ladybird/Userland/Libraries/LibGfx/Bitmap.h

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/*
2023-02-20 18:03:29 +00:00
* Copyright (c) 2018-2023, Andreas Kling <kling@serenityos.org>
* Copyright (c) 2022, Timothy Slater <tslater2006@gmail.com>
*
* SPDX-License-Identifier: BSD-2-Clause
*/
#pragma once
#include <AK/Forward.h>
#include <AK/Function.h>
#include <AK/RefCounted.h>
#include <LibCore/AnonymousBuffer.h>
#include <LibCore/Forward.h>
#include <LibGfx/Color.h>
#include <LibGfx/Forward.h>
#include <LibGfx/Rect.h>
#define ENUMERATE_IMAGE_FORMATS \
__ENUMERATE_IMAGE_FORMAT(bmp, ".bmp") \
__ENUMERATE_IMAGE_FORMAT(dds, ".dds") \
__ENUMERATE_IMAGE_FORMAT(gif, ".gif") \
__ENUMERATE_IMAGE_FORMAT(ico, ".ico") \
__ENUMERATE_IMAGE_FORMAT(iff, ".iff") \
__ENUMERATE_IMAGE_FORMAT(jpeg, ".jb2") \
__ENUMERATE_IMAGE_FORMAT(jpeg, ".jbig2") \
__ENUMERATE_IMAGE_FORMAT(jpeg2000, ".jp2") \
__ENUMERATE_IMAGE_FORMAT(jpeg, ".jpeg") \
__ENUMERATE_IMAGE_FORMAT(jpeg, ".jpg") \
__ENUMERATE_IMAGE_FORMAT(jpeg2000, ".jpx") \
__ENUMERATE_IMAGE_FORMAT(jxl, ".jxl") \
__ENUMERATE_IMAGE_FORMAT(iff, ".lbm") \
__ENUMERATE_IMAGE_FORMAT(pam, ".pam") \
__ENUMERATE_IMAGE_FORMAT(pbm, ".pbm") \
__ENUMERATE_IMAGE_FORMAT(pgm, ".pgm") \
__ENUMERATE_IMAGE_FORMAT(png, ".png") \
__ENUMERATE_IMAGE_FORMAT(ppm, ".ppm") \
__ENUMERATE_IMAGE_FORMAT(qoi, ".qoi") \
__ENUMERATE_IMAGE_FORMAT(tga, ".tga") \
__ENUMERATE_IMAGE_FORMAT(tiff, ".tif") \
__ENUMERATE_IMAGE_FORMAT(tiff, ".tiff") \
__ENUMERATE_IMAGE_FORMAT(tvg, ".tvg") \
__ENUMERATE_IMAGE_FORMAT(tvg, ".webp")
namespace Gfx {
enum class BitmapFormat {
Invalid,
BGRx8888,
BGRA8888,
RGBA8888,
FirstValid = BGRx8888,
LastValid = RGBA8888,
};
inline bool is_valid_bitmap_format(unsigned format)
{
switch (format) {
case (unsigned)BitmapFormat::Invalid:
case (unsigned)BitmapFormat::BGRx8888:
case (unsigned)BitmapFormat::BGRA8888:
case (unsigned)BitmapFormat::RGBA8888:
return true;
}
return false;
}
enum class StorageFormat {
BGRx8888,
BGRA8888,
RGBA8888,
};
inline StorageFormat determine_storage_format(BitmapFormat format)
{
switch (format) {
case BitmapFormat::BGRx8888:
return StorageFormat::BGRx8888;
case BitmapFormat::BGRA8888:
return StorageFormat::BGRA8888;
case BitmapFormat::RGBA8888:
return StorageFormat::RGBA8888;
default:
VERIFY_NOT_REACHED();
}
}
struct BackingStore;
enum class RotationDirection {
CounterClockwise,
Flip,
Clockwise,
};
class Bitmap : public RefCounted<Bitmap> {
public:
[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> create(BitmapFormat, IntSize, int intrinsic_scale = 1);
[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> create_shareable(BitmapFormat, IntSize, int intrinsic_scale = 1);
[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> create_wrapper(BitmapFormat, IntSize, int intrinsic_scale, size_t pitch, void*);
[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> load_from_file(StringView path, int scale_factor = 1, Optional<IntSize> ideal_size = {});
[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> load_from_file(NonnullOwnPtr<Core::File>, StringView path, Optional<IntSize> ideal_size = {});
[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> load_from_bytes(ReadonlyBytes, Optional<IntSize> ideal_size = {}, Optional<ByteString> mine_type = {});
[[nodiscard]] static ErrorOr<NonnullRefPtr<Bitmap>> create_with_anonymous_buffer(BitmapFormat, Core::AnonymousBuffer, IntSize, int intrinsic_scale);
