xref: /linux/drivers/soc/hisilicon/kunpeng_hccs.c (revision 297d9111e9fcf47dd1dcc6f79bba915f35378d01)
1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3  * The Huawei Cache Coherence System (HCCS) is a multi-chip interconnection
4  * bus protocol.
5  *
6  * Copyright (c) 2023 Hisilicon Limited.
7  * Author: Huisong Li <lihuisong@huawei.com>
8  *
9  * HCCS driver for Kunpeng SoC provides the following features:
10  * - Retrieve the following information about each port:
11  *    - port type
12  *    - lane mode
13  *    - enable
14  *    - current lane mode
15  *    - link finite state machine
16  *    - lane mask
17  *    - CRC error count
18  *
19  * - Retrieve the following information about all the ports on the chip or
20  *   the die:
21  *    - if all enabled ports are in linked
22  *    - if all linked ports are in full lane
23  *    - CRC error count sum
24  *
25  * - Retrieve all HCCS types used on the platform.
26  *
27  * - Support low power feature for all specified HCCS type ports, and
28  *   provide the following interface:
29  *    - query HCCS types supported increasing and decreasing lane number.
30  *    - decrease lane number of all specified HCCS type ports on idle state.
31  *    - increase lane number of all specified HCCS type ports.
32  */
33 #include <linux/acpi.h>
34 #include <linux/delay.h>
35 #include <linux/iopoll.h>
36 #include <linux/platform_device.h>
37 #include <linux/stringify.h>
38 #include <linux/sysfs.h>
39 #include <linux/types.h>
40 
41 #include <acpi/pcc.h>
42 
43 #include "kunpeng_hccs.h"
44 
45 /*
46  * Arbitrary retries in case the remote processor is slow to respond
47  * to PCC commands
48  */
49 #define HCCS_PCC_CMD_WAIT_RETRIES_NUM		500ULL
50 #define HCCS_POLL_STATUS_TIME_INTERVAL_US	3
51 
kobj_to_port_info(struct kobject * k)52 static struct hccs_port_info *kobj_to_port_info(struct kobject *k)
53 {
54 	return container_of(k, struct hccs_port_info, kobj);
55 }
56 
kobj_to_die_info(struct kobject * k)57 static struct hccs_die_info *kobj_to_die_info(struct kobject *k)
58 {
59 	return container_of(k, struct hccs_die_info, kobj);
60 }
61 
kobj_to_chip_info(struct kobject * k)62 static struct hccs_chip_info *kobj_to_chip_info(struct kobject *k)
63 {
64 	return container_of(k, struct hccs_chip_info, kobj);
65 }
66 
device_kobj_to_hccs_dev(struct kobject * k)67 static struct hccs_dev *device_kobj_to_hccs_dev(struct kobject *k)
68 {
69 	struct device *dev = container_of(k, struct device, kobj);
70 	struct platform_device *pdev =
71 			container_of(dev, struct platform_device, dev);
72 
73 	return platform_get_drvdata(pdev);
74 }
75 
hccs_port_type_to_name(struct hccs_dev * hdev,u8 type)76 static char *hccs_port_type_to_name(struct hccs_dev *hdev, u8 type)
77 {
78 	u16 i;
79 
80 	for (i = 0; i < hdev->used_type_num; i++) {
81 		if (hdev->type_name_maps[i].type == type)
82 			return hdev->type_name_maps[i].name;
83 	}
84 
85 	return NULL;
86 }
87 
hccs_name_to_port_type(struct hccs_dev * hdev,const char * name,u8 * type)88 static int hccs_name_to_port_type(struct hccs_dev *hdev,
89 				  const char *name, u8 *type)
90 {
91 	u16 i;
92 
93 	for (i = 0; i < hdev->used_type_num; i++) {
94 		if (strcmp(hdev->type_name_maps[i].name, name) == 0) {
95 			*type = hdev->type_name_maps[i].type;
96 			return 0;
97 		}
98 	}
99 
100 	return -EINVAL;
101 }
102 
103 struct hccs_register_ctx {
104 	struct device *dev;
105 	u8 chan_id;
106 	int err;
107 };
108 
hccs_get_register_cb(struct acpi_resource * ares,void * context)109 static acpi_status hccs_get_register_cb(struct acpi_resource *ares,
110 					void *context)
111 {
112 	struct acpi_resource_generic_register *reg;
113 	struct hccs_register_ctx *ctx = context;
114 
115 	if (ares->type != ACPI_RESOURCE_TYPE_GENERIC_REGISTER)
116 		return AE_OK;
117 
118 	reg = &ares->data.generic_reg;
119 	if (reg->space_id != ACPI_ADR_SPACE_PLATFORM_COMM) {
120 		dev_err(ctx->dev, "Bad register resource.\n");
121 		ctx->err = -EINVAL;
122 		return AE_ERROR;
123 	}
124 	ctx->chan_id = reg->access_size;
125 
126 	return AE_OK;
127 }
128 
hccs_get_pcc_chan_id(struct hccs_dev * hdev)129 static int hccs_get_pcc_chan_id(struct hccs_dev *hdev)
130 {
131 	acpi_handle handle = ACPI_HANDLE(hdev->dev);
132 	struct hccs_register_ctx ctx = {0};
133 	acpi_status status;
134 
135 	if (!acpi_has_method(handle, METHOD_NAME__CRS)) {
136 		dev_err(hdev->dev, "No _CRS method.\n");
137 		return -ENODEV;
138 	}
139 
140 	ctx.dev = hdev->dev;
141 	status = acpi_walk_resources(handle, METHOD_NAME__CRS,
142 				     hccs_get_register_cb, &ctx);
143 	if (ACPI_FAILURE(status))
144 		return ctx.err;
145 	hdev->chan_id = ctx.chan_id;
146 
147 	return 0;
148 }
149 
hccs_chan_tx_done(struct mbox_client * cl,void * msg,int ret)150 static void hccs_chan_tx_done(struct mbox_client *cl, void *msg, int ret)
151 {
152 	if (ret < 0)
153 		pr_debug("TX did not complete: CMD sent:0x%x, ret:%d\n",
154 			 *(u8 *)msg, ret);
155 	else
156 		pr_debug("TX completed. CMD sent:0x%x, ret:%d\n",
157 			 *(u8 *)msg, ret);
158 }
159 
hccs_pcc_rx_callback(struct mbox_client * cl,void * mssg)160 static void hccs_pcc_rx_callback(struct mbox_client *cl, void *mssg)
161 {
162 	struct hccs_mbox_client_info *cl_info =
163 			container_of(cl, struct hccs_mbox_client_info, client);
164 
165 	complete(&cl_info->done);
166 }
167 
hccs_unregister_pcc_channel(struct hccs_dev * hdev)168 static void hccs_unregister_pcc_channel(struct hccs_dev *hdev)
169 {
170 	pcc_mbox_free_channel(hdev->cl_info.pcc_chan);
171 }
172 
hccs_register_pcc_channel(struct hccs_dev * hdev)173 static int hccs_register_pcc_channel(struct hccs_dev *hdev)
174 {
175 	struct hccs_mbox_client_info *cl_info = &hdev->cl_info;
176 	struct mbox_client *cl = &cl_info->client;
177 	struct pcc_mbox_chan *pcc_chan;
178 	struct mbox_chan *mbox_chan;
179 	struct device *dev = hdev->dev;
180 	int rc;
181 
182 	cl->dev = dev;
183 	cl->tx_block = false;
184 	cl->knows_txdone = true;
185 	cl->tx_done = hccs_chan_tx_done;
186 	cl->rx_callback = hdev->verspec_data->rx_callback;
187 	init_completion(&cl_info->done);
188 
189 	pcc_chan = pcc_mbox_request_channel(cl, hdev->chan_id);
190 	if (IS_ERR(pcc_chan)) {
191 		dev_err(dev, "PCC channel request failed.\n");
192 		rc = -ENODEV;
193 		goto out;
194 	}
195 	cl_info->pcc_chan = pcc_chan;
196 	mbox_chan = pcc_chan->mchan;
197 
198 	/*
199 	 * pcc_chan->latency is just a nominal value. In reality the remote
200 	 * processor could be much slower to reply. So add an arbitrary amount
201 	 * of wait on top of nominal.
