mirror of
https://github.com/RGBCube/serenity
synced 2025-05-16 19:15:07 +00:00

This forces anyone who wants to look into and/or manipulate an address space to lock it. And this replaces the previous, more flimsy, manual spinlock use. Note that pointers *into* the address space are not safe to use after you unlock the space. We've got many issues like this, and we'll have to track those down as wlel.
469 lines
22 KiB
C++
469 lines
22 KiB
C++
/*
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* Copyright (c) 2022, Liav A. <liavalb@hotmail.co.il>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <Kernel/FileSystem/SysFS/Subsystems/DeviceIdentifiers/CharacterDevicesDirectory.h>
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#include <Kernel/FileSystem/SysFS/Subsystems/Devices/Graphics/DisplayConnector/DeviceDirectory.h>
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#include <Kernel/FileSystem/SysFS/Subsystems/Devices/Graphics/DisplayConnector/Directory.h>
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#include <Kernel/Graphics/DisplayConnector.h>
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#include <Kernel/Graphics/GraphicsManagement.h>
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#include <Kernel/Memory/MemoryManager.h>
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#include <LibC/sys/ioctl_numbers.h>
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namespace Kernel {
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DisplayConnector::DisplayConnector(PhysicalAddress framebuffer_address, size_t framebuffer_resource_size, bool enable_write_combine_optimization)
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: CharacterDevice(226, GraphicsManagement::the().allocate_minor_device_number())
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, m_enable_write_combine_optimization(enable_write_combine_optimization)
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, m_framebuffer_at_arbitrary_physical_range(false)
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, m_framebuffer_address(framebuffer_address)
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, m_framebuffer_resource_size(framebuffer_resource_size)
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{
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}
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DisplayConnector::DisplayConnector(size_t framebuffer_resource_size, bool enable_write_combine_optimization)
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: CharacterDevice(226, GraphicsManagement::the().allocate_minor_device_number())
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, m_enable_write_combine_optimization(enable_write_combine_optimization)
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, m_framebuffer_at_arbitrary_physical_range(true)
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, m_framebuffer_address({})
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, m_framebuffer_resource_size(framebuffer_resource_size)
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{
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}
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ErrorOr<Memory::Region*> DisplayConnector::mmap(Process&, Memory::AddressSpace& address_space, OpenFileDescription&, Memory::VirtualRange const& range, u64 offset, int prot, bool shared)
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{
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VERIFY(m_shared_framebuffer_vmobject);
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if (offset != 0)
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return Error::from_errno(ENOTSUP);
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return address_space.allocate_region_with_vmobject(
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range,
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*m_shared_framebuffer_vmobject,
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0,
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"Mapped Framebuffer"sv,
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prot,
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shared);
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}
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ErrorOr<size_t> DisplayConnector::read(OpenFileDescription&, u64, UserOrKernelBuffer&, size_t)
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{
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return Error::from_errno(ENOTIMPL);
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}
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ErrorOr<size_t> DisplayConnector::write(OpenFileDescription&, u64, UserOrKernelBuffer const&, size_t)
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{
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return Error::from_errno(ENOTIMPL);
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}
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void DisplayConnector::will_be_destroyed()
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{
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GraphicsManagement::the().detach_display_connector({}, *this);
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VERIFY(m_symlink_sysfs_component);
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before_will_be_destroyed_remove_symlink_from_device_identifier_directory();
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m_symlink_sysfs_component.clear();
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SysFSDisplayConnectorsDirectory::the().unplug({}, *m_sysfs_device_directory);
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before_will_be_destroyed_remove_from_device_management();
