uvd_v7_0.c 49.8 KB
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/*
 * Copyright 2016 Advanced Micro Devices, Inc.
 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and associated documentation files (the "Software"),
 * to deal in the Software without restriction, including without limitation
 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
 * and/or sell copies of the Software, and to permit persons to whom the
 * Software is furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice shall be included in
 * all copies or substantial portions of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
 * OTHER DEALINGS IN THE SOFTWARE.
 *
 */

#include <linux/firmware.h>
#include <drm/drmP.h>
#include "amdgpu.h"
#include "amdgpu_uvd.h"
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#include "soc15.h"
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#include "soc15d.h"
#include "soc15_common.h"
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#include "mmsch_v1_0.h"
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#include "uvd/uvd_7_0_offset.h"
#include "uvd/uvd_7_0_sh_mask.h"
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#include "vce/vce_4_0_offset.h"
#include "vce/vce_4_0_default.h"
#include "vce/vce_4_0_sh_mask.h"
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#include "nbif/nbif_6_1_offset.h"
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#include "hdp/hdp_4_0_offset.h"
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#include "mmhub/mmhub_1_0_offset.h"
#include "mmhub/mmhub_1_0_sh_mask.h"
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static void uvd_v7_0_set_ring_funcs(struct amdgpu_device *adev);
static void uvd_v7_0_set_enc_ring_funcs(struct amdgpu_device *adev);
static void uvd_v7_0_set_irq_funcs(struct amdgpu_device *adev);
static int uvd_v7_0_start(struct amdgpu_device *adev);
static void uvd_v7_0_stop(struct amdgpu_device *adev);
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static int uvd_v7_0_sriov_start(struct amdgpu_device *adev);
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/**
 * uvd_v7_0_ring_get_rptr - get read pointer
 *
 * @ring: amdgpu_ring pointer
 *
 * Returns the current hardware read pointer
 */
static uint64_t uvd_v7_0_ring_get_rptr(struct amdgpu_ring *ring)
{
	struct amdgpu_device *adev = ring->adev;

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	return RREG32_SOC15(UVD, 0, mmUVD_RBC_RB_RPTR);
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}

/**
 * uvd_v7_0_enc_ring_get_rptr - get enc read pointer
 *
 * @ring: amdgpu_ring pointer
 *
 * Returns the current hardware enc read pointer
 */
static uint64_t uvd_v7_0_enc_ring_get_rptr(struct amdgpu_ring *ring)
{
	struct amdgpu_device *adev = ring->adev;

	if (ring == &adev->uvd.ring_enc[0])
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		return RREG32_SOC15(UVD, 0, mmUVD_RB_RPTR);
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	else
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		return RREG32_SOC15(UVD, 0, mmUVD_RB_RPTR2);
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}

/**
 * uvd_v7_0_ring_get_wptr - get write pointer
 *
 * @ring: amdgpu_ring pointer
 *
 * Returns the current hardware write pointer
 */
static uint64_t uvd_v7_0_ring_get_wptr(struct amdgpu_ring *ring)
{
	struct amdgpu_device *adev = ring->adev;

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	return RREG32_SOC15(UVD, 0, mmUVD_RBC_RB_WPTR);
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}

/**
 * uvd_v7_0_enc_ring_get_wptr - get enc write pointer
 *
 * @ring: amdgpu_ring pointer
 *
 * Returns the current hardware enc write pointer
 */
static uint64_t uvd_v7_0_enc_ring_get_wptr(struct amdgpu_ring *ring)
{
	struct amdgpu_device *adev = ring->adev;

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	if (ring->use_doorbell)
		return adev->wb.wb[ring->wptr_offs];

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	if (ring == &adev->uvd.ring_enc[0])
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		return RREG32_SOC15(UVD, 0, mmUVD_RB_WPTR);
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	else
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		return RREG32_SOC15(UVD, 0, mmUVD_RB_WPTR2);
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}

/**
 * uvd_v7_0_ring_set_wptr - set write pointer
 *
 * @ring: amdgpu_ring pointer
 *
 * Commits the write pointer to the hardware
 */
static void uvd_v7_0_ring_set_wptr(struct amdgpu_ring *ring)
{
	struct amdgpu_device *adev = ring->adev;

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	WREG32_SOC15(UVD, 0, mmUVD_RBC_RB_WPTR, lower_32_bits(ring->wptr));
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}

/**
 * uvd_v7_0_enc_ring_set_wptr - set enc write pointer
 *
 * @ring: amdgpu_ring pointer
 *
 * Commits the enc write pointer to the hardware
 */
static void uvd_v7_0_enc_ring_set_wptr(struct amdgpu_ring *ring)
{
	struct amdgpu_device *adev = ring->adev;

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	if (ring->use_doorbell) {
		/* XXX check if swapping is necessary on BE */
		adev->wb.wb[ring->wptr_offs] = lower_32_bits(ring->wptr);
		WDOORBELL32(ring->doorbell_index, lower_32_bits(ring->wptr));
		return;
	}

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	if (ring == &adev->uvd.ring_enc[0])
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		WREG32_SOC15(UVD, 0, mmUVD_RB_WPTR,
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			lower_32_bits(ring->wptr));
	else
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		WREG32_SOC15(UVD, 0, mmUVD_RB_WPTR2,
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			lower_32_bits(ring->wptr));
}

/**
 * uvd_v7_0_enc_ring_test_ring - test if UVD ENC ring is working
 *
 * @ring: the engine to test on
 *
 */
static int uvd_v7_0_enc_ring_test_ring(struct amdgpu_ring *ring)
{
	struct amdgpu_device *adev = ring->adev;
	uint32_t rptr = amdgpu_ring_get_rptr(ring);
	unsigned i;
	int r;

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	if (amdgpu_sriov_vf(adev))
		return 0;

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	r = amdgpu_ring_alloc(ring, 16);
	if (r) {
		DRM_ERROR("amdgpu: uvd enc failed to lock ring %d (%d).\n",
			  ring->idx, r);
		return r;
	}
	amdgpu_ring_write(ring, HEVC_ENC_CMD_END);
	amdgpu_ring_commit(ring);

	for (i = 0; i < adev->usec_timeout; i++) {
		if (amdgpu_ring_get_rptr(ring) != rptr)
			break;
		DRM_UDELAY(1);
	}

	if (i < adev->usec_timeout) {
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		DRM_DEBUG("ring test on %d succeeded in %d usecs\n",
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			 ring->idx, i);
	} else {
		DRM_ERROR("amdgpu: ring %d test failed\n",
			  ring->idx);
		r = -ETIMEDOUT;
	}

	return r;
}

/**
 * uvd_v7_0_enc_get_create_msg - generate a UVD ENC create msg
 *
 * @adev: amdgpu_device pointer
 * @ring: ring we should submit the msg to
 * @handle: session handle to use
 * @fence: optional fence to return
 *
 * Open up a stream for HW test
 */
static int uvd_v7_0_enc_get_create_msg(struct amdgpu_ring *ring, uint32_t handle,
				       struct dma_fence **fence)
{
	const unsigned ib_size_dw = 16;
	struct amdgpu_job *job;
	struct amdgpu_ib *ib;
	struct dma_fence *f = NULL;
	uint64_t dummy;
	int i, r;

	r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4, &job);
	if (r)
		return r;

	ib = &job->ibs[0];
	dummy = ib->gpu_addr + 1024;

	ib->length_dw = 0;
	ib->ptr[ib->length_dw++] = 0x00000018;
	ib->ptr[ib->length_dw++] = 0x00000001; /* session info */
	ib->ptr[ib->length_dw++] = handle;
	ib->ptr[ib->length_dw++] = 0x00000000;
	ib->ptr[ib->length_dw++] = upper_32_bits(dummy);
	ib->ptr[ib->length_dw++] = dummy;

	ib->ptr[ib->length_dw++] = 0x00000014;
	ib->ptr[ib->length_dw++] = 0x00000002; /* task info */
	ib->ptr[ib->length_dw++] = 0x0000001c;
	ib->ptr[ib->length_dw++] = 0x00000000;
	ib->ptr[ib->length_dw++] = 0x00000000;

	ib->ptr[ib->length_dw++] = 0x00000008;
	ib->ptr[ib->length_dw++] = 0x08000001; /* op initialize */

	for (i = ib->length_dw; i < ib_size_dw; ++i)
		ib->ptr[i] = 0x0;

	r = amdgpu_ib_schedule(ring, 1, ib, NULL, &f);
	job->fence = dma_fence_get(f);
	if (r)
		goto err;

	amdgpu_job_free(job);
	if (fence)
		*fence = dma_fence_get(f);
	dma_fence_put(f);
	return 0;

err:
	amdgpu_job_free(job);
	return r;
}

/**
 * uvd_v7_0_enc_get_destroy_msg - generate a UVD ENC destroy msg
 *
 * @adev: amdgpu_device pointer
 * @ring: ring we should submit the msg to
 * @handle: session handle to use
 * @fence: optional fence to return
 *
 * Close up a stream for HW test or if userspace failed to do so
 */
int uvd_v7_0_enc_get_destroy_msg(struct amdgpu_ring *ring, uint32_t handle,
				 bool direct, struct dma_fence **fence)
{
	const unsigned ib_size_dw = 16;
	struct amdgpu_job *job;
	struct amdgpu_ib *ib;
	struct dma_fence *f = NULL;
	uint64_t dummy;
	int i, r;

