Move Images code to hsa-runtime folder
Change-Id: I53c1845d985ac3e9708d952865009c0021f3bb4f
[ROCm/ROCR-Runtime commit: 7e3db20826]
这个提交包含在:
@@ -0,0 +1,746 @@
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#define NOMINMAX
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#include "image_manager_nv.h"
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#include <assert.h>
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#include <algorithm>
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#include <climits>
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#include "inc/hsa_ext_amd.h"
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#include "addrlib/src/core/addrlib.h"
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#include "image_runtime.h"
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#include "resource.h"
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#include "resource_nv.h"
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#include "util.h"
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#include "device_info.h"
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namespace amd {
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//-----------------------------------------------------------------------------
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// Workaround switch to combined format/type codes and missing gfx10
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// specific look up table. Only covers types used in image_lut_kv.cpp.
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//-----------------------------------------------------------------------------
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struct formatconverstion_t {
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FMT fmt;
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type type;
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FORMAT format;
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};
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// Format/Type to combined format code table.
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// Sorted and indexed to allow fast searches.
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static const formatconverstion_t FormatLUT[] = {
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{FMT_1_5_5_5, TYPE_UNORM, CFMT_1_5_5_5_UNORM},
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{FMT_10_10_10_2, TYPE_UNORM, CFMT_10_10_10_2_UNORM},
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{FMT_10_10_10_2, TYPE_SNORM, CFMT_10_10_10_2_SNORM},
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{FMT_10_10_10_2, TYPE_UINT, CFMT_10_10_10_2_UINT},
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{FMT_10_10_10_2, TYPE_SINT, CFMT_10_10_10_2_SINT},
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{FMT_16, TYPE_UNORM, CFMT_16_UNORM},
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{FMT_16, TYPE_SNORM, CFMT_16_SNORM},
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{FMT_16, TYPE_UINT, CFMT_16_UINT},
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{FMT_16, TYPE_SINT, CFMT_16_SINT},
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{FMT_16, TYPE_FLOAT, CFMT_16_FLOAT},
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{FMT_16_16, TYPE_UNORM, CFMT_16_16_UNORM},
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{FMT_16_16, TYPE_SNORM, CFMT_16_16_SNORM},
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{FMT_16_16, TYPE_UINT, CFMT_16_16_UINT},
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{FMT_16_16, TYPE_SINT, CFMT_16_16_SINT},
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{FMT_16_16, TYPE_FLOAT, CFMT_16_16_FLOAT},
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{FMT_16_16_16_16, TYPE_UNORM, CFMT_16_16_16_16_UNORM},
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{FMT_16_16_16_16, TYPE_SNORM, CFMT_16_16_16_16_SNORM},
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{FMT_16_16_16_16, TYPE_UINT, CFMT_16_16_16_16_UINT},
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{FMT_16_16_16_16, TYPE_SINT, CFMT_16_16_16_16_SINT},
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{FMT_16_16_16_16, TYPE_FLOAT, CFMT_16_16_16_16_FLOAT},
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{FMT_2_10_10_10, TYPE_UNORM, CFMT_2_10_10_10_UNORM},
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{FMT_2_10_10_10, TYPE_SNORM, CFMT_2_10_10_10_SNORM},
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{FMT_2_10_10_10, TYPE_UINT, CFMT_2_10_10_10_UINT},
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{FMT_2_10_10_10, TYPE_SINT, CFMT_2_10_10_10_SINT},
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{FMT_24_8, TYPE_UNORM, CFMT_24_8_UNORM},
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{FMT_24_8, TYPE_UINT, CFMT_24_8_UINT},
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{FMT_32, TYPE_UINT, CFMT_32_UINT},
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{FMT_32, TYPE_SINT, CFMT_32_SINT},
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{FMT_32, TYPE_FLOAT, CFMT_32_FLOAT},
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{FMT_32_32, TYPE_UINT, CFMT_32_32_UINT},
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{FMT_32_32, TYPE_SINT, CFMT_32_32_SINT},
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{FMT_32_32, TYPE_FLOAT, CFMT_32_32_FLOAT},
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{FMT_32_32_32, TYPE_UINT, CFMT_32_32_32_UINT},
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{FMT_32_32_32, TYPE_SINT, CFMT_32_32_32_SINT},
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{FMT_32_32_32, TYPE_FLOAT, CFMT_32_32_32_FLOAT},
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{FMT_32_32_32_32, TYPE_UINT, CFMT_32_32_32_32_UINT},
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{FMT_32_32_32_32, TYPE_SINT, CFMT_32_32_32_32_SINT},
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{FMT_32_32_32_32, TYPE_FLOAT, CFMT_32_32_32_32_FLOAT},
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{FMT_5_5_5_1, TYPE_UNORM, CFMT_5_5_5_1_UNORM},
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{FMT_5_6_5, TYPE_UNORM, CFMT_5_6_5_UNORM},
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{FMT_8, TYPE_UNORM, CFMT_8_UNORM},
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{FMT_8, TYPE_SNORM, CFMT_8_SNORM},
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{FMT_8, TYPE_UINT, CFMT_8_UINT},
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{FMT_8, TYPE_SINT, CFMT_8_SINT},
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{FMT_8, TYPE_SRGB, CFMT_8_SRGB},
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{FMT_8_24, TYPE_UNORM, CFMT_8_24_UNORM},
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{FMT_8_24, TYPE_UINT, CFMT_8_24_UINT},
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{FMT_8_8, TYPE_UNORM, CFMT_8_8_UNORM},
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{FMT_8_8, TYPE_SNORM, CFMT_8_8_SNORM},
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{FMT_8_8, TYPE_UINT, CFMT_8_8_UINT},
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{FMT_8_8, TYPE_SINT, CFMT_8_8_SINT},
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{FMT_8_8, TYPE_SRGB, CFMT_8_8_SRGB},
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{FMT_8_8_8_8, TYPE_UNORM, CFMT_8_8_8_8_UNORM},
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{FMT_8_8_8_8, TYPE_SNORM, CFMT_8_8_8_8_SNORM},
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{FMT_8_8_8_8, TYPE_UINT, CFMT_8_8_8_8_UINT},
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{FMT_8_8_8_8, TYPE_SINT, CFMT_8_8_8_8_SINT},
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{FMT_8_8_8_8, TYPE_SRGB, CFMT_8_8_8_8_SRGB}
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};
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static const int FormatLUTSize = sizeof(FormatLUT)/sizeof(formatconverstion_t);
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//Index in FormatLUT to start search, indexed by FMT enum.