202 	 */
203 	cl_info->deadline_us =
204 			HCCS_PCC_CMD_WAIT_RETRIES_NUM * pcc_chan->latency;
205 	if (!hdev->verspec_data->has_txdone_irq &&
206 	    mbox_chan->mbox->txdone_irq) {
207 		dev_err(dev, "PCC IRQ in PCCT is enabled.\n");
208 		rc = -EINVAL;
209 		goto err_mbx_channel_free;
210 	} else if (hdev->verspec_data->has_txdone_irq &&
211 		   !mbox_chan->mbox->txdone_irq) {
212 		dev_err(dev, "PCC IRQ in PCCT isn't supported.\n");
213 		rc = -EINVAL;
214 		goto err_mbx_channel_free;
215 	}
216 
217 	if (pcc_chan->shmem_size != HCCS_PCC_SHARE_MEM_BYTES) {
218 		dev_err(dev, "Base size (%llu) of PCC communication region must be %d bytes.\n",
219 			pcc_chan->shmem_size, HCCS_PCC_SHARE_MEM_BYTES);
220 		rc = -EINVAL;
221 		goto err_mbx_channel_free;
222 	}
223 
224 	return 0;
225 
226 err_mbx_channel_free:
227 	pcc_mbox_free_channel(cl_info->pcc_chan);
228 out:
229 	return rc;
230 }
231 
hccs_wait_cmd_complete_by_poll(struct hccs_dev * hdev)232 static int hccs_wait_cmd_complete_by_poll(struct hccs_dev *hdev)
233 {
234 	struct hccs_mbox_client_info *cl_info = &hdev->cl_info;
235 	struct acpi_pcct_shared_memory __iomem *comm_base =
236 							cl_info->pcc_chan->shmem;
237 	u16 status;
238 	int ret;
239 
240 	/*
241 	 * Poll PCC status register every 3us(delay_us) for maximum of
242 	 * deadline_us(timeout_us) until PCC command complete bit is set(cond)
243 	 */
244 	ret = readw_poll_timeout(&comm_base->status, status,
245 				 status & PCC_STATUS_CMD_COMPLETE,
246 				 HCCS_POLL_STATUS_TIME_INTERVAL_US,
247 				 cl_info->deadline_us);
248 	if (unlikely(ret))
249 		dev_err(hdev->dev, "poll PCC status failed, ret = %d.\n", ret);
250 
251 	return ret;
252 }
253 
hccs_wait_cmd_complete_by_irq(struct hccs_dev * hdev)254 static int hccs_wait_cmd_complete_by_irq(struct hccs_dev *hdev)
255 {
256 	struct hccs_mbox_client_info *cl_info = &hdev->cl_info;
257 
258 	if (!wait_for_completion_timeout(&cl_info->done,
259 			usecs_to_jiffies(cl_info->deadline_us))) {
260 		dev_err(hdev->dev, "PCC command executed timeout!\n");
261 		return -ETIMEDOUT;
262 	}
263 
264 	return 0;
265 }
266 
hccs_fill_pcc_shared_mem_region(struct hccs_dev * hdev,u8 cmd,struct hccs_desc * desc,void __iomem * comm_space,u16 space_size)267 static inline void hccs_fill_pcc_shared_mem_region(struct hccs_dev *hdev,
268 						   u8 cmd,
269 						   struct hccs_desc *desc,
270 						   void __iomem *comm_space,
271 						   u16 space_size)
272 {
273 	struct acpi_pcct_shared_memory tmp = {
274 		.signature = PCC_SIGNATURE | hdev->chan_id,
275 		.command = cmd,
276 		.status = 0,
277 	};
278 
279 	memcpy_toio(hdev->cl_info.pcc_chan->shmem, (void *)&tmp,
280 		    sizeof(struct acpi_pcct_shared_memory));
281 
282 	/* Copy the message to the PCC comm space */
283 	memcpy_toio(comm_space, (void *)desc, space_size);
284 }
285 
hccs_fill_ext_pcc_shared_mem_region(struct hccs_dev * hdev,u8 cmd,struct hccs_desc * desc,void __iomem * comm_space,u16 space_size)286 static inline void hccs_fill_ext_pcc_shared_mem_region(struct hccs_dev *hdev,
287 						       u8 cmd,
288 						       struct hccs_desc *desc,
289 						       void __iomem *comm_space,
290 						       u16 space_size)
291 {
292 	struct acpi_pcct_ext_pcc_shared_memory tmp = {
293 		.signature = PCC_SIGNATURE | hdev->chan_id,
294 		.flags = PCC_CMD_COMPLETION_NOTIFY,
295 		.length = HCCS_PCC_SHARE_MEM_BYTES,
296 		.command = cmd,
297 	};
298 
299 	memcpy_toio(hdev->cl_info.pcc_chan->shmem, (void *)&tmp,
300 		    sizeof(struct acpi_pcct_ext_pcc_shared_memory));
301 
302 	/* Copy the message to the PCC comm space */
303 	memcpy_toio(comm_space, (void *)desc, space_size);
304 }
305 
hccs_pcc_cmd_send(struct hccs_dev * hdev,u8 cmd,struct hccs_desc * desc)306 static int hccs_pcc_cmd_send(struct hccs_dev *hdev, u8 cmd,
307 			     struct hccs_desc *desc)
308 {
309 	const struct hccs_verspecific_data *verspec_data = hdev->verspec_data;
310 	struct hccs_mbox_client_info *cl_info = &hdev->cl_info;
311 	struct mbox_chan *mbox_chan = cl_info->pcc_chan->mchan;
312 	struct hccs_fw_inner_head *fw_inner_head;
313 	void __iomem *comm_space;
314 	u16 space_size;
315 	int ret;
316 
317 	comm_space = cl_info->pcc_chan->shmem + verspec_data->shared_mem_size;
318 	space_size = HCCS_PCC_SHARE_MEM_BYTES - verspec_data->shared_mem_size;
319 	verspec_data->fill_pcc_shared_mem(hdev, cmd, desc,
320 					  comm_space, space_size);
321 	if (verspec_data->has_txdone_irq)
322 		reinit_completion(&cl_info->done);
323 
324 	/* Ring doorbell */
325 	ret = mbox_send_message(mbox_chan, &cmd);
326 	if (ret < 0) {
327 		dev_err(hdev->dev, "Send PCC mbox message failed, ret = %d.\n",
328 			ret);
329 		goto end;
330 	}
331 
332 	ret = verspec_data->wait_cmd_complete(hdev);
333 	if (ret)
334 		goto end;
335 
336 	/* Copy response data */
337 	memcpy_fromio((void *)desc, comm_space, space_size);
338 	fw_inner_head = &desc->rsp.fw_inner_head;
339 	if (fw_inner_head->retStatus) {
340 		dev_err(hdev->dev, "Execute PCC command failed, error code = %u.\n",
341 			fw_inner_head->retStatus);
342 		ret = -EIO;
343 	}
344 
345 end:
346 	if (verspec_data->has_txdone_irq)
347 		mbox_chan_txdone(mbox_chan, ret);
348 	else
349 		mbox_client_txdone(mbox_chan, ret);
350 	return ret;
351 }
352 
hccs_init_req_desc(struct hccs_desc * desc)353 static void hccs_init_req_desc(struct hccs_desc *desc)
354 {
355 	struct hccs_req_desc *req = &desc->req;
356 
357 	memset(desc, 0, sizeof(*desc));
358 	req->req_head.module_code = HCCS_SERDES_MODULE_CODE;
359 }
360 
hccs_get_dev_caps(struct hccs_dev * hdev)361 static int hccs_get_dev_caps(struct hccs_dev *hdev)
362 {
363 	struct hccs_desc desc;
364 	int ret;
365 
366 	hccs_init_req_desc(&desc);
367 	ret = hccs_pcc_cmd_send(hdev, HCCS_GET_DEV_CAP, &desc);
368 	if (ret) {
369 		dev_err(hdev->dev, "Get device capabilities failed, ret = %d.\n",
370 			ret);
371 		return ret;
372 	}
373 	memcpy(&hdev->caps, desc.rsp.data, sizeof(hdev->caps));
374 
375 	return 0;
376 }
377 
hccs_query_chip_num_on_platform(struct hccs_dev * hdev)378 static int hccs_query_chip_num_on_platform(struct hccs_dev *hdev)
379 {
380 	struct hccs_desc desc;
381 	int ret;
382 
383 	hccs_init_req_desc(&desc);
384 	ret = hccs_pcc_cmd_send(hdev, HCCS_GET_CHIP_NUM, &desc);
385 	if (ret) {
386 		dev_err(hdev->dev, "query system chip number failed, ret = %d.\n",
387 			ret);
388 		return ret;
389 	}
390 
391 	hdev->chip_num = *((u8 *)&desc.rsp.data);
392 	if (!hdev->chip_num) {
393 		dev_err(hdev->dev, "chip num obtained from firmware is zero.\n");
394 		return -EINVAL;
395 	}
396 
397 	return 0;
398 }
399 
hccs_get_chip_info(struct hccs_dev * hdev,struct hccs_chip_info * chip)400 static int hccs_get_chip_info(struct hccs_dev *hdev,
401 			      struct hccs_chip_info *chip)
402 {
403 	struct hccs_die_num_req_param *req_param;
404 	struct hccs_desc desc;
405 	int ret;
406 
407 	hccs_init_req_desc(&desc);
408 	req_param = (struct hccs_die_num_req_param *)desc.req.data;
409 	req_param->chip_id = chip->chip_id;
410 	ret = hccs_pcc_cmd_send(hdev, HCCS_GET_DIE_NUM, &desc);
411 	if (ret)
412 		return ret;
413 
414 	chip->die_num = *((u8 *)&desc.rsp.data);
415 
416 	return 0;
417 }
418 
hccs_query_chip_info_on_platform(struct hccs_dev * hdev)419 static int hccs_query_chip_info_on_platform(struct hccs_dev *hdev)
420 {
421 	struct hccs_chip_info *chip;
422 	int ret;
423 	u8 idx;
424 
425 	ret = hccs_query_chip_num_on_platform(hdev);
426 	if (ret) {
427 		dev_err(hdev->dev, "query chip number on platform failed, ret = %d.\n",
