xref: /linux/drivers/gpu/drm/amd/amdgpu/psp_v13_0.c (revision 86fa0b9830a9b114952d2d8766a3fb7c6c7922be)
1 /*
2  * Copyright 2020 Advanced Micro Devices, Inc.
3  *
4  * Permission is hereby granted, free of charge, to any person obtaining a
5  * copy of this software and associated documentation files (the "Software"),
6  * to deal in the Software without restriction, including without limitation
7  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8  * and/or sell copies of the Software, and to permit persons to whom the
9  * Software is furnished to do so, subject to the following conditions:
10  *
11  * The above copyright notice and this permission notice shall be included in
12  * all copies or substantial portions of the Software.
13  *
14  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
17  * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
18  * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19  * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20  * OTHER DEALINGS IN THE SOFTWARE.
21  *
22  */
23 #include <drm/drm_drv.h>
24 #include <linux/vmalloc.h>
25 #include "amdgpu.h"
26 #include "amdgpu_psp.h"
27 #include "amdgpu_ucode.h"
28 #include "soc15_common.h"
29 #include "psp_v13_0.h"
30 #include "amdgpu_ras.h"
31 
32 #include "mp/mp_13_0_2_offset.h"
33 #include "mp/mp_13_0_2_sh_mask.h"
34 
35 MODULE_FIRMWARE("amdgpu/aldebaran_sos.bin");
36 MODULE_FIRMWARE("amdgpu/aldebaran_ta.bin");
37 MODULE_FIRMWARE("amdgpu/aldebaran_cap.bin");
38 MODULE_FIRMWARE("amdgpu/yellow_carp_toc.bin");
39 MODULE_FIRMWARE("amdgpu/yellow_carp_ta.bin");
40 MODULE_FIRMWARE("amdgpu/psp_13_0_5_toc.bin");
41 MODULE_FIRMWARE("amdgpu/psp_13_0_5_ta.bin");
42 MODULE_FIRMWARE("amdgpu/psp_13_0_8_toc.bin");
43 MODULE_FIRMWARE("amdgpu/psp_13_0_8_ta.bin");
44 MODULE_FIRMWARE("amdgpu/psp_13_0_0_sos.bin");
45 MODULE_FIRMWARE("amdgpu/psp_13_0_0_sos_kicker.bin");
46 MODULE_FIRMWARE("amdgpu/psp_13_0_0_ta.bin");
47 MODULE_FIRMWARE("amdgpu/psp_13_0_0_ta_kicker.bin");
48 MODULE_FIRMWARE("amdgpu/psp_13_0_7_sos.bin");
49 MODULE_FIRMWARE("amdgpu/psp_13_0_7_ta.bin");
50 MODULE_FIRMWARE("amdgpu/psp_13_0_10_sos.bin");
51 MODULE_FIRMWARE("amdgpu/psp_13_0_10_ta.bin");
52 MODULE_FIRMWARE("amdgpu/psp_13_0_11_toc.bin");
53 MODULE_FIRMWARE("amdgpu/psp_13_0_11_ta.bin");
54 MODULE_FIRMWARE("amdgpu/psp_13_0_6_sos.bin");
55 MODULE_FIRMWARE("amdgpu/psp_13_0_6_ta.bin");
56 MODULE_FIRMWARE("amdgpu/psp_13_0_12_sos.bin");
57 MODULE_FIRMWARE("amdgpu/psp_13_0_12_ta.bin");
58 MODULE_FIRMWARE("amdgpu/psp_13_0_14_sos.bin");
59 MODULE_FIRMWARE("amdgpu/psp_13_0_14_ta.bin");
60 MODULE_FIRMWARE("amdgpu/psp_14_0_0_toc.bin");
61 MODULE_FIRMWARE("amdgpu/psp_14_0_0_ta.bin");
62 MODULE_FIRMWARE("amdgpu/psp_14_0_1_toc.bin");
63 MODULE_FIRMWARE("amdgpu/psp_14_0_1_ta.bin");
64 MODULE_FIRMWARE("amdgpu/psp_14_0_4_toc.bin");
65 MODULE_FIRMWARE("amdgpu/psp_14_0_4_ta.bin");
66 
67 /* For large FW files the time to complete can be very long */
68 #define USBC_PD_POLLING_LIMIT_S 240
69 
70 /* Read USB-PD from LFB */
71 #define GFX_CMD_USB_PD_USE_LFB 0x480
72 
73 /* Retry times for vmbx ready wait */
74 #define PSP_VMBX_POLLING_LIMIT 3000
75 
76 /* memory training timeout define */
77 #define MEM_TRAIN_SEND_MSG_TIMEOUT_US	3000000
78 
79 #define regMP1_PUB_SCRATCH0	0x3b10090
80 
81 #define PSP13_BL_STATUS_SIZE 100
82 
83 static int psp_v13_0_init_microcode(struct psp_context *psp)
84 {
85 	struct amdgpu_device *adev = psp->adev;
86 	char ucode_prefix[30];
87 	int err = 0;
88 
89 	amdgpu_ucode_ip_version_decode(adev, MP0_HWIP, ucode_prefix, sizeof(ucode_prefix));
90 
91 	switch (amdgpu_ip_version(adev, MP0_HWIP, 0)) {
92 	case IP_VERSION(13, 0, 2):
93 		err = psp_init_sos_microcode(psp, ucode_prefix);
94 		if (err)