	r = amdgpu_job_alloc_with_ib(ring->adev, ib_size_dw * 4, &job);
	if (r)
		return r;

	ib = &job->ibs[0];
	dummy = ib->gpu_addr + 1024;

	ib->length_dw = 0;
	ib->ptr[ib->length_dw++] = 0x00000018;
	ib->ptr[ib->length_dw++] = 0x00000001;
	ib->ptr[ib->length_dw++] = handle;
	ib->ptr[ib->length_dw++] = 0x00000000;
	ib->ptr[ib->length_dw++] = upper_32_bits(dummy);
	ib->ptr[ib->length_dw++] = dummy;

	ib->ptr[ib->length_dw++] = 0x00000014;
	ib->ptr[ib->length_dw++] = 0x00000002;
	ib->ptr[ib->length_dw++] = 0x0000001c;
	ib->ptr[ib->length_dw++] = 0x00000000;
	ib->ptr[ib->length_dw++] = 0x00000000;

	ib->ptr[ib->length_dw++] = 0x00000008;
	ib->ptr[ib->length_dw++] = 0x08000002; /* op close session */

	for (i = ib->length_dw; i < ib_size_dw; ++i)
		ib->ptr[i] = 0x0;

	if (direct) {
		r = amdgpu_ib_schedule(ring, 1, ib, NULL, &f);
		job->fence = dma_fence_get(f);
		if (r)
			goto err;

		amdgpu_job_free(job);
	} else {
		r = amdgpu_job_submit(job, ring, &ring->adev->vce.entity,
				      AMDGPU_FENCE_OWNER_UNDEFINED, &f);
		if (r)
			goto err;
	}

	if (fence)
		*fence = dma_fence_get(f);
	dma_fence_put(f);
	return 0;

err:
	amdgpu_job_free(job);
	return r;
}

/**
 * uvd_v7_0_enc_ring_test_ib - test if UVD ENC IBs are working
 *
 * @ring: the engine to test on
 *
 */
static int uvd_v7_0_enc_ring_test_ib(struct amdgpu_ring *ring, long timeout)
{
	struct dma_fence *fence = NULL;
	long r;

	r = uvd_v7_0_enc_get_create_msg(ring, 1, NULL);
	if (r) {
		DRM_ERROR("amdgpu: failed to get create msg (%ld).\n", r);
		goto error;
	}

	r = uvd_v7_0_enc_get_destroy_msg(ring, 1, true, &fence);
	if (r) {
		DRM_ERROR("amdgpu: failed to get destroy ib (%ld).\n", r);
		goto error;
	}

	r = dma_fence_wait_timeout(fence, false, timeout);
	if (r == 0) {
		DRM_ERROR("amdgpu: IB test timed out.\n");
		r = -ETIMEDOUT;
	} else if (r < 0) {
		DRM_ERROR("amdgpu: fence wait failed (%ld).\n", r);
	} else {
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		DRM_DEBUG("ib test on ring %d succeeded\n", ring->idx);
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		r = 0;
	}
error:
	dma_fence_put(fence);
	return r;
}

static int uvd_v7_0_early_init(void *handle)
{
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;

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	if (amdgpu_sriov_vf(adev))
		adev->uvd.num_enc_rings = 1;
	else
		adev->uvd.num_enc_rings = 2;
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	uvd_v7_0_set_ring_funcs(adev);
	uvd_v7_0_set_enc_ring_funcs(adev);
	uvd_v7_0_set_irq_funcs(adev);

	return 0;
}

static int uvd_v7_0_sw_init(void *handle)
{
	struct amdgpu_ring *ring;
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	struct drm_sched_rq *rq;
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	int i, r;
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;

	/* UVD TRAP */
	r = amdgpu_irq_add_id(adev, AMDGPU_IH_CLIENTID_UVD, 124, &adev->uvd.irq);
	if (r)
		return r;

	/* UVD ENC TRAP */
	for (i = 0; i < adev->uvd.num_enc_rings; ++i) {
		r = amdgpu_irq_add_id(adev, AMDGPU_IH_CLIENTID_UVD, i + 119, &adev->uvd.irq);
		if (r)
			return r;
	}

	r = amdgpu_uvd_sw_init(adev);
	if (r)
		return r;

	if (adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) {
		const struct common_firmware_header *hdr;
		hdr = (const struct common_firmware_header *)adev->uvd.fw->data;
		adev->firmware.ucode[AMDGPU_UCODE_ID_UVD].ucode_id = AMDGPU_UCODE_ID_UVD;
		adev->firmware.ucode[AMDGPU_UCODE_ID_UVD].fw = adev->uvd.fw;
		adev->firmware.fw_size +=
			ALIGN(le32_to_cpu(hdr->ucode_size_bytes), PAGE_SIZE);
		DRM_INFO("PSP loading UVD firmware\n");
	}

	ring = &adev->uvd.ring_enc[0];
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	rq = &ring->sched.sched_rq[DRM_SCHED_PRIORITY_NORMAL];
	r = drm_sched_entity_init(&ring->sched, &adev->uvd.entity_enc,
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				  rq, amdgpu_sched_jobs, NULL);
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	if (r) {
		DRM_ERROR("Failed setting up UVD ENC run queue.\n");
		return r;
	}

	r = amdgpu_uvd_resume(adev);
	if (r)
		return r;
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	if (!amdgpu_sriov_vf(adev)) {
		ring = &adev->uvd.ring;
		sprintf(ring->name, "uvd");
		r = amdgpu_ring_init(adev, ring, 512, &adev->uvd.irq, 0);
		if (r)
			return r;
	}
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	for (i = 0; i < adev->uvd.num_enc_rings; ++i) {
		ring = &adev->uvd.ring_enc[i];
		sprintf(ring->name, "uvd_enc%d", i);
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		if (amdgpu_sriov_vf(adev)) {
			ring->use_doorbell = true;
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			/* currently only use the first enconding ring for
			 * sriov, so set unused location for other unused rings.
			 */
			if (i == 0)
				ring->doorbell_index = AMDGPU_DOORBELL64_UVD_RING0_1 * 2;
			else
				ring->doorbell_index = AMDGPU_DOORBELL64_UVD_RING2_3 * 2 + 1;
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		}
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		r = amdgpu_ring_init(adev, ring, 512, &adev->uvd.irq, 0);
		if (r)
			return r;
	}

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	r = amdgpu_virt_alloc_mm_table(adev);
	if (r)
		return r;

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	return r;
}

static int uvd_v7_0_sw_fini(void *handle)
{
	int i, r;
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;

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	amdgpu_virt_free_mm_table(adev);

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	r = amdgpu_uvd_suspend(adev);
	if (r)
		return r;

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	drm_sched_entity_fini(&adev->uvd.ring_enc[0].sched, &adev->uvd.entity_enc);
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	for (i = 0; i < adev->uvd.num_enc_rings; ++i)
		amdgpu_ring_fini(&adev->uvd.ring_enc[i]);

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	return amdgpu_uvd_sw_fini(adev);
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}

/**
 * uvd_v7_0_hw_init - start and test UVD block
 *
 * @adev: amdgpu_device pointer
 *
 * Initialize the hardware, boot up the VCPU and do some testing
 */
static int uvd_v7_0_hw_init(void *handle)
{
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
	struct amdgpu_ring *ring = &adev->uvd.ring;
	uint32_t tmp;
	int i, r;

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	if (amdgpu_sriov_vf(adev))
		r = uvd_v7_0_sriov_start(adev);
	else
		r = uvd_v7_0_start(adev);
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	if (r)
		goto done;

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	if (!amdgpu_sriov_vf(adev)) {
		ring->ready = true;
		r = amdgpu_ring_test_ring(ring);
		if (r) {
			ring->ready = false;
			goto done;
		}
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		r = amdgpu_ring_alloc(ring, 10);
		if (r) {
			DRM_ERROR("amdgpu: ring failed to lock UVD ring (%d).\n", r);
			goto done;
		}
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		tmp = PACKET0(SOC15_REG_OFFSET(UVD, 0,
			mmUVD_SEMA_WAIT_FAULT_TIMEOUT_CNTL), 0);
		amdgpu_ring_write(ring, tmp);
		amdgpu_ring_write(ring, 0xFFFFF);
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		tmp = PACKET0(SOC15_REG_OFFSET(UVD, 0,
			mmUVD_SEMA_WAIT_INCOMPLETE_TIMEOUT_CNTL), 0);
		amdgpu_ring_write(ring, tmp);
		amdgpu_ring_write(ring, 0xFFFFF);
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		tmp = PACKET0(SOC15_REG_OFFSET(UVD, 0,
			mmUVD_SEMA_SIGNAL_INCOMPLETE_TIMEOUT_CNTL), 0);
		amdgpu_ring_write(ring, tmp);
		amdgpu_ring_write(ring, 0xFFFFF);
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		/* Clear timeout status bits */
		amdgpu_ring_write(ring, PACKET0(SOC15_REG_OFFSET(UVD, 0,
			mmUVD_SEMA_TIMEOUT_STATUS), 0));
		amdgpu_ring_write(ring, 0x8);
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		amdgpu_ring_write(ring, PACKET0(SOC15_REG_OFFSET(UVD, 0,
			mmUVD_SEMA_CNTL), 0));
		amdgpu_ring_write(ring, 3);
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		amdgpu_ring_commit(ring);
	}
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	for (i = 0; i < adev->uvd.num_enc_rings; ++i) {
		ring = &adev->uvd.ring_enc[i];
		ring->ready = true;
		r = amdgpu_ring_test_ring(ring);
		if (r) {
			ring->ready = false;
			goto done;
		}
	}

done:
	if (!r)
		DRM_INFO("UVD and UVD ENC initialized successfully.\n");

	return r;
}

/**
 * uvd_v7_0_hw_fini - stop the hardware block
 *
 * @adev: amdgpu_device pointer
 *
 * Stop the UVD block, mark ring as not ready any more
 */
static int uvd_v7_0_hw_fini(void *handle)
{
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
	struct amdgpu_ring *ring = &adev->uvd.ring;

