xref: /openbmc/linux/drivers/gpu/drm/amd/amdgpu/vce_v3_0.c (revision 88a907d6)
1aaa36a97SAlex Deucher /*
2aaa36a97SAlex Deucher  * Copyright 2014 Advanced Micro Devices, Inc.
3aaa36a97SAlex Deucher  * All Rights Reserved.
4aaa36a97SAlex Deucher  *
5aaa36a97SAlex Deucher  * Permission is hereby granted, free of charge, to any person obtaining a
6aaa36a97SAlex Deucher  * copy of this software and associated documentation files (the
7aaa36a97SAlex Deucher  * "Software"), to deal in the Software without restriction, including
8aaa36a97SAlex Deucher  * without limitation the rights to use, copy, modify, merge, publish,
9aaa36a97SAlex Deucher  * distribute, sub license, and/or sell copies of the Software, and to
10aaa36a97SAlex Deucher  * permit persons to whom the Software is furnished to do so, subject to
11aaa36a97SAlex Deucher  * the following conditions:
12aaa36a97SAlex Deucher  *
13aaa36a97SAlex Deucher  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
14aaa36a97SAlex Deucher  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
15aaa36a97SAlex Deucher  * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
16aaa36a97SAlex Deucher  * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM,
17aaa36a97SAlex Deucher  * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
18aaa36a97SAlex Deucher  * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
19aaa36a97SAlex Deucher  * USE OR OTHER DEALINGS IN THE SOFTWARE.
20aaa36a97SAlex Deucher  *
21aaa36a97SAlex Deucher  * The above copyright notice and this permission notice (including the
22aaa36a97SAlex Deucher  * next paragraph) shall be included in all copies or substantial portions
23aaa36a97SAlex Deucher  * of the Software.
24aaa36a97SAlex Deucher  *
25aaa36a97SAlex Deucher  * Authors: Christian König <christian.koenig@amd.com>
26aaa36a97SAlex Deucher  */
27aaa36a97SAlex Deucher 
28aaa36a97SAlex Deucher #include <linux/firmware.h>
29aaa36a97SAlex Deucher #include <drm/drmP.h>
30aaa36a97SAlex Deucher #include "amdgpu.h"
31aaa36a97SAlex Deucher #include "amdgpu_vce.h"
32aaa36a97SAlex Deucher #include "vid.h"
33aaa36a97SAlex Deucher #include "vce/vce_3_0_d.h"
34aaa36a97SAlex Deucher #include "vce/vce_3_0_sh_mask.h"
35be4f38e2SAlex Deucher #include "oss/oss_3_0_d.h"
36be4f38e2SAlex Deucher #include "oss/oss_3_0_sh_mask.h"
375bbc553aSLeo Liu #include "gca/gfx_8_0_d.h"
386a585777SAlex Deucher #include "smu/smu_7_1_2_d.h"
396a585777SAlex Deucher #include "smu/smu_7_1_2_sh_mask.h"
405bbc553aSLeo Liu 
415bbc553aSLeo Liu #define GRBM_GFX_INDEX__VCE_INSTANCE__SHIFT	0x04
425bbc553aSLeo Liu #define GRBM_GFX_INDEX__VCE_INSTANCE_MASK	0x10
433c0ff9f1SLeo Liu #define mmVCE_LMI_VCPU_CACHE_40BIT_BAR0	0x8616
443c0ff9f1SLeo Liu #define mmVCE_LMI_VCPU_CACHE_40BIT_BAR1	0x8617
453c0ff9f1SLeo Liu #define mmVCE_LMI_VCPU_CACHE_40BIT_BAR2	0x8618
46aaa36a97SAlex Deucher 
47e9822622SLeo Liu #define VCE_V3_0_FW_SIZE	(384 * 1024)
48e9822622SLeo Liu #define VCE_V3_0_STACK_SIZE	(64 * 1024)
49e9822622SLeo Liu #define VCE_V3_0_DATA_SIZE	((16 * 1024 * AMDGPU_MAX_VCE_HANDLES) + (52 * 1024))
50e9822622SLeo Liu 
515bbc553aSLeo Liu static void vce_v3_0_mc_resume(struct amdgpu_device *adev, int idx);
52aaa36a97SAlex Deucher static void vce_v3_0_set_ring_funcs(struct amdgpu_device *adev);
53aaa36a97SAlex Deucher static void vce_v3_0_set_irq_funcs(struct amdgpu_device *adev);
54aaa36a97SAlex Deucher 
55aaa36a97SAlex Deucher /**
56aaa36a97SAlex Deucher  * vce_v3_0_ring_get_rptr - get read pointer
57aaa36a97SAlex Deucher  *
58aaa36a97SAlex Deucher  * @ring: amdgpu_ring pointer
59aaa36a97SAlex Deucher  *
60aaa36a97SAlex Deucher  * Returns the current hardware read pointer
61aaa36a97SAlex Deucher  */
62aaa36a97SAlex Deucher static uint32_t vce_v3_0_ring_get_rptr(struct amdgpu_ring *ring)
63aaa36a97SAlex Deucher {
64aaa36a97SAlex Deucher 	struct amdgpu_device *adev = ring->adev;
65aaa36a97SAlex Deucher 
66aaa36a97SAlex Deucher 	if (ring == &adev->vce.ring[0])
67aaa36a97SAlex Deucher 		return RREG32(mmVCE_RB_RPTR);
68aaa36a97SAlex Deucher 	else
69aaa36a97SAlex Deucher 		return RREG32(mmVCE_RB_RPTR2);
70aaa36a97SAlex Deucher }
71aaa36a97SAlex Deucher 
72aaa36a97SAlex Deucher /**
73aaa36a97SAlex Deucher  * vce_v3_0_ring_get_wptr - get write pointer
74aaa36a97SAlex Deucher  *
75aaa36a97SAlex Deucher  * @ring: amdgpu_ring pointer
76aaa36a97SAlex Deucher  *
77aaa36a97SAlex Deucher  * Returns the current hardware write pointer
78aaa36a97SAlex Deucher  */
79aaa36a97SAlex Deucher static uint32_t vce_v3_0_ring_get_wptr(struct amdgpu_ring *ring)
80aaa36a97SAlex Deucher {
81aaa36a97SAlex Deucher 	struct amdgpu_device *adev = ring->adev;
82aaa36a97SAlex Deucher 
83aaa36a97SAlex Deucher 	if (ring == &adev->vce.ring[0])
84aaa36a97SAlex Deucher 		return RREG32(mmVCE_RB_WPTR);
85aaa36a97SAlex Deucher 	else
