1 /* 2 * ISHTP bus layer messages handling 3 * 4 * Copyright (c) 2003-2016, Intel Corporation. 5 * 6 * This program is free software; you can redistribute it and/or modify it 7 * under the terms and conditions of the GNU General Public License, 8 * version 2, as published by the Free Software Foundation. 9 * 10 * This program is distributed in the hope it will be useful, but WITHOUT 11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for 13 * more details. 14 * 15 */ 16 17 #include <linux/export.h> 18 #include <linux/slab.h> 19 #include <linux/sched.h> 20 #include <linux/wait.h> 21 #include <linux/spinlock.h> 22 #include "ishtp-dev.h" 23 #include "hbm.h" 24 #include "client.h" 25 26 /** 27 * ishtp_hbm_fw_cl_allocate() - Allocate FW clients 28 * @dev: ISHTP device instance 29 * 30 * Allocates storage for fw clients 31 */ 32 static void ishtp_hbm_fw_cl_allocate(struct ishtp_device *dev) 33 { 34 struct ishtp_fw_client *clients; 35 int b; 36 37 /* count how many ISH clients we have */ 38 for_each_set_bit(b, dev->fw_clients_map, ISHTP_CLIENTS_MAX) 39 dev->fw_clients_num++; 40 41 if (dev->fw_clients_num <= 0) 42 return; 43 44 /* allocate storage for fw clients representation */ 45 clients = kcalloc(dev->fw_clients_num, sizeof(struct ishtp_fw_client), 46 GFP_KERNEL); 47 if (!clients) { 48 dev->dev_state = ISHTP_DEV_RESETTING; 49 ish_hw_reset(dev); 50 return; 51 } 52 dev->fw_clients = clients; 53 } 54 55 /** 56 * ishtp_hbm_cl_hdr() - construct client hbm header 57 * @cl: client 58 * @hbm_cmd: host bus message command 59 * @buf: buffer for cl header 60 * @len: buffer length 61 * 62 * Initialize HBM buffer 63 */ 64 static inline void ishtp_hbm_cl_hdr(struct ishtp_cl *cl, uint8_t hbm_cmd, 65 void *buf, size_t len) 66 { 67 struct ishtp_hbm_cl_cmd *cmd = buf; 68 69 memset(cmd, 0, len); 70 71 cmd->hbm_cmd = hbm_cmd; 72 cmd->host_addr = cl->host_client_id; 73 cmd->fw_addr = cl->fw_client_id; 74 } 75 76 /** 77 * ishtp_hbm_cl_addr_equal() - Compare client address 78 * @cl: client 79 * @buf: Client command buffer 80 * 81 * Compare client address with the address in command buffer 82 * 83 * Return: True if they have the same address 84 */ 85 static inline bool ishtp_hbm_cl_addr_equal(struct ishtp_cl *cl, void *buf) 86 { 87 struct ishtp_hbm_cl_cmd *cmd = buf; 88 89 return cl->host_client_id == cmd->host_addr && 90 cl->fw_client_id == cmd->fw_addr; 91 } 92 93 /** 94 * ishtp_hbm_start_wait() - Wait for HBM start message 95 * @dev: ISHTP device instance 96 * 97 * Wait for HBM start message from firmware 98 * 99 * Return: 0 if HBM start is/was received else timeout error 100 */ 101 int ishtp_hbm_start_wait(struct ishtp_device *dev) 102 { 103 int ret; 104 105 if (dev->hbm_state > ISHTP_HBM_START) 106 return 0; 107 108 dev_dbg(dev->devc, "Going to wait for ishtp start. hbm_state=%08X\n", 109 dev->hbm_state); 110 ret = wait_event_interruptible_timeout(dev->wait_hbm_recvd_msg, 111 dev->hbm_state >= ISHTP_HBM_STARTED, 112 (ISHTP_INTEROP_TIMEOUT * HZ)); 113 114 dev_dbg(dev->devc, 115 "Woke up from waiting for ishtp start. hbm_state=%08X\n", 116 dev->hbm_state); 117 118 if (ret <= 0 && (dev->hbm_state <= ISHTP_HBM_START)) { 119 dev->hbm_state = ISHTP_HBM_IDLE; 120 dev_err(dev->devc, 121 "waiting for ishtp start failed. ret=%d hbm_state=%08X\n", 122 ret, dev->hbm_state); 123 return -ETIMEDOUT; 124 } 125 return 0; 126 } 127 128 /** 129 * ishtp_hbm_start_req() - Send HBM start message 130 * @dev: ISHTP device instance 131 * 132 * Send HBM start message to firmware 133 * 134 * Return: 0 if success else error code 135 */ 136 int ishtp_hbm_start_req(struct ishtp_device *dev) 137 { 138 struct ishtp_msg_hdr hdr; 139 unsigned char data[128]; 140 struct ishtp_msg_hdr *ishtp_hdr = &hdr; 141 struct hbm_host_version_request *start_req; 142 const size_t len = sizeof(struct hbm_host_version_request); 143 144 ishtp_hbm_hdr(ishtp_hdr, len); 145 146 /* host start message */ 147 start_req = (struct hbm_host_version_request *)data; 148 memset(start_req, 0, len); 149 start_req->hbm_cmd = HOST_START_REQ_CMD; 150 start_req->host_version.major_version = HBM_MAJOR_VERSION; 151 start_req->host_version.minor_version = HBM_MINOR_VERSION; 152 153 /* 154 * (!) Response to HBM start may be so quick that this thread would get 155 * preempted BEFORE managing to set hbm_state = ISHTP_HBM_START. 