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static const int FormatEntryPoint[] = {
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57,
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40,
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5,
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47,
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26,
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10,
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57,
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57,
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1,
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20,
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52,
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29,
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15,
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32,
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35,
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57,
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39,
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0,
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38,
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57,
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45,
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24
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};
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static FORMAT GetCombinedFormat(uint8_t fmt, uint8_t type) {
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assert(fmt < sizeof(FormatEntryPoint)/sizeof(int) && "FMT out of range.");
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int start = FormatEntryPoint[fmt];
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int stop = std::min(start + 6, FormatLUTSize); // Only 6 types are used in image_kv_lut.cpp
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for(int i=start; i<stop; i++) {
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if((FormatLUT[i].fmt == fmt) && (FormatLUT[i].type == type))
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return FormatLUT[i].format;
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}
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return CFMT_INVALID;
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};
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//-----------------------------------------------------------------------------
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// End workaround
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//-----------------------------------------------------------------------------
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ImageManagerNv::ImageManagerNv() : ImageManagerKv() {}
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ImageManagerNv::~ImageManagerNv() {}
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// TODO(cfreehil) remove from class, make it a utility function
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hsa_status_t ImageManagerNv::CalculateImageSizeAndAlignment(
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hsa_agent_t component, const hsa_ext_image_descriptor_t& desc,
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hsa_ext_image_data_layout_t image_data_layout,
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size_t image_data_row_pitch,
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size_t image_data_slice_pitch,
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hsa_ext_image_data_info_t& image_info) const {
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ADDR2_COMPUTE_SURFACE_INFO_OUTPUT out = {0};
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hsa_profile_t profile;
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hsa_status_t status = hsa_agent_get_info(component,
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HSA_AGENT_INFO_PROFILE, &profile);
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Image::TileMode tileMode = Image::TileMode::LINEAR;
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if (image_data_layout == HSA_EXT_IMAGE_DATA_LAYOUT_OPAQUE) {
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tileMode = (profile == HSA_PROFILE_BASE &&
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desc.geometry != HSA_EXT_IMAGE_GEOMETRY_1DB)?
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Image::TileMode::TILED : Image::TileMode::LINEAR;
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}
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if (GetAddrlibSurfaceInfoNv(component, desc, tileMode,
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image_data_row_pitch, image_data_slice_pitch, out) ==
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(uint32_t)(-1)) {
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return HSA_STATUS_ERROR;
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}
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size_t rowPitch = (out.bpp >> 3) * out.pitch;
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size_t slicePitch = rowPitch * out.height;
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if (desc.geometry != HSA_EXT_IMAGE_GEOMETRY_1DB &&
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image_data_layout == HSA_EXT_IMAGE_DATA_LAYOUT_LINEAR &&
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((image_data_row_pitch && (rowPitch != image_data_row_pitch)) ||
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(image_data_slice_pitch && (slicePitch != image_data_slice_pitch)))) {
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return static_cast<hsa_status_t>(
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HSA_EXT_STATUS_ERROR_IMAGE_PITCH_UNSUPPORTED);
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}
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image_info.size = out.surfSize;
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assert(image_info.size != 0);
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image_info.alignment = out.baseAlign;
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assert(image_info.alignment != 0);
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return HSA_STATUS_SUCCESS;
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}
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bool ImageManagerNv::IsLocalMemory(const void* address) const {
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return true;
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}
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hsa_status_t ImageManagerNv::PopulateImageSrd(Image& image,
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const metadata_amd_t* descriptor) const {
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const metadata_amd_nv_t* desc =
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reinterpret_cast<const metadata_amd_nv_t*>(descriptor);
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bool atc_access = true;