86aaa36a97SAlex Deucher 		return RREG32(mmVCE_RB_WPTR2);
87aaa36a97SAlex Deucher }
88aaa36a97SAlex Deucher 
89aaa36a97SAlex Deucher /**
90aaa36a97SAlex Deucher  * vce_v3_0_ring_set_wptr - set write pointer
91aaa36a97SAlex Deucher  *
92aaa36a97SAlex Deucher  * @ring: amdgpu_ring pointer
93aaa36a97SAlex Deucher  *
94aaa36a97SAlex Deucher  * Commits the write pointer to the hardware
95aaa36a97SAlex Deucher  */
96aaa36a97SAlex Deucher static void vce_v3_0_ring_set_wptr(struct amdgpu_ring *ring)
97aaa36a97SAlex Deucher {
98aaa36a97SAlex Deucher 	struct amdgpu_device *adev = ring->adev;
99aaa36a97SAlex Deucher 
100aaa36a97SAlex Deucher 	if (ring == &adev->vce.ring[0])
101aaa36a97SAlex Deucher 		WREG32(mmVCE_RB_WPTR, ring->wptr);
102aaa36a97SAlex Deucher 	else
103aaa36a97SAlex Deucher 		WREG32(mmVCE_RB_WPTR2, ring->wptr);
104aaa36a97SAlex Deucher }
105aaa36a97SAlex Deucher 
1060689a570SEric Huang static void vce_v3_0_override_vce_clock_gating(struct amdgpu_device *adev, bool override)
1070689a570SEric Huang {
1080689a570SEric Huang 	u32 tmp, data;
1090689a570SEric Huang 
1100689a570SEric Huang 	tmp = data = RREG32(mmVCE_RB_ARB_CTRL);
1110689a570SEric Huang 	if (override)
1120689a570SEric Huang 		data |= VCE_RB_ARB_CTRL__VCE_CGTT_OVERRIDE_MASK;
1130689a570SEric Huang 	else
1140689a570SEric Huang 		data &= ~VCE_RB_ARB_CTRL__VCE_CGTT_OVERRIDE_MASK;
1150689a570SEric Huang 
1160689a570SEric Huang 	if (tmp != data)
1170689a570SEric Huang 		WREG32(mmVCE_RB_ARB_CTRL, data);
1180689a570SEric Huang }
1190689a570SEric Huang 
1200689a570SEric Huang static void vce_v3_0_set_vce_sw_clock_gating(struct amdgpu_device *adev,
1210689a570SEric Huang 					     bool gated)
1220689a570SEric Huang {
1230689a570SEric Huang 	u32 tmp, data;
1240689a570SEric Huang 	/* Set Override to disable Clock Gating */
1250689a570SEric Huang 	vce_v3_0_override_vce_clock_gating(adev, true);
1260689a570SEric Huang 
1270689a570SEric Huang 	if (!gated) {
1280689a570SEric Huang 		/* Force CLOCK ON for VCE_CLOCK_GATING_B,
1290689a570SEric Huang 		 * {*_FORCE_ON, *_FORCE_OFF} = {1, 0}
1300689a570SEric Huang 		 * VREG can be FORCE ON or set to Dynamic, but can't be OFF
1310689a570SEric Huang 		 */
1320689a570SEric Huang 		tmp = data = RREG32(mmVCE_CLOCK_GATING_B);
1330689a570SEric Huang 		data |= 0x1ff;
1340689a570SEric Huang 		data &= ~0xef0000;
1350689a570SEric Huang 		if (tmp != data)
1360689a570SEric Huang 			WREG32(mmVCE_CLOCK_GATING_B, data);
1370689a570SEric Huang 
1380689a570SEric Huang 		/* Force CLOCK ON for VCE_UENC_CLOCK_GATING,
1390689a570SEric Huang 		 * {*_FORCE_ON, *_FORCE_OFF} = {1, 0}
1400689a570SEric Huang 		 */
1410689a570SEric Huang 		tmp = data = RREG32(mmVCE_UENC_CLOCK_GATING);
1420689a570SEric Huang 		data |= 0x3ff000;
1430689a570SEric Huang 		data &= ~0xffc00000;
1440689a570SEric Huang 		if (tmp != data)
1450689a570SEric Huang 			WREG32(mmVCE_UENC_CLOCK_GATING, data);
1460689a570SEric Huang 
1470689a570SEric Huang 		/* set VCE_UENC_CLOCK_GATING_2 */
1480689a570SEric Huang 		tmp = data = RREG32(mmVCE_UENC_CLOCK_GATING_2);
1490689a570SEric Huang 		data |= 0x2;
1500689a570SEric Huang 		data &= ~0x2;
1510689a570SEric Huang 		if (tmp != data)
1520689a570SEric Huang 			WREG32(mmVCE_UENC_CLOCK_GATING_2, data);
1530689a570SEric Huang 
1540689a570SEric Huang 		/* Force CLOCK ON for VCE_UENC_REG_CLOCK_GATING */
1550689a570SEric Huang 		tmp = data = RREG32(mmVCE_UENC_REG_CLOCK_GATING);
1560689a570SEric Huang 		data |= 0x37f;
1570689a570SEric Huang 		if (tmp != data)
1580689a570SEric Huang 			WREG32(mmVCE_UENC_REG_CLOCK_GATING, data);
1590689a570SEric Huang 
1600689a570SEric Huang 		/* Force VCE_UENC_DMA_DCLK_CTRL Clock ON */
1610689a570SEric Huang 		tmp = data = RREG32(mmVCE_UENC_DMA_DCLK_CTRL);
1620689a570SEric Huang 		data |= VCE_UENC_DMA_DCLK_CTRL__WRDMCLK_FORCEON_MASK |
1630689a570SEric Huang 				VCE_UENC_DMA_DCLK_CTRL__RDDMCLK_FORCEON_MASK |
1640689a570SEric Huang 				VCE_UENC_DMA_DCLK_CTRL__REGCLK_FORCEON_MASK  |
1650689a570SEric Huang 				0x8;
1660689a570SEric Huang 		if (tmp != data)
1670689a570SEric Huang 			WREG32(mmVCE_UENC_DMA_DCLK_CTRL, data);
1680689a570SEric Huang 	} else {
1690689a570SEric Huang 		/* Force CLOCK OFF for VCE_CLOCK_GATING_B,
1700689a570SEric Huang 		 * {*, *_FORCE_OFF} = {*, 1}
1710689a570SEric Huang 		 * set VREG to Dynamic, as it can't be OFF
1720689a570SEric Huang 		 */
1730689a570SEric Huang 		tmp = data = RREG32(mmVCE_CLOCK_GATING_B);
1740689a570SEric Huang 		data &= ~0x80010;
1750689a570SEric Huang 		data |= 0xe70008;
1760689a570SEric Huang 		if (tmp != data)
1770689a570SEric Huang 			WREG32(mmVCE_CLOCK_GATING_B, data);
1780689a570SEric Huang 		/* Force CLOCK OFF for VCE_UENC_CLOCK_GATING,
1790689a570SEric Huang 		 * Force ClOCK OFF takes precedent over Force CLOCK ON setting.