156 * So set it at first, change back to ISHTP_HBM_IDLE upon failure 157 */ 158 dev->hbm_state = ISHTP_HBM_START; 159 if (ishtp_write_message(dev, ishtp_hdr, data)) { 160 dev_err(dev->devc, "version message send failed\n"); 161 dev->dev_state = ISHTP_DEV_RESETTING; 162 dev->hbm_state = ISHTP_HBM_IDLE; 163 ish_hw_reset(dev); 164 return -ENODEV; 165 } 166 167 return 0; 168 } 169 170 /** 171 * ishtp_hbm_enum_clients_req() - Send client enum req 172 * @dev: ISHTP device instance 173 * 174 * Send enumeration client request message 175 * 176 * Return: 0 if success else error code 177 */ 178 void ishtp_hbm_enum_clients_req(struct ishtp_device *dev) 179 { 180 struct ishtp_msg_hdr hdr; 181 unsigned char data[128]; 182 struct ishtp_msg_hdr *ishtp_hdr = &hdr; 183 struct hbm_host_enum_request *enum_req; 184 const size_t len = sizeof(struct hbm_host_enum_request); 185 186 /* enumerate clients */ 187 ishtp_hbm_hdr(ishtp_hdr, len); 188 189 enum_req = (struct hbm_host_enum_request *)data; 190 memset(enum_req, 0, len); 191 enum_req->hbm_cmd = HOST_ENUM_REQ_CMD; 192 193 if (ishtp_write_message(dev, ishtp_hdr, data)) { 194 dev->dev_state = ISHTP_DEV_RESETTING; 195 dev_err(dev->devc, "enumeration request send failed\n"); 196 ish_hw_reset(dev); 197 } 198 dev->hbm_state = ISHTP_HBM_ENUM_CLIENTS; 199 } 200 201 /** 202 * ishtp_hbm_prop_req() - Request property 203 * @dev: ISHTP device instance 204 * 205 * Request property for a single client 206 * 207 * Return: 0 if success else error code 208 */ 209 static int ishtp_hbm_prop_req(struct ishtp_device *dev) 210 { 211 212 struct ishtp_msg_hdr hdr; 213 unsigned char data[128]; 214 struct ishtp_msg_hdr *ishtp_hdr = &hdr; 215 struct hbm_props_request *prop_req; 216 const size_t len = sizeof(struct hbm_props_request); 217 unsigned long next_client_index; 218 uint8_t client_num; 219 220 client_num = dev->fw_client_presentation_num; 221 222 next_client_index = find_next_bit(dev->fw_clients_map, 223 ISHTP_CLIENTS_MAX, dev->fw_client_index); 224 225 /* We got all client properties */ 226 if (next_client_index == ISHTP_CLIENTS_MAX) { 227 dev->hbm_state = ISHTP_HBM_WORKING; 228 dev->dev_state = ISHTP_DEV_ENABLED; 229 230 for (dev->fw_client_presentation_num = 1; 231 dev->fw_client_presentation_num < client_num + 1; 232 ++dev->fw_client_presentation_num) 233 /* Add new client device */ 234 ishtp_bus_new_client(dev); 235 return 0; 236 } 237 238 dev->fw_clients[client_num].client_id = next_client_index; 239 240 ishtp_hbm_hdr(ishtp_hdr, len); 241 prop_req = (struct hbm_props_request *)data; 242 243 memset(prop_req, 0, sizeof(struct hbm_props_request)); 244 245 prop_req->hbm_cmd = HOST_CLIENT_PROPERTIES_REQ_CMD; 246 prop_req->address = next_client_index; 247 248 if (ishtp_write_message(dev, ishtp_hdr, data)) { 249 dev->dev_state = ISHTP_DEV_RESETTING; 250 dev_err(dev->devc, "properties request send failed\n"); 251 ish_hw_reset(dev); 252 return -EIO; 253 } 254 255 dev->fw_client_index = next_client_index; 256 257 return 0; 258 } 259 260 /** 261 * ishtp_hbm_stop_req() - Send HBM stop 262 * @dev: ISHTP device instance 263 * 264 * Send stop request message 265 */ 266 static void ishtp_hbm_stop_req(struct ishtp_device *dev) 267 { 268 struct ishtp_msg_hdr hdr; 269 unsigned char data[128]; 270 struct ishtp_msg_hdr *ishtp_hdr = &hdr; 271 struct hbm_host_stop_request *req; 272 const size_t len = sizeof(struct hbm_host_stop_request); 273 274 ishtp_hbm_hdr(ishtp_hdr, len); 275 req = (struct hbm_host_stop_request *)data; 276 277 memset(req, 0, sizeof(struct hbm_host_stop_request)); 278 req->hbm_cmd = HOST_STOP_REQ_CMD; 279 req->reason = DRIVER_STOP_REQUEST; 280 281 ishtp_write_message(dev, ishtp_hdr, data); 282 } 283 284 /** 285 * ishtp_hbm_cl_flow_control_req() - Send flow control request 286 * @dev: ISHTP device instance 287 * @cl: ISHTP client instance 288 * 289 * Send flow control request 290 * 291 * Return: 0 if success else error code 292 */ 293 int ishtp_hbm_cl_flow_control_req(struct ishtp_device *dev, 294 struct ishtp_cl *cl) 295 { 296 struct ishtp_msg_hdr hdr; 297 unsigned char data[128]; 298 struct ishtp_msg_hdr *ishtp_hdr = &hdr; 299 const size_t len = sizeof(struct hbm_flow_control); 300 int rv; 301 unsigned int num_frags; 302 unsigned long flags; 303 304 spin_lock_irqsave(&cl->fc_spinlock, flags); 305 ishtp_hbm_hdr(ishtp_hdr, len); 306 ishtp_hbm_cl_hdr(cl, ISHTP_FLOW_CONTROL_CMD, data, len); 307 308 /* 309 * Sync possible race when RB recycle and packet receive paths 310 * both try to send an out FC 311 */ 312 if (cl->out_flow_ctrl_creds) { 313 spin_unlock_irqrestore(&cl->fc_spinlock, flags); 314 return 0; 315 } 316 317 num_frags = cl->recv_msg_num_frags; 318 cl->recv_msg_num_frags = 0; 319 320 rv = ishtp_write_message(dev, ishtp_hdr, data); 321 if (!rv) { 322 ++cl->out_flow_ctrl_creds; 323 ++cl->out_flow_ctrl_cnt; 324 getnstimeofday(&cl->ts_out_fc); 325 if (cl->ts_rx.tv_sec && cl->ts_rx.tv_nsec) { 326 struct timespec ts_diff; 327 328 ts_diff = timespec_sub(cl->ts_out_fc, cl->ts_rx); 329 if (timespec_compare(&ts_diff, &cl->ts_max_fc_delay) 330 > 0) 331 cl->ts_max_fc_delay = ts_diff; 332 } 333 } else { 334 ++cl->err_send_fc; 335 } 336 337 spin_unlock_irqrestore(&cl->fc_spinlock, flags); 338 return rv; 339 } 340 341 /** 342 * ishtp_hbm_cl_disconnect_req() - Send disconnect request 343 * @dev: ISHTP device instance 344 * @cl: ISHTP client instance 345 * 346 * Send disconnect message to fw 347 * 348 * Return: 0 if success else error code 349 */ 350 int ishtp_hbm_cl_disconnect_req(struct ishtp_device *dev, struct ishtp_cl *cl) 351 { 352 struct ishtp_msg_hdr hdr; 353 unsigned char data[128]; 354 struct ishtp_msg_hdr *ishtp_hdr = &hdr; 355 const size_t len = sizeof(struct hbm_client_connect_request); 356 357 ishtp_hbm_hdr(ishtp_hdr, len); 358 ishtp_hbm_cl_hdr(cl, CLIENT_DISCONNECT_REQ_CMD, data, len); 359 360 return ishtp_write_message(dev, ishtp_hdr, data); 361 } 362 363 /** 364 * ishtp_hbm_cl_disconnect_res() - Get disconnect response 365 * @dev: ISHTP device instance 366 * @rs: Response message 367 * 368 * Received disconnect response from fw 369 */ 370 static void ishtp_hbm_cl_disconnect_res(struct ishtp_device *dev, 371 struct hbm_client_connect_response *rs) 372 { 373 struct ishtp_cl *cl = NULL; 374 unsigned long flags; 375 376 spin_lock_irqsave(&dev->cl_list_lock, flags); 377 list_for_each_entry(cl, &dev->cl_list, link) { 378 if (!rs->status && ishtp_hbm_cl_addr_equal(cl, rs)) { 379 cl->state = ISHTP_CL_DISCONNECTED; 380 wake_up_interruptible(&cl->wait_ctrl_res); 381 break; 382 } 383 } 384 spin_unlock_irqrestore(&dev->cl_list_lock, flags); 385 } 386 387 /** 388 * ishtp_hbm_cl_connect_req() - Send connect request 389 * @dev: ISHTP device instance 390 * @cl: client device instance 391 * 392 * Send connection request to specific fw client 393 * 394 * Return: 0 if success else error code 395 */ 396 int ishtp_hbm_cl_connect_req(struct ishtp_device *dev, struct ishtp_cl *cl) 397 { 398 struct ishtp_msg_hdr hdr; 399 unsigned char data[128]; 400 struct ishtp_msg_hdr *ishtp_hdr = &hdr; 401 const size_t len = sizeof(struct hbm_client_connect_request); 402 403 ishtp_hbm_hdr(ishtp_hdr, len); 404 