428 			ret);
429 		return ret;
430 	}
431 
432 	hdev->chips = devm_kzalloc(hdev->dev,
433 				hdev->chip_num * sizeof(struct hccs_chip_info),
434 				GFP_KERNEL);
435 	if (!hdev->chips) {
436 		dev_err(hdev->dev, "allocate all chips memory failed.\n");
437 		return -ENOMEM;
438 	}
439 
440 	for (idx = 0; idx < hdev->chip_num; idx++) {
441 		chip = &hdev->chips[idx];
442 		chip->chip_id = idx;
443 		ret = hccs_get_chip_info(hdev, chip);
444 		if (ret) {
445 			dev_err(hdev->dev, "get chip%u info failed, ret = %d.\n",
446 				idx, ret);
447 			return ret;
448 		}
449 		chip->hdev = hdev;
450 	}
451 
452 	return 0;
453 }
454 
hccs_query_die_info_on_chip(struct hccs_dev * hdev,u8 chip_id,u8 die_idx,struct hccs_die_info * die)455 static int hccs_query_die_info_on_chip(struct hccs_dev *hdev, u8 chip_id,
456 				       u8 die_idx, struct hccs_die_info *die)
457 {
458 	struct hccs_die_info_req_param *req_param;
459 	struct hccs_die_info_rsp_data *rsp_data;
460 	struct hccs_desc desc;
461 	int ret;
462 
463 	hccs_init_req_desc(&desc);
464 	req_param = (struct hccs_die_info_req_param *)desc.req.data;
465 	req_param->chip_id = chip_id;
466 	req_param->die_idx = die_idx;
467 	ret = hccs_pcc_cmd_send(hdev, HCCS_GET_DIE_INFO, &desc);
468 	if (ret)
469 		return ret;
470 
471 	rsp_data = (struct hccs_die_info_rsp_data *)desc.rsp.data;
472 	die->die_id = rsp_data->die_id;
473 	die->port_num = rsp_data->port_num;
474 	die->min_port_id = rsp_data->min_port_id;
475 	die->max_port_id = rsp_data->max_port_id;
476 	if (die->min_port_id > die->max_port_id) {
477 		dev_err(hdev->dev, "min port id(%u) > max port id(%u) on die_idx(%u).\n",
478 			die->min_port_id, die->max_port_id, die_idx);
479 		return -EINVAL;
480 	}
481 	if (die->max_port_id > HCCS_DIE_MAX_PORT_ID) {
482 		dev_err(hdev->dev, "max port id(%u) on die_idx(%u) is too big.\n",
483 			die->max_port_id, die_idx);
484 		return -EINVAL;
485 	}
486 
487 	return 0;
488 }
489 
hccs_query_all_die_info_on_platform(struct hccs_dev * hdev)490 static int hccs_query_all_die_info_on_platform(struct hccs_dev *hdev)
491 {
492 	struct device *dev = hdev->dev;
493 	struct hccs_chip_info *chip;
494 	struct hccs_die_info *die;
495 	bool has_die_info = false;
496 	u8 i, j;
497 	int ret;
498 
499 	for (i = 0; i < hdev->chip_num; i++) {
500 		chip = &hdev->chips[i];
501 		if (!chip->die_num)
502 			continue;
503 
504 		has_die_info = true;
505 		chip->dies = devm_kzalloc(hdev->dev,
506 				chip->die_num * sizeof(struct hccs_die_info),
507 				GFP_KERNEL);
508 		if (!chip->dies) {
509 			dev_err(dev, "allocate all dies memory on chip%u failed.\n",
510 				i);
511 			return -ENOMEM;
512 		}
513 
514 		for (j = 0; j < chip->die_num; j++) {
515 			die = &chip->dies[j];
516 			ret = hccs_query_die_info_on_chip(hdev, i, j, die);
517 			if (ret) {
518 				dev_err(dev, "get die idx (%u) info on chip%u failed, ret = %d.\n",
519 					j, i, ret);
520 				return ret;
521 			}
522 			die->chip = chip;
523 		}
524 	}
525 
526 	return has_die_info ? 0 : -EINVAL;
527 }
528 
hccs_get_bd_info(struct hccs_dev * hdev,u8 opcode,struct hccs_desc * desc,void * buf,size_t buf_len,struct hccs_rsp_head * rsp_head)529 static int hccs_get_bd_info(struct hccs_dev *hdev, u8 opcode,
530 			    struct hccs_desc *desc,
531 			    void *buf, size_t buf_len,
532 			    struct hccs_rsp_head *rsp_head)
533 {
534 	struct hccs_rsp_head *head;
535 	struct hccs_rsp_desc *rsp;
536 	int ret;
537 
538 	ret = hccs_pcc_cmd_send(hdev, opcode, desc);
539 	if (ret)
540 		return ret;
541 
542 	rsp = &desc->rsp;
543 	head = &rsp->rsp_head;
544 	if (head->data_len > buf_len) {
545 		dev_err(hdev->dev,
546 			"buffer overflow (buf_len = %zu, data_len = %u)!\n",
547 			buf_len, head->data_len);
548 		return -ENOMEM;
549 	}
550 
551 	memcpy(buf, rsp->data, head->data_len);
552 	*rsp_head = *head;
553 
554 	return 0;
555 }
556 
hccs_get_all_port_attr(struct hccs_dev * hdev,struct hccs_die_info * die,struct hccs_port_attr * attrs,u16 size)557 static int hccs_get_all_port_attr(struct hccs_dev *hdev,
558 				  struct hccs_die_info *die,
559 				  struct hccs_port_attr *attrs, u16 size)
560 {
561 	struct hccs_die_comm_req_param *req_param;
562 	struct hccs_req_head *req_head;
563 	struct hccs_rsp_head rsp_head;
564 	struct hccs_desc desc;
565 	size_t left_buf_len;
566 	u32 data_len = 0;
567 	u8 start_id;
568 	u8 *buf;
569 	int ret;
570 
571 	buf = (u8 *)attrs;
572 	left_buf_len = sizeof(struct hccs_port_attr) * size;
573 	start_id = die->min_port_id;
574 	while (start_id <= die->max_port_id) {
575 		hccs_init_req_desc(&desc);
576 		req_head = &desc.req.req_head;
577 		req_head->start_id = start_id;
578 		req_param = (struct hccs_die_comm_req_param *)desc.req.data;
579 		req_param->chip_id = die->chip->chip_id;
580 		req_param->die_id = die->die_id;
581 
582 		ret = hccs_get_bd_info(hdev, HCCS_GET_DIE_PORT_INFO, &desc,
583 				       buf + data_len, left_buf_len, &rsp_head);
584 		if (ret) {
585 			dev_err(hdev->dev,
586 				"get the information of port%u on die%u failed, ret = %d.\n",
587 				start_id, die->die_id, ret);
588 			return ret;
589 		}
590 
591 		data_len += rsp_head.data_len;
592 		left_buf_len -= rsp_head.data_len;
593 		if (unlikely(rsp_head.next_id <= start_id)) {
594 			dev_err(hdev->dev,
595 				"next port id (%u) is not greater than last start id (%u) on die%u.\n",
596 				rsp_head.next_id, start_id, die->die_id);
597 			return -EINVAL;
598 		}
599 		start_id = rsp_head.next_id;
600 	}
601 
602 	if (left_buf_len != 0) {
603 		dev_err(hdev->dev, "failed to get the expected port number(%u) attribute.\n",
604 			size);
605 		return -EINVAL;
606 	}
607 
608 	return 0;
609 }
610 
hccs_get_all_port_info_on_die(struct hccs_dev * hdev,struct hccs_die_info * die)611 static int hccs_get_all_port_info_on_die(struct hccs_dev *hdev,
612 					 struct hccs_die_info *die)
613 {
614 	struct hccs_port_attr *attrs;
615 	struct hccs_port_info *port;
616 	int ret;
617 	u8 i;
618 
619 	attrs = kcalloc(die->port_num, sizeof(struct hccs_port_attr),
620 			GFP_KERNEL);
621 	if (!attrs)
622 		return -ENOMEM;
623 
624 	ret = hccs_get_all_port_attr(hdev, die, attrs, die->port_num);
625 	if (ret)
626 		goto out;
627 
628 	for (i = 0; i < die->port_num; i++) {
629 		port = &die->ports[i];
630 		port->port_id = attrs[i].port_id;
631 		port->port_type = attrs[i].port_type;
632 		port->max_lane_num = attrs[i].max_lane_num;
633 		port->enable = attrs[i].enable;
634 		port->die = die;
635 	}
636 
637 out:
638 	kfree(attrs);
639 	return ret;
640 }
641 
hccs_query_all_port_info_on_platform(struct hccs_dev * hdev)642 static int hccs_query_all_port_info_on_platform(struct hccs_dev *hdev)
643 {
644 	struct device *dev = hdev->dev;
645 	struct hccs_chip_info *chip;
646 	struct hccs_die_info *die;
647 	bool has_port_info = false;
648 	u8 i, j;
649 	int ret;
650 
651 	for (i = 0; i < hdev->chip_num; i++) {
652 		chip = &hdev->chips[i];
653 		for (j = 0; j < chip->die_num; j++) {
654 			die = &chip->dies[j];
655 			if (!die->port_num)
656 				continue;
657 
658 			has_port_info = true;
659 			die->ports = devm_kzalloc(dev,
660 				die->port_num * sizeof(struct hccs_port_info),
661 				GFP_KERNEL);
662 			if (!die->ports) {
663 				dev_err(dev, "allocate ports memory on chip%u/die%u failed.\n",
664 					i, die->die_id);
665 				return -ENOMEM;
666 			}
667 
668 			ret = hccs_get_all_port_info_on_die(hdev, die);
669 			if (ret) {
670 				dev_err(dev, "get all port info on chip%u/die%u failed, ret = %d.\n",