1800689a570SEric Huang 		 * {*_FORCE_ON, *_FORCE_OFF} = {*, 1}
1810689a570SEric Huang 		 */
1820689a570SEric Huang 		tmp = data = RREG32(mmVCE_UENC_CLOCK_GATING);
1830689a570SEric Huang 		data |= 0xffc00000;
1840689a570SEric Huang 		if (tmp != data)
1850689a570SEric Huang 			WREG32(mmVCE_UENC_CLOCK_GATING, data);
1860689a570SEric Huang 		/* Set VCE_UENC_CLOCK_GATING_2 */
1870689a570SEric Huang 		tmp = data = RREG32(mmVCE_UENC_CLOCK_GATING_2);
1880689a570SEric Huang 		data |= 0x10000;
1890689a570SEric Huang 		if (tmp != data)
1900689a570SEric Huang 			WREG32(mmVCE_UENC_CLOCK_GATING_2, data);
1910689a570SEric Huang 		/* Set VCE_UENC_REG_CLOCK_GATING to dynamic */
1920689a570SEric Huang 		tmp = data = RREG32(mmVCE_UENC_REG_CLOCK_GATING);
1930689a570SEric Huang 		data &= ~0xffc00000;
1940689a570SEric Huang 		if (tmp != data)
1950689a570SEric Huang 			WREG32(mmVCE_UENC_REG_CLOCK_GATING, data);
1960689a570SEric Huang 		/* Set VCE_UENC_DMA_DCLK_CTRL CG always in dynamic mode */
1970689a570SEric Huang 		tmp = data = RREG32(mmVCE_UENC_DMA_DCLK_CTRL);
1980689a570SEric Huang 		data &= ~(VCE_UENC_DMA_DCLK_CTRL__WRDMCLK_FORCEON_MASK |
1990689a570SEric Huang 				VCE_UENC_DMA_DCLK_CTRL__RDDMCLK_FORCEON_MASK |
2000689a570SEric Huang 				VCE_UENC_DMA_DCLK_CTRL__REGCLK_FORCEON_MASK  |
2010689a570SEric Huang 				0x8);
2020689a570SEric Huang 		if (tmp != data)
2030689a570SEric Huang 			WREG32(mmVCE_UENC_DMA_DCLK_CTRL, data);
2040689a570SEric Huang 	}
2050689a570SEric Huang 	vce_v3_0_override_vce_clock_gating(adev, false);
2060689a570SEric Huang }
2070689a570SEric Huang 
208aaa36a97SAlex Deucher /**
209aaa36a97SAlex Deucher  * vce_v3_0_start - start VCE block
210aaa36a97SAlex Deucher  *
211aaa36a97SAlex Deucher  * @adev: amdgpu_device pointer
212aaa36a97SAlex Deucher  *
213aaa36a97SAlex Deucher  * Setup and start the VCE block
214aaa36a97SAlex Deucher  */
215aaa36a97SAlex Deucher static int vce_v3_0_start(struct amdgpu_device *adev)
216aaa36a97SAlex Deucher {
217aaa36a97SAlex Deucher 	struct amdgpu_ring *ring;
2185bbc553aSLeo Liu 	int idx, i, j, r;
219aaa36a97SAlex Deucher 
2205bbc553aSLeo Liu 	mutex_lock(&adev->grbm_idx_mutex);
2215bbc553aSLeo Liu 	for (idx = 0; idx < 2; ++idx) {
2226a585777SAlex Deucher 
2236a585777SAlex Deucher 		if (adev->vce.harvest_config & (1 << idx))
2246a585777SAlex Deucher 			continue;
2256a585777SAlex Deucher 
2265bbc553aSLeo Liu 		if (idx == 0)
2275bbc553aSLeo Liu 			WREG32_P(mmGRBM_GFX_INDEX, 0,
2285bbc553aSLeo Liu 				~GRBM_GFX_INDEX__VCE_INSTANCE_MASK);
2295bbc553aSLeo Liu 		else
2305bbc553aSLeo Liu 			WREG32_P(mmGRBM_GFX_INDEX,
2315bbc553aSLeo Liu 				GRBM_GFX_INDEX__VCE_INSTANCE_MASK,
2325bbc553aSLeo Liu 				~GRBM_GFX_INDEX__VCE_INSTANCE_MASK);
2335bbc553aSLeo Liu 
2345bbc553aSLeo Liu 		vce_v3_0_mc_resume(adev, idx);
235aaa36a97SAlex Deucher 
236aaa36a97SAlex Deucher 		/* set BUSY flag */
237aaa36a97SAlex Deucher 		WREG32_P(mmVCE_STATUS, 1, ~1);
2383c0ff9f1SLeo Liu 		if (adev->asic_type >= CHIP_STONEY)
2393c0ff9f1SLeo Liu 			WREG32_P(mmVCE_VCPU_CNTL, 1, ~0x200001);
2403c0ff9f1SLeo Liu 		else
2415bbc553aSLeo Liu 			WREG32_P(mmVCE_VCPU_CNTL, VCE_VCPU_CNTL__CLK_EN_MASK,
2425bbc553aSLeo Liu 				~VCE_VCPU_CNTL__CLK_EN_MASK);
243aaa36a97SAlex Deucher 
244aaa36a97SAlex Deucher 		WREG32_P(mmVCE_SOFT_RESET,
245aaa36a97SAlex Deucher 			 VCE_SOFT_RESET__ECPU_SOFT_RESET_MASK,
246aaa36a97SAlex Deucher 			 ~VCE_SOFT_RESET__ECPU_SOFT_RESET_MASK);
247aaa36a97SAlex Deucher 
248aaa36a97SAlex Deucher 		mdelay(100);
249aaa36a97SAlex Deucher 
2505bbc553aSLeo Liu 		WREG32_P(mmVCE_SOFT_RESET, 0,
2515bbc553aSLeo Liu 			~VCE_SOFT_RESET__ECPU_SOFT_RESET_MASK);
252aaa36a97SAlex Deucher 
253aaa36a97SAlex Deucher 		for (i = 0; i < 10; ++i) {
254aaa36a97SAlex Deucher 			uint32_t status;
255aaa36a97SAlex Deucher 			for (j = 0; j < 100; ++j) {
256aaa36a97SAlex Deucher 				status = RREG32(mmVCE_STATUS);
257aaa36a97SAlex Deucher 				if (status & 2)
258aaa36a97SAlex Deucher 					break;
259aaa36a97SAlex Deucher 				mdelay(10);
260aaa36a97SAlex Deucher 			}
261aaa36a97SAlex Deucher 			r = 0;
262aaa36a97SAlex Deucher 			if (status & 2)
263aaa36a97SAlex Deucher 				break;
264aaa36a97SAlex Deucher 
265aaa36a97SAlex Deucher 			DRM_ERROR("VCE not responding, trying to reset the ECPU!!!\n");
2665bbc553aSLeo Liu 			WREG32_P(mmVCE_SOFT_RESET,
2675bbc553aSLeo Liu 				VCE_SOFT_RESET__ECPU_SOFT_RESET_MASK,
268aaa36a97SAlex Deucher 				~VCE_SOFT_RESET__ECPU_SOFT_RESET_MASK);
269aaa36a97SAlex Deucher 			mdelay(10);
2705bbc553aSLeo Liu 			WREG32_P(mmVCE_SOFT_RESET, 0,
2715bbc553aSLeo Liu 				~VCE_SOFT_RESET__ECPU_SOFT_RESET_MASK);
272aaa36a97SAlex Deucher 			mdelay(10);
273aaa36a97SAlex Deucher 			r = -1;
274aaa36a97SAlex Deucher 		}