ishtp_hbm_cl_hdr(cl, CLIENT_CONNECT_REQ_CMD, data, len); 405 406 return ishtp_write_message(dev, ishtp_hdr, data); 407 } 408 409 /** 410 * ishtp_hbm_cl_connect_res() - Get connect response 411 * @dev: ISHTP device instance 412 * @rs: Response message 413 * 414 * Received connect response from fw 415 */ 416 static void ishtp_hbm_cl_connect_res(struct ishtp_device *dev, 417 struct hbm_client_connect_response *rs) 418 { 419 struct ishtp_cl *cl = NULL; 420 unsigned long flags; 421 422 spin_lock_irqsave(&dev->cl_list_lock, flags); 423 list_for_each_entry(cl, &dev->cl_list, link) { 424 if (ishtp_hbm_cl_addr_equal(cl, rs)) { 425 if (!rs->status) { 426 cl->state = ISHTP_CL_CONNECTED; 427 cl->status = 0; 428 } else { 429 cl->state = ISHTP_CL_DISCONNECTED; 430 cl->status = -ENODEV; 431 } 432 wake_up_interruptible(&cl->wait_ctrl_res); 433 break; 434 } 435 } 436 spin_unlock_irqrestore(&dev->cl_list_lock, flags); 437 } 438 439 /** 440 * ishtp_client_disconnect_request() - Receive disconnect request 441 * @dev: ISHTP device instance 442 * @disconnect_req: disconnect request structure 443 * 444 * Disconnect request bus message from the fw. Send diconnect response. 445 */ 446 static void ishtp_hbm_fw_disconnect_req(struct ishtp_device *dev, 447 struct hbm_client_connect_request *disconnect_req) 448 { 449 struct ishtp_cl *cl; 450 const size_t len = sizeof(struct hbm_client_connect_response); 451 unsigned long flags; 452 struct ishtp_msg_hdr hdr; 453 unsigned char data[4]; /* All HBM messages are 4 bytes */ 454 455 spin_lock_irqsave(&dev->cl_list_lock, flags); 456 list_for_each_entry(cl, &dev->cl_list, link) { 457 if (ishtp_hbm_cl_addr_equal(cl, disconnect_req)) { 458 cl->state = ISHTP_CL_DISCONNECTED; 459 460 /* send disconnect response */ 461 ishtp_hbm_hdr(&hdr, len); 462 ishtp_hbm_cl_hdr(cl, CLIENT_DISCONNECT_RES_CMD, data, 463 len); 464 ishtp_write_message(dev, &hdr, data); 465 break; 466 } 467 } 468 spin_unlock_irqrestore(&dev->cl_list_lock, flags); 469 } 470 471 /** 472 * ishtp_hbm_dma_xfer_ack(() - Receive transfer ACK 473 * @dev: ISHTP device instance 474 * @dma_xfer: HBM transfer message 475 * 476 * Receive ack for ISHTP-over-DMA client message 477 */ 478 static void ishtp_hbm_dma_xfer_ack(struct ishtp_device *dev, 479 struct dma_xfer_hbm *dma_xfer) 480 { 481 void *msg; 482 uint64_t offs; 483 struct ishtp_msg_hdr *ishtp_hdr = 484 (struct ishtp_msg_hdr *)&dev->ishtp_msg_hdr; 485 unsigned int msg_offs; 486 struct ishtp_cl *cl; 487 488 for (msg_offs = 0; msg_offs < ishtp_hdr->length; 489 msg_offs += sizeof(struct dma_xfer_hbm)) { 490 offs = dma_xfer->msg_addr - dev->ishtp_host_dma_tx_buf_phys; 491 if (offs > dev->ishtp_host_dma_tx_buf_size) { 492 dev_err(dev->devc, "Bad DMA Tx ack message address\n"); 493 return; 494 } 495 if (dma_xfer->msg_length > 496 dev->ishtp_host_dma_tx_buf_size - offs) { 497 dev_err(dev->devc, "Bad DMA Tx ack message size\n"); 498 return; 499 } 500 501 /* logical address of the acked mem */ 502 msg = (unsigned char *)dev->ishtp_host_dma_tx_buf + offs; 503 ishtp_cl_release_dma_acked_mem(dev, msg, dma_xfer->msg_length); 504 505 list_for_each_entry(cl, &dev->cl_list, link) { 506 if (cl->fw_client_id == dma_xfer->fw_client_id && 507 cl->host_client_id == dma_xfer->host_client_id) 508 /* 509 * in case that a single ack may be sent 510 * over several dma transfers, and the last msg 511 * addr was inside the acked memory, but not in 512 * its start 513 */ 514 if (cl->last_dma_addr >= 515 (unsigned char *)msg && 516 cl->last_dma_addr < 517 (unsigned char *)msg + 518 dma_xfer->msg_length) { 519 cl->last_dma_acked = 1; 520 521 if (!list_empty(&cl->tx_list.list) && 522 cl->ishtp_flow_ctrl_creds) { 523 /* 524 * start sending the first msg 525 */ 526 ishtp_cl_send_msg(dev, cl); 527 } 528 } 529 } 530 ++dma_xfer; 531 } 532 } 533 534 /** 535 * ishtp_hbm_dma_xfer() - Receive DMA transfer message 536 * @dev: ISHTP device instance 537 * @dma_xfer: HBM transfer message 538 * 539 * Receive ISHTP-over-DMA client message 540 */ 541 static void ishtp_hbm_dma_xfer(struct ishtp_device *dev, 542 struct dma_xfer_hbm *dma_xfer) 543 { 544 void *msg; 545 uint64_t offs; 546 struct ishtp_msg_hdr hdr; 547 struct ishtp_msg_hdr *ishtp_hdr = 548 (struct ishtp_msg_hdr *) &dev->ishtp_msg_hdr; 549 struct dma_xfer_hbm *prm = dma_xfer; 550 unsigned int msg_offs; 551 552 for (msg_offs = 0; msg_offs < ishtp_hdr->length; 553 msg_offs += sizeof(struct dma_xfer_hbm)) { 554 555 offs = dma_xfer->msg_addr - dev->ishtp_host_dma_rx_buf_phys; 556 if (offs > dev->ishtp_host_dma_rx_buf_size) { 557 dev_err(dev->devc, "Bad DMA Rx message address\n"); 558 return; 559 } 560 if (dma_xfer->msg_length > 561 dev->ishtp_host_dma_rx_buf_size - offs) { 562 dev_err(dev->devc, "Bad DMA Rx message size\n"); 563 return; 564 } 565 msg = dev->ishtp_host_dma_rx_buf + offs; 566 recv_ishtp_cl_msg_dma(dev, msg, dma_xfer); 567 dma_xfer->hbm = DMA_XFER_ACK; /* Prepare for response */ 568 ++dma_xfer; 569 } 570 571 /* Send DMA_XFER_ACK [...] */ 572 ishtp_hbm_hdr(&hdr, ishtp_hdr->length); 573 ishtp_write_message(dev, &hdr, (unsigned char *)prm); 574 } 575 576 /** 577 * ishtp_hbm_dispatch() - HBM dispatch function 578 * @dev: ISHTP device instance 579 * @hdr: bus message 580 * 581 * Bottom half read routine after ISR to handle the read bus message cmd 582 * processing 583 */ 584 void ishtp_hbm_dispatch(struct ishtp_device *dev, 585 struct ishtp_bus_message *hdr) 586 { 587 struct ishtp_bus_message *ishtp_msg; 588 struct ishtp_fw_client *fw_client; 589 struct hbm_host_version_response *version_res; 590 struct hbm_client_connect_response *connect_res; 591 struct hbm_client_connect_response *disconnect_res; 592 struct hbm_client_connect_request *disconnect_req; 593 struct hbm_props_response *props_res; 594 struct hbm_host_enum_response *enum_res; 595 struct ishtp_msg_hdr ishtp_hdr; 596 struct dma_alloc_notify dma_alloc_notify; 597 struct dma_xfer_hbm *dma_xfer; 598 599 ishtp_msg = hdr; 600 601 switch (ishtp_msg->hbm_cmd) { 602 case HOST_START_RES_CMD: 603 version_res = (struct hbm_host_version_response *)ishtp_msg; 604 if (!version_res->host_version_supported) { 605 dev->version = version_res->fw_max_version; 606 607 dev->hbm_state = ISHTP_HBM_STOPPED; 608 ishtp_hbm_stop_req(dev); 609 return; 610 } 611 612 dev->version.major_version = HBM_MAJOR_VERSION; 613 dev->version.minor_version = HBM_MINOR_VERSION; 614 if (dev->dev_state == ISHTP_DEV_INIT_CLIENTS && 615 dev->hbm_state == ISHTP_HBM_START) { 616 dev->hbm_state = ISHTP_HBM_STARTED; 617 ishtp_hbm_enum_clients_req(dev); 618 } else { 619 dev_err(dev->devc, 620 "reset: wrong host start response\n"); 621 /* BUG: why do we arrive here? */ 622 ish_hw_reset(dev); 623 return; 624 } 625 626 wake_up_interruptible(&dev->wait_hbm_recvd_msg); 627 break; 628 629 case CLIENT_CONNECT_RES_CMD: 630 connect_res = (struct hbm_client_connect_response *)ishtp_msg; 631 ishtp_hbm_cl_connect_res(dev, connect_res); 632 break; 633 634 case CLIENT_DISCONNECT_RES_CMD: 635 disconnect_res = 636 (struct hbm_client_connect_response *)ishtp_msg; 637 ishtp_hbm_cl_disconnect_res(dev, disconnect_res); 638 break; 639 640 case HOST_CLIENT_PROPERTIES_RES_CMD: 641 props_res = (struct hbm_props_response *)ishtp_msg; 642 fw_client = &dev->fw_clients[dev->fw_client_presentation_num]; 643 644 if (props_res->status || !dev->fw_clients) { 645 dev_err(dev->devc, 646 "reset: properties response hbm wrong status\n"); 647 ish_hw_reset(dev); 648 return; 649 } 650 651 if (fw_client->client_id != props_res->address) { 652 dev_err(dev->devc, 653 "reset: host properties response address mismatch [%02X %02X]\n", 654 fw_client->client_id, props_res->address); 655 