mirror of
https://github.com/LadybirdBrowser/ladybird.git
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b91c49364d
This makes it more symmetrical with adopt_own() (which is used to create a NonnullOwnPtr from the result of a naked new.)
527 lines
16 KiB
C++
527 lines
16 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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#include <AK/Checked.h>
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#include <AK/LexicalPath.h>
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#include <AK/Memory.h>
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#include <AK/MemoryStream.h>
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#include <AK/Optional.h>
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#include <AK/ScopeGuard.h>
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#include <AK/String.h>
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#include <LibGfx/BMPLoader.h>
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#include <LibGfx/Bitmap.h>
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#include <LibGfx/GIFLoader.h>
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#include <LibGfx/ICOLoader.h>
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#include <LibGfx/JPGLoader.h>
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#include <LibGfx/PBMLoader.h>
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#include <LibGfx/PGMLoader.h>
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#include <LibGfx/PNGLoader.h>
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#include <LibGfx/PPMLoader.h>
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#include <LibGfx/ShareableBitmap.h>
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#include <fcntl.h>
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#include <stdio.h>
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#include <sys/mman.h>
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#ifdef __serenity__
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# include <serenity.h>
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#endif
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namespace Gfx {
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struct BackingStore {
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void* data { nullptr };
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size_t pitch { 0 };
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size_t size_in_bytes { 0 };
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};
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size_t Bitmap::minimum_pitch(size_t physical_width, BitmapFormat format)
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{
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size_t element_size;
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switch (determine_storage_format(format)) {
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case StorageFormat::Indexed8:
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element_size = 1;
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break;
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case StorageFormat::BGRx8888:
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case StorageFormat::BGRA8888:
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case StorageFormat::RGBA8888:
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element_size = 4;
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break;
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default:
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VERIFY_NOT_REACHED();
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}
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return physical_width * element_size;
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}
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static bool size_would_overflow(BitmapFormat format, const IntSize& size, int scale_factor)
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{
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if (size.width() < 0 || size.height() < 0)
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return true;
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// This check is a bit arbitrary, but should protect us from most shenanigans:
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if (size.width() >= 32768 || size.height() >= 32768 || scale_factor < 1 || scale_factor > 4)
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return true;
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// In contrast, this check is absolutely necessary:
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size_t pitch = Bitmap::minimum_pitch(size.width() * scale_factor, format);
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return Checked<size_t>::multiplication_would_overflow(pitch, size.height() * scale_factor);
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}
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RefPtr<Bitmap> Bitmap::create(BitmapFormat format, const IntSize& size, int scale_factor)
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{
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auto backing_store = Bitmap::allocate_backing_store(format, size, scale_factor, Purgeable::No);
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if (!backing_store.has_value())
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return nullptr;
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return adopt_ref(*new Bitmap(format, size, scale_factor, Purgeable::No, backing_store.value()));
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}
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RefPtr<Bitmap> Bitmap::create_purgeable(BitmapFormat format, const IntSize& size, int scale_factor)
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{
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auto backing_store = Bitmap::allocate_backing_store(format, size, scale_factor, Purgeable::Yes);
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if (!backing_store.has_value())
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return nullptr;
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return adopt_ref(*new Bitmap(format, size, scale_factor, Purgeable::Yes, backing_store.value()));
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}
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#ifdef __serenity__
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RefPtr<Bitmap> Bitmap::create_shareable(BitmapFormat format, const IntSize& size, int scale_factor)
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{
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if (size_would_overflow(format, size, scale_factor))
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return nullptr;
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const auto pitch = minimum_pitch(size.width() * scale_factor, format);
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const auto data_size = size_in_bytes(pitch, size.height() * scale_factor);
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auto anon_fd = anon_create(round_up_to_power_of_two(data_size, PAGE_SIZE), O_CLOEXEC);
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if (anon_fd < 0)
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return nullptr;
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return Bitmap::create_with_anon_fd(format, anon_fd, size, scale_factor, {}, ShouldCloseAnonymousFile::No);
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}
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#endif