275aaa36a97SAlex Deucher 
276aaa36a97SAlex Deucher 		/* clear BUSY flag */
277aaa36a97SAlex Deucher 		WREG32_P(mmVCE_STATUS, 0, ~1);
278aaa36a97SAlex Deucher 
2790689a570SEric Huang 		/* Set Clock-Gating off */
280e3b04bc7SAlex Deucher 		if (adev->cg_flags & AMD_CG_SUPPORT_VCE_MGCG)
2810689a570SEric Huang 			vce_v3_0_set_vce_sw_clock_gating(adev, false);
2820689a570SEric Huang 
283aaa36a97SAlex Deucher 		if (r) {
284aaa36a97SAlex Deucher 			DRM_ERROR("VCE not responding, giving up!!!\n");
2855bbc553aSLeo Liu 			mutex_unlock(&adev->grbm_idx_mutex);
286aaa36a97SAlex Deucher 			return r;
287aaa36a97SAlex Deucher 		}
2885bbc553aSLeo Liu 	}
2895bbc553aSLeo Liu 
2905bbc553aSLeo Liu 	WREG32_P(mmGRBM_GFX_INDEX, 0, ~GRBM_GFX_INDEX__VCE_INSTANCE_MASK);
2915bbc553aSLeo Liu 	mutex_unlock(&adev->grbm_idx_mutex);
2925bbc553aSLeo Liu 
2935bbc553aSLeo Liu 	ring = &adev->vce.ring[0];
2945bbc553aSLeo Liu 	WREG32(mmVCE_RB_RPTR, ring->wptr);
2955bbc553aSLeo Liu 	WREG32(mmVCE_RB_WPTR, ring->wptr);
2965bbc553aSLeo Liu 	WREG32(mmVCE_RB_BASE_LO, ring->gpu_addr);
2975bbc553aSLeo Liu 	WREG32(mmVCE_RB_BASE_HI, upper_32_bits(ring->gpu_addr));
2985bbc553aSLeo Liu 	WREG32(mmVCE_RB_SIZE, ring->ring_size / 4);
2995bbc553aSLeo Liu 
3005bbc553aSLeo Liu 	ring = &adev->vce.ring[1];
3015bbc553aSLeo Liu 	WREG32(mmVCE_RB_RPTR2, ring->wptr);
3025bbc553aSLeo Liu 	WREG32(mmVCE_RB_WPTR2, ring->wptr);
3035bbc553aSLeo Liu 	WREG32(mmVCE_RB_BASE_LO2, ring->gpu_addr);
3045bbc553aSLeo Liu 	WREG32(mmVCE_RB_BASE_HI2, upper_32_bits(ring->gpu_addr));
3055bbc553aSLeo Liu 	WREG32(mmVCE_RB_SIZE2, ring->ring_size / 4);
306aaa36a97SAlex Deucher 
307aaa36a97SAlex Deucher 	return 0;
308aaa36a97SAlex Deucher }
309aaa36a97SAlex Deucher 
3106a585777SAlex Deucher #define ixVCE_HARVEST_FUSE_MACRO__ADDRESS     0xC0014074
3116a585777SAlex Deucher #define VCE_HARVEST_FUSE_MACRO__SHIFT       27
3126a585777SAlex Deucher #define VCE_HARVEST_FUSE_MACRO__MASK        0x18000000
3136a585777SAlex Deucher 
3146a585777SAlex Deucher static unsigned vce_v3_0_get_harvest_config(struct amdgpu_device *adev)
3156a585777SAlex Deucher {
3166a585777SAlex Deucher 	u32 tmp;
3176a585777SAlex Deucher 
3182cc0c0b5SFlora Cui 	/* Fiji, Stoney, Polaris10, Polaris11 are single pipe */
319cfaba566SSamuel Li 	if ((adev->asic_type == CHIP_FIJI) ||
3201b4eeea5SSonny Jiang 	    (adev->asic_type == CHIP_STONEY) ||
3212cc0c0b5SFlora Cui 	    (adev->asic_type == CHIP_POLARIS10) ||
3222cc0c0b5SFlora Cui 	    (adev->asic_type == CHIP_POLARIS11))
3231dab5f06STom St Denis 		return AMDGPU_VCE_HARVEST_VCE1;
324188a9bcdSAlex Deucher 
325188a9bcdSAlex Deucher 	/* Tonga and CZ are dual or single pipe */
3262f7d10b3SJammy Zhou 	if (adev->flags & AMD_IS_APU)
3276a585777SAlex Deucher 		tmp = (RREG32_SMC(ixVCE_HARVEST_FUSE_MACRO__ADDRESS) &
3286a585777SAlex Deucher 		       VCE_HARVEST_FUSE_MACRO__MASK) >>
3296a585777SAlex Deucher 			VCE_HARVEST_FUSE_MACRO__SHIFT;
3306a585777SAlex Deucher 	else
3316a585777SAlex Deucher 		tmp = (RREG32_SMC(ixCC_HARVEST_FUSES) &
3326a585777SAlex Deucher 		       CC_HARVEST_FUSES__VCE_DISABLE_MASK) >>
3336a585777SAlex Deucher 			CC_HARVEST_FUSES__VCE_DISABLE__SHIFT;
3346a585777SAlex Deucher 
3356a585777SAlex Deucher 	switch (tmp) {
3366a585777SAlex Deucher 	case 1:
3371dab5f06STom St Denis 		return AMDGPU_VCE_HARVEST_VCE0;
3386a585777SAlex Deucher 	case 2:
3391dab5f06STom St Denis 		return AMDGPU_VCE_HARVEST_VCE1;
3406a585777SAlex Deucher 	case 3:
3411dab5f06STom St Denis 		return AMDGPU_VCE_HARVEST_VCE0 | AMDGPU_VCE_HARVEST_VCE1;
3426a585777SAlex Deucher 	default:
3431dab5f06STom St Denis 		return 0;
3446a585777SAlex Deucher 	}
3456a585777SAlex Deucher }
3466a585777SAlex Deucher 
3475fc3aeebSyanyang1 static int vce_v3_0_early_init(void *handle)
348aaa36a97SAlex Deucher {
3495fc3aeebSyanyang1 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
3505fc3aeebSyanyang1 
3516a585777SAlex Deucher 	adev->vce.harvest_config = vce_v3_0_get_harvest_config(adev);
3526a585777SAlex Deucher 
3536a585777SAlex Deucher 	if ((adev->vce.harvest_config &
3546a585777SAlex Deucher 	     (AMDGPU_VCE_HARVEST_VCE0 | AMDGPU_VCE_HARVEST_VCE1)) ==
3556a585777SAlex Deucher 	    (AMDGPU_VCE_HARVEST_VCE0 | AMDGPU_VCE_HARVEST_VCE1))
3566a585777SAlex Deucher 		return -ENOENT;
3576a585777SAlex Deucher 
358aaa36a97SAlex Deucher 	vce_v3_0_set_ring_funcs(adev);
359aaa36a97SAlex Deucher 	vce_v3_0_set_irq_funcs(adev);
360aaa36a97SAlex Deucher 
361aaa36a97SAlex Deucher 	return 0;
362aaa36a97SAlex Deucher }
363aaa36a97SAlex Deucher 
3645fc3aeebSyanyang1 static int vce_v3_0_sw_init(void *handle)
365aaa36a97SAlex Deucher {
3665fc3aeebSyanyang1 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
367aaa36a97SAlex Deucher 	struct amdgpu_ring *ring;
