1. Allocate secure buffer from DMA_HEAP_IOCTL_ALLOC ,then using FD to create a GEM handle and close this FD. 2. Since the secure buffer doesn't allocate via DRM_IOCTL_MTK_GEM_CREATE, the DRM_MTK_GEM_CREATE_FLAG_RESTRICTED flag can be removed. It should be added in the code that calls drmModeAddFB2(). 3. Add mediatek_private_drv_data to store the dma_heap_fd in drv->priv, and also add mediatek_close() to close dma_heap_fd and free drv->priv when backend driver is closing. BUG=b:248609774 TEST=emerge-geralt minigbm Change-Id: I96df25580efe04f2c9a739b2d68de8837df091df Signed-off-by: Jason-jh Lin <jason-jh.lin@mediatek.corp-partner.google.com> Reviewed-on: https://chromium-review.googlesource.com/c/chromiumos/platform/minigbm/+/5581571 Reviewed-by: Jeffrey Kardatzke <jkardatzke@google.com> Commit-Queue: Jeffrey Kardatzke <jkardatzke@google.com>
637 lines
20 KiB
C
637 lines
20 KiB
C
/*
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* Copyright 2015 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_MEDIATEK
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// clang-format off
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#include <errno.h>
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#include <fcntl.h>
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#include <inttypes.h>
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#if !defined(ANDROID) || (ANDROID_API_LEVEL >= 31 && defined(HAS_DMABUF_SYSTEM_HEAP))
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#include <linux/dma-heap.h>
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#endif
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#include <poll.h>
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#include <stdio.h>
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#include <string.h>
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#include <sys/ioctl.h>
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#include <sys/mman.h>
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#include <unistd.h>
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#include <xf86drm.h>
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#include <mediatek_drm.h>
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// clang-format on
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#include "drv_helpers.h"
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#include "drv_priv.h"
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#include "util.h"
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#define TILE_TYPE_LINEAR 0
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// clang-format off
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#if defined(MTK_MT8183) || \
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defined(MTK_MT8186)
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// clang-format on
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#define SUPPORT_YUV422
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#endif
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// All platforms except MT8173 should USE_NV12_FOR_HW_VIDEO_DECODING
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// and SUPPORT_FP16_AND_10BIT_ABGR
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// clang-format off
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#if defined(MTK_MT8183) || \
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defined(MTK_MT8186) || \
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defined(MTK_MT8188G) || \
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defined(MTK_MT8192) || \
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defined(MTK_MT8195) || \
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defined(MTK_MT8196)
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// clang-format on
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#define USE_NV12_FOR_HW_VIDEO_DECODING
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#define SUPPORT_FP16_AND_10BIT_ABGR
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#else
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#define DONT_USE_64_ALIGNMENT_FOR_VIDEO_BUFFERS
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#endif
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// Devices newer than MT8186 support AR30 overlays and 10-bit video.
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// clang-format off
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#if !defined(MTK_MT8173) && \
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!defined(MTK_MT8183) && \
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!defined(MTK_MT8186) && \
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!defined(MTK_MT8192)
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// clang-format on
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#define SUPPORT_P010
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#define SUPPORT_AR30_OVERLAYS
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#endif
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// For Mali Sigurd based GPUs, the texture unit reads outside the specified texture dimensions.
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// Therefore, certain formats require extra memory padding to its allocated surface to prevent the
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// hardware from reading outside an allocation. For YVU420, we need additional padding for the last
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// chroma plane.