ish_hw_reset(dev); 656 return; 657 } 658 659 if (dev->dev_state != ISHTP_DEV_INIT_CLIENTS || 660 dev->hbm_state != ISHTP_HBM_CLIENT_PROPERTIES) { 661 dev_err(dev->devc, 662 "reset: unexpected properties response\n"); 663 ish_hw_reset(dev); 664 return; 665 } 666 667 fw_client->props = props_res->client_properties; 668 dev->fw_client_index++; 669 dev->fw_client_presentation_num++; 670 671 /* request property for the next client */ 672 ishtp_hbm_prop_req(dev); 673 674 if (dev->dev_state != ISHTP_DEV_ENABLED) 675 break; 676 677 if (!ishtp_use_dma_transfer()) 678 break; 679 680 dev_dbg(dev->devc, "Requesting to use DMA\n"); 681 ishtp_cl_alloc_dma_buf(dev); 682 if (dev->ishtp_host_dma_rx_buf) { 683 const size_t len = sizeof(dma_alloc_notify); 684 685 memset(&dma_alloc_notify, 0, sizeof(dma_alloc_notify)); 686 dma_alloc_notify.hbm = DMA_BUFFER_ALLOC_NOTIFY; 687 dma_alloc_notify.buf_size = 688 dev->ishtp_host_dma_rx_buf_size; 689 dma_alloc_notify.buf_address = 690 dev->ishtp_host_dma_rx_buf_phys; 691 ishtp_hbm_hdr(&ishtp_hdr, len); 692 ishtp_write_message(dev, &ishtp_hdr, 693 (unsigned char *)&dma_alloc_notify); 694 } 695 696 break; 697 698 case HOST_ENUM_RES_CMD: 699 enum_res = (struct hbm_host_enum_response *) ishtp_msg; 700 memcpy(dev->fw_clients_map, enum_res->valid_addresses, 32); 701 if (dev->dev_state == ISHTP_DEV_INIT_CLIENTS && 702 dev->hbm_state == ISHTP_HBM_ENUM_CLIENTS) { 703 dev->fw_client_presentation_num = 0; 704 dev->fw_client_index = 0; 705 706 ishtp_hbm_fw_cl_allocate(dev); 707 dev->hbm_state = ISHTP_HBM_CLIENT_PROPERTIES; 708 709 /* first property request */ 710 ishtp_hbm_prop_req(dev); 711 } else { 712 dev_err(dev->devc, 713 "reset: unexpected enumeration response hbm\n"); 714 ish_hw_reset(dev); 715 return; 716 } 717 break; 718 719 case HOST_STOP_RES_CMD: 720 if (dev->hbm_state != ISHTP_HBM_STOPPED) 721 dev_err(dev->devc, "unexpected stop response\n"); 722 723 dev->dev_state = ISHTP_DEV_DISABLED; 724 dev_info(dev->devc, "reset: FW stop response\n"); 725 ish_hw_reset(dev); 726 break; 727 728 case CLIENT_DISCONNECT_REQ_CMD: 729 /* search for client */ 730 disconnect_req = 731 (struct hbm_client_connect_request *)ishtp_msg; 732 ishtp_hbm_fw_disconnect_req(dev, disconnect_req); 733 break; 734 735 case FW_STOP_REQ_CMD: 736 dev->hbm_state = ISHTP_HBM_STOPPED; 737 break; 738 739 case DMA_BUFFER_ALLOC_RESPONSE: 740 dev->ishtp_host_dma_enabled = 1; 741 break; 742 743 case DMA_XFER: 744 dma_xfer = (struct dma_xfer_hbm *)ishtp_msg; 745 if (!dev->ishtp_host_dma_enabled) { 746 dev_err(dev->devc, 747 "DMA XFER requested but DMA is not enabled\n"); 748 break; 749 } 750 ishtp_hbm_dma_xfer(dev, dma_xfer); 751 break; 752 753 case DMA_XFER_ACK: 754 dma_xfer = (struct dma_xfer_hbm *)ishtp_msg; 755 if (!dev->ishtp_host_dma_enabled || 756 !dev->ishtp_host_dma_tx_buf) { 757 dev_err(dev->devc, 758 "DMA XFER acked but DMA Tx is not enabled\n"); 759 break; 760 } 761 ishtp_hbm_dma_xfer_ack(dev, dma_xfer); 762 break; 763 764 default: 765 dev_err(dev->devc, "unknown HBM: %u\n", 766 (unsigned int)ishtp_msg->hbm_cmd); 767 768 break; 769 } 770 } 771 772 /** 773 * bh_hbm_work_fn() - HBM work function 774 * @work: work struct 775 * 776 * Bottom half processing work function (instead of thread handler) 777 * for processing hbm messages 778 */ 779 void bh_hbm_work_fn(struct work_struct *work) 780 { 781 unsigned long flags; 782 struct ishtp_device *dev; 783 unsigned char hbm[IPC_PAYLOAD_SIZE]; 784 785 dev = container_of(work, struct ishtp_device, bh_hbm_work); 786 spin_lock_irqsave(&dev->rd_msg_spinlock, flags); 787 if (dev->rd_msg_fifo_head != dev->rd_msg_fifo_tail) { 788 memcpy(hbm, dev->rd_msg_fifo + dev->rd_msg_fifo_head, 789 IPC_PAYLOAD_SIZE); 790 dev->rd_msg_fifo_head = 791 (dev->rd_msg_fifo_head + IPC_PAYLOAD_SIZE) % 792 (RD_INT_FIFO_SIZE * IPC_PAYLOAD_SIZE); 793 