95 			return err;
96 		/* It's not necessary to load ras ta on Guest side */
97 		if (!amdgpu_sriov_vf(adev)) {
98 			err = psp_init_ta_microcode(psp, ucode_prefix);
99 			if (err)
100 				return err;
101 		}
102 		break;
103 	case IP_VERSION(13, 0, 1):
104 	case IP_VERSION(13, 0, 3):
105 	case IP_VERSION(13, 0, 5):
106 	case IP_VERSION(13, 0, 8):
107 	case IP_VERSION(13, 0, 11):
108 	case IP_VERSION(14, 0, 0):
109 	case IP_VERSION(14, 0, 1):
110 	case IP_VERSION(14, 0, 4):
111 		err = psp_init_toc_microcode(psp, ucode_prefix);
112 		if (err)
113 			return err;
114 		err = psp_init_ta_microcode(psp, ucode_prefix);
115 		if (err)
116 			return err;
117 		break;
118 	case IP_VERSION(13, 0, 0):
119 	case IP_VERSION(13, 0, 6):
120 	case IP_VERSION(13, 0, 7):
121 	case IP_VERSION(13, 0, 10):
122 	case IP_VERSION(13, 0, 12):
123 	case IP_VERSION(13, 0, 14):
124 		err = psp_init_sos_microcode(psp, ucode_prefix);
125 		if (err)
126 			return err;
127 		/* It's not necessary to load ras ta on Guest side */
128 		err = psp_init_ta_microcode(psp, ucode_prefix);
129 		if (err)
130 			return err;
131 		break;
132 	default:
133 		BUG();
134 	}
135 
136 	return 0;
137 }
138 
139 static bool psp_v13_0_is_sos_alive(struct psp_context *psp)
140 {
141 	struct amdgpu_device *adev = psp->adev;
142 	uint32_t sol_reg;
143 
144 	sol_reg = RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_81);
145 
146 	return sol_reg != 0x0;
147 }
148 
149 static void psp_v13_0_bootloader_print_status(struct psp_context *psp,
150 					      const char *msg)
151 {
152 	struct amdgpu_device *adev = psp->adev;
153 	u32 bl_status_reg;
154 	char bl_status_msg[PSP13_BL_STATUS_SIZE];
155 	int i, at;
156 
157 	if (amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 6) ||
158 	    amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 12) ||
159 	    amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 14)) {
160 		at = 0;
161 		for_each_inst(i, adev->aid_mask) {
162 			bl_status_reg =
163 				(SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_92)
164 				 << 2) +
165 				adev->asic_funcs->encode_ext_smn_addressing(i);
166 			at += snprintf(bl_status_msg + at,
167 				       PSP13_BL_STATUS_SIZE - at,
168 				       " status(%02i): 0x%08x", i,
169 				       RREG32_PCIE_EXT(bl_status_reg));
170 		}
171 		dev_info(adev->dev, "%s - %s", msg, bl_status_msg);
172 	}
173 }
174 
175 static int psp_v13_0_wait_for_vmbx_ready(struct psp_context *psp)
176 {
177 	struct amdgpu_device *adev = psp->adev;
178 	int retry_loop, ret;
179 
180 	for (retry_loop = 0; retry_loop < PSP_VMBX_POLLING_LIMIT; retry_loop++) {
181 		/* Wait for bootloader to signify that is
182 		   ready having bit 31 of C2PMSG_33 set to 1 */
183 		ret = psp_wait_for(
184 			psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_33),
185 			0x80000000, 0xffffffff, false);
186 
187 		if (ret == 0)
188 			break;
189 	}
190 
191 	if (ret)
192 		dev_warn(adev->dev, "Bootloader wait timed out");
193 
194 	return ret;
195 }
196 
197 static int psp_v13_0_wait_for_bootloader(struct psp_context *psp)
198 {
199 	struct amdgpu_device *adev = psp->adev;
200 	int retry_loop, retry_cnt, ret;
201 
202 	retry_cnt =
203 		((amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 6) ||
204 		  amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 12) ||
205 		  amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 14))) ?
206 			PSP_VMBX_POLLING_LIMIT :
207 			10;
208 	/* Wait for bootloader to signify that it is ready having bit 31 of
209 	 * C2PMSG_35 set to 1. All other bits are expected to be cleared.
210 	 * If there is an error in processing command, bits[7:0] will be set.
211 	 * This is applicable for PSP v13.0.6 and newer.