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Bitmap::Bitmap(BitmapFormat format, const IntSize& size, int scale_factor, Purgeable purgeable, const BackingStore& backing_store)
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: m_size(size)
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, m_scale(scale_factor)
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, m_data(backing_store.data)
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, m_pitch(backing_store.pitch)
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, m_format(format)
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, m_purgeable(purgeable == Purgeable::Yes)
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{
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VERIFY(!m_size.is_empty());
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VERIFY(!size_would_overflow(format, size, scale_factor));
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VERIFY(m_data);
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VERIFY(backing_store.size_in_bytes == size_in_bytes());
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allocate_palette_from_format(format, {});
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m_needs_munmap = true;
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}
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RefPtr<Bitmap> Bitmap::create_wrapper(BitmapFormat format, const IntSize& size, int scale_factor, size_t pitch, void* data)
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{
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if (size_would_overflow(format, size, scale_factor))
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return nullptr;
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return adopt_ref(*new Bitmap(format, size, scale_factor, pitch, data));
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}
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RefPtr<Bitmap> Bitmap::load_from_file(String const& path, int scale_factor)
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{
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if (scale_factor > 1 && path.starts_with("/res/")) {
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LexicalPath lexical_path { path };
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StringBuilder highdpi_icon_path;
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highdpi_icon_path.append(lexical_path.dirname());
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highdpi_icon_path.append("/");
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highdpi_icon_path.append(lexical_path.title());
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highdpi_icon_path.appendf("-%dx.", scale_factor);
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highdpi_icon_path.append(lexical_path.extension());
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RefPtr<Bitmap> bmp;
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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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bmp = load_##Name(highdpi_icon_path.to_string());
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ENUMERATE_IMAGE_FORMATS
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#undef __ENUMERATE_IMAGE_FORMAT
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if (bmp) {
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VERIFY(bmp->width() % scale_factor == 0);
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VERIFY(bmp->height() % scale_factor == 0);
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bmp->m_size.set_width(bmp->width() / scale_factor);
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bmp->m_size.set_height(bmp->height() / scale_factor);
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bmp->m_scale = scale_factor;
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return bmp;
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}
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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 load_##Name(path);
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ENUMERATE_IMAGE_FORMATS
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#undef __ENUMERATE_IMAGE_FORMAT
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return nullptr;
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}
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Bitmap::Bitmap(BitmapFormat format, const IntSize& size, int scale_factor, size_t pitch, void* data)
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: m_size(size)
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, m_scale(scale_factor)
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, m_data(data)
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, m_pitch(pitch)
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, m_format(format)
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{
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VERIFY(pitch >= minimum_pitch(size.width() * scale_factor, format));
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VERIFY(!size_would_overflow(format, size, scale_factor));
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// FIXME: assert that `data` is actually long enough!
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allocate_palette_from_format(format, {});
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}
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static bool check_size(const IntSize& size, int scale_factor, BitmapFormat format, unsigned actual_size)
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{
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// FIXME: Code duplication of size_in_bytes() and m_pitch
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unsigned expected_size_min = Bitmap::minimum_pitch(size.width() * scale_factor, format) * size.height() * scale_factor;
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unsigned expected_size_max = round_up_to_power_of_two(expected_size_min, PAGE_SIZE);
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if (expected_size_min > actual_size || actual_size > expected_size_max) {
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// Getting here is most likely an error.
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dbgln("Constructing a shared bitmap for format {} and size {} @ {}x, which demands {} bytes, which rounds up to at most {}.",
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static_cast<int>(format),
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size,
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scale_factor,
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expected_size_min,
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expected_size_max);
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dbgln("However, we were given {} bytes, which is outside this range?! Refusing cowardly.", actual_size);
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return false;
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}
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return true;
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}
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RefPtr<Bitmap> Bitmap::create_with_anon_fd(BitmapFormat format, int anon_fd, const IntSize& size, int scale_factor, const Vector<RGBA32>& palette, ShouldCloseAnonymousFile should_close_anon_fd)
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{
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void* data = nullptr;
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{
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// If ShouldCloseAnonymousFile::Yes, it's our responsibility to close 'anon_fd' no matter what.