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	if (!amdgpu_sriov_vf(adev))
		uvd_v7_0_stop(adev);
	else {
		/* full access mode, so don't touch any UVD register */
		DRM_DEBUG("For SRIOV client, shouldn't do anything.\n");
	}

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	ring->ready = false;

	return 0;
}

static int uvd_v7_0_suspend(void *handle)
{
	int r;
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;

	r = uvd_v7_0_hw_fini(adev);
	if (r)
		return r;

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	return amdgpu_uvd_suspend(adev);
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}

static int uvd_v7_0_resume(void *handle)
{
	int r;
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;

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	r = amdgpu_uvd_resume(adev);
	if (r)
		return r;

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	return uvd_v7_0_hw_init(adev);
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}

/**
 * uvd_v7_0_mc_resume - memory controller programming
 *
 * @adev: amdgpu_device pointer
 *
 * Let the UVD memory controller know it's offsets
 */
static void uvd_v7_0_mc_resume(struct amdgpu_device *adev)
{
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	uint32_t size = AMDGPU_UVD_FIRMWARE_SIZE(adev);
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	uint32_t offset;

	if (adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) {
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		WREG32_SOC15(UVD, 0, mmUVD_LMI_VCPU_CACHE_64BIT_BAR_LOW,
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			lower_32_bits(adev->firmware.ucode[AMDGPU_UCODE_ID_UVD].mc_addr));
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		WREG32_SOC15(UVD, 0, mmUVD_LMI_VCPU_CACHE_64BIT_BAR_HIGH,
626 627 628
			upper_32_bits(adev->firmware.ucode[AMDGPU_UCODE_ID_UVD].mc_addr));
		offset = 0;
	} else {
629
		WREG32_SOC15(UVD, 0, mmUVD_LMI_VCPU_CACHE_64BIT_BAR_LOW,
630
			lower_32_bits(adev->uvd.gpu_addr));
631
		WREG32_SOC15(UVD, 0, mmUVD_LMI_VCPU_CACHE_64BIT_BAR_HIGH,
632 633 634 635
			upper_32_bits(adev->uvd.gpu_addr));
		offset = size;
	}

636
	WREG32_SOC15(UVD, 0, mmUVD_VCPU_CACHE_OFFSET0,
637
				AMDGPU_UVD_FIRMWARE_OFFSET >> 3);
638
	WREG32_SOC15(UVD, 0, mmUVD_VCPU_CACHE_SIZE0, size);
639

640
	WREG32_SOC15(UVD, 0, mmUVD_LMI_VCPU_CACHE1_64BIT_BAR_LOW,
641
			lower_32_bits(adev->uvd.gpu_addr + offset));
642
	WREG32_SOC15(UVD, 0, mmUVD_LMI_VCPU_CACHE1_64BIT_BAR_HIGH,
643
			upper_32_bits(adev->uvd.gpu_addr + offset));
644 645
	WREG32_SOC15(UVD, 0, mmUVD_VCPU_CACHE_OFFSET1, (1 << 21));
	WREG32_SOC15(UVD, 0, mmUVD_VCPU_CACHE_SIZE1, AMDGPU_UVD_HEAP_SIZE);
646

647
	WREG32_SOC15(UVD, 0, mmUVD_LMI_VCPU_CACHE2_64BIT_BAR_LOW,
648
			lower_32_bits(adev->uvd.gpu_addr + offset + AMDGPU_UVD_HEAP_SIZE));
649
	WREG32_SOC15(UVD, 0, mmUVD_LMI_VCPU_CACHE2_64BIT_BAR_HIGH,
650
			upper_32_bits(adev->uvd.gpu_addr + offset + AMDGPU_UVD_HEAP_SIZE));
651 652
	WREG32_SOC15(UVD, 0, mmUVD_VCPU_CACHE_OFFSET2, (2 << 21));
	WREG32_SOC15(UVD, 0, mmUVD_VCPU_CACHE_SIZE2,
653 654
			AMDGPU_UVD_STACK_SIZE + (AMDGPU_UVD_SESSION_SIZE * 40));

655
	WREG32_SOC15(UVD, 0, mmUVD_UDEC_ADDR_CONFIG,
656
			adev->gfx.config.gb_addr_config);
657
	WREG32_SOC15(UVD, 0, mmUVD_UDEC_DB_ADDR_CONFIG,
658
			adev->gfx.config.gb_addr_config);
659
	WREG32_SOC15(UVD, 0, mmUVD_UDEC_DBW_ADDR_CONFIG,
660 661
			adev->gfx.config.gb_addr_config);

662
	WREG32_SOC15(UVD, 0, mmUVD_GP_SCRATCH4, adev->uvd.max_handles);
663 664
}

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static int uvd_v7_0_mmsch_start(struct amdgpu_device *adev,
				struct amdgpu_mm_table *table)
{
	uint32_t data = 0, loop;
	uint64_t addr = table->gpu_addr;
	struct mmsch_v1_0_init_header *header = (struct mmsch_v1_0_init_header *)table->cpu_addr;
	uint32_t size;

	size = header->header_size + header->vce_table_size + header->uvd_table_size;

	/* 1, write to vce_mmsch_vf_ctx_addr_lo/hi register with GPU mc addr of memory descriptor location */
676 677
	WREG32_SOC15(VCE, 0, mmVCE_MMSCH_VF_CTX_ADDR_LO, lower_32_bits(addr));
	WREG32_SOC15(VCE, 0, mmVCE_MMSCH_VF_CTX_ADDR_HI, upper_32_bits(addr));
678 679

	/* 2, update vmid of descriptor */
680
	data = RREG32_SOC15(VCE, 0, mmVCE_MMSCH_VF_VMID);
681 682
	data &= ~VCE_MMSCH_VF_VMID__VF_CTX_VMID_MASK;
	data |= (0 << VCE_MMSCH_VF_VMID__VF_CTX_VMID__SHIFT); /* use domain0 for MM scheduler */
683
	WREG32_SOC15(VCE, 0, mmVCE_MMSCH_VF_VMID, data);
684 685

	/* 3, notify mmsch about the size of this descriptor */
686
	WREG32_SOC15(VCE, 0, mmVCE_MMSCH_VF_CTX_SIZE, size);
687 688

	/* 4, set resp to zero */
689
	WREG32_SOC15(VCE, 0, mmVCE_MMSCH_VF_MAILBOX_RESP, 0);
690

691 692 693 694 695
	WDOORBELL32(adev->uvd.ring_enc[0].doorbell_index, 0);
	adev->wb.wb[adev->uvd.ring_enc[0].wptr_offs] = 0;
	adev->uvd.ring_enc[0].wptr = 0;
	adev->uvd.ring_enc[0].wptr_old = 0;

696
	/* 5, kick off the initialization and wait until VCE_MMSCH_VF_MAILBOX_RESP becomes non-zero */
697
	WREG32_SOC15(VCE, 0, mmVCE_MMSCH_VF_MAILBOX_HOST, 0x10000001);
698

699
	data = RREG32_SOC15(VCE, 0, mmVCE_MMSCH_VF_MAILBOX_RESP);
700 701 702
	loop = 1000;
	while ((data & 0x10000002) != 0x10000002) {
		udelay(10);
703
		data = RREG32_SOC15(VCE, 0, mmVCE_MMSCH_VF_MAILBOX_RESP);
704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745
		loop--;
		if (!loop)
			break;
	}

	if (!loop) {
		dev_err(adev->dev, "failed to init MMSCH, mmVCE_MMSCH_VF_MAILBOX_RESP = %x\n", data);
		return -EBUSY;
	}

	return 0;
}

static int uvd_v7_0_sriov_start(struct amdgpu_device *adev)
{
	struct amdgpu_ring *ring;
	uint32_t offset, size, tmp;
	uint32_t table_size = 0;
	struct mmsch_v1_0_cmd_direct_write direct_wt = { {0} };
	struct mmsch_v1_0_cmd_direct_read_modify_write direct_rd_mod_wt = { {0} };
	struct mmsch_v1_0_cmd_direct_polling direct_poll = { {0} };
	struct mmsch_v1_0_cmd_end end = { {0} };
	uint32_t *init_table = adev->virt.mm_table.cpu_addr;
	struct mmsch_v1_0_init_header *header = (struct mmsch_v1_0_init_header *)init_table;

	direct_wt.cmd_header.command_type = MMSCH_COMMAND__DIRECT_REG_WRITE;
	direct_rd_mod_wt.cmd_header.command_type = MMSCH_COMMAND__DIRECT_REG_READ_MODIFY_WRITE;
	direct_poll.cmd_header.command_type = MMSCH_COMMAND__DIRECT_REG_POLLING;
	end.cmd_header.command_type = MMSCH_COMMAND__END;

	if (header->uvd_table_offset == 0 && header->uvd_table_size == 0) {
		header->version = MMSCH_VERSION;
		header->header_size = sizeof(struct mmsch_v1_0_init_header) >> 2;

		if (header->vce_table_offset == 0 && header->vce_table_size == 0)
			header->uvd_table_offset = header->header_size;
		else
			header->uvd_table_offset = header->vce_table_size + header->vce_table_offset;

		init_table += header->uvd_table_offset;

		ring = &adev->uvd.ring;
746
		ring->wptr = 0;
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		size = AMDGPU_GPU_PAGE_ALIGN(adev->uvd.fw->size + 4);