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#if defined(MTK_MT8186)
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#define USE_EXTRA_PADDING_FOR_YVU420
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#endif
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struct mediatek_private_drv_data {
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int dma_heap_fd;
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};
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struct mediatek_private_map_data {
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void *cached_addr;
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void *gem_addr;
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int prime_fd;
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};
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static const uint32_t render_target_formats[] = { DRM_FORMAT_ABGR8888, DRM_FORMAT_ARGB8888,
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DRM_FORMAT_RGB565, DRM_FORMAT_XBGR8888,
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DRM_FORMAT_XRGB8888 };
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// clang-format off
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static const uint32_t texture_source_formats[] = {
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#ifdef SUPPORT_YUV422
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DRM_FORMAT_NV21,
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DRM_FORMAT_YUYV,
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#endif
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#ifdef SUPPORT_P010
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DRM_FORMAT_P010,
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#endif
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#ifdef SUPPORT_FP16_AND_10BIT_ABGR
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DRM_FORMAT_ABGR2101010,
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DRM_FORMAT_ABGR16161616F,
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#endif
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DRM_FORMAT_NV12,
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DRM_FORMAT_YVU420,
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DRM_FORMAT_YVU420_ANDROID
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};
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static const uint32_t video_yuv_formats[] = {
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DRM_FORMAT_NV21,
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DRM_FORMAT_NV12,
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#ifdef SUPPORT_P010
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DRM_FORMAT_P010,
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#endif
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DRM_FORMAT_YUYV,
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DRM_FORMAT_YVU420,
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DRM_FORMAT_YVU420_ANDROID
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};
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// clang-format on
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static bool is_video_yuv_format(uint32_t format)
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{
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size_t i;
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for (i = 0; i < ARRAY_SIZE(video_yuv_formats); ++i) {
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if (format == video_yuv_formats[i])
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return true;
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}
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return false;
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}
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static int mediatek_init(struct driver *drv)
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{
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struct format_metadata metadata;
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struct mediatek_private_drv_data *priv;
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priv = calloc(1, sizeof(*priv));
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if (!priv) {
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drv_loge("Failed calloc private data, errno=%d\n", -errno);
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return -errno;
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}
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priv->dma_heap_fd = -1;
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drv->priv = priv;
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drv_add_combinations(drv, render_target_formats, ARRAY_SIZE(render_target_formats),
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&LINEAR_METADATA,
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BO_USE_RENDER_MASK | BO_USE_SCANOUT | BO_USE_PROTECTED);
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drv_add_combinations(drv, texture_source_formats, ARRAY_SIZE(texture_source_formats),
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&LINEAR_METADATA, BO_USE_TEXTURE_MASK | BO_USE_PROTECTED);
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drv_add_combination(drv, DRM_FORMAT_R8, &LINEAR_METADATA,
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BO_USE_SW_MASK | BO_USE_LINEAR | BO_USE_PROTECTED);
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#ifdef SUPPORT_AR30_OVERLAYS
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drv_add_combination(drv, DRM_FORMAT_ARGB2101010, &LINEAR_METADATA,
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BO_USE_TEXTURE | BO_USE_SCANOUT | BO_USE_PROTECTED | BO_USE_LINEAR);
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#endif
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/* YUYV format for video overlay and camera subsystem. */
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drv_add_combination(drv, DRM_FORMAT_YUYV, &LINEAR_METADATA,
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BO_USE_HW_VIDEO_DECODER | BO_USE_SCANOUT | BO_USE_LINEAR |
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BO_USE_TEXTURE | BO_USE_PROTECTED);
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/* Android CTS tests require this. */
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drv_add_combination(drv, DRM_FORMAT_BGR888, &LINEAR_METADATA, BO_USE_SW_MASK);
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/* Support BO_USE_HW_VIDEO_DECODER for protected content minigbm allocations. */
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metadata.tiling = TILE_TYPE_LINEAR;
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metadata.priority = 1;
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metadata.modifier = DRM_FORMAT_MOD_LINEAR;
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drv_modify_combination(drv, DRM_FORMAT_YVU420, &metadata,
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BO_USE_HW_VIDEO_DECODER | BO_USE_PROTECTED);
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#ifdef MTK_MT8173
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/*
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* b/292507490: The MT8173 decoder can output YUV420 only. Some CTS tests feed the
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* decoded buffer to the hardware encoder and the tests allocate the buffer with
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* DRM_FORMAT_FLEX_YCbCr_420_888 with the mask of BO_USE_HW_VIDEO_ENCODER |
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* BO_USE_HW_VIDEO_DECODER. Therefore, we have to allocate YUV420 in the case.
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*/
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drv_modify_combination(drv, DRM_FORMAT_YVU420, &metadata, BO_USE_HW_VIDEO_ENCODER);
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#endif
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drv_modify_combination(drv, DRM_FORMAT_YVU420_ANDROID, &metadata,
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BO_USE_HW_VIDEO_DECODER | BO_USE_PROTECTED);
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#ifdef USE_NV12_FOR_HW_VIDEO_DECODING
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// TODO(hiroh): Switch to use NV12 for video decoder on MT8173 as well.