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const void* image_data_addr = image.data;
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ImageProperty image_prop =
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image_lut_.MapFormat(image.desc.format, image.desc.geometry);
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if ((image_prop.cap == HSA_EXT_IMAGE_CAPABILITY_NOT_SUPPORTED) ||
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(image_prop.element_size == 0))
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return (hsa_status_t)HSA_EXT_STATUS_ERROR_IMAGE_FORMAT_UNSUPPORTED;
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const Swizzle swizzle =
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image_lut_.MapSwizzle(image.desc.format.channel_order);
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if (IsLocalMemory(image.data)) {
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atc_access = false;
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image_data_addr = reinterpret_cast<const void*>(
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reinterpret_cast<uintptr_t>(image.data) - local_memory_base_address_);
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}
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image.srd[0] = desc->word0.u32All;
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image.srd[1] = desc->word1.u32All;
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image.srd[2] = desc->word2.u32All;
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image.srd[3] = desc->word3.u32All;
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image.srd[4] = desc->word4.u32All;
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image.srd[5] = desc->word5.u32All;
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image.srd[6] = desc->word6.u32All;
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image.srd[7] = desc->word7.u32All;
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if (image.desc.geometry == HSA_EXT_IMAGE_GEOMETRY_1DB) {
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SQ_BUF_RSRC_WORD0 word0;
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SQ_BUF_RSRC_WORD1 word1;
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SQ_BUF_RSRC_WORD2 word2;
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SQ_BUF_RSRC_WORD3 word3;
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word0.val = 0;
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word0.f.BASE_ADDRESS = ext_image::PtrLow32(image_data_addr);
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word1.val = image.srd[1];
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word1.f.BASE_ADDRESS_HI = ext_image::PtrHigh32(image_data_addr);
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word1.f.STRIDE = image_prop.element_size;
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word3.val = image.srd[3];
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word3.f.DST_SEL_X = swizzle.x;
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word3.f.DST_SEL_Y = swizzle.y;
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word3.f.DST_SEL_Z = swizzle.z;
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word3.f.DST_SEL_W = swizzle.w;
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word3.f.FORMAT = GetCombinedFormat(image_prop.data_format, image_prop.data_type);
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word3.f.INDEX_STRIDE = image_prop.element_size;
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image.srd[0] = word0.val;
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image.srd[1] = word1.val;
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image.srd[3] = word3.val;
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} else {
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uint32_t hwPixelSize = image_lut_.GetPixelSize(image_prop.data_format, image_prop.data_type);
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if (image_prop.element_size != hwPixelSize) {
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return (hsa_status_t)HSA_EXT_STATUS_ERROR_IMAGE_FORMAT_UNSUPPORTED;
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}
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reinterpret_cast<SQ_IMG_RSRC_WORD0*>(&image.srd[0])->bits.BASE_ADDRESS =
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ext_image::PtrLow40Shift8(image_data_addr);
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reinterpret_cast<SQ_IMG_RSRC_WORD1*>(&image.srd[1])->bits.BASE_ADDRESS_HI
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= ext_image::PtrHigh64Shift40(image_data_addr);
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reinterpret_cast<SQ_IMG_RSRC_WORD1*>(&image.srd[1])->bits.FORMAT = GetCombinedFormat(image_prop.data_format, image_prop.data_type);
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reinterpret_cast<SQ_IMG_RSRC_WORD3*>(&image.srd[3])->bits.DST_SEL_X =
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swizzle.x;
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reinterpret_cast<SQ_IMG_RSRC_WORD3*>(&image.srd[3])->bits.DST_SEL_Y =
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swizzle.y;
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reinterpret_cast<SQ_IMG_RSRC_WORD3*>(&image.srd[3])->bits.DST_SEL_Z =
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swizzle.z;
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reinterpret_cast<SQ_IMG_RSRC_WORD3*>(&image.srd[3])->bits.DST_SEL_W =
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swizzle.w;
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if (image.desc.geometry == HSA_EXT_IMAGE_GEOMETRY_1DA ||
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image.desc.geometry == HSA_EXT_IMAGE_GEOMETRY_1D) {
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reinterpret_cast<SQ_IMG_RSRC_WORD3*>(&image.srd[3])->bits.TYPE =
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image_lut_.MapGeometry(image.desc.geometry);
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}
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// Imported metadata holds the offset to metadata, add the image base address.
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uintptr_t meta = uintptr_t(((SQ_IMG_RSRC_WORD7*)(&image.srd[7]))->bits.META_DATA_ADDRESS_HI) << 16;
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meta |= uintptr_t(((SQ_IMG_RSRC_WORD6*)(&image.srd[6]))->bits.META_DATA_ADDRESS) << 8;
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meta += reinterpret_cast<uintptr_t>(image_data_addr);
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((SQ_IMG_RSRC_WORD6*)(&image.srd[6]))->bits.META_DATA_ADDRESS = ext_image::PtrLow16Shift8((void*)meta);
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((SQ_IMG_RSRC_WORD7*)(&image.srd[7]))->bits.META_DATA_ADDRESS_HI = ext_image::PtrHigh64Shift16((void*)meta);
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}
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// Looks like this is only used for CPU copies.
