1 /*
2  * Copyright © 2014 Red Hat
3  *
4  * Permission to use, copy, modify, distribute, and sell this software and its
5  * documentation for any purpose is hereby granted without fee, provided that
6  * the above copyright notice appear in all copies and that both that copyright
7  * notice and this permission notice appear in supporting documentation, and
8  * that the name of the copyright holders not be used in advertising or
9  * publicity pertaining to distribution of the software without specific,
10  * written prior permission.  The copyright holders make no representations
11  * about the suitability of this software for any purpose.  It is provided "as
12  * is" without express or implied warranty.
13  *
14  * THE COPYRIGHT HOLDERS DISCLAIM ALL WARRANTIES WITH REGARD TO THIS SOFTWARE,
15  * INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO
16  * EVENT SHALL THE COPYRIGHT HOLDERS BE LIABLE FOR ANY SPECIAL, INDIRECT OR
17  * CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE,
18  * DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
19  * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE
20  * OF THIS SOFTWARE.
21  */
22 
23 #include <linux/kernel.h>
24 #include <linux/delay.h>
25 #include <linux/init.h>
26 #include <linux/errno.h>
27 #include <linux/sched.h>
28 #include <linux/seq_file.h>
29 #include <linux/i2c.h>
30 #include <drm/drm_dp_mst_helper.h>
31 #include <drm/drmP.h>
32 
33 #include <drm/drm_fixed.h>
34 
35 /**
36  * DOC: dp mst helper
37  *
38  * These functions contain parts of the DisplayPort 1.2a MultiStream Transport
39  * protocol. The helpers contain a topology manager and bandwidth manager.
40  * The helpers encapsulate the sending and received of sideband msgs.
41  */
42 static bool dump_dp_payload_table(struct drm_dp_mst_topology_mgr *mgr,
43 				  char *buf);
44 static int test_calc_pbn_mode(void);
45 
46 static void drm_dp_put_port(struct drm_dp_mst_port *port);
47 
48 static int drm_dp_dpcd_write_payload(struct drm_dp_mst_topology_mgr *mgr,
49 				     int id,
50 				     struct drm_dp_payload *payload);
51 
52 static int drm_dp_send_dpcd_write(struct drm_dp_mst_topology_mgr *mgr,
53 				  struct drm_dp_mst_port *port,
54 				  int offset, int size, u8 *bytes);
55 
56 static int drm_dp_send_link_address(struct drm_dp_mst_topology_mgr *mgr,
57 				    struct drm_dp_mst_branch *mstb);
58 static int drm_dp_send_enum_path_resources(struct drm_dp_mst_topology_mgr *mgr,
59 					   struct drm_dp_mst_branch *mstb,
60 					   struct drm_dp_mst_port *port);
61 static bool drm_dp_validate_guid(struct drm_dp_mst_topology_mgr *mgr,
62 				 u8 *guid);
63 
64 static int drm_dp_mst_register_i2c_bus(struct drm_dp_aux *aux);
65 static void drm_dp_mst_unregister_i2c_bus(struct drm_dp_aux *aux);
66 static void drm_dp_mst_kick_tx(struct drm_dp_mst_topology_mgr *mgr);
67 /* sideband msg handling */
drm_dp_msg_header_crc4(const uint8_t * data,size_t num_nibbles)68 static u8 drm_dp_msg_header_crc4(const uint8_t *data, size_t num_nibbles)
69 {
70 	u8 bitmask = 0x80;
71 	u8 bitshift = 7;
72 	u8 array_index = 0;
73 	int number_of_bits = num_nibbles * 4;
74 	u8 remainder = 0;
75 
76 	while (number_of_bits != 0) {
77 		number_of_bits--;
78 		remainder <<= 1;
79 		remainder |= (data[array_index] & bitmask) >> bitshift;
80 		bitmask >>= 1;
81 		bitshift--;
82 		if (bitmask == 0) {
83 			bitmask = 0x80;
84 			bitshift = 7;
85 			array_index++;
86 		}
87 		if ((remainder & 0x10) == 0x10)
88 			remainder ^= 0x13;
89 	}
90 
91 	number_of_bits = 4;
92 	while (number_of_bits != 0) {
93 		number_of_bits--;
94 		remainder <<= 1;
95 		if ((remainder & 0x10) != 0)
96 			remainder ^= 0x13;
97 	}
98 
99 	return remainder;
100 }
101 
drm_dp_msg_data_crc4(const uint8_t * data,u8 number_of_bytes)102 static u8 drm_dp_msg_data_crc4(const uint8_t *data, u8 number_of_bytes)
103 {
104 	u8 bitmask = 0x80;
105 	u8 bitshift = 7;
106 	u8 array_index = 0;
107 	int number_of_bits = number_of_bytes * 8;
108 	u16 remainder = 0;
109 
110 	while (number_of_bits != 0) {
111 		number_of_bits--;
112 		remainder <<= 1;
113 		remainder |= (data[array_index] & bitmask) >> bitshift;
114 		bitmask >>= 1;
115 		bitshift--;
116 		if (bitmask == 0) {
117 			bitmask = 0x80;
118 			bitshift = 7;
119 			array_index++;
120 		}
121 		if ((remainder & 0x100) == 0x100)
122 			remainder ^= 0xd5;
123 	}
124 
125 	number_of_bits = 8;
126 	while (number_of_bits != 0) {
127 		number_of_bits--;
128 		remainder <<= 1;
129 		if ((remainder & 0x100) != 0)
130 			remainder ^= 0xd5;
131 	}
132 
133 	return remainder & 0xff;
134 }
drm_dp_calc_sb_hdr_size(struct drm_dp_sideband_msg_hdr * hdr)135 static inline u8 drm_dp_calc_sb_hdr_size(struct drm_dp_sideband_msg_hdr *hdr)
136 {
137 	u8 size = 3;
138 	size += (hdr->lct / 2);
139 	return size;
140 }
141 
drm_dp_encode_sideband_msg_hdr(struct drm_dp_sideband_msg_hdr * hdr,u8 * buf,int * len)142 static void drm_dp_encode_sideband_msg_hdr(struct drm_dp_sideband_msg_hdr *hdr,
143 					   u8 *buf, int *len)
144 {
145 	int idx = 0;
146 	int i;
147 	u8 crc4;
148 	buf[idx++] = ((hdr->lct & 0xf) << 4) | (hdr->lcr & 0xf);
149 	for (i = 0; i < (hdr->lct / 2); i++)
150 		buf[idx++] = hdr->rad[i];
151 	buf[idx++] = (hdr->broadcast << 7) | (hdr->path_msg << 6) |
152 		(hdr->msg_len & 0x3f);
153 	buf[idx++] = (hdr->somt << 7) | (hdr->eomt << 6) | (hdr->seqno << 4);
154 
155 	crc4 = drm_dp_msg_header_crc4(buf, (idx * 2) - 1);
156 	buf[idx - 1] |= (crc4 & 0xf);
157 
158 	*len = idx;
159 }
160 
drm_dp_decode_sideband_msg_hdr(struct drm_dp_sideband_msg_hdr * hdr,u8 * buf,int buflen,u8 * hdrlen)161 static bool drm_dp_decode_sideband_msg_hdr(struct drm_dp_sideband_msg_hdr *hdr,
162 					   u8 *buf, int buflen, u8 *hdrlen)
163 {
164 	u8 crc4;
165 	u8 len;
166 	int i;
167 	u8 idx;
168 	if (buf[0] == 0)
169 		return false;
170 	len = 3;
171 	len += ((buf[0] & 0xf0) >> 4) / 2;
172 	if (len > buflen)
173 		return false;
174 	crc4 = drm_dp_msg_header_crc4(buf, (len * 2) - 1);
175 
176 	if ((crc4 & 0xf) != (buf[len - 1] & 0xf)) {
177 		DRM_DEBUG_KMS("crc4 mismatch 0x%x 0x%x\n", crc4, buf[len - 1]);
178 		return false;
179 	}
180 
181 	hdr->lct = (buf[0] & 0xf0) >> 4;
182 	hdr->lcr = (buf[0] & 0xf);
183 	idx = 1;
184 	for (i = 0; i < (hdr->lct / 2); i++)
185 		hdr->rad[i] = buf[idx++];
186 	hdr->broadcast = (buf[idx] >> 7) & 0x1;
187 	hdr->path_msg = (buf[idx] >> 6) & 0x1;
188 	hdr->msg_len = buf[idx] & 0x3f;
189 	idx++;
190 	hdr->somt = (buf[idx] >> 7) & 0x1;
191 	hdr->eomt = (buf[idx] >> 6) & 0x1;
192 	hdr->seqno = (buf[idx] >> 4) & 0x1;
193 	idx++;
194 	*hdrlen = idx;
195 	return true;
196 }
197 
drm_dp_encode_sideband_req(struct drm_dp_sideband_msg_req_body * req,struct drm_dp_sideband_msg_tx * raw)198 static void drm_dp_encode_sideband_req(struct drm_dp_sideband_msg_req_body *req,
199 				       struct drm_dp_sideband_msg_tx *raw)
200 {
201 	int idx = 0;
202 	int i;
203 	u8 *buf = raw->msg;
204 	buf[idx++] = req->req_type & 0x7f;
205 
206 	switch (req->req_type) {
207 	case DP_ENUM_PATH_RESOURCES:
208 		buf[idx] = (req->u.port_num.port_number & 0xf) << 4;
209 		idx++;
210 		break;
211 	case DP_ALLOCATE_PAYLOAD:
212 		buf[idx] = (req->u.allocate_payload.port_number & 0xf) << 4 |
213 			(req->u.allocate_payload.number_sdp_streams & 0xf);
214 		idx++;
215 		buf[idx] = (req->u.allocate_payload.vcpi & 0x7f);
216 		idx++;
217 		buf[idx] = (req->u.allocate_payload.pbn >> 8);
218 		idx++;
219 		buf[idx] = (req->u.allocate_payload.pbn & 0xff);
220 		idx++;
221 		for (i = 0; i < req->u.allocate_payload.number_sdp_streams / 2; i++) {
222 			buf[idx] = ((req->u.allocate_payload.sdp_stream_sink[i * 2] & 0xf) << 4) |
223 				(req->u.allocate_payload.sdp_stream_sink[i * 2 + 1] & 0xf);
224 			idx++;
225 		}
226 		if (req->u.allocate_payload.number_sdp_streams & 1) {
227 			i = req->u.allocate_payload.number_sdp_streams - 1;
228 			buf[idx] = (req->u.allocate_payload.sdp_stream_sink[i] & 0xf) << 4;
229 			idx++;
230 		}
231 		break;
232 	case DP_QUERY_PAYLOAD:
233 		buf[idx] = (req->u.query_payload.port_number & 0xf) << 4;
234 		idx++;
235 		buf[idx] = (req->u.query_payload.vcpi & 0x7f);
236 		idx++;
237 		break;
238 	case DP_REMOTE_DPCD_READ:
239 		buf[idx] = (req->u.dpcd_read.port_number & 0xf) << 4;
240 		buf[idx] |= ((req->u.dpcd_read.dpcd_address & 0xf0000) >> 16) & 0xf;
241 		idx++;
242 		buf[idx] = (req->u.dpcd_read.dpcd_address & 0xff00) >> 8;
243 		idx++;
244 		buf[idx] = (req->u.dpcd_read.dpcd_address & 0xff);
245 		idx++;
246 		buf[idx] = (req->u.dpcd_read.num_bytes);
247 		idx++;
248 		break;
249 
250 	case DP_REMOTE_DPCD_WRITE:
251 		buf[idx] = (req->u.dpcd_write.port_number & 0xf) << 4;
252 		buf[idx] |= ((req->u.dpcd_write.dpcd_address & 0xf0000) >> 16) & 0xf;
253 		idx++;
254 		buf[idx] = (req->u.dpcd_write.dpcd_address & 0xff00) >> 8;
255 		idx++;
256 		buf[idx] = (req->u.dpcd_write.dpcd_address & 0xff);
257 		idx++;
258 		buf[idx] = (req->u.dpcd_write.num_bytes);
259 		idx++;
260 		memcpy(&buf[idx], req->u.dpcd_write.bytes, req->u.dpcd_write.num_bytes);
261 		idx += req->u.dpcd_write.num_bytes;
262 		break;
263 	case DP_REMOTE_I2C_READ:
264 		buf[idx] = (req->u.i2c_read.port_number & 0xf) << 4;
265 		buf[idx] |= (req->u.i2c_read.num_transactions & 0x3);
266 		idx++;
267 		for (i = 0; i < (req->u.i2c_read.num_transactions & 0x3); i++) {
268 			buf[idx] = req->u.i2c_read.transactions[i].i2c_dev_id & 0x7f;
269 			idx++;
270 			buf[idx] = req->u.i2c_read.transactions[i].num_bytes;
271 			idx++;
272 			memcpy(&buf[idx], req->u.i2c_read.transactions[i].bytes, req->u.i2c_read.transactions[i].num_bytes);
273 			idx += req->u.i2c_read.transactions[i].num_bytes;
274 
275 			buf[idx] = (req->u.i2c_read.transactions[i].no_stop_bit & 0x1) << 5;
276 			buf[idx] |= (req->u.i2c_read.transactions[i].i2c_transaction_delay & 0xf);
277 			idx++;
278 		}
279 		buf[idx] = (req->u.i2c_read.read_i2c_device_id) & 0x7f;
280 		idx++;
281 		buf[idx] = (req->u.i2c_read.num_bytes_read);
282 		idx++;
283 		break;
284 
285 	case DP_REMOTE_I2C_WRITE:
286 		buf[idx] = (req->u.i2c_write.port_number & 0xf) << 4;
287 		idx++;
288 		buf[idx] = (req->u.i2c_write.write_i2c_device_id) & 0x7f;
289 		idx++;
290 		buf[idx] = (req->u.i2c_write.num_bytes);
291 		idx++;
292 		memcpy(&buf[idx], req->u.i2c_write.bytes, req->u.i2c_write.num_bytes);
293 		idx += req->u.i2c_write.num_bytes;
294 		break;
295 	}
296 	raw->cur_len = idx;
297 }
298 
drm_dp_crc_sideband_chunk_req(u8 * msg,u8 len)299 static void drm_dp_crc_sideband_chunk_req(u8 *msg, u8 len)
300 {
301 	u8 crc4;
302 	crc4 = drm_dp_msg_data_crc4(msg, len);
303 	msg[len] = crc4;
304 }
305 
drm_dp_encode_sideband_reply(struct drm_dp_sideband_msg_reply_body * rep,struct drm_dp_sideband_msg_tx * raw)306 static void drm_dp_encode_sideband_reply(struct drm_dp_sideband_msg_reply_body *rep,
307 					 struct drm_dp_sideband_msg_tx *raw)
308 {
309 	int idx = 0;
310 	u8 *buf = raw->msg;
311 
312 	buf[idx++] = (rep->reply_type & 0x1) << 7 | (rep->req_type & 0x7f);
313 
314 	raw->cur_len = idx;
315 }
316 
317 /* this adds a chunk of msg to the builder to get the final msg */
drm_dp_sideband_msg_build(struct drm_dp_sideband_msg_rx * msg,u8 * replybuf,u8 replybuflen,bool hdr)318 static bool drm_dp_sideband_msg_build(struct drm_dp_sideband_msg_rx *msg,
319 				      u8 *replybuf, u8 replybuflen, bool hdr)
320 {
321 	int ret;
322 	u8 crc4;
323 
324 	if (hdr) {
325 		u8 hdrlen;
326 		struct drm_dp_sideband_msg_hdr recv_hdr;
327 		ret = drm_dp_decode_sideband_msg_hdr(&recv_hdr, replybuf, replybuflen, &hdrlen);
328 		if (ret == false) {
329 			print_hex_dump(KERN_DEBUG, "failed hdr", DUMP_PREFIX_NONE, 16, 1, replybuf, replybuflen, false);
330 			return false;
331 		}
332 
333 		/* get length contained in this portion */
334 		msg->curchunk_len = recv_hdr.msg_len;
335 		msg->curchunk_hdrlen = hdrlen;
336 
337 		/* we have already gotten an somt - don't bother parsing */
338 		if (recv_hdr.somt && msg->have_somt)
339 			return false;
340 
341 		if (recv_hdr.somt) {
342 			memcpy(&msg->initial_hdr, &recv_hdr, sizeof(struct drm_dp_sideband_msg_hdr));
343 			msg->have_somt = true;
344 		}
345 		if (recv_hdr.eomt)
346 			msg->have_eomt = true;
347 
348 		/* copy the bytes for the remainder of this header chunk */
349 		msg->curchunk_idx = min(msg->curchunk_len, (u8)(replybuflen - hdrlen));
350 		memcpy(&msg->chunk[0], replybuf + hdrlen, msg->curchunk_idx);
351 	} else {
352 		memcpy(&msg->chunk[msg->curchunk_idx], replybuf, replybuflen);
353 		msg->curchunk_idx += replybuflen;
354 	}
355 
356 	if (msg->curchunk_idx >= msg->curchunk_len) {
357 		/* do CRC */
358 		crc4 = drm_dp_msg_data_crc4(msg->chunk, msg->curchunk_len - 1);
359 		/* copy chunk into bigger msg */
360 		memcpy(&msg->msg[msg->curlen], msg->chunk, msg->curchunk_len - 1);
361 		msg->curlen += msg->curchunk_len - 1;
362 	}
363 	return true;
364 }
365 
drm_dp_sideband_parse_link_address(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_reply_body * repmsg)366 static bool drm_dp_sideband_parse_link_address(struct drm_dp_sideband_msg_rx *raw,
367 					       struct drm_dp_sideband_msg_reply_body *repmsg)
368 {
369 	int idx = 1;
370 	int i;
371 	memcpy(repmsg->u.link_addr.guid, &raw->msg[idx], 16);
372 	idx += 16;
373 	repmsg->u.link_addr.nports = raw->msg[idx] & 0xf;
374 	idx++;
375 	if (idx > raw->curlen)
376 		goto fail_len;
377 	for (i = 0; i < repmsg->u.link_addr.nports; i++) {
378 		if (raw->msg[idx] & 0x80)
379 			repmsg->u.link_addr.ports[i].input_port = 1;
380 
381 		repmsg->u.link_addr.ports[i].peer_device_type = (raw->msg[idx] >> 4) & 0x7;
382 		repmsg->u.link_addr.ports[i].port_number = (raw->msg[idx] & 0xf);
383 