212 	 */
213 	for (retry_loop = 0; retry_loop < retry_cnt; retry_loop++) {
214 		ret = psp_wait_for(
215 			psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_35),
216 			0x80000000, 0xffffffff, false);
217 
218 		if (ret == 0)
219 			return 0;
220 		if (retry_loop && !(retry_loop % 10))
221 			psp_v13_0_bootloader_print_status(
222 				psp, "Waiting for bootloader completion");
223 	}
224 
225 	return ret;
226 }
227 
228 static int psp_v13_0_wait_for_bootloader_steady_state(struct psp_context *psp)
229 {
230 	struct amdgpu_device *adev = psp->adev;
231 	int ret;
232 
233 	if (amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 6) ||
234 	    amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 12) ||
235 	    amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 14)) {
236 		ret = psp_v13_0_wait_for_vmbx_ready(psp);
237 		if (ret)
238 			amdgpu_ras_query_boot_status(adev, 4);
239 
240 		ret = psp_v13_0_wait_for_bootloader(psp);
241 		if (ret)
242 			amdgpu_ras_query_boot_status(adev, 4);
243 
244 		return ret;
245 	}
246 
247 	return 0;
248 }
249 
250 static int psp_v13_0_bootloader_load_component(struct psp_context  	*psp,
251 					       struct psp_bin_desc 	*bin_desc,
252 					       enum psp_bootloader_cmd  bl_cmd)
253 {
254 	int ret;
255 	uint32_t psp_gfxdrv_command_reg = 0;
256 	struct amdgpu_device *adev = psp->adev;
257 
258 	/* Check tOS sign of life register to confirm sys driver and sOS
259 	 * are already been loaded.
260 	 */
261 	if (psp_v13_0_is_sos_alive(psp))
262 		return 0;
263 
264 	ret = psp_v13_0_wait_for_bootloader(psp);
265 	if (ret)
266 		return ret;
267 
268 	memset(psp->fw_pri_buf, 0, PSP_1_MEG);
269 
270 	/* Copy PSP KDB binary to memory */
271 	memcpy(psp->fw_pri_buf, bin_desc->start_addr, bin_desc->size_bytes);
272 
273 	/* Provide the PSP KDB to bootloader */
274 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_36,
275 	       (uint32_t)(psp->fw_pri_mc_addr >> 20));
276 	psp_gfxdrv_command_reg = bl_cmd;
277 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_35,
278 	       psp_gfxdrv_command_reg);
279 
280 	ret = psp_v13_0_wait_for_bootloader(psp);
281 
282 	return ret;
283 }
284 
285 static int psp_v13_0_bootloader_load_kdb(struct psp_context *psp)
286 {
287 	return psp_v13_0_bootloader_load_component(psp, &psp->kdb, PSP_BL__LOAD_KEY_DATABASE);
288 }
289 
290 static int psp_v13_0_bootloader_load_spl(struct psp_context *psp)
291 {
292 	return psp_v13_0_bootloader_load_component(psp, &psp->kdb, PSP_BL__LOAD_TOS_SPL_TABLE);
293 }
294 
295 static int psp_v13_0_bootloader_load_sysdrv(struct psp_context *psp)
296 {
297 	return psp_v13_0_bootloader_load_component(psp, &psp->sys, PSP_BL__LOAD_SYSDRV);
298 }
299 
300 static int psp_v13_0_bootloader_load_soc_drv(struct psp_context *psp)
301 {
302 	return psp_v13_0_bootloader_load_component(psp, &psp->soc_drv, PSP_BL__LOAD_SOCDRV);
303 }
304 
305 static int psp_v13_0_bootloader_load_intf_drv(struct psp_context *psp)
306 {
307 	return psp_v13_0_bootloader_load_component(psp, &psp->intf_drv, PSP_BL__LOAD_INTFDRV);
308 }
309 
310 static int psp_v13_0_bootloader_load_dbg_drv(struct psp_context *psp)
311 {
312 	return psp_v13_0_bootloader_load_component(psp, &psp->dbg_drv, PSP_BL__LOAD_DBGDRV);
313 }
314 
315 static int psp_v13_0_bootloader_load_ras_drv(struct psp_context *psp)
316 {
317 	return psp_v13_0_bootloader_load_component(psp, &psp->ras_drv, PSP_BL__LOAD_RASDRV);
318 }
319 
320 static int psp_v13_0_bootloader_load_spdm_drv(struct psp_context *psp)
321 {
322 	return psp_v13_0_bootloader_load_component(psp, &psp->spdm_drv, PSP_BL__LOAD_SPDMDRV);
323 }
324 
325 static inline void psp_v13_0_init_sos_version(struct psp_context *psp)
326 {
327 	struct amdgpu_device *adev = psp->adev;
328 
329 	psp->sos.fw_version = RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_58);
330 }
331 
332 static int psp_v13_0_bootloader_load_sos(struct psp_context *psp)
333 {
334 	int ret;
335 	unsigned int psp_gfxdrv_command_reg = 0;
336 	struct amdgpu_device *adev = psp->adev;
337 
338 	/* Check sOS sign of life register to confirm sys driver and sOS
339 	 * are already been loaded.
