It's somewhat easier to read. BUG=none TEST=minigbm still builds CQ-DEPEND=CL:416290 Change-Id: I9417caff22ea66e4179fe41d534d8cb9510ef7a3 Reviewed-on: https://chromium-review.googlesource.com/414585 Commit-Ready: Gurchetan Singh <gurchetansingh@chromium.org> Tested-by: Gurchetan Singh <gurchetansingh@chromium.org> Reviewed-by: Stéphane Marchesin <marcheu@chromium.org>
359 lines
9.9 KiB
C
359 lines
9.9 KiB
C
/*
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* Copyright (c) 2016 The Chromium OS Authors. All rights reserved.
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#ifdef DRV_AMDGPU
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#include <errno.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <xf86drm.h>
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#include <amdgpu_drm.h>
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#include <amdgpu.h>
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#include "addrinterface.h"
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#include "drv_priv.h"
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#include "helpers.h"
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#include "util.h"
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#ifndef CIASICIDGFXENGINE_SOUTHERNISLAND
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#define CIASICIDGFXENGINE_SOUTHERNISLAND 0x0000000A
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#endif
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#define mmCC_RB_BACKEND_DISABLE 0x263d
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#define mmGB_TILE_MODE0 0x2644
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#define mmGB_MACROTILE_MODE0 0x2664
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#define mmGB_ADDR_CONFIG 0x263e
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#define mmMC_ARB_RAMCFG 0x9d8
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enum {
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FAMILY_UNKNOWN,
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FAMILY_SI,
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FAMILY_CI,
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FAMILY_KV,
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FAMILY_VI,
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FAMILY_CZ,
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FAMILY_PI,
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FAMILY_LAST,
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};
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static struct supported_combination combos[5] = {
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{DRM_FORMAT_ARGB8888, DRM_FORMAT_MOD_NONE, BO_USE_CURSOR | BO_USE_LINEAR},
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{DRM_FORMAT_ARGB8888, DRM_FORMAT_MOD_NONE, BO_USE_RENDERING},
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{DRM_FORMAT_XBGR8888, DRM_FORMAT_MOD_NONE, BO_USE_RENDERING},
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{DRM_FORMAT_XRGB8888, DRM_FORMAT_MOD_NONE, BO_USE_LINEAR},
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{DRM_FORMAT_XRGB8888, DRM_FORMAT_MOD_NONE, BO_USE_RENDERING},
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};
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static int amdgpu_set_metadata(int fd, uint32_t handle,
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struct amdgpu_bo_metadata *info)
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{
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struct drm_amdgpu_gem_metadata args = {0};
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if (!info)
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return -EINVAL;
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args.handle = handle;
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args.op = AMDGPU_GEM_METADATA_OP_SET_METADATA;
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args.data.flags = info->flags;
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args.data.tiling_info = info->tiling_info;
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if (info->size_metadata > sizeof(args.data.data))
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return -EINVAL;
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if (info->size_metadata) {
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args.data.data_size_bytes = info->size_metadata;
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memcpy(args.data.data, info->umd_metadata, info->size_metadata);
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}
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return drmCommandWriteRead(fd, DRM_AMDGPU_GEM_METADATA, &args,
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sizeof(args));
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}
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static int amdgpu_read_mm_regs(int fd, unsigned dword_offset,
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unsigned count, uint32_t instance,
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uint32_t flags, uint32_t *values)
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{
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struct drm_amdgpu_info request;
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memset(&request, 0, sizeof(request));
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request.return_pointer = (uintptr_t) values;
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request.return_size = count * sizeof(uint32_t);
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request.query = AMDGPU_INFO_READ_MMR_REG;
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request.read_mmr_reg.dword_offset = dword_offset;
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request.read_mmr_reg.count = count;
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request.read_mmr_reg.instance = instance;
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request.read_mmr_reg.flags = flags;
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return drmCommandWrite(fd, DRM_AMDGPU_INFO, &request,
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sizeof(struct drm_amdgpu_info));