		MMSCH_V1_0_INSERT_DIRECT_RD_MOD_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_STATUS),
						   0xFFFFFFFF, 0x00000004);
		/* mc resume*/
		if (adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) {
			MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_VCPU_CACHE_64BIT_BAR_LOW),
						    lower_32_bits(adev->firmware.ucode[AMDGPU_UCODE_ID_UVD].mc_addr));
			MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_VCPU_CACHE_64BIT_BAR_HIGH),
						    upper_32_bits(adev->firmware.ucode[AMDGPU_UCODE_ID_UVD].mc_addr));
			offset = 0;
		} else {
			MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_VCPU_CACHE_64BIT_BAR_LOW),
						    lower_32_bits(adev->uvd.gpu_addr));
			MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_VCPU_CACHE_64BIT_BAR_HIGH),
						    upper_32_bits(adev->uvd.gpu_addr));
			offset = size;
		}

		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_VCPU_CACHE_OFFSET0),
					    AMDGPU_UVD_FIRMWARE_OFFSET >> 3);
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_VCPU_CACHE_SIZE0), size);

		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_VCPU_CACHE1_64BIT_BAR_LOW),
					    lower_32_bits(adev->uvd.gpu_addr + offset));
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_VCPU_CACHE1_64BIT_BAR_HIGH),
					    upper_32_bits(adev->uvd.gpu_addr + offset));
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_VCPU_CACHE_OFFSET1), (1 << 21));
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_VCPU_CACHE_SIZE1), AMDGPU_UVD_HEAP_SIZE);

		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_VCPU_CACHE2_64BIT_BAR_LOW),
					    lower_32_bits(adev->uvd.gpu_addr + offset + AMDGPU_UVD_HEAP_SIZE));
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_VCPU_CACHE2_64BIT_BAR_HIGH),
					    upper_32_bits(adev->uvd.gpu_addr + offset + AMDGPU_UVD_HEAP_SIZE));
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_VCPU_CACHE_OFFSET2), (2 << 21));
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_VCPU_CACHE_SIZE2),
					    AMDGPU_UVD_STACK_SIZE + (AMDGPU_UVD_SESSION_SIZE * 40));

		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_GP_SCRATCH4), adev->uvd.max_handles);
		/* mc resume end*/

		/* disable clock gating */
		MMSCH_V1_0_INSERT_DIRECT_RD_MOD_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_CGC_CTRL),
						   ~UVD_CGC_CTRL__DYN_CLOCK_MODE_MASK, 0);

		/* disable interupt */
		MMSCH_V1_0_INSERT_DIRECT_RD_MOD_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_MASTINT_EN),
						   ~UVD_MASTINT_EN__VCPU_EN_MASK, 0);

		/* stall UMC and register bus before resetting VCPU */
		MMSCH_V1_0_INSERT_DIRECT_RD_MOD_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_CTRL2),
						   ~UVD_LMI_CTRL2__STALL_ARB_UMC_MASK,
						   UVD_LMI_CTRL2__STALL_ARB_UMC_MASK);

		/* put LMI, VCPU, RBC etc... into reset */
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_SOFT_RESET),
					    (uint32_t)(UVD_SOFT_RESET__LMI_SOFT_RESET_MASK |
						       UVD_SOFT_RESET__VCPU_SOFT_RESET_MASK |
						       UVD_SOFT_RESET__LBSI_SOFT_RESET_MASK |
						       UVD_SOFT_RESET__RBC_SOFT_RESET_MASK |
						       UVD_SOFT_RESET__CSM_SOFT_RESET_MASK |
						       UVD_SOFT_RESET__CXW_SOFT_RESET_MASK |
						       UVD_SOFT_RESET__TAP_SOFT_RESET_MASK |
						       UVD_SOFT_RESET__LMI_UMC_SOFT_RESET_MASK));

		/* initialize UVD memory controller */
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_CTRL),
					    (uint32_t)((0x40 << UVD_LMI_CTRL__WRITE_CLEAN_TIMER__SHIFT) |
						       UVD_LMI_CTRL__WRITE_CLEAN_TIMER_EN_MASK |
						       UVD_LMI_CTRL__DATA_COHERENCY_EN_MASK |
						       UVD_LMI_CTRL__VCPU_DATA_COHERENCY_EN_MASK |
						       UVD_LMI_CTRL__REQ_MODE_MASK |
						       0x00100000L));

		/* take all subblocks out of reset, except VCPU */
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_SOFT_RESET),
					    UVD_SOFT_RESET__VCPU_SOFT_RESET_MASK);

		/* enable VCPU clock */
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_VCPU_CNTL),
					    UVD_VCPU_CNTL__CLK_EN_MASK);

		/* enable master interrupt */
		MMSCH_V1_0_INSERT_DIRECT_RD_MOD_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_MASTINT_EN),
						   ~(UVD_MASTINT_EN__VCPU_EN_MASK|UVD_MASTINT_EN__SYS_EN_MASK),
						   (UVD_MASTINT_EN__VCPU_EN_MASK|UVD_MASTINT_EN__SYS_EN_MASK));

		/* clear the bit 4 of UVD_STATUS */
		MMSCH_V1_0_INSERT_DIRECT_RD_MOD_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_STATUS),
						   ~(2 << UVD_STATUS__VCPU_REPORT__SHIFT), 0);

		/* force RBC into idle state */
		size = order_base_2(ring->ring_size);
		tmp = REG_SET_FIELD(0, UVD_RBC_RB_CNTL, RB_BUFSZ, size);
		tmp = REG_SET_FIELD(tmp, UVD_RBC_RB_CNTL, RB_NO_FETCH, 1);
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_RBC_RB_CNTL), tmp);

		ring = &adev->uvd.ring_enc[0];
845
		ring->wptr = 0;
846 847 848 849
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_RB_BASE_LO), ring->gpu_addr);
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_RB_BASE_HI), upper_32_bits(ring->gpu_addr));
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_RB_SIZE), ring->ring_size / 4);

850 851 852 853 854 855 856 857 858
		/* boot up the VCPU */
		MMSCH_V1_0_INSERT_DIRECT_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_SOFT_RESET), 0);

		/* enable UMC */
		MMSCH_V1_0_INSERT_DIRECT_RD_MOD_WT(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_CTRL2),
										   ~UVD_LMI_CTRL2__STALL_ARB_UMC_MASK, 0);

		MMSCH_V1_0_INSERT_DIRECT_POLL(SOC15_REG_OFFSET(UVD, 0, mmUVD_STATUS), 0x02, 0x02);

859 860 861 862 863 864
		/* add end packet */
		memcpy((void *)init_table, &end, sizeof(struct mmsch_v1_0_cmd_end));
		table_size += sizeof(struct mmsch_v1_0_cmd_end) / 4;
		header->uvd_table_size = table_size;

	}
865
	return uvd_v7_0_mmsch_start(adev, &adev->virt.mm_table);
866 867
}

868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907
/**
 * uvd_v7_0_start - start UVD block
 *
 * @adev: amdgpu_device pointer
 *
 * Setup and start the UVD block
 */
static int uvd_v7_0_start(struct amdgpu_device *adev)
{
	struct amdgpu_ring *ring = &adev->uvd.ring;
	uint32_t rb_bufsz, tmp;
	uint32_t lmi_swap_cntl;
	uint32_t mp_swap_cntl;
	int i, j, r;

	/* disable DPG */
	WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_POWER_STATUS), 0,
			~UVD_POWER_STATUS__UVD_PG_MODE_MASK);

	/* disable byte swapping */
	lmi_swap_cntl = 0;
	mp_swap_cntl = 0;

	uvd_v7_0_mc_resume(adev);

	/* disable clock gating */
	WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_CGC_CTRL), 0,
			~UVD_CGC_CTRL__DYN_CLOCK_MODE_MASK);

	/* disable interupt */
	WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_MASTINT_EN), 0,
			~UVD_MASTINT_EN__VCPU_EN_MASK);

	/* stall UMC and register bus before resetting VCPU */
	WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_CTRL2),
			UVD_LMI_CTRL2__STALL_ARB_UMC_MASK,
			~UVD_LMI_CTRL2__STALL_ARB_UMC_MASK);
	mdelay(1);

	/* put LMI, VCPU, RBC etc... into reset */
908
	WREG32_SOC15(UVD, 0, mmUVD_SOFT_RESET,
909 910 911 912 913 914 915 916 917 918 919
		UVD_SOFT_RESET__LMI_SOFT_RESET_MASK |
		UVD_SOFT_RESET__VCPU_SOFT_RESET_MASK |
		UVD_SOFT_RESET__LBSI_SOFT_RESET_MASK |
		UVD_SOFT_RESET__RBC_SOFT_RESET_MASK |
		UVD_SOFT_RESET__CSM_SOFT_RESET_MASK |
		UVD_SOFT_RESET__CXW_SOFT_RESET_MASK |
		UVD_SOFT_RESET__TAP_SOFT_RESET_MASK |
		UVD_SOFT_RESET__LMI_UMC_SOFT_RESET_MASK);
	mdelay(5);