368aaa36a97SAlex Deucher 	int r;
369aaa36a97SAlex Deucher 
370aaa36a97SAlex Deucher 	/* VCE */
371aaa36a97SAlex Deucher 	r = amdgpu_irq_add_id(adev, 167, &adev->vce.irq);
372aaa36a97SAlex Deucher 	if (r)
373aaa36a97SAlex Deucher 		return r;
374aaa36a97SAlex Deucher 
375e9822622SLeo Liu 	r = amdgpu_vce_sw_init(adev, VCE_V3_0_FW_SIZE +
376e9822622SLeo Liu 		(VCE_V3_0_STACK_SIZE + VCE_V3_0_DATA_SIZE) * 2);
377aaa36a97SAlex Deucher 	if (r)
378aaa36a97SAlex Deucher 		return r;
379aaa36a97SAlex Deucher 
380aaa36a97SAlex Deucher 	r = amdgpu_vce_resume(adev);
381aaa36a97SAlex Deucher 	if (r)
382aaa36a97SAlex Deucher 		return r;
383aaa36a97SAlex Deucher 
384aaa36a97SAlex Deucher 	ring = &adev->vce.ring[0];
385aaa36a97SAlex Deucher 	sprintf(ring->name, "vce0");
386a3f1cf35SChristian König 	r = amdgpu_ring_init(adev, ring, 512, VCE_CMD_NO_OP, 0xf,
387aaa36a97SAlex Deucher 			     &adev->vce.irq, 0, AMDGPU_RING_TYPE_VCE);
388aaa36a97SAlex Deucher 	if (r)
389aaa36a97SAlex Deucher 		return r;
390aaa36a97SAlex Deucher 
391aaa36a97SAlex Deucher 	ring = &adev->vce.ring[1];
392aaa36a97SAlex Deucher 	sprintf(ring->name, "vce1");
393a3f1cf35SChristian König 	r = amdgpu_ring_init(adev, ring, 512, VCE_CMD_NO_OP, 0xf,
394aaa36a97SAlex Deucher 			     &adev->vce.irq, 0, AMDGPU_RING_TYPE_VCE);
395aaa36a97SAlex Deucher 	if (r)
396aaa36a97SAlex Deucher 		return r;
397aaa36a97SAlex Deucher 
398aaa36a97SAlex Deucher 	return r;
399aaa36a97SAlex Deucher }
400aaa36a97SAlex Deucher 
4015fc3aeebSyanyang1 static int vce_v3_0_sw_fini(void *handle)
402aaa36a97SAlex Deucher {
403aaa36a97SAlex Deucher 	int r;
4045fc3aeebSyanyang1 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
405aaa36a97SAlex Deucher 
406aaa36a97SAlex Deucher 	r = amdgpu_vce_suspend(adev);
407aaa36a97SAlex Deucher 	if (r)
408aaa36a97SAlex Deucher 		return r;
409aaa36a97SAlex Deucher 
410aaa36a97SAlex Deucher 	r = amdgpu_vce_sw_fini(adev);
411aaa36a97SAlex Deucher 	if (r)
412aaa36a97SAlex Deucher 		return r;
413aaa36a97SAlex Deucher 
414aaa36a97SAlex Deucher 	return r;
415aaa36a97SAlex Deucher }
416aaa36a97SAlex Deucher 
4175fc3aeebSyanyang1 static int vce_v3_0_hw_init(void *handle)
418aaa36a97SAlex Deucher {
419691ca86aSTom St Denis 	int r, i;
4205fc3aeebSyanyang1 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
421aaa36a97SAlex Deucher 
422aaa36a97SAlex Deucher 	r = vce_v3_0_start(adev);
423aaa36a97SAlex Deucher 	if (r)
424aaa36a97SAlex Deucher 		return r;
425aaa36a97SAlex Deucher 
426691ca86aSTom St Denis 	adev->vce.ring[0].ready = false;
427691ca86aSTom St Denis 	adev->vce.ring[1].ready = false;
428aaa36a97SAlex Deucher 
429691ca86aSTom St Denis 	for (i = 0; i < 2; i++) {
430691ca86aSTom St Denis 		r = amdgpu_ring_test_ring(&adev->vce.ring[i]);
431691ca86aSTom St Denis 		if (r)
432aaa36a97SAlex Deucher 			return r;
433691ca86aSTom St Denis 		else
434691ca86aSTom St Denis 			adev->vce.ring[i].ready = true;
435aaa36a97SAlex Deucher 	}
436aaa36a97SAlex Deucher 
437aaa36a97SAlex Deucher 	DRM_INFO("VCE initialized successfully.\n");
438aaa36a97SAlex Deucher 
439aaa36a97SAlex Deucher 	return 0;
440aaa36a97SAlex Deucher }
441aaa36a97SAlex Deucher 
4425fc3aeebSyanyang1 static int vce_v3_0_hw_fini(void *handle)
443aaa36a97SAlex Deucher {
444aaa36a97SAlex Deucher 	return 0;
445aaa36a97SAlex Deucher }
446aaa36a97SAlex Deucher 
4475fc3aeebSyanyang1 static int vce_v3_0_suspend(void *handle)
448aaa36a97SAlex Deucher {
449aaa36a97SAlex Deucher 	int r;
4505fc3aeebSyanyang1 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
451aaa36a97SAlex Deucher 
452aaa36a97SAlex Deucher 	r = vce_v3_0_hw_fini(adev);
453aaa36a97SAlex Deucher 	if (r)
454aaa36a97SAlex Deucher 		return r;
455aaa36a97SAlex Deucher 
456aaa36a97SAlex Deucher 	r = amdgpu_vce_suspend(adev);
457aaa36a97SAlex Deucher 	if (r)
458aaa36a97SAlex Deucher 		return r;
459aaa36a97SAlex Deucher 
460aaa36a97SAlex Deucher 	return r;
461aaa36a97SAlex Deucher }
462aaa36a97SAlex Deucher 
4635fc3aeebSyanyang1 static int vce_v3_0_resume(void *handle)
464aaa36a97SAlex Deucher {
465aaa36a97SAlex Deucher 	int r;
4665fc3aeebSyanyang1 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
467aaa36a97SAlex Deucher 
468aaa36a97SAlex Deucher 	r = amdgpu_vce_resume(adev);
469aaa36a97SAlex Deucher 	if (r)
470aaa36a97SAlex Deucher 		return r;
471aaa36a97SAlex Deucher 
472aaa36a97SAlex Deucher 	r = vce_v3_0_hw_init(adev);
473aaa36a97SAlex Deucher 	if (r)
474aaa36a97SAlex Deucher 		return r;
475aaa36a97SAlex Deucher 
476aaa36a97SAlex Deucher 	return r;
477aaa36a97SAlex Deucher }
478aaa36a97SAlex Deucher 
4795bbc553aSLeo Liu static void vce_v3_0_mc_resume(struct amdgpu_device *adev, int idx)
480aaa36a97SAlex Deucher {