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drv_modify_combination(drv, DRM_FORMAT_NV12, &metadata,
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BO_USE_HW_VIDEO_DECODER | BO_USE_PROTECTED);
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#endif
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drv_modify_combination(drv, DRM_FORMAT_P010, &metadata,
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BO_USE_HW_VIDEO_DECODER | BO_USE_PROTECTED);
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/*
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* R8 format is used for Android's HAL_PIXEL_FORMAT_BLOB for input/output from
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* hardware decoder/encoder.
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*/
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drv_modify_combination(drv, DRM_FORMAT_R8, &metadata,
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BO_USE_HW_VIDEO_DECODER | BO_USE_HW_VIDEO_ENCODER |
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BO_USE_CAMERA_READ | BO_USE_CAMERA_WRITE |
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BO_USE_GPU_DATA_BUFFER | BO_USE_SENSOR_DIRECT_DATA);
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/* NV12 format for encoding and display. */
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drv_modify_combination(drv, DRM_FORMAT_NV12, &metadata,
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BO_USE_SCANOUT | BO_USE_HW_VIDEO_ENCODER | BO_USE_CAMERA_READ |
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BO_USE_CAMERA_WRITE);
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#ifdef MTK_MT8183
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/* Only for MT8183 Camera subsystem */
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drv_modify_combination(drv, DRM_FORMAT_NV21, &metadata,
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BO_USE_CAMERA_READ | BO_USE_CAMERA_WRITE);
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drv_modify_combination(drv, DRM_FORMAT_YUYV, &metadata,
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BO_USE_CAMERA_READ | BO_USE_CAMERA_WRITE);
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drv_modify_combination(drv, DRM_FORMAT_YVU420, &metadata,
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BO_USE_CAMERA_READ | BO_USE_CAMERA_WRITE);
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/* Private formats for private reprocessing in camera */
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drv_add_combination(drv, DRM_FORMAT_MTISP_SXYZW10, &metadata,
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BO_USE_CAMERA_READ | BO_USE_CAMERA_WRITE | BO_USE_SW_MASK);
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#endif
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return drv_modify_linear_combinations(drv);
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}
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static void mediatek_close(struct driver *drv)
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{
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struct mediatek_private_drv_data *priv = (struct mediatek_private_drv_data *)drv->priv;
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if (priv->dma_heap_fd >= 0)
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close(priv->dma_heap_fd);
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free(priv);
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drv->priv = NULL;
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}
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static int mediatek_bo_create_with_modifiers(struct bo *bo, uint32_t width, uint32_t height,
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uint32_t format, const uint64_t *modifiers,
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uint32_t count)
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{
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int ret;
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size_t plane;
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uint32_t stride;
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struct drm_mtk_gem_create gem_create = { 0 };
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const bool is_camera_write = bo->meta.use_flags & BO_USE_CAMERA_WRITE;
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const bool is_hw_video_encoder = bo->meta.use_flags & BO_USE_HW_VIDEO_ENCODER;
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const bool is_linear = bo->meta.use_flags & BO_USE_LINEAR;
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const bool is_protected = bo->meta.use_flags & BO_USE_PROTECTED;
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const bool is_scanout = bo->meta.use_flags & BO_USE_SCANOUT;
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/*
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* We identify the ChromeOS Camera App buffers via these two USE flags. Those buffers need
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* the same alignment as the video hardware encoding.
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*/
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const bool is_camera_preview = is_scanout && is_camera_write;
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#ifdef MTK_MT8173
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const bool is_mt8173_video_decoder = bo->meta.use_flags & BO_USE_HW_VIDEO_DECODER;
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#else
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const bool is_mt8173_video_decoder = false;
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#endif
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/*
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* Android sends blobs for encoding in the shape of a single-row pixel buffer. Use R8 +
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* single row as a proxy for Android HAL_PIXEL_FORMAT_BLOB until a drm equivalent is
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* defined.
