xref: /linux/drivers/gpu/drm/xe/xe_gsc_proxy.c (revision ea34704d6ad7225421cc3543906deacae35a6ea2)
1 // SPDX-License-Identifier: MIT
2 /*
3  * Copyright © 2023 Intel Corporation
4  */
5 
6 #include "xe_gsc_proxy.h"
7 
8 #include <linux/component.h>
9 #include <linux/delay.h>
10 
11 #include <drm/drm_managed.h>
12 #include <drm/intel/i915_component.h>
13 #include <drm/intel/i915_gsc_proxy_mei_interface.h>
14 
15 #include "abi/gsc_proxy_commands_abi.h"
16 #include "regs/xe_gsc_regs.h"
17 #include "xe_bo.h"
18 #include "xe_force_wake.h"
19 #include "xe_gsc.h"
20 #include "xe_gsc_submit.h"
21 #include "xe_gt.h"
22 #include "xe_gt_printk.h"
23 #include "xe_map.h"
24 #include "xe_mmio.h"
25 #include "xe_pm.h"
26 
27 /*
28  * GSC proxy:
29  * The GSC uC needs to communicate with the CSME to perform certain operations.
30  * Since the GSC can't perform this communication directly on platforms where it
31  * is integrated in GT, the graphics driver needs to transfer the messages from
32  * GSC to CSME and back. The proxy flow must be manually started after the GSC
33  * is loaded to signal to GSC that we're ready to handle its messages and allow
34  * it to query its init data from CSME; GSC will then trigger an HECI2 interrupt
35  * if it needs to send messages to CSME again.
36  * The proxy flow is as follow:
37  * 1 - Xe submits a request to GSC asking for the message to CSME
38  * 2 - GSC replies with the proxy header + payload for CSME
39  * 3 - Xe sends the reply from GSC as-is to CSME via the mei proxy component
40  * 4 - CSME replies with the proxy header + payload for GSC
41  * 5 - Xe submits a request to GSC with the reply from CSME
42  * 6 - GSC replies either with a new header + payload (same as step 2, so we
43  *     restart from there) or with an end message.
44  */
45 
46 /*
47  * The component should load quite quickly in most cases, but it could take
48  * a bit. Using a very big timeout just to cover the worst case scenario
49  */
50 #define GSC_PROXY_INIT_TIMEOUT_MS 20000
51 
52 /* shorthand define for code compactness */
53 #define PROXY_HDR_SIZE (sizeof(struct xe_gsc_proxy_header))
54 
55 /* the protocol supports up to 32K in each direction */
56 #define GSC_PROXY_BUFFER_SIZE SZ_32K
57 #define GSC_PROXY_CHANNEL_SIZE (GSC_PROXY_BUFFER_SIZE * 2)
58 
59 static struct xe_gt *
gsc_to_gt(struct xe_gsc * gsc)60 gsc_to_gt(struct xe_gsc *gsc)
61 {
62 	return container_of(gsc, struct xe_gt, uc.gsc);
63 }
64 
xe_gsc_proxy_init_done(struct xe_gsc * gsc)65 bool xe_gsc_proxy_init_done(struct xe_gsc *gsc)
66 {
67 	struct xe_gt *gt = gsc_to_gt(gsc);
68 	u32 fwsts1 = xe_mmio_read32(&gt->mmio, HECI_FWSTS1(MTL_GSC_HECI1_BASE));
69 
70 	return REG_FIELD_GET(HECI1_FWSTS1_CURRENT_STATE, fwsts1) ==
71 	       HECI1_FWSTS1_PROXY_STATE_NORMAL;
72 }
73 