340 	 */
341 	if (psp_v13_0_is_sos_alive(psp)) {
342 		psp_v13_0_init_sos_version(psp);
343 		return 0;
344 	}
345 
346 	ret = psp_v13_0_wait_for_bootloader(psp);
347 	if (ret)
348 		return ret;
349 
350 	memset(psp->fw_pri_buf, 0, PSP_1_MEG);
351 
352 	/* Copy Secure OS binary to PSP memory */
353 	memcpy(psp->fw_pri_buf, psp->sos.start_addr, psp->sos.size_bytes);
354 
355 	/* Provide the PSP secure OS to bootloader */
356 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_36,
357 	       (uint32_t)(psp->fw_pri_mc_addr >> 20));
358 	psp_gfxdrv_command_reg = PSP_BL__LOAD_SOSDRV;
359 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_35,
360 	       psp_gfxdrv_command_reg);
361 
362 	/* there might be handshake issue with hardware which needs delay */
363 	mdelay(20);
364 	ret = psp_wait_for(psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_81),
365 			   RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_81),
366 			   0, true);
367 
368 	if (!ret)
369 		psp_v13_0_init_sos_version(psp);
370 
371 	return ret;
372 }
373 
374 static int psp_v13_0_ring_stop(struct psp_context *psp,
375 			       enum psp_ring_type ring_type)
376 {
377 	int ret = 0;
378 	struct amdgpu_device *adev = psp->adev;
379 
380 	if (amdgpu_sriov_vf(adev)) {
381 		/* Write the ring destroy command*/
382 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_101,
383 			     GFX_CTRL_CMD_ID_DESTROY_GPCOM_RING);
384 		/* there might be handshake issue with hardware which needs delay */
385 		mdelay(20);
386 		/* Wait for response flag (bit 31) */
387 		ret = psp_wait_for(
388 			psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_101),
389 			MBOX_TOS_RESP_FLAG, MBOX_TOS_RESP_MASK, false);
390 	} else {
391 		/* Write the ring destroy command*/
392 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_64,
393 			     GFX_CTRL_CMD_ID_DESTROY_RINGS);
394 		/* there might be handshake issue with hardware which needs delay */
395 		mdelay(20);
396 		/* Wait for response flag (bit 31) */
397 		ret = psp_wait_for(
398 			psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_64),
399 			MBOX_TOS_RESP_FLAG, MBOX_TOS_RESP_MASK, false);
400 	}
401 
402 	return ret;
403 }
404 
405 static int psp_v13_0_ring_create(struct psp_context *psp,
406 				 enum psp_ring_type ring_type)
407 {
408 	int ret = 0;
409 	unsigned int psp_ring_reg = 0;
410 	struct psp_ring *ring = &psp->km_ring;
411 	struct amdgpu_device *adev = psp->adev;
412 
413 	if (amdgpu_sriov_vf(adev)) {
414 		ret = psp_v13_0_ring_stop(psp, ring_type);
415 		if (ret) {
416 			DRM_ERROR("psp_v13_0_ring_stop_sriov failed!\n");
417 			return ret;
418 		}
419 
420 		/* Write low address of the ring to C2PMSG_102 */
421 		psp_ring_reg = lower_32_bits(ring->ring_mem_mc_addr);
422 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_102, psp_ring_reg);
423 		/* Write high address of the ring to C2PMSG_103 */
424 		psp_ring_reg = upper_32_bits(ring->ring_mem_mc_addr);
425 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_103, psp_ring_reg);
426 
427 		/* Write the ring initialization command to C2PMSG_101 */
428 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_101,
429 			     GFX_CTRL_CMD_ID_INIT_GPCOM_RING);
430 
431 		/* there might be handshake issue with hardware which needs delay */
432 		mdelay(20);
433 
434 		/* Wait for response flag (bit 31) in C2PMSG_101 */
435 		ret = psp_wait_for(
436 			psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_101),
437 			MBOX_TOS_RESP_FLAG, MBOX_TOS_RESP_MASK, false);
438 
439 	} else {
440 		/* Wait for sOS ready for ring creation */
441 		ret = psp_wait_for(
442 			psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_64),
443 			MBOX_TOS_READY_FLAG, MBOX_TOS_READY_MASK, false);
444 		if (ret) {
445 			DRM_ERROR("Failed to wait for trust OS ready for ring creation\n");
446 			return ret;
447 		}
448 
449 		/* Write low address of the ring to C2PMSG_69 */
450 		psp_ring_reg = lower_32_bits(ring->ring_mem_mc_addr);
451 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_69, psp_ring_reg);
452 		/* Write high address of the ring to C2PMSG_70 */
453 		psp_ring_reg = upper_32_bits(ring->ring_mem_mc_addr);
454 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_70, psp_ring_reg);
455 		/* Write size of ring to C2PMSG_71 */
456 		psp_ring_reg = ring->ring_size;
457 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_71, psp_ring_reg);
458 		/* Write the ring initialization command to C2PMSG_64 */
459 		psp_ring_reg = ring_type;
460 		psp_ring_reg = psp_ring_reg << 16;
461 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_64, psp_ring_reg);
462 
463 		/* there might be handshake issue with hardware which needs delay */
464 		mdelay(20);
465 
466 		/* Wait for response flag (bit 31) in C2PMSG_64 */
467 		ret = psp_wait_for(
468 			psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_64),