671 					i, die->die_id, ret);
672 				return ret;
673 			}
674 		}
675 	}
676 
677 	return has_port_info ? 0 : -EINVAL;
678 }
679 
hccs_get_hw_info(struct hccs_dev * hdev)680 static int hccs_get_hw_info(struct hccs_dev *hdev)
681 {
682 	int ret;
683 
684 	ret = hccs_query_chip_info_on_platform(hdev);
685 	if (ret) {
686 		dev_err(hdev->dev, "query chip info on platform failed, ret = %d.\n",
687 			ret);
688 		return ret;
689 	}
690 
691 	ret = hccs_query_all_die_info_on_platform(hdev);
692 	if (ret) {
693 		dev_err(hdev->dev, "query all die info on platform failed, ret = %d.\n",
694 			ret);
695 		return ret;
696 	}
697 
698 	ret = hccs_query_all_port_info_on_platform(hdev);
699 	if (ret) {
700 		dev_err(hdev->dev, "query all port info on platform failed, ret = %d.\n",
701 			ret);
702 		return ret;
703 	}
704 
705 	return 0;
706 }
707 
hccs_calc_used_type_num(struct hccs_dev * hdev,unsigned long * hccs_ver)708 static u16 hccs_calc_used_type_num(struct hccs_dev *hdev,
709 				   unsigned long *hccs_ver)
710 {
711 	struct hccs_chip_info *chip;
712 	struct hccs_port_info *port;
713 	struct hccs_die_info *die;
714 	u16 used_type_num = 0;
715 	u16 i, j, k;
716 
717 	for (i = 0; i < hdev->chip_num; i++) {
718 		chip = &hdev->chips[i];
719 		for (j = 0; j < chip->die_num; j++) {
720 			die = &chip->dies[j];
721 			for (k = 0; k < die->port_num; k++) {
722 				port = &die->ports[k];
723 				set_bit(port->port_type, hccs_ver);
724 			}
725 		}
726 	}
727 
728 	for_each_set_bit(i, hccs_ver, HCCS_IP_MAX + 1)
729 		used_type_num++;
730 
731 	return used_type_num;
732 }
733 
hccs_init_type_name_maps(struct hccs_dev * hdev)734 static int hccs_init_type_name_maps(struct hccs_dev *hdev)
735 {
736 	DECLARE_BITMAP(hccs_ver, HCCS_IP_MAX + 1) = {};
737 	unsigned int i;
738 	u16 idx = 0;
739 
740 	hdev->used_type_num = hccs_calc_used_type_num(hdev, hccs_ver);
741 	hdev->type_name_maps = devm_kcalloc(hdev->dev, hdev->used_type_num,
742 					    sizeof(struct hccs_type_name_map),
743 					    GFP_KERNEL);
744 	if (!hdev->type_name_maps)
745 		return -ENOMEM;
746 
747 	for_each_set_bit(i, hccs_ver, HCCS_IP_MAX + 1) {
748 		hdev->type_name_maps[idx].type = i;
749 		sprintf(hdev->type_name_maps[idx].name,
750 			"%s%u", HCCS_IP_PREFIX, i);
751 		idx++;
752 	}
753 
754 	return 0;
755 }
756 
hccs_query_port_link_status(struct hccs_dev * hdev,const struct hccs_port_info * port,struct hccs_link_status * link_status)757 static int hccs_query_port_link_status(struct hccs_dev *hdev,
758 				       const struct hccs_port_info *port,
759 				       struct hccs_link_status *link_status)
760 {
761 	const struct hccs_die_info *die = port->die;
762 	const struct hccs_chip_info *chip = die->chip;
763 	struct hccs_port_comm_req_param *req_param;
764 	struct hccs_desc desc;
765 	int ret;
766 
767 	hccs_init_req_desc(&desc);
768 	req_param = (struct hccs_port_comm_req_param *)desc.req.data;
769 	req_param->chip_id = chip->chip_id;
770 	req_param->die_id = die->die_id;
771 	req_param->port_id = port->port_id;
772 	ret = hccs_pcc_cmd_send(hdev, HCCS_GET_PORT_LINK_STATUS, &desc);
773 	if (ret) {
774 		dev_err(hdev->dev,
775 			"get port link status info failed, ret = %d.\n", ret);
776 		return ret;
777 	}
778 
779 	*link_status = *((struct hccs_link_status *)desc.rsp.data);
780 
781 	return 0;
782 }
783 
hccs_query_port_crc_err_cnt(struct hccs_dev * hdev,const struct hccs_port_info * port,u64 * crc_err_cnt)784 static int hccs_query_port_crc_err_cnt(struct hccs_dev *hdev,
785 				       const struct hccs_port_info *port,
786 				       u64 *crc_err_cnt)
787 {
788 	const struct hccs_die_info *die = port->die;
789 	const struct hccs_chip_info *chip = die->chip;
790 	struct hccs_port_comm_req_param *req_param;
791 	struct hccs_desc desc;
792 	int ret;
793 
794 	hccs_init_req_desc(&desc);
795 	req_param = (struct hccs_port_comm_req_param *)desc.req.data;
796 	req_param->chip_id = chip->chip_id;
797 	req_param->die_id = die->die_id;
798 	req_param->port_id = port->port_id;
799 	ret = hccs_pcc_cmd_send(hdev, HCCS_GET_PORT_CRC_ERR_CNT, &desc);
800 	if (ret) {
801 		dev_err(hdev->dev,
802 			"get port crc error count failed, ret = %d.\n", ret);
803 		return ret;
804 	}
805 
806 	memcpy(crc_err_cnt, &desc.rsp.data, sizeof(u64));
807 
808 	return 0;
809 }
810 
hccs_get_die_all_link_status(struct hccs_dev * hdev,const struct hccs_die_info * die,u8 * all_linked)811 static int hccs_get_die_all_link_status(struct hccs_dev *hdev,
812 					const struct hccs_die_info *die,
813 					u8 *all_linked)
814 {
815 	struct hccs_die_comm_req_param *req_param;
816 	struct hccs_desc desc;
817 	int ret;
818 
819 	if (die->port_num == 0) {
820 		*all_linked = 1;
821 		return 0;
822 	}
823 
824 	hccs_init_req_desc(&desc);
825 	req_param = (struct hccs_die_comm_req_param *)desc.req.data;
826 	req_param->chip_id = die->chip->chip_id;
827 	req_param->die_id = die->die_id;
828 	ret = hccs_pcc_cmd_send(hdev, HCCS_GET_DIE_PORTS_LINK_STA, &desc);
829 	if (ret) {
830 		dev_err(hdev->dev,
831 			"get link status of all ports failed on die%u, ret = %d.\n",
832 			die->die_id, ret);
833 		return ret;
834 	}
835 
836 	*all_linked = *((u8 *)&desc.rsp.data);
837 
838 	return 0;
839 }
840 
hccs_get_die_all_port_lane_status(struct hccs_dev * hdev,const struct hccs_die_info * die,u8 * full_lane)841 static int hccs_get_die_all_port_lane_status(struct hccs_dev *hdev,
842 					     const struct hccs_die_info *die,
843 					     u8 *full_lane)
844 {
845 	struct hccs_die_comm_req_param *req_param;
846 	struct hccs_desc desc;
847 	int ret;
848 
849 	if (die->port_num == 0) {
850 		*full_lane = 1;
851 		return 0;
852 	}
853 
854 	hccs_init_req_desc(&desc);
855 	req_param = (struct hccs_die_comm_req_param *)desc.req.data;
856 	req_param->chip_id = die->chip->chip_id;
857 	req_param->die_id = die->die_id;
858 	ret = hccs_pcc_cmd_send(hdev, HCCS_GET_DIE_PORTS_LANE_STA, &desc);
859 	if (ret) {
860 		dev_err(hdev->dev, "get lane status of all ports failed on die%u, ret = %d.\n",
861 			die->die_id, ret);
862 		return ret;
863 	}
864 
865 	*full_lane = *((u8 *)&desc.rsp.data);
866 
867 	return 0;
868 }
869 
hccs_get_die_total_crc_err_cnt(struct hccs_dev * hdev,const struct hccs_die_info * die,u64 * total_crc_err_cnt)870 static int hccs_get_die_total_crc_err_cnt(struct hccs_dev *hdev,
871 					  const struct hccs_die_info *die,
872 					  u64 *total_crc_err_cnt)
873 {
874 	struct hccs_die_comm_req_param *req_param;
875 	struct hccs_desc desc;
876 	int ret;
877 
878 	if (die->port_num == 0) {
879 		*total_crc_err_cnt = 0;
880 		return 0;
881 	}
882 
883 	hccs_init_req_desc(&desc);
884 	req_param = (struct hccs_die_comm_req_param *)desc.req.data;
885 	req_param->chip_id = die->chip->chip_id;
886 	req_param->die_id = die->die_id;
887 	ret = hccs_pcc_cmd_send(hdev, HCCS_GET_DIE_PORTS_CRC_ERR_CNT, &desc);
888 	if (ret) {
889 		dev_err(hdev->dev, "get crc error count sum failed on die%u, ret = %d.\n",
890 			die->die_id, ret);
891 		return ret;
892 	}
893 
894 	memcpy(total_crc_err_cnt, &desc.rsp.data, sizeof(u64));
895 
896 	return 0;
897 }
898 
hccs_show(struct kobject * k,struct attribute * attr,char * buf)899 static ssize_t hccs_show(struct kobject *k, struct attribute *attr, char *buf)
900 {
901 	struct kobj_attribute *kobj_attr;
902 
903 	kobj_attr = container_of(attr, struct kobj_attribute, attr);
904 
905 	return kobj_attr->show(k, kobj_attr, buf);
906 }
907 
908 static const struct sysfs_ops hccs_comm_ops = {
909 	.show = hccs_show,