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}
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void DisplayConnector::after_inserting()
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{
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after_inserting_add_to_device_management();
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auto sysfs_display_connector_device_directory = DisplayConnectorSysFSDirectory::create(SysFSDisplayConnectorsDirectory::the(), *this);
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m_sysfs_device_directory = sysfs_display_connector_device_directory;
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SysFSDisplayConnectorsDirectory::the().plug({}, *sysfs_display_connector_device_directory);
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VERIFY(!m_symlink_sysfs_component);
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auto sys_fs_component = MUST(SysFSSymbolicLinkDeviceComponent::try_create(SysFSCharacterDevicesDirectory::the(), *this, *m_sysfs_device_directory));
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m_symlink_sysfs_component = sys_fs_component;
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after_inserting_add_symlink_to_device_identifier_directory();
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auto rounded_size = MUST(Memory::page_round_up(m_framebuffer_resource_size));
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if (!m_framebuffer_at_arbitrary_physical_range) {
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VERIFY(m_framebuffer_address.value().page_base() == m_framebuffer_address.value());
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m_shared_framebuffer_vmobject = MUST(Memory::SharedFramebufferVMObject::try_create_for_physical_range(m_framebuffer_address.value(), rounded_size));
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m_framebuffer_region = MUST(MM.allocate_kernel_region(m_framebuffer_address.value().page_base(), rounded_size, "Framebuffer"sv, Memory::Region::Access::ReadWrite));
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} else {
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m_shared_framebuffer_vmobject = MUST(Memory::SharedFramebufferVMObject::try_create_at_arbitrary_physical_range(rounded_size));
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m_framebuffer_region = MUST(MM.allocate_kernel_region_with_vmobject(m_shared_framebuffer_vmobject->real_writes_framebuffer_vmobject(), rounded_size, "Framebuffer"sv, Memory::Region::Access::ReadWrite));
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}
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m_framebuffer_data = m_framebuffer_region->vaddr().as_ptr();
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m_fake_writes_framebuffer_region = MUST(MM.allocate_kernel_region_with_vmobject(m_shared_framebuffer_vmobject->fake_writes_framebuffer_vmobject(), rounded_size, "Fake Writes Framebuffer"sv, Memory::Region::Access::ReadWrite));
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GraphicsManagement::the().attach_new_display_connector({}, *this);
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if (m_enable_write_combine_optimization) {
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[[maybe_unused]] auto result = m_framebuffer_region->set_write_combine(true);
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}
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}
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bool DisplayConnector::console_mode() const
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{
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VERIFY(m_control_lock.is_locked());
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return m_console_mode;
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}
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void DisplayConnector::set_display_mode(Badge<GraphicsManagement>, DisplayMode mode)
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{
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SpinlockLocker locker(m_control_lock);
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{
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SpinlockLocker locker(m_modeset_lock);
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[[maybe_unused]] auto result = set_y_offset(0);
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}
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m_console_mode = mode == DisplayMode::Console ? true : false;
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if (m_console_mode) {
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VERIFY(m_framebuffer_region->size() == m_fake_writes_framebuffer_region->size());
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memcpy(m_fake_writes_framebuffer_region->vaddr().as_ptr(), m_framebuffer_region->vaddr().as_ptr(), m_framebuffer_region->size());
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m_shared_framebuffer_vmobject->switch_to_fake_sink_framebuffer_writes({});
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enable_console();
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} else {
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disable_console();
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m_shared_framebuffer_vmobject->switch_to_real_framebuffer_writes({});
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VERIFY(m_framebuffer_region->size() == m_fake_writes_framebuffer_region->size());
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memcpy(m_framebuffer_region->vaddr().as_ptr(), m_fake_writes_framebuffer_region->vaddr().as_ptr(), m_framebuffer_region->size());
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}