469 			MBOX_TOS_RESP_FLAG, MBOX_TOS_RESP_MASK, false);
470 	}
471 
472 	return ret;
473 }
474 
475 static int psp_v13_0_ring_destroy(struct psp_context *psp,
476 				  enum psp_ring_type ring_type)
477 {
478 	int ret = 0;
479 	struct psp_ring *ring = &psp->km_ring;
480 	struct amdgpu_device *adev = psp->adev;
481 
482 	ret = psp_v13_0_ring_stop(psp, ring_type);
483 	if (ret)
484 		DRM_ERROR("Fail to stop psp ring\n");
485 
486 	amdgpu_bo_free_kernel(&adev->firmware.rbuf,
487 			      &ring->ring_mem_mc_addr,
488 			      (void **)&ring->ring_mem);
489 
490 	return ret;
491 }
492 
493 static uint32_t psp_v13_0_ring_get_wptr(struct psp_context *psp)
494 {
495 	uint32_t data;
496 	struct amdgpu_device *adev = psp->adev;
497 
498 	if (amdgpu_sriov_vf(adev))
499 		data = RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_102);
500 	else
501 		data = RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_67);
502 
503 	return data;
504 }
505 
506 static void psp_v13_0_ring_set_wptr(struct psp_context *psp, uint32_t value)
507 {
508 	struct amdgpu_device *adev = psp->adev;
509 
510 	if (amdgpu_sriov_vf(adev)) {
511 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_102, value);
512 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_101,
513 			     GFX_CTRL_CMD_ID_CONSUME_CMD);
514 	} else
515 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_67, value);
516 }
517 
518 static int psp_v13_0_memory_training_send_msg(struct psp_context *psp, int msg)
519 {
520 	int ret;
521 	int i;
522 	uint32_t data_32;
523 	int max_wait;
524 	struct amdgpu_device *adev = psp->adev;
525 
526 	data_32 = (psp->mem_train_ctx.c2p_train_data_offset >> 20);
527 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_36, data_32);
528 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_35, msg);
529 
530 	max_wait = MEM_TRAIN_SEND_MSG_TIMEOUT_US / adev->usec_timeout;
531 	for (i = 0; i < max_wait; i++) {
532 		ret = psp_wait_for(psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_35),
533 				   0x80000000, 0x80000000, false);
534 		if (ret == 0)
535 			break;
536 	}
537 	if (i < max_wait)
538 		ret = 0;
539 	else
540 		ret = -ETIME;
541 
542 	dev_dbg(adev->dev, "training %s %s, cost %d @ %d ms\n",
543 		  (msg == PSP_BL__DRAM_SHORT_TRAIN) ? "short" : "long",
544 		  (ret == 0) ? "succeed" : "failed",
545 		  i, adev->usec_timeout/1000);
546 	return ret;
547 }
548 
549 
550 static int psp_v13_0_memory_training(struct psp_context *psp, uint32_t ops)
551 {
552 	struct psp_memory_training_context *ctx = &psp->mem_train_ctx;
553 	uint32_t *pcache = (uint32_t *)ctx->sys_cache;
554 	struct amdgpu_device *adev = psp->adev;
555 	uint32_t p2c_header[4];
556 	uint32_t sz;
557 	void *buf;
558 	int ret, idx;
559 
560 	if (ctx->init == PSP_MEM_TRAIN_NOT_SUPPORT) {
561 		dev_dbg(adev->dev, "Memory training is not supported.\n");
562 		return 0;
563 	} else if (ctx->init != PSP_MEM_TRAIN_INIT_SUCCESS) {
564 		dev_err(adev->dev, "Memory training initialization failure.\n");
565 		return -EINVAL;
566 	}
567 
568 	if (psp_v13_0_is_sos_alive(psp)) {
569 		dev_dbg(adev->dev, "SOS is alive, skip memory training.\n");
570 		return 0;
571 	}
572 
573 	amdgpu_device_vram_access(adev, ctx->p2c_train_data_offset, p2c_header, sizeof(p2c_header), false);
574 	dev_dbg(adev->dev, "sys_cache[%08x,%08x,%08x,%08x] p2c_header[%08x,%08x,%08x,%08x]\n",
575 		  pcache[0], pcache[1], pcache[2], pcache[3],
576 		  p2c_header[0], p2c_header[1], p2c_header[2], p2c_header[3]);
577 
578 	if (ops & PSP_MEM_TRAIN_SEND_SHORT_MSG) {
579 		dev_dbg(adev->dev, "Short training depends on restore.\n");
580 		ops |= PSP_MEM_TRAIN_RESTORE;
581 	}
582 
583 	if ((ops & PSP_MEM_TRAIN_RESTORE) &&
584 	    pcache[0] != MEM_TRAIN_SYSTEM_SIGNATURE) {
585 		dev_dbg(adev->dev, "sys_cache[0] is invalid, restore depends on save.\n");
586 		ops |= PSP_MEM_TRAIN_SAVE;
587 	}
588 
589 	if (p2c_header[0] == MEM_TRAIN_SYSTEM_SIGNATURE &&
590 	    !(pcache[0] == MEM_TRAIN_SYSTEM_SIGNATURE &&
591 	      pcache[3] == p2c_header[3])) {
592 		dev_dbg(adev->dev, "sys_cache is invalid or out-of-date, need save training data to sys_cache.\n");
593 		ops |= PSP_MEM_TRAIN_SAVE;
594 	}
595 
596 	if ((ops & PSP_MEM_TRAIN_SAVE) &&
597 	    p2c_header[0] != MEM_TRAIN_SYSTEM_SIGNATURE) {
598 		dev_dbg(adev->dev, "p2c_header[0] is invalid, save depends on long training.\n");
599 		ops |= PSP_MEM_TRAIN_SEND_LONG_MSG;
600 	}
601 
602 	if (ops & PSP_MEM_TRAIN_SEND_LONG_MSG) {
603 		ops &= ~PSP_MEM_TRAIN_SEND_SHORT_MSG;
604 		ops |= PSP_MEM_TRAIN_SAVE;
605 	}
606 
607 	dev_dbg(adev->dev, "Memory training ops:%x.\n", ops);
608 
609 	if (ops & PSP_MEM_TRAIN_SEND_LONG_MSG) {
610 		/*
611 		 * Long training will encroach a certain amount on the bottom of VRAM;
612 		 * save the content from the bottom of VRAM to system memory
613 		 * before training, and restore it after training to avoid
614 		 * VRAM corruption.
