mirror of
https://github.com/RGBCube/serenity
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... and bring it back to try_load_from_file().
Prior to this change, changing the scaling option to x2 in the Display
Settings resulted in the following crash:
WindowServer(15:15): ASSERTION FAILED: bitmap->width() % scale_factor
== 0 ./Userland/Libraries/LibGfx/Bitmap.cpp:126
That was caused by two minor overlooked yaks:
- First, Bitmap::try_load_from_fd_and_close() tried to respect your
scale factor.
While requesting a bitmap from file can make a switcheroo to give you
a higher resolution bitmap, doing the same when you already have an fd
might violate the unveil agreement.
... but, it didn't do that.
It read bitmaps from requested fds, but also pretended all system
bitmaps in /res/ are the HiDPI ones when you enabled that mode.
- d85d741c59
used this function to deduplicate try_load_from_file().
It actually made this bug a lot easier to replicate!
Closes #10920
343 lines
11 KiB
C++
343 lines
11 KiB
C++
/*
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* Copyright (c) 2018-2021, Andreas Kling <kling@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#pragma once
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#include <AK/Forward.h>
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#include <AK/RefCounted.h>
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#include <LibCore/AnonymousBuffer.h>
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#include <LibGfx/Color.h>
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#include <LibGfx/Forward.h>
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#include <LibGfx/Rect.h>
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#define ENUMERATE_IMAGE_FORMATS \
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__ENUMERATE_IMAGE_FORMAT(pbm, ".pbm") \
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__ENUMERATE_IMAGE_FORMAT(pgm, ".pgm") \
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__ENUMERATE_IMAGE_FORMAT(png, ".png") \
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__ENUMERATE_IMAGE_FORMAT(ppm, ".ppm") \
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__ENUMERATE_IMAGE_FORMAT(gif, ".gif") \
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__ENUMERATE_IMAGE_FORMAT(bmp, ".bmp") \
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__ENUMERATE_IMAGE_FORMAT(ico, ".ico") \
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__ENUMERATE_IMAGE_FORMAT(jpg, ".jpg") \
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__ENUMERATE_IMAGE_FORMAT(jpg, ".jpeg") \
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__ENUMERATE_IMAGE_FORMAT(dds, ".dds")
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namespace Gfx {
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enum class BitmapFormat {
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Invalid,
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Indexed1,
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Indexed2,
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Indexed4,
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Indexed8,
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BGRx8888,
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BGRA8888,
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RGBA8888,
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};
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inline bool is_valid_bitmap_format(unsigned format)
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{
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switch (format) {
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case (unsigned)BitmapFormat::Invalid:
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case (unsigned)BitmapFormat::Indexed1:
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case (unsigned)BitmapFormat::Indexed2:
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case (unsigned)BitmapFormat::Indexed4:
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case (unsigned)BitmapFormat::Indexed8:
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case (unsigned)BitmapFormat::BGRx8888:
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case (unsigned)BitmapFormat::BGRA8888:
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case (unsigned)BitmapFormat::RGBA8888:
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return true;
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}
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return false;
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}
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enum class StorageFormat {
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Indexed8,
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BGRx8888,
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BGRA8888,
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RGBA8888,
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};
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static StorageFormat determine_storage_format(BitmapFormat format)
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{
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switch (format) {
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case BitmapFormat::BGRx8888:
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return StorageFormat::BGRx8888;
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case BitmapFormat::BGRA8888:
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return StorageFormat::BGRA8888;
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case BitmapFormat::RGBA8888:
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return StorageFormat::RGBA8888;
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case BitmapFormat::Indexed1:
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case BitmapFormat::Indexed2:
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case BitmapFormat::Indexed4:
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case BitmapFormat::Indexed8:
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return StorageFormat::Indexed8;
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default:
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VERIFY_NOT_REACHED();
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}
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}
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struct BackingStore;
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enum RotationDirection {
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CounterClockwise,
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Clockwise
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};
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class Bitmap : public RefCounted<Bitmap> {
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public:
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[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> try_create(BitmapFormat, IntSize const&, int intrinsic_scale = 1);
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[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> try_create_shareable(BitmapFormat, IntSize const&, int intrinsic_scale = 1);
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[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> try_create_wrapper(BitmapFormat, IntSize const&, int intrinsic_scale, size_t pitch, void*);
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[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> try_load_from_file(String const& path, int scale_factor = 1);
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[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> try_load_from_fd_and_close(int fd, String const& path);
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[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> try_create_with_anonymous_buffer(BitmapFormat, Core::AnonymousBuffer, IntSize const&, int intrinsic_scale, Vector<RGBA32> const& palette);
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static ErrorOr<NonnullRefPtr<Bitmap>> try_create_from_serialized_byte_buffer(ByteBuffer&&);
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static bool is_path_a_supported_image_format(StringView path)
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{
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#define __ENUMERATE_IMAGE_FORMAT(Name, Ext) \
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if (path.ends_with(Ext, CaseSensitivity::CaseInsensitive)) \
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return true;
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ENUMERATE_IMAGE_FORMATS
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#undef __ENUMERATE_IMAGE_FORMAT
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return false;
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}
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ErrorOr<NonnullRefPtr<Gfx::Bitmap>> clone() const;