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image.row_pitch = 0;
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image.slice_pitch = 0;
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// Used by HSAIL shader ABI
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image.srd[8] = image.desc.format.channel_type;
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image.srd[9] = image.desc.format.channel_order;
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image.srd[10] = static_cast<uint32_t>(image.desc.width);
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return HSA_STATUS_SUCCESS;
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}
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static TEX_BC_SWIZZLE GetBcSwizzle(const Swizzle& swizzle) {
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SEL r = (SEL)swizzle.x;
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SEL g = (SEL)swizzle.y;
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SEL b = (SEL)swizzle.z;
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SEL a = (SEL)swizzle.w;
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TEX_BC_SWIZZLE bcSwizzle = TEX_BC_Swizzle_XYZW;
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if (a == SEL_X) {
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// Have to use either TEX_BC_Swizzle_WZYX or TEX_BC_Swizzle_WXYZ
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//
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// For the pre-defined border color values (white, opaque black,
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// transparent black), the only thing that matters is that the alpha
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// channel winds up in the correct place (because the RGB channels are
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// all the same) so either of these TEX_BC_Swizzle enumerations will
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// work. Not sure what happens with border color palettes.
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if (b == SEL_Y) {
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// ABGR
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bcSwizzle = TEX_BC_Swizzle_WZYX;
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} else if ((r == SEL_X) && (g == SEL_X) && (b == SEL_X)) {
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// RGBA
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bcSwizzle = TEX_BC_Swizzle_XYZW;
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} else {
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// ARGB
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bcSwizzle = TEX_BC_Swizzle_WXYZ;
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}
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} else if (r == SEL_X) {
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// Have to use either TEX_BC_Swizzle_XYZW or TEX_BC_Swizzle_XWYZ
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if (g == SEL_Y) {
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// RGBA
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bcSwizzle = TEX_BC_Swizzle_XYZW;
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} else if ((g == SEL_X) && (b == SEL_X) && (a == SEL_W)) {
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// RGBA
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bcSwizzle = TEX_BC_Swizzle_XYZW;
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} else {
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// RAGB
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bcSwizzle = TEX_BC_Swizzle_XWYZ;
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}
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} else if (g == SEL_X) {
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// GRAB, have to use TEX_BC_Swizzle_YXWZ
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bcSwizzle = TEX_BC_Swizzle_YXWZ;
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} else if (b == SEL_X) {
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// BGRA, have to use TEX_BC_Swizzle_ZYXW
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bcSwizzle = TEX_BC_Swizzle_ZYXW;
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}
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return bcSwizzle;
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}
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hsa_status_t ImageManagerNv::PopulateImageSrd(Image& image) const {
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ImageProperty image_prop =
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image_lut_.MapFormat(image.desc.format, image.desc.geometry);
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assert(image_prop.cap != HSA_EXT_IMAGE_CAPABILITY_NOT_SUPPORTED);