615 		 */
616 		sz = BIST_MEM_TRAINING_ENCROACHED_SIZE;
617 
618 		if (adev->gmc.visible_vram_size < sz || !adev->mman.aper_base_kaddr) {
619 			dev_err(adev->dev, "visible_vram_size %llx or aper_base_kaddr %p is not initialized.\n",
620 				  adev->gmc.visible_vram_size,
621 				  adev->mman.aper_base_kaddr);
622 			return -EINVAL;
623 		}
624 
625 		buf = vmalloc(sz);
626 		if (!buf) {
627 			dev_err(adev->dev, "failed to allocate system memory.\n");
628 			return -ENOMEM;
629 		}
630 
631 		if (drm_dev_enter(adev_to_drm(adev), &idx)) {
632 			memcpy_fromio(buf, adev->mman.aper_base_kaddr, sz);
633 			ret = psp_v13_0_memory_training_send_msg(psp, PSP_BL__DRAM_LONG_TRAIN);
634 			if (ret) {
635 				DRM_ERROR("Send long training msg failed.\n");
636 				vfree(buf);
637 				drm_dev_exit(idx);
638 				return ret;
639 			}
640 
641 			memcpy_toio(adev->mman.aper_base_kaddr, buf, sz);
642 			amdgpu_device_flush_hdp(adev, NULL);
643 			vfree(buf);
644 			drm_dev_exit(idx);
645 		} else {
646 			vfree(buf);
647 			return -ENODEV;
648 		}
649 	}
650 
651 	if (ops & PSP_MEM_TRAIN_SAVE) {
652 		amdgpu_device_vram_access(psp->adev, ctx->p2c_train_data_offset, ctx->sys_cache, ctx->train_data_size, false);
653 	}
654 
655 	if (ops & PSP_MEM_TRAIN_RESTORE) {
656 		amdgpu_device_vram_access(psp->adev, ctx->c2p_train_data_offset, ctx->sys_cache, ctx->train_data_size, true);
657 	}
658 
659 	if (ops & PSP_MEM_TRAIN_SEND_SHORT_MSG) {
660 		ret = psp_v13_0_memory_training_send_msg(psp, (amdgpu_force_long_training > 0) ?
661 							 PSP_BL__DRAM_LONG_TRAIN : PSP_BL__DRAM_SHORT_TRAIN);
662 		if (ret) {
663 			dev_err(adev->dev, "send training msg failed.\n");
664 			return ret;
665 		}
666 	}
667 	ctx->training_cnt++;
668 	return 0;
669 }
670 
671 static int psp_v13_0_load_usbc_pd_fw(struct psp_context *psp, uint64_t fw_pri_mc_addr)
672 {
673 	struct amdgpu_device *adev = psp->adev;
674 	uint32_t reg_status;
675 	int ret, i = 0;
676 
677 	/*
678 	 * LFB address which is aligned to 1MB address and has to be
679 	 * right-shifted by 20 so that LFB address can be passed on a 32-bit C2P
680 	 * register
681 	 */
682 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_36, (fw_pri_mc_addr >> 20));
683 
684 	ret = psp_wait_for(psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_35),
685 			     0x80000000, 0x80000000, false);
686 	if (ret)
687 		return ret;
688 
689 	/* Fireup interrupt so PSP can pick up the address */
690 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_35, (GFX_CMD_USB_PD_USE_LFB << 16));
691 
692 	/* FW load takes very long time */
693 	do {
694 		msleep(1000);
695 		reg_status = RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_35);
696 
697 		if (reg_status & 0x80000000)
698 			goto done;
699 
700 	} while (++i < USBC_PD_POLLING_LIMIT_S);
701 
702 	return -ETIME;
703 done:
704 
705 	if ((reg_status & 0xFFFF) != 0) {
706 		DRM_ERROR("Address load failed - MP0_SMN_C2PMSG_35.Bits [15:0] = %04x\n",
707 				reg_status & 0xFFFF);
708 		return -EIO;
709 	}
710 
711 	return 0;
712 }
713 
714 static int psp_v13_0_read_usbc_pd_fw(struct psp_context *psp, uint32_t *fw_ver)
715 {
716 	struct amdgpu_device *adev = psp->adev;
717 	int ret;
718 
719 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_35, C2PMSG_CMD_GFX_USB_PD_FW_VER);
720 
721 	ret = psp_wait_for(psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_35),
722 				     0x80000000, 0x80000000, false);
723 	if (!ret)
724 		*fw_ver = RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_36);
725 
726 	return ret;
727 }
728 
729 static int psp_v13_0_exec_spi_cmd(struct psp_context *psp, int cmd)
730 {
731 	uint32_t reg_status = 0, reg_val = 0;
732 	struct amdgpu_device *adev = psp->adev;
733 	int ret;
734 
735 	/* clear MBX ready (MBOX_READY_MASK bit is 0) and set update command */
736 	reg_val |= (cmd << 16);