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}
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ErrorOr<void> DisplayConnector::initialize_edid_for_generic_monitor(Optional<Array<u8, 3>> possible_manufacturer_id_string)
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{
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u8 raw_manufacturer_id[2] = { 0x0, 0x0 };
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if (possible_manufacturer_id_string.has_value()) {
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Array<u8, 3> manufacturer_id_string = possible_manufacturer_id_string.release_value();
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u8 byte1 = (((static_cast<u8>(manufacturer_id_string[0]) - '@') & 0x1f) << 2) | (((static_cast<u8>(manufacturer_id_string[1]) - '@') >> 3) & 3);
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u8 byte2 = ((static_cast<u8>(manufacturer_id_string[2]) - '@') & 0x1f) | (((static_cast<u8>(manufacturer_id_string[1]) - '@') << 5) & 0xe0);
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Array<u8, 2> manufacturer_id_string_packed_bytes = { byte1, byte2 };
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raw_manufacturer_id[0] = manufacturer_id_string_packed_bytes[1];
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raw_manufacturer_id[1] = manufacturer_id_string_packed_bytes[0];
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}
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Array<u8, 128> virtual_monitor_edid = {
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0x00, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0x00, /* header */
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raw_manufacturer_id[1], raw_manufacturer_id[0], /* manufacturer */
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0x00, 0x00, /* product code */
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0x00, 0x00, 0x00, 0x00, /* serial number goes here */
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0x01, /* week of manufacture */
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0x00, /* year of manufacture */
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0x01, 0x03, /* EDID version */
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0x80, /* capabilities - digital */
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0x00, /* horiz. res in cm, zero for projectors */
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0x00, /* vert. res in cm */
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0x78, /* display gamma (120 == 2.2). */
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0xEE, /* features (standby, suspend, off, RGB, std */
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/* colour space, preferred timing mode) */
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0xEE, 0x91, 0xA3, 0x54, 0x4C, 0x99, 0x26, 0x0F, 0x50, 0x54,
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/* chromaticity for standard colour space. */
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0x00, 0x00, 0x00, /* no default timings */
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0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x01,
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0x01, 0x01,
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0x01, 0x01, 0x01, 0x01, /* no standard timings */
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0x00, 0x00, 0x00, 0x06, 0x00, 0x00, 0x06, 0x00, 0x02, 0x02,
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0x02, 0x02,
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/* descriptor block 1 goes below */
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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/* descriptor block 2, monitor ranges */
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0x00, 0x00, 0x00, 0xFD, 0x00,
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0x00, 0xC8, 0x00, 0xC8, 0x64, 0x00, 0x0A, 0x20, 0x20, 0x20,
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0x20, 0x20,
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/* 0-200Hz vertical, 0-200KHz horizontal, 1000MHz pixel clock */
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0x20,
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/* descriptor block 3, monitor name */
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0x00, 0x00, 0x00, 0xFC, 0x00,
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'G', 'e', 'n', 'e', 'r', 'i', 'c', 'S', 'c', 'r', 'e', 'e', 'n',
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/* descriptor block 4: dummy data */
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0x00, 0x00, 0x00, 0x10, 0x00,
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0x0A, 0x20, 0x20, 0x20, 0x20, 0x20,
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0x20, 0x20, 0x20, 0x20, 0x20, 0x20,
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0x20,
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0x00, /* number of extensions */
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0x00 /* checksum goes here */
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};
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// Note: Fix checksum to avoid warnings about checksum mismatch.
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size_t checksum = 0;
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// Note: Read all 127 bytes to add them to the checksum. Byte 128 is zeroed so
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// we could technically add it to the sum result, but it could lead to an error if it contained
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// a non-zero value, so we are not using it.