static ErrorOr<NonnullRefPtr<Bitmap>> create_from_serialized_bytes(ReadonlyBytes);
static ErrorOr<NonnullRefPtr<Bitmap>> create_from_serialized_byte_buffer(ByteBuffer&&);
static bool is_path_a_supported_image_format(StringView path)
{
#define __ENUMERATE_IMAGE_FORMAT(Name, Ext) \
if (path.ends_with(Ext##sv, CaseSensitivity::CaseInsensitive)) \
return true;
ENUMERATE_IMAGE_FORMATS
#undef __ENUMERATE_IMAGE_FORMAT
return false;
}
ErrorOr<NonnullRefPtr<Gfx::Bitmap>> clone() const;
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ErrorOr<NonnullRefPtr<Gfx::Bitmap>> rotated(Gfx::RotationDirection) const;
ErrorOr<NonnullRefPtr<Gfx::Bitmap>> flipped(Gfx::Orientation) const;
ErrorOr<NonnullRefPtr<Gfx::Bitmap>> scaled(int sx, int sy) const;
ErrorOr<NonnullRefPtr<Gfx::Bitmap>> scaled(float sx, float sy) const;
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ErrorOr<NonnullRefPtr<Gfx::Bitmap>> scaled_to_size(Gfx::IntSize) const;
ErrorOr<NonnullRefPtr<Gfx::Bitmap>> cropped(Gfx::IntRect, Optional<BitmapFormat> new_bitmap_format = {}) const;
ErrorOr<NonnullRefPtr<Gfx::Bitmap>> to_bitmap_backed_by_anonymous_buffer() const;
[[nodiscard]] ErrorOr<ByteBuffer> serialize_to_byte_buffer() const;
[[nodiscard]] ShareableBitmap to_shareable_bitmap() const;
ErrorOr<NonnullRefPtr<Gfx::Bitmap>> inverted() const;
enum class MaskKind {
Alpha,
Luminance
};
void apply_mask(Gfx::Bitmap const& mask, MaskKind);
~Bitmap();
[[nodiscard]] u8* scanline_u8(int physical_y);
[[nodiscard]] u8 const* scanline_u8(int physical_y) const;
[[nodiscard]] ARGB32* scanline(int physical_y);
[[nodiscard]] ARGB32 const* scanline(int physical_y) const;
[[nodiscard]] ARGB32* begin();
[[nodiscard]] ARGB32* end();
[[nodiscard]] size_t data_size() const;
[[nodiscard]] IntRect rect() const { return { {}, m_size }; }
[[nodiscard]] IntSize size() const { return m_size; }
[[nodiscard]] int width() const { return m_size.width(); }
[[nodiscard]] int height() const { return m_size.height(); }
[[nodiscard]] int scale() const { return m_scale; }
[[nodiscard]] IntRect physical_rect() const { return rect() * scale(); }
[[nodiscard]] IntSize physical_size() const { return size() * scale(); }
[[nodiscard]] int physical_width() const { return physical_size().width(); }
[[nodiscard]] int physical_height() const { return physical_size().height(); }
[[nodiscard]] size_t pitch() const { return m_pitch; }
[[nodiscard]] static unsigned bpp_for_format(BitmapFormat format)
{
switch (format) {
case BitmapFormat::BGRx8888:
case BitmapFormat::BGRA8888:
return 32;
default:
VERIFY_NOT_REACHED();
case BitmapFormat::Invalid:
return 0;
}
}
[[nodiscard]] static size_t minimum_pitch(size_t physical_width, BitmapFormat);
[[nodiscard]] unsigned bpp() const
{
return bpp_for_format(m_format);
}
void fill(Color);
[[nodiscard]] bool has_alpha_channel() const { return m_format == BitmapFormat::BGRA8888 || m_format == BitmapFormat::RGBA8888; }
void add_alpha_channel()
{
switch (m_format) {
case BitmapFormat::BGRx8888:
m_format = BitmapFormat::BGRA8888;
break;
case BitmapFormat::RGBA8888:
case BitmapFormat::BGRA8888:
// Nothing to do.
break;
case BitmapFormat::Invalid:
VERIFY_NOT_REACHED();
}
}
[[nodiscard]] BitmapFormat format() const { return m_format; }
// Call only for BGRx8888 and BGRA8888 bitmaps.