xe_gsc_wait_for_proxy_init_done(struct xe_gsc * gsc)74 int xe_gsc_wait_for_proxy_init_done(struct xe_gsc *gsc)
75 {
76 	struct xe_gt *gt = gsc_to_gt(gsc);
77 
78 	/* Proxy init can take up to 500ms, so wait double that for safety */
79 	return xe_mmio_wait32(&gt->mmio, HECI_FWSTS1(MTL_GSC_HECI1_BASE),
80 			      HECI1_FWSTS1_CURRENT_STATE,
81 			      HECI1_FWSTS1_PROXY_STATE_NORMAL,
82 			      USEC_PER_SEC, NULL, false);
83 }
84 
__gsc_proxy_irq_rmw(struct xe_gsc * gsc,u32 clr,u32 set)85 static void __gsc_proxy_irq_rmw(struct xe_gsc *gsc, u32 clr, u32 set)
86 {
87 	struct xe_gt *gt = gsc_to_gt(gsc);
88 
89 	/* make sure we never accidentally write the RST bit */
90 	clr |= HECI_H_CSR_RST;
91 
92 	xe_mmio_rmw32(&gt->mmio, HECI_H_CSR(MTL_GSC_HECI2_BASE), clr, set);
93 }
94 
gsc_proxy_irq_clear(struct xe_gsc * gsc)95 static void gsc_proxy_irq_clear(struct xe_gsc *gsc)
96 {
97 	/* The status bit is cleared by writing to it */
98 	__gsc_proxy_irq_rmw(gsc, 0, HECI_H_CSR_IS);
99 }
100 
gsc_proxy_irq_toggle(struct xe_gsc * gsc,bool enabled)101 static void gsc_proxy_irq_toggle(struct xe_gsc *gsc, bool enabled)
102 {
103 	u32 set = enabled ? HECI_H_CSR_IE : 0;
104 	u32 clr = enabled ? 0 : HECI_H_CSR_IE;
105 
106 	__gsc_proxy_irq_rmw(gsc, clr, set);
107 }
108 
proxy_send_to_csme(struct xe_gsc * gsc,u32 size)109 static int proxy_send_to_csme(struct xe_gsc *gsc, u32 size)
110 {
111 	struct xe_gt *gt = gsc_to_gt(gsc);
112 	struct i915_gsc_proxy_component *comp = gsc->proxy.component;
113 	int ret;
114 
115 	ret = comp->ops->send(comp->mei_dev, gsc->proxy.to_csme, size);
116 	if (ret < 0) {
117 		xe_gt_err(gt, "Failed to send CSME proxy message\n");
118 		return ret;
119 	}
120 
121 	ret = comp->ops->recv(comp->mei_dev, gsc->proxy.from_csme, GSC_PROXY_BUFFER_SIZE);
122 	if (ret < 0) {
123 		xe_gt_err(gt, "Failed to receive CSME proxy message\n");
124 		return ret;
125 	}
126 
127 	return ret;
128 }
129 
proxy_send_to_gsc(struct xe_gsc * gsc,u32 size)130 static int proxy_send_to_gsc(struct xe_gsc *gsc, u32 size)
131 {
132 	struct xe_gt *gt = gsc_to_gt(gsc);
133 	u64 addr_in = xe_bo_ggtt_addr(gsc->proxy.bo);
134 	u64 addr_out = addr_in + GSC_PROXY_BUFFER_SIZE;
135 	int err;
136 
137 	/* the message must contain at least the gsc and proxy headers */
138 	if (size > GSC_PROXY_BUFFER_SIZE) {
139 		xe_gt_err(gt, "Invalid GSC proxy message size: %u\n", size);
140 		return -EINVAL;
141 	}
142 
143 	err = xe_gsc_pkt_submit_kernel(gsc, addr_in, size,
144 				       addr_out, GSC_PROXY_BUFFER_SIZE);
145 	if (err) {
146 		xe_gt_err(gt, "Failed to submit gsc proxy rq (%pe)\n", ERR_PTR(err));
147 		return err;
148 	}
149 
150 	return 0;
151 }
152 
validate_proxy_header(struct xe_gt * gt,struct xe_gsc_proxy_header * header,u32 source,u32 dest,u32 max_size)153 static int validate_proxy_header(struct xe_gt *gt,