	/* initialize UVD memory controller */
920
	WREG32_SOC15(UVD, 0, mmUVD_LMI_CTRL,
921 922 923 924 925 926 927 928 929 930 931 932
		(0x40 << UVD_LMI_CTRL__WRITE_CLEAN_TIMER__SHIFT) |
		UVD_LMI_CTRL__WRITE_CLEAN_TIMER_EN_MASK |
		UVD_LMI_CTRL__DATA_COHERENCY_EN_MASK |
		UVD_LMI_CTRL__VCPU_DATA_COHERENCY_EN_MASK |
		UVD_LMI_CTRL__REQ_MODE_MASK |
		0x00100000L);

#ifdef __BIG_ENDIAN
	/* swap (8 in 32) RB and IB */
	lmi_swap_cntl = 0xa;
	mp_swap_cntl = 0;
#endif
933 934
	WREG32_SOC15(UVD, 0, mmUVD_LMI_SWAP_CNTL, lmi_swap_cntl);
	WREG32_SOC15(UVD, 0, mmUVD_MP_SWAP_CNTL, mp_swap_cntl);
935

936 937 938 939 940 941
	WREG32_SOC15(UVD, 0, mmUVD_MPC_SET_MUXA0, 0x40c2040);
	WREG32_SOC15(UVD, 0, mmUVD_MPC_SET_MUXA1, 0x0);
	WREG32_SOC15(UVD, 0, mmUVD_MPC_SET_MUXB0, 0x40c2040);
	WREG32_SOC15(UVD, 0, mmUVD_MPC_SET_MUXB1, 0x0);
	WREG32_SOC15(UVD, 0, mmUVD_MPC_SET_ALU, 0);
	WREG32_SOC15(UVD, 0, mmUVD_MPC_SET_MUX, 0x88);
942 943

	/* take all subblocks out of reset, except VCPU */
944
	WREG32_SOC15(UVD, 0, mmUVD_SOFT_RESET,
945 946 947 948
			UVD_SOFT_RESET__VCPU_SOFT_RESET_MASK);
	mdelay(5);

	/* enable VCPU clock */
949
	WREG32_SOC15(UVD, 0, mmUVD_VCPU_CNTL,
950 951 952 953 954 955 956
			UVD_VCPU_CNTL__CLK_EN_MASK);

	/* enable UMC */
	WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_CTRL2), 0,
			~UVD_LMI_CTRL2__STALL_ARB_UMC_MASK);

	/* boot up the VCPU */
957
	WREG32_SOC15(UVD, 0, mmUVD_SOFT_RESET, 0);
958 959 960 961 962 963
	mdelay(10);

	for (i = 0; i < 10; ++i) {
		uint32_t status;

		for (j = 0; j < 100; ++j) {
964
			status = RREG32_SOC15(UVD, 0, mmUVD_STATUS);
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			if (status & 2)
				break;
			mdelay(10);
		}
		r = 0;
		if (status & 2)
			break;

		DRM_ERROR("UVD not responding, trying to reset the VCPU!!!\n");
		WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_SOFT_RESET),
				UVD_SOFT_RESET__VCPU_SOFT_RESET_MASK,
				~UVD_SOFT_RESET__VCPU_SOFT_RESET_MASK);
		mdelay(10);
		WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_SOFT_RESET), 0,
				~UVD_SOFT_RESET__VCPU_SOFT_RESET_MASK);
		mdelay(10);
		r = -1;
	}

	if (r) {
		DRM_ERROR("UVD not responding, giving up!!!\n");
		return r;
	}
	/* enable master interrupt */
	WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_MASTINT_EN),
		(UVD_MASTINT_EN__VCPU_EN_MASK|UVD_MASTINT_EN__SYS_EN_MASK),
		~(UVD_MASTINT_EN__VCPU_EN_MASK|UVD_MASTINT_EN__SYS_EN_MASK));

	/* clear the bit 4 of UVD_STATUS */
	WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_STATUS), 0,
			~(2 << UVD_STATUS__VCPU_REPORT__SHIFT));

	/* force RBC into idle state */
	rb_bufsz = order_base_2(ring->ring_size);
	tmp = REG_SET_FIELD(0, UVD_RBC_RB_CNTL, RB_BUFSZ, rb_bufsz);
	tmp = REG_SET_FIELD(tmp, UVD_RBC_RB_CNTL, RB_BLKSZ, 1);
	tmp = REG_SET_FIELD(tmp, UVD_RBC_RB_CNTL, RB_NO_FETCH, 1);
	tmp = REG_SET_FIELD(tmp, UVD_RBC_RB_CNTL, RB_WPTR_POLL_EN, 0);
	tmp = REG_SET_FIELD(tmp, UVD_RBC_RB_CNTL, RB_NO_UPDATE, 1);
	tmp = REG_SET_FIELD(tmp, UVD_RBC_RB_CNTL, RB_RPTR_WR_EN, 1);
1005
	WREG32_SOC15(UVD, 0, mmUVD_RBC_RB_CNTL, tmp);
1006 1007

	/* set the write pointer delay */
1008
	WREG32_SOC15(UVD, 0, mmUVD_RBC_RB_WPTR_CNTL, 0);
1009 1010

	/* set the wb address */
1011
	WREG32_SOC15(UVD, 0, mmUVD_RBC_RB_RPTR_ADDR,
1012 1013 1014
			(upper_32_bits(ring->gpu_addr) >> 2));

	/* programm the RB_BASE for ring buffer */
1015
	WREG32_SOC15(UVD, 0, mmUVD_LMI_RBC_RB_64BIT_BAR_LOW,
1016
			lower_32_bits(ring->gpu_addr));
1017
	WREG32_SOC15(UVD, 0, mmUVD_LMI_RBC_RB_64BIT_BAR_HIGH,
1018 1019 1020
			upper_32_bits(ring->gpu_addr));

	/* Initialize the ring buffer's read and write pointers */
1021
	WREG32_SOC15(UVD, 0, mmUVD_RBC_RB_RPTR, 0);
1022

1023 1024
	ring->wptr = RREG32_SOC15(UVD, 0, mmUVD_RBC_RB_RPTR);
	WREG32_SOC15(UVD, 0, mmUVD_RBC_RB_WPTR,
1025 1026 1027 1028 1029 1030
			lower_32_bits(ring->wptr));

	WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_RBC_RB_CNTL), 0,
			~UVD_RBC_RB_CNTL__RB_NO_FETCH_MASK);

	ring = &adev->uvd.ring_enc[0];
1031 1032 1033 1034 1035
	WREG32_SOC15(UVD, 0, mmUVD_RB_RPTR, lower_32_bits(ring->wptr));
	WREG32_SOC15(UVD, 0, mmUVD_RB_WPTR, lower_32_bits(ring->wptr));
	WREG32_SOC15(UVD, 0, mmUVD_RB_BASE_LO, ring->gpu_addr);
	WREG32_SOC15(UVD, 0, mmUVD_RB_BASE_HI, upper_32_bits(ring->gpu_addr));
	WREG32_SOC15(UVD, 0, mmUVD_RB_SIZE, ring->ring_size / 4);
1036 1037

	ring = &adev->uvd.ring_enc[1];
1038 1039 1040 1041 1042
	WREG32_SOC15(UVD, 0, mmUVD_RB_RPTR2, lower_32_bits(ring->wptr));
	WREG32_SOC15(UVD, 0, mmUVD_RB_WPTR2, lower_32_bits(ring->wptr));
	WREG32_SOC15(UVD, 0, mmUVD_RB_BASE_LO2, ring->gpu_addr);
	WREG32_SOC15(UVD, 0, mmUVD_RB_BASE_HI2, upper_32_bits(ring->gpu_addr));
	WREG32_SOC15(UVD, 0, mmUVD_RB_SIZE2, ring->ring_size / 4);
1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056

	return 0;
}

/**
 * uvd_v7_0_stop - stop UVD block
 *
 * @adev: amdgpu_device pointer
 *
 * stop the UVD block
 */
static void uvd_v7_0_stop(struct amdgpu_device *adev)
{
	/* force RBC into idle state */
1057
	WREG32_SOC15(UVD, 0, mmUVD_RBC_RB_CNTL, 0x11010101);
1058 1059 1060 1061 1062 1063 1064 1065

	/* Stall UMC and register bus before resetting VCPU */
	WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_CTRL2),
			UVD_LMI_CTRL2__STALL_ARB_UMC_MASK,
			~UVD_LMI_CTRL2__STALL_ARB_UMC_MASK);
	mdelay(1);

	/* put VCPU into reset */
1066
	WREG32_SOC15(UVD, 0, mmUVD_SOFT_RESET,
1067 1068 1069 1070
			UVD_SOFT_RESET__VCPU_SOFT_RESET_MASK);
	mdelay(5);

	/* disable VCPU clock */
1071
	WREG32_SOC15(UVD, 0, mmUVD_VCPU_CNTL, 0x0);
1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088

	/* Unstall UMC and register bus */
	WREG32_P(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_CTRL2), 0,
			~UVD_LMI_CTRL2__STALL_ARB_UMC_MASK);
}