737 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_115,  reg_val);
738 
739 	/* Ring the doorbell */
740 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_73, 1);
741 
742 	if (cmd == C2PMSG_CMD_SPI_UPDATE_FLASH_IMAGE ||
743 	    cmd == C2PMSG_CMD_SPI_GET_FLASH_IMAGE)
744 		ret = psp_wait_for_spirom_update(psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_115),
745 						 MBOX_READY_FLAG, MBOX_READY_MASK, PSP_SPIROM_UPDATE_TIMEOUT);
746 	else
747 		ret = psp_wait_for(psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_115),
748 				   MBOX_READY_FLAG, MBOX_READY_MASK, false);
749 	if (ret) {
750 		dev_err(adev->dev, "SPI cmd %x timed out, ret = %d", cmd, ret);
751 		return ret;
752 	}
753 
754 	reg_status = RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_115);
755 	if ((reg_status & 0xFFFF) != 0) {
756 		dev_err(adev->dev, "SPI cmd %x failed, fail status = %04x\n",
757 				cmd, reg_status & 0xFFFF);
758 		return -EIO;
759 	}
760 
761 	return 0;
762 }
763 
764 static int psp_v13_0_update_spirom(struct psp_context *psp,
765 				   uint64_t fw_pri_mc_addr)
766 {
767 	struct amdgpu_device *adev = psp->adev;
768 	int ret;
769 
770 	/* Confirm PSP is ready to start */
771 	ret = psp_wait_for(psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_115),
772 			   MBOX_READY_FLAG, MBOX_READY_MASK, false);
773 	if (ret) {
774 		dev_err(adev->dev, "PSP Not ready to start processing, ret = %d", ret);
775 		return ret;
776 	}
777 
778 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_116, lower_32_bits(fw_pri_mc_addr));
779 
780 	ret = psp_v13_0_exec_spi_cmd(psp, C2PMSG_CMD_SPI_UPDATE_ROM_IMAGE_ADDR_LO);
781 	if (ret)
782 		return ret;
783 
784 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_116, upper_32_bits(fw_pri_mc_addr));
785 
786 	ret = psp_v13_0_exec_spi_cmd(psp, C2PMSG_CMD_SPI_UPDATE_ROM_IMAGE_ADDR_HI);
787 	if (ret)
788 		return ret;
789 
790 	psp->vbflash_done = true;
791 
792 	ret = psp_v13_0_exec_spi_cmd(psp, C2PMSG_CMD_SPI_UPDATE_FLASH_IMAGE);
793 	if (ret)
794 		return ret;
795 
796 	return 0;
797 }
798 
799 static int psp_v13_0_dump_spirom(struct psp_context *psp,
800 				 uint64_t fw_pri_mc_addr)
801 {
802 	struct amdgpu_device *adev = psp->adev;
803 	int ret;
804 
805 	/* Confirm PSP is ready to start */
806 	ret = psp_wait_for(psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_115),
807 			   MBOX_READY_FLAG, MBOX_READY_MASK, false);
808 	if (ret) {
809 		dev_err(adev->dev, "PSP Not ready to start processing, ret = %d", ret);
810 		return ret;
811 	}
812 
813 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_116, lower_32_bits(fw_pri_mc_addr));
814 
815 	ret = psp_v13_0_exec_spi_cmd(psp, C2PMSG_CMD_SPI_GET_ROM_IMAGE_ADDR_LO);
816 	if (ret)
817 		return ret;
818 
819 	WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_116, upper_32_bits(fw_pri_mc_addr));
820 
821 	ret = psp_v13_0_exec_spi_cmd(psp, C2PMSG_CMD_SPI_GET_ROM_IMAGE_ADDR_HI);
822 	if (ret)
823 		return ret;
824 
825 	ret = psp_v13_0_exec_spi_cmd(psp, C2PMSG_CMD_SPI_GET_FLASH_IMAGE);
826 
827 	return ret;
828 }
829 
830 static int psp_v13_0_vbflash_status(struct psp_context *psp)
831 {
832 	struct amdgpu_device *adev = psp->adev;
833 
834 	return RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_115);
835 }
836 
837 static int psp_v13_0_fatal_error_recovery_quirk(struct psp_context *psp)
838 {
839 	struct amdgpu_device *adev = psp->adev;
840 
841 	if (amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 10)) {
842 		uint32_t  reg_data;
843 		/* MP1 fatal error: trigger PSP dram read to unhalt PSP
844 		 * during MP1 triggered sync flood.
845 		 */
846 		reg_data = RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_67);
847 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_67, reg_data + 0x10);
848 
849 		/* delay 1000ms for the mode1 reset for fatal error
850 		 * to be recovered back.