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ScopeGuard close_guard = [&] {
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if (should_close_anon_fd == ShouldCloseAnonymousFile::Yes) {
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int rc = close(anon_fd);
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VERIFY(rc == 0);
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anon_fd = -1;
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}
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};
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if (size_would_overflow(format, size, scale_factor))
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return nullptr;
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const auto pitch = minimum_pitch(size.width() * scale_factor, format);
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const auto data_size_in_bytes = size_in_bytes(pitch, size.height() * scale_factor);
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data = mmap(nullptr, round_up_to_power_of_two(data_size_in_bytes, PAGE_SIZE), PROT_READ | PROT_WRITE, MAP_FILE | MAP_SHARED, anon_fd, 0);
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if (data == MAP_FAILED) {
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perror("mmap");
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return nullptr;
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}
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}
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return adopt_ref(*new Bitmap(format, anon_fd, size, scale_factor, data, palette));
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}
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/// Read a bitmap as described by:
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/// - actual size
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/// - width
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/// - height
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/// - scale_factor
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/// - format
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/// - palette count
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/// - palette data (= palette count * BGRA8888)
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/// - image data (= actual size * u8)
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RefPtr<Bitmap> Bitmap::create_from_serialized_byte_buffer(ByteBuffer&& buffer)
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{
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InputMemoryStream stream { buffer };
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unsigned actual_size;
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unsigned width;
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unsigned height;
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unsigned scale_factor;
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BitmapFormat format;
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unsigned palette_size;
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Vector<RGBA32> palette;
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auto read = [&]<typename T>(T& value) {
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if (stream.read({ &value, sizeof(T) }) != sizeof(T))
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return false;
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return true;
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};
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if (!read(actual_size) || !read(width) || !read(height) || !read(scale_factor) || !read(format) || !read(palette_size))
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return nullptr;
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if (format > BitmapFormat::BGRA8888 || format < BitmapFormat::Indexed1)
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return nullptr;
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if (!check_size({ width, height }, scale_factor, format, actual_size))
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return {};
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palette.ensure_capacity(palette_size);
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for (size_t i = 0; i < palette_size; ++i) {
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if (!read(palette[i]))
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return {};
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}
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if (stream.remaining() < actual_size)
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return {};
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auto data = stream.bytes().slice(stream.offset(), actual_size);
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auto bitmap = Bitmap::create(format, { width, height }, scale_factor);
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if (!bitmap)
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return {};
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bitmap->m_palette = new RGBA32[palette_size];
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memcpy(bitmap->m_palette, palette.data(), palette_size * sizeof(RGBA32));
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data.copy_to({ bitmap->scanline(0), bitmap->size_in_bytes() });
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return bitmap;
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}
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ByteBuffer Bitmap::serialize_to_byte_buffer() const
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{
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auto buffer = ByteBuffer::create_uninitialized(5 * sizeof(unsigned) + sizeof(BitmapFormat) + sizeof(RGBA32) * palette_size(m_format) + size_in_bytes());
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OutputMemoryStream stream { buffer };
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auto write = [&]<typename T>(T value) {
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if (stream.write({ &value, sizeof(T) }) != sizeof(T))
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return false;
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return true;
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};
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auto palette = palette_to_vector();
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if (!write(size_in_bytes()) || !write((unsigned)size().width()) || !write((unsigned)size().height()) || !write((unsigned)scale()) || !write(m_format) || !write((unsigned)palette.size()))
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return {};
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for (auto& p : palette) {
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if (!write(p))
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return {};
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}
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auto size = size_in_bytes();
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VERIFY(stream.remaining() == size);