384 		idx++;
385 		if (idx > raw->curlen)
386 			goto fail_len;
387 		repmsg->u.link_addr.ports[i].mcs = (raw->msg[idx] >> 7) & 0x1;
388 		repmsg->u.link_addr.ports[i].ddps = (raw->msg[idx] >> 6) & 0x1;
389 		if (repmsg->u.link_addr.ports[i].input_port == 0)
390 			repmsg->u.link_addr.ports[i].legacy_device_plug_status = (raw->msg[idx] >> 5) & 0x1;
391 		idx++;
392 		if (idx > raw->curlen)
393 			goto fail_len;
394 		if (repmsg->u.link_addr.ports[i].input_port == 0) {
395 			repmsg->u.link_addr.ports[i].dpcd_revision = (raw->msg[idx]);
396 			idx++;
397 			if (idx > raw->curlen)
398 				goto fail_len;
399 			memcpy(repmsg->u.link_addr.ports[i].peer_guid, &raw->msg[idx], 16);
400 			idx += 16;
401 			if (idx > raw->curlen)
402 				goto fail_len;
403 			repmsg->u.link_addr.ports[i].num_sdp_streams = (raw->msg[idx] >> 4) & 0xf;
404 			repmsg->u.link_addr.ports[i].num_sdp_stream_sinks = (raw->msg[idx] & 0xf);
405 			idx++;
406 
407 		}
408 		if (idx > raw->curlen)
409 			goto fail_len;
410 	}
411 
412 	return true;
413 fail_len:
414 	DRM_DEBUG_KMS("link address reply parse length fail %d %d\n", idx, raw->curlen);
415 	return false;
416 }
417 
drm_dp_sideband_parse_remote_dpcd_read(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_reply_body * repmsg)418 static bool drm_dp_sideband_parse_remote_dpcd_read(struct drm_dp_sideband_msg_rx *raw,
419 						   struct drm_dp_sideband_msg_reply_body *repmsg)
420 {
421 	int idx = 1;
422 	repmsg->u.remote_dpcd_read_ack.port_number = raw->msg[idx] & 0xf;
423 	idx++;
424 	if (idx > raw->curlen)
425 		goto fail_len;
426 	repmsg->u.remote_dpcd_read_ack.num_bytes = raw->msg[idx];
427 	if (idx > raw->curlen)
428 		goto fail_len;
429 
430 	memcpy(repmsg->u.remote_dpcd_read_ack.bytes, &raw->msg[idx], repmsg->u.remote_dpcd_read_ack.num_bytes);
431 	return true;
432 fail_len:
433 	DRM_DEBUG_KMS("link address reply parse length fail %d %d\n", idx, raw->curlen);
434 	return false;
435 }
436 
drm_dp_sideband_parse_remote_dpcd_write(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_reply_body * repmsg)437 static bool drm_dp_sideband_parse_remote_dpcd_write(struct drm_dp_sideband_msg_rx *raw,
438 						      struct drm_dp_sideband_msg_reply_body *repmsg)
439 {
440 	int idx = 1;
441 	repmsg->u.remote_dpcd_write_ack.port_number = raw->msg[idx] & 0xf;
442 	idx++;
443 	if (idx > raw->curlen)
444 		goto fail_len;
445 	return true;
446 fail_len:
447 	DRM_DEBUG_KMS("parse length fail %d %d\n", idx, raw->curlen);
448 	return false;
449 }
450 
drm_dp_sideband_parse_remote_i2c_read_ack(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_reply_body * repmsg)451 static bool drm_dp_sideband_parse_remote_i2c_read_ack(struct drm_dp_sideband_msg_rx *raw,
452 						      struct drm_dp_sideband_msg_reply_body *repmsg)
453 {
454 	int idx = 1;
455 
456 	repmsg->u.remote_i2c_read_ack.port_number = (raw->msg[idx] & 0xf);
457 	idx++;
458 	if (idx > raw->curlen)
459 		goto fail_len;
460 	repmsg->u.remote_i2c_read_ack.num_bytes = raw->msg[idx];
461 	idx++;
462 	/* TODO check */
463 	memcpy(repmsg->u.remote_i2c_read_ack.bytes, &raw->msg[idx], repmsg->u.remote_i2c_read_ack.num_bytes);
464 	return true;
465 fail_len:
466 	DRM_DEBUG_KMS("remote i2c reply parse length fail %d %d\n", idx, raw->curlen);
467 	return false;
468 }
469 
drm_dp_sideband_parse_enum_path_resources_ack(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_reply_body * repmsg)470 static bool drm_dp_sideband_parse_enum_path_resources_ack(struct drm_dp_sideband_msg_rx *raw,
471 							  struct drm_dp_sideband_msg_reply_body *repmsg)
472 {
473 	int idx = 1;
474 	repmsg->u.path_resources.port_number = (raw->msg[idx] >> 4) & 0xf;
475 	idx++;
476 	if (idx > raw->curlen)
477 		goto fail_len;
478 	repmsg->u.path_resources.full_payload_bw_number = (raw->msg[idx] << 8) | (raw->msg[idx+1]);
479 	idx += 2;
480 	if (idx > raw->curlen)
481 		goto fail_len;
482 	repmsg->u.path_resources.avail_payload_bw_number = (raw->msg[idx] << 8) | (raw->msg[idx+1]);
483 	idx += 2;
484 	if (idx > raw->curlen)
485 		goto fail_len;
486 	return true;
487 fail_len:
488 	DRM_DEBUG_KMS("enum resource parse length fail %d %d\n", idx, raw->curlen);
489 	return false;
490 }
491 
drm_dp_sideband_parse_allocate_payload_ack(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_reply_body * repmsg)492 static bool drm_dp_sideband_parse_allocate_payload_ack(struct drm_dp_sideband_msg_rx *raw,
493 							  struct drm_dp_sideband_msg_reply_body *repmsg)
494 {
495 	int idx = 1;
496 	repmsg->u.allocate_payload.port_number = (raw->msg[idx] >> 4) & 0xf;
497 	idx++;
498 	if (idx > raw->curlen)
499 		goto fail_len;
500 	repmsg->u.allocate_payload.vcpi = raw->msg[idx];
501 	idx++;
502 	if (idx > raw->curlen)
503 		goto fail_len;
504 	repmsg->u.allocate_payload.allocated_pbn = (raw->msg[idx] << 8) | (raw->msg[idx+1]);
505 	idx += 2;
506 	if (idx > raw->curlen)
507 		goto fail_len;
508 	return true;
509 fail_len:
510 	DRM_DEBUG_KMS("allocate payload parse length fail %d %d\n", idx, raw->curlen);
511 	return false;
512 }
513 
drm_dp_sideband_parse_query_payload_ack(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_reply_body * repmsg)514 static bool drm_dp_sideband_parse_query_payload_ack(struct drm_dp_sideband_msg_rx *raw,
515 						    struct drm_dp_sideband_msg_reply_body *repmsg)
516 {
517 	int idx = 1;
518 	repmsg->u.query_payload.port_number = (raw->msg[idx] >> 4) & 0xf;
519 	idx++;
520 	if (idx > raw->curlen)
521 		goto fail_len;
522 	repmsg->u.query_payload.allocated_pbn = (raw->msg[idx] << 8) | (raw->msg[idx + 1]);
523 	idx += 2;
524 	if (idx > raw->curlen)
525 		goto fail_len;
526 	return true;
527 fail_len:
528 	DRM_DEBUG_KMS("query payload parse length fail %d %d\n", idx, raw->curlen);
529 	return false;
530 }
531 
drm_dp_sideband_parse_reply(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_reply_body * msg)532 static bool drm_dp_sideband_parse_reply(struct drm_dp_sideband_msg_rx *raw,
533 					struct drm_dp_sideband_msg_reply_body *msg)
534 {
535 	memset(msg, 0, sizeof(*msg));
536 	msg->reply_type = (raw->msg[0] & 0x80) >> 7;
537 	msg->req_type = (raw->msg[0] & 0x7f);
538 
539 	if (msg->reply_type) {
540 		memcpy(msg->u.nak.guid, &raw->msg[1], 16);
541 		msg->u.nak.reason = raw->msg[17];
542 		msg->u.nak.nak_data = raw->msg[18];
543 		return false;
544 	}
545 
546 	switch (msg->req_type) {
547 	case DP_LINK_ADDRESS:
548 		return drm_dp_sideband_parse_link_address(raw, msg);
549 	case DP_QUERY_PAYLOAD:
550 		return drm_dp_sideband_parse_query_payload_ack(raw, msg);
551 	case DP_REMOTE_DPCD_READ:
552 		return drm_dp_sideband_parse_remote_dpcd_read(raw, msg);
553 	case DP_REMOTE_DPCD_WRITE:
554 		return drm_dp_sideband_parse_remote_dpcd_write(raw, msg);
555 	case DP_REMOTE_I2C_READ:
556 		return drm_dp_sideband_parse_remote_i2c_read_ack(raw, msg);
557 	case DP_ENUM_PATH_RESOURCES:
558 		return drm_dp_sideband_parse_enum_path_resources_ack(raw, msg);
559 	case DP_ALLOCATE_PAYLOAD:
560 		return drm_dp_sideband_parse_allocate_payload_ack(raw, msg);
561 	default:
562 		DRM_ERROR("Got unknown reply 0x%02x\n", msg->req_type);
563 		return false;
564 	}
565 }
566 
drm_dp_sideband_parse_connection_status_notify(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_req_body * msg)567 static bool drm_dp_sideband_parse_connection_status_notify(struct drm_dp_sideband_msg_rx *raw,
568 							   struct drm_dp_sideband_msg_req_body *msg)
569 {
570 	int idx = 1;
571 
572 	msg->u.conn_stat.port_number = (raw->msg[idx] & 0xf0) >> 4;
573 	idx++;
574 	if (idx > raw->curlen)
575 		goto fail_len;
576 
577 	memcpy(msg->u.conn_stat.guid, &raw->msg[idx], 16);
578 	idx += 16;
579 	if (idx > raw->curlen)
580 		goto fail_len;
581 
582 	msg->u.conn_stat.legacy_device_plug_status = (raw->msg[idx] >> 6) & 0x1;
583 	msg->u.conn_stat.displayport_device_plug_status = (raw->msg[idx] >> 5) & 0x1;
584 	msg->u.conn_stat.message_capability_status = (raw->msg[idx] >> 4) & 0x1;
585 	msg->u.conn_stat.input_port = (raw->msg[idx] >> 3) & 0x1;
586 	msg->u.conn_stat.peer_device_type = (raw->msg[idx] & 0x7);
587 	idx++;
588 	return true;
589 fail_len:
590 	DRM_DEBUG_KMS("connection status reply parse length fail %d %d\n", idx, raw->curlen);
591 	return false;
592 }
593 
drm_dp_sideband_parse_resource_status_notify(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_req_body * msg)594 static bool drm_dp_sideband_parse_resource_status_notify(struct drm_dp_sideband_msg_rx *raw,
595 							   struct drm_dp_sideband_msg_req_body *msg)
596 {
597 	int idx = 1;
598 
599 	msg->u.resource_stat.port_number = (raw->msg[idx] & 0xf0) >> 4;
600 	idx++;
601 	if (idx > raw->curlen)
602 		goto fail_len;
603 
604 	memcpy(msg->u.resource_stat.guid, &raw->msg[idx], 16);
605 	idx += 16;
606 	if (idx > raw->curlen)
607 		goto fail_len;
608 
609 	msg->u.resource_stat.available_pbn = (raw->msg[idx] << 8) | (raw->msg[idx + 1]);
610 	idx++;
611 	return true;
612 fail_len:
613 	DRM_DEBUG_KMS("resource status reply parse length fail %d %d\n", idx, raw->curlen);
614 	return false;
615 }
616 
drm_dp_sideband_parse_req(struct drm_dp_sideband_msg_rx * raw,struct drm_dp_sideband_msg_req_body * msg)617 static bool drm_dp_sideband_parse_req(struct drm_dp_sideband_msg_rx *raw,
618 				      struct drm_dp_sideband_msg_req_body *msg)
619 {
620 	memset(msg, 0, sizeof(*msg));
621 	msg->req_type = (raw->msg[0] & 0x7f);
622 
623 	switch (msg->req_type) {
624 	case DP_CONNECTION_STATUS_NOTIFY:
625 		return drm_dp_sideband_parse_connection_status_notify(raw, msg);
626 	case DP_RESOURCE_STATUS_NOTIFY:
627 		return drm_dp_sideband_parse_resource_status_notify(raw, msg);
628 	default:
629 		DRM_ERROR("Got unknown request 0x%02x\n", msg->req_type);
630 		return false;
631 	}
632 }
633 
build_dpcd_write(struct drm_dp_sideband_msg_tx * msg,u8 port_num,u32 offset,u8 num_bytes,u8 * bytes)634 static int build_dpcd_write(struct drm_dp_sideband_msg_tx *msg, u8 port_num, u32 offset, u8 num_bytes, u8 *bytes)
635 {
636 	struct drm_dp_sideband_msg_req_body req;
637 
638 	req.req_type = DP_REMOTE_DPCD_WRITE;
639 	req.u.dpcd_write.port_number = port_num;
640 	req.u.dpcd_write.dpcd_address = offset;
641 	req.u.dpcd_write.num_bytes = num_bytes;
642 	req.u.dpcd_write.bytes = bytes;
643 	drm_dp_encode_sideband_req(&req, msg);
644 
645 	return 0;
646 }
647 
build_link_address(struct drm_dp_sideband_msg_tx * msg)648 static int build_link_address(struct drm_dp_sideband_msg_tx *msg)
649 {
650 	struct drm_dp_sideband_msg_req_body req;
651 
652 	req.req_type = DP_LINK_ADDRESS;
653 	drm_dp_encode_sideband_req(&req, msg);
654 	return 0;
655 }
656 
build_enum_path_resources(struct drm_dp_sideband_msg_tx * msg,int port_num)657 static int build_enum_path_resources(struct drm_dp_sideband_msg_tx *msg, int port_num)
658 {
659 	struct drm_dp_sideband_msg_req_body req;
660 
661 	req.req_type = DP_ENUM_PATH_RESOURCES;
662 	req.u.port_num.port_number = port_num;
663 	drm_dp_encode_sideband_req(&req, msg);
664 	msg->path_msg = true;
665 	return 0;
666 }
667 
build_allocate_payload(struct drm_dp_sideband_msg_tx * msg,int port_num,u8 vcpi,uint16_t pbn)668 static int build_allocate_payload(struct drm_dp_sideband_msg_tx *msg, int port_num,
669 				  u8 vcpi, uint16_t pbn)
670 {
671 	struct drm_dp_sideband_msg_req_body req;
672 	memset(&req, 0, sizeof(req));
673 	req.req_type = DP_ALLOCATE_PAYLOAD;
674 	req.u.allocate_payload.port_number = port_num;
675 	req.u.allocate_payload.vcpi = vcpi;
676 	req.u.allocate_payload.pbn = pbn;
677 	drm_dp_encode_sideband_req(&req, msg);
678 	msg->path_msg = true;
679 	return 0;
680 }
681 
drm_dp_mst_assign_payload_id(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_vcpi * vcpi)682 static int drm_dp_mst_assign_payload_id(struct drm_dp_mst_topology_mgr *mgr,
683 					struct drm_dp_vcpi *vcpi)
684 {
685 	int ret, vcpi_ret;
686 
687 	mutex_lock(&mgr->payload_lock);
688 	ret = find_first_zero_bit(&mgr->payload_mask, mgr->max_payloads + 1);
689 	if (ret > mgr->max_payloads) {
690 		ret = -EINVAL;
691 		DRM_DEBUG_KMS("out of payload ids %d\n", ret);
692 		goto out_unlock;
693 	}
694 
695 	vcpi_ret = find_first_zero_bit(&mgr->vcpi_mask, mgr->max_payloads + 1);
696 	if (vcpi_ret > mgr->max_payloads) {
697 		ret = -EINVAL;
698 		DRM_DEBUG_KMS("out of vcpi ids %d\n", ret);
699 		goto out_unlock;
700 	}
701 
702 	set_bit(ret, &mgr->payload_mask);
703 	set_bit(vcpi_ret, &mgr->vcpi_mask);
704 	vcpi->vcpi = vcpi_ret + 1;
705 	mgr->proposed_vcpis[ret - 1] = vcpi;
706 out_unlock:
707 	mutex_unlock(&mgr->payload_lock);
708 	return ret;
709 }
710 
drm_dp_mst_put_payload_id(struct drm_dp_mst_topology_mgr * mgr,int vcpi)711 static void drm_dp_mst_put_payload_id(struct drm_dp_mst_topology_mgr *mgr,
712 				      int vcpi)
713 {
714 	int i;
715 	if (vcpi == 0)
716 		return;
717 
718 	mutex_lock(&mgr->payload_lock);
719 	DRM_DEBUG_KMS("putting payload %d\n", vcpi);
720 	clear_bit(vcpi - 1, &mgr->vcpi_mask);
721 
722 	for (i = 0; i < mgr->max_payloads; i++) {
723 		if (mgr->proposed_vcpis[i])
724 			if (mgr->proposed_vcpis[i]->vcpi == vcpi) {
725 				mgr->proposed_vcpis[i] = NULL;
726 				clear_bit(i + 1, &mgr->payload_mask);
727 			}
728 	}
729 	mutex_unlock(&mgr->payload_lock);
730 }
731 
check_txmsg_state(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_sideband_msg_tx * txmsg)732 static bool check_txmsg_state(struct drm_dp_mst_topology_mgr *mgr,
733 			      struct drm_dp_sideband_msg_tx *txmsg)
734 {
735 	bool ret;
736 
737 	/*
738 	 * All updates to txmsg->state are protected by mgr->qlock, and the two
739 	 * cases we check here are terminal states. For those the barriers
740 	 * provided by the wake_up/wait_event pair are enough.