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ErrorOr<NonnullRefPtr<Gfx::Bitmap>> rotated(Gfx::RotationDirection) const;
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ErrorOr<NonnullRefPtr<Gfx::Bitmap>> flipped(Gfx::Orientation) const;
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ErrorOr<NonnullRefPtr<Gfx::Bitmap>> scaled(int sx, int sy) const;
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ErrorOr<NonnullRefPtr<Gfx::Bitmap>> scaled(float sx, float sy) const;
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ErrorOr<NonnullRefPtr<Gfx::Bitmap>> cropped(Gfx::IntRect) const;
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ErrorOr<NonnullRefPtr<Gfx::Bitmap>> to_bitmap_backed_by_anonymous_buffer() const;
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[[nodiscard]] ByteBuffer serialize_to_byte_buffer() const;
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[[nodiscard]] ShareableBitmap to_shareable_bitmap() const;
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~Bitmap();
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[[nodiscard]] u8* scanline_u8(int physical_y);
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[[nodiscard]] u8 const* scanline_u8(int physical_y) const;
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[[nodiscard]] RGBA32* scanline(int physical_y);
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[[nodiscard]] RGBA32 const* scanline(int physical_y) const;
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[[nodiscard]] IntRect rect() const { return { {}, m_size }; }
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[[nodiscard]] IntSize size() const { return m_size; }
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[[nodiscard]] int width() const { return m_size.width(); }
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[[nodiscard]] int height() const { return m_size.height(); }
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[[nodiscard]] int scale() const { return m_scale; }
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[[nodiscard]] IntRect physical_rect() const { return rect() * scale(); }
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[[nodiscard]] IntSize physical_size() const { return size() * scale(); }
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[[nodiscard]] int physical_width() const { return physical_size().width(); }
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[[nodiscard]] int physical_height() const { return physical_size().height(); }
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[[nodiscard]] size_t pitch() const { return m_pitch; }
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[[nodiscard]] ALWAYS_INLINE bool is_indexed() const
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{
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return is_indexed(m_format);
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}
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[[nodiscard]] ALWAYS_INLINE static bool is_indexed(BitmapFormat format)
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{
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return format == BitmapFormat::Indexed8 || format == BitmapFormat::Indexed4
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|| format == BitmapFormat::Indexed2 || format == BitmapFormat::Indexed1;
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}
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[[nodiscard]] static size_t palette_size(BitmapFormat format)
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{
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switch (format) {
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case BitmapFormat::Indexed1:
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return 2;
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case BitmapFormat::Indexed2:
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return 4;
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case BitmapFormat::Indexed4:
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return 16;
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case BitmapFormat::Indexed8:
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return 256;
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default:
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return 0;
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}
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}
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[[nodiscard]] Vector<RGBA32> palette_to_vector() const;
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[[nodiscard]] static unsigned bpp_for_format(BitmapFormat format)
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{
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switch (format) {
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case BitmapFormat::Indexed1:
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return 1;
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case BitmapFormat::Indexed2:
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return 2;
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case BitmapFormat::Indexed4:
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return 4;
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case BitmapFormat::Indexed8:
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return 8;
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case BitmapFormat::BGRx8888:
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case BitmapFormat::BGRA8888:
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return 32;
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default:
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VERIFY_NOT_REACHED();
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case BitmapFormat::Invalid:
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return 0;
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}
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}
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[[nodiscard]] static size_t minimum_pitch(size_t physical_width, BitmapFormat);
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[[nodiscard]] unsigned bpp() const
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{
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return bpp_for_format(m_format);
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}
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void fill(Color);
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[[nodiscard]] bool has_alpha_channel() const { return m_format == BitmapFormat::BGRA8888; }
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[[nodiscard]] BitmapFormat format() const { return m_format; }
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void set_mmap_name(String const&);
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[[nodiscard]] static constexpr size_t size_in_bytes(size_t pitch, int physical_height) { return pitch * physical_height; }
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[[nodiscard]] size_t size_in_bytes() const { return size_in_bytes(m_pitch, physical_height()); }
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[[nodiscard]] Color palette_color(u8 index) const { return Color::from_rgba(m_palette[index]); }
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void set_palette_color(u8 index, Color color) { m_palette[index] = color.value(); }
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template<StorageFormat>
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[[nodiscard]] Color get_pixel(int physical_x, int physical_y) const;
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[[nodiscard]] Color get_pixel(int physical_x, int physical_y) const;
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[[nodiscard]] Color get_pixel(IntPoint const& physical_position) const
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{
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return get_pixel(physical_position.x(), physical_position.y());
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}
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template<StorageFormat>
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void set_pixel(int physical_x, int physical_y, Color);
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void set_pixel(int physical_x, int physical_y, Color);
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void set_pixel(IntPoint const& physical_position, Color color)
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{
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set_pixel(physical_position.x(), physical_position.y(), color);
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}
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[[nodiscard]] bool is_volatile() const { return m_volatile; }
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void set_volatile();
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// Returns true if making the bitmap non-volatile succeeded. `was_purged` indicates status of contents.