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assert(image_prop.element_size != 0);
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bool atc_access = true;
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const void* image_data_addr = image.data;
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if (IsLocalMemory(image.data)) {
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atc_access = false;
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image_data_addr = reinterpret_cast<const void*>(
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reinterpret_cast<uintptr_t>(image.data) - local_memory_base_address_);
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}
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if (image.desc.geometry == HSA_EXT_IMAGE_GEOMETRY_1DB) {
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SQ_BUF_RSRC_WORD0 word0;
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SQ_BUF_RSRC_WORD1 word1;
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SQ_BUF_RSRC_WORD2 word2;
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SQ_BUF_RSRC_WORD3 word3;
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word0.val = 0;
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word0.f.BASE_ADDRESS = ext_image::PtrLow32(image_data_addr);
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word1.val = 0;
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word1.f.BASE_ADDRESS_HI = ext_image::PtrHigh32(image_data_addr);
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word1.f.STRIDE = image_prop.element_size;
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word1.f.SWIZZLE_ENABLE = false;
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word1.f.CACHE_SWIZZLE = false;
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word2.f.NUM_RECORDS = image.desc.width * image_prop.element_size;
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const Swizzle swizzle =
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image_lut_.MapSwizzle(image.desc.format.channel_order);
|
||||
word3.val = 0;
|
||||
word3.f.RESOURCE_LEVEL = 1;
|
||||
word3.f.DST_SEL_X = swizzle.x;
|
||||
word3.f.DST_SEL_Y = swizzle.y;
|
||||
word3.f.DST_SEL_Z = swizzle.z;
|
||||
word3.f.DST_SEL_W = swizzle.w;
|
||||
word3.f.FORMAT = GetCombinedFormat(image_prop.data_format, image_prop.data_type);
|
||||
word3.f.INDEX_STRIDE = image_prop.element_size;
|
||||
word3.f.TYPE = image_lut_.MapGeometry(image.desc.geometry);
|
||||
|
||||
image.srd[0] = word0.val;
|
||||
image.srd[1] = word1.val;
|
||||
image.srd[2] = word2.val;
|
||||
image.srd[3] = word3.val;
|
||||
|
||||
image.row_pitch = image.desc.width * image_prop.element_size;
|
||||
image.slice_pitch = image.row_pitch;
|
||||
} else {
|
||||
SQ_IMG_RSRC_WORD0 word0;
|
||||
SQ_IMG_RSRC_WORD1 word1;
|
||||
SQ_IMG_RSRC_WORD2 word2;
|
||||
SQ_IMG_RSRC_WORD3 word3;
|
||||
SQ_IMG_RSRC_WORD4 word4;
|
||||
SQ_IMG_RSRC_WORD5 word5;
|
||||
SQ_IMG_RSRC_WORD5 word6;
|
||||
SQ_IMG_RSRC_WORD5 word7;
|
||||
|
||||
ADDR2_COMPUTE_SURFACE_INFO_OUTPUT out = {0};
|
||||
|
||||
uint32_t swizzleMode = GetAddrlibSurfaceInfoNv(
|
||||
image.component, image.desc, image.tile_mode,
|
||||
image.row_pitch, image.slice_pitch, out);
|
||||
if (swizzleMode == (uint32_t)(-1)) {
|
||||
return HSA_STATUS_ERROR;
|
||||
}
|
||||
|
||||
assert((out.bpp / 8) == image_prop.element_size);
|
||||
|
||||
const size_t row_pitch_size = out.pitch * image_prop.element_size;
|
||||
|
||||
word0.f.BASE_ADDRESS = ext_image::PtrLow40Shift8(image_data_addr);
|
||||
|
||||
word1.val = 0;
|
||||
word1.f.BASE_ADDRESS_HI = ext_image::PtrHigh64Shift40(image_data_addr);
|
||||
word1.f.MIN_LOD = 0;
|
||||
word1.f.FORMAT = GetCombinedFormat(image_prop.data_format, image_prop.data_type);
|
||||
// Only take the lowest 2 bits of (image.desc.width - 1)
|
||||
word1.f.WIDTH = ext_image::BitSelect<0, 1>(image.desc.width - 1);
|
||||
|
||||
word2.val = 0;
|
||||
// Take the high 12 bits of (image.desc.width - 1)
|
||||
word2.f.WIDTH_HI = ext_image::BitSelect<2, 13>(image.desc.width - 1);
|
||||
word2.f.HEIGHT = image.desc.height ? image.desc.height - 1 : 0;
|
||||
word2.f.RESOURCE_LEVEL = 1;
|
||||
|
||||
const Swizzle swizzle =
|
||||
image_lut_.MapSwizzle(image.desc.format.channel_order);
|
||||
word3.val = 0;
|
||||
word3.f.DST_SEL_X = swizzle.x;
|
||||
word3.f.DST_SEL_Y = swizzle.y;
|
||||
word3.f.DST_SEL_Z = swizzle.z;
|
||||
word3.f.DST_SEL_W = swizzle.w;
|
||||
word3.f.SW_MODE = swizzleMode;
|
||||
word3.f.BC_SWIZZLE = GetBcSwizzle(swizzle);
|
||||
word3.f.TYPE = image_lut_.MapGeometry(image.desc.geometry);
|
||||
|
||||
const bool image_array =
|
||||
(image.desc.geometry == HSA_EXT_IMAGE_GEOMETRY_1DA ||
|
||||
image.desc.geometry == HSA_EXT_IMAGE_GEOMETRY_2DA ||
|
||||