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if (stream.write({ scanline(0), size }) != size)
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return {};
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return buffer;
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}
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Bitmap::Bitmap(BitmapFormat format, int anon_fd, const IntSize& size, int scale_factor, void* data, const Vector<RGBA32>& palette)
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: m_size(size)
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, m_scale(scale_factor)
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, m_data(data)
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, m_pitch(minimum_pitch(size.width() * scale_factor, format))
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, m_format(format)
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, m_needs_munmap(true)
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, m_purgeable(true)
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, m_anon_fd(anon_fd)
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{
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VERIFY(!is_indexed() || !palette.is_empty());
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VERIFY(!size_would_overflow(format, size, scale_factor));
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if (is_indexed(m_format))
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allocate_palette_from_format(m_format, palette);
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}
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RefPtr<Gfx::Bitmap> Bitmap::clone() const
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{
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RefPtr<Gfx::Bitmap> new_bitmap {};
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if (m_purgeable) {
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new_bitmap = Bitmap::create_purgeable(format(), size(), scale());
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} else {
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new_bitmap = Bitmap::create(format(), size(), scale());
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}
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if (!new_bitmap) {
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return nullptr;
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}
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VERIFY(size_in_bytes() == new_bitmap->size_in_bytes());
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memcpy(new_bitmap->scanline(0), scanline(0), size_in_bytes());
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return new_bitmap;
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}
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RefPtr<Gfx::Bitmap> Bitmap::rotated(Gfx::RotationDirection rotation_direction) const
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{
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auto new_bitmap = Gfx::Bitmap::create(this->format(), { height(), width() }, scale());
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if (!new_bitmap)
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return nullptr;
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auto w = this->physical_width();
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auto h = this->physical_height();
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for (int i = 0; i < w; i++) {
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for (int j = 0; j < h; j++) {
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Color color;
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if (rotation_direction == Gfx::RotationDirection::Left)
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color = this->get_pixel(w - i - 1, j);
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else
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color = this->get_pixel(i, h - j - 1);
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new_bitmap->set_pixel(j, i, color);
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}
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}
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return new_bitmap;
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}
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RefPtr<Gfx::Bitmap> Bitmap::flipped(Gfx::Orientation orientation) const
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{
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auto new_bitmap = Gfx::Bitmap::create(this->format(), { width(), height() }, scale());
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if (!new_bitmap)
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return nullptr;
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auto w = this->physical_width();
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auto h = this->physical_height();
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for (int i = 0; i < w; i++) {
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for (int j = 0; j < h; j++) {
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Color color = this->get_pixel(i, j);
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if (orientation == Orientation::Vertical)
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new_bitmap->set_pixel(i, h - j - 1, color);
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else
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new_bitmap->set_pixel(w - i - 1, j, color);
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}
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}
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return new_bitmap;
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}
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#ifdef __serenity__
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RefPtr<Bitmap> Bitmap::to_bitmap_backed_by_anon_fd() const
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{
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if (m_anon_fd != -1)
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return *this;
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auto anon_fd = anon_create(round_up_to_power_of_two(size_in_bytes(), PAGE_SIZE), O_CLOEXEC);
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if (anon_fd < 0)
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return nullptr;
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auto bitmap = Bitmap::create_with_anon_fd(m_format, anon_fd, size(), scale(), palette_to_vector(), ShouldCloseAnonymousFile::No);
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if (!bitmap)
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return nullptr;
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memcpy(bitmap->scanline(0), scanline(0), size_in_bytes());
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return bitmap;
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}
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#endif
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Bitmap::~Bitmap()
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{