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for (size_t index = 0; index < sizeof(virtual_monitor_edid) - 1; index++)
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checksum += virtual_monitor_edid[index];
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virtual_monitor_edid[127] = 0x100 - checksum;
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set_edid_bytes(virtual_monitor_edid);
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return {};
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}
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void DisplayConnector::set_edid_bytes(Array<u8, 128> const& edid_bytes)
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{
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memcpy((u8*)m_edid_bytes, edid_bytes.data(), sizeof(m_edid_bytes));
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if (auto parsed_edid = EDID::Parser::from_bytes({ m_edid_bytes, sizeof(m_edid_bytes) }); !parsed_edid.is_error()) {
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m_edid_parser = parsed_edid.release_value();
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m_edid_valid = true;
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} else {
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dmesgln("DisplayConnector: Print offending EDID");
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for (size_t x = 0; x < 128; x = x + 16) {
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dmesgln("{:02x} {:02x} {:02x} {:02x} {:02x} {:02x} {:02x} {:02x} {:02x} {:02x} {:02x} {:02x} {:02x} {:02x} {:02x} {:02x}",
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m_edid_bytes[x], m_edid_bytes[x + 1], m_edid_bytes[x + 2], m_edid_bytes[x + 3],
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m_edid_bytes[x + 4], m_edid_bytes[x + 5], m_edid_bytes[x + 6], m_edid_bytes[x + 7],
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m_edid_bytes[x + 8], m_edid_bytes[x + 9], m_edid_bytes[x + 10], m_edid_bytes[x + 11],
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m_edid_bytes[x + 12], m_edid_bytes[x + 13], m_edid_bytes[x + 14], m_edid_bytes[x + 15]);
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}
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dmesgln("DisplayConnector: Parsing EDID failed: {}", parsed_edid.error());
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}
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}
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ErrorOr<void> DisplayConnector::flush_rectangle(size_t, FBRect const&)
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{
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return Error::from_errno(ENOTSUP);
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}
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DisplayConnector::ModeSetting DisplayConnector::current_mode_setting() const
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{
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SpinlockLocker locker(m_modeset_lock);
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return m_current_mode_setting;
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}
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ErrorOr<ByteBuffer> DisplayConnector::get_edid() const
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{
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if (!m_edid_valid)
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return Error::from_errno(ENOTIMPL);
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return ByteBuffer::copy(m_edid_bytes, sizeof(m_edid_bytes));
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}
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struct GraphicsIOCtlChecker {
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unsigned ioctl_number;
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StringView name;
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bool requires_ownership { false };
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};
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static constexpr GraphicsIOCtlChecker s_checkers[] = {
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{ GRAPHICS_IOCTL_GET_PROPERTIES, "GRAPHICS_IOCTL_GET_PROPERTIES"sv, false },
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{ GRAPHICS_IOCTL_SET_HEAD_VERTICAL_OFFSET_BUFFER, "GRAPHICS_IOCTL_SET_HEAD_VERTICAL_OFFSET_BUFFER"sv, true },
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{ GRAPHICS_IOCTL_GET_HEAD_VERTICAL_OFFSET_BUFFER, "GRAPHICS_IOCTL_GET_HEAD_VERTICAL_OFFSET_BUFFER"sv, false },
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{ GRAPHICS_IOCTL_FLUSH_HEAD_BUFFERS, "GRAPHICS_IOCTL_FLUSH_HEAD_BUFFERS"sv, true },
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{ GRAPHICS_IOCTL_FLUSH_HEAD, "GRAPHICS_IOCTL_FLUSH_HEAD"sv, true },
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{ GRAPHICS_IOCTL_SET_HEAD_MODE_SETTING, "GRAPHICS_IOCTL_SET_HEAD_MODE_SETTING"sv, true },
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{ GRAPHICS_IOCTL_GET_HEAD_MODE_SETTING, "GRAPHICS_IOCTL_GET_HEAD_MODE_SETTING"sv, false },
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{ GRAPHICS_IOCTL_SET_SAFE_HEAD_MODE_SETTING, "GRAPHICS_IOCTL_SET_SAFE_HEAD_MODE_SETTING"sv, true },
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{ GRAPHICS_IOCTL_SET_RESPONSIBLE, "GRAPHICS_IOCTL_SET_RESPONSIBLE"sv, false },
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{ GRAPHICS_IOCTL_UNSET_RESPONSIBLE, "GRAPHICS_IOCTL_UNSET_RESPONSIBLE"sv, true },
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};
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static StringView ioctl_to_stringview(unsigned request)
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{
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for (auto& checker : s_checkers) {
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if (checker.ioctl_number == request)
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return checker.name;
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}
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VERIFY_NOT_REACHED();
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}
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bool DisplayConnector::ioctl_requires_ownership(unsigned request) const
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{
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for (auto& checker : s_checkers) {
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if (checker.ioctl_number == request)
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return checker.requires_ownership;
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}
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VERIFY_NOT_REACHED();
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}
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ErrorOr<void> DisplayConnector::ioctl(OpenFileDescription&, unsigned request, Userspace<void*> arg)
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{
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TRY(Process::current().require_promise(Pledge::video));
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// Note: We only allow to set responsibility on a DisplayConnector,
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// get the current ModeSetting or the hardware framebuffer properties without the
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// need of having an established responsibility on a DisplayConnector.