741 	 */
742 	ret = (txmsg->state == DRM_DP_SIDEBAND_TX_RX ||
743 	       txmsg->state == DRM_DP_SIDEBAND_TX_TIMEOUT);
744 	return ret;
745 }
746 
drm_dp_mst_wait_tx_reply(struct drm_dp_mst_branch * mstb,struct drm_dp_sideband_msg_tx * txmsg)747 static int drm_dp_mst_wait_tx_reply(struct drm_dp_mst_branch *mstb,
748 				    struct drm_dp_sideband_msg_tx *txmsg)
749 {
750 	struct drm_dp_mst_topology_mgr *mgr = mstb->mgr;
751 	int ret;
752 
753 	ret = wait_event_timeout(mgr->tx_waitq,
754 				 check_txmsg_state(mgr, txmsg),
755 				 (4 * HZ));
756 	mutex_lock(&mstb->mgr->qlock);
757 	if (ret > 0) {
758 		if (txmsg->state == DRM_DP_SIDEBAND_TX_TIMEOUT) {
759 			ret = -EIO;
760 			goto out;
761 		}
762 	} else {
763 		DRM_DEBUG_KMS("timedout msg send %p %d %d\n", txmsg, txmsg->state, txmsg->seqno);
764 
765 		/* dump some state */
766 		ret = -EIO;
767 
768 		/* remove from q */
769 		if (txmsg->state == DRM_DP_SIDEBAND_TX_QUEUED ||
770 		    txmsg->state == DRM_DP_SIDEBAND_TX_START_SEND) {
771 			list_del(&txmsg->next);
772 		}
773 
774 		if (txmsg->state == DRM_DP_SIDEBAND_TX_START_SEND ||
775 		    txmsg->state == DRM_DP_SIDEBAND_TX_SENT) {
776 			mstb->tx_slots[txmsg->seqno] = NULL;
777 		}
778 	}
779 out:
780 	mutex_unlock(&mgr->qlock);
781 
782 	return ret;
783 }
784 
drm_dp_add_mst_branch_device(u8 lct,u8 * rad)785 static struct drm_dp_mst_branch *drm_dp_add_mst_branch_device(u8 lct, u8 *rad)
786 {
787 	struct drm_dp_mst_branch *mstb;
788 
789 	mstb = kzalloc(sizeof(*mstb), GFP_KERNEL);
790 	if (!mstb)
791 		return NULL;
792 
793 	mstb->lct = lct;
794 	if (lct > 1)
795 		memcpy(mstb->rad, rad, lct / 2);
796 	INIT_LIST_HEAD(&mstb->ports);
797 	kref_init(&mstb->kref);
798 	return mstb;
799 }
800 
801 static void drm_dp_free_mst_port(struct kref *kref);
802 
drm_dp_free_mst_branch_device(struct kref * kref)803 static void drm_dp_free_mst_branch_device(struct kref *kref)
804 {
805 	struct drm_dp_mst_branch *mstb = container_of(kref, struct drm_dp_mst_branch, kref);
806 	if (mstb->port_parent) {
807 		if (list_empty(&mstb->port_parent->next))
808 			kref_put(&mstb->port_parent->kref, drm_dp_free_mst_port);
809 	}
810 	kfree(mstb);
811 }
812 
drm_dp_destroy_mst_branch_device(struct kref * kref)813 static void drm_dp_destroy_mst_branch_device(struct kref *kref)
814 {
815 	struct drm_dp_mst_branch *mstb = container_of(kref, struct drm_dp_mst_branch, kref);
816 	struct drm_dp_mst_port *port, *tmp;
817 	bool wake_tx = false;
818 
819 	/*
820 	 * init kref again to be used by ports to remove mst branch when it is
821 	 * not needed anymore
822 	 */
823 	kref_init(kref);
824 
825 	if (mstb->port_parent && list_empty(&mstb->port_parent->next))
826 		kref_get(&mstb->port_parent->kref);
827 
828 	/*
829 	 * destroy all ports - don't need lock
830 	 * as there are no more references to the mst branch
831 	 * device at this point.
832 	 */
833 	list_for_each_entry_safe(port, tmp, &mstb->ports, next) {
834 		list_del(&port->next);
835 		drm_dp_put_port(port);
836 	}
837 
838 	/* drop any tx slots msg */
839 	mutex_lock(&mstb->mgr->qlock);
840 	if (mstb->tx_slots[0]) {
841 		mstb->tx_slots[0]->state = DRM_DP_SIDEBAND_TX_TIMEOUT;
842 		mstb->tx_slots[0] = NULL;
843 		wake_tx = true;
844 	}
845 	if (mstb->tx_slots[1]) {
846 		mstb->tx_slots[1]->state = DRM_DP_SIDEBAND_TX_TIMEOUT;
847 		mstb->tx_slots[1] = NULL;
848 		wake_tx = true;
849 	}
850 	mutex_unlock(&mstb->mgr->qlock);
851 
852 	if (wake_tx)
853 		wake_up(&mstb->mgr->tx_waitq);
854 
855 	kref_put(kref, drm_dp_free_mst_branch_device);
856 }
857 
drm_dp_put_mst_branch_device(struct drm_dp_mst_branch * mstb)858 static void drm_dp_put_mst_branch_device(struct drm_dp_mst_branch *mstb)
859 {
860 	kref_put(&mstb->kref, drm_dp_destroy_mst_branch_device);
861 }
862 
863 
drm_dp_port_teardown_pdt(struct drm_dp_mst_port * port,int old_pdt)864 static void drm_dp_port_teardown_pdt(struct drm_dp_mst_port *port, int old_pdt)
865 {
866 	struct drm_dp_mst_branch *mstb;
867 
868 	switch (old_pdt) {
869 	case DP_PEER_DEVICE_DP_LEGACY_CONV:
870 	case DP_PEER_DEVICE_SST_SINK:
871 		/* remove i2c over sideband */
872 		drm_dp_mst_unregister_i2c_bus(&port->aux);
873 		break;
874 	case DP_PEER_DEVICE_MST_BRANCHING:
875 		mstb = port->mstb;
876 		port->mstb = NULL;
877 		drm_dp_put_mst_branch_device(mstb);
878 		break;
879 	}
880 }
881 
drm_dp_destroy_port(struct kref * kref)882 static void drm_dp_destroy_port(struct kref *kref)
883 {
884 	struct drm_dp_mst_port *port = container_of(kref, struct drm_dp_mst_port, kref);
885 	struct drm_dp_mst_topology_mgr *mgr = port->mgr;
886 
887 	if (!port->input) {
888 		port->vcpi.num_slots = 0;
889 
890 		kfree(port->cached_edid);
891 
892 		/*
893 		 * The only time we don't have a connector
894 		 * on an output port is if the connector init
895 		 * fails.
896 		 */
897 		if (port->connector) {
898 			/* we can't destroy the connector here, as
899 			 * we might be holding the mode_config.mutex
900 			 * from an EDID retrieval */
901 
902 			mutex_lock(&mgr->destroy_connector_lock);
903 			kref_get(&port->parent->kref);
904 			list_add(&port->next, &mgr->destroy_connector_list);
905 			mutex_unlock(&mgr->destroy_connector_lock);
906 			schedule_work(&mgr->destroy_connector_work);
907 			return;
908 		}
909 		/* no need to clean up vcpi
910 		 * as if we have no connector we never setup a vcpi */
911 		drm_dp_port_teardown_pdt(port, port->pdt);
912 	}
913 	kfree(port);
914 }
915 
drm_dp_put_port(struct drm_dp_mst_port * port)916 static void drm_dp_put_port(struct drm_dp_mst_port *port)
917 {
918 	kref_put(&port->kref, drm_dp_destroy_port);
919 }
920 
drm_dp_mst_get_validated_mstb_ref_locked(struct drm_dp_mst_branch * mstb,struct drm_dp_mst_branch * to_find)921 static struct drm_dp_mst_branch *drm_dp_mst_get_validated_mstb_ref_locked(struct drm_dp_mst_branch *mstb, struct drm_dp_mst_branch *to_find)
922 {
923 	struct drm_dp_mst_port *port;
924 	struct drm_dp_mst_branch *rmstb;
925 	if (to_find == mstb) {
926 		kref_get(&mstb->kref);
927 		return mstb;
928 	}
929 	list_for_each_entry(port, &mstb->ports, next) {
930 		if (port->mstb) {
931 			rmstb = drm_dp_mst_get_validated_mstb_ref_locked(port->mstb, to_find);
932 			if (rmstb)
933 				return rmstb;
934 		}
935 	}
936 	return NULL;
937 }
938 
drm_dp_get_validated_mstb_ref(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_branch * mstb)939 static struct drm_dp_mst_branch *drm_dp_get_validated_mstb_ref(struct drm_dp_mst_topology_mgr *mgr, struct drm_dp_mst_branch *mstb)
940 {
941 	struct drm_dp_mst_branch *rmstb = NULL;
942 	mutex_lock(&mgr->lock);
943 	if (mgr->mst_primary)
944 		rmstb = drm_dp_mst_get_validated_mstb_ref_locked(mgr->mst_primary, mstb);
945 	mutex_unlock(&mgr->lock);
946 	return rmstb;
947 }
948 
drm_dp_mst_get_port_ref_locked(struct drm_dp_mst_branch * mstb,struct drm_dp_mst_port * to_find)949 static struct drm_dp_mst_port *drm_dp_mst_get_port_ref_locked(struct drm_dp_mst_branch *mstb, struct drm_dp_mst_port *to_find)
950 {
951 	struct drm_dp_mst_port *port, *mport;
952 
953 	list_for_each_entry(port, &mstb->ports, next) {
954 		if (port == to_find) {
955 			kref_get(&port->kref);
956 			return port;
957 		}
958 		if (port->mstb) {
959 			mport = drm_dp_mst_get_port_ref_locked(port->mstb, to_find);
960 			if (mport)
961 				return mport;
962 		}
963 	}
964 	return NULL;
965 }
966 
drm_dp_get_validated_port_ref(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port)967 static struct drm_dp_mst_port *drm_dp_get_validated_port_ref(struct drm_dp_mst_topology_mgr *mgr, struct drm_dp_mst_port *port)
968 {
969 	struct drm_dp_mst_port *rport = NULL;
970 	mutex_lock(&mgr->lock);
971 	if (mgr->mst_primary)
972 		rport = drm_dp_mst_get_port_ref_locked(mgr->mst_primary, port);
973 	mutex_unlock(&mgr->lock);
974 	return rport;
975 }
976 
drm_dp_get_port(struct drm_dp_mst_branch * mstb,u8 port_num)977 static struct drm_dp_mst_port *drm_dp_get_port(struct drm_dp_mst_branch *mstb, u8 port_num)
978 {
979 	struct drm_dp_mst_port *port;
980 
981 	list_for_each_entry(port, &mstb->ports, next) {
982 		if (port->port_num == port_num) {
983 			kref_get(&port->kref);
984 			return port;
985 		}
986 	}
987 
988 	return NULL;
989 }
990 
991 /*
992  * calculate a new RAD for this MST branch device
993  * if parent has an LCT of 2 then it has 1 nibble of RAD,
994  * if parent has an LCT of 3 then it has 2 nibbles of RAD,
995  */
drm_dp_calculate_rad(struct drm_dp_mst_port * port,u8 * rad)996 static u8 drm_dp_calculate_rad(struct drm_dp_mst_port *port,
997 				 u8 *rad)
998 {
999 	int parent_lct = port->parent->lct;
1000 	int shift = 4;
1001 	int idx = (parent_lct - 1) / 2;
1002 	if (parent_lct > 1) {
1003 		memcpy(rad, port->parent->rad, idx + 1);
1004 		shift = (parent_lct % 2) ? 4 : 0;
1005 	} else
1006 		rad[0] = 0;
1007 
1008 	rad[idx] |= port->port_num << shift;
1009 	return parent_lct + 1;
1010 }
1011 
1012 /*
1013  * return sends link address for new mstb
1014  */
drm_dp_port_setup_pdt(struct drm_dp_mst_port * port)1015 static bool drm_dp_port_setup_pdt(struct drm_dp_mst_port *port)
1016 {
1017 	int ret;
1018 	u8 rad[6], lct;
1019 	bool send_link = false;
1020 	switch (port->pdt) {
1021 	case DP_PEER_DEVICE_DP_LEGACY_CONV:
1022 	case DP_PEER_DEVICE_SST_SINK:
1023 		/* add i2c over sideband */
1024 		ret = drm_dp_mst_register_i2c_bus(&port->aux);
1025 		break;
1026 	case DP_PEER_DEVICE_MST_BRANCHING:
1027 		lct = drm_dp_calculate_rad(port, rad);
1028 
1029 		port->mstb = drm_dp_add_mst_branch_device(lct, rad);
1030 		port->mstb->mgr = port->mgr;
1031 		port->mstb->port_parent = port;
1032 
1033 		send_link = true;
1034 		break;
1035 	}
1036 	return send_link;
1037 }
1038 
drm_dp_check_mstb_guid(struct drm_dp_mst_branch * mstb,u8 * guid)1039 static void drm_dp_check_mstb_guid(struct drm_dp_mst_branch *mstb, u8 *guid)
1040 {
1041 	int ret;
1042 
1043 	memcpy(mstb->guid, guid, 16);
1044 
1045 	if (!drm_dp_validate_guid(mstb->mgr, mstb->guid)) {
1046 		if (mstb->port_parent) {
1047 			ret = drm_dp_send_dpcd_write(
1048 					mstb->mgr,
1049 					mstb->port_parent,
1050 					DP_GUID,
1051 					16,
1052 					mstb->guid);
1053 		} else {
1054 
1055 			ret = drm_dp_dpcd_write(
1056 					mstb->mgr->aux,
1057 					DP_GUID,
1058 					mstb->guid,
1059 					16);
1060 		}
1061 	}
1062 }
1063 
build_mst_prop_path(struct drm_dp_mst_port * port,struct drm_dp_mst_branch * mstb,char * proppath,size_t proppath_size)1064 static void build_mst_prop_path(struct drm_dp_mst_port *port,
1065 				struct drm_dp_mst_branch *mstb,
1066 				char *proppath,
1067 				size_t proppath_size)
1068 {
1069 	int i;
1070 	char temp[8];
1071 	snprintf(proppath, proppath_size, "mst:%d", mstb->mgr->conn_base_id);
1072 	for (i = 0; i < (mstb->lct - 1); i++) {
1073 		int shift = (i % 2) ? 0 : 4;
1074 		int port_num = (mstb->rad[i / 2] >> shift) & 0xf;
1075 		snprintf(temp, sizeof(temp), "-%d", port_num);
1076 		strlcat(proppath, temp, proppath_size);
1077 	}
1078 	snprintf(temp, sizeof(temp), "-%d", port->port_num);
1079 	strlcat(proppath, temp, proppath_size);
1080 }
1081 
drm_dp_add_port(struct drm_dp_mst_branch * mstb,struct device * dev,struct drm_dp_link_addr_reply_port * port_msg)1082 static void drm_dp_add_port(struct drm_dp_mst_branch *mstb,
1083 			    struct device *dev,
1084 			    struct drm_dp_link_addr_reply_port *port_msg)
1085 {
1086 	struct drm_dp_mst_port *port;
1087 	bool ret;
1088 	bool created = false;
1089 	int old_pdt = 0;
1090 	int old_ddps = 0;
1091 	port = drm_dp_get_port(mstb, port_msg->port_number);
1092 	if (!port) {
1093 		port = kzalloc(sizeof(*port), GFP_KERNEL);
1094 		if (!port)
1095 			return;
1096 		kref_init(&port->kref);
1097 		port->parent = mstb;
1098 		port->port_num = port_msg->port_number;
1099 		port->mgr = mstb->mgr;
1100 		port->aux.name = "DPMST";
1101 		port->aux.dev = dev;
1102 		created = true;
1103 	} else {
1104 		old_pdt = port->pdt;
1105 		old_ddps = port->ddps;
1106 	}
1107 
1108 	port->pdt = port_msg->peer_device_type;
1109 	port->input = port_msg->input_port;
1110 	port->mcs = port_msg->mcs;
1111 	port->ddps = port_msg->ddps;
1112 	port->ldps = port_msg->legacy_device_plug_status;
1113 	port->dpcd_rev = port_msg->dpcd_revision;
1114 	port->num_sdp_streams = port_msg->num_sdp_streams;
1115 	port->num_sdp_stream_sinks = port_msg->num_sdp_stream_sinks;
1116 
1117 	/* manage mstb port lists with mgr lock - take a reference
1118 	   for this list */
1119 	if (created) {
1120 		mutex_lock(&mstb->mgr->lock);
1121 		kref_get(&port->kref);
1122 		list_add(&port->next, &mstb->ports);
1123 		mutex_unlock(&mstb->mgr->lock);
1124 	}
1125 
1126 	if (old_ddps != port->ddps) {
1127 		if (port->ddps) {
1128 			if (!port->input)
1129 				drm_dp_send_enum_path_resources(mstb->mgr, mstb, port);
1130 		} else {
1131 			port->available_pbn = 0;
1132 			}
1133 	}
1134 
1135 	if (old_pdt != port->pdt && !port->input) {
1136 		drm_dp_port_teardown_pdt(port, old_pdt);
1137 
1138 		ret = drm_dp_port_setup_pdt(port);
1139 		if (ret == true) {
1140 			drm_dp_send_link_address(mstb->mgr, port->mstb);
1141 			port->mstb->link_address_sent = true;
1142 		}
1143 	}
1144 
1145 	if (created && !port->input) {
1146 		char proppath[255];
1147 		build_mst_prop_path(port, mstb, proppath, sizeof(proppath));
1148 		port->connector = (*mstb->mgr->cbs->add_connector)(mstb->mgr, port, proppath);
1149 		if (!port->connector) {
1150 			/* remove it from the port list */
1151 			mutex_lock(&mstb->mgr->lock);
1152 			list_del(&port->next);
1153 			mutex_unlock(&mstb->mgr->lock);
1154 			/* drop port list reference */
1155 			drm_dp_put_port(port);
1156 			goto out;
1157 		}
1158 		if (port->port_num >= 8) {
1159 			port->cached_edid = drm_get_edid(port->connector, &port->aux.ddc);
1160 		}
1161 	}
1162 
1163 out:
1164 	/* put reference to this port */
1165 	drm_dp_put_port(port);
1166 }
1167 
drm_dp_update_port(struct drm_dp_mst_branch * mstb,struct drm_dp_connection_status_notify * conn_stat)1168 static void drm_dp_update_port(struct drm_dp_mst_branch *mstb,
1169 			       struct drm_dp_connection_status_notify *conn_stat)