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*/
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const bool is_format_blob = format == DRM_FORMAT_R8 && height == 1;
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if (!drv_has_modifier(modifiers, count, DRM_FORMAT_MOD_LINEAR)) {
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errno = EINVAL;
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drv_loge("no usable modifier found\n");
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return -EINVAL;
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}
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/*
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* Since the ARM L1 cache line size is 64 bytes, align to that as a
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* performance optimization, except for video buffers on certain platforms,
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* these should only be accessed from the GPU and VCODEC subsystems (maybe
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* also MDP), so it's better to align to macroblocks.
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*/
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stride = drv_stride_from_format(format, width, 0);
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#ifdef DONT_USE_64_ALIGNMENT_FOR_VIDEO_BUFFERS
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const uint32_t alignment = is_video_yuv_format(format) ? 16 : 64;
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stride = ALIGN(stride, alignment);
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#else
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stride = ALIGN(stride, 64);
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#endif
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/*
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* The mediatek video decoder requires to align width and height by 64. But this is
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* the requirement for mediatek tiled format (e.g. MT21 and MM21). The buffers are
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* not allocated by minigbm. So we don't have to care about it. The tiled buffer is
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* converted to NV12 or YV12, which is allocated by minigbm. V4L2 MDP doesn't
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* require any special alignment for them.
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* On the other hand, the mediatek video encoder reuqires a padding on each plane.
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* When both video decoder and encoder use flag is masked (in some CTS test), we
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* align with the encoder alignment.
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* However, V4L2VideoDecodeAccelerator used on MT8173 fails handling the buffer with
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* padding, although V4L2VideoDecoder used on MT8183 and later can do. We workaround
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* this problem to allocate a buffer without padding on MT8173. This works because
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* MT8173 decoder's output NV12 is converted to YV12 buffer that is allocated with
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* video encoder usage mask only and thus have padding in Android.
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* See go/mediatek-video-buffer-alignment-note for detail.
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*/
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if ((is_hw_video_encoder && !is_mt8173_video_decoder && !is_format_blob) ||
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is_camera_preview) {
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uint32_t aligned_height = ALIGN(height, 32);
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uint32_t padding[DRV_MAX_PLANES] = { 0 };
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for (plane = 0; plane < bo->meta.num_planes; ++plane) {
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uint32_t plane_stride = drv_stride_from_format(format, stride, plane);
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padding[plane] = plane_stride *
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(32 / drv_vertical_subsampling_from_format(format, plane));
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}
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drv_bo_from_format_and_padding(bo, stride, 1, aligned_height, format, padding);
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} else {
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#ifdef USE_EXTRA_PADDING_FOR_YVU420
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/*
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* Apply extra padding for YV12 if the height does not meet round up requirement and
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* the image is to be sampled by gpu.
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*/
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static const uint32_t required_round_up = 4;
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const uint32_t height_mod = height % required_round_up;
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const bool is_texture = bo->meta.use_flags & BO_USE_TEXTURE;
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/*
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* YVU420 and YVU420_ANDROID treatments have been aligned in mediatek backend. Check
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* both since gbm frontend still maps linear YVU420 to YVU420_ANDROID for other hw
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* backends.
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*/
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const bool is_format_yv12 =
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format == DRM_FORMAT_YVU420 || format == DRM_FORMAT_YVU420_ANDROID;
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#endif
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#ifdef SUPPORT_YUV422
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/*
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* JPEG Encoder Accelerator requires 16x16 alignment. We want the buffer
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* from camera can be put in JEA directly so align the height to 16
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* bytes.
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*/
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if (format == DRM_FORMAT_NV12)
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height = ALIGN(height, 16);
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#endif
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drv_bo_from_format(bo, stride, 1, height, format);
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#ifdef USE_EXTRA_PADDING_FOR_YVU420
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if (is_format_yv12 && is_texture && height_mod) {
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const uint32_t height_padding = required_round_up - height_mod;
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const uint32_t y_padding =
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drv_size_from_format(format, bo->meta.strides[0], height_padding, 0);
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const uint32_t u_padding =
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drv_size_from_format(format, bo->meta.strides[2], height_padding, 2);
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const uint32_t vu_size = drv_bo_get_plane_size(bo, 2) * 2;
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bo->meta.total_size += u_padding;
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/*
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* Since we are not aligning Y, we must make sure that its padding fits
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* inside the rest of the space allocated for the V/U planes.