154 				 struct xe_gsc_proxy_header *header,
155 				 u32 source, u32 dest, u32 max_size)
156 {
157 	u32 type = FIELD_GET(GSC_PROXY_TYPE, header->hdr);
158 	u32 length = FIELD_GET(GSC_PROXY_PAYLOAD_LENGTH, header->hdr);
159 	int ret = 0;
160 
161 	if (header->destination != dest || header->source != source) {
162 		ret = -ENOEXEC;
163 		goto out;
164 	}
165 
166 	if (length + PROXY_HDR_SIZE > max_size) {
167 		ret = -E2BIG;
168 		goto out;
169 	}
170 
171 	/* We only care about the status if this is a message for the driver */
172 	if (dest == GSC_PROXY_ADDRESSING_KMD && header->status != 0) {
173 		ret = -EIO;
174 		goto out;
175 	}
176 
177 	switch (type) {
178 	case GSC_PROXY_MSG_TYPE_PROXY_PAYLOAD:
179 		if (length > 0)
180 			break;
181 		fallthrough;
182 	case GSC_PROXY_MSG_TYPE_PROXY_INVALID:
183 		ret = -EIO;
184 		break;
185 	default:
186 		break;
187 	}
188 
189 out:
190 	if (ret)
191 		xe_gt_err(gt,
192 			  "GSC proxy error: s=0x%x[0x%x], d=0x%x[0x%x], t=%u, l=0x%x, st=0x%x\n",
193 			  header->source, source, header->destination, dest,
194 			  type, length, header->status);
195 
196 	return ret;
197 }
198 
199 #define proxy_header_wr(xe_, map_, offset_, field_, val_) \
200 	xe_map_wr_field(xe_, map_, offset_, struct xe_gsc_proxy_header, field_, val_)
201 
202 #define proxy_header_rd(xe_, map_, offset_, field_) \
203 	xe_map_rd_field(xe_, map_, offset_, struct xe_gsc_proxy_header, field_)
204 
emit_proxy_header(struct xe_device * xe,struct iosys_map * map,u32 offset)205 static u32 emit_proxy_header(struct xe_device *xe, struct iosys_map *map, u32 offset)
206 {
207 	xe_map_memset(xe, map, offset, 0, PROXY_HDR_SIZE);
208 
209 	proxy_header_wr(xe, map, offset, hdr,
210 			FIELD_PREP(GSC_PROXY_TYPE, GSC_PROXY_MSG_TYPE_PROXY_QUERY) |
211 			FIELD_PREP(GSC_PROXY_PAYLOAD_LENGTH, 0));
212 
213 	proxy_header_wr(xe, map, offset, source, GSC_PROXY_ADDRESSING_KMD);
214 	proxy_header_wr(xe, map, offset, destination, GSC_PROXY_ADDRESSING_GSC);
215 	proxy_header_wr(xe, map, offset, status, 0);
216 
217 	return offset + PROXY_HDR_SIZE;
218 }
219 
proxy_query(struct xe_gsc * gsc)220 static int proxy_query(struct xe_gsc *gsc)
221 {
222 	struct xe_gt *gt = gsc_to_gt(gsc);
223 	struct xe_device *xe = gt_to_xe(gt);
224 	struct xe_gsc_proxy_header *to_csme_hdr = gsc->proxy.to_csme;
225 	void *to_csme_payload = gsc->proxy.to_csme + PROXY_HDR_SIZE;
226 	u32 wr_offset;
227 	u32 reply_offset;
228 	u32 size;
229 	int ret;
230 
231 	wr_offset = xe_gsc_emit_header(xe, &gsc->proxy.to_gsc, 0,
232 				       HECI_MEADDRESS_PROXY, 0, PROXY_HDR_SIZE);
233 	wr_offset = emit_proxy_header(xe, &gsc->proxy.to_gsc, wr_offset);
234 
235 	size = wr_offset;
236 
237 	while (1) {
238 		/*
239 		 * Poison the GSC response header space to make sure we don't
240 		 * read a stale reply.