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if (ioctl_requires_ownership(request)) {
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auto process = m_responsible_process.strong_ref();
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if (!process || process.ptr() != &Process::current()) {
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dbgln("DisplayConnector::ioctl: {} requires ownership over the device", ioctl_to_stringview(request));
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return Error::from_errno(EPERM);
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}
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}
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switch (request) {
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case GRAPHICS_IOCTL_SET_RESPONSIBLE: {
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SpinlockLocker locker(m_responsible_process_lock);
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auto process = m_responsible_process.strong_ref();
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// Note: If there's already a process being responsible, just return an error.
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// We could technically return 0 if the the requesting process is already
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// was set to be responsible for this DisplayConnector, but it servicing no
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// no good purpose and should be considered a bug if this happens anyway.
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if (process)
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return Error::from_errno(EPERM);
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m_responsible_process = Process::current();
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return {};
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}
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case GRAPHICS_IOCTL_UNSET_RESPONSIBLE: {
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SpinlockLocker locker(m_responsible_process_lock);
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auto process = m_responsible_process.strong_ref();
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if (!process)
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return Error::from_errno(ESRCH);
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if (process.ptr() != &Process::current())
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return Error::from_errno(EPERM);
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m_responsible_process.clear();
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return {};
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}
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case GRAPHICS_IOCTL_GET_PROPERTIES: {
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auto user_properties = static_ptr_cast<GraphicsConnectorProperties*>(arg);
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GraphicsConnectorProperties properties {};
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properties.flushing_support = flush_support();
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properties.doublebuffer_support = double_framebuffering_capable();
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properties.partial_flushing_support = partial_flush_support();
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properties.refresh_rate_support = refresh_rate_support();
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return copy_to_user(user_properties, &properties);
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}
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case GRAPHICS_IOCTL_GET_HEAD_MODE_SETTING: {
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auto user_head_mode_setting = static_ptr_cast<GraphicsHeadModeSetting*>(arg);
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GraphicsHeadModeSetting head_mode_setting {};
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TRY(copy_from_user(&head_mode_setting, user_head_mode_setting));
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{
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SpinlockLocker control_locker(m_control_lock);
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head_mode_setting.horizontal_stride = m_current_mode_setting.horizontal_stride;
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head_mode_setting.pixel_clock_in_khz = m_current_mode_setting.pixel_clock_in_khz;
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head_mode_setting.horizontal_active = m_current_mode_setting.horizontal_active;
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head_mode_setting.horizontal_front_porch_pixels = m_current_mode_setting.horizontal_front_porch_pixels;
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head_mode_setting.horizontal_sync_time_pixels = m_current_mode_setting.horizontal_sync_time_pixels;
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head_mode_setting.horizontal_blank_pixels = m_current_mode_setting.horizontal_blank_pixels;