/**
 * uvd_v7_0_ring_emit_fence - emit an fence & trap command
 *
 * @ring: amdgpu_ring pointer
 * @fence: fence to emit
 *
 * Write a fence and a trap command to the ring.
 */
static void uvd_v7_0_ring_emit_fence(struct amdgpu_ring *ring, u64 addr, u64 seq,
				     unsigned flags)
{
1089 1090
	struct amdgpu_device *adev = ring->adev;

1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127
	WARN_ON(flags & AMDGPU_FENCE_FLAG_64BIT);

	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_CONTEXT_ID), 0));
	amdgpu_ring_write(ring, seq);
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_DATA0), 0));
	amdgpu_ring_write(ring, addr & 0xffffffff);
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_DATA1), 0));
	amdgpu_ring_write(ring, upper_32_bits(addr) & 0xff);
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_CMD), 0));
	amdgpu_ring_write(ring, 0);

	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_DATA0), 0));
	amdgpu_ring_write(ring, 0);
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_DATA1), 0));
	amdgpu_ring_write(ring, 0);
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_CMD), 0));
	amdgpu_ring_write(ring, 2);
}

/**
 * uvd_v7_0_enc_ring_emit_fence - emit an enc fence & trap command
 *
 * @ring: amdgpu_ring pointer
 * @fence: fence to emit
 *
 * Write enc a fence and a trap command to the ring.
 */
static void uvd_v7_0_enc_ring_emit_fence(struct amdgpu_ring *ring, u64 addr,
			u64 seq, unsigned flags)
{
1128

1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151
	WARN_ON(flags & AMDGPU_FENCE_FLAG_64BIT);

	amdgpu_ring_write(ring, HEVC_ENC_CMD_FENCE);
	amdgpu_ring_write(ring, addr);
	amdgpu_ring_write(ring, upper_32_bits(addr));
	amdgpu_ring_write(ring, seq);
	amdgpu_ring_write(ring, HEVC_ENC_CMD_TRAP);
}

/**
 * uvd_v7_0_ring_test_ring - register write test
 *
 * @ring: amdgpu_ring pointer
 *
 * Test if we can successfully write to the context register
 */
static int uvd_v7_0_ring_test_ring(struct amdgpu_ring *ring)
{
	struct amdgpu_device *adev = ring->adev;
	uint32_t tmp = 0;
	unsigned i;
	int r;

1152
	WREG32_SOC15(UVD, 0, mmUVD_CONTEXT_ID, 0xCAFEDEAD);
1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163
	r = amdgpu_ring_alloc(ring, 3);
	if (r) {
		DRM_ERROR("amdgpu: cp failed to lock ring %d (%d).\n",
			  ring->idx, r);
		return r;
	}
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_CONTEXT_ID), 0));
	amdgpu_ring_write(ring, 0xDEADBEEF);
	amdgpu_ring_commit(ring);
	for (i = 0; i < adev->usec_timeout; i++) {
1164
		tmp = RREG32_SOC15(UVD, 0, mmUVD_CONTEXT_ID);
1165 1166 1167 1168 1169 1170
		if (tmp == 0xDEADBEEF)
			break;
		DRM_UDELAY(1);
	}

	if (i < adev->usec_timeout) {
1171
		DRM_DEBUG("ring test on %d succeeded in %d usecs\n",
1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190
			 ring->idx, i);
	} else {
		DRM_ERROR("amdgpu: ring %d test failed (0x%08X)\n",
			  ring->idx, tmp);
		r = -EINVAL;
	}
	return r;
}

/**
 * uvd_v7_0_ring_emit_ib - execute indirect buffer
 *
 * @ring: amdgpu_ring pointer
 * @ib: indirect buffer to execute
 *
 * Write ring commands to execute the indirect buffer
 */
static void uvd_v7_0_ring_emit_ib(struct amdgpu_ring *ring,
				  struct amdgpu_ib *ib,
1191
				  unsigned vmid, bool ctx_switch)
1192
{
1193 1194
	struct amdgpu_device *adev = ring->adev;

1195 1196
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_RBC_IB_VMID), 0));
1197
	amdgpu_ring_write(ring, vmid);
1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218

	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_RBC_IB_64BIT_BAR_LOW), 0));
	amdgpu_ring_write(ring, lower_32_bits(ib->gpu_addr));
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_LMI_RBC_IB_64BIT_BAR_HIGH), 0));
	amdgpu_ring_write(ring, upper_32_bits(ib->gpu_addr));
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_RBC_IB_SIZE), 0));
	amdgpu_ring_write(ring, ib->length_dw);
}

/**
 * uvd_v7_0_enc_ring_emit_ib - enc execute indirect buffer
 *
 * @ring: amdgpu_ring pointer
 * @ib: indirect buffer to execute
 *
 * Write enc ring commands to execute the indirect buffer
 */
static void uvd_v7_0_enc_ring_emit_ib(struct amdgpu_ring *ring,
1219
		struct amdgpu_ib *ib, unsigned int vmid, bool ctx_switch)
1220 1221
{
	amdgpu_ring_write(ring, HEVC_ENC_CMD_IB_VM);
1222
	amdgpu_ring_write(ring, vmid);
1223 1224 1225 1226 1227
	amdgpu_ring_write(ring, lower_32_bits(ib->gpu_addr));
	amdgpu_ring_write(ring, upper_32_bits(ib->gpu_addr));
	amdgpu_ring_write(ring, ib->length_dw);
}

1228 1229
static void uvd_v7_0_ring_emit_wreg(struct amdgpu_ring *ring,
				    uint32_t reg, uint32_t val)
1230
{
1231 1232
	struct amdgpu_device *adev = ring->adev;

1233 1234
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_DATA0), 0));
1235
	amdgpu_ring_write(ring, reg << 2);
1236 1237
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_DATA1), 0));
1238
	amdgpu_ring_write(ring, val);
1239 1240 1241 1242 1243
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_CMD), 0));
	amdgpu_ring_write(ring, 8);
}

1244 1245
static void uvd_v7_0_ring_emit_reg_wait(struct amdgpu_ring *ring, uint32_t reg,
					uint32_t val, uint32_t mask)
1246
{
1247 1248
	struct amdgpu_device *adev = ring->adev;

1249 1250
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_DATA0), 0));
1251
	amdgpu_ring_write(ring, reg << 2);
1252 1253
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_DATA1), 0));
1254
	amdgpu_ring_write(ring, val);
1255 1256 1257 1258 1259 1260 1261 1262 1263
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GP_SCRATCH8), 0));
	amdgpu_ring_write(ring, mask);
	amdgpu_ring_write(ring,
		PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_GPCOM_VCPU_CMD), 0));
	amdgpu_ring_write(ring, 12);
}

static void uvd_v7_0_ring_emit_vm_flush(struct amdgpu_ring *ring,
1264 1265
					unsigned vmid, unsigned pasid,
					uint64_t pd_addr)
1266
{
1267
	struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
1268
	uint32_t data0, data1, mask;
1269

1270
	pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pasid, pd_addr);
1271

1272
	/* wait for reg writes */
1273
	data0 = hub->ctx0_ptb_addr_lo32 + vmid * 2;
1274 1275
	data1 = lower_32_bits(pd_addr);
	mask = 0xffffffff;
1276
	uvd_v7_0_ring_emit_reg_wait(ring, data0, data1, mask);
1277 1278
}

1279 1280 1281 1282 1283 1284 1285 1286 1287 1288
static void uvd_v7_0_ring_insert_nop(struct amdgpu_ring *ring, uint32_t count)
{
	int i;
	struct amdgpu_device *adev = ring->adev;

	for (i = 0; i < count; i++)
		amdgpu_ring_write(ring, PACKET0(SOC15_REG_OFFSET(UVD, 0, mmUVD_NO_OP), 0));

}

1289 1290 1291 1292 1293
static void uvd_v7_0_enc_ring_insert_end(struct amdgpu_ring *ring)
{
	amdgpu_ring_write(ring, HEVC_ENC_CMD_END);
}

1294 1295 1296 1297 1298 1299 1300 1301 1302 1303
static void uvd_v7_0_enc_ring_emit_reg_wait(struct amdgpu_ring *ring,
					    uint32_t reg, uint32_t val,
					    uint32_t mask)
{
	amdgpu_ring_write(ring, HEVC_ENC_CMD_REG_WAIT);
	amdgpu_ring_write(ring,	reg << 2);
	amdgpu_ring_write(ring, mask);
	amdgpu_ring_write(ring, val);
}

1304
static void uvd_v7_0_enc_ring_emit_vm_flush(struct amdgpu_ring *ring,
1305 1306
					    unsigned int vmid, unsigned pasid,
					    uint64_t pd_addr)
1307
{
1308
	struct amdgpu_vmhub *hub = &ring->adev->vmhub[ring->funcs->vmhub];
1309

1310
	pd_addr = amdgpu_gmc_emit_flush_gpu_tlb(ring, vmid, pasid, pd_addr);
1311

1312
	/* wait for reg writes */
1313 1314
	uvd_v7_0_enc_ring_emit_reg_wait(ring, hub->ctx0_ptb_addr_lo32 + vmid * 2,
					lower_32_bits(pd_addr), 0xffffffff);
1315 1316
}

1317 1318 1319 1320 1321 1322 1323 1324
static void uvd_v7_0_enc_ring_emit_wreg(struct amdgpu_ring *ring,
					uint32_t reg, uint32_t val)
{
	amdgpu_ring_write(ring, HEVC_ENC_CMD_REG_WRITE);
	amdgpu_ring_write(ring,	reg << 2);
	amdgpu_ring_write(ring, val);
}