image.desc.geometry == HSA_EXT_IMAGE_GEOMETRY_2DADEPTH);
|
||||
const bool image_3d = (image.desc.geometry == HSA_EXT_IMAGE_GEOMETRY_3D);
|
||||
|
||||
word4.val = 0;
|
||||
word4.f.DEPTH =
|
||||
(image_array) // Doesn't hurt but isn't array_size already >0?
|
||||
? std::max(image.desc.array_size, static_cast<size_t>(1)) - 1
|
||||
: (image_3d) ? image.desc.depth - 1 : out.pitch - 1;
|
||||
|
||||
word5.val = 0;
|
||||
word6.val = 0;
|
||||
word7.val = 0;
|
||||
|
||||
image.srd[0] = word0.val;
|
||||
image.srd[1] = word1.val;
|
||||
image.srd[2] = word2.val;
|
||||
image.srd[3] = word3.val;
|
||||
image.srd[4] = word4.val;
|
||||
image.srd[5] = word5.val;
|
||||
image.srd[6] = word6.val;
|
||||
image.srd[7] = word7.val;
|
||||
|
||||
image.row_pitch = row_pitch_size;
|
||||
image.slice_pitch = out.sliceSize;
|
||||
}
|
||||
|
||||
image.srd[8] = image.desc.format.channel_type;
|
||||
image.srd[9] = image.desc.format.channel_order;
|
||||
image.srd[10] = static_cast<uint32_t>(image.desc.width);
|
||||
|
||||
return HSA_STATUS_SUCCESS;
|
||||
}
|
||||
|
||||
hsa_status_t ImageManagerNv::ModifyImageSrd(
|
||||
Image& image, hsa_ext_image_format_t& new_format) const {
|
||||
image.desc.format = new_format;
|
||||
|
||||
ImageProperty image_prop =
|
||||
image_lut_.MapFormat(image.desc.format, image.desc.geometry);
|
||||
assert(image_prop.cap != HSA_EXT_IMAGE_CAPABILITY_NOT_SUPPORTED);
|
||||
assert(image_prop.element_size != 0);
|
||||
|
||||
if (image.desc.geometry == HSA_EXT_IMAGE_GEOMETRY_1DB) {
|
||||
const Swizzle swizzle =
|
||||
image_lut_.MapSwizzle(image.desc.format.channel_order);
|
||||
SQ_BUF_RSRC_WORD3* word3 =
|
||||
reinterpret_cast<SQ_BUF_RSRC_WORD3*>(&image.srd[3]);
|
||||
word3->bits.DST_SEL_X = swizzle.x;
|
||||
word3->bits.DST_SEL_Y = swizzle.y;
|
||||
word3->bits.DST_SEL_Z = swizzle.z;
|
||||
word3->bits.DST_SEL_W = swizzle.w;
|
||||
word3->bits.FORMAT = GetCombinedFormat(image_prop.data_format, image_prop.data_type);
|
||||
} else {
|
||||
SQ_IMG_RSRC_WORD1* word1 =
|
||||
reinterpret_cast<SQ_IMG_RSRC_WORD1*>(&image.srd[1]);
|
||||
word1->bits.FORMAT = GetCombinedFormat(image_prop.data_format, image_prop.data_type);
|
||||
|
||||
const Swizzle swizzle =
|
||||
image_lut_.MapSwizzle(image.desc.format.channel_order);
|
||||
SQ_IMG_RSRC_WORD3* word3 =
|
||||
reinterpret_cast<SQ_IMG_RSRC_WORD3*>(&image.srd[3]);
|
||||
word3->bits.DST_SEL_X = swizzle.x;
|
||||
word3->bits.DST_SEL_Y = swizzle.y;
|
||||
word3->bits.DST_SEL_Z = swizzle.z;
|
||||
word3->bits.DST_SEL_W = swizzle.w;
|
||||
}
|
||||
|
||||
image.srd[8] = image.desc.format.channel_type;
|
||||
image.srd[9] = image.desc.format.channel_order;
|
||||
image.srd[10] = static_cast<uint32_t>(image.desc.width);
|
||||
|
||||
return HSA_STATUS_SUCCESS;
|
||||
}
|
||||
|
||||
hsa_status_t ImageManagerNv::PopulateSamplerSrd(amd::Sampler& sampler) const {
|
||||
const hsa_ext_sampler_descriptor_t sampler_descriptor = sampler.desc;
|
||||
|
||||
SQ_IMG_SAMP_WORD0 word0;
|
||||
SQ_IMG_SAMP_WORD1 word1;
|
||||
SQ_IMG_SAMP_WORD2 word2;
|
||||
SQ_IMG_SAMP_WORD3 word3;
|
||||
|
||||
word0.u32All = 0;
|
||||
switch (sampler_descriptor.address_mode) {
|
||||
case HSA_EXT_SAMPLER_ADDRESSING_MODE_CLAMP_TO_EDGE:
|
||||
word0.bits.CLAMP_X = static_cast<int>(SQ_TEX_CLAMP_LAST_TEXEL);
|
||||
break;
|
||||
case HSA_EXT_SAMPLER_ADDRESSING_MODE_CLAMP_TO_BORDER:
|
||||
word0.bits.CLAMP_X = static_cast<int>(SQ_TEX_CLAMP_BORDER);
|
||||
break;
|
||||
case HSA_EXT_SAMPLER_ADDRESSING_MODE_MIRRORED_REPEAT:
|
||||
word0.bits.CLAMP_X = static_cast<int>(SQ_TEX_MIRROR);
|
||||
break;
|
||||
case HSA_EXT_SAMPLER_ADDRESSING_MODE_UNDEFINED:
|
||||
case HSA_EXT_SAMPLER_ADDRESSING_MODE_REPEAT:
|
||||
word0.bits.CLAMP_X = static_cast<int>(SQ_TEX_WRAP);
|
||||
break;
|
||||
default:
|
||||
return HSA_STATUS_ERROR_INVALID_ARGUMENT;
|
||||
}
|
||||
word0.bits.CLAMP_Y = word0.bits.CLAMP_X;
|
||||
word0.bits.CLAMP_Z = word0.bits.CLAMP_X;
|
||||
word0.bits.FORCE_UNNORMALIZED = (sampler_descriptor.coordinate_mode ==
|
||||
HSA_EXT_SAMPLER_COORDINATE_MODE_UNNORMALIZED);
|
||||
|
||||
word1.u32All = 0;
|
||||
word1.bits.MAX_LOD = 4095;
|
||||
|
||||
word2.u32All = 0;
|
||||
switch (sampler_descriptor.filter_mode) {
|
||||
case HSA_EXT_SAMPLER_FILTER_MODE_NEAREST:
|
||||
word2.bits.XY_MAG_FILTER = static_cast<int>(SQ_TEX_XY_FILTER_POINT);
|
||||
break;
|
||||
case HSA_EXT_SAMPLER_FILTER_MODE_LINEAR:
|
||||
word2.bits.XY_MAG_FILTER = static_cast<int>(SQ_TEX_XY_FILTER_BILINEAR);
|
||||
break;
|
||||
default:
|
||||
return HSA_STATUS_ERROR_INVALID_ARGUMENT;
|
||||
}
|
||||
word2.bits.XY_MIN_FILTER = word2.bits.XY_MAG_FILTER;
|
||||
word2.bits.Z_FILTER = SQ_TEX_Z_FILTER_NONE;
|
||||
word2.bits.MIP_FILTER = SQ_TEX_MIP_FILTER_NONE;
|
||||
|
||||
word3.u32All = 0;
|
||||
|
||||
// TODO: check this bit with HSAIL spec.