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*/
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if (y_padding > vu_size) {
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/* Align with mali workaround to pad all 3 planes. */
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bo->meta.total_size += y_padding + u_padding;
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}
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}
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#endif
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}
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/* For protected data buffer needs to allocate from DMA_HEAP directly */
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if (is_protected) {
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#if !defined(ANDROID) || (ANDROID_API_LEVEL >= 31 && defined(HAS_DMABUF_SYSTEM_HEAP))
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int ret;
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struct mediatek_private_drv_data *priv = (struct mediatek_private_drv_data *)bo->drv->priv;
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struct dma_heap_allocation_data heap_data = {
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.len = bo->meta.total_size,
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.fd_flags = O_RDWR | O_CLOEXEC,
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};
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if (format == DRM_FORMAT_P010) {
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/*
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* Adjust the size so we don't waste tons of space. This was allocated
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* with 16 bpp, but we only need 10 bpp. We can safely divide by 8 because
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* we are aligned at a multiple higher than that.
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*/
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bo->meta.strides[0] = bo->meta.strides[0] * 10 / 16;
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bo->meta.strides[1] = bo->meta.strides[1] * 10 / 16;
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bo->meta.sizes[0] = bo->meta.sizes[0] * 10 / 16;
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bo->meta.sizes[1] = bo->meta.sizes[1] * 10 / 16;
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bo->meta.offsets[1] = bo->meta.sizes[0];
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bo->meta.total_size = bo->meta.total_size * 10 / 16;
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}
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if (priv->dma_heap_fd < 0) {
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priv->dma_heap_fd = open("/dev/dma_heap/restricted_mtk_cma", O_RDWR | O_CLOEXEC);
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if (priv->dma_heap_fd < 0) {
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drv_loge("Failed opening secure CMA heap errno=%d\n", -errno);
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return -errno;
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}
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}
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ret = ioctl(priv->dma_heap_fd, DMA_HEAP_IOCTL_ALLOC, &heap_data);
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if (ret < 0) {
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drv_loge("Failed allocating CMA buffer ret=%d\n", ret);
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return ret;
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}
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/* Create GEM handle for secure CMA and close FD here */
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ret = drmPrimeFDToHandle(bo->drv->fd, heap_data.fd, &bo->handle.u32);
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close(heap_data.fd);
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if (ret) {
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drv_loge("Failed drmPrimeFDToHandle(fd:%d) ret=%d\n", heap_data.fd, ret);
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return ret;
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}
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#else
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drv_loge("Protected allocation not supported\n");
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return -1;
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#endif
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return 0;
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}
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/*
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* For linear scanout buffers, the read/write pattern is usually linear i.e. each address is
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* accessed sequentially, and there are fewer chances that an address will be repeatedly
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* accessed.
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* This behavior leads to less TLB dependency and cache misses i.e. no need to translate the
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* same virtual address to a physical address multiple times.
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*
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* With that premise, it's safe to allow the DMA framework to fulfill such allocation
|
|
* requests with non-continuous smaller chunks of memory (e.g., 4KiB single pages) which
|
|
* are generally easier to allocate compared to large continuous chunks of memory, improving
|
|
* memory allocation efficiency and reduce the risk of allocation failures, especially when
|
|
* available memory budget is low or on memory-constrained devices.