1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353
#if 0
static bool uvd_v7_0_is_idle(void *handle)
{
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;

	return !(RREG32(mmSRBM_STATUS) & SRBM_STATUS__UVD_BUSY_MASK);
}

static int uvd_v7_0_wait_for_idle(void *handle)
{
	unsigned i;
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;

	for (i = 0; i < adev->usec_timeout; i++) {
		if (uvd_v7_0_is_idle(handle))
			return 0;
	}
	return -ETIMEDOUT;
}

#define AMDGPU_UVD_STATUS_BUSY_MASK    0xfd
static bool uvd_v7_0_check_soft_reset(void *handle)
{
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
	u32 srbm_soft_reset = 0;
	u32 tmp = RREG32(mmSRBM_STATUS);

	if (REG_GET_FIELD(tmp, SRBM_STATUS, UVD_RQ_PENDING) ||
	    REG_GET_FIELD(tmp, SRBM_STATUS, UVD_BUSY) ||
1354 1355
	    (RREG32_SOC15(UVD, 0, mmUVD_STATUS) &
		    AMDGPU_UVD_STATUS_BUSY_MASK))
1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444
		srbm_soft_reset = REG_SET_FIELD(srbm_soft_reset,
				SRBM_SOFT_RESET, SOFT_RESET_UVD, 1);

	if (srbm_soft_reset) {
		adev->uvd.srbm_soft_reset = srbm_soft_reset;
		return true;
	} else {
		adev->uvd.srbm_soft_reset = 0;
		return false;
	}
}

static int uvd_v7_0_pre_soft_reset(void *handle)
{
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;

	if (!adev->uvd.srbm_soft_reset)
		return 0;

	uvd_v7_0_stop(adev);
	return 0;
}

static int uvd_v7_0_soft_reset(void *handle)
{
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
	u32 srbm_soft_reset;

	if (!adev->uvd.srbm_soft_reset)
		return 0;
	srbm_soft_reset = adev->uvd.srbm_soft_reset;

	if (srbm_soft_reset) {
		u32 tmp;

		tmp = RREG32(mmSRBM_SOFT_RESET);
		tmp |= srbm_soft_reset;
		dev_info(adev->dev, "SRBM_SOFT_RESET=0x%08X\n", tmp);
		WREG32(mmSRBM_SOFT_RESET, tmp);
		tmp = RREG32(mmSRBM_SOFT_RESET);

		udelay(50);

		tmp &= ~srbm_soft_reset;
		WREG32(mmSRBM_SOFT_RESET, tmp);
		tmp = RREG32(mmSRBM_SOFT_RESET);

		/* Wait a little for things to settle down */
		udelay(50);
	}

	return 0;
}

static int uvd_v7_0_post_soft_reset(void *handle)
{
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;

	if (!adev->uvd.srbm_soft_reset)
		return 0;

	mdelay(5);

	return uvd_v7_0_start(adev);
}
#endif

static int uvd_v7_0_set_interrupt_state(struct amdgpu_device *adev,
					struct amdgpu_irq_src *source,
					unsigned type,
					enum amdgpu_interrupt_state state)
{
	// TODO
	return 0;
}

static int uvd_v7_0_process_interrupt(struct amdgpu_device *adev,
				      struct amdgpu_irq_src *source,
				      struct amdgpu_iv_entry *entry)
{
	DRM_DEBUG("IH: UVD TRAP\n");
	switch (entry->src_id) {
	case 124:
		amdgpu_fence_process(&adev->uvd.ring);
		break;
	case 119:
		amdgpu_fence_process(&adev->uvd.ring_enc[0]);
		break;
	case 120:
1445 1446
		if (!amdgpu_sriov_vf(adev))
			amdgpu_fence_process(&adev->uvd.ring_enc[1]);
1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461
		break;
	default:
		DRM_ERROR("Unhandled interrupt: %d %d\n",
			  entry->src_id, entry->src_data[0]);
		break;
	}

	return 0;
}

#if 0
static void uvd_v7_0_set_sw_clock_gating(struct amdgpu_device *adev)
{
	uint32_t data, data1, data2, suvd_flags;

1462 1463 1464
	data = RREG32_SOC15(UVD, 0, mmUVD_CGC_CTRL);
	data1 = RREG32_SOC15(UVD, 0, mmUVD_SUVD_CGC_GATE);
	data2 = RREG32_SOC15(UVD, 0, mmUVD_SUVD_CGC_CTRL);
1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507

	data &= ~(UVD_CGC_CTRL__CLK_OFF_DELAY_MASK |
		  UVD_CGC_CTRL__CLK_GATE_DLY_TIMER_MASK);

	suvd_flags = UVD_SUVD_CGC_GATE__SRE_MASK |
		     UVD_SUVD_CGC_GATE__SIT_MASK |
		     UVD_SUVD_CGC_GATE__SMP_MASK |
		     UVD_SUVD_CGC_GATE__SCM_MASK |
		     UVD_SUVD_CGC_GATE__SDB_MASK;

	data |= UVD_CGC_CTRL__DYN_CLOCK_MODE_MASK |
		(1 << REG_FIELD_SHIFT(UVD_CGC_CTRL, CLK_GATE_DLY_TIMER)) |
		(4 << REG_FIELD_SHIFT(UVD_CGC_CTRL, CLK_OFF_DELAY));

	data &= ~(UVD_CGC_CTRL__UDEC_RE_MODE_MASK |
			UVD_CGC_CTRL__UDEC_CM_MODE_MASK |
			UVD_CGC_CTRL__UDEC_IT_MODE_MASK |
			UVD_CGC_CTRL__UDEC_DB_MODE_MASK |
			UVD_CGC_CTRL__UDEC_MP_MODE_MASK |
			UVD_CGC_CTRL__SYS_MODE_MASK |
			UVD_CGC_CTRL__UDEC_MODE_MASK |
			UVD_CGC_CTRL__MPEG2_MODE_MASK |
			UVD_CGC_CTRL__REGS_MODE_MASK |
			UVD_CGC_CTRL__RBC_MODE_MASK |
			UVD_CGC_CTRL__LMI_MC_MODE_MASK |
			UVD_CGC_CTRL__LMI_UMC_MODE_MASK |
			UVD_CGC_CTRL__IDCT_MODE_MASK |
			UVD_CGC_CTRL__MPRD_MODE_MASK |
			UVD_CGC_CTRL__MPC_MODE_MASK |
			UVD_CGC_CTRL__LBSI_MODE_MASK |
			UVD_CGC_CTRL__LRBBM_MODE_MASK |
			UVD_CGC_CTRL__WCB_MODE_MASK |
			UVD_CGC_CTRL__VCPU_MODE_MASK |
			UVD_CGC_CTRL__JPEG_MODE_MASK |
			UVD_CGC_CTRL__JPEG2_MODE_MASK |
			UVD_CGC_CTRL__SCPU_MODE_MASK);
	data2 &= ~(UVD_SUVD_CGC_CTRL__SRE_MODE_MASK |
			UVD_SUVD_CGC_CTRL__SIT_MODE_MASK |
			UVD_SUVD_CGC_CTRL__SMP_MODE_MASK |
			UVD_SUVD_CGC_CTRL__SCM_MODE_MASK |
			UVD_SUVD_CGC_CTRL__SDB_MODE_MASK);
	data1 |= suvd_flags;

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	WREG32_SOC15(UVD, 0, mmUVD_CGC_CTRL, data);
	WREG32_SOC15(UVD, 0, mmUVD_CGC_GATE, 0);
	WREG32_SOC15(UVD, 0, mmUVD_SUVD_CGC_GATE, data1);
	WREG32_SOC15(UVD, 0, mmUVD_SUVD_CGC_CTRL, data2);
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}

static void uvd_v7_0_set_hw_clock_gating(struct amdgpu_device *adev)
{
	uint32_t data, data1, cgc_flags, suvd_flags;

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	data = RREG32_SOC15(UVD, 0, mmUVD_CGC_GATE);
	data1 = RREG32_SOC15(UVD, 0, mmUVD_SUVD_CGC_GATE);
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	cgc_flags = UVD_CGC_GATE__SYS_MASK |
		UVD_CGC_GATE__UDEC_MASK |
		UVD_CGC_GATE__MPEG2_MASK |
		UVD_CGC_GATE__RBC_MASK |
		UVD_CGC_GATE__LMI_MC_MASK |
		UVD_CGC_GATE__IDCT_MASK |
		UVD_CGC_GATE__MPRD_MASK |
		UVD_CGC_GATE__MPC_MASK |
		UVD_CGC_GATE__LBSI_MASK |
		UVD_CGC_GATE__LRBBM_MASK |
		UVD_CGC_GATE__UDEC_RE_MASK |
		UVD_CGC_GATE__UDEC_CM_MASK |
		UVD_CGC_GATE__UDEC_IT_MASK |
		UVD_CGC_GATE__UDEC_DB_MASK |
		UVD_CGC_GATE__UDEC_MP_MASK |
		UVD_CGC_GATE__WCB_MASK |
		UVD_CGC_GATE__VCPU_MASK |
		UVD_CGC_GATE__SCPU_MASK |
		UVD_CGC_GATE__JPEG_MASK |
		UVD_CGC_GATE__JPEG2_MASK;

	suvd_flags = UVD_SUVD_CGC_GATE__SRE_MASK |
				UVD_SUVD_CGC_GATE__SIT_MASK |
				UVD_SUVD_CGC_GATE__SMP_MASK |
				UVD_SUVD_CGC_GATE__SCM_MASK |
				UVD_SUVD_CGC_GATE__SDB_MASK;

	data |= cgc_flags;
	data1 |= suvd_flags;