910 };
911 
type_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)912 static ssize_t type_show(struct kobject *kobj, struct kobj_attribute *attr,
913 			 char *buf)
914 {
915 	const struct hccs_port_info *port = kobj_to_port_info(kobj);
916 
917 	return sysfs_emit(buf, "%s%u\n", HCCS_IP_PREFIX, port->port_type);
918 }
919 static struct kobj_attribute hccs_type_attr = __ATTR_RO(type);
920 
lane_mode_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)921 static ssize_t lane_mode_show(struct kobject *kobj, struct kobj_attribute *attr,
922 			      char *buf)
923 {
924 	const struct hccs_port_info *port = kobj_to_port_info(kobj);
925 
926 	return sysfs_emit(buf, "x%u\n", port->max_lane_num);
927 }
928 static struct kobj_attribute lane_mode_attr = __ATTR_RO(lane_mode);
929 
enable_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)930 static ssize_t enable_show(struct kobject *kobj,
931 				 struct kobj_attribute *attr, char *buf)
932 {
933 	const struct hccs_port_info *port = kobj_to_port_info(kobj);
934 
935 	return sysfs_emit(buf, "%u\n", port->enable);
936 }
937 static struct kobj_attribute port_enable_attr = __ATTR_RO(enable);
938 
cur_lane_num_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)939 static ssize_t cur_lane_num_show(struct kobject *kobj,
940 				 struct kobj_attribute *attr, char *buf)
941 {
942 	const struct hccs_port_info *port = kobj_to_port_info(kobj);
943 	struct hccs_dev *hdev = port->die->chip->hdev;
944 	struct hccs_link_status link_status = {0};
945 	int ret;
946 
947 	mutex_lock(&hdev->lock);
948 	ret = hccs_query_port_link_status(hdev, port, &link_status);
949 	mutex_unlock(&hdev->lock);
950 	if (ret)
951 		return ret;
952 
953 	return sysfs_emit(buf, "%u\n", link_status.lane_num);
954 }
955 static struct kobj_attribute cur_lane_num_attr = __ATTR_RO(cur_lane_num);
956 
link_fsm_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)957 static ssize_t link_fsm_show(struct kobject *kobj,
958 			     struct kobj_attribute *attr, char *buf)
959 {
960 	const struct hccs_port_info *port = kobj_to_port_info(kobj);
961 	struct hccs_dev *hdev = port->die->chip->hdev;
962 	struct hccs_link_status link_status = {0};
963 	const struct {
964 		u8 link_fsm;
965 		char *str;
966 	} link_fsm_map[] = {
967 		{HCCS_PORT_RESET, "reset"},
968 		{HCCS_PORT_SETUP, "setup"},
969 		{HCCS_PORT_CONFIG, "config"},
970 		{HCCS_PORT_READY, "link-up"},
971 	};
972 	const char *link_fsm_str = "unknown";
973 	size_t i;
974 	int ret;
975 
976 	mutex_lock(&hdev->lock);
977 	ret = hccs_query_port_link_status(hdev, port, &link_status);
978 	mutex_unlock(&hdev->lock);
979 	if (ret)
980 		return ret;
981 
982 	for (i = 0; i < ARRAY_SIZE(link_fsm_map); i++) {
983 		if (link_fsm_map[i].link_fsm == link_status.link_fsm) {
984 			link_fsm_str = link_fsm_map[i].str;
985 			break;
986 		}
987 	}
988 
989 	return sysfs_emit(buf, "%s\n", link_fsm_str);
990 }
991 static struct kobj_attribute link_fsm_attr = __ATTR_RO(link_fsm);
992 
lane_mask_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)993 static ssize_t lane_mask_show(struct kobject *kobj,
994 			      struct kobj_attribute *attr, char *buf)
995 {
996 	const struct hccs_port_info *port = kobj_to_port_info(kobj);
997 	struct hccs_dev *hdev = port->die->chip->hdev;
998 	struct hccs_link_status link_status = {0};
999 	int ret;
1000 
1001 	mutex_lock(&hdev->lock);
1002 	ret = hccs_query_port_link_status(hdev, port, &link_status);
1003 	mutex_unlock(&hdev->lock);
1004 	if (ret)
1005 		return ret;
1006 
1007 	return sysfs_emit(buf, "0x%x\n", link_status.lane_mask);
1008 }
1009 static struct kobj_attribute lane_mask_attr = __ATTR_RO(lane_mask);
1010 
crc_err_cnt_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)1011 static ssize_t crc_err_cnt_show(struct kobject *kobj,
1012 				struct kobj_attribute *attr, char *buf)
1013 {
1014 	const struct hccs_port_info *port = kobj_to_port_info(kobj);
1015 	struct hccs_dev *hdev = port->die->chip->hdev;
1016 	u64 crc_err_cnt;
1017 	int ret;
1018 
1019 	mutex_lock(&hdev->lock);
1020 	ret = hccs_query_port_crc_err_cnt(hdev, port, &crc_err_cnt);
1021 	mutex_unlock(&hdev->lock);
1022 	if (ret)
1023 		return ret;
1024 
1025 	return sysfs_emit(buf, "%llu\n", crc_err_cnt);
1026 }
1027 static struct kobj_attribute crc_err_cnt_attr = __ATTR_RO(crc_err_cnt);
1028 
1029 static struct attribute *hccs_port_default_attrs[] = {
1030 	&hccs_type_attr.attr,
1031 	&lane_mode_attr.attr,
1032 	&port_enable_attr.attr,
1033 	&cur_lane_num_attr.attr,
1034 	&link_fsm_attr.attr,
1035 	&lane_mask_attr.attr,
1036 	&crc_err_cnt_attr.attr,
1037 	NULL,
1038 };
1039 ATTRIBUTE_GROUPS(hccs_port_default);
1040 
1041 static const struct kobj_type hccs_port_type = {
1042 	.sysfs_ops = &hccs_comm_ops,
1043 	.default_groups = hccs_port_default_groups,
1044 };
1045 
all_linked_on_die_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)1046 static ssize_t all_linked_on_die_show(struct kobject *kobj,
1047 				      struct kobj_attribute *attr, char *buf)
1048 {
1049 	const struct hccs_die_info *die = kobj_to_die_info(kobj);
1050 	struct hccs_dev *hdev = die->chip->hdev;
1051 	u8 all_linked;
1052 	int ret;
1053 
1054 	mutex_lock(&hdev->lock);
1055 	ret = hccs_get_die_all_link_status(hdev, die, &all_linked);
1056 	mutex_unlock(&hdev->lock);
1057 	if (ret)
1058 		return ret;
1059 
1060 	return sysfs_emit(buf, "%u\n", all_linked);
1061 }
1062 static struct kobj_attribute all_linked_on_die_attr =
1063 		__ATTR(all_linked, 0444, all_linked_on_die_show, NULL);
1064 
linked_full_lane_on_die_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)1065 static ssize_t linked_full_lane_on_die_show(struct kobject *kobj,
1066 					    struct kobj_attribute *attr,
1067 					    char *buf)
1068 {
1069 	const struct hccs_die_info *die = kobj_to_die_info(kobj);
1070 	struct hccs_dev *hdev = die->chip->hdev;
1071 	u8 full_lane;
1072 	int ret;
1073 
1074 	mutex_lock(&hdev->lock);
1075 	ret = hccs_get_die_all_port_lane_status(hdev, die, &full_lane);
1076 	mutex_unlock(&hdev->lock);
1077 	if (ret)
1078 		return ret;
1079 
1080 	return sysfs_emit(buf, "%u\n", full_lane);
1081 }
1082 static struct kobj_attribute linked_full_lane_on_die_attr =
1083 	__ATTR(linked_full_lane, 0444, linked_full_lane_on_die_show, NULL);
1084 
crc_err_cnt_sum_on_die_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)1085 static ssize_t crc_err_cnt_sum_on_die_show(struct kobject *kobj,
1086 					   struct kobj_attribute *attr,
1087 					   char *buf)
1088 {
1089 	const struct hccs_die_info *die = kobj_to_die_info(kobj);
1090 	struct hccs_dev *hdev = die->chip->hdev;
1091 	u64 total_crc_err_cnt;
1092 	int ret;
1093 
1094 	mutex_lock(&hdev->lock);
1095 	ret = hccs_get_die_total_crc_err_cnt(hdev, die, &total_crc_err_cnt);
1096 	mutex_unlock(&hdev->lock);
1097 	if (ret)
1098 		return ret;
1099 
1100 	return sysfs_emit(buf, "%llu\n", total_crc_err_cnt);
1101 }
1102 static struct kobj_attribute crc_err_cnt_sum_on_die_attr =
1103 	__ATTR(crc_err_cnt, 0444, crc_err_cnt_sum_on_die_show, NULL);
1104 
1105 static struct attribute *hccs_die_default_attrs[] = {
1106 	&all_linked_on_die_attr.attr,
1107 	&linked_full_lane_on_die_attr.attr,
1108 	&crc_err_cnt_sum_on_die_attr.attr,
1109 	NULL,
1110 };
1111 ATTRIBUTE_GROUPS(hccs_die_default);
1112 
1113 static const struct kobj_type hccs_die_type = {
1114 	.sysfs_ops = &hccs_comm_ops,
1115 	.default_groups = hccs_die_default_groups,
1116 };
1117 