1170 {
1171 	struct drm_dp_mst_port *port;
1172 	int old_pdt;
1173 	int old_ddps;
1174 	bool dowork = false;
1175 	port = drm_dp_get_port(mstb, conn_stat->port_number);
1176 	if (!port)
1177 		return;
1178 
1179 	old_ddps = port->ddps;
1180 	old_pdt = port->pdt;
1181 	port->pdt = conn_stat->peer_device_type;
1182 	port->mcs = conn_stat->message_capability_status;
1183 	port->ldps = conn_stat->legacy_device_plug_status;
1184 	port->ddps = conn_stat->displayport_device_plug_status;
1185 
1186 	if (old_ddps != port->ddps) {
1187 		if (port->ddps) {
1188 			dowork = true;
1189 		} else {
1190 			port->available_pbn = 0;
1191 		}
1192 	}
1193 	if (old_pdt != port->pdt && !port->input) {
1194 		drm_dp_port_teardown_pdt(port, old_pdt);
1195 
1196 		if (drm_dp_port_setup_pdt(port))
1197 			dowork = true;
1198 	}
1199 
1200 	drm_dp_put_port(port);
1201 	if (dowork)
1202 		queue_work(system_long_wq, &mstb->mgr->work);
1203 
1204 }
1205 
drm_dp_get_mst_branch_device(struct drm_dp_mst_topology_mgr * mgr,u8 lct,u8 * rad)1206 static struct drm_dp_mst_branch *drm_dp_get_mst_branch_device(struct drm_dp_mst_topology_mgr *mgr,
1207 							       u8 lct, u8 *rad)
1208 {
1209 	struct drm_dp_mst_branch *mstb;
1210 	struct drm_dp_mst_port *port;
1211 	int i;
1212 	/* find the port by iterating down */
1213 
1214 	mutex_lock(&mgr->lock);
1215 	mstb = mgr->mst_primary;
1216 
1217 	for (i = 0; i < lct - 1; i++) {
1218 		int shift = (i % 2) ? 0 : 4;
1219 		int port_num = (rad[i / 2] >> shift) & 0xf;
1220 
1221 		list_for_each_entry(port, &mstb->ports, next) {
1222 			if (port->port_num == port_num) {
1223 				mstb = port->mstb;
1224 				if (!mstb) {
1225 					DRM_ERROR("failed to lookup MSTB with lct %d, rad %02x\n", lct, rad[0]);
1226 					goto out;
1227 				}
1228 
1229 				break;
1230 			}
1231 		}
1232 	}
1233 	kref_get(&mstb->kref);
1234 out:
1235 	mutex_unlock(&mgr->lock);
1236 	return mstb;
1237 }
1238 
get_mst_branch_device_by_guid_helper(struct drm_dp_mst_branch * mstb,uint8_t * guid)1239 static struct drm_dp_mst_branch *get_mst_branch_device_by_guid_helper(
1240 	struct drm_dp_mst_branch *mstb,
1241 	uint8_t *guid)
1242 {
1243 	struct drm_dp_mst_branch *found_mstb;
1244 	struct drm_dp_mst_port *port;
1245 
1246 	if (memcmp(mstb->guid, guid, 16) == 0)
1247 		return mstb;
1248 
1249 
1250 	list_for_each_entry(port, &mstb->ports, next) {
1251 		if (!port->mstb)
1252 			continue;
1253 
1254 		found_mstb = get_mst_branch_device_by_guid_helper(port->mstb, guid);
1255 
1256 		if (found_mstb)
1257 			return found_mstb;
1258 	}
1259 
1260 	return NULL;
1261 }
1262 
drm_dp_get_mst_branch_device_by_guid(struct drm_dp_mst_topology_mgr * mgr,uint8_t * guid)1263 static struct drm_dp_mst_branch *drm_dp_get_mst_branch_device_by_guid(
1264 	struct drm_dp_mst_topology_mgr *mgr,
1265 	uint8_t *guid)
1266 {
1267 	struct drm_dp_mst_branch *mstb;
1268 
1269 	/* find the port by iterating down */
1270 	mutex_lock(&mgr->lock);
1271 
1272 	mstb = get_mst_branch_device_by_guid_helper(mgr->mst_primary, guid);
1273 
1274 	if (mstb)
1275 		kref_get(&mstb->kref);
1276 
1277 	mutex_unlock(&mgr->lock);
1278 	return mstb;
1279 }
1280 
drm_dp_check_and_send_link_address(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_branch * mstb)1281 static void drm_dp_check_and_send_link_address(struct drm_dp_mst_topology_mgr *mgr,
1282 					       struct drm_dp_mst_branch *mstb)
1283 {
1284 	struct drm_dp_mst_port *port;
1285 	struct drm_dp_mst_branch *mstb_child;
1286 	if (!mstb->link_address_sent) {
1287 		drm_dp_send_link_address(mgr, mstb);
1288 		mstb->link_address_sent = true;
1289 	}
1290 	list_for_each_entry(port, &mstb->ports, next) {
1291 		if (port->input)
1292 			continue;
1293 
1294 		if (!port->ddps)
1295 			continue;
1296 
1297 		if (!port->available_pbn)
1298 			drm_dp_send_enum_path_resources(mgr, mstb, port);
1299 
1300 		if (port->mstb) {
1301 			mstb_child = drm_dp_get_validated_mstb_ref(mgr, port->mstb);
1302 			if (mstb_child) {
1303 				drm_dp_check_and_send_link_address(mgr, mstb_child);
1304 				drm_dp_put_mst_branch_device(mstb_child);
1305 			}
1306 		}
1307 	}
1308 }
1309 
drm_dp_mst_link_probe_work(struct work_struct * work)1310 static void drm_dp_mst_link_probe_work(struct work_struct *work)
1311 {
1312 	struct drm_dp_mst_topology_mgr *mgr = container_of(work, struct drm_dp_mst_topology_mgr, work);
1313 	struct drm_dp_mst_branch *mstb;
1314 
1315 	mutex_lock(&mgr->lock);
1316 	mstb = mgr->mst_primary;
1317 	if (mstb) {
1318 		kref_get(&mstb->kref);
1319 	}
1320 	mutex_unlock(&mgr->lock);
1321 	if (mstb) {
1322 		drm_dp_check_and_send_link_address(mgr, mstb);
1323 		drm_dp_put_mst_branch_device(mstb);
1324 	}
1325 }
1326 
drm_dp_validate_guid(struct drm_dp_mst_topology_mgr * mgr,u8 * guid)1327 static bool drm_dp_validate_guid(struct drm_dp_mst_topology_mgr *mgr,
1328 				 u8 *guid)
1329 {
1330 	static u8 zero_guid[16];
1331 
1332 	if (!memcmp(guid, zero_guid, 16)) {
1333 		u64 salt = get_jiffies_64();
1334 		memcpy(&guid[0], &salt, sizeof(u64));
1335 		memcpy(&guid[8], &salt, sizeof(u64));
1336 		return false;
1337 	}
1338 	return true;
1339 }
1340 
1341 #if 0
1342 static int build_dpcd_read(struct drm_dp_sideband_msg_tx *msg, u8 port_num, u32 offset, u8 num_bytes)
1343 {
1344 	struct drm_dp_sideband_msg_req_body req;
1345 
1346 	req.req_type = DP_REMOTE_DPCD_READ;
1347 	req.u.dpcd_read.port_number = port_num;
1348 	req.u.dpcd_read.dpcd_address = offset;
1349 	req.u.dpcd_read.num_bytes = num_bytes;
1350 	drm_dp_encode_sideband_req(&req, msg);
1351 
1352 	return 0;
1353 }
1354 #endif
1355 
drm_dp_send_sideband_msg(struct drm_dp_mst_topology_mgr * mgr,bool up,u8 * msg,int len)1356 static int drm_dp_send_sideband_msg(struct drm_dp_mst_topology_mgr *mgr,
1357 				    bool up, u8 *msg, int len)
1358 {
1359 	int ret;
1360 	int regbase = up ? DP_SIDEBAND_MSG_UP_REP_BASE : DP_SIDEBAND_MSG_DOWN_REQ_BASE;
1361 	int tosend, total, offset;
1362 	int retries = 0;
1363 
1364 retry:
1365 	total = len;
1366 	offset = 0;
1367 	do {
1368 		tosend = min3(mgr->max_dpcd_transaction_bytes, 16, total);
1369 
1370 		ret = drm_dp_dpcd_write(mgr->aux, regbase + offset,
1371 					&msg[offset],
1372 					tosend);
1373 		if (ret != tosend) {
1374 			if (ret == -EIO && retries < 5) {
1375 				retries++;
1376 				goto retry;
1377 			}
1378 			DRM_DEBUG_KMS("failed to dpcd write %d %d\n", tosend, ret);
1379 
1380 			return -EIO;
1381 		}
1382 		offset += tosend;
1383 		total -= tosend;
1384 	} while (total > 0);
1385 	return 0;
1386 }
1387 
set_hdr_from_dst_qlock(struct drm_dp_sideband_msg_hdr * hdr,struct drm_dp_sideband_msg_tx * txmsg)1388 static int set_hdr_from_dst_qlock(struct drm_dp_sideband_msg_hdr *hdr,
1389 				  struct drm_dp_sideband_msg_tx *txmsg)
1390 {
1391 	struct drm_dp_mst_branch *mstb = txmsg->dst;
1392 	u8 req_type;
1393 
1394 	/* both msg slots are full */
1395 	if (txmsg->seqno == -1) {
1396 		if (mstb->tx_slots[0] && mstb->tx_slots[1]) {
1397 			DRM_DEBUG_KMS("%s: failed to find slot\n", __func__);
1398 			return -EAGAIN;
1399 		}
1400 		if (mstb->tx_slots[0] == NULL && mstb->tx_slots[1] == NULL) {
1401 			txmsg->seqno = mstb->last_seqno;
1402 			mstb->last_seqno ^= 1;
1403 		} else if (mstb->tx_slots[0] == NULL)
1404 			txmsg->seqno = 0;
1405 		else
1406 			txmsg->seqno = 1;
1407 		mstb->tx_slots[txmsg->seqno] = txmsg;
1408 	}
1409 
1410 	req_type = txmsg->msg[0] & 0x7f;
1411 	if (req_type == DP_CONNECTION_STATUS_NOTIFY ||
1412 		req_type == DP_RESOURCE_STATUS_NOTIFY)
1413 		hdr->broadcast = 1;
1414 	else
1415 		hdr->broadcast = 0;
1416 	hdr->path_msg = txmsg->path_msg;
1417 	hdr->lct = mstb->lct;
1418 	hdr->lcr = mstb->lct - 1;
1419 	if (mstb->lct > 1)
1420 		memcpy(hdr->rad, mstb->rad, mstb->lct / 2);
1421 	hdr->seqno = txmsg->seqno;
1422 	return 0;
1423 }
1424 /*
1425  * process a single block of the next message in the sideband queue
1426  */
process_single_tx_qlock(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_sideband_msg_tx * txmsg,bool up)1427 static int process_single_tx_qlock(struct drm_dp_mst_topology_mgr *mgr,
1428 				   struct drm_dp_sideband_msg_tx *txmsg,
1429 				   bool up)
1430 {
1431 	u8 chunk[48];
1432 	struct drm_dp_sideband_msg_hdr hdr;
1433 	int len, space, idx, tosend;
1434 	int ret;
1435 
1436 	memset(&hdr, 0, sizeof(struct drm_dp_sideband_msg_hdr));
1437 
1438 	if (txmsg->state == DRM_DP_SIDEBAND_TX_QUEUED) {
1439 		txmsg->seqno = -1;
1440 		txmsg->state = DRM_DP_SIDEBAND_TX_START_SEND;
1441 	}
1442 
1443 	/* make hdr from dst mst - for replies use seqno
1444 	   otherwise assign one */
1445 	ret = set_hdr_from_dst_qlock(&hdr, txmsg);
1446 	if (ret < 0)
1447 		return ret;
1448 
1449 	/* amount left to send in this message */
1450 	len = txmsg->cur_len - txmsg->cur_offset;
1451 
1452 	/* 48 - sideband msg size - 1 byte for data CRC, x header bytes */
1453 	space = 48 - 1 - drm_dp_calc_sb_hdr_size(&hdr);
1454 
1455 	tosend = min(len, space);
1456 	if (len == txmsg->cur_len)
1457 		hdr.somt = 1;
1458 	if (space >= len)
1459 		hdr.eomt = 1;
1460 
1461 
1462 	hdr.msg_len = tosend + 1;
1463 	drm_dp_encode_sideband_msg_hdr(&hdr, chunk, &idx);
1464 	memcpy(&chunk[idx], &txmsg->msg[txmsg->cur_offset], tosend);
1465 	/* add crc at end */
1466 	drm_dp_crc_sideband_chunk_req(&chunk[idx], tosend);
1467 	idx += tosend + 1;
1468 
1469 	ret = drm_dp_send_sideband_msg(mgr, up, chunk, idx);
1470 	if (ret) {
1471 		DRM_DEBUG_KMS("sideband msg failed to send\n");
1472 		return ret;
1473 	}
1474 
1475 	txmsg->cur_offset += tosend;
1476 	if (txmsg->cur_offset == txmsg->cur_len) {
1477 		txmsg->state = DRM_DP_SIDEBAND_TX_SENT;
1478 		return 1;
1479 	}
1480 	return 0;
1481 }
1482 
process_single_down_tx_qlock(struct drm_dp_mst_topology_mgr * mgr)1483 static void process_single_down_tx_qlock(struct drm_dp_mst_topology_mgr *mgr)
1484 {
1485 	struct drm_dp_sideband_msg_tx *txmsg;
1486 	int ret;
1487 
1488 	WARN_ON(!mutex_is_locked(&mgr->qlock));
1489 
1490 	/* construct a chunk from the first msg in the tx_msg queue */
1491 	if (list_empty(&mgr->tx_msg_downq)) {
1492 		mgr->tx_down_in_progress = false;
1493 		return;
1494 	}
1495 	mgr->tx_down_in_progress = true;
1496 
1497 	txmsg = list_first_entry(&mgr->tx_msg_downq, struct drm_dp_sideband_msg_tx, next);
1498 	ret = process_single_tx_qlock(mgr, txmsg, false);
1499 	if (ret == 1) {
1500 		/* txmsg is sent it should be in the slots now */
1501 		list_del(&txmsg->next);
1502 	} else if (ret) {
1503 		DRM_DEBUG_KMS("failed to send msg in q %d\n", ret);
1504 		list_del(&txmsg->next);
1505 		if (txmsg->seqno != -1)
1506 			txmsg->dst->tx_slots[txmsg->seqno] = NULL;
1507 		txmsg->state = DRM_DP_SIDEBAND_TX_TIMEOUT;
1508 		wake_up(&mgr->tx_waitq);
1509 	}
1510 	if (list_empty(&mgr->tx_msg_downq)) {
1511 		mgr->tx_down_in_progress = false;
1512 		return;
1513 	}
1514 }
1515 
1516 /* called holding qlock */
process_single_up_tx_qlock(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_sideband_msg_tx * txmsg)1517 static void process_single_up_tx_qlock(struct drm_dp_mst_topology_mgr *mgr,
1518 				       struct drm_dp_sideband_msg_tx *txmsg)
1519 {
1520 	int ret;
1521 
1522 	/* construct a chunk from the first msg in the tx_msg queue */
1523 	ret = process_single_tx_qlock(mgr, txmsg, true);
1524 
1525 	if (ret != 1)
1526 		DRM_DEBUG_KMS("failed to send msg in q %d\n", ret);
1527 
1528 	txmsg->dst->tx_slots[txmsg->seqno] = NULL;
1529 }
1530 
drm_dp_queue_down_tx(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_sideband_msg_tx * txmsg)1531 static void drm_dp_queue_down_tx(struct drm_dp_mst_topology_mgr *mgr,
1532 				 struct drm_dp_sideband_msg_tx *txmsg)
1533 {
1534 	mutex_lock(&mgr->qlock);
1535 	list_add_tail(&txmsg->next, &mgr->tx_msg_downq);
1536 	if (!mgr->tx_down_in_progress)
1537 		process_single_down_tx_qlock(mgr);
1538 	mutex_unlock(&mgr->qlock);
1539 }
1540 
drm_dp_send_link_address(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_branch * mstb)1541 static int drm_dp_send_link_address(struct drm_dp_mst_topology_mgr *mgr,
1542 				    struct drm_dp_mst_branch *mstb)
1543 {
1544 	int len;
1545 	struct drm_dp_sideband_msg_tx *txmsg;
1546 	int ret;
1547 
1548 	txmsg = kzalloc(sizeof(*txmsg), GFP_KERNEL);
1549 	if (!txmsg)
1550 		return -ENOMEM;
1551 
1552 	txmsg->dst = mstb;
1553 	len = build_link_address(txmsg);
1554 
1555 	drm_dp_queue_down_tx(mgr, txmsg);
1556 
1557 	ret = drm_dp_mst_wait_tx_reply(mstb, txmsg);
1558 	if (ret > 0) {
1559 		int i;
1560 
1561 		if (txmsg->reply.reply_type == 1)
1562 			DRM_DEBUG_KMS("link address nak received\n");
1563 		else {
1564 			DRM_DEBUG_KMS("link address reply: %d\n", txmsg->reply.u.link_addr.nports);
1565 			for (i = 0; i < txmsg->reply.u.link_addr.nports; i++) {
1566 				DRM_DEBUG_KMS("port %d: input %d, pdt: %d, pn: %d, dpcd_rev: %02x, mcs: %d, ddps: %d, ldps %d, sdp %d/%d\n", i,
1567 				       txmsg->reply.u.link_addr.ports[i].input_port,
1568 				       txmsg->reply.u.link_addr.ports[i].peer_device_type,
1569 				       txmsg->reply.u.link_addr.ports[i].port_number,
1570 				       txmsg->reply.u.link_addr.ports[i].dpcd_revision,
1571 				       txmsg->reply.u.link_addr.ports[i].mcs,
1572 				       txmsg->reply.u.link_addr.ports[i].ddps,
1573 				       txmsg->reply.u.link_addr.ports[i].legacy_device_plug_status,
1574 				       txmsg->reply.u.link_addr.ports[i].num_sdp_streams,
1575 				       txmsg->reply.u.link_addr.ports[i].num_sdp_stream_sinks);
1576 			}
1577 
1578 			drm_dp_check_mstb_guid(mstb, txmsg->reply.u.link_addr.guid);
1579 
1580 			for (i = 0; i < txmsg->reply.u.link_addr.nports; i++) {
1581 				drm_dp_add_port(mstb, mgr->dev, &txmsg->reply.u.link_addr.ports[i]);
1582 			}
1583 			(*mgr->cbs->hotplug)(mgr);
1584 		}
1585 	} else
1586 		DRM_DEBUG_KMS("link address failed %d\n", ret);
1587 
1588 	kfree(txmsg);
1589 	return 0;
1590 }
1591 
drm_dp_send_enum_path_resources(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_branch * mstb,struct drm_dp_mst_port * port)1592 static int drm_dp_send_enum_path_resources(struct drm_dp_mst_topology_mgr *mgr,
1593 					   struct drm_dp_mst_branch *mstb,