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}
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static int amdgpu_query_gpu(int fd, struct amdgpu_gpu_info *gpu_info)
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{
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int ret;
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uint32_t instance;
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if (!gpu_info)
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return -EINVAL;
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instance = AMDGPU_INFO_MMR_SH_INDEX_MASK <<
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AMDGPU_INFO_MMR_SH_INDEX_SHIFT;
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ret = amdgpu_read_mm_regs(fd, mmCC_RB_BACKEND_DISABLE, 1, instance, 0,
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&gpu_info->backend_disable[0]);
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if (ret)
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return ret;
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/* extract bitfield CC_RB_BACKEND_DISABLE.BACKEND_DISABLE */
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gpu_info->backend_disable[0] =
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(gpu_info->backend_disable[0] >> 16) & 0xff;
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ret = amdgpu_read_mm_regs(fd, mmGB_TILE_MODE0, 32, 0xffffffff, 0,
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gpu_info->gb_tile_mode);
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if (ret)
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return ret;
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ret = amdgpu_read_mm_regs(fd, mmGB_MACROTILE_MODE0, 16, 0xffffffff, 0,
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gpu_info->gb_macro_tile_mode);
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if (ret)
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return ret;
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ret = amdgpu_read_mm_regs(fd, mmGB_ADDR_CONFIG, 1, 0xffffffff, 0,
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&gpu_info->gb_addr_cfg);
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if (ret)
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return ret;
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ret = amdgpu_read_mm_regs(fd, mmMC_ARB_RAMCFG, 1, 0xffffffff, 0,
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&gpu_info->mc_arb_ramcfg);
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if (ret)
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return ret;
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return 0;
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}
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static void *ADDR_API alloc_sys_mem(const ADDR_ALLOCSYSMEM_INPUT *in)
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{
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return malloc(in->sizeInBytes);
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}
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static ADDR_E_RETURNCODE ADDR_API free_sys_mem(const ADDR_FREESYSMEM_INPUT *in)
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{
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free(in->pVirtAddr);
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return ADDR_OK;
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}
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static int amdgpu_addrlib_compute(void *addrlib, uint32_t width,
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uint32_t height, uint32_t format,
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uint32_t usage, uint32_t *tiling_flags,
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ADDR_COMPUTE_SURFACE_INFO_OUTPUT *addr_out)
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{
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ADDR_COMPUTE_SURFACE_INFO_INPUT addr_surf_info_in = {0};
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ADDR_TILEINFO addr_tile_info = {0};
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ADDR_TILEINFO addr_tile_info_out = {0};
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addr_surf_info_in.size = sizeof(ADDR_COMPUTE_SURFACE_INFO_INPUT);
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/* Set the requested tiling mode. */
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addr_surf_info_in.tileMode = ADDR_TM_2D_TILED_THIN1;
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if (usage & (BO_USE_CURSOR | BO_USE_LINEAR))
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addr_surf_info_in.tileMode = ADDR_TM_LINEAR_ALIGNED;
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if (width <= 16 || height <= 16)
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addr_surf_info_in.tileMode = ADDR_TM_1D_TILED_THIN1;
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/* Bits per pixel should be calculated from format*/
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addr_surf_info_in.bpp = drv_bpp_from_format(format, 0);
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addr_surf_info_in.numSamples = 1;
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addr_surf_info_in.width = width;
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addr_surf_info_in.height = height;
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addr_surf_info_in.numSlices = 1;
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addr_surf_info_in.pTileInfo = &addr_tile_info;
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addr_surf_info_in.tileIndex = -1;
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/* This disables incorrect calculations (hacks) in addrlib. */
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addr_surf_info_in.flags.noStencil = 1;
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/* Set the micro tile type. */
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if (usage & BO_USE_SCANOUT)
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addr_surf_info_in.tileType = ADDR_DISPLAYABLE;
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else