241 		 */
242 		xe_gsc_poison_header(xe, &gsc->proxy.from_gsc, 0);
243 
244 		/* send proxy message to GSC */
245 		ret = proxy_send_to_gsc(gsc, size);
246 		if (ret)
247 			goto proxy_error;
248 
249 		/* check the reply from GSC */
250 		ret = xe_gsc_read_out_header(xe, &gsc->proxy.from_gsc, 0,
251 					     PROXY_HDR_SIZE, &reply_offset);
252 		if (ret) {
253 			xe_gt_err(gt, "Invalid gsc header in proxy reply (%pe)\n",
254 				  ERR_PTR(ret));
255 			goto proxy_error;
256 		}
257 
258 		/* copy the proxy header reply from GSC */
259 		xe_map_memcpy_from(xe, to_csme_hdr, &gsc->proxy.from_gsc,
260 				   reply_offset, PROXY_HDR_SIZE);
261 
262 		/* Check the status and stop if this was the last message */
263 		if (FIELD_GET(GSC_PROXY_TYPE, to_csme_hdr->hdr) == GSC_PROXY_MSG_TYPE_PROXY_END) {
264 			ret = validate_proxy_header(gt, to_csme_hdr,
265 						    GSC_PROXY_ADDRESSING_GSC,
266 						    GSC_PROXY_ADDRESSING_KMD,
267 						    GSC_PROXY_BUFFER_SIZE - reply_offset);
268 			break;
269 		}
270 
271 		/* make sure the GSC-to-CSME proxy header is sane */
272 		ret = validate_proxy_header(gt, to_csme_hdr,
273 					    GSC_PROXY_ADDRESSING_GSC,
274 					    GSC_PROXY_ADDRESSING_CSME,
275 					    GSC_PROXY_BUFFER_SIZE - reply_offset);
276 		if (ret) {
277 			xe_gt_err(gt, "invalid GSC to CSME proxy header! (%pe)\n",
278 				  ERR_PTR(ret));
279 			goto proxy_error;
280 		}
281 
282 		/* copy the rest of the message */
283 		size = FIELD_GET(GSC_PROXY_PAYLOAD_LENGTH, to_csme_hdr->hdr);
284 		xe_map_memcpy_from(xe, to_csme_payload, &gsc->proxy.from_gsc,
285 				   reply_offset + PROXY_HDR_SIZE, size);
286 
287 		/* send the GSC message to the CSME */
288 		ret = proxy_send_to_csme(gsc, size + PROXY_HDR_SIZE);
289 		if (ret < 0)
290 			goto proxy_error;
291 
292 		/* reply size from CSME, including the proxy header */
293 		size = ret;
294 		if (size < PROXY_HDR_SIZE) {
295 			xe_gt_err(gt, "CSME to GSC proxy msg too small: 0x%x\n", size);
296 			ret = -EPROTO;
297 			goto proxy_error;
298 		}
299 
300 		/* make sure the CSME-to-GSC proxy header is sane */
301 		ret = validate_proxy_header(gt, gsc->proxy.from_csme,
302 					    GSC_PROXY_ADDRESSING_CSME,
303 					    GSC_PROXY_ADDRESSING_GSC,
304 					    GSC_PROXY_BUFFER_SIZE - reply_offset);
305 		if (ret) {
306 			xe_gt_err(gt, "invalid CSME to GSC proxy header! %d\n", ret);
307 			goto proxy_error;
308 		}
309 
310 		/* Emit a new header for sending the reply to the GSC */
311 		wr_offset = xe_gsc_emit_header(xe, &gsc->proxy.to_gsc, 0,
312 					       HECI_MEADDRESS_PROXY, 0, size);
313 
314 		/* copy the CSME reply and update the total msg size to include the GSC header */
315 		xe_map_memcpy_to(xe, &gsc->proxy.to_gsc, wr_offset, gsc->proxy.from_csme, size);
316 
317 		size += wr_offset;
318 	}
319 
320 proxy_error:
321 	return ret < 0 ? ret : 0;
322 }
323 
xe_gsc_proxy_request_handler(struct xe_gsc * gsc)324 int xe_gsc_proxy_request_handler(struct xe_gsc *gsc)
325 {
326 	struct xe_gt *gt = gsc_to_gt(gsc);
327 	int slept;
328 	int err;
329 
330 	if (!gsc->proxy.component_added)
331 		return -ENODEV;
332 
