = mp2_ops->get_desc_sz(cl_idx, input_size); 277 if (!input_report_size) { 278 rc = -EINVAL; 279 goto cleanup; 280 } 281 cl_data->feature_report[i] = devm_kzalloc(dev, feature_report_size, GFP_KERNEL); 282 if (!cl_data->feature_report[i]) { 283 rc = -ENOMEM; 284 goto cleanup; 285 } 286 in_data->input_report[i] = devm_kzalloc(dev, input_report_size, GFP_KERNEL); 287 if (!in_data->input_report[i]) { 288 rc = -ENOMEM; 289 goto cleanup; 290 } 291 info.period = AMD_SFH_IDLE_LOOP; 292 info.sensor_idx = cl_idx; 293 info.dma_address = cl_data->sensor_dma_addr[i]; 294 295 cl_data->report_descr[i] = 296 devm_kzalloc(dev, cl_data->report_descr_sz[i], GFP_KERNEL); 297 if (!cl_data->report_descr[i]) { 298 rc = -ENOMEM; 299 goto cleanup; 300 } 301 rc = mp2_ops->get_rep_desc(cl_idx, cl_data->report_descr[i]); 302 if (rc) 303 goto cleanup; 304 mp2_ops->start(privdata, info); 305 cl_data->sensor_sts[i] = amd_sfh_wait_for_response 306 (privdata, cl_data->sensor_idx[i], SENSOR_ENABLED); 307 308 if (cl_data->sensor_sts[i] == SENSOR_ENABLED) 309 cl_data->is_any_sensor_enabled = true; 310 } 311 312 if (!cl_data->is_any_sensor_enabled || 313 (mp2_ops->discovery_status && mp2_ops->discovery_status(privdata) == 0)) { 314 dev_warn(dev, "Failed to discover, sensors not enabled is %d\n", 315 cl_data->is_any_sensor_enabled); 316 rc = -EOPNOTSUPP; 317 goto cleanup; 318 } 319 320 for (i = 0; i < cl_data->num_hid_devices; i++) { 321 cl_data->cur_hid_dev = i; 322 if (cl_data->sensor_idx[i] == op_idx) { 323 dev_dbg(dev, "sid 0x%x (%s) status 0x%x\n", 324 cl_data->sensor_idx[i], get_sensor_name(cl_data->sensor_idx[i]), 325 cl_data->sensor_sts[i]); 326 continue; 327 } 328 329 if (cl_data->sensor_sts[i] == SENSOR_ENABLED) { 330 rc = amdtp_hid_probe(i, cl_data); 331 if (rc) 332 goto cleanup; 333 } else { 334 cl_data->sensor_sts[i] = SENSOR_DISABLED; 335 } 336 dev_dbg(dev, "sid 0x%x (%s) status 0x%x\n", 337 cl_data->sensor_idx[i], get_sensor_name(cl_data->sensor_idx[i]), 338 cl_data->sensor_sts[i]); 339 } 340 341 schedule_delayed_work(&cl_data->work_buffer, msecs_to_jiffies(AMD_SFH_IDLE_LOOP)); 342 return 0; 343 344 cleanup: 345 amd_sfh_hid_client_deinit(privdata); 346 for (i = 0; i < cl_data->num_hid_devices; i++) { 347 devm_kfree(dev, cl_data->feature_report[i]); 348 devm_kfree(dev, in_data->input_report[i]); 349 devm_kfree(dev, cl_data->report_descr[i]); 350 } 351 return rc; 352 } 353 354 int amd_sfh_hid_client_deinit(struct amd_mp2_dev *privdata) 355 { 356 struct amdtp_cl_data *cl_data = privdata->cl_data; 357 int i, status; 358 359 for (i = 0; i < cl_data->num_hid_devices; i++) { 360 if (cl_data->sensor_sts[i] == SENSOR_ENABLED) { 361 privdata->mp2_ops->stop(privdata, cl_data->sensor_idx[i]); 362 status = amd_sfh_wait_for_response 363 (privdata, cl_data->sensor_idx[i], SENSOR_DISABLED); 364 if (status != SENSOR_ENABLED) 365 cl_data->sensor_sts[i] = SENSOR_DISABLED; 366 dev_dbg(&privdata->pdev->dev, "stopping sid 0x%x (%s) status 0x%x\n", 367 cl_data->sensor_idx[i], get_sensor_name(cl_data->sensor_idx[i]), 368 cl_data->sensor_sts[i]); 369 } 370 } 371 372 cancel_delayed_work_sync(&cl_data->work); 373 cancel_delayed_work_sync(&cl_data->work_buffer); 374 amdtp_hid_remove(cl_data); 375 376 return 0; 377 } 378