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addr_surf_info_in.tileType = ADDR_NON_DISPLAYABLE;
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addr_out->size = sizeof(ADDR_COMPUTE_SURFACE_INFO_OUTPUT);
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addr_out->pTileInfo = &addr_tile_info_out;
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if (AddrComputeSurfaceInfo(addrlib, &addr_surf_info_in,
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addr_out) != ADDR_OK)
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return -EINVAL;
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ADDR_CONVERT_TILEINFOTOHW_INPUT s_in = {0};
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ADDR_CONVERT_TILEINFOTOHW_OUTPUT s_out = {0};
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ADDR_TILEINFO s_tile_hw_info_out = {0};
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s_in.size = sizeof(ADDR_CONVERT_TILEINFOTOHW_INPUT);
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/* Convert from real value to HW value */
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s_in.reverse = 0;
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s_in.pTileInfo = &addr_tile_info_out;
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s_in.tileIndex = -1;
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s_out.size = sizeof(ADDR_CONVERT_TILEINFOTOHW_OUTPUT);
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s_out.pTileInfo = &s_tile_hw_info_out;
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if (AddrConvertTileInfoToHW(addrlib, &s_in, &s_out) != ADDR_OK)
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return -EINVAL;
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if (addr_out->tileMode >= ADDR_TM_2D_TILED_THIN1)
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/* 2D_TILED_THIN1 */
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*tiling_flags |= AMDGPU_TILING_SET(ARRAY_MODE, 4);
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else if (addr_out->tileMode >= ADDR_TM_1D_TILED_THIN1)
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/* 1D_TILED_THIN1 */
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*tiling_flags |= AMDGPU_TILING_SET(ARRAY_MODE, 2);
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else
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/* LINEAR_ALIGNED */
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*tiling_flags |= AMDGPU_TILING_SET(ARRAY_MODE, 1);
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*tiling_flags |= AMDGPU_TILING_SET(BANK_WIDTH,
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drv_log_base2(addr_tile_info_out.bankWidth));
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*tiling_flags |= AMDGPU_TILING_SET(BANK_HEIGHT,
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drv_log_base2(addr_tile_info_out.bankHeight));
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*tiling_flags |= AMDGPU_TILING_SET(TILE_SPLIT,
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s_tile_hw_info_out.tileSplitBytes);
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*tiling_flags |= AMDGPU_TILING_SET(MACRO_TILE_ASPECT,
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drv_log_base2(addr_tile_info_out.macroAspectRatio));
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*tiling_flags |= AMDGPU_TILING_SET(PIPE_CONFIG,
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s_tile_hw_info_out.pipeConfig);
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*tiling_flags |= AMDGPU_TILING_SET(NUM_BANKS, s_tile_hw_info_out.banks);
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return 0;
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}
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static void *amdgpu_addrlib_init(int fd)
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{
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int ret;
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ADDR_CREATE_INPUT addr_create_input = {0};
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ADDR_CREATE_OUTPUT addr_create_output = {0};
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ADDR_REGISTER_VALUE reg_value = {0};
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ADDR_CREATE_FLAGS create_flags = { {0} };
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ADDR_E_RETURNCODE addr_ret;
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addr_create_input.size = sizeof(ADDR_CREATE_INPUT);
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addr_create_output.size = sizeof(ADDR_CREATE_OUTPUT);
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struct amdgpu_gpu_info gpu_info = {0};
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ret = amdgpu_query_gpu(fd, &gpu_info);
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if (ret) {
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fprintf(stderr, "[%s]failed with error =%d\n", __func__, ret);
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return NULL;
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}
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reg_value.noOfBanks = gpu_info.mc_arb_ramcfg & 0x3;
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reg_value.gbAddrConfig = gpu_info.gb_addr_cfg;
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reg_value.noOfRanks = (gpu_info.mc_arb_ramcfg & 0x4) >> 2;
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reg_value.backendDisables = gpu_info.backend_disable[0];
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reg_value.pTileConfig = gpu_info.gb_tile_mode;
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reg_value.noOfEntries = sizeof(gpu_info.gb_tile_mode)
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/ sizeof(gpu_info.gb_tile_mode[0]);
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reg_value.pMacroTileConfig = gpu_info.gb_macro_tile_mode;
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reg_value.noOfMacroEntries = sizeof(gpu_info.gb_macro_tile_mode)
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/ sizeof(gpu_info.gb_macro_tile_mode[0]);
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create_flags.value = 0;
