2020-08-24 13:18:16 +00:00
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/*
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* Copyright 2020 Google LLC
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*
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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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#ifndef SkYUVAInfo_DEFINED
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#define SkYUVAInfo_DEFINED
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#include "include/codec/SkEncodedOrigin.h"
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#include "include/core/SkImageInfo.h"
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#include "include/core/SkSize.h"
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/**
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* Specifies the structure of planes for a YUV image with optional alpha. The actual planar data
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* is not part of this structure and depending on usage is in external textures or pixmaps.
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*/
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class SK_API SkYUVAInfo {
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public:
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/**
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* Specifies how YUV (and optionally A) are divided among planes. Planes are separated by
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* underscores in the enum value names. Within each plane the pixmap/texture channels are
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* mapped to the YUVA channels in the order specified, e.g. for kY_UV Y is in channel 0 of plane
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* 0, U is in channel 0 of plane 1, and V is in channel 1 of plane 1. Channel ordering
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* within a pixmap/texture given the channels it contains:
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* A: 0:A
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* Luminance/Gray: 0:Gray
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* RG 0:R, 1:G
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* RGB 0:R, 1:G, 2:B
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* RGBA 0:R, 1:G, 2:B, 3:A
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*
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* UV subsampling is also specified in the enum value names using J:a:b notation (e.g. 4:2:0 is
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* 1/2 horizontal and 1/2 vertical resolution for U and V). A fourth number is added if alpha
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* is present (always 4 as only full resolution alpha is supported).
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*
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* Currently this only has three-plane formats but more will be added as usage and testing of
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* this expands.
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*/
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enum class PlanarConfig {
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kY_U_V_444, ///< Plane 0: Y, Plane 1: U, Plane 2: V
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kY_U_V_422, ///< Plane 0: Y, Plane 1: U, Plane 2: V
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kY_U_V_420, ///< Plane 0: Y, Plane 1: U, Plane 2: V
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kY_U_V_440, ///< Plane 0: Y, Plane 1: U, Plane 2: V
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kY_U_V_411, ///< Plane 0: Y, Plane 1: U, Plane 2: V
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kY_U_V_410, ///< Plane 0: Y, Plane 1: U, Plane 2: V
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};
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/**
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* Describes how subsampled chroma values are sited relative to luma values.
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*
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* Currently only centered siting is supported but will expand to support additional sitings.
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*/
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enum class Siting {
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/**
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* Subsampled chroma value is sited at the center of the block of corresponding luma values.
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*/
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kCentered,
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};
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static constexpr int kMaxPlanes = 4;
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/**
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2020-08-27 15:00:04 +00:00
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* Given image dimensions, a planar configuration, and origin, determine the expected size of
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* each plane. Returns the number of expected planes. planeDimensions[0] through
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* planeDimensons[<ret>] are written. The input image dimensions are as displayed (after the
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* planes have been transformed to the intended display orientation). The plane dimensions
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* are output as stored in memory.
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2020-08-24 13:18:16 +00:00
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*/
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2020-08-27 15:00:04 +00:00
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static int PlaneDimensions(SkISize imageDimensions,
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PlanarConfig,
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SkEncodedOrigin,
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SkISize planeDimensions[kMaxPlanes]);
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/** Number of planes for a given PlanarConfig. */
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static int NumPlanes(PlanarConfig);
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2020-08-27 15:00:04 +00:00
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/** Does the PlanarConfig have alpha values? */
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static bool HasAlpha(PlanarConfig);
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2020-08-24 13:18:16 +00:00
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SkYUVAInfo() = default;
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SkYUVAInfo(const SkYUVAInfo&) = default;
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/**
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* 'dimensions' should specify the size of the full resolution image (after planes have been
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* oriented to how the image is displayed as indicated by 'origin').
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*/
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SkYUVAInfo(SkISize dimensions,
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PlanarConfig,
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SkYUVColorSpace,
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2020-08-27 15:00:04 +00:00
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SkEncodedOrigin origin = kTopLeft_SkEncodedOrigin,
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Siting sitingX = Siting::kCentered,
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Siting sitingY = Siting::kCentered);
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SkYUVAInfo& operator=(const SkYUVAInfo& that) = default;
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PlanarConfig planarConfig() const { return fPlanarConfig; }
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/**
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* Dimensions of the full resolution image (after planes have been oriented to how the image
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* is displayed as indicated by fOrigin).
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*/
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SkISize dimensions() const { return fDimensions; }
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int width() const { return fDimensions.width(); }
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int height() const { return fDimensions.height(); }
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SkYUVColorSpace yuvColorSpace() const { return fYUVColorSpace; }
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Siting sitingX() const { return fSitingX; }
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Siting sitingY() const { return fSitingY; }
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SkEncodedOrigin origin() const { return fOrigin; }
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bool hasAlpha() const { return HasAlpha(fPlanarConfig); }
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/**
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* Returns the number of planes and initializes planeDimensions[0]..planeDimensions[<ret>] to
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* the expected dimensions for each plane. Dimensions are as stored in memory, before
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* transformation to image display space as indicated by origin().
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2020-08-24 13:18:16 +00:00
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*/
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int planeDimensions(SkISize planeDimensions[kMaxPlanes]) const {
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return PlaneDimensions(fDimensions, fPlanarConfig, fOrigin, planeDimensions);
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}
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/**
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* Given a per-plane row bytes, determine size to allocate for all planes. Optionally retrieves
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* the per-plane byte sizes in planeSizes if not null. If total size overflows will return
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* SIZE_MAX and set all planeSizes to SIZE_MAX.
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*/
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size_t computeTotalBytes(const size_t rowBytes[kMaxPlanes],
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size_t planeSizes[kMaxPlanes] = nullptr) const;
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int numPlanes() const { return NumPlanes(fPlanarConfig); }
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bool operator==(const SkYUVAInfo& that) const;
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bool operator!=(const SkYUVAInfo& that) const { return !(*this == that); }
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private:
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SkISize fDimensions = {0, 0};
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PlanarConfig fPlanarConfig = PlanarConfig::kY_U_V_444;
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SkYUVColorSpace fYUVColorSpace = SkYUVColorSpace::kIdentity_SkYUVColorSpace;
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/**
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* YUVA data often comes from formats like JPEG that support EXIF orientation.
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* Code that operates on the raw YUV data often needs to know that orientation.
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*/
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SkEncodedOrigin fOrigin = kTopLeft_SkEncodedOrigin;
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Siting fSitingX = Siting::kCentered;
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Siting fSitingY = Siting::kCentered;
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};
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#endif
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