1594 					   struct drm_dp_mst_port *port)
1595 {
1596 	int len;
1597 	struct drm_dp_sideband_msg_tx *txmsg;
1598 	int ret;
1599 
1600 	txmsg = kzalloc(sizeof(*txmsg), GFP_KERNEL);
1601 	if (!txmsg)
1602 		return -ENOMEM;
1603 
1604 	txmsg->dst = mstb;
1605 	len = build_enum_path_resources(txmsg, port->port_num);
1606 
1607 	drm_dp_queue_down_tx(mgr, txmsg);
1608 
1609 	ret = drm_dp_mst_wait_tx_reply(mstb, txmsg);
1610 	if (ret > 0) {
1611 		if (txmsg->reply.reply_type == 1)
1612 			DRM_DEBUG_KMS("enum path resources nak received\n");
1613 		else {
1614 			if (port->port_num != txmsg->reply.u.path_resources.port_number)
1615 				DRM_ERROR("got incorrect port in response\n");
1616 			DRM_DEBUG_KMS("enum path resources %d: %d %d\n", txmsg->reply.u.path_resources.port_number, txmsg->reply.u.path_resources.full_payload_bw_number,
1617 			       txmsg->reply.u.path_resources.avail_payload_bw_number);
1618 			port->available_pbn = txmsg->reply.u.path_resources.avail_payload_bw_number;
1619 		}
1620 	}
1621 
1622 	kfree(txmsg);
1623 	return 0;
1624 }
1625 
drm_dp_get_last_connected_port_to_mstb(struct drm_dp_mst_branch * mstb)1626 static struct drm_dp_mst_port *drm_dp_get_last_connected_port_to_mstb(struct drm_dp_mst_branch *mstb)
1627 {
1628 	if (!mstb->port_parent)
1629 		return NULL;
1630 
1631 	if (mstb->port_parent->mstb != mstb)
1632 		return mstb->port_parent;
1633 
1634 	return drm_dp_get_last_connected_port_to_mstb(mstb->port_parent->parent);
1635 }
1636 
drm_dp_get_last_connected_port_and_mstb(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_branch * mstb,int * port_num)1637 static struct drm_dp_mst_branch *drm_dp_get_last_connected_port_and_mstb(struct drm_dp_mst_topology_mgr *mgr,
1638 									 struct drm_dp_mst_branch *mstb,
1639 									 int *port_num)
1640 {
1641 	struct drm_dp_mst_branch *rmstb = NULL;
1642 	struct drm_dp_mst_port *found_port;
1643 	mutex_lock(&mgr->lock);
1644 	if (mgr->mst_primary) {
1645 		found_port = drm_dp_get_last_connected_port_to_mstb(mstb);
1646 
1647 		if (found_port) {
1648 			rmstb = found_port->parent;
1649 			kref_get(&rmstb->kref);
1650 			*port_num = found_port->port_num;
1651 		}
1652 	}
1653 	mutex_unlock(&mgr->lock);
1654 	return rmstb;
1655 }
1656 
drm_dp_payload_send_msg(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port,int id,int pbn)1657 static int drm_dp_payload_send_msg(struct drm_dp_mst_topology_mgr *mgr,
1658 				   struct drm_dp_mst_port *port,
1659 				   int id,
1660 				   int pbn)
1661 {
1662 	struct drm_dp_sideband_msg_tx *txmsg;
1663 	struct drm_dp_mst_branch *mstb;
1664 	int len, ret, port_num;
1665 
1666 	port = drm_dp_get_validated_port_ref(mgr, port);
1667 	if (!port)
1668 		return -EINVAL;
1669 
1670 	port_num = port->port_num;
1671 	mstb = drm_dp_get_validated_mstb_ref(mgr, port->parent);
1672 	if (!mstb) {
1673 		mstb = drm_dp_get_last_connected_port_and_mstb(mgr, port->parent, &port_num);
1674 
1675 		if (!mstb) {
1676 			drm_dp_put_port(port);
1677 			return -EINVAL;
1678 		}
1679 	}
1680 
1681 	txmsg = kzalloc(sizeof(*txmsg), GFP_KERNEL);
1682 	if (!txmsg) {
1683 		ret = -ENOMEM;
1684 		goto fail_put;
1685 	}
1686 
1687 	txmsg->dst = mstb;
1688 	len = build_allocate_payload(txmsg, port_num,
1689 				     id,
1690 				     pbn);
1691 
1692 	drm_dp_queue_down_tx(mgr, txmsg);
1693 
1694 	ret = drm_dp_mst_wait_tx_reply(mstb, txmsg);
1695 	if (ret > 0) {
1696 		if (txmsg->reply.reply_type == 1) {
1697 			ret = -EINVAL;
1698 		} else
1699 			ret = 0;
1700 	}
1701 	kfree(txmsg);
1702 fail_put:
1703 	drm_dp_put_mst_branch_device(mstb);
1704 	drm_dp_put_port(port);
1705 	return ret;
1706 }
1707 
drm_dp_create_payload_step1(struct drm_dp_mst_topology_mgr * mgr,int id,struct drm_dp_payload * payload)1708 static int drm_dp_create_payload_step1(struct drm_dp_mst_topology_mgr *mgr,
1709 				       int id,
1710 				       struct drm_dp_payload *payload)
1711 {
1712 	int ret;
1713 
1714 	ret = drm_dp_dpcd_write_payload(mgr, id, payload);
1715 	if (ret < 0) {
1716 		payload->payload_state = 0;
1717 		return ret;
1718 	}
1719 	payload->payload_state = DP_PAYLOAD_LOCAL;
1720 	return 0;
1721 }
1722 
drm_dp_create_payload_step2(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port,int id,struct drm_dp_payload * payload)1723 static int drm_dp_create_payload_step2(struct drm_dp_mst_topology_mgr *mgr,
1724 				       struct drm_dp_mst_port *port,
1725 				       int id,
1726 				       struct drm_dp_payload *payload)
1727 {
1728 	int ret;
1729 	ret = drm_dp_payload_send_msg(mgr, port, id, port->vcpi.pbn);
1730 	if (ret < 0)
1731 		return ret;
1732 	payload->payload_state = DP_PAYLOAD_REMOTE;
1733 	return ret;
1734 }
1735 
drm_dp_destroy_payload_step1(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port,int id,struct drm_dp_payload * payload)1736 static int drm_dp_destroy_payload_step1(struct drm_dp_mst_topology_mgr *mgr,
1737 					struct drm_dp_mst_port *port,
1738 					int id,
1739 					struct drm_dp_payload *payload)
1740 {
1741 	DRM_DEBUG_KMS("\n");
1742 	/* its okay for these to fail */
1743 	if (port) {
1744 		drm_dp_payload_send_msg(mgr, port, id, 0);
1745 	}
1746 
1747 	drm_dp_dpcd_write_payload(mgr, id, payload);
1748 	payload->payload_state = DP_PAYLOAD_DELETE_LOCAL;
1749 	return 0;
1750 }
1751 
drm_dp_destroy_payload_step2(struct drm_dp_mst_topology_mgr * mgr,int id,struct drm_dp_payload * payload)1752 static int drm_dp_destroy_payload_step2(struct drm_dp_mst_topology_mgr *mgr,
1753 					int id,
1754 					struct drm_dp_payload *payload)
1755 {
1756 	payload->payload_state = 0;
1757 	return 0;
1758 }
1759 
1760 /**
1761  * drm_dp_update_payload_part1() - Execute payload update part 1
1762  * @mgr: manager to use.
1763  *
1764  * This iterates over all proposed virtual channels, and tries to
1765  * allocate space in the link for them. For 0->slots transitions,
1766  * this step just writes the VCPI to the MST device. For slots->0
1767  * transitions, this writes the updated VCPIs and removes the
1768  * remote VC payloads.
1769  *
1770  * after calling this the driver should generate ACT and payload
1771  * packets.
1772  */
drm_dp_update_payload_part1(struct drm_dp_mst_topology_mgr * mgr)1773 int drm_dp_update_payload_part1(struct drm_dp_mst_topology_mgr *mgr)
1774 {
1775 	int i, j;
1776 	int cur_slots = 1;
1777 	struct drm_dp_payload req_payload;
1778 	struct drm_dp_mst_port *port;
1779 
1780 	mutex_lock(&mgr->payload_lock);
1781 	for (i = 0; i < mgr->max_payloads; i++) {
1782 		/* solve the current payloads - compare to the hw ones
1783 		   - update the hw view */
1784 		req_payload.start_slot = cur_slots;
1785 		if (mgr->proposed_vcpis[i]) {
1786 			port = container_of(mgr->proposed_vcpis[i], struct drm_dp_mst_port, vcpi);
1787 			port = drm_dp_get_validated_port_ref(mgr, port);
1788 			if (!port) {
1789 				mutex_unlock(&mgr->payload_lock);
1790 				return -EINVAL;
1791 			}
1792 			req_payload.num_slots = mgr->proposed_vcpis[i]->num_slots;
1793 		} else {
1794 			port = NULL;
1795 			req_payload.num_slots = 0;
1796 		}
1797 
1798 		if (mgr->payloads[i].start_slot != req_payload.start_slot) {
1799 			mgr->payloads[i].start_slot = req_payload.start_slot;
1800 		}
1801 		/* work out what is required to happen with this payload */
1802 		if (mgr->payloads[i].num_slots != req_payload.num_slots) {
1803 
1804 			/* need to push an update for this payload */
1805 			if (req_payload.num_slots) {
1806 				drm_dp_create_payload_step1(mgr, mgr->proposed_vcpis[i]->vcpi, &req_payload);
1807 				mgr->payloads[i].num_slots = req_payload.num_slots;
1808 			} else if (mgr->payloads[i].num_slots) {
1809 				mgr->payloads[i].num_slots = 0;
1810 				drm_dp_destroy_payload_step1(mgr, port, port->vcpi.vcpi, &mgr->payloads[i]);
1811 				req_payload.payload_state = mgr->payloads[i].payload_state;
1812 				mgr->payloads[i].start_slot = 0;
1813 			}
1814 			mgr->payloads[i].payload_state = req_payload.payload_state;
1815 		}
1816 		cur_slots += req_payload.num_slots;
1817 
1818 		if (port)
1819 			drm_dp_put_port(port);
1820 	}
1821 
1822 	for (i = 0; i < mgr->max_payloads; i++) {
1823 		if (mgr->payloads[i].payload_state == DP_PAYLOAD_DELETE_LOCAL) {
1824 			DRM_DEBUG_KMS("removing payload %d\n", i);
1825 			for (j = i; j < mgr->max_payloads - 1; j++) {
1826 				memcpy(&mgr->payloads[j], &mgr->payloads[j + 1], sizeof(struct drm_dp_payload));
1827 				mgr->proposed_vcpis[j] = mgr->proposed_vcpis[j + 1];
1828 				if (mgr->proposed_vcpis[j] && mgr->proposed_vcpis[j]->num_slots) {
1829 					set_bit(j + 1, &mgr->payload_mask);
1830 				} else {
1831 					clear_bit(j + 1, &mgr->payload_mask);
1832 				}
1833 			}
1834 			memset(&mgr->payloads[mgr->max_payloads - 1], 0, sizeof(struct drm_dp_payload));
1835 			mgr->proposed_vcpis[mgr->max_payloads - 1] = NULL;
1836 			clear_bit(mgr->max_payloads, &mgr->payload_mask);
1837 
1838 		}
1839 	}
1840 	mutex_unlock(&mgr->payload_lock);
1841 
1842 	return 0;
1843 }
1844 EXPORT_SYMBOL(drm_dp_update_payload_part1);
1845 
1846 /**
1847  * drm_dp_update_payload_part2() - Execute payload update part 2
1848  * @mgr: manager to use.
1849  *
1850  * This iterates over all proposed virtual channels, and tries to
1851  * allocate space in the link for them. For 0->slots transitions,
1852  * this step writes the remote VC payload commands. For slots->0
1853  * this just resets some internal state.
1854  */
drm_dp_update_payload_part2(struct drm_dp_mst_topology_mgr * mgr)1855 int drm_dp_update_payload_part2(struct drm_dp_mst_topology_mgr *mgr)
1856 {
1857 	struct drm_dp_mst_port *port;
1858 	int i;
1859 	int ret = 0;
1860 	mutex_lock(&mgr->payload_lock);
1861 	for (i = 0; i < mgr->max_payloads; i++) {
1862 
1863 		if (!mgr->proposed_vcpis[i])
1864 			continue;
1865 
1866 		port = container_of(mgr->proposed_vcpis[i], struct drm_dp_mst_port, vcpi);
1867 
1868 		DRM_DEBUG_KMS("payload %d %d\n", i, mgr->payloads[i].payload_state);
1869 		if (mgr->payloads[i].payload_state == DP_PAYLOAD_LOCAL) {
1870 			ret = drm_dp_create_payload_step2(mgr, port, mgr->proposed_vcpis[i]->vcpi, &mgr->payloads[i]);
1871 		} else if (mgr->payloads[i].payload_state == DP_PAYLOAD_DELETE_LOCAL) {
1872 			ret = drm_dp_destroy_payload_step2(mgr, mgr->proposed_vcpis[i]->vcpi, &mgr->payloads[i]);
1873 		}
1874 		if (ret) {
1875 			mutex_unlock(&mgr->payload_lock);
1876 			return ret;
1877 		}
1878 	}
1879 	mutex_unlock(&mgr->payload_lock);
1880 	return 0;
1881 }
1882 EXPORT_SYMBOL(drm_dp_update_payload_part2);
1883 
1884 #if 0 /* unused as of yet */
1885 static int drm_dp_send_dpcd_read(struct drm_dp_mst_topology_mgr *mgr,
1886 				 struct drm_dp_mst_port *port,
1887 				 int offset, int size)
1888 {
1889 	int len;
1890 	struct drm_dp_sideband_msg_tx *txmsg;
1891 
1892 	txmsg = kzalloc(sizeof(*txmsg), GFP_KERNEL);
1893 	if (!txmsg)
1894 		return -ENOMEM;
1895 
1896 	len = build_dpcd_read(txmsg, port->port_num, 0, 8);
1897 	txmsg->dst = port->parent;
1898 
1899 	drm_dp_queue_down_tx(mgr, txmsg);
1900 
1901 	return 0;
1902 }
1903 #endif
1904 
drm_dp_send_dpcd_write(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port,int offset,int size,u8 * bytes)1905 static int drm_dp_send_dpcd_write(struct drm_dp_mst_topology_mgr *mgr,
1906 				  struct drm_dp_mst_port *port,
1907 				  int offset, int size, u8 *bytes)
1908 {
1909 	int len;
1910 	int ret;
1911 	struct drm_dp_sideband_msg_tx *txmsg;
1912 	struct drm_dp_mst_branch *mstb;
1913 
1914 	mstb = drm_dp_get_validated_mstb_ref(mgr, port->parent);
1915 	if (!mstb)
1916 		return -EINVAL;
1917 
1918 	txmsg = kzalloc(sizeof(*txmsg), GFP_KERNEL);
1919 	if (!txmsg) {
1920 		ret = -ENOMEM;
1921 		goto fail_put;
1922 	}
1923 
1924 	len = build_dpcd_write(txmsg, port->port_num, offset, size, bytes);
1925 	txmsg->dst = mstb;
1926 
1927 	drm_dp_queue_down_tx(mgr, txmsg);
1928 
1929 	ret = drm_dp_mst_wait_tx_reply(mstb, txmsg);
1930 	if (ret > 0) {
1931 		if (txmsg->reply.reply_type == 1) {
1932 			ret = -EINVAL;
1933 		} else
1934 			ret = 0;
1935 	}
1936 	kfree(txmsg);
1937 fail_put:
1938 	drm_dp_put_mst_branch_device(mstb);
1939 	return ret;
1940 }
1941 
drm_dp_encode_up_ack_reply(struct drm_dp_sideband_msg_tx * msg,u8 req_type)1942 static int drm_dp_encode_up_ack_reply(struct drm_dp_sideband_msg_tx *msg, u8 req_type)
1943 {
1944 	struct drm_dp_sideband_msg_reply_body reply;
1945 
1946 	reply.reply_type = 1;
1947 	reply.req_type = req_type;
1948 	drm_dp_encode_sideband_reply(&reply, msg);
1949 	return 0;
1950 }
1951 
drm_dp_send_up_ack_reply(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_branch * mstb,int req_type,int seqno,bool broadcast)1952 static int drm_dp_send_up_ack_reply(struct drm_dp_mst_topology_mgr *mgr,
1953 				    struct drm_dp_mst_branch *mstb,
1954 				    int req_type, int seqno, bool broadcast)
1955 {
1956 	struct drm_dp_sideband_msg_tx *txmsg;
1957 
1958 	txmsg = kzalloc(sizeof(*txmsg), GFP_KERNEL);
1959 	if (!txmsg)
1960 		return -ENOMEM;
1961 
1962 	txmsg->dst = mstb;
1963 	txmsg->seqno = seqno;
1964 	drm_dp_encode_up_ack_reply(txmsg, req_type);
1965 
1966 	mutex_lock(&mgr->qlock);
1967 
1968 	process_single_up_tx_qlock(mgr, txmsg);
1969 
1970 	mutex_unlock(&mgr->qlock);
1971 
1972 	kfree(txmsg);
1973 	return 0;
1974 }
1975 
drm_dp_get_vc_payload_bw(int dp_link_bw,int dp_link_count,int * out)1976 static bool drm_dp_get_vc_payload_bw(int dp_link_bw,
1977 				     int dp_link_count,
1978 				     int *out)
1979 {
1980 	switch (dp_link_bw) {
1981 	default:
1982 		DRM_DEBUG_KMS("invalid link bandwidth in DPCD: %x (link count: %d)\n",
1983 			      dp_link_bw, dp_link_count);
1984 		return false;
1985 
1986 	case DP_LINK_BW_1_62:
1987 		*out = 3 * dp_link_count;
1988 		break;
1989 	case DP_LINK_BW_2_7:
1990 		*out = 5 * dp_link_count;
1991 		break;
1992 	case DP_LINK_BW_5_4:
1993 		*out = 10 * dp_link_count;
1994 		break;
1995 	}
1996 	return true;
1997 }
1998 
1999 /**
2000  * drm_dp_mst_topology_mgr_set_mst() - Set the MST state for a topology manager
2001  * @mgr: manager to set state for
2002  * @mst_state: true to enable MST on this connector - false to disable.