void strip_alpha_channel();
[[nodiscard]] static constexpr size_t size_in_bytes(size_t pitch, int physical_height) { return pitch * physical_height; }
[[nodiscard]] size_t size_in_bytes() const { return size_in_bytes(m_pitch, physical_height()); }
template<StorageFormat>
[[nodiscard]] Color get_pixel(int physical_x, int physical_y) const;
[[nodiscard]] Color get_pixel(int physical_x, int physical_y) const;
[[nodiscard]] Color get_pixel(IntPoint physical_position) const
{
return get_pixel(physical_position.x(), physical_position.y());
}
template<StorageFormat>
void set_pixel(int physical_x, int physical_y, Color);
void set_pixel(int physical_x, int physical_y, Color);
void set_pixel(IntPoint physical_position, Color color)
{
set_pixel(physical_position.x(), physical_position.y(), color);
}
[[nodiscard]] Core::AnonymousBuffer& anonymous_buffer() { return m_buffer; }
[[nodiscard]] Core::AnonymousBuffer const& anonymous_buffer() const { return m_buffer; }
[[nodiscard]] bool visually_equals(Bitmap const&) const;
[[nodiscard]] Optional<Color> solid_color(u8 alpha_threshold = 0) const;
void flood_visit_from_point(Gfx::IntPoint start_point, int threshold, Function<void(Gfx::IntPoint location)> pixel_reached);
private:
Bitmap(BitmapFormat, IntSize, int, BackingStore const&);
Bitmap(BitmapFormat, IntSize, int, size_t pitch, void*);
Bitmap(BitmapFormat, Core::AnonymousBuffer, IntSize, int);
static ErrorOr<BackingStore> allocate_backing_store(BitmapFormat format, IntSize size, int scale_factor);
IntSize m_size;
int m_scale;
void* m_data { nullptr };
size_t m_pitch { 0 };
BitmapFormat m_format { BitmapFormat::Invalid };
bool m_data_is_malloced { false };
Core::AnonymousBuffer m_buffer;
};
ALWAYS_INLINE u8* Bitmap::scanline_u8(int y)
{
VERIFY(y >= 0);
VERIFY(y < physical_height());
return reinterpret_cast<u8*>(m_data) + (y * m_pitch);
}
ALWAYS_INLINE u8 const* Bitmap::scanline_u8(int y) const
{
VERIFY(y >= 0);
VERIFY(y < physical_height());
return reinterpret_cast<u8 const*>(m_data) + (y * m_pitch);
}
ALWAYS_INLINE ARGB32* Bitmap::scanline(int y)
{
return reinterpret_cast<ARGB32*>(scanline_u8(y));
}
ALWAYS_INLINE ARGB32 const* Bitmap::scanline(int y) const
{
return reinterpret_cast<ARGB32 const*>(scanline_u8(y));
}
ALWAYS_INLINE ARGB32* Bitmap::begin()
{
return scanline(0);
}
ALWAYS_INLINE ARGB32* Bitmap::end()
{
return reinterpret_cast<ARGB32*>(reinterpret_cast<u8*>(m_data) + data_size());
}
ALWAYS_INLINE size_t Bitmap::data_size() const
{
return m_size.height() * m_pitch;
}
template<>
ALWAYS_INLINE Color Bitmap::get_pixel<StorageFormat::BGRx8888>(int x, int y) const
{
VERIFY(x >= 0);
VERIFY(x < physical_width());
return Color::from_rgb(scanline(y)[x]);
}
template<>
ALWAYS_INLINE Color Bitmap::get_pixel<StorageFormat::BGRA8888>(int x, int y) const
{
VERIFY(x >= 0);
VERIFY(x < physical_width());
return Color::from_argb(scanline(y)[x]);
}
ALWAYS_INLINE Color Bitmap::get_pixel(int x, int y) const
{
switch (determine_storage_format(m_format)) {
case StorageFormat::BGRx8888:
return get_pixel<StorageFormat::BGRx8888>(x, y);
case StorageFormat::BGRA8888:
return get_pixel<StorageFormat::BGRA8888>(x, y);
default:
VERIFY_NOT_REACHED();
}
}
template<>
ALWAYS_INLINE void Bitmap::set_pixel<StorageFormat::BGRx8888>(int x, int y, Color color)
{
VERIFY(x >= 0);
VERIFY(x < physical_width());
scanline(y)[x] = color.value();
}
template<>
ALWAYS_INLINE void Bitmap::set_pixel<StorageFormat::BGRA8888>(int x, int y, Color color)
{
VERIFY(x >= 0);
VERIFY(x < physical_width());
scanline(y)[x] = color.value(); // drop alpha
}
template<>
ALWAYS_INLINE void Bitmap::set_pixel<StorageFormat::RGBA8888>(int x, int y, Color color)
{
VERIFY(x >= 0);
VERIFY(x < physical_width());
// FIXME: There's a lot of inaccurately named functions in the Color class right now (RGBA vs BGRA),
// clear those up and then make this more convenient.
auto rgba = (color.alpha() << 24) | (color.blue() << 16) | (color.green() << 8) | color.red();
scanline(y)[x] = rgba;
}
ALWAYS_INLINE void Bitmap::set_pixel(int x, int y, Color color)
{
switch (determine_storage_format(m_format)) {
case StorageFormat::BGRx8888:
set_pixel<StorageFormat::BGRx8888>(x, y, color);
break;
case StorageFormat::BGRA8888:
set_pixel<StorageFormat::BGRA8888>(x, y, color);
break;
case StorageFormat::RGBA8888:
set_pixel<StorageFormat::RGBA8888>(x, y, color);
break;
default:
VERIFY_NOT_REACHED();
}
}
}