380 lines
14 KiB
Plaintext
380 lines
14 KiB
Plaintext
// Copyright (c) 2014-2018 Khronos Group. This work is licensed under a
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// Creative Commons Attribution 4.0 International License; see
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// http://creativecommons.org/licenses/by/4.0/
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include::meta/VK_KHR_display.txt[]
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*Last Modified Date*::
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2017-03-13
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*IP Status*::
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No known IP claims.
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*Contributors*::
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- James Jones, NVIDIA
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- Norbert Nopper, Freescale
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- Jeff Vigil, Qualcomm
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- Daniel Rakos, AMD
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This extension provides the API to enumerate displays and available modes on
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a given device.
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=== New Object Types
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* slink:VkDisplayKHR
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* slink:VkDisplayModeKHR
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=== New Enum Constants
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* Extending elink:VkStructureType:
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** ename:VK_STRUCTURE_TYPE_DISPLAY_MODE_CREATE_INFO_KHR
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** ename:VK_STRUCTURE_TYPE_DISPLAY_SURFACE_CREATE_INFO_KHR
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=== New Enums
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* elink:VkDisplayPlaneAlphaFlagBitsKHR
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=== New Structures
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* slink:VkDisplayPropertiesKHR
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* slink:VkDisplayModeParametersKHR
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* slink:VkDisplayModePropertiesKHR
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* slink:VkDisplayModeCreateInfoKHR
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* slink:VkDisplayPlanePropertiesKHR
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* slink:VkDisplayPlaneCapabilitiesKHR
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* slink:VkDisplaySurfaceCreateInfoKHR
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=== New Functions
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* flink:vkGetPhysicalDeviceDisplayPropertiesKHR
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* flink:vkGetPhysicalDeviceDisplayPlanePropertiesKHR
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* flink:vkGetDisplayPlaneSupportedDisplaysKHR
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* flink:vkGetDisplayModePropertiesKHR
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* flink:vkCreateDisplayModeKHR
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* flink:vkGetDisplayPlaneCapabilitiesKHR
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* flink:vkCreateDisplayPlaneSurfaceKHR
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=== Issues
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1) Which properties of a mode should be fixed in the mode info vs.
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settable in some other function when setting the mode? E.g., do we need to
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double the size of the mode pool to include both stereo and non-stereo
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modes? YUV and RGB scanout even if they both take RGB input images? BGR vs.
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RGB input? etc.
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*PROPOSED RESOLUTION*: Many modern displays support at most a handful of
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resolutions and timings natively.
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Other "`modes`" are expected to be supported using scaling hardware on the
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display engine or GPU.
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Other properties, such as rotation and mirroring should not require
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duplicating hardware modes just to express all combinations.
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Further, these properties may be implemented on a per-display or per-overlay
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granularity.
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To avoid the exponential growth of modes as mutable properties are added, as
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was the case with code:EGLConfig/WGL pixel formats/code:GLXFBConfig, this
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specification should separate out hardware properties and configurable state
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into separate objects.
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Modes and overlay planes will express capabilities of the hardware, while a
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separate structure will allow applications to configure scaling, rotation,
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mirroring, color keys, LUT values, alpha masks, etc.
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for a given swapchain independent of the mode in use.
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Constraints on these settings will be established by properties of the
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immutable objects.
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Note the resolution of this issue may affect issue 5 as well.
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2) What properties of a display itself are useful?
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*PROPOSED RESOLUTION*: This issue is too broad.
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It was meant to prompt general discussion, but resolving this issue amounts
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to completing this specification.
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All interesting properties should be included.
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The issue will remain as a placeholder since removing it would make it hard
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to parse existing discussion notes that refer to issues by number.
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3) How are multiple overlay planes within a display or mode enumerated?
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*PROPOSED RESOLUTION*: They are referred to by an index.
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Each display will report the number of overlay planes it contains.
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4) Should swapchains be created relative to a mode or a display?
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*PROPOSED RESOLUTION*: When using this extension, swapchains are created
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relative to a mode and a plane.
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The mode implies the display object the swapchain will present to.
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If the specified mode is not the display's current mode, the new mode will
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be applied when the first image is presented to the swapchain, and the
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default operating system mode, if any, will be restored when the swapchain
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is destroyed.