2003  *
2004  * This is called by the driver when it detects an MST capable device plugged
2005  * into a DP MST capable port, or when a DP MST capable device is unplugged.
2006  */
drm_dp_mst_topology_mgr_set_mst(struct drm_dp_mst_topology_mgr * mgr,bool mst_state)2007 int drm_dp_mst_topology_mgr_set_mst(struct drm_dp_mst_topology_mgr *mgr, bool mst_state)
2008 {
2009 	int ret = 0;
2010 	struct drm_dp_mst_branch *mstb = NULL;
2011 
2012 	mutex_lock(&mgr->lock);
2013 	if (mst_state == mgr->mst_state)
2014 		goto out_unlock;
2015 
2016 	mgr->mst_state = mst_state;
2017 	/* set the device into MST mode */
2018 	if (mst_state) {
2019 		WARN_ON(mgr->mst_primary);
2020 
2021 		/* get dpcd info */
2022 		ret = drm_dp_dpcd_read(mgr->aux, DP_DPCD_REV, mgr->dpcd, DP_RECEIVER_CAP_SIZE);
2023 		if (ret != DP_RECEIVER_CAP_SIZE) {
2024 			DRM_DEBUG_KMS("failed to read DPCD\n");
2025 			goto out_unlock;
2026 		}
2027 
2028 		if (!drm_dp_get_vc_payload_bw(mgr->dpcd[1],
2029 					      mgr->dpcd[2] & DP_MAX_LANE_COUNT_MASK,
2030 					      &mgr->pbn_div)) {
2031 			ret = -EINVAL;
2032 			goto out_unlock;
2033 		}
2034 
2035 		mgr->total_pbn = 2560;
2036 		mgr->total_slots = DIV_ROUND_UP(mgr->total_pbn, mgr->pbn_div);
2037 		mgr->avail_slots = mgr->total_slots;
2038 
2039 		/* add initial branch device at LCT 1 */
2040 		mstb = drm_dp_add_mst_branch_device(1, NULL);
2041 		if (mstb == NULL) {
2042 			ret = -ENOMEM;
2043 			goto out_unlock;
2044 		}
2045 		mstb->mgr = mgr;
2046 
2047 		/* give this the main reference */
2048 		mgr->mst_primary = mstb;
2049 		kref_get(&mgr->mst_primary->kref);
2050 
2051 		ret = drm_dp_dpcd_writeb(mgr->aux, DP_MSTM_CTRL,
2052 							 DP_MST_EN | DP_UP_REQ_EN | DP_UPSTREAM_IS_SRC);
2053 		if (ret < 0) {
2054 			goto out_unlock;
2055 		}
2056 
2057 		{
2058 			struct drm_dp_payload reset_pay;
2059 			reset_pay.start_slot = 0;
2060 			reset_pay.num_slots = 0x3f;
2061 			drm_dp_dpcd_write_payload(mgr, 0, &reset_pay);
2062 		}
2063 
2064 		queue_work(system_long_wq, &mgr->work);
2065 
2066 		ret = 0;
2067 	} else {
2068 		/* disable MST on the device */
2069 		mstb = mgr->mst_primary;
2070 		mgr->mst_primary = NULL;
2071 		/* this can fail if the device is gone */
2072 		drm_dp_dpcd_writeb(mgr->aux, DP_MSTM_CTRL, 0);
2073 		ret = 0;
2074 		memset(mgr->payloads, 0, mgr->max_payloads * sizeof(struct drm_dp_payload));
2075 		mgr->payload_mask = 0;
2076 		set_bit(0, &mgr->payload_mask);
2077 		mgr->vcpi_mask = 0;
2078 	}
2079 
2080 out_unlock:
2081 	mutex_unlock(&mgr->lock);
2082 	if (mstb)
2083 		drm_dp_put_mst_branch_device(mstb);
2084 	return ret;
2085 
2086 }
2087 EXPORT_SYMBOL(drm_dp_mst_topology_mgr_set_mst);
2088 
2089 /**
2090  * drm_dp_mst_topology_mgr_suspend() - suspend the MST manager
2091  * @mgr: manager to suspend
2092  *
2093  * This function tells the MST device that we can't handle UP messages
2094  * anymore. This should stop it from sending any since we are suspended.
2095  */
drm_dp_mst_topology_mgr_suspend(struct drm_dp_mst_topology_mgr * mgr)2096 void drm_dp_mst_topology_mgr_suspend(struct drm_dp_mst_topology_mgr *mgr)
2097 {
2098 	mutex_lock(&mgr->lock);
2099 	drm_dp_dpcd_writeb(mgr->aux, DP_MSTM_CTRL,
2100 			   DP_MST_EN | DP_UPSTREAM_IS_SRC);
2101 	mutex_unlock(&mgr->lock);
2102 	flush_work(&mgr->work);
2103 	flush_work(&mgr->destroy_connector_work);
2104 }
2105 EXPORT_SYMBOL(drm_dp_mst_topology_mgr_suspend);
2106 
2107 /**
2108  * drm_dp_mst_topology_mgr_resume() - resume the MST manager
2109  * @mgr: manager to resume
2110  *
2111  * This will fetch DPCD and see if the device is still there,
2112  * if it is, it will rewrite the MSTM control bits, and return.
2113  *
2114  * if the device fails this returns -1, and the driver should do
2115  * a full MST reprobe, in case we were undocked.
2116  */
drm_dp_mst_topology_mgr_resume(struct drm_dp_mst_topology_mgr * mgr)2117 int drm_dp_mst_topology_mgr_resume(struct drm_dp_mst_topology_mgr *mgr)
2118 {
2119 	int ret = 0;
2120 
2121 	mutex_lock(&mgr->lock);
2122 
2123 	if (mgr->mst_primary) {
2124 		int sret;
2125 		u8 guid[16];
2126 
2127 		sret = drm_dp_dpcd_read(mgr->aux, DP_DPCD_REV, mgr->dpcd, DP_RECEIVER_CAP_SIZE);
2128 		if (sret != DP_RECEIVER_CAP_SIZE) {
2129 			DRM_DEBUG_KMS("dpcd read failed - undocked during suspend?\n");
2130 			ret = -1;
2131 			goto out_unlock;
2132 		}
2133 
2134 		ret = drm_dp_dpcd_writeb(mgr->aux, DP_MSTM_CTRL,
2135 					 DP_MST_EN | DP_UP_REQ_EN | DP_UPSTREAM_IS_SRC);
2136 		if (ret < 0) {
2137 			DRM_DEBUG_KMS("mst write failed - undocked during suspend?\n");
2138 			ret = -1;
2139 			goto out_unlock;
2140 		}
2141 
2142 		/* Some hubs forget their guids after they resume */
2143 		sret = drm_dp_dpcd_read(mgr->aux, DP_GUID, guid, 16);
2144 		if (sret != 16) {
2145 			DRM_DEBUG_KMS("dpcd read failed - undocked during suspend?\n");
2146 			ret = -1;
2147 			goto out_unlock;
2148 		}
2149 		drm_dp_check_mstb_guid(mgr->mst_primary, guid);
2150 
2151 		ret = 0;
2152 	} else
2153 		ret = -1;
2154 
2155 out_unlock:
2156 	mutex_unlock(&mgr->lock);
2157 	return ret;
2158 }
2159 EXPORT_SYMBOL(drm_dp_mst_topology_mgr_resume);
2160 
drm_dp_get_one_sb_msg(struct drm_dp_mst_topology_mgr * mgr,bool up)2161 static void drm_dp_get_one_sb_msg(struct drm_dp_mst_topology_mgr *mgr, bool up)
2162 {
2163 	int len;
2164 	u8 replyblock[32];
2165 	int replylen, origlen, curreply;
2166 	int ret;
2167 	struct drm_dp_sideband_msg_rx *msg;
2168 	int basereg = up ? DP_SIDEBAND_MSG_UP_REQ_BASE : DP_SIDEBAND_MSG_DOWN_REP_BASE;
2169 	msg = up ? &mgr->up_req_recv : &mgr->down_rep_recv;
2170 
2171 	len = min(mgr->max_dpcd_transaction_bytes, 16);
2172 	ret = drm_dp_dpcd_read(mgr->aux, basereg,
2173 			       replyblock, len);
2174 	if (ret != len) {
2175 		DRM_DEBUG_KMS("failed to read DPCD down rep %d %d\n", len, ret);
2176 		return;
2177 	}
2178 	ret = drm_dp_sideband_msg_build(msg, replyblock, len, true);
2179 	if (!ret) {
2180 		DRM_DEBUG_KMS("sideband msg build failed %d\n", replyblock[0]);
2181 		return;
2182 	}
2183 	replylen = msg->curchunk_len + msg->curchunk_hdrlen;
2184 
2185 	origlen = replylen;
2186 	replylen -= len;
2187 	curreply = len;
2188 	while (replylen > 0) {
2189 		len = min3(replylen, mgr->max_dpcd_transaction_bytes, 16);
2190 		ret = drm_dp_dpcd_read(mgr->aux, basereg + curreply,
2191 				    replyblock, len);
2192 		if (ret != len) {
2193 			DRM_DEBUG_KMS("failed to read a chunk\n");
2194 		}
2195 		ret = drm_dp_sideband_msg_build(msg, replyblock, len, false);
2196 		if (ret == false)
2197 			DRM_DEBUG_KMS("failed to build sideband msg\n");
2198 		curreply += len;
2199 		replylen -= len;
2200 	}
2201 }
2202 
drm_dp_mst_handle_down_rep(struct drm_dp_mst_topology_mgr * mgr)2203 static int drm_dp_mst_handle_down_rep(struct drm_dp_mst_topology_mgr *mgr)
2204 {
2205 	int ret = 0;
2206 
2207 	drm_dp_get_one_sb_msg(mgr, false);
2208 
2209 	if (mgr->down_rep_recv.have_eomt) {
2210 		struct drm_dp_sideband_msg_tx *txmsg;
2211 		struct drm_dp_mst_branch *mstb;
2212 		int slot = -1;
2213 		mstb = drm_dp_get_mst_branch_device(mgr,
2214 						    mgr->down_rep_recv.initial_hdr.lct,
2215 						    mgr->down_rep_recv.initial_hdr.rad);
2216 
2217 		if (!mstb) {
2218 			DRM_DEBUG_KMS("Got MST reply from unknown device %d\n", mgr->down_rep_recv.initial_hdr.lct);
2219 			memset(&mgr->down_rep_recv, 0, sizeof(struct drm_dp_sideband_msg_rx));
2220 			return 0;
2221 		}
2222 
2223 		/* find the message */
2224 		slot = mgr->down_rep_recv.initial_hdr.seqno;
2225 		mutex_lock(&mgr->qlock);
2226 		txmsg = mstb->tx_slots[slot];
2227 		/* remove from slots */
2228 		mutex_unlock(&mgr->qlock);
2229 
2230 		if (!txmsg) {
2231 			DRM_DEBUG_KMS("Got MST reply with no msg %p %d %d %02x %02x\n",
2232 			       mstb,
2233 			       mgr->down_rep_recv.initial_hdr.seqno,
2234 			       mgr->down_rep_recv.initial_hdr.lct,
2235 				      mgr->down_rep_recv.initial_hdr.rad[0],
2236 				      mgr->down_rep_recv.msg[0]);
2237 			drm_dp_put_mst_branch_device(mstb);
2238 			memset(&mgr->down_rep_recv, 0, sizeof(struct drm_dp_sideband_msg_rx));
2239 			return 0;
2240 		}
2241 
2242 		drm_dp_sideband_parse_reply(&mgr->down_rep_recv, &txmsg->reply);
2243 		if (txmsg->reply.reply_type == 1) {
2244 			DRM_DEBUG_KMS("Got NAK reply: req 0x%02x, reason 0x%02x, nak data 0x%02x\n", txmsg->reply.req_type, txmsg->reply.u.nak.reason, txmsg->reply.u.nak.nak_data);
2245 		}
2246 
2247 		memset(&mgr->down_rep_recv, 0, sizeof(struct drm_dp_sideband_msg_rx));
2248 		drm_dp_put_mst_branch_device(mstb);
2249 
2250 		mutex_lock(&mgr->qlock);
2251 		txmsg->state = DRM_DP_SIDEBAND_TX_RX;
2252 		mstb->tx_slots[slot] = NULL;
2253 		mutex_unlock(&mgr->qlock);
2254 
2255 		wake_up(&mgr->tx_waitq);
2256 	}
2257 	return ret;
2258 }
2259 
drm_dp_mst_handle_up_req(struct drm_dp_mst_topology_mgr * mgr)2260 static int drm_dp_mst_handle_up_req(struct drm_dp_mst_topology_mgr *mgr)
2261 {
2262 	int ret = 0;
2263 	drm_dp_get_one_sb_msg(mgr, true);
2264 
2265 	if (mgr->up_req_recv.have_eomt) {
2266 		struct drm_dp_sideband_msg_req_body msg;
2267 		struct drm_dp_mst_branch *mstb = NULL;
2268 		bool seqno;
2269 
2270 		if (!mgr->up_req_recv.initial_hdr.broadcast) {
2271 			mstb = drm_dp_get_mst_branch_device(mgr,
2272 							    mgr->up_req_recv.initial_hdr.lct,
2273 							    mgr->up_req_recv.initial_hdr.rad);
2274 			if (!mstb) {
2275 				DRM_DEBUG_KMS("Got MST reply from unknown device %d\n", mgr->up_req_recv.initial_hdr.lct);
2276 				memset(&mgr->up_req_recv, 0, sizeof(struct drm_dp_sideband_msg_rx));
2277 				return 0;
2278 			}
2279 		}
2280 
2281 		seqno = mgr->up_req_recv.initial_hdr.seqno;
2282 		drm_dp_sideband_parse_req(&mgr->up_req_recv, &msg);
2283 
2284 		if (msg.req_type == DP_CONNECTION_STATUS_NOTIFY) {
2285 			drm_dp_send_up_ack_reply(mgr, mgr->mst_primary, msg.req_type, seqno, false);
2286 
2287 			if (!mstb)
2288 				mstb = drm_dp_get_mst_branch_device_by_guid(mgr, msg.u.conn_stat.guid);
2289 
2290 			if (!mstb) {
2291 				DRM_DEBUG_KMS("Got MST reply from unknown device %d\n", mgr->up_req_recv.initial_hdr.lct);
2292 				memset(&mgr->up_req_recv, 0, sizeof(struct drm_dp_sideband_msg_rx));
2293 				return 0;
2294 			}
2295 
2296 			drm_dp_update_port(mstb, &msg.u.conn_stat);
2297 
2298 			DRM_DEBUG_KMS("Got CSN: pn: %d ldps:%d ddps: %d mcs: %d ip: %d pdt: %d\n", msg.u.conn_stat.port_number, msg.u.conn_stat.legacy_device_plug_status, msg.u.conn_stat.displayport_device_plug_status, msg.u.conn_stat.message_capability_status, msg.u.conn_stat.input_port, msg.u.conn_stat.peer_device_type);
2299 			(*mgr->cbs->hotplug)(mgr);
2300 
2301 		} else if (msg.req_type == DP_RESOURCE_STATUS_NOTIFY) {
2302 			drm_dp_send_up_ack_reply(mgr, mgr->mst_primary, msg.req_type, seqno, false);
2303 			if (!mstb)
2304 				mstb = drm_dp_get_mst_branch_device_by_guid(mgr, msg.u.resource_stat.guid);
2305 
2306 			if (!mstb) {
2307 				DRM_DEBUG_KMS("Got MST reply from unknown device %d\n", mgr->up_req_recv.initial_hdr.lct);
2308 				memset(&mgr->up_req_recv, 0, sizeof(struct drm_dp_sideband_msg_rx));
2309 				return 0;
2310 			}
2311 
2312 			DRM_DEBUG_KMS("Got RSN: pn: %d avail_pbn %d\n", msg.u.resource_stat.port_number, msg.u.resource_stat.available_pbn);
2313 		}
2314 
2315 		drm_dp_put_mst_branch_device(mstb);
2316 		memset(&mgr->up_req_recv, 0, sizeof(struct drm_dp_sideband_msg_rx));
2317 	}
2318 	return ret;
2319 }
2320 
2321 /**
2322  * drm_dp_mst_hpd_irq() - MST hotplug IRQ notify
2323  * @mgr: manager to notify irq for.