851 		 */
852 		msleep(1000);
853 	}
854 
855 	return 0;
856 }
857 
858 static bool psp_v13_0_get_ras_capability(struct psp_context *psp)
859 {
860 	struct amdgpu_device *adev = psp->adev;
861 	struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
862 	u32 reg_data;
863 
864 	/* query ras cap should be done from host side */
865 	if (amdgpu_sriov_vf(adev))
866 		return false;
867 
868 	if (!con)
869 		return false;
870 
871 	if ((amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 6) ||
872 	     amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 12) ||
873 	     amdgpu_ip_version(adev, MP0_HWIP, 0) == IP_VERSION(13, 0, 14)) &&
874 	    (!(adev->flags & AMD_IS_APU))) {
875 		reg_data = RREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_127);
876 		adev->ras_hw_enabled = (reg_data & GENMASK_ULL(23, 0));
877 		con->poison_supported = ((reg_data & GENMASK_ULL(24, 24)) >> 24) ? true : false;
878 		return true;
879 	} else {
880 		return false;
881 	}
882 }
883 
884 static bool psp_v13_0_is_aux_sos_load_required(struct psp_context *psp)
885 {
886 	struct amdgpu_device *adev = psp->adev;
887 	u32 pmfw_ver;
888 
889 	if (amdgpu_ip_version(adev, MP0_HWIP, 0) != IP_VERSION(13, 0, 6))
890 		return false;
891 
892 	/* load 4e version of sos if pmfw version less than 85.115.0 */
893 	pmfw_ver = RREG32(regMP1_PUB_SCRATCH0 / 4);
894 
895 	return (pmfw_ver < 0x557300);
896 }
897 
898 static bool psp_v13_0_is_reload_needed(struct psp_context *psp)
899 {
900 	uint32_t ucode_ver;
901 
902 	if (!psp_v13_0_is_sos_alive(psp))
903 		return false;
904 
905 	/* Restrict reload support only to specific IP versions */
906 	switch (amdgpu_ip_version(psp->adev, MP0_HWIP, 0)) {
907 	case IP_VERSION(13, 0, 2):
908 	case IP_VERSION(13, 0, 6):
909 	case IP_VERSION(13, 0, 14):
910 		/* TOS version read from microcode header */
911 		ucode_ver = psp->sos.fw_version;
912 		/* Read TOS version from hardware */
913 		psp_v13_0_init_sos_version(psp);
914 		return (ucode_ver != psp->sos.fw_version);
915 	default:
916 		return false;
917 	}
918 
919 	return false;
920 }
921 
922 static int psp_v13_0_reg_program_no_ring(struct psp_context *psp, uint32_t val,
923 					 enum psp_reg_prog_id id)
924 {
925 	struct amdgpu_device *adev = psp->adev;
926 	int ret = -EOPNOTSUPP;
927 
928 	/* PSP will broadcast the value to all instances */
929 	if (amdgpu_sriov_vf(adev)) {
930 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_101, GFX_CTRL_CMD_ID_GBR_IH_SET);
931 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_102, id);
932 		WREG32_SOC15(MP0, 0, regMP0_SMN_C2PMSG_103, val);
933 
934 		ret = psp_wait_for(psp, SOC15_REG_OFFSET(MP0, 0, regMP0_SMN_C2PMSG_101),
935 				   0x80000000, 0x80000000, false);
936 	}
937 
938 	return ret;
939 }
940 
941 static const struct psp_funcs psp_v13_0_funcs = {
942 	.init_microcode = psp_v13_0_init_microcode,
943 	.wait_for_bootloader = psp_v13_0_wait_for_bootloader_steady_state,
944 	.bootloader_load_kdb = psp_v13_0_bootloader_load_kdb,
945 	.bootloader_load_spl = psp_v13_0_bootloader_load_spl,
946 	.bootloader_load_sysdrv = psp_v13_0_bootloader_load_sysdrv,
947 	.bootloader_load_soc_drv = psp_v13_0_bootloader_load_soc_drv,
948 	.bootloader_load_intf_drv = psp_v13_0_bootloader_load_intf_drv,
949 	.bootloader_load_dbg_drv = psp_v13_0_bootloader_load_dbg_drv,
950 	.bootloader_load_ras_drv = psp_v13_0_bootloader_load_ras_drv,
951 	.bootloader_load_spdm_drv = psp_v13_0_bootloader_load_spdm_drv,
952 	.bootloader_load_sos = psp_v13_0_bootloader_load_sos,
953 	.ring_create = psp_v13_0_ring_create,
954 	.ring_stop = psp_v13_0_ring_stop,
955 	.ring_destroy = psp_v13_0_ring_destroy,
956 	.ring_get_wptr = psp_v13_0_ring_get_wptr,
957 	.ring_set_wptr = psp_v13_0_ring_set_wptr,
958 	.mem_training = psp_v13_0_memory_training,
959 	.load_usbc_pd_fw = psp_v13_0_load_usbc_pd_fw,
960 	.read_usbc_pd_fw = psp_v13_0_read_usbc_pd_fw,
961 	.update_spirom = psp_v13_0_update_spirom,
962 	.dump_spirom = psp_v13_0_dump_spirom,
963 	.vbflash_stat = psp_v13_0_vbflash_status,
964 	.fatal_error_recovery_quirk = psp_v13_0_fatal_error_recovery_quirk,
965 	.get_ras_capability = psp_v13_0_get_ras_capability,
966 	.is_aux_sos_load_required = psp_v13_0_is_aux_sos_load_required,
967 	.is_reload_needed = psp_v13_0_is_reload_needed,
968 	.reg_program_no_ring = psp_v13_0_reg_program_no_ring,
969 };
970 
971 void psp_v13_0_set_psp_funcs(struct psp_context *psp)
972 {
973 	psp->funcs = &psp_v13_0_funcs;
974 }
975