481aaa36a97SAlex Deucher 	uint32_t offset, size;
482aaa36a97SAlex Deucher 
483aaa36a97SAlex Deucher 	WREG32_P(mmVCE_CLOCK_GATING_A, 0, ~(1 << 16));
484aaa36a97SAlex Deucher 	WREG32_P(mmVCE_UENC_CLOCK_GATING, 0x1FF000, ~0xFF9FF000);
485aaa36a97SAlex Deucher 	WREG32_P(mmVCE_UENC_REG_CLOCK_GATING, 0x3F, ~0x3F);
486aaa36a97SAlex Deucher 	WREG32(mmVCE_CLOCK_GATING_B, 0xf7);
487aaa36a97SAlex Deucher 
488aaa36a97SAlex Deucher 	WREG32(mmVCE_LMI_CTRL, 0x00398000);
489aaa36a97SAlex Deucher 	WREG32_P(mmVCE_LMI_CACHE_CTRL, 0x0, ~0x1);
490aaa36a97SAlex Deucher 	WREG32(mmVCE_LMI_SWAP_CNTL, 0);
491aaa36a97SAlex Deucher 	WREG32(mmVCE_LMI_SWAP_CNTL1, 0);
492aaa36a97SAlex Deucher 	WREG32(mmVCE_LMI_VM_CTRL, 0);
4933c0ff9f1SLeo Liu 	if (adev->asic_type >= CHIP_STONEY) {
4943c0ff9f1SLeo Liu 		WREG32(mmVCE_LMI_VCPU_CACHE_40BIT_BAR0, (adev->vce.gpu_addr >> 8));
4953c0ff9f1SLeo Liu 		WREG32(mmVCE_LMI_VCPU_CACHE_40BIT_BAR1, (adev->vce.gpu_addr >> 8));
4963c0ff9f1SLeo Liu 		WREG32(mmVCE_LMI_VCPU_CACHE_40BIT_BAR2, (adev->vce.gpu_addr >> 8));
4973c0ff9f1SLeo Liu 	} else
498aaa36a97SAlex Deucher 		WREG32(mmVCE_LMI_VCPU_CACHE_40BIT_BAR, (adev->vce.gpu_addr >> 8));
499aaa36a97SAlex Deucher 	offset = AMDGPU_VCE_FIRMWARE_OFFSET;
500e9822622SLeo Liu 	size = VCE_V3_0_FW_SIZE;
501aaa36a97SAlex Deucher 	WREG32(mmVCE_VCPU_CACHE_OFFSET0, offset & 0x7fffffff);
502aaa36a97SAlex Deucher 	WREG32(mmVCE_VCPU_CACHE_SIZE0, size);
503aaa36a97SAlex Deucher 
5045bbc553aSLeo Liu 	if (idx == 0) {
505aaa36a97SAlex Deucher 		offset += size;
506e9822622SLeo Liu 		size = VCE_V3_0_STACK_SIZE;
507aaa36a97SAlex Deucher 		WREG32(mmVCE_VCPU_CACHE_OFFSET1, offset & 0x7fffffff);
508aaa36a97SAlex Deucher 		WREG32(mmVCE_VCPU_CACHE_SIZE1, size);
509aaa36a97SAlex Deucher 		offset += size;
510e9822622SLeo Liu 		size = VCE_V3_0_DATA_SIZE;
511aaa36a97SAlex Deucher 		WREG32(mmVCE_VCPU_CACHE_OFFSET2, offset & 0x7fffffff);
512aaa36a97SAlex Deucher 		WREG32(mmVCE_VCPU_CACHE_SIZE2, size);
5135bbc553aSLeo Liu 	} else {
5145bbc553aSLeo Liu 		offset += size + VCE_V3_0_STACK_SIZE + VCE_V3_0_DATA_SIZE;
5155bbc553aSLeo Liu 		size = VCE_V3_0_STACK_SIZE;
5165bbc553aSLeo Liu 		WREG32(mmVCE_VCPU_CACHE_OFFSET1, offset & 0xfffffff);
5175bbc553aSLeo Liu 		WREG32(mmVCE_VCPU_CACHE_SIZE1, size);
5185bbc553aSLeo Liu 		offset += size;
5195bbc553aSLeo Liu 		size = VCE_V3_0_DATA_SIZE;
5205bbc553aSLeo Liu 		WREG32(mmVCE_VCPU_CACHE_OFFSET2, offset & 0xfffffff);
5215bbc553aSLeo Liu 		WREG32(mmVCE_VCPU_CACHE_SIZE2, size);
5225bbc553aSLeo Liu 	}
523aaa36a97SAlex Deucher 
524aaa36a97SAlex Deucher 	WREG32_P(mmVCE_LMI_CTRL2, 0x0, ~0x100);
525aaa36a97SAlex Deucher 
526aaa36a97SAlex Deucher 	WREG32_P(mmVCE_SYS_INT_EN, VCE_SYS_INT_EN__VCE_SYS_INT_TRAP_INTERRUPT_EN_MASK,
527aaa36a97SAlex Deucher 		 ~VCE_SYS_INT_EN__VCE_SYS_INT_TRAP_INTERRUPT_EN_MASK);
528aaa36a97SAlex Deucher }
529aaa36a97SAlex Deucher 
5305fc3aeebSyanyang1 static bool vce_v3_0_is_idle(void *handle)
531aaa36a97SAlex Deucher {
5325fc3aeebSyanyang1 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
533be4f38e2SAlex Deucher 	u32 mask = 0;
5345fc3aeebSyanyang1 
53574af1276STom St Denis 	mask |= (adev->vce.harvest_config & AMDGPU_VCE_HARVEST_VCE0) ? 0 : SRBM_STATUS2__VCE0_BUSY_MASK;
53674af1276STom St Denis 	mask |= (adev->vce.harvest_config & AMDGPU_VCE_HARVEST_VCE1) ? 0 : SRBM_STATUS2__VCE1_BUSY_MASK;
537be4f38e2SAlex Deucher 
538be4f38e2SAlex Deucher 	return !(RREG32(mmSRBM_STATUS2) & mask);
539aaa36a97SAlex Deucher }
540aaa36a97SAlex Deucher 
5415fc3aeebSyanyang1 static int vce_v3_0_wait_for_idle(void *handle)
542aaa36a97SAlex Deucher {
543aaa36a97SAlex Deucher 	unsigned i;
5445fc3aeebSyanyang1 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
545be4f38e2SAlex Deucher 
54692988e60STom St Denis 	for (i = 0; i < adev->usec_timeout; i++)
54792988e60STom St Denis 		if (vce_v3_0_is_idle(handle))
548aaa36a97SAlex Deucher 			return 0;
54992988e60STom St Denis 
550aaa36a97SAlex Deucher 	return -ETIMEDOUT;
551aaa36a97SAlex Deucher }
552aaa36a97SAlex Deucher 
5535fc3aeebSyanyang1 static int vce_v3_0_soft_reset(void *handle)
554aaa36a97SAlex Deucher {
5555fc3aeebSyanyang1 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
556be4f38e2SAlex Deucher 	u32 mask = 0;
5575fc3aeebSyanyang1 
55874af1276STom St Denis 	mask |= (adev->vce.harvest_config & AMDGPU_VCE_HARVEST_VCE0) ? 0 : SRBM_SOFT_RESET__SOFT_RESET_VCE0_MASK;
55974af1276STom St Denis 	mask |= (adev->vce.harvest_config & AMDGPU_VCE_HARVEST_VCE1) ? 0 : SRBM_SOFT_RESET__SOFT_RESET_VCE1_MASK;
560be4f38e2SAlex Deucher 
561be4f38e2SAlex Deucher 	WREG32_P(mmSRBM_SOFT_RESET, mask,
562be4f38e2SAlex Deucher 		 ~(SRBM_SOFT_RESET__SOFT_RESET_VCE0_MASK |
563be4f38e2SAlex Deucher 		   SRBM_SOFT_RESET__SOFT_RESET_VCE1_MASK));