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if (m_needs_munmap) {
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int rc = munmap(m_data, size_in_bytes());
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VERIFY(rc == 0);
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}
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if (m_anon_fd != -1) {
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int rc = close(m_anon_fd);
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VERIFY(rc == 0);
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}
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m_data = nullptr;
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delete[] m_palette;
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}
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void Bitmap::set_mmap_name([[maybe_unused]] String const& name)
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{
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VERIFY(m_needs_munmap);
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#ifdef __serenity__
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::set_mmap_name(m_data, size_in_bytes(), name.characters());
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#endif
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}
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void Bitmap::fill(Color color)
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{
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VERIFY(!is_indexed(m_format));
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for (int y = 0; y < physical_height(); ++y) {
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auto* scanline = this->scanline(y);
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fast_u32_fill(scanline, color.value(), physical_width());
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}
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}
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void Bitmap::set_volatile()
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{
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VERIFY(m_purgeable);
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if (m_volatile)
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return;
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#ifdef __serenity__
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int rc = madvise(m_data, size_in_bytes(), MADV_SET_VOLATILE);
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if (rc < 0) {
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perror("madvise(MADV_SET_VOLATILE)");
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VERIFY_NOT_REACHED();
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}
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#endif
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m_volatile = true;
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}
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[[nodiscard]] bool Bitmap::set_nonvolatile()
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{
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VERIFY(m_purgeable);
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if (!m_volatile)
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return true;
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#ifdef __serenity__
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int rc = madvise(m_data, size_in_bytes(), MADV_SET_NONVOLATILE);
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if (rc < 0) {
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perror("madvise(MADV_SET_NONVOLATILE)");
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VERIFY_NOT_REACHED();
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}
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#else
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int rc = 0;
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#endif
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m_volatile = false;
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return rc == 0;
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}
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#ifdef __serenity__
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ShareableBitmap Bitmap::to_shareable_bitmap() const
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{
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auto bitmap = to_bitmap_backed_by_anon_fd();
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if (!bitmap)
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return {};
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return ShareableBitmap(*bitmap);
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}
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#endif
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Optional<BackingStore> Bitmap::allocate_backing_store(BitmapFormat format, const IntSize& size, int scale_factor, [[maybe_unused]] Purgeable purgeable)
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{
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if (size_would_overflow(format, size, scale_factor))
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return {};
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const auto pitch = minimum_pitch(size.width() * scale_factor, format);
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const auto data_size_in_bytes = size_in_bytes(pitch, size.height() * scale_factor);
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|
|
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int map_flags = MAP_ANONYMOUS | MAP_PRIVATE;
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if (purgeable == Purgeable::Yes)
|
|
map_flags |= MAP_NORESERVE;
|
|
#ifdef __serenity__
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|
void* data = mmap_with_name(nullptr, data_size_in_bytes, PROT_READ | PROT_WRITE, map_flags, 0, 0, String::formatted("GraphicsBitmap [{}]", size).characters());
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#else
|
|
void* data = mmap(nullptr, data_size_in_bytes, PROT_READ | PROT_WRITE, map_flags, 0, 0);
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#endif
|
|
if (data == MAP_FAILED) {
|
|
perror("mmap");
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|
return {};
|
|
}
|
|
return { { data, pitch, data_size_in_bytes } };
|
|
}
|
|
|
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void Bitmap::allocate_palette_from_format(BitmapFormat format, const Vector<RGBA32>& source_palette)
|
|
{
|
|
size_t size = palette_size(format);
|
|
if (size == 0)
|
|
return;
|
|
m_palette = new RGBA32[size];
|
|
if (!source_palette.is_empty()) {
|
|
VERIFY(source_palette.size() == size);
|
|
memcpy(m_palette, source_palette.data(), size * sizeof(RGBA32));
|
|
}
|
|
}
|
|
|
|
Vector<RGBA32> Bitmap::palette_to_vector() const
|
|
{
|
|
Vector<RGBA32> vector;
|
|
auto size = palette_size(m_format);
|
|
vector.ensure_capacity(size);
|
|
for (size_t i = 0; i < size; ++i)
|
|
vector.unchecked_append(palette_color(i).value());
|
|
return vector;
|
|
}
|
|
|
|
}
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