all_linked_on_chip_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)1118 static ssize_t all_linked_on_chip_show(struct kobject *kobj,
1119 				       struct kobj_attribute *attr, char *buf)
1120 {
1121 	const struct hccs_chip_info *chip = kobj_to_chip_info(kobj);
1122 	struct hccs_dev *hdev = chip->hdev;
1123 	const struct hccs_die_info *die;
1124 	u8 all_linked = 1;
1125 	u8 i, tmp;
1126 	int ret;
1127 
1128 	mutex_lock(&hdev->lock);
1129 	for (i = 0; i < chip->die_num; i++) {
1130 		die = &chip->dies[i];
1131 		ret = hccs_get_die_all_link_status(hdev, die, &tmp);
1132 		if (ret) {
1133 			mutex_unlock(&hdev->lock);
1134 			return ret;
1135 		}
1136 		if (tmp != all_linked) {
1137 			all_linked = 0;
1138 			break;
1139 		}
1140 	}
1141 	mutex_unlock(&hdev->lock);
1142 
1143 	return sysfs_emit(buf, "%u\n", all_linked);
1144 }
1145 static struct kobj_attribute all_linked_on_chip_attr =
1146 		__ATTR(all_linked, 0444, all_linked_on_chip_show, NULL);
1147 
linked_full_lane_on_chip_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)1148 static ssize_t linked_full_lane_on_chip_show(struct kobject *kobj,
1149 					     struct kobj_attribute *attr,
1150 					     char *buf)
1151 {
1152 	const struct hccs_chip_info *chip = kobj_to_chip_info(kobj);
1153 	struct hccs_dev *hdev = chip->hdev;
1154 	const struct hccs_die_info *die;
1155 	u8 full_lane = 1;
1156 	u8 i, tmp;
1157 	int ret;
1158 
1159 	mutex_lock(&hdev->lock);
1160 	for (i = 0; i < chip->die_num; i++) {
1161 		die = &chip->dies[i];
1162 		ret = hccs_get_die_all_port_lane_status(hdev, die, &tmp);
1163 		if (ret) {
1164 			mutex_unlock(&hdev->lock);
1165 			return ret;
1166 		}
1167 		if (tmp != full_lane) {
1168 			full_lane = 0;
1169 			break;
1170 		}
1171 	}
1172 	mutex_unlock(&hdev->lock);
1173 
1174 	return sysfs_emit(buf, "%u\n", full_lane);
1175 }
1176 static struct kobj_attribute linked_full_lane_on_chip_attr =
1177 	__ATTR(linked_full_lane, 0444, linked_full_lane_on_chip_show, NULL);
1178 
crc_err_cnt_sum_on_chip_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)1179 static ssize_t crc_err_cnt_sum_on_chip_show(struct kobject *kobj,
1180 					    struct kobj_attribute *attr,
1181 					    char *buf)
1182 {
1183 	const struct hccs_chip_info *chip = kobj_to_chip_info(kobj);
1184 	u64 crc_err_cnt, total_crc_err_cnt = 0;
1185 	struct hccs_dev *hdev = chip->hdev;
1186 	const struct hccs_die_info *die;
1187 	int ret;
1188 	u16 i;
1189 
1190 	mutex_lock(&hdev->lock);
1191 	for (i = 0; i < chip->die_num; i++) {
1192 		die = &chip->dies[i];
1193 		ret = hccs_get_die_total_crc_err_cnt(hdev, die, &crc_err_cnt);
1194 		if (ret) {
1195 			mutex_unlock(&hdev->lock);
1196 			return ret;
1197 		}
1198 
1199 		total_crc_err_cnt += crc_err_cnt;
1200 	}
1201 	mutex_unlock(&hdev->lock);
1202 
1203 	return sysfs_emit(buf, "%llu\n", total_crc_err_cnt);
1204 }
1205 static struct kobj_attribute crc_err_cnt_sum_on_chip_attr =
1206 		__ATTR(crc_err_cnt, 0444, crc_err_cnt_sum_on_chip_show, NULL);
1207 
1208 static struct attribute *hccs_chip_default_attrs[] = {
1209 	&all_linked_on_chip_attr.attr,
1210 	&linked_full_lane_on_chip_attr.attr,
1211 	&crc_err_cnt_sum_on_chip_attr.attr,
1212 	NULL,
1213 };
1214 ATTRIBUTE_GROUPS(hccs_chip_default);
1215 
1216 static const struct kobj_type hccs_chip_type = {
1217 	.sysfs_ops = &hccs_comm_ops,
1218 	.default_groups = hccs_chip_default_groups,
1219 };
1220 
hccs_parse_pm_port_type(struct hccs_dev * hdev,const char * buf,u8 * port_type)1221 static int hccs_parse_pm_port_type(struct hccs_dev *hdev, const char *buf,
1222 				   u8 *port_type)
1223 {
1224 	char hccs_name[HCCS_NAME_MAX_LEN + 1] = "";
1225 	u8 type;
1226 	int ret;
1227 
1228 	ret = sscanf(buf, "%" __stringify(HCCS_NAME_MAX_LEN) "s", hccs_name);
1229 	if (ret != 1)
1230 		return -EINVAL;
1231 
1232 	ret = hccs_name_to_port_type(hdev, hccs_name, &type);
1233 	if (ret) {
1234 		dev_dbg(hdev->dev, "input invalid, please get the available types from 'used_types'.\n");
1235 		return ret;
1236 	}
1237 
1238 	if (type == HCCS_V2 && hdev->caps & HCCS_CAPS_HCCS_V2_PM) {
1239 		*port_type = type;
1240 		return 0;
1241 	}
1242 
1243 	dev_dbg(hdev->dev, "%s doesn't support for increasing and decreasing lane.\n",
1244 		hccs_name);
1245 
1246 	return -EOPNOTSUPP;
1247 }
1248 
hccs_query_port_idle_status(struct hccs_dev * hdev,struct hccs_port_info * port,u8 * idle)1249 static int hccs_query_port_idle_status(struct hccs_dev *hdev,
1250 				       struct hccs_port_info *port, u8 *idle)
1251 {
1252 	const struct hccs_die_info *die = port->die;
1253 	const struct hccs_chip_info *chip = die->chip;
1254 	struct hccs_port_comm_req_param *req_param;
1255 	struct hccs_desc desc;
1256 	int ret;
1257 
1258 	hccs_init_req_desc(&desc);
1259 	req_param = (struct hccs_port_comm_req_param *)desc.req.data;
1260 	req_param->chip_id = chip->chip_id;
1261 	req_param->die_id = die->die_id;
1262 	req_param->port_id = port->port_id;
1263 	ret = hccs_pcc_cmd_send(hdev, HCCS_GET_PORT_IDLE_STATUS, &desc);
1264 	if (ret) {
1265 		dev_err(hdev->dev,
1266 			"get port idle status failed, ret = %d.\n", ret);
1267 		return ret;
1268 	}
1269 
1270 	*idle = *((u8 *)desc.rsp.data);
1271 	return 0;
1272 }
1273 
hccs_get_all_spec_port_idle_sta(struct hccs_dev * hdev,u8 port_type,bool * all_idle)1274 static int hccs_get_all_spec_port_idle_sta(struct hccs_dev *hdev, u8 port_type,
1275 					   bool *all_idle)
1276 {
1277 	struct hccs_chip_info *chip;
1278 	struct hccs_port_info *port;
1279 	struct hccs_die_info *die;
1280 	int ret = 0;
1281 	u8 i, j, k;
1282 	u8 idle;
1283 
1284 	*all_idle = false;
1285 	for (i = 0; i < hdev->chip_num; i++) {
1286 		chip = &hdev->chips[i];
1287 		for (j = 0; j < chip->die_num; j++) {
1288 			die = &chip->dies[j];
1289 			for (k = 0; k < die->port_num; k++) {
1290 				port = &die->ports[k];
1291 				if (port->port_type != port_type)
1292 					continue;
1293 				ret = hccs_query_port_idle_status(hdev, port,
1294 								  &idle);
1295 				if (ret) {
1296 					dev_err(hdev->dev,
1297 						"hccs%u on chip%u/die%u get idle status failed, ret = %d.\n",
1298 						k, i, j, ret);
1299 					return ret;
1300 				} else if (idle == 0) {
1301 					dev_info(hdev->dev, "hccs%u on chip%u/die%u is busy.\n",
1302 						k, i, j);
1303 					return 0;
1304 				}
1305 			}
1306 		}
1307 	}
1308 	*all_idle = true;
1309 
1310 	return 0;
1311 }
1312 
hccs_get_all_spec_port_full_lane_sta(struct hccs_dev * hdev,u8 port_type,bool * full_lane)1313 static int hccs_get_all_spec_port_full_lane_sta(struct hccs_dev *hdev,
1314 						u8 port_type, bool *full_lane)
1315 {
1316 	struct hccs_link_status status = {0};
1317 	struct hccs_chip_info *chip;
1318 	struct hccs_port_info *port;
1319 	struct hccs_die_info *die;
1320 	u8 i, j, k;
1321 	int ret;
1322 
1323 	*full_lane = false;
1324 	for (i = 0; i < hdev->chip_num; i++) {
1325 		chip = &hdev->chips[i];
1326 		for (j = 0; j < chip->die_num; j++) {
1327 			die = &chip->dies[j];
1328 			for (k = 0; k < die->port_num; k++) {
1329 				port = &die->ports[k];
1330 				if (port->port_type != port_type)
1331 					continue;
1332 				ret = hccs_query_port_link_status(hdev, port,
1333 								  &status);
1334 				if (ret)
1335 					return ret;
1336 				if (status.lane_num != port->max_lane_num)
1337 					return 0;
1338 			}
1339 		}
1340 	}
1341 	*full_lane = true;
1342 
1343 	return 0;
1344 }
1345 
hccs_prepare_inc_lane(struct hccs_dev * hdev,u8 type)1346 static int hccs_prepare_inc_lane(struct hccs_dev *hdev, u8 type)
1347 {
1348 	struct hccs_inc_lane_req_param *req_param;