333 	/* when GSC is loaded, we can queue this before the component is bound */
334 	for (slept = 0; slept < GSC_PROXY_INIT_TIMEOUT_MS; slept += 100) {
335 		if (gsc->proxy.component)
336 			break;
337 
338 		msleep(100);
339 	}
340 
341 	mutex_lock(&gsc->proxy.mutex);
342 	if (!gsc->proxy.component) {
343 		xe_gt_err(gt, "GSC proxy component not bound!\n");
344 		err = -EIO;
345 	} else {
346 		/*
347 		 * clear the pending interrupt and allow new proxy requests to
348 		 * be generated while we handle the current one
349 		 */
350 		gsc_proxy_irq_clear(gsc);
351 		err = proxy_query(gsc);
352 	}
353 	mutex_unlock(&gsc->proxy.mutex);
354 	return err;
355 }
356 
xe_gsc_proxy_irq_handler(struct xe_gsc * gsc,u32 iir)357 void xe_gsc_proxy_irq_handler(struct xe_gsc *gsc, u32 iir)
358 {
359 	struct xe_gt *gt = gsc_to_gt(gsc);
360 
361 	if (unlikely(!iir))
362 		return;
363 
364 	if (!gsc->proxy.component) {
365 		xe_gt_err(gt, "GSC proxy irq received without the component being bound!\n");
366 		return;
367 	}
368 
369 	spin_lock(&gsc->lock);
370 	gsc->work_actions |= GSC_ACTION_SW_PROXY;
371 	spin_unlock(&gsc->lock);
372 
373 	queue_work(gsc->wq, &gsc->work);
374 }
375 
xe_gsc_proxy_component_bind(struct device * xe_kdev,struct device * mei_kdev,void * data)376 static int xe_gsc_proxy_component_bind(struct device *xe_kdev,
377 				       struct device *mei_kdev, void *data)
378 {
379 	struct xe_device *xe = kdev_to_xe_device(xe_kdev);
380 	struct xe_gt *gt = xe->tiles[0].media_gt;
381 	struct xe_gsc *gsc = &gt->uc.gsc;
382 
383 	mutex_lock(&gsc->proxy.mutex);
384 	gsc->proxy.component = data;
385 	gsc->proxy.component->mei_dev = mei_kdev;
386 	mutex_unlock(&gsc->proxy.mutex);
387 
388 	return 0;
389 }
390 
xe_gsc_proxy_component_unbind(struct device * xe_kdev,struct device * mei_kdev,void * data)391 static void xe_gsc_proxy_component_unbind(struct device *xe_kdev,
392 					  struct device *mei_kdev, void *data)
393 {
394 	struct xe_device *xe = kdev_to_xe_device(xe_kdev);
395 	struct xe_gt *gt = xe->tiles[0].media_gt;
396 	struct xe_gsc *gsc = &gt->uc.gsc;
397 
398 	xe_gsc_wait_for_worker_completion(gsc);
399 
400 	mutex_lock(&gsc->proxy.mutex);
401 	gsc->proxy.component = NULL;
402 	mutex_unlock(&gsc->proxy.mutex);
403 }
404 
405 static const struct component_ops xe_gsc_proxy_component_ops = {
406 	.bind   = xe_gsc_proxy_component_bind,
407 	.unbind = xe_gsc_proxy_component_unbind,
408 };
409 
proxy_channel_alloc(struct xe_gsc * gsc)410 static int proxy_channel_alloc(struct xe_gsc *gsc)
411 {
412 	struct xe_gt *gt = gsc_to_gt(gsc);
413 	struct xe_tile *tile = gt_to_tile(gt);
414 	struct xe_device *xe = gt_to_xe(gt);
415 	struct xe_bo *bo;
416 	void *csme;
417 
418 	csme = drmm_kzalloc(&xe->drm, GSC_PROXY_CHANNEL_SIZE, GFP_KERNEL);
419 	if (!csme)
420 		return -ENOMEM;
421 
422 	bo = xe_managed_bo_create_pin_map(xe, tile, GSC_PROXY_CHANNEL_SIZE,
423 					  XE_BO_FLAG_SYSTEM |
424 					  XE_BO_FLAG_GGTT);
425 	if (IS_ERR(bo))
426 		return PTR_ERR(bo);
427 
428 	gsc->proxy.bo = bo;
429 	gsc->proxy.to_gsc = IOSYS_MAP_INIT_OFFSET(&bo->vmap, 0);
430 	gsc->proxy.from_gsc = IOSYS_MAP_INIT_OFFSET(&bo->vmap, GSC_PROXY_BUFFER_SIZE);