spin_unlock_irqrestore(&dev->rd_msg_spinlock, flags); 794 ishtp_hbm_dispatch(dev, (struct ishtp_bus_message *)hbm); 795 } else { 796 spin_unlock_irqrestore(&dev->rd_msg_spinlock, flags); 797 } 798 } 799 800 /** 801 * recv_hbm() - Receive HBM message 802 * @dev: ISHTP device instance 803 * @ishtp_hdr: received bus message 804 * 805 * Receive and process ISHTP bus messages in ISR context. This will schedule 806 * work function to process message 807 */ 808 void recv_hbm(struct ishtp_device *dev, struct ishtp_msg_hdr *ishtp_hdr) 809 { 810 uint8_t rd_msg_buf[ISHTP_RD_MSG_BUF_SIZE]; 811 struct ishtp_bus_message *ishtp_msg = 812 (struct ishtp_bus_message *)rd_msg_buf; 813 unsigned long flags; 814 815 dev->ops->ishtp_read(dev, rd_msg_buf, ishtp_hdr->length); 816 817 /* Flow control - handle in place */ 818 if (ishtp_msg->hbm_cmd == ISHTP_FLOW_CONTROL_CMD) { 819 struct hbm_flow_control *flow_control = 820 (struct hbm_flow_control *)ishtp_msg; 821 struct ishtp_cl *cl = NULL; 822 unsigned long flags, tx_flags; 823 824 spin_lock_irqsave(&dev->cl_list_lock, flags); 825 list_for_each_entry(cl, &dev->cl_list, link) { 826 if (cl->host_client_id == flow_control->host_addr && 827 cl->fw_client_id == 828 flow_control->fw_addr) { 829 /* 830 * NOTE: It's valid only for counting 831 * flow-control implementation to receive a 832 * FC in the middle of sending. Meanwhile not 833 * supported 834 */ 835 if (cl->ishtp_flow_ctrl_creds) 836 dev_err(dev->devc, 837 "recv extra FC from FW client %u (host client %u) (FC count was %d)\n", 838 (unsigned int)cl->fw_client_id, 839 (unsigned int)cl->host_client_id, 840 cl->ishtp_flow_ctrl_creds); 841 else { 842 ++cl->ishtp_flow_ctrl_creds; 843 ++cl->ishtp_flow_ctrl_cnt; 844 cl->last_ipc_acked = 1; 845 spin_lock_irqsave( 846 &cl->tx_list_spinlock, 847 tx_flags); 848 if (!list_empty(&cl->tx_list.list)) { 849 /* 850 * start sending the first msg 851 * = the callback function 852 */ 853 spin_unlock_irqrestore( 854 &cl->tx_list_spinlock, 855 tx_flags); 856 ishtp_cl_send_msg(dev, cl); 857 } else { 858 spin_unlock_irqrestore( 859 &cl->tx_list_spinlock, 860 tx_flags); 861 } 862 } 863 break; 864 } 865 } 866 spin_unlock_irqrestore(&dev->cl_list_lock, flags); 867 goto eoi; 868 } 869 870 /* 871 * Some messages that are safe for ISR processing and important 872 * to be done "quickly" and in-order, go here 873 */ 874 if (ishtp_msg->hbm_cmd == CLIENT_CONNECT_RES_CMD || 875 ishtp_msg->hbm_cmd == CLIENT_DISCONNECT_RES_CMD || 876 ishtp_msg->hbm_cmd == CLIENT_DISCONNECT_REQ_CMD || 877 ishtp_msg->hbm_cmd == DMA_XFER) { 878 ishtp_hbm_dispatch(dev, ishtp_msg); 879 goto eoi; 880 } 881 882 /* 883 * All other HBMs go here. 884 * We schedule HBMs for processing serially by using system wq, 885 * possibly there will be multiple HBMs scheduled at the same time. 886 */ 887 spin_lock_irqsave(&dev->rd_msg_spinlock, flags); 888 if ((dev->rd_msg_fifo_tail + IPC_PAYLOAD_SIZE) % 889 (RD_INT_FIFO_SIZE * IPC_PAYLOAD_SIZE) == 890 dev->rd_msg_fifo_head) { 891 spin_unlock_irqrestore(&dev->rd_msg_spinlock, flags); 892 dev_err(dev->devc, "BH buffer overflow, dropping HBM %u\n", 893 (unsigned int)ishtp_msg->hbm_cmd); 894 goto eoi; 895 } 896 memcpy(dev->rd_msg_fifo + dev->rd_msg_fifo_tail, ishtp_msg, 897 ishtp_hdr->length); 898 dev->rd_msg_fifo_tail = (dev->rd_msg_fifo_tail + IPC_PAYLOAD_SIZE) % 899 (RD_INT_FIFO_SIZE * IPC_PAYLOAD_SIZE); 900 spin_unlock_irqrestore(&dev->rd_msg_spinlock, flags); 901 schedule_work(&dev->bh_hbm_work); 902 eoi: 903 return; 904 } 905 906 /** 907 * recv_fixed_cl_msg() - Receive fixed client message 908 * @dev: ISHTP device instance 909 * @ishtp_hdr: received bus message 910 * 911 * Receive and process ISHTP fixed client messages (address == 0) 912 * in ISR context 913 */ 914 void recv_fixed_cl_msg(struct ishtp_device *dev, 915 struct ishtp_msg_hdr *ishtp_hdr) 