1349 	struct hccs_desc desc;
1350 	int ret;
1351 
1352 	hccs_init_req_desc(&desc);
1353 	req_param = (struct hccs_inc_lane_req_param *)desc.req.data;
1354 	req_param->port_type = type;
1355 	req_param->opt_type = HCCS_PREPARE_INC_LANE;
1356 	ret = hccs_pcc_cmd_send(hdev, HCCS_PM_INC_LANE, &desc);
1357 	if (ret)
1358 		dev_err(hdev->dev, "prepare for increasing lane failed, ret = %d.\n",
1359 			ret);
1360 
1361 	return ret;
1362 }
1363 
hccs_wait_serdes_adapt_completed(struct hccs_dev * hdev,u8 type)1364 static int hccs_wait_serdes_adapt_completed(struct hccs_dev *hdev, u8 type)
1365 {
1366 #define HCCS_MAX_WAIT_CNT_FOR_ADAPT	10
1367 #define HCCS_QUERY_ADAPT_RES_DELAY_MS	100
1368 #define HCCS_SERDES_ADAPT_OK		0
1369 
1370 	struct hccs_inc_lane_req_param *req_param;
1371 	u8 wait_cnt = HCCS_MAX_WAIT_CNT_FOR_ADAPT;
1372 	struct hccs_desc desc;
1373 	u8 adapt_res;
1374 	int ret;
1375 
1376 	do {
1377 		hccs_init_req_desc(&desc);
1378 		req_param = (struct hccs_inc_lane_req_param *)desc.req.data;
1379 		req_param->port_type = type;
1380 		req_param->opt_type = HCCS_GET_ADAPT_RES;
1381 		ret = hccs_pcc_cmd_send(hdev, HCCS_PM_INC_LANE, &desc);
1382 		if (ret) {
1383 			dev_err(hdev->dev, "query adapting result failed, ret = %d.\n",
1384 				ret);
1385 			return ret;
1386 		}
1387 		adapt_res = *((u8 *)&desc.rsp.data);
1388 		if (adapt_res == HCCS_SERDES_ADAPT_OK)
1389 			return 0;
1390 
1391 		msleep(HCCS_QUERY_ADAPT_RES_DELAY_MS);
1392 	} while (--wait_cnt);
1393 
1394 	dev_err(hdev->dev, "wait for adapting completed timeout.\n");
1395 
1396 	return -ETIMEDOUT;
1397 }
1398 
hccs_start_hpcs_retraining(struct hccs_dev * hdev,u8 type)1399 static int hccs_start_hpcs_retraining(struct hccs_dev *hdev, u8 type)
1400 {
1401 	struct hccs_inc_lane_req_param *req_param;
1402 	struct hccs_desc desc;
1403 	int ret;
1404 
1405 	hccs_init_req_desc(&desc);
1406 	req_param = (struct hccs_inc_lane_req_param *)desc.req.data;
1407 	req_param->port_type = type;
1408 	req_param->opt_type = HCCS_START_RETRAINING;
1409 	ret = hccs_pcc_cmd_send(hdev, HCCS_PM_INC_LANE, &desc);
1410 	if (ret)
1411 		dev_err(hdev->dev, "start hpcs retraining failed, ret = %d.\n",
1412 			ret);
1413 
1414 	return ret;
1415 }
1416 
hccs_start_inc_lane(struct hccs_dev * hdev,u8 type)1417 static int hccs_start_inc_lane(struct hccs_dev *hdev, u8 type)
1418 {
1419 	int ret;
1420 
1421 	ret = hccs_prepare_inc_lane(hdev, type);
1422 	if (ret)
1423 		return ret;
1424 
1425 	ret = hccs_wait_serdes_adapt_completed(hdev, type);
1426 	if (ret)
1427 		return ret;
1428 
1429 	return hccs_start_hpcs_retraining(hdev, type);
1430 }
1431 
hccs_start_dec_lane(struct hccs_dev * hdev,u8 type)1432 static int hccs_start_dec_lane(struct hccs_dev *hdev, u8 type)
1433 {
1434 	struct hccs_desc desc;
1435 	u8 *port_type;
1436 	int ret;
1437 
1438 	hccs_init_req_desc(&desc);
1439 	port_type = (u8 *)desc.req.data;
1440 	*port_type = type;
1441 	ret = hccs_pcc_cmd_send(hdev, HCCS_PM_DEC_LANE, &desc);
1442 	if (ret)
1443 		dev_err(hdev->dev, "start to decrease lane failed, ret = %d.\n",
1444 			ret);
1445 
1446 	return ret;
1447 }
1448 
dec_lane_of_type_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t count)1449 static ssize_t dec_lane_of_type_store(struct kobject *kobj, struct kobj_attribute *attr,
1450 			      const char *buf, size_t count)
1451 {
1452 	struct hccs_dev *hdev = device_kobj_to_hccs_dev(kobj);
1453 	bool all_in_idle;
1454 	u8 port_type;
1455 	int ret;
1456 
1457 	ret = hccs_parse_pm_port_type(hdev, buf, &port_type);
1458 	if (ret)
1459 		return ret;
1460 
1461 	mutex_lock(&hdev->lock);
1462 	ret = hccs_get_all_spec_port_idle_sta(hdev, port_type, &all_in_idle);
1463 	if (ret)
1464 		goto out;
1465 	if (!all_in_idle) {
1466 		ret = -EBUSY;
1467 		dev_err(hdev->dev, "please don't decrese lanes on high load with %s, ret = %d.\n",
1468 			hccs_port_type_to_name(hdev, port_type), ret);
1469 		goto out;
1470 	}
1471 
1472 	ret = hccs_start_dec_lane(hdev, port_type);
1473 out:
1474 	mutex_unlock(&hdev->lock);
1475 
1476 	return ret == 0 ? count : ret;
1477 }
1478 static struct kobj_attribute dec_lane_of_type_attr =
1479 		__ATTR(dec_lane_of_type, 0200, NULL, dec_lane_of_type_store);
1480 
inc_lane_of_type_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t count)1481 static ssize_t inc_lane_of_type_store(struct kobject *kobj, struct kobj_attribute *attr,
1482 			      const char *buf, size_t count)
1483 {
1484 	struct hccs_dev *hdev = device_kobj_to_hccs_dev(kobj);
1485 	bool full_lane;
1486 	u8 port_type;
1487 	int ret;
1488 
1489 	ret = hccs_parse_pm_port_type(hdev, buf, &port_type);
1490 	if (ret)
1491 		return ret;
1492 
1493 	mutex_lock(&hdev->lock);
1494 	ret = hccs_get_all_spec_port_full_lane_sta(hdev, port_type, &full_lane);
1495 	if (ret || full_lane)
1496 		goto out;
1497 
1498 	ret = hccs_start_inc_lane(hdev, port_type);
1499 out:
1500 	mutex_unlock(&hdev->lock);
1501 	return ret == 0 ? count : ret;
1502 }
1503 static struct kobj_attribute inc_lane_of_type_attr =
1504 		__ATTR(inc_lane_of_type, 0200, NULL, inc_lane_of_type_store);
1505 
available_inc_dec_lane_types_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)1506 static ssize_t available_inc_dec_lane_types_show(struct kobject *kobj,
1507 						 struct kobj_attribute *attr,
1508 						 char *buf)
1509 {
1510 	struct hccs_dev *hdev = device_kobj_to_hccs_dev(kobj);
1511 
1512 	if (hdev->caps & HCCS_CAPS_HCCS_V2_PM)
1513 		return sysfs_emit(buf, "%s\n",
1514 				  hccs_port_type_to_name(hdev, HCCS_V2));
1515 
1516 	return -EINVAL;
1517 }
1518 static struct kobj_attribute available_inc_dec_lane_types_attr =
1519 		__ATTR(available_inc_dec_lane_types, 0444,
1520 		       available_inc_dec_lane_types_show, NULL);
1521 
used_types_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)1522 static ssize_t used_types_show(struct kobject *kobj,
1523 			       struct kobj_attribute *attr, char *buf)
1524 {
1525 	struct hccs_dev *hdev = device_kobj_to_hccs_dev(kobj);
1526 	int len = 0;
1527 	u16 i;
1528 
1529 	for (i = 0; i < hdev->used_type_num - 1; i++)
1530 		len += sysfs_emit_at(buf, len, "%s ", hdev->type_name_maps[i].name);
1531 	len += sysfs_emit_at(buf, len, "%s\n", hdev->type_name_maps[i].name);
1532 
1533 	return len;
1534 }
1535 static struct kobj_attribute used_types_attr =
1536 		__ATTR(used_types, 0444, used_types_show, NULL);
1537 
hccs_remove_misc_sysfs(struct hccs_dev * hdev)1538 static void hccs_remove_misc_sysfs(struct hccs_dev *hdev)
1539 {
1540 	sysfs_remove_file(&hdev->dev->kobj, &used_types_attr.attr);
1541 
1542 	if (!(hdev->caps & HCCS_CAPS_HCCS_V2_PM))
1543 		return;
1544 
1545 	sysfs_remove_file(&hdev->dev->kobj,
1546 			  &available_inc_dec_lane_types_attr.attr);
1547 	sysfs_remove_file(&hdev->dev->kobj, &dec_lane_of_type_attr.attr);
1548 	sysfs_remove_file(&hdev->dev->kobj, &inc_lane_of_type_attr.attr);
1549 }
1550 
hccs_add_misc_sysfs(struct hccs_dev * hdev)1551 static int hccs_add_misc_sysfs(struct hccs_dev *hdev)
1552 {
1553 	int ret;
1554 
1555 	ret = sysfs_create_file(&hdev->dev->kobj, &used_types_attr.attr);
1556 	if (ret)
1557 		return ret;
1558 
1559 	if (!(hdev->caps & HCCS_CAPS_HCCS_V2_PM))
1560 		return 0;
1561 
1562 	ret = sysfs_create_file(&hdev->dev->kobj,
1563 				&available_inc_dec_lane_types_attr.attr);
1564 	if (ret)
1565 		goto used_types_remove;
1566 
1567 	ret = sysfs_create_file(&hdev->dev->kobj, &dec_lane_of_type_attr.attr);
1568 	if (ret)
1569 		goto inc_dec_lane_types_remove;