|
||||
word3.bits.BORDER_COLOR_TYPE = SQ_TEX_BORDER_COLOR_TRANS_BLACK;
|
||||
|
||||
sampler.srd[0] = word0.u32All;
|
||||
sampler.srd[1] = word1.u32All;
|
||||
sampler.srd[2] = word2.u32All;
|
||||
sampler.srd[3] = word3.u32All;
|
||||
|
||||
return HSA_STATUS_SUCCESS;
|
||||
}
|
||||
|
||||
uint32_t ImageManagerNv::GetAddrlibSurfaceInfoNv(
|
||||
hsa_agent_t component, const hsa_ext_image_descriptor_t& desc,
|
||||
Image::TileMode tileMode,
|
||||
size_t image_data_row_pitch,
|
||||
size_t image_data_slice_pitch,
|
||||
ADDR2_COMPUTE_SURFACE_INFO_OUTPUT& out) const {
|
||||
const ImageProperty image_prop =
|
||||
GetImageProperty(component, desc.format, desc.geometry);
|
||||
|
||||
const AddrFormat addrlib_format = GetAddrlibFormat(image_prop);
|
||||
|
||||
const uint32_t width = static_cast<uint32_t>(desc.width);
|
||||
const uint32_t height = static_cast<uint32_t>(desc.height);
|
||||
static const size_t kMinNumSlice = 1;
|
||||
const uint32_t num_slice = static_cast<uint32_t>(
|
||||
std::max(kMinNumSlice, std::max(desc.array_size, desc.depth)));
|
||||
|
||||
ADDR2_COMPUTE_SURFACE_INFO_INPUT in = {0};
|
||||
in.size = sizeof(ADDR2_COMPUTE_SURFACE_INFO_INPUT);
|
||||
in.format = addrlib_format;
|
||||
in.bpp = static_cast<unsigned int>(image_prop.element_size) * 8;
|
||||
in.width = width;
|
||||
in.height = height;
|
||||
in.numSlices = num_slice;
|
||||
switch (desc.geometry) {
|
||||
case HSA_EXT_IMAGE_GEOMETRY_1D:
|
||||
case HSA_EXT_IMAGE_GEOMETRY_1DB:
|
||||
case HSA_EXT_IMAGE_GEOMETRY_1DA:
|
||||
in.resourceType = ADDR_RSRC_TEX_1D;
|
||||
break;
|
||||
|
||||
case HSA_EXT_IMAGE_GEOMETRY_2D:
|
||||
case HSA_EXT_IMAGE_GEOMETRY_2DDEPTH:
|
||||
case HSA_EXT_IMAGE_GEOMETRY_2DA:
|
||||
case HSA_EXT_IMAGE_GEOMETRY_2DADEPTH:
|
||||
in.resourceType = ADDR_RSRC_TEX_2D;
|
||||
break;
|
||||
|
||||
case HSA_EXT_IMAGE_GEOMETRY_3D:
|
||||
in.resourceType = ADDR_RSRC_TEX_3D;
|
||||
break;
|
||||
}
|
||||
in.swizzleMode =
|
||||
(tileMode == Image::TileMode::LINEAR)? ADDR_SW_LINEAR : ADDR_SW_4KB;
|
||||
in.flags.texture = 1;
|
||||
|
||||
ADDR2_GET_PREFERRED_SURF_SETTING_INPUT prefSettingsInput = { 0 };
|
||||
ADDR2_GET_PREFERRED_SURF_SETTING_OUTPUT prefSettingsOutput = { 0 };
|
||||
|
||||
prefSettingsInput.size = sizeof(prefSettingsInput);
|
||||
prefSettingsInput.flags = in.flags;
|
||||
prefSettingsInput.bpp = in.bpp;
|
||||
prefSettingsInput.format = in.format;
|
||||
prefSettingsInput.width = in.width;
|
||||
prefSettingsInput.height = in.height;
|
||||
prefSettingsInput.numFrags = in.numFrags;
|
||||
prefSettingsInput.numSamples = in.numSamples;
|
||||
prefSettingsInput.numMipLevels = in.numMipLevels;
|
||||
prefSettingsInput.numSlices = in.numSlices;
|
||||
prefSettingsInput.resourceLoction = ADDR_RSRC_LOC_UNDEF;
|
||||
prefSettingsInput.resourceType = in.resourceType;
|
||||
|
||||
if (tileMode == Image::TileMode::LINEAR) {
|
||||
// this should force linear.
|
||||
prefSettingsInput.forbiddenBlock.macroThin4KB = 1;
|
||||
prefSettingsInput.forbiddenBlock.macroThick4KB = 1;
|
||||
prefSettingsInput.forbiddenBlock.macroThin64KB = 1;
|
||||
prefSettingsInput.forbiddenBlock.macroThick64KB = 1;
|
||||
prefSettingsInput.forbiddenBlock.micro = 1;
|
||||
prefSettingsInput.forbiddenBlock.var = 1;
|
||||
} else {
|
||||
// this should not allow linear.
|
||||
prefSettingsInput.forbiddenBlock.linear = 1;
|
||||
// Debug setting, simplifies buffer alignment.