916 { 917 uint8_t rd_msg_buf[ISHTP_RD_MSG_BUF_SIZE]; 918 919 dev->print_log(dev, 920 "%s() got fixed client msg from client #%d\n", 921 __func__, ishtp_hdr->fw_addr); 922 dev->ops->ishtp_read(dev, rd_msg_buf, ishtp_hdr->length); 923 if (ishtp_hdr->fw_addr == ISHTP_SYSTEM_STATE_CLIENT_ADDR) { 924 struct ish_system_states_header *msg_hdr = 925 (struct ish_system_states_header *)rd_msg_buf; 926 if (msg_hdr->cmd == SYSTEM_STATE_SUBSCRIBE) 927 ishtp_send_resume(dev); 928 /* if FW request arrived here, the system is not suspended */ 929 else 930 dev_err(dev->devc, "unknown fixed client msg [%02X]\n", 931 msg_hdr->cmd); 932 } 933 } 934 935 /** 936 * fix_cl_hdr() - Initialize fixed client header 937 * @hdr: message header 938 * @length: length of message 939 * @cl_addr: Client address 940 * 941 * Initialize message header for fixed client 942 */ 943 static inline void fix_cl_hdr(struct ishtp_msg_hdr *hdr, size_t length, 944 uint8_t cl_addr) 945 { 946 hdr->host_addr = 0; 947 hdr->fw_addr = cl_addr; 948 hdr->length = length; 949 hdr->msg_complete = 1; 950 hdr->reserved = 0; 951 } 952 953 /*** Suspend and resume notification ***/ 954 955 static uint32_t current_state; 956 static uint32_t supported_states = 0 | SUSPEND_STATE_BIT; 957 958 /** 959 * ishtp_send_suspend() - Send suspend message to FW 960 * @dev: ISHTP device instance 961 * 962 * Send suspend message to FW. This is useful for system freeze (non S3) case 963 */ 964 void ishtp_send_suspend(struct ishtp_device *dev) 965 { 966 struct ishtp_msg_hdr ishtp_hdr; 967 struct ish_system_states_status state_status_msg; 968 const size_t len = sizeof(struct ish_system_states_status); 969 970 fix_cl_hdr(&ishtp_hdr, len, ISHTP_SYSTEM_STATE_CLIENT_ADDR); 971 972 memset(&state_status_msg, 0, len); 973 state_status_msg.hdr.cmd = SYSTEM_STATE_STATUS; 974 state_status_msg.supported_states = supported_states; 975 current_state |= SUSPEND_STATE_BIT; 976 dev->print_log(dev, "%s() sends SUSPEND notification\n", __func__); 977 state_status_msg.states_status = current_state; 978 979 ishtp_write_message(dev, &ishtp_hdr, 980 (unsigned char *)&state_status_msg); 981 } 982 EXPORT_SYMBOL(ishtp_send_suspend); 983 984 /** 985 * ishtp_send_resume() - Send resume message to FW 986 * @dev: ISHTP device instance 987 * 988 * Send resume message to FW. This is useful for system freeze (non S3) case 989 */ 990 void ishtp_send_resume(struct ishtp_device *dev) 991 { 992 struct ishtp_msg_hdr ishtp_hdr; 993 struct ish_system_states_status state_status_msg; 994 const size_t len = sizeof(struct ish_system_states_status); 995 996 fix_cl_hdr(&ishtp_hdr, len, ISHTP_SYSTEM_STATE_CLIENT_ADDR); 997 998 memset(&state_status_msg, 0, len); 999 state_status_msg.hdr.cmd = SYSTEM_STATE_STATUS; 1000 state_status_msg.supported_states = supported_states; 1001 current_state &= ~SUSPEND_STATE_BIT; 1002 dev->print_log(dev, "%s() sends RESUME notification\n", __func__); 1003 state_status_msg.states_status = current_state; 1004 1005 ishtp_write_message(dev, &ishtp_hdr, 1006 (unsigned char *)&state_status_msg); 1007 } 1008 EXPORT_SYMBOL(ishtp_send_resume); 1009 1010 /** 1011 * ishtp_query_subscribers() - Send query subscribers message 1012 * @dev: ISHTP device instance 1013 * 1014 * Send message to query subscribers 1015 */ 1016 void ishtp_query_subscribers(struct ishtp_device *dev) 1017 { 1018 struct ishtp_msg_hdr ishtp_hdr; 1019 struct ish_system_states_query_subscribers query_subscribers_msg; 1020 const size_t len = sizeof(struct ish_system_states_query_subscribers); 1021 1022 fix_cl_hdr(&ishtp_hdr, len, ISHTP_SYSTEM_STATE_CLIENT_ADDR); 1023 1024 memset(&query_subscribers_msg, 0, len); 1025 query_subscribers_msg.hdr.cmd = SYSTEM_STATE_QUERY_SUBSCRIBERS; 1026 1027 ishtp_write_message(dev, &ishtp_hdr, 1028 (unsigned char *)&query_subscribers_msg); 1029 } 1030