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// Returns false if there was not enough memory.
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[[nodiscard]] bool set_nonvolatile(bool& was_purged);
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[[nodiscard]] Core::AnonymousBuffer& anonymous_buffer() { return m_buffer; }
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[[nodiscard]] Core::AnonymousBuffer const& anonymous_buffer() const { return m_buffer; }
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private:
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Bitmap(BitmapFormat, IntSize const&, int, BackingStore const&);
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Bitmap(BitmapFormat, IntSize const&, int, size_t pitch, void*);
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Bitmap(BitmapFormat, Core::AnonymousBuffer, IntSize const&, int, Vector<RGBA32> const& palette);
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static ErrorOr<BackingStore> allocate_backing_store(BitmapFormat format, IntSize const& size, int scale_factor);
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void allocate_palette_from_format(BitmapFormat, Vector<RGBA32> const& source_palette);
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IntSize m_size;
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int m_scale;
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void* m_data { nullptr };
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RGBA32* m_palette { nullptr };
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size_t m_pitch { 0 };
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BitmapFormat m_format { BitmapFormat::Invalid };
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bool m_needs_munmap { false };
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bool m_volatile { false };
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Core::AnonymousBuffer m_buffer;
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};
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inline u8* Bitmap::scanline_u8(int y)
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{
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VERIFY(y >= 0 && y < physical_height());
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return reinterpret_cast<u8*>(m_data) + (y * m_pitch);
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}
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inline u8 const* Bitmap::scanline_u8(int y) const
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{
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VERIFY(y >= 0 && y < physical_height());
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return reinterpret_cast<u8 const*>(m_data) + (y * m_pitch);
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}
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inline RGBA32* Bitmap::scanline(int y)
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{
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return reinterpret_cast<RGBA32*>(scanline_u8(y));
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}
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inline RGBA32 const* Bitmap::scanline(int y) const
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{
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return reinterpret_cast<RGBA32 const*>(scanline_u8(y));
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}
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template<>
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inline Color Bitmap::get_pixel<StorageFormat::BGRx8888>(int x, int y) const
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{
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VERIFY(x >= 0 && x < physical_width());
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return Color::from_rgb(scanline(y)[x]);
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}
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template<>
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inline Color Bitmap::get_pixel<StorageFormat::BGRA8888>(int x, int y) const
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{
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VERIFY(x >= 0 && x < physical_width());
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return Color::from_rgba(scanline(y)[x]);
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}
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template<>
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inline Color Bitmap::get_pixel<StorageFormat::Indexed8>(int x, int y) const
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{
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VERIFY(x >= 0 && x < physical_width());
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return Color::from_rgb(m_palette[scanline_u8(y)[x]]);
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}
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inline Color Bitmap::get_pixel(int x, int y) const
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{
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switch (determine_storage_format(m_format)) {
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case StorageFormat::BGRx8888:
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return get_pixel<StorageFormat::BGRx8888>(x, y);
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case StorageFormat::BGRA8888:
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return get_pixel<StorageFormat::BGRA8888>(x, y);
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case StorageFormat::Indexed8:
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return get_pixel<StorageFormat::Indexed8>(x, y);
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default:
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VERIFY_NOT_REACHED();
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}
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}
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template<>
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inline void Bitmap::set_pixel<StorageFormat::BGRx8888>(int x, int y, Color color)
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{
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VERIFY(x >= 0 && x < physical_width());
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scanline(y)[x] = color.value();
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}
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template<>
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inline void Bitmap::set_pixel<StorageFormat::BGRA8888>(int x, int y, Color color)
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{
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VERIFY(x >= 0 && x < physical_width());
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scanline(y)[x] = color.value(); // drop alpha
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}
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inline void Bitmap::set_pixel(int x, int y, Color color)
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{
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switch (determine_storage_format(m_format)) {
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case StorageFormat::BGRx8888:
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set_pixel<StorageFormat::BGRx8888>(x, y, color);
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break;
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case StorageFormat::BGRA8888:
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set_pixel<StorageFormat::BGRA8888>(x, y, color);
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break;
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case StorageFormat::Indexed8:
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VERIFY_NOT_REACHED();
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default:
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VERIFY_NOT_REACHED();
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}
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}
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}
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