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	WREG32_SOC15(UVD, 0, mmUVD_CGC_GATE, data);
	WREG32_SOC15(UVD, 0, mmUVD_SUVD_CGC_GATE, data1);
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}

static void uvd_v7_0_set_bypass_mode(struct amdgpu_device *adev, bool enable)
{
	u32 tmp = RREG32_SMC(ixGCK_DFS_BYPASS_CNTL);

	if (enable)
		tmp |= (GCK_DFS_BYPASS_CNTL__BYPASSDCLK_MASK |
			GCK_DFS_BYPASS_CNTL__BYPASSVCLK_MASK);
	else
		tmp &= ~(GCK_DFS_BYPASS_CNTL__BYPASSDCLK_MASK |
			 GCK_DFS_BYPASS_CNTL__BYPASSVCLK_MASK);

	WREG32_SMC(ixGCK_DFS_BYPASS_CNTL, tmp);
}


static int uvd_v7_0_set_clockgating_state(void *handle,
					  enum amd_clockgating_state state)
{
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
	bool enable = (state == AMD_CG_STATE_GATE) ? true : false;

	uvd_v7_0_set_bypass_mode(adev, enable);

	if (!(adev->cg_flags & AMD_CG_SUPPORT_UVD_MGCG))
		return 0;

	if (enable) {
		/* disable HW gating and enable Sw gating */
		uvd_v7_0_set_sw_clock_gating(adev);
	} else {
		/* wait for STATUS to clear */
		if (uvd_v7_0_wait_for_idle(handle))
			return -EBUSY;

		/* enable HW gates because UVD is idle */
		/* uvd_v7_0_set_hw_clock_gating(adev); */
	}

	return 0;
}

static int uvd_v7_0_set_powergating_state(void *handle,
					  enum amd_powergating_state state)
{
	/* This doesn't actually powergate the UVD block.
	 * That's done in the dpm code via the SMC.  This
	 * just re-inits the block as necessary.  The actual
	 * gating still happens in the dpm code.  We should
	 * revisit this when there is a cleaner line between
	 * the smc and the hw blocks
	 */
	struct amdgpu_device *adev = (struct amdgpu_device *)handle;

	if (!(adev->pg_flags & AMD_PG_SUPPORT_UVD))
		return 0;

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	WREG32_SOC15(UVD, 0, mmUVD_POWER_STATUS, UVD_POWER_STATUS__UVD_PG_EN_MASK);
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	if (state == AMD_PG_STATE_GATE) {
		uvd_v7_0_stop(adev);
		return 0;
	} else {
		return uvd_v7_0_start(adev);
	}
}
#endif

static int uvd_v7_0_set_clockgating_state(void *handle,
					  enum amd_clockgating_state state)
{
	/* needed for driver unload*/
	return 0;
}

const struct amd_ip_funcs uvd_v7_0_ip_funcs = {
	.name = "uvd_v7_0",
	.early_init = uvd_v7_0_early_init,
	.late_init = NULL,
	.sw_init = uvd_v7_0_sw_init,
	.sw_fini = uvd_v7_0_sw_fini,
	.hw_init = uvd_v7_0_hw_init,
	.hw_fini = uvd_v7_0_hw_fini,
	.suspend = uvd_v7_0_suspend,
	.resume = uvd_v7_0_resume,
	.is_idle = NULL /* uvd_v7_0_is_idle */,
	.wait_for_idle = NULL /* uvd_v7_0_wait_for_idle */,
	.check_soft_reset = NULL /* uvd_v7_0_check_soft_reset */,
	.pre_soft_reset = NULL /* uvd_v7_0_pre_soft_reset */,
	.soft_reset = NULL /* uvd_v7_0_soft_reset */,
	.post_soft_reset = NULL /* uvd_v7_0_post_soft_reset */,
	.set_clockgating_state = uvd_v7_0_set_clockgating_state,
	.set_powergating_state = NULL /* uvd_v7_0_set_powergating_state */,
};

static const struct amdgpu_ring_funcs uvd_v7_0_ring_vm_funcs = {
	.type = AMDGPU_RING_TYPE_UVD,
	.align_mask = 0xf,
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	.nop = PACKET0(0x81ff, 0),
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	.support_64bit_ptrs = false,
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	.vmhub = AMDGPU_MMHUB,
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	.get_rptr = uvd_v7_0_ring_get_rptr,
	.get_wptr = uvd_v7_0_ring_get_wptr,
	.set_wptr = uvd_v7_0_ring_set_wptr,
	.emit_frame_size =
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		6 + 6 + /* hdp flush / invalidate */
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		SOC15_FLUSH_GPU_TLB_NUM_WREG * 6 +
		SOC15_FLUSH_GPU_TLB_NUM_REG_WAIT * 8 +
		8 + /* uvd_v7_0_ring_emit_vm_flush */
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		14 + 14, /* uvd_v7_0_ring_emit_fence x2 vm fence */
	.emit_ib_size = 8, /* uvd_v7_0_ring_emit_ib */
	.emit_ib = uvd_v7_0_ring_emit_ib,
	.emit_fence = uvd_v7_0_ring_emit_fence,
	.emit_vm_flush = uvd_v7_0_ring_emit_vm_flush,
	.test_ring = uvd_v7_0_ring_test_ring,
	.test_ib = amdgpu_uvd_ring_test_ib,
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	.insert_nop = uvd_v7_0_ring_insert_nop,
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	.pad_ib = amdgpu_ring_generic_pad_ib,
	.begin_use = amdgpu_uvd_ring_begin_use,
	.end_use = amdgpu_uvd_ring_end_use,
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	.emit_wreg = uvd_v7_0_ring_emit_wreg,
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	.emit_reg_wait = uvd_v7_0_ring_emit_reg_wait,
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};

static const struct amdgpu_ring_funcs uvd_v7_0_enc_ring_vm_funcs = {
	.type = AMDGPU_RING_TYPE_UVD_ENC,
	.align_mask = 0x3f,
	.nop = HEVC_ENC_CMD_NO_OP,
	.support_64bit_ptrs = false,
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	.vmhub = AMDGPU_MMHUB,
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	.get_rptr = uvd_v7_0_enc_ring_get_rptr,
	.get_wptr = uvd_v7_0_enc_ring_get_wptr,
	.set_wptr = uvd_v7_0_enc_ring_set_wptr,
	.emit_frame_size =
1688
		3 + 3 + /* hdp flush / invalidate */
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		SOC15_FLUSH_GPU_TLB_NUM_WREG * 3 +
		SOC15_FLUSH_GPU_TLB_NUM_REG_WAIT * 4 +
		4 + /* uvd_v7_0_enc_ring_emit_vm_flush */
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		5 + 5 + /* uvd_v7_0_enc_ring_emit_fence x2 vm fence */
		1, /* uvd_v7_0_enc_ring_insert_end */
	.emit_ib_size = 5, /* uvd_v7_0_enc_ring_emit_ib */
	.emit_ib = uvd_v7_0_enc_ring_emit_ib,
	.emit_fence = uvd_v7_0_enc_ring_emit_fence,
	.emit_vm_flush = uvd_v7_0_enc_ring_emit_vm_flush,
	.test_ring = uvd_v7_0_enc_ring_test_ring,
	.test_ib = uvd_v7_0_enc_ring_test_ib,
	.insert_nop = amdgpu_ring_insert_nop,
	.insert_end = uvd_v7_0_enc_ring_insert_end,
	.pad_ib = amdgpu_ring_generic_pad_ib,
	.begin_use = amdgpu_uvd_ring_begin_use,
	.end_use = amdgpu_uvd_ring_end_use,
1705
	.emit_wreg = uvd_v7_0_enc_ring_emit_wreg,
1706
	.emit_reg_wait = uvd_v7_0_enc_ring_emit_reg_wait,
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};

static void uvd_v7_0_set_ring_funcs(struct amdgpu_device *adev)
{
	adev->uvd.ring.funcs = &uvd_v7_0_ring_vm_funcs;
	DRM_INFO("UVD is enabled in VM mode\n");
}

static void uvd_v7_0_set_enc_ring_funcs(struct amdgpu_device *adev)
{
	int i;

	for (i = 0; i < adev->uvd.num_enc_rings; ++i)
		adev->uvd.ring_enc[i].funcs = &uvd_v7_0_enc_ring_vm_funcs;

	DRM_INFO("UVD ENC is enabled in VM mode\n");
}

static const struct amdgpu_irq_src_funcs uvd_v7_0_irq_funcs = {
	.set = uvd_v7_0_set_interrupt_state,
	.process = uvd_v7_0_process_interrupt,
};

static void uvd_v7_0_set_irq_funcs(struct amdgpu_device *adev)
{
	adev->uvd.irq.num_types = adev->uvd.num_enc_rings + 1;
	adev->uvd.irq.funcs = &uvd_v7_0_irq_funcs;
}

const struct amdgpu_ip_block_version uvd_v7_0_ip_block =
{
		.type = AMD_IP_BLOCK_TYPE_UVD,
		.major = 7,
		.minor = 0,
		.rev = 0,
		.funcs = &uvd_v7_0_ip_funcs,
};