564aaa36a97SAlex Deucher 	mdelay(5);
565aaa36a97SAlex Deucher 
566aaa36a97SAlex Deucher 	return vce_v3_0_start(adev);
567aaa36a97SAlex Deucher }
568aaa36a97SAlex Deucher 
569aaa36a97SAlex Deucher static int vce_v3_0_set_interrupt_state(struct amdgpu_device *adev,
570aaa36a97SAlex Deucher 					struct amdgpu_irq_src *source,
571aaa36a97SAlex Deucher 					unsigned type,
572aaa36a97SAlex Deucher 					enum amdgpu_interrupt_state state)
573aaa36a97SAlex Deucher {
574aaa36a97SAlex Deucher 	uint32_t val = 0;
575aaa36a97SAlex Deucher 
576aaa36a97SAlex Deucher 	if (state == AMDGPU_IRQ_STATE_ENABLE)
577aaa36a97SAlex Deucher 		val |= VCE_SYS_INT_EN__VCE_SYS_INT_TRAP_INTERRUPT_EN_MASK;
578aaa36a97SAlex Deucher 
579aaa36a97SAlex Deucher 	WREG32_P(mmVCE_SYS_INT_EN, val, ~VCE_SYS_INT_EN__VCE_SYS_INT_TRAP_INTERRUPT_EN_MASK);
580aaa36a97SAlex Deucher 	return 0;
581aaa36a97SAlex Deucher }
582aaa36a97SAlex Deucher 
583aaa36a97SAlex Deucher static int vce_v3_0_process_interrupt(struct amdgpu_device *adev,
584aaa36a97SAlex Deucher 				      struct amdgpu_irq_src *source,
585aaa36a97SAlex Deucher 				      struct amdgpu_iv_entry *entry)
586aaa36a97SAlex Deucher {
587aaa36a97SAlex Deucher 	DRM_DEBUG("IH: VCE\n");
588d6c29c30SLeo Liu 
589d6c29c30SLeo Liu 	WREG32_P(mmVCE_SYS_INT_STATUS,
590d6c29c30SLeo Liu 		VCE_SYS_INT_STATUS__VCE_SYS_INT_TRAP_INTERRUPT_INT_MASK,
591d6c29c30SLeo Liu 		~VCE_SYS_INT_STATUS__VCE_SYS_INT_TRAP_INTERRUPT_INT_MASK);
592d6c29c30SLeo Liu 
593aaa36a97SAlex Deucher 	switch (entry->src_data) {
594aaa36a97SAlex Deucher 	case 0:
595aaa36a97SAlex Deucher 	case 1:
59681da2edeSTom St Denis 		amdgpu_fence_process(&adev->vce.ring[entry->src_data]);
597aaa36a97SAlex Deucher 		break;
598aaa36a97SAlex Deucher 	default:
599aaa36a97SAlex Deucher 		DRM_ERROR("Unhandled interrupt: %d %d\n",
600aaa36a97SAlex Deucher 			  entry->src_id, entry->src_data);
601aaa36a97SAlex Deucher 		break;
602aaa36a97SAlex Deucher 	}
603aaa36a97SAlex Deucher 
604aaa36a97SAlex Deucher 	return 0;
605aaa36a97SAlex Deucher }
606aaa36a97SAlex Deucher 
6075fc3aeebSyanyang1 static int vce_v3_0_set_clockgating_state(void *handle,
6085fc3aeebSyanyang1 					  enum amd_clockgating_state state)
609aaa36a97SAlex Deucher {
6100689a570SEric Huang 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
6110689a570SEric Huang 	bool enable = (state == AMD_CG_STATE_GATE) ? true : false;
6120689a570SEric Huang 	int i;
6130689a570SEric Huang 
614e3b04bc7SAlex Deucher 	if (!(adev->cg_flags & AMD_CG_SUPPORT_VCE_MGCG))
6150689a570SEric Huang 		return 0;
6160689a570SEric Huang 
6170689a570SEric Huang 	mutex_lock(&adev->grbm_idx_mutex);
6180689a570SEric Huang 	for (i = 0; i < 2; i++) {
6190689a570SEric Huang 		/* Program VCE Instance 0 or 1 if not harvested */
6200689a570SEric Huang 		if (adev->vce.harvest_config & (1 << i))
6210689a570SEric Huang 			continue;
6220689a570SEric Huang 
6230689a570SEric Huang 		if (i == 0)
6240689a570SEric Huang 			WREG32_P(mmGRBM_GFX_INDEX, 0,
6250689a570SEric Huang 					~GRBM_GFX_INDEX__VCE_INSTANCE_MASK);
6260689a570SEric Huang 		else
6270689a570SEric Huang 			WREG32_P(mmGRBM_GFX_INDEX,
6280689a570SEric Huang 					GRBM_GFX_INDEX__VCE_INSTANCE_MASK,
6290689a570SEric Huang 					~GRBM_GFX_INDEX__VCE_INSTANCE_MASK);
6300689a570SEric Huang 
6310689a570SEric Huang 		if (enable) {
6320689a570SEric Huang 			/* initialize VCE_CLOCK_GATING_A: Clock ON/OFF delay */
6330689a570SEric Huang 			uint32_t data = RREG32(mmVCE_CLOCK_GATING_A);
6340689a570SEric Huang 			data &= ~(0xf | 0xff0);
6350689a570SEric Huang 			data |= ((0x0 << 0) | (0x04 << 4));
6360689a570SEric Huang 			WREG32(mmVCE_CLOCK_GATING_A, data);
6370689a570SEric Huang 
6380689a570SEric Huang 			/* initialize VCE_UENC_CLOCK_GATING: Clock ON/OFF delay */
6390689a570SEric Huang 			data = RREG32(mmVCE_UENC_CLOCK_GATING);
6400689a570SEric Huang 			data &= ~(0xf | 0xff0);
6410689a570SEric Huang 			data |= ((0x0 << 0) | (0x04 << 4));
6420689a570SEric Huang 			WREG32(mmVCE_UENC_CLOCK_GATING, data);
6430689a570SEric Huang 		}
6440689a570SEric Huang 
6450689a570SEric Huang 		vce_v3_0_set_vce_sw_clock_gating(adev, enable);
6460689a570SEric Huang 	}
6470689a570SEric Huang 
6480689a570SEric Huang 	WREG32_P(mmGRBM_GFX_INDEX, 0, ~GRBM_GFX_INDEX__VCE_INSTANCE_MASK);
6490689a570SEric Huang 	mutex_unlock(&adev->grbm_idx_mutex);
6500689a570SEric Huang 
651aaa36a97SAlex Deucher 	return 0;
652aaa36a97SAlex Deucher }
653aaa36a97SAlex Deucher 
6545fc3aeebSyanyang1 static int vce_v3_0_set_powergating_state(void *handle,
6555fc3aeebSyanyang1 					  enum amd_powergating_state state)
656aaa36a97SAlex Deucher {
657aaa36a97SAlex Deucher 	/* This doesn't actually powergate the VCE block.