2324  * @esi: 4 bytes from SINK_COUNT_ESI
2325  * @handled: whether the hpd interrupt was consumed or not
2326  *
2327  * This should be called from the driver when it detects a short IRQ,
2328  * along with the value of the DEVICE_SERVICE_IRQ_VECTOR_ESI0. The
2329  * topology manager will process the sideband messages received as a result
2330  * of this.
2331  */
drm_dp_mst_hpd_irq(struct drm_dp_mst_topology_mgr * mgr,u8 * esi,bool * handled)2332 int drm_dp_mst_hpd_irq(struct drm_dp_mst_topology_mgr *mgr, u8 *esi, bool *handled)
2333 {
2334 	int ret = 0;
2335 	int sc;
2336 	*handled = false;
2337 	sc = esi[0] & 0x3f;
2338 
2339 	if (sc != mgr->sink_count) {
2340 		mgr->sink_count = sc;
2341 		*handled = true;
2342 	}
2343 
2344 	if (esi[1] & DP_DOWN_REP_MSG_RDY) {
2345 		ret = drm_dp_mst_handle_down_rep(mgr);
2346 		*handled = true;
2347 	}
2348 
2349 	if (esi[1] & DP_UP_REQ_MSG_RDY) {
2350 		ret |= drm_dp_mst_handle_up_req(mgr);
2351 		*handled = true;
2352 	}
2353 
2354 	drm_dp_mst_kick_tx(mgr);
2355 	return ret;
2356 }
2357 EXPORT_SYMBOL(drm_dp_mst_hpd_irq);
2358 
2359 /**
2360  * drm_dp_mst_detect_port() - get connection status for an MST port
2361  * @mgr: manager for this port
2362  * @port: unverified pointer to a port
2363  *
2364  * This returns the current connection state for a port. It validates the
2365  * port pointer still exists so the caller doesn't require a reference
2366  */
drm_dp_mst_detect_port(struct drm_connector * connector,struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port)2367 enum drm_connector_status drm_dp_mst_detect_port(struct drm_connector *connector,
2368 						 struct drm_dp_mst_topology_mgr *mgr, struct drm_dp_mst_port *port)
2369 {
2370 	enum drm_connector_status status = connector_status_disconnected;
2371 
2372 	/* we need to search for the port in the mgr in case its gone */
2373 	port = drm_dp_get_validated_port_ref(mgr, port);
2374 	if (!port)
2375 		return connector_status_disconnected;
2376 
2377 	if (!port->ddps)
2378 		goto out;
2379 
2380 	switch (port->pdt) {
2381 	case DP_PEER_DEVICE_NONE:
2382 	case DP_PEER_DEVICE_MST_BRANCHING:
2383 		break;
2384 
2385 	case DP_PEER_DEVICE_SST_SINK:
2386 		status = connector_status_connected;
2387 		/* for logical ports - cache the EDID */
2388 		if (port->port_num >= 8 && !port->cached_edid) {
2389 			port->cached_edid = drm_get_edid(connector, &port->aux.ddc);
2390 		}
2391 		break;
2392 	case DP_PEER_DEVICE_DP_LEGACY_CONV:
2393 		if (port->ldps)
2394 			status = connector_status_connected;
2395 		break;
2396 	}
2397 out:
2398 	drm_dp_put_port(port);
2399 	return status;
2400 }
2401 EXPORT_SYMBOL(drm_dp_mst_detect_port);
2402 
2403 /**
2404  * drm_dp_mst_get_edid() - get EDID for an MST port
2405  * @connector: toplevel connector to get EDID for
2406  * @mgr: manager for this port
2407  * @port: unverified pointer to a port.
2408  *
2409  * This returns an EDID for the port connected to a connector,
2410  * It validates the pointer still exists so the caller doesn't require a
2411  * reference.
2412  */
drm_dp_mst_get_edid(struct drm_connector * connector,struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port)2413 struct edid *drm_dp_mst_get_edid(struct drm_connector *connector, struct drm_dp_mst_topology_mgr *mgr, struct drm_dp_mst_port *port)
2414 {
2415 	struct edid *edid = NULL;
2416 
2417 	/* we need to search for the port in the mgr in case its gone */
2418 	port = drm_dp_get_validated_port_ref(mgr, port);
2419 	if (!port)
2420 		return NULL;
2421 
2422 	if (port->cached_edid)
2423 		edid = drm_edid_duplicate(port->cached_edid);
2424 	else
2425 		edid = drm_get_edid(connector, &port->aux.ddc);
2426 
2427 	drm_mode_connector_set_tile_property(connector);
2428 	drm_dp_put_port(port);
2429 	return edid;
2430 }
2431 EXPORT_SYMBOL(drm_dp_mst_get_edid);
2432 
2433 /**
2434  * drm_dp_find_vcpi_slots() - find slots for this PBN value
2435  * @mgr: manager to use
2436  * @pbn: payload bandwidth to convert into slots.
2437  */
drm_dp_find_vcpi_slots(struct drm_dp_mst_topology_mgr * mgr,int pbn)2438 int drm_dp_find_vcpi_slots(struct drm_dp_mst_topology_mgr *mgr,
2439 			   int pbn)
2440 {
2441 	int num_slots;
2442 
2443 	num_slots = DIV_ROUND_UP(pbn, mgr->pbn_div);
2444 
2445 	if (num_slots > mgr->avail_slots)
2446 		return -ENOSPC;
2447 	return num_slots;
2448 }
2449 EXPORT_SYMBOL(drm_dp_find_vcpi_slots);
2450 
drm_dp_init_vcpi(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_vcpi * vcpi,int pbn)2451 static int drm_dp_init_vcpi(struct drm_dp_mst_topology_mgr *mgr,
2452 			    struct drm_dp_vcpi *vcpi, int pbn)
2453 {
2454 	int num_slots;
2455 	int ret;
2456 
2457 	num_slots = DIV_ROUND_UP(pbn, mgr->pbn_div);
2458 
2459 	if (num_slots > mgr->avail_slots)
2460 		return -ENOSPC;
2461 
2462 	vcpi->pbn = pbn;
2463 	vcpi->aligned_pbn = num_slots * mgr->pbn_div;
2464 	vcpi->num_slots = num_slots;
2465 
2466 	ret = drm_dp_mst_assign_payload_id(mgr, vcpi);
2467 	if (ret < 0)
2468 		return ret;
2469 	return 0;
2470 }
2471 
2472 /**
2473  * drm_dp_mst_allocate_vcpi() - Allocate a virtual channel
2474  * @mgr: manager for this port
2475  * @port: port to allocate a virtual channel for.
2476  * @pbn: payload bandwidth number to request
2477  * @slots: returned number of slots for this PBN.
2478  */
drm_dp_mst_allocate_vcpi(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port,int pbn,int * slots)2479 bool drm_dp_mst_allocate_vcpi(struct drm_dp_mst_topology_mgr *mgr, struct drm_dp_mst_port *port, int pbn, int *slots)
2480 {
2481 	int ret;
2482 
2483 	port = drm_dp_get_validated_port_ref(mgr, port);
2484 	if (!port)
2485 		return false;
2486 
2487 	if (port->vcpi.vcpi > 0) {
2488 		DRM_DEBUG_KMS("payload: vcpi %d already allocated for pbn %d - requested pbn %d\n", port->vcpi.vcpi, port->vcpi.pbn, pbn);
2489 		if (pbn == port->vcpi.pbn) {
2490 			*slots = port->vcpi.num_slots;
2491 			drm_dp_put_port(port);
2492 			return true;
2493 		}
2494 	}
2495 
2496 	ret = drm_dp_init_vcpi(mgr, &port->vcpi, pbn);
2497 	if (ret) {
2498 		DRM_DEBUG_KMS("failed to init vcpi %d %d %d\n", DIV_ROUND_UP(pbn, mgr->pbn_div), mgr->avail_slots, ret);
2499 		goto out;
2500 	}
2501 	DRM_DEBUG_KMS("initing vcpi for %d %d\n", pbn, port->vcpi.num_slots);
2502 	*slots = port->vcpi.num_slots;
2503 
2504 	drm_dp_put_port(port);
2505 	return true;
2506 out:
2507 	return false;
2508 }
2509 EXPORT_SYMBOL(drm_dp_mst_allocate_vcpi);
2510 
drm_dp_mst_get_vcpi_slots(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port)2511 int drm_dp_mst_get_vcpi_slots(struct drm_dp_mst_topology_mgr *mgr, struct drm_dp_mst_port *port)
2512 {
2513 	int slots = 0;
2514 	port = drm_dp_get_validated_port_ref(mgr, port);
2515 	if (!port)
2516 		return slots;
2517 
2518 	slots = port->vcpi.num_slots;
2519 	drm_dp_put_port(port);
2520 	return slots;
2521 }
2522 EXPORT_SYMBOL(drm_dp_mst_get_vcpi_slots);
2523 
2524 /**
2525  * drm_dp_mst_reset_vcpi_slots() - Reset number of slots to 0 for VCPI
2526  * @mgr: manager for this port
2527  * @port: unverified pointer to a port.
2528  *
2529  * This just resets the number of slots for the ports VCPI for later programming.
2530  */
drm_dp_mst_reset_vcpi_slots(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port)2531 void drm_dp_mst_reset_vcpi_slots(struct drm_dp_mst_topology_mgr *mgr, struct drm_dp_mst_port *port)
2532 {
2533 	port = drm_dp_get_validated_port_ref(mgr, port);
2534 	if (!port)
2535 		return;
2536 	port->vcpi.num_slots = 0;
2537 	drm_dp_put_port(port);
2538 }
2539 EXPORT_SYMBOL(drm_dp_mst_reset_vcpi_slots);
2540 
2541 /**
2542  * drm_dp_mst_deallocate_vcpi() - deallocate a VCPI
2543  * @mgr: manager for this port
2544  * @port: unverified port to deallocate vcpi for
2545  */
drm_dp_mst_deallocate_vcpi(struct drm_dp_mst_topology_mgr * mgr,struct drm_dp_mst_port * port)2546 void drm_dp_mst_deallocate_vcpi(struct drm_dp_mst_topology_mgr *mgr, struct drm_dp_mst_port *port)
2547 {
2548 	port = drm_dp_get_validated_port_ref(mgr, port);
2549 	if (!port)
2550 		return;
2551 
2552 	drm_dp_mst_put_payload_id(mgr, port->vcpi.vcpi);
2553 	port->vcpi.num_slots = 0;
2554 	port->vcpi.pbn = 0;
2555 	port->vcpi.aligned_pbn = 0;
2556 	port->vcpi.vcpi = 0;
2557 	drm_dp_put_port(port);
2558 }
2559 EXPORT_SYMBOL(drm_dp_mst_deallocate_vcpi);
2560 
drm_dp_dpcd_write_payload(struct drm_dp_mst_topology_mgr * mgr,int id,struct drm_dp_payload * payload)2561 static int drm_dp_dpcd_write_payload(struct drm_dp_mst_topology_mgr *mgr,
2562 				     int id, struct drm_dp_payload *payload)
2563 {
2564 	u8 payload_alloc[3], status;
2565 	int ret;
2566 	int retries = 0;
2567 
2568 	drm_dp_dpcd_writeb(mgr->aux, DP_PAYLOAD_TABLE_UPDATE_STATUS,
2569 			   DP_PAYLOAD_TABLE_UPDATED);
2570 
2571 	payload_alloc[0] = id;
2572 	payload_alloc[1] = payload->start_slot;
2573 	payload_alloc[2] = payload->num_slots;
2574 
2575 	ret = drm_dp_dpcd_write(mgr->aux, DP_PAYLOAD_ALLOCATE_SET, payload_alloc, 3);
2576 	if (ret != 3) {
2577 		DRM_DEBUG_KMS("failed to write payload allocation %d\n", ret);
2578 		goto fail;
2579 	}
2580 
2581 retry:
2582 	ret = drm_dp_dpcd_readb(mgr->aux, DP_PAYLOAD_TABLE_UPDATE_STATUS, &status);
2583 	if (ret < 0) {
2584 		DRM_DEBUG_KMS("failed to read payload table status %d\n", ret);
2585 		goto fail;
2586 	}
2587 
2588 	if (!(status & DP_PAYLOAD_TABLE_UPDATED)) {
2589 		retries++;
2590 		if (retries < 20) {
2591 			usleep_range(10000, 20000);
2592 			goto retry;
2593 		}
2594 		DRM_DEBUG_KMS("status not set after read payload table status %d\n", status);
2595 		ret = -EINVAL;
2596 		goto fail;
2597 	}
2598 	ret = 0;
2599 fail:
2600 	return ret;
2601 }
2602 
2603 
2604 /**
2605  * drm_dp_check_act_status() - Check ACT handled status.
2606  * @mgr: manager to use
2607  *
2608  * Check the payload status bits in the DPCD for ACT handled completion.
2609  */
drm_dp_check_act_status(struct drm_dp_mst_topology_mgr * mgr)2610 int drm_dp_check_act_status(struct drm_dp_mst_topology_mgr *mgr)
2611 {
2612 	u8 status;
2613 	int ret;
2614 	int count = 0;
2615 
2616 	do {
2617 		ret = drm_dp_dpcd_readb(mgr->aux, DP_PAYLOAD_TABLE_UPDATE_STATUS, &status);
2618 
2619 		if (ret < 0) {
2620 			DRM_DEBUG_KMS("failed to read payload table status %d\n", ret);
2621 			goto fail;
2622 		}
2623 
2624 		if (status & DP_PAYLOAD_ACT_HANDLED)
2625 			break;
2626 		count++;
2627 		udelay(100);
2628 
2629 	} while (count < 30);
2630 
2631 	if (!(status & DP_PAYLOAD_ACT_HANDLED)) {
2632 		DRM_DEBUG_KMS("failed to get ACT bit %d after %d retries\n", status, count);
2633 		ret = -EINVAL;
2634 		goto fail;
2635 	}
2636 	return 0;
2637 fail:
2638 	return ret;
2639 }
2640 EXPORT_SYMBOL(drm_dp_check_act_status);
2641 
2642 /**
2643  * drm_dp_calc_pbn_mode() - Calculate the PBN for a mode.
2644  * @clock: dot clock for the mode
2645  * @bpp: bpp for the mode.
2646  *
2647  * This uses the formula in the spec to calculate the PBN value for a mode.
2648  */
drm_dp_calc_pbn_mode(int clock,int bpp)2649 int drm_dp_calc_pbn_mode(int clock, int bpp)
2650 {
2651 	u64 kbps;
2652 	s64 peak_kbps;
2653 	u32 numerator;
2654 	u32 denominator;
2655 
2656 	kbps = clock * bpp;
2657 
2658 	/*
2659 	 * margin 5300ppm + 300ppm ~ 0.6% as per spec, factor is 1.006
2660 	 * The unit of 54/64Mbytes/sec is an arbitrary unit chosen based on
2661 	 * common multiplier to render an integer PBN for all link rate/lane
2662 	 * counts combinations
2663 	 * calculate
2664 	 * peak_kbps *= (1006/1000)
2665 	 * peak_kbps *= (64/54)
2666 	 * peak_kbps *= 8    convert to bytes
2667 	 */
2668 
2669 	numerator = 64 * 1006;
2670 	denominator = 54 * 8 * 1000 * 1000;
2671 
2672 	kbps *= numerator;
2673 	peak_kbps = drm_fixp_from_fraction(kbps, denominator);
2674 
2675 	return drm_fixp2int_ceil(peak_kbps);
2676 }
2677 EXPORT_SYMBOL(drm_dp_calc_pbn_mode);
2678 
test_calc_pbn_mode(void)2679 static int test_calc_pbn_mode(void)
2680 {
2681 	int ret;
2682 	ret = drm_dp_calc_pbn_mode(154000, 30);
2683 	if (ret != 689) {
2684 		DRM_ERROR("PBN calculation test failed - clock %d, bpp %d, expected PBN %d, actual PBN %d.\n",
2685 				154000, 30, 689, ret);
2686 		return -EINVAL;
2687 	}
2688 	ret = drm_dp_calc_pbn_mode(234000, 30);
2689 	if (ret != 1047) {
2690 		DRM_ERROR("PBN calculation test failed - clock %d, bpp %d, expected PBN %d, actual PBN %d.\n",
2691 				234000, 30, 1047, ret);
2692 		return -EINVAL;
2693 	}
2694 	ret = drm_dp_calc_pbn_mode(297000, 24);
2695 	if (ret != 1063) {
2696 		DRM_ERROR("PBN calculation test failed - clock %d, bpp %d, expected PBN %d, actual PBN %d.\n",
2697 				297000, 24, 1063, ret);
2698 		return -EINVAL;
2699 	}
2700 	return 0;
2701 }
2702 
2703 /* we want to kick the TX after we've ack the up/down IRQs. */
drm_dp_mst_kick_tx(struct drm_dp_mst_topology_mgr * mgr)2704 static void drm_dp_mst_kick_tx(struct drm_dp_mst_topology_mgr *mgr)
2705 {
2706 	queue_work(system_long_wq, &mgr->tx_work);
2707 }
2708 
drm_dp_mst_dump_mstb(struct seq_file * m,struct drm_dp_mst_branch * mstb)2709 static void drm_dp_mst_dump_mstb(struct seq_file *m,
2710 				 struct drm_dp_mst_branch *mstb)
2711 {
2712 	struct drm_dp_mst_port *port;
2713 	int tabs = mstb->lct;
2714 	char prefix[10];
2715 	int i;
2716 
2717 	for (i = 0; i < tabs; i++)
2718 		prefix[i] = '\t';
2719 	prefix[i] = '\0';
2720 
2721 	seq_printf(m, "%smst: %p, %d\n", prefix, mstb, mstb->num_ports);
2722 	list_for_each_entry(port, &mstb->ports, next) {
2723 		seq_printf(m, "%sport: %d: ddps: %d ldps: %d, %p, conn: %p\n", prefix, port->port_num, port->ddps, port->ldps, port, port->connector);
2724 		if (port->mstb)
2725 			drm_dp_mst_dump_mstb(m, port->mstb);
2726 	}
2727 }
2728 
dump_dp_payload_table(struct drm_dp_mst_topology_mgr * mgr,char * buf)2729 static bool dump_dp_payload_table(struct drm_dp_mst_topology_mgr *mgr,
2730 				  char *buf)
2731 {
2732 	int ret;
2733 	int i;
2734 	for (i = 0; i < 4; i++) {
2735 		ret = drm_dp_dpcd_read(mgr->aux, DP_PAYLOAD_TABLE_UPDATE_STATUS + (i * 16), &buf[i * 16], 16);
2736 		if (ret != 16)
2737 			break;
2738 	}
2739 	if (i == 4)
2740 		return true;
2741 	return false;
2742 }
2743 
2744 /**
2745  * drm_dp_mst_dump_topology(): dump topology to seq file.