431 	gsc->proxy.to_csme = csme;
432 	gsc->proxy.from_csme = csme + GSC_PROXY_BUFFER_SIZE;
433 
434 	return 0;
435 }
436 
xe_gsc_proxy_remove(void * arg)437 static void xe_gsc_proxy_remove(void *arg)
438 {
439 	struct xe_gsc *gsc = arg;
440 	struct xe_gt *gt = gsc_to_gt(gsc);
441 	struct xe_device *xe = gt_to_xe(gt);
442 	unsigned int fw_ref = 0;
443 
444 	if (!gsc->proxy.component_added)
445 		return;
446 
447 	/* disable HECI2 IRQs */
448 	xe_pm_runtime_get(xe);
449 	fw_ref = xe_force_wake_get(gt_to_fw(gt), XE_FW_GSC);
450 	if (!fw_ref)
451 		xe_gt_err(gt, "failed to get forcewake to disable GSC interrupts\n");
452 
453 	/* try do disable irq even if forcewake failed */
454 	gsc_proxy_irq_toggle(gsc, false);
455 
456 	xe_force_wake_put(gt_to_fw(gt), fw_ref);
457 	xe_pm_runtime_put(xe);
458 
459 	xe_gsc_wait_for_worker_completion(gsc);
460 
461 	component_del(xe->drm.dev, &xe_gsc_proxy_component_ops);
462 	gsc->proxy.component_added = false;
463 }
464 
465 /**
466  * xe_gsc_proxy_init() - init objects and MEI component required by GSC proxy
467  * @gsc: the GSC uC
468  *
469  * Return: 0 if the initialization was successful, a negative errno otherwise.
470  */
xe_gsc_proxy_init(struct xe_gsc * gsc)471 int xe_gsc_proxy_init(struct xe_gsc *gsc)
472 {
473 	int err;
474 	struct xe_gt *gt = gsc_to_gt(gsc);
475 	struct xe_tile *tile = gt_to_tile(gt);
476 	struct xe_device *xe = tile_to_xe(tile);
477 
478 	mutex_init(&gsc->proxy.mutex);
479 
480 	if (!IS_ENABLED(CONFIG_INTEL_MEI_GSC_PROXY)) {
481 		xe_gt_info(gt, "can't init GSC proxy due to missing mei component\n");
482 		return -ENODEV;
483 	}
484 
485 	/* no multi-tile devices with this feature yet */
486 	if (tile->id > 0) {
487 		xe_gt_err(gt, "unexpected GSC proxy init on tile %u\n", tile->id);
488 		return -EINVAL;
489 	}
490 
491 	err = proxy_channel_alloc(gsc);
492 	if (err)
493 		return err;
494 
495 	err = component_add_typed(xe->drm.dev, &xe_gsc_proxy_component_ops,
496 				  I915_COMPONENT_GSC_PROXY);
497 	if (err < 0) {
498 		xe_gt_err(gt, "Failed to add GSC_PROXY component (%pe)\n", ERR_PTR(err));
499 		return err;
500 	}
501 
502 	gsc->proxy.component_added = true;
503 
504 	return devm_add_action_or_reset(xe->drm.dev, xe_gsc_proxy_remove, gsc);
505 }
506 
507 /**
508  * xe_gsc_proxy_start() - start the proxy by submitting the first request
509  * @gsc: the GSC uC
510  *
511  * Return: 0 if the proxy are now enabled, a negative errno otherwise.
512  */
xe_gsc_proxy_start(struct xe_gsc * gsc)513 int xe_gsc_proxy_start(struct xe_gsc *gsc)
514 {
515 	int err;
516 
517 	/* enable the proxy interrupt in the GSC shim layer */
518 	gsc_proxy_irq_toggle(gsc, true);
519 
520 	/*
521 	 * The handling of the first proxy request must be manually triggered to
522 	 * notify the GSC that we're ready to support the proxy flow.
523 	 */
524 	err = xe_gsc_proxy_request_handler(gsc);
525 	if (err)
526 		return err;
527 
528 	if (!xe_gsc_proxy_init_done(gsc)) {
529 		xe_gt_err(gsc_to_gt(gsc), "GSC FW reports proxy init not completed\n");
530 		return -EIO;
531 	}
532 
533 	return 0;
534 }
535