658aaa36a97SAlex Deucher 	 * That's done in the dpm code via the SMC.  This
659aaa36a97SAlex Deucher 	 * just re-inits the block as necessary.  The actual
660aaa36a97SAlex Deucher 	 * gating still happens in the dpm code.  We should
661aaa36a97SAlex Deucher 	 * revisit this when there is a cleaner line between
662aaa36a97SAlex Deucher 	 * the smc and the hw blocks
663aaa36a97SAlex Deucher 	 */
6645fc3aeebSyanyang1 	struct amdgpu_device *adev = (struct amdgpu_device *)handle;
6655fc3aeebSyanyang1 
666e3b04bc7SAlex Deucher 	if (!(adev->pg_flags & AMD_PG_SUPPORT_VCE))
667808a934fSAlex Deucher 		return 0;
668808a934fSAlex Deucher 
6695fc3aeebSyanyang1 	if (state == AMD_PG_STATE_GATE)
670aaa36a97SAlex Deucher 		/* XXX do we need a vce_v3_0_stop()? */
671aaa36a97SAlex Deucher 		return 0;
672aaa36a97SAlex Deucher 	else
673aaa36a97SAlex Deucher 		return vce_v3_0_start(adev);
674aaa36a97SAlex Deucher }
675aaa36a97SAlex Deucher 
6765fc3aeebSyanyang1 const struct amd_ip_funcs vce_v3_0_ip_funcs = {
67788a907d6STom St Denis 	.name = "vce_v3_0",
678aaa36a97SAlex Deucher 	.early_init = vce_v3_0_early_init,
679aaa36a97SAlex Deucher 	.late_init = NULL,
680aaa36a97SAlex Deucher 	.sw_init = vce_v3_0_sw_init,
681aaa36a97SAlex Deucher 	.sw_fini = vce_v3_0_sw_fini,
682aaa36a97SAlex Deucher 	.hw_init = vce_v3_0_hw_init,
683aaa36a97SAlex Deucher 	.hw_fini = vce_v3_0_hw_fini,
684aaa36a97SAlex Deucher 	.suspend = vce_v3_0_suspend,
685aaa36a97SAlex Deucher 	.resume = vce_v3_0_resume,
686aaa36a97SAlex Deucher 	.is_idle = vce_v3_0_is_idle,
687aaa36a97SAlex Deucher 	.wait_for_idle = vce_v3_0_wait_for_idle,
688aaa36a97SAlex Deucher 	.soft_reset = vce_v3_0_soft_reset,
689aaa36a97SAlex Deucher 	.set_clockgating_state = vce_v3_0_set_clockgating_state,
690aaa36a97SAlex Deucher 	.set_powergating_state = vce_v3_0_set_powergating_state,
691aaa36a97SAlex Deucher };
692aaa36a97SAlex Deucher 
693aaa36a97SAlex Deucher static const struct amdgpu_ring_funcs vce_v3_0_ring_funcs = {
694aaa36a97SAlex Deucher 	.get_rptr = vce_v3_0_ring_get_rptr,
695aaa36a97SAlex Deucher 	.get_wptr = vce_v3_0_ring_get_wptr,
696aaa36a97SAlex Deucher 	.set_wptr = vce_v3_0_ring_set_wptr,
697aaa36a97SAlex Deucher 	.parse_cs = amdgpu_vce_ring_parse_cs,
698aaa36a97SAlex Deucher 	.emit_ib = amdgpu_vce_ring_emit_ib,
699aaa36a97SAlex Deucher 	.emit_fence = amdgpu_vce_ring_emit_fence,
700aaa36a97SAlex Deucher 	.test_ring = amdgpu_vce_ring_test_ring,
701aaa36a97SAlex Deucher 	.test_ib = amdgpu_vce_ring_test_ib,
702edff0e28SJammy Zhou 	.insert_nop = amdgpu_ring_insert_nop,
7039e5d5309SChristian König 	.pad_ib = amdgpu_ring_generic_pad_ib,
704aaa36a97SAlex Deucher };
705aaa36a97SAlex Deucher 
706aaa36a97SAlex Deucher static void vce_v3_0_set_ring_funcs(struct amdgpu_device *adev)
707aaa36a97SAlex Deucher {
708aaa36a97SAlex Deucher 	adev->vce.ring[0].funcs = &vce_v3_0_ring_funcs;
709aaa36a97SAlex Deucher 	adev->vce.ring[1].funcs = &vce_v3_0_ring_funcs;
710aaa36a97SAlex Deucher }
711aaa36a97SAlex Deucher 
712aaa36a97SAlex Deucher static const struct amdgpu_irq_src_funcs vce_v3_0_irq_funcs = {
713aaa36a97SAlex Deucher 	.set = vce_v3_0_set_interrupt_state,
714aaa36a97SAlex Deucher 	.process = vce_v3_0_process_interrupt,
715aaa36a97SAlex Deucher };
716aaa36a97SAlex Deucher 
717aaa36a97SAlex Deucher static void vce_v3_0_set_irq_funcs(struct amdgpu_device *adev)
718aaa36a97SAlex Deucher {
719aaa36a97SAlex Deucher 	adev->vce.irq.num_types = 1;
720aaa36a97SAlex Deucher 	adev->vce.irq.funcs = &vce_v3_0_irq_funcs;
721aaa36a97SAlex Deucher };
722