2746  * @m: seq_file to dump output to
2747  * @mgr: manager to dump current topology for.
2748  *
2749  * helper to dump MST topology to a seq file for debugfs.
2750  */
drm_dp_mst_dump_topology(struct seq_file * m,struct drm_dp_mst_topology_mgr * mgr)2751 void drm_dp_mst_dump_topology(struct seq_file *m,
2752 			      struct drm_dp_mst_topology_mgr *mgr)
2753 {
2754 	int i;
2755 	struct drm_dp_mst_port *port;
2756 	mutex_lock(&mgr->lock);
2757 	if (mgr->mst_primary)
2758 		drm_dp_mst_dump_mstb(m, mgr->mst_primary);
2759 
2760 	/* dump VCPIs */
2761 	mutex_unlock(&mgr->lock);
2762 
2763 	mutex_lock(&mgr->payload_lock);
2764 	seq_printf(m, "vcpi: %lx %lx\n", mgr->payload_mask, mgr->vcpi_mask);
2765 
2766 	for (i = 0; i < mgr->max_payloads; i++) {
2767 		if (mgr->proposed_vcpis[i]) {
2768 			port = container_of(mgr->proposed_vcpis[i], struct drm_dp_mst_port, vcpi);
2769 			seq_printf(m, "vcpi %d: %d %d %d\n", i, port->port_num, port->vcpi.vcpi, port->vcpi.num_slots);
2770 		} else
2771 			seq_printf(m, "vcpi %d:unsed\n", i);
2772 	}
2773 	for (i = 0; i < mgr->max_payloads; i++) {
2774 		seq_printf(m, "payload %d: %d, %d, %d\n",
2775 			   i,
2776 			   mgr->payloads[i].payload_state,
2777 			   mgr->payloads[i].start_slot,
2778 			   mgr->payloads[i].num_slots);
2779 
2780 
2781 	}
2782 	mutex_unlock(&mgr->payload_lock);
2783 
2784 	mutex_lock(&mgr->lock);
2785 	if (mgr->mst_primary) {
2786 		u8 buf[64];
2787 		bool bret;
2788 		int ret;
2789 		ret = drm_dp_dpcd_read(mgr->aux, DP_DPCD_REV, buf, DP_RECEIVER_CAP_SIZE);
2790 		seq_printf(m, "dpcd: ");
2791 		for (i = 0; i < DP_RECEIVER_CAP_SIZE; i++)
2792 			seq_printf(m, "%02x ", buf[i]);
2793 		seq_printf(m, "\n");
2794 		ret = drm_dp_dpcd_read(mgr->aux, DP_FAUX_CAP, buf, 2);
2795 		seq_printf(m, "faux/mst: ");
2796 		for (i = 0; i < 2; i++)
2797 			seq_printf(m, "%02x ", buf[i]);
2798 		seq_printf(m, "\n");
2799 		ret = drm_dp_dpcd_read(mgr->aux, DP_MSTM_CTRL, buf, 1);
2800 		seq_printf(m, "mst ctrl: ");
2801 		for (i = 0; i < 1; i++)
2802 			seq_printf(m, "%02x ", buf[i]);
2803 		seq_printf(m, "\n");
2804 
2805 		bret = dump_dp_payload_table(mgr, buf);
2806 		if (bret == true) {
2807 			seq_printf(m, "payload table: ");
2808 			for (i = 0; i < 63; i++)
2809 				seq_printf(m, "%02x ", buf[i]);
2810 			seq_printf(m, "\n");
2811 		}
2812 
2813 	}
2814 
2815 	mutex_unlock(&mgr->lock);
2816 
2817 }
2818 EXPORT_SYMBOL(drm_dp_mst_dump_topology);
2819 
drm_dp_tx_work(struct work_struct * work)2820 static void drm_dp_tx_work(struct work_struct *work)
2821 {
2822 	struct drm_dp_mst_topology_mgr *mgr = container_of(work, struct drm_dp_mst_topology_mgr, tx_work);
2823 
2824 	mutex_lock(&mgr->qlock);
2825 	if (mgr->tx_down_in_progress)
2826 		process_single_down_tx_qlock(mgr);
2827 	mutex_unlock(&mgr->qlock);
2828 }
2829 
drm_dp_free_mst_port(struct kref * kref)2830 static void drm_dp_free_mst_port(struct kref *kref)
2831 {
2832 	struct drm_dp_mst_port *port = container_of(kref, struct drm_dp_mst_port, kref);
2833 	kref_put(&port->parent->kref, drm_dp_free_mst_branch_device);
2834 	kfree(port);
2835 }
2836 
drm_dp_destroy_connector_work(struct work_struct * work)2837 static void drm_dp_destroy_connector_work(struct work_struct *work)
2838 {
2839 	struct drm_dp_mst_topology_mgr *mgr = container_of(work, struct drm_dp_mst_topology_mgr, destroy_connector_work);
2840 	struct drm_dp_mst_port *port;
2841 	bool send_hotplug = false;
2842 	/*
2843 	 * Not a regular list traverse as we have to drop the destroy
2844 	 * connector lock before destroying the connector, to avoid AB->BA
2845 	 * ordering between this lock and the config mutex.
2846 	 */
2847 	for (;;) {
2848 		mutex_lock(&mgr->destroy_connector_lock);
2849 		port = list_first_entry_or_null(&mgr->destroy_connector_list, struct drm_dp_mst_port, next);
2850 		if (!port) {
2851 			mutex_unlock(&mgr->destroy_connector_lock);
2852 			break;
2853 		}
2854 		list_del(&port->next);
2855 		mutex_unlock(&mgr->destroy_connector_lock);
2856 
2857 		kref_init(&port->kref);
2858 		INIT_LIST_HEAD(&port->next);
2859 
2860 		mgr->cbs->destroy_connector(mgr, port->connector);
2861 
2862 		drm_dp_port_teardown_pdt(port, port->pdt);
2863 
2864 		if (!port->input && port->vcpi.vcpi > 0) {
2865 			if (mgr->mst_state) {
2866 				drm_dp_mst_reset_vcpi_slots(mgr, port);
2867 				drm_dp_update_payload_part1(mgr);
2868 				drm_dp_mst_put_payload_id(mgr, port->vcpi.vcpi);
2869 			}
2870 		}
2871 
2872 		kref_put(&port->kref, drm_dp_free_mst_port);
2873 		send_hotplug = true;
2874 	}
2875 	if (send_hotplug)
2876 		(*mgr->cbs->hotplug)(mgr);
2877 }
2878 
2879 /**
2880  * drm_dp_mst_topology_mgr_init - initialise a topology manager
2881  * @mgr: manager struct to initialise
2882  * @dev: device providing this structure - for i2c addition.
2883  * @aux: DP helper aux channel to talk to this device
2884  * @max_dpcd_transaction_bytes: hw specific DPCD transaction limit
2885  * @max_payloads: maximum number of payloads this GPU can source
2886  * @conn_base_id: the connector object ID the MST device is connected to.
2887  *
2888  * Return 0 for success, or negative error code on failure
2889  */
drm_dp_mst_topology_mgr_init(struct drm_dp_mst_topology_mgr * mgr,struct device * dev,struct drm_dp_aux * aux,int max_dpcd_transaction_bytes,int max_payloads,int conn_base_id)2890 int drm_dp_mst_topology_mgr_init(struct drm_dp_mst_topology_mgr *mgr,
2891 				 struct device *dev, struct drm_dp_aux *aux,
2892 				 int max_dpcd_transaction_bytes,
2893 				 int max_payloads, int conn_base_id)
2894 {
2895 	mutex_init(&mgr->lock);
2896 	mutex_init(&mgr->qlock);
2897 	mutex_init(&mgr->payload_lock);
2898 	mutex_init(&mgr->destroy_connector_lock);
2899 	INIT_LIST_HEAD(&mgr->tx_msg_downq);
2900 	INIT_LIST_HEAD(&mgr->destroy_connector_list);
2901 	INIT_WORK(&mgr->work, drm_dp_mst_link_probe_work);
2902 	INIT_WORK(&mgr->tx_work, drm_dp_tx_work);
2903 	INIT_WORK(&mgr->destroy_connector_work, drm_dp_destroy_connector_work);
2904 	init_waitqueue_head(&mgr->tx_waitq);
2905 	mgr->dev = dev;
2906 	mgr->aux = aux;
2907 	mgr->max_dpcd_transaction_bytes = max_dpcd_transaction_bytes;
2908 	mgr->max_payloads = max_payloads;
2909 	mgr->conn_base_id = conn_base_id;
2910 	mgr->payloads = kcalloc(max_payloads, sizeof(struct drm_dp_payload), GFP_KERNEL);
2911 	if (!mgr->payloads)
2912 		return -ENOMEM;
2913 	mgr->proposed_vcpis = kcalloc(max_payloads, sizeof(struct drm_dp_vcpi *), GFP_KERNEL);
2914 	if (!mgr->proposed_vcpis)
2915 		return -ENOMEM;
2916 	set_bit(0, &mgr->payload_mask);
2917 	test_calc_pbn_mode();
2918 	return 0;
2919 }
2920 EXPORT_SYMBOL(drm_dp_mst_topology_mgr_init);
2921 
2922 /**
2923  * drm_dp_mst_topology_mgr_destroy() - destroy topology manager.
2924  * @mgr: manager to destroy
2925  */
drm_dp_mst_topology_mgr_destroy(struct drm_dp_mst_topology_mgr * mgr)2926 void drm_dp_mst_topology_mgr_destroy(struct drm_dp_mst_topology_mgr *mgr)
2927 {
2928 	flush_work(&mgr->work);
2929 	flush_work(&mgr->destroy_connector_work);
2930 	mutex_lock(&mgr->payload_lock);
2931 	kfree(mgr->payloads);
2932 	mgr->payloads = NULL;
2933 	kfree(mgr->proposed_vcpis);
2934 	mgr->proposed_vcpis = NULL;
2935 	mutex_unlock(&mgr->payload_lock);
2936 	mgr->dev = NULL;
2937 	mgr->aux = NULL;
2938 }
2939 EXPORT_SYMBOL(drm_dp_mst_topology_mgr_destroy);
2940 
2941 /* I2C device */
drm_dp_mst_i2c_xfer(struct i2c_adapter * adapter,struct i2c_msg * msgs,int num)2942 static int drm_dp_mst_i2c_xfer(struct i2c_adapter *adapter, struct i2c_msg *msgs,
2943 			       int num)
2944 {
2945 	struct drm_dp_aux *aux = adapter->algo_data;
2946 	struct drm_dp_mst_port *port = container_of(aux, struct drm_dp_mst_port, aux);
2947 	struct drm_dp_mst_branch *mstb;
2948 	struct drm_dp_mst_topology_mgr *mgr = port->mgr;
2949 	unsigned int i;
2950 	bool reading = false;
2951 	struct drm_dp_sideband_msg_req_body msg;
2952 	struct drm_dp_sideband_msg_tx *txmsg = NULL;
2953 	int ret;
2954 
2955 	mstb = drm_dp_get_validated_mstb_ref(mgr, port->parent);
2956 	if (!mstb)
2957 		return -EREMOTEIO;
2958 
2959 	/* construct i2c msg */
2960 	/* see if last msg is a read */
2961 	if (msgs[num - 1].flags & I2C_M_RD)
2962 		reading = true;
2963 
2964 	if (!reading || (num - 1 > DP_REMOTE_I2C_READ_MAX_TRANSACTIONS)) {
2965 		DRM_DEBUG_KMS("Unsupported I2C transaction for MST device\n");
2966 		ret = -EIO;
2967 		goto out;
2968 	}
2969 
2970 	memset(&msg, 0, sizeof(msg));
2971 	msg.req_type = DP_REMOTE_I2C_READ;
2972 	msg.u.i2c_read.num_transactions = num - 1;
2973 	msg.u.i2c_read.port_number = port->port_num;
2974 	for (i = 0; i < num - 1; i++) {
2975 		msg.u.i2c_read.transactions[i].i2c_dev_id = msgs[i].addr;
2976 		msg.u.i2c_read.transactions[i].num_bytes = msgs[i].len;
2977 		msg.u.i2c_read.transactions[i].bytes = msgs[i].buf;
2978 	}
2979 	msg.u.i2c_read.read_i2c_device_id = msgs[num - 1].addr;
2980 	msg.u.i2c_read.num_bytes_read = msgs[num - 1].len;
2981 
2982 	txmsg = kzalloc(sizeof(*txmsg), GFP_KERNEL);
2983 	if (!txmsg) {
2984 		ret = -ENOMEM;
2985 		goto out;
2986 	}
2987 
2988 	txmsg->dst = mstb;
2989 	drm_dp_encode_sideband_req(&msg, txmsg);
2990 
2991 	drm_dp_queue_down_tx(mgr, txmsg);
2992 
2993 	ret = drm_dp_mst_wait_tx_reply(mstb, txmsg);
2994 	if (ret > 0) {
2995 
2996 		if (txmsg->reply.reply_type == 1) { /* got a NAK back */
2997 			ret = -EREMOTEIO;
2998 			goto out;
2999 		}
3000 		if (txmsg->reply.u.remote_i2c_read_ack.num_bytes != msgs[num - 1].len) {
3001 			ret = -EIO;
3002 			goto out;
3003 		}
3004 		memcpy(msgs[num - 1].buf, txmsg->reply.u.remote_i2c_read_ack.bytes, msgs[num - 1].len);
3005 		ret = num;
3006 	}
3007 out:
3008 	kfree(txmsg);
3009 	drm_dp_put_mst_branch_device(mstb);
3010 	return ret;
3011 }
3012 
drm_dp_mst_i2c_functionality(struct i2c_adapter * adapter)3013 static u32 drm_dp_mst_i2c_functionality(struct i2c_adapter *adapter)
3014 {
3015 	return I2C_FUNC_I2C | I2C_FUNC_SMBUS_EMUL |
3016 	       I2C_FUNC_SMBUS_READ_BLOCK_DATA |
3017 	       I2C_FUNC_SMBUS_BLOCK_PROC_CALL |
3018 	       I2C_FUNC_10BIT_ADDR;
3019 }
3020 
3021 static const struct i2c_algorithm drm_dp_mst_i2c_algo = {
3022 	.functionality = drm_dp_mst_i2c_functionality,
3023 	.master_xfer = drm_dp_mst_i2c_xfer,
3024 };
3025 
3026 /**
3027  * drm_dp_mst_register_i2c_bus() - register an I2C adapter for I2C-over-AUX
3028  * @aux: DisplayPort AUX channel
3029  *
3030  * Returns 0 on success or a negative error code on failure.
3031  */
drm_dp_mst_register_i2c_bus(struct drm_dp_aux * aux)3032 static int drm_dp_mst_register_i2c_bus(struct drm_dp_aux *aux)
3033 {
3034 	aux->ddc.algo = &drm_dp_mst_i2c_algo;
3035 	aux->ddc.algo_data = aux;
3036 	aux->ddc.retries = 3;
3037 
3038 	aux->ddc.class = I2C_CLASS_DDC;
3039 	aux->ddc.owner = THIS_MODULE;
3040 	aux->ddc.dev.parent = aux->dev;
3041 	aux->ddc.dev.of_node = aux->dev->of_node;
3042 
3043 	strlcpy(aux->ddc.name, aux->name ? aux->name : dev_name(aux->dev),
3044 		sizeof(aux->ddc.name));
3045 
3046 	return i2c_add_adapter(&aux->ddc);
3047 }
3048 
3049 /**
3050  * drm_dp_mst_unregister_i2c_bus() - unregister an I2C-over-AUX adapter
3051  * @aux: DisplayPort AUX channel
3052  */
drm_dp_mst_unregister_i2c_bus(struct drm_dp_aux * aux)3053 static void drm_dp_mst_unregister_i2c_bus(struct drm_dp_aux *aux)
3054 {
3055 	i2c_del_adapter(&aux->ddc);
3056 }
3057