1570 
1571 	ret = sysfs_create_file(&hdev->dev->kobj, &inc_lane_of_type_attr.attr);
1572 	if (ret)
1573 		goto dec_lane_of_type_remove;
1574 
1575 	return 0;
1576 
1577 dec_lane_of_type_remove:
1578 	sysfs_remove_file(&hdev->dev->kobj, &dec_lane_of_type_attr.attr);
1579 inc_dec_lane_types_remove:
1580 	sysfs_remove_file(&hdev->dev->kobj,
1581 			  &available_inc_dec_lane_types_attr.attr);
1582 used_types_remove:
1583 	sysfs_remove_file(&hdev->dev->kobj, &used_types_attr.attr);
1584 	return ret;
1585 }
1586 
hccs_remove_die_dir(struct hccs_die_info * die)1587 static void hccs_remove_die_dir(struct hccs_die_info *die)
1588 {
1589 	struct hccs_port_info *port;
1590 	u8 i;
1591 
1592 	for (i = 0; i < die->port_num; i++) {
1593 		port = &die->ports[i];
1594 		if (port->dir_created)
1595 			kobject_put(&port->kobj);
1596 	}
1597 
1598 	kobject_put(&die->kobj);
1599 }
1600 
hccs_remove_chip_dir(struct hccs_chip_info * chip)1601 static void hccs_remove_chip_dir(struct hccs_chip_info *chip)
1602 {
1603 	struct hccs_die_info *die;
1604 	u8 i;
1605 
1606 	for (i = 0; i < chip->die_num; i++) {
1607 		die = &chip->dies[i];
1608 		if (die->dir_created)
1609 			hccs_remove_die_dir(die);
1610 	}
1611 
1612 	kobject_put(&chip->kobj);
1613 }
1614 
hccs_remove_topo_dirs(struct hccs_dev * hdev)1615 static void hccs_remove_topo_dirs(struct hccs_dev *hdev)
1616 {
1617 	u8 i;
1618 
1619 	for (i = 0; i < hdev->chip_num; i++)
1620 		hccs_remove_chip_dir(&hdev->chips[i]);
1621 
1622 	hccs_remove_misc_sysfs(hdev);
1623 }
1624 
hccs_create_hccs_dir(struct hccs_dev * hdev,struct hccs_die_info * die,struct hccs_port_info * port)1625 static int hccs_create_hccs_dir(struct hccs_dev *hdev,
1626 				struct hccs_die_info *die,
1627 				struct hccs_port_info *port)
1628 {
1629 	int ret;
1630 
1631 	ret = kobject_init_and_add(&port->kobj, &hccs_port_type,
1632 				   &die->kobj, "hccs%u", port->port_id);
1633 	if (ret) {
1634 		kobject_put(&port->kobj);
1635 		return ret;
1636 	}
1637 
1638 	return 0;
1639 }
1640 
hccs_create_die_dir(struct hccs_dev * hdev,struct hccs_chip_info * chip,struct hccs_die_info * die)1641 static int hccs_create_die_dir(struct hccs_dev *hdev,
1642 			       struct hccs_chip_info *chip,
1643 			       struct hccs_die_info *die)
1644 {
1645 	struct hccs_port_info *port;
1646 	int ret;
1647 	u16 i;
1648 
1649 	ret = kobject_init_and_add(&die->kobj, &hccs_die_type,
1650 				   &chip->kobj, "die%u", die->die_id);
1651 	if (ret) {
1652 		kobject_put(&die->kobj);
1653 		return ret;
1654 	}
1655 
1656 	for (i = 0; i < die->port_num; i++) {
1657 		port = &die->ports[i];
1658 		ret = hccs_create_hccs_dir(hdev, die, port);
1659 		if (ret) {
1660 			dev_err(hdev->dev, "create hccs%u dir failed.\n",
1661 				port->port_id);
1662 			goto err;
1663 		}
1664 		port->dir_created = true;
1665 	}
1666 
1667 	return 0;
1668 err:
1669 	hccs_remove_die_dir(die);
1670 
1671 	return ret;
1672 }
1673 
hccs_create_chip_dir(struct hccs_dev * hdev,struct hccs_chip_info * chip)1674 static int hccs_create_chip_dir(struct hccs_dev *hdev,
1675 				struct hccs_chip_info *chip)
1676 {
1677 	struct hccs_die_info *die;
1678 	int ret;
1679 	u16 id;
1680 
1681 	ret = kobject_init_and_add(&chip->kobj, &hccs_chip_type,
1682 				   &hdev->dev->kobj, "chip%u", chip->chip_id);
1683 	if (ret) {
1684 		kobject_put(&chip->kobj);
1685 		return ret;
1686 	}
1687 
1688 	for (id = 0; id < chip->die_num; id++) {
1689 		die = &chip->dies[id];
1690 		ret = hccs_create_die_dir(hdev, chip, die);
1691 		if (ret)
1692 			goto err;
1693 		die->dir_created = true;
1694 	}
1695 
1696 	return 0;
1697 err:
1698 	hccs_remove_chip_dir(chip);
1699 
1700 	return ret;
1701 }
1702 
hccs_create_topo_dirs(struct hccs_dev * hdev)1703 static int hccs_create_topo_dirs(struct hccs_dev *hdev)
1704 {
1705 	struct hccs_chip_info *chip;
1706 	u8 id, k;
1707 	int ret;
1708 
1709 	for (id = 0; id < hdev->chip_num; id++) {
1710 		chip = &hdev->chips[id];
1711 		ret = hccs_create_chip_dir(hdev, chip);
1712 		if (ret) {
1713 			dev_err(hdev->dev, "init chip%u dir failed!\n", id);
1714 			goto err;
1715 		}
1716 	}
1717 
1718 	ret = hccs_add_misc_sysfs(hdev);
1719 	if (ret) {
1720 		dev_err(hdev->dev, "create misc sysfs interface failed, ret = %d\n", ret);
1721 		goto err;
1722 	}
1723 
1724 	return 0;
1725 err:
1726 	for (k = 0; k < id; k++)
1727 		hccs_remove_chip_dir(&hdev->chips[k]);
1728 
1729 	return ret;
1730 }
1731 
hccs_probe(struct platform_device * pdev)1732 static int hccs_probe(struct platform_device *pdev)
1733 {
1734 	struct acpi_device *acpi_dev;
1735 	struct hccs_dev *hdev;
1736 	int rc;
1737 
1738 	if (acpi_disabled) {
1739 		dev_err(&pdev->dev, "acpi is disabled.\n");
1740 		return -ENODEV;
1741 	}
1742 	acpi_dev = ACPI_COMPANION(&pdev->dev);
1743 	if (!acpi_dev)
1744 		return -ENODEV;
1745 
1746 	hdev = devm_kzalloc(&pdev->dev, sizeof(*hdev), GFP_KERNEL);
1747 	if (!hdev)
1748 		return -ENOMEM;
1749 	hdev->acpi_dev = acpi_dev;
1750 	hdev->dev = &pdev->dev;
1751 	platform_set_drvdata(pdev, hdev);
1752 
1753 	/*
1754 	 * Here would never be failure as the driver and device has been matched.
1755 	 */
1756 	hdev->verspec_data = acpi_device_get_match_data(hdev->dev);
1757 
1758 	mutex_init(&hdev->lock);
1759 	rc = hccs_get_pcc_chan_id(hdev);
1760 	if (rc)
1761 		return rc;
1762 	rc = hccs_register_pcc_channel(hdev);
1763 	if (rc)
1764 		return rc;
1765 
1766 	rc = hccs_get_dev_caps(hdev);
1767 	if (rc)
1768 		goto unregister_pcc_chan;
1769 
1770 	rc = hccs_get_hw_info(hdev);
1771 	if (rc)
1772 		goto unregister_pcc_chan;
1773 
1774 	rc = hccs_init_type_name_maps(hdev);
1775 	if (rc)
1776 		goto unregister_pcc_chan;
1777 
1778 	rc = hccs_create_topo_dirs(hdev);
1779 	if (rc)
1780 		goto unregister_pcc_chan;
1781 
1782 	return 0;
1783 
1784 unregister_pcc_chan:
1785 	hccs_unregister_pcc_channel(hdev);
1786 
1787 	return rc;
1788 }
1789 
hccs_remove(struct platform_device * pdev)1790 static void hccs_remove(struct platform_device *pdev)
1791 {
1792 	struct hccs_dev *hdev = platform_get_drvdata(pdev);
1793 
1794 	hccs_remove_topo_dirs(hdev);
1795 	hccs_unregister_pcc_channel(hdev);
1796 }
1797 
1798 static const struct hccs_verspecific_data hisi04b1_verspec_data = {
1799 	.rx_callback = NULL,
1800 	.wait_cmd_complete = hccs_wait_cmd_complete_by_poll,
1801 	.fill_pcc_shared_mem = hccs_fill_pcc_shared_mem_region,
1802 	.shared_mem_size = sizeof(struct acpi_pcct_shared_memory),
1803 	.has_txdone_irq = false,
1804 };
1805 
1806 static const struct hccs_verspecific_data hisi04b2_verspec_data = {
1807 	.rx_callback = hccs_pcc_rx_callback,
1808 	.wait_cmd_complete = hccs_wait_cmd_complete_by_irq,
1809 	.fill_pcc_shared_mem = hccs_fill_ext_pcc_shared_mem_region,
1810 	.shared_mem_size = sizeof(struct acpi_pcct_ext_pcc_shared_memory),
1811 	.has_txdone_irq = true,
1812 };
1813 
1814 static const struct acpi_device_id hccs_acpi_match[] = {
1815 	{ "HISI04B1", (unsigned long)&hisi04b1_verspec_data},
1816 	{ "HISI04B2", (unsigned long)&hisi04b2_verspec_data},
1817 	{ }
1818 };
1819 MODULE_DEVICE_TABLE(acpi, hccs_acpi_match);
1820 
1821 static struct platform_driver hccs_driver = {
1822 	.probe = hccs_probe,
1823 	.remove = hccs_remove,
1824 	.driver = {
1825 		.name = "kunpeng_hccs",
1826 		.acpi_match_table = hccs_acpi_match,
1827 	},
1828 };
1829 
1830 module_platform_driver(hccs_driver);
1831 
1832 MODULE_DESCRIPTION("Kunpeng SoC HCCS driver");
1833 MODULE_LICENSE("GPL");
1834 MODULE_AUTHOR("Huisong Li <lihuisong@huawei.com>");
1835