|
|
*/
|
|
if (is_linear && is_scanout)
|
|
gem_create.flags |= DRM_MTK_GEM_CREATE_FLAG_ALLOC_SINGLE_PAGES;
|
|
|
|
gem_create.size = bo->meta.total_size;
|
|
|
|
ret = drmIoctl(bo->drv->fd, DRM_IOCTL_MTK_GEM_CREATE, &gem_create);
|
|
if (ret) {
|
|
drv_loge("DRM_IOCTL_MTK_GEM_CREATE failed (size=%" PRIu64 ")\n", gem_create.size);
|
|
return -errno;
|
|
}
|
|
|
|
bo->handle.u32 = gem_create.handle;
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int mediatek_bo_create(struct bo *bo, uint32_t width, uint32_t height, uint32_t format,
|
|
uint64_t use_flags)
|
|
{
|
|
uint64_t modifiers[] = { DRM_FORMAT_MOD_LINEAR };
|
|
return mediatek_bo_create_with_modifiers(bo, width, height, format, modifiers,
|
|
ARRAY_SIZE(modifiers));
|
|
}
|
|
|
|
static void *mediatek_bo_map(struct bo *bo, struct vma *vma, uint32_t map_flags)
|
|
{
|
|
int ret, prime_fd;
|
|
struct drm_mtk_gem_map_off gem_map = { 0 };
|
|
struct mediatek_private_map_data *priv;
|
|
void *addr = NULL;
|
|
|
|
gem_map.handle = bo->handle.u32;
|
|
|
|
ret = drmIoctl(bo->drv->fd, DRM_IOCTL_MTK_GEM_MAP_OFFSET, &gem_map);
|
|
if (ret) {
|
|
drv_loge("DRM_IOCTL_MTK_GEM_MAP_OFFSET failed\n");
|
|
return MAP_FAILED;
|
|
}
|
|
|
|
prime_fd = drv_bo_get_plane_fd(bo, 0);
|
|
if (prime_fd < 0) {
|
|
drv_loge("Failed to get a prime fd\n");
|
|
return MAP_FAILED;
|
|
}
|
|
|
|
addr = mmap(0, bo->meta.total_size, drv_get_prot(map_flags), MAP_SHARED, bo->drv->fd,
|
|
gem_map.offset);
|
|
if (addr == MAP_FAILED)
|
|
goto out_close_prime_fd;
|
|
|
|
vma->length = bo->meta.total_size;
|
|
|
|
priv = calloc(1, sizeof(*priv));
|
|
if (!priv)
|
|
goto out_unmap_addr;
|
|
|
|
if (bo->meta.use_flags & BO_USE_RENDERSCRIPT) {
|
|
priv->cached_addr = calloc(1, bo->meta.total_size);
|
|
if (!priv->cached_addr)
|
|
goto out_free_priv;
|
|
|
|
priv->gem_addr = addr;
|
|
addr = priv->cached_addr;
|
|
}
|
|
|
|
priv->prime_fd = prime_fd;
|
|
vma->priv = priv;
|
|
|
|
return addr;
|
|
|
|
out_free_priv:
|
|
free(priv);
|
|
out_unmap_addr:
|
|
munmap(addr, bo->meta.total_size);
|
|
out_close_prime_fd:
|
|
close(prime_fd);
|
|
return MAP_FAILED;
|
|
}
|
|
|
|
static int mediatek_bo_unmap(struct bo *bo, struct vma *vma)
|
|
{
|
|
if (vma->priv) {
|
|
struct mediatek_private_map_data *priv = vma->priv;
|
|
|
|
if (priv->cached_addr) {
|
|
vma->addr = priv->gem_addr;
|
|
free(priv->cached_addr);
|
|
}
|
|
|
|
close(priv->prime_fd);
|
|
free(priv);
|
|
vma->priv = NULL;
|
|
}
|
|
|
|
return munmap(vma->addr, vma->length);
|
|
}
|
|
|
|
static int mediatek_bo_invalidate(struct bo *bo, struct mapping *mapping)
|
|
{
|
|
struct mediatek_private_map_data *priv = mapping->vma->priv;
|
|
|
|
if (priv) {
|
|
struct pollfd fds = {
|
|
.fd = priv->prime_fd,
|
|
};
|
|
|
|
if (mapping->vma->map_flags & BO_MAP_WRITE)
|
|
fds.events |= POLLOUT;
|
|
|
|
if (mapping->vma->map_flags & BO_MAP_READ)
|
|
fds.events |= POLLIN;
|
|
|
|
poll(&fds, 1, -1);
|
|
if (fds.revents != fds.events)
|
|
drv_loge("poll prime_fd failed\n");
|
|
|
|
if (priv->cached_addr)
|
|