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create_flags.useTileIndex = 1;
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addr_create_input.chipEngine = CIASICIDGFXENGINE_SOUTHERNISLAND;
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addr_create_input.chipFamily = FAMILY_CZ;
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addr_create_input.createFlags = create_flags;
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addr_create_input.callbacks.allocSysMem = alloc_sys_mem;
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addr_create_input.callbacks.freeSysMem = free_sys_mem;
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addr_create_input.callbacks.debugPrint = 0;
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addr_create_input.regValue = reg_value;
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addr_ret = AddrCreate(&addr_create_input, &addr_create_output);
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if (addr_ret != ADDR_OK) {
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fprintf(stderr, "[%s]failed error =%d\n", __func__, addr_ret);
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return NULL;
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}
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return addr_create_output.hLib;
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}
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static int amdgpu_init(struct driver *drv)
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{
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void *addrlib;
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addrlib = amdgpu_addrlib_init(drv_get_fd(drv));
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if (!addrlib)
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return -1;
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drv->priv = addrlib;
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drv_insert_combinations(drv, combos, ARRAY_SIZE(combos));
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return drv_add_kms_flags(drv);
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}
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static void amdgpu_close(struct driver *drv)
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{
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AddrDestroy(drv->priv);
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drv->priv = NULL;
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}
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static int amdgpu_bo_create(struct bo *bo, uint32_t width, uint32_t height,
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uint32_t format, uint32_t usage)
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{
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void *addrlib = bo->drv->priv;
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union drm_amdgpu_gem_create gem_create;
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struct amdgpu_bo_metadata metadata = {0};
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ADDR_COMPUTE_SURFACE_INFO_OUTPUT addr_out = {0};
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uint32_t tiling_flags = 0;
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int ret;
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if (amdgpu_addrlib_compute(addrlib, width,
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height, format, usage,
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&tiling_flags,
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&addr_out) < 0)
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return -EINVAL;
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bo->tiling = tiling_flags;
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bo->offsets[0] = 0;
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bo->sizes[0] = addr_out.surfSize;
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bo->strides[0] = addr_out.pixelPitch
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* DIV_ROUND_UP(addr_out.pixelBits, 8);
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memset(&gem_create, 0, sizeof(gem_create));
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gem_create.in.bo_size = bo->sizes[0];
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gem_create.in.alignment = addr_out.baseAlign;
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/* Set the placement. */
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gem_create.in.domains = AMDGPU_GEM_DOMAIN_VRAM;
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gem_create.in.domain_flags = usage;
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/* Allocate the buffer with the preferred heap. */
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ret = drmCommandWriteRead(drv_get_fd(bo->drv), DRM_AMDGPU_GEM_CREATE,
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&gem_create, sizeof(gem_create));
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if (ret < 0)
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return ret;
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bo->handles[0].u32 = gem_create.out.handle;
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metadata.tiling_info = tiling_flags;
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ret = amdgpu_set_metadata(drv_get_fd(bo->drv),
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bo->handles[0].u32, &metadata);
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return ret;
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}
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struct backend backend_amdgpu = {
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.name = "amdgpu",
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.init = amdgpu_init,
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.close = amdgpu_close,
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.bo_create = amdgpu_bo_create,
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.bo_destroy = drv_gem_bo_destroy,
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};
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#endif
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