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head_mode_setting.vertical_active = m_current_mode_setting.vertical_active;
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head_mode_setting.vertical_front_porch_lines = m_current_mode_setting.vertical_front_porch_lines;
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head_mode_setting.vertical_sync_time_lines = m_current_mode_setting.vertical_sync_time_lines;
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head_mode_setting.vertical_blank_lines = m_current_mode_setting.vertical_blank_lines;
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head_mode_setting.horizontal_offset = m_current_mode_setting.horizontal_offset;
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head_mode_setting.vertical_offset = m_current_mode_setting.vertical_offset;
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}
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return copy_to_user(user_head_mode_setting, &head_mode_setting);
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}
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case GRAPHICS_IOCTL_SET_HEAD_MODE_SETTING: {
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auto user_mode_setting = static_ptr_cast<GraphicsHeadModeSetting const*>(arg);
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auto head_mode_setting = TRY(copy_typed_from_user(user_mode_setting));
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if (head_mode_setting.horizontal_stride < 0)
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return Error::from_errno(EINVAL);
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if (head_mode_setting.pixel_clock_in_khz < 0)
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return Error::from_errno(EINVAL);
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if (head_mode_setting.horizontal_active < 0)
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return Error::from_errno(EINVAL);
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if (head_mode_setting.horizontal_front_porch_pixels < 0)
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return Error::from_errno(EINVAL);
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if (head_mode_setting.horizontal_sync_time_pixels < 0)
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return Error::from_errno(EINVAL);
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if (head_mode_setting.horizontal_blank_pixels < 0)
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return Error::from_errno(EINVAL);
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if (head_mode_setting.vertical_active < 0)
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return Error::from_errno(EINVAL);
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if (head_mode_setting.vertical_front_porch_lines < 0)
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return Error::from_errno(EINVAL);
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if (head_mode_setting.vertical_sync_time_lines < 0)
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return Error::from_errno(EINVAL);
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if (head_mode_setting.vertical_blank_lines < 0)
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return Error::from_errno(EINVAL);
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if (head_mode_setting.horizontal_offset < 0)
|
|
return Error::from_errno(EINVAL);
|
|
if (head_mode_setting.vertical_offset < 0)
|
|
return Error::from_errno(EINVAL);
|
|
{
|
|
SpinlockLocker control_locker(m_control_lock);
|
|
ModeSetting requested_mode_setting;
|
|
requested_mode_setting.horizontal_stride = 0;
|
|
requested_mode_setting.pixel_clock_in_khz = head_mode_setting.pixel_clock_in_khz;
|
|
requested_mode_setting.horizontal_active = head_mode_setting.horizontal_active;
|
|
requested_mode_setting.horizontal_front_porch_pixels = head_mode_setting.horizontal_front_porch_pixels;
|
|
requested_mode_setting.horizontal_sync_time_pixels = head_mode_setting.horizontal_sync_time_pixels;
|
|
requested_mode_setting.horizontal_blank_pixels = head_mode_setting.horizontal_blank_pixels;
|
|
requested_mode_setting.vertical_active = head_mode_setting.vertical_active;
|
|
requested_mode_setting.vertical_front_porch_lines = head_mode_setting.vertical_front_porch_lines;
|
|
requested_mode_setting.vertical_sync_time_lines = head_mode_setting.vertical_sync_time_lines;
|
|
requested_mode_setting.vertical_blank_lines = head_mode_setting.vertical_blank_lines;
|
|
requested_mode_setting.horizontal_offset = head_mode_setting.horizontal_offset;
|
|
requested_mode_setting.vertical_offset = head_mode_setting.vertical_offset;
|
|
|
|
TRY(set_mode_setting(requested_mode_setting));
|
|
}
|
|
return {};
|
|
}
|
|
|
|
case GRAPHICS_IOCTL_SET_SAFE_HEAD_MODE_SETTING: {
|
|
SpinlockLocker control_locker(m_control_lock);
|
|
TRY(set_safe_mode_setting());
|
|
return {};
|
|
}
|
|
|
|
case GRAPHICS_IOCTL_SET_HEAD_VERTICAL_OFFSET_BUFFER: {
|
|
// FIXME: We silently ignore the request if we are in console mode.
