
This change lays the foundation for making the require_promise return an error hand handling the process abort outside of the syscall implementations, to avoid cases where we would leak resources. It also has the advantage that it makes removes a gs pointer read to look up the current thread, then process for every syscall. We can instead go through the Process this pointer in most cases.
134 lines
5.7 KiB
C++
134 lines
5.7 KiB
C++
/*
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* Copyright (c) 2021, 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 <AK/Checked.h>
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#include <AK/Try.h>
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#include <Kernel/API/POSIX/errno.h>
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#include <Kernel/Debug.h>
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#include <Kernel/Devices/DeviceManagement.h>
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#include <Kernel/Graphics/FramebufferDevice.h>
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#include <Kernel/Graphics/GraphicsManagement.h>
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#include <Kernel/Memory/AnonymousVMObject.h>
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#include <Kernel/Memory/MemoryManager.h>
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#include <Kernel/Process.h>
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#include <Kernel/Sections.h>
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#include <Kernel/StdLib.h>
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#define MAX_RESOLUTION_WIDTH 4096
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#define MAX_RESOLUTION_HEIGHT 2160
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namespace Kernel {
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ErrorOr<void> GenericFramebufferDevice::verify_head_index(int head_index) const
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{
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if (head_index < 0)
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return Error::from_errno(EINVAL);
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if (!multihead_support() && head_index > 0)
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return Error::from_errno(ENOTSUP);
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return {};
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}
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ErrorOr<void> GenericFramebufferDevice::ioctl(OpenFileDescription&, unsigned request, Userspace<void*> arg)
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{
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Process::current().require_promise(Pledge::video);
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switch (request) {
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case FB_IOCTL_GET_PROPERTIES: {
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auto user_properties = static_ptr_cast<FBProperties*>(arg);
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FBProperties properties {};
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auto adapter = m_graphics_adapter.strong_ref();
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if (!adapter)
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return Error::from_errno(EIO);
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properties.multihead_support = multihead_support();
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properties.flushing_support = flushing_support();
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properties.doublebuffer_support = adapter->double_framebuffering_capable();
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properties.partial_flushing_support = partial_flushing_support();
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return copy_to_user(user_properties, &properties);
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}
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case FB_IOCTL_GET_HEAD_PROPERTIES: {
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auto user_head_properties = static_ptr_cast<FBHeadProperties*>(arg);
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FBHeadProperties head_properties {};
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TRY(copy_from_user(&head_properties, user_head_properties));
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TRY(verify_head_index(head_properties.head_index));
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head_properties.pitch = TRY(pitch(head_properties.head_index));
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head_properties.width = TRY(width(head_properties.head_index));
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head_properties.height = TRY(height(head_properties.head_index));
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head_properties.buffer_length = TRY(buffer_length(head_properties.head_index));
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head_properties.offset = TRY(vertical_offset(head_properties.head_index));
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return copy_to_user(user_head_properties, &head_properties);
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}
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case FB_IOCTL_SET_HEAD_RESOLUTION: {
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auto user_head_resolution = static_ptr_cast<FBHeadResolution const*>(arg);
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auto head_resolution = TRY(copy_typed_from_user(user_head_resolution));
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TRY(verify_head_index(head_resolution.head_index));
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if (head_resolution.pitch < 0)
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return Error::from_errno(EINVAL);
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if (head_resolution.width < 0)
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return Error::from_errno(EINVAL);
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if (head_resolution.height < 0)
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return Error::from_errno(EINVAL);
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TRY(set_head_resolution(head_resolution.head_index, head_resolution.width, head_resolution.height, head_resolution.pitch));
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return {};
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}
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case FB_IOCTL_SET_HEAD_VERTICAL_OFFSET_BUFFER: {
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auto user_head_vertical_buffer_offset = static_ptr_cast<FBHeadVerticalOffset const*>(arg);
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auto head_vertical_buffer_offset = TRY(copy_typed_from_user(user_head_vertical_buffer_offset));
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TRY(verify_head_index(head_vertical_buffer_offset.head_index));
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if (head_vertical_buffer_offset.offsetted < 0 || head_vertical_buffer_offset.offsetted > 1)
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return Error::from_errno(EINVAL);
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TRY(set_head_buffer(head_vertical_buffer_offset.head_index, head_vertical_buffer_offset.offsetted));
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return {};
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}
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case FB_IOCTL_GET_HEAD_VERTICAL_OFFSET_BUFFER: {
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auto user_head_vertical_buffer_offset = static_ptr_cast<FBHeadVerticalOffset*>(arg);
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FBHeadVerticalOffset head_vertical_buffer_offset {};
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TRY(copy_from_user(&head_vertical_buffer_offset, user_head_vertical_buffer_offset));
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TRY(verify_head_index(head_vertical_buffer_offset.head_index));
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head_vertical_buffer_offset.offsetted = TRY(vertical_offsetted(head_vertical_buffer_offset.head_index));
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return copy_to_user(user_head_vertical_buffer_offset, &head_vertical_buffer_offset);
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}
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case FB_IOCTL_FLUSH_HEAD_BUFFERS: {
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if (!partial_flushing_support())
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return Error::from_errno(ENOTSUP);
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auto user_flush_rects = static_ptr_cast<FBFlushRects const*>(arg);
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auto flush_rects = TRY(copy_typed_from_user(user_flush_rects));
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if (Checked<unsigned>::multiplication_would_overflow(flush_rects.count, sizeof(FBRect)))
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return Error::from_errno(EFAULT);
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MutexLocker locker(m_flushing_lock);
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if (flush_rects.count > 0) {
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for (unsigned i = 0; i < flush_rects.count; i++) {
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FBRect user_dirty_rect;
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TRY(copy_from_user(&user_dirty_rect, &flush_rects.rects[i]));
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TRY(flush_rectangle(flush_rects.buffer_index, user_dirty_rect));
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}
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}
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return {};
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};
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case FB_IOCTL_FLUSH_HEAD: {
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if (!flushing_support())
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return Error::from_errno(ENOTSUP);
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// Note: We accept a FBRect, but we only really care about the head_index value.
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auto user_rect = static_ptr_cast<FBRect const*>(arg);
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auto rect = TRY(copy_typed_from_user(user_rect));
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TRY(verify_head_index(rect.head_index));
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TRY(flush_head_buffer(rect.head_index));
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return {};
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}
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default:
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return EINVAL;
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};
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}
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GenericFramebufferDevice::GenericFramebufferDevice(const GenericGraphicsAdapter& adapter)
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: BlockDevice(29, GraphicsManagement::the().allocate_minor_device_number())
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, m_graphics_adapter(adapter)
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{
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}
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}
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