|
||||
prefSettingsInput.forbiddenBlock.macroThin64KB = 1;
|
||||
prefSettingsInput.forbiddenBlock.macroThick64KB = 1;
|
||||
}
|
||||
|
||||
// but don't ever allow the 256b swizzle modes
|
||||
//prefSettingsInput.forbiddenBlock.micro = 1;
|
||||
// and don't allow variable-size block modes
|
||||
//prefSettingsInput.forbiddenBlock.var = 1;
|
||||
|
||||
if (ADDR_OK != Addr2GetPreferredSurfaceSetting(addr_lib_,
|
||||
&prefSettingsInput, &prefSettingsOutput)) {
|
||||
return (uint32_t)(-1);
|
||||
}
|
||||
|
||||
in.swizzleMode = prefSettingsOutput.swizzleMode;
|
||||
|
||||
out.size = sizeof(ADDR2_COMPUTE_SURFACE_INFO_OUTPUT);
|
||||
if (ADDR_OK != Addr2ComputeSurfaceInfo(addr_lib_, &in, &out)) {
|
||||
return (uint32_t)(-1);
|
||||
}
|
||||
if (out.surfSize == 0) {
|
||||
return (uint32_t)(-1);
|
||||
}
|
||||
|
||||
return in.swizzleMode;
|
||||
}
|
||||
|
||||
hsa_status_t ImageManagerNv::FillImage(const Image& image, const void* pattern,
|
||||
const hsa_ext_image_region_t& region) {
|
||||
if (BlitQueueInit().queue_ == NULL) {
|
||||
return HSA_STATUS_ERROR_OUT_OF_RESOURCES;
|
||||
}
|
||||
|
||||
Image* image_view = const_cast<Image*>(&image);
|
||||
|
||||
SQ_BUF_RSRC_WORD3* word3_buff = NULL;
|
||||
SQ_IMG_RSRC_WORD3* word3_image = NULL;
|
||||
uint32_t dst_sel_w_original = 0;
|
||||
if (image_view->desc.format.channel_type ==
|
||||
HSA_EXT_IMAGE_CHANNEL_TYPE_UNORM_SHORT_101010) {
|
||||
// Force GPU to ignore the last two bits (alpha bits).
|
||||
if (image_view->desc.geometry == HSA_EXT_IMAGE_GEOMETRY_1DB) {
|
||||
word3_buff = reinterpret_cast<SQ_BUF_RSRC_WORD3*>(&image_view->srd[3]);
|
||||
dst_sel_w_original = word3_buff->bits.DST_SEL_W;
|
||||
word3_buff->bits.DST_SEL_W = SEL_0;
|
||||
} else {
|
||||
word3_image = reinterpret_cast<SQ_IMG_RSRC_WORD3*>(&image_view->srd[3]);
|
||||
dst_sel_w_original = word3_image->bits.DST_SEL_W;
|
||||
word3_image->bits.DST_SEL_W = SEL_0;
|
||||
}
|
||||
}
|
||||
|
||||
SQ_IMG_RSRC_WORD1* word1 = NULL;
|
||||
uint32_t num_format_original = 0;
|
||||
const void* new_pattern = pattern;
|
||||
float fill_value[4] = {0};
|
||||
switch (image_view->desc.format.channel_order) {
|
||||
case HSA_EXT_IMAGE_CHANNEL_ORDER_SRGBA:
|
||||
case HSA_EXT_IMAGE_CHANNEL_ORDER_SRGB:
|
||||
case HSA_EXT_IMAGE_CHANNEL_ORDER_SRGBX:
|
||||
case HSA_EXT_IMAGE_CHANNEL_ORDER_SBGRA: {
|
||||
// KV and CZ don't have write support for SRGBA image, so convert pattern
|
||||
// to standard form and treat the image as RGBA image.
|
||||
const float* pattern_f = reinterpret_cast<const float*>(pattern);
|
||||
fill_value[0] = LinearToStandardRGB(pattern_f[0]);
|
||||
fill_value[1] = LinearToStandardRGB(pattern_f[1]);
|
||||
fill_value[2] = LinearToStandardRGB(pattern_f[2]);
|
||||
fill_value[3] = pattern_f[3];
|
||||
new_pattern = fill_value;
|
||||
|
||||
ImageProperty image_prop = image_lut_.MapFormat(image.desc.format, image.desc.geometry);
|
||||
|
||||
word1 = reinterpret_cast<SQ_IMG_RSRC_WORD1*>(&image_view->srd[1]);
|
||||
num_format_original = word1->bits.FORMAT;
|
||||
word1->bits.FORMAT = GetCombinedFormat(image_prop.data_format, TYPE_UNORM);
|
||||
} break;
|
||||
default:
|
||||
break;
|
||||
}
|
||||
|
||||
hsa_status_t status =
|
||||
ext_image::ImageRuntime::instance()->blit_kernel().FillImage(
|
||||
blit_queue_, blit_code_catalog_, *image_view, new_pattern, region);
|
||||
|
||||
// Revert back original configuration.
|
||||
if (word3_buff != NULL) {
|
||||
word3_buff->bits.DST_SEL_W = dst_sel_w_original;
|
||||
}
|
||||
|
||||
if (word3_image != NULL) {
|
||||
word3_image->bits.DST_SEL_W = dst_sel_w_original;
|
||||
}
|
||||
|
||||
if (word1 != NULL) {
|
||||
word1->bits.FORMAT = num_format_original;
|
||||
}
|
||||
|
||||
return status;
|
||||
}
|
||||
|
||||
} // namespace amd
|
||||
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