|
|
// WindowServer is not ready yet to handle errors such as EBUSY currently.
|
|
SpinlockLocker control_locker(m_control_lock);
|
|
if (console_mode()) {
|
|
return {};
|
|
}
|
|
|
|
auto user_head_vertical_buffer_offset = static_ptr_cast<GraphicsHeadVerticalOffset const*>(arg);
|
|
auto head_vertical_buffer_offset = TRY(copy_typed_from_user(user_head_vertical_buffer_offset));
|
|
|
|
SpinlockLocker locker(m_modeset_lock);
|
|
|
|
if (head_vertical_buffer_offset.offsetted < 0 || head_vertical_buffer_offset.offsetted > 1)
|
|
return Error::from_errno(EINVAL);
|
|
TRY(set_y_offset(head_vertical_buffer_offset.offsetted == 0 ? 0 : m_current_mode_setting.vertical_active));
|
|
if (head_vertical_buffer_offset.offsetted == 0)
|
|
m_vertical_offsetted = false;
|
|
else
|
|
m_vertical_offsetted = true;
|
|
return {};
|
|
}
|
|
case GRAPHICS_IOCTL_GET_HEAD_VERTICAL_OFFSET_BUFFER: {
|
|
auto user_head_vertical_buffer_offset = static_ptr_cast<GraphicsHeadVerticalOffset*>(arg);
|
|
GraphicsHeadVerticalOffset head_vertical_buffer_offset {};
|
|
TRY(copy_from_user(&head_vertical_buffer_offset, user_head_vertical_buffer_offset));
|
|
|
|
head_vertical_buffer_offset.offsetted = m_vertical_offsetted;
|
|
return copy_to_user(user_head_vertical_buffer_offset, &head_vertical_buffer_offset);
|
|
}
|
|
case GRAPHICS_IOCTL_FLUSH_HEAD_BUFFERS: {
|
|
if (console_mode())
|
|
return {};
|
|
if (!partial_flush_support())
|
|
return Error::from_errno(ENOTSUP);
|
|
MutexLocker locker(m_flushing_lock);
|
|
auto user_flush_rects = static_ptr_cast<FBFlushRects const*>(arg);
|
|
auto flush_rects = TRY(copy_typed_from_user(user_flush_rects));
|
|
if (Checked<unsigned>::multiplication_would_overflow(flush_rects.count, sizeof(FBRect)))
|
|
return Error::from_errno(EFAULT);
|
|
if (flush_rects.count > 0) {
|
|
for (unsigned i = 0; i < flush_rects.count; i++) {
|
|
FBRect user_dirty_rect;
|
|
TRY(copy_from_user(&user_dirty_rect, &flush_rects.rects[i]));
|
|
{
|
|
SpinlockLocker control_locker(m_control_lock);
|
|
if (console_mode()) {
|
|
return {};
|
|
}
|
|
TRY(flush_rectangle(flush_rects.buffer_index, user_dirty_rect));
|
|
}
|
|
}
|
|
}
|
|
return {};
|
|
};
|
|
case GRAPHICS_IOCTL_FLUSH_HEAD: {
|
|
// FIXME: We silently ignore the request if we are in console mode.
|
|
// WindowServer is not ready yet to handle errors such as EBUSY currently.
|
|
MutexLocker locker(m_flushing_lock);
|
|
SpinlockLocker control_locker(m_control_lock);
|
|
if (console_mode()) {
|
|
return {};
|
|
}
|
|
|
|
if (!flush_support())
|
|
return Error::from_errno(ENOTSUP);
|
|
|
|
TRY(flush_first_surface());
|
|
return {};
|
|
}
|
|
}
|
|
return EINVAL;
|
|
}
|
|
|
|
}
|