memcpy(priv->cached_addr, priv->gem_addr, bo->meta.total_size);
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int mediatek_bo_flush(struct bo *bo, struct mapping *mapping)
|
|
{
|
|
struct mediatek_private_map_data *priv = mapping->vma->priv;
|
|
if (priv && priv->cached_addr && (mapping->vma->map_flags & BO_MAP_WRITE))
|
|
memcpy(priv->gem_addr, priv->cached_addr, bo->meta.total_size);
|
|
|
|
return 0;
|
|
}
|
|
|
|
static void mediatek_resolve_format_and_use_flags(struct driver *drv, uint32_t format,
|
|
uint64_t use_flags, uint32_t *out_format,
|
|
uint64_t *out_use_flags)
|
|
{
|
|
*out_format = format;
|
|
*out_use_flags = use_flags;
|
|
switch (format) {
|
|
case DRM_FORMAT_FLEX_IMPLEMENTATION_DEFINED:
|
|
#ifdef MTK_MT8183
|
|
/* Only MT8183 Camera subsystem offers private reprocessing
|
|
* capability. CAMERA_READ indicates the buffer is intended for
|
|
* reprocessing and hence given the private format for MTK. */
|
|
if (use_flags & BO_USE_CAMERA_READ) {
|
|
*out_format = DRM_FORMAT_MTISP_SXYZW10;
|
|
break;
|
|
}
|
|
#endif
|
|
if (use_flags & BO_USE_CAMERA_WRITE) {
|
|
*out_format = DRM_FORMAT_NV12;
|
|
break;
|
|
}
|
|
|
|
/* HACK: See b/28671744 */
|
|
*out_format = DRM_FORMAT_XBGR8888;
|
|
*out_use_flags &= ~BO_USE_HW_VIDEO_ENCODER;
|
|
break;
|
|
case DRM_FORMAT_FLEX_YCbCr_420_888:
|
|
#ifdef USE_NV12_FOR_HW_VIDEO_DECODING
|
|
// TODO(hiroh): Switch to use NV12 for video decoder on MT8173 as well.
|
|
if (use_flags & (BO_USE_HW_VIDEO_DECODER)) {
|
|
*out_format = DRM_FORMAT_NV12;
|
|
break;
|
|
}
|
|
#endif
|
|
/*
|
|
* b/292507490: The MT8173 decoder can output YUV420 only. Some CTS tests feed the
|
|
* decoded buffer to the hardware encoder and the tests allocate the buffer with
|
|
* DRM_FORMAT_FLEX_YCbCr_420_888 with the mask of BO_USE_HW_VIDEO_ENCODER |
|
|
* BO_USE_HW_VIDEO_DECODER. Therefore, we have to allocate YUV420 in the case.
|
|
*/
|
|
if (use_flags &
|
|
(BO_USE_CAMERA_READ | BO_USE_CAMERA_WRITE | BO_USE_HW_VIDEO_ENCODER)) {
|
|
#ifndef MTK_MT8173
|
|
*out_format = DRM_FORMAT_NV12;
|
|
break;
|
|
#else
|
|
if (!(use_flags & BO_USE_HW_VIDEO_DECODER)) {
|
|
*out_format = DRM_FORMAT_NV12;
|
|
break;
|
|
}
|
|
#endif
|
|
}
|
|
/* HACK: See b/139714614 */
|
|
*out_format = DRM_FORMAT_YVU420;
|
|
*out_use_flags &= ~BO_USE_SCANOUT;
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
/* Mediatek doesn't support YUV overlays */
|
|
if (is_video_yuv_format(format))
|
|
*out_use_flags &= ~BO_USE_SCANOUT;
|
|
}
|
|
|
|
const struct backend backend_mediatek = {
|
|
.name = "mediatek",
|
|
.init = mediatek_init,
|
|
.close = mediatek_close,
|
|
.bo_create = mediatek_bo_create,
|
|
.bo_create_with_modifiers = mediatek_bo_create_with_modifiers,
|
|
.bo_destroy = drv_gem_bo_destroy,
|
|
.bo_import = drv_prime_bo_import,
|
|
.bo_map = mediatek_bo_map,
|
|
.bo_unmap = mediatek_bo_unmap,
|
|
.bo_invalidate = mediatek_bo_invalidate,
|
|
.bo_flush = mediatek_bo_flush,
|
|
.resolve_format_and_use_flags = mediatek_resolve_format_and_use_flags,
|
|
};
|
|
|
|
#endif
|