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5) Should users query generic ranges from displays and construct their own
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modes explicitly using those constraints rather than querying a fixed set of
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modes (Most monitors only have one real "`mode`" these days, even though
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many support relatively arbitrary scaling, either on the monitor side or in
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the GPU display engine, making "`modes`" something of a relic/compatibility
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construct).
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*PROPOSED RESOLUTION*: Expose both.
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Display info structures will expose a set of predefined modes, as well as
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any attributes necessary to construct a customized mode.
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6) Is it fine if we return the display and display mode handles in the
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structure used to query their properties?
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*PROPOSED RESOLUTION*: Yes.
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7) Is there a possibility that not all displays of a device work with all of
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the present queues of a device? If yes, how do we determine which displays
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work with which present queues?
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*PROPOSED RESOLUTION*: No known hardware has such limitations, but
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determining such limitations is supported automatically using the existing
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`<<VK_KHR_surface>>` and `<<VK_KHR_swapchain>>` query mechanisms.
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8) Should all presentation need to be done relative to an overlay plane, or
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can a display mode + display be used alone to target an output?
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*PROPOSED RESOLUTION*: Require specifying a plane explicitly.
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9) Should displays have an associated window system display, such as an
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code:HDC or code:Display*?
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*PROPOSED RESOLUTION*: No.
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Displays are independent of any windowing system in use on the system.
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Further, neither code:HDC nor code:Display* refer to a physical display
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object.
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10) Are displays queried from a physical GPU or from a device instance?
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*PROPOSED RESOLUTION*: Developers prefer to query modes directly from the
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physical GPU so they can use display information as an input to their device
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selection algorithms prior to device creation.
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This avoids the need to create dummy device instances to enumerate displays.
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This preference must be weighed against the extra initialization that must
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be done by driver vendors prior to device instance creation to support this
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usage.
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11) Should displays and/or modes be dispatchable objects? If functions are
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to take displays, overlays, or modes as their first parameter, they must be
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dispatchable objects as defined in Khronos bug 13529.
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If they are not added to the list of dispatchable objects, functions
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operating on them must take some higher-level object as their first
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parameter.
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There is no performance case against making them dispatchable objects, but
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they would be the first extension objects to be dispatchable.
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*PROPOSED RESOLUTION*: Do not make displays or modes dispatchable.
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They will dispatch based on their associated physical device.
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12) Should hardware cursor capabilities be exposed?
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*PROPOSED RESOLUTION*: Defer.
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This could be a separate extension on top of the base WSI specs.
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ifdef::editing-notes[]
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[NOTE]
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.editing-note
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====
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There appears to be a missing sentence for the first part of issue 13 here.
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====
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endif::editing-notes[]
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if they are one physical display device to an end user, but may internally
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be implemented as two side-by-side displays using the same display engine
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(and sometimes cabling) resources as two physically separate display
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devices.
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*RESOLVED*: Tiled displays will appear as a single display object in this
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API.
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14) Should the raw EDID data be included in the display information?
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*RESOLVED*: No.
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A future extension could be added which reports the EDID if necessary.
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This may be complicated by the outcome of issue 13.
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15) Should min and max scaling factor capabilities of overlays be exposed?
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*RESOLVED*: Yes.
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This is exposed indirectly by allowing applications to query the min/max
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position and extent of the source and destination regions from which image
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contents are fetched by the display engine when using a particular mode and
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overlay pair.
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16) Should devices be able to expose planes that can be moved between
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displays? If so, how?
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*RESOLVED*: Yes.
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Applications can determine which displays a given plane supports using
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flink:vkGetDisplayPlaneSupportedDisplaysKHR.
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17) Should there be a way to destroy display modes? If so, does it support
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destroying "`built in`" modes?
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*RESOLVED*: Not in this extension.
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A future extension could add this functionality.
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18) What should the lifetime of display and built-in display mode objects
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be?
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*RESOLVED*: The lifetime of the instance.
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These objects cannot be destroyed.
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A future extension may be added to expose a way to destroy these objects
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and/or support display hotplug.
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19) Should persistent mode for smart panels be enabled/disabled at swapchain
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creation time, or on a per-present basis.
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*RESOLVED*: On a per-present basis.
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=== Examples
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[NOTE]
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.Note
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====
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The example code for the `VK_KHR_display` and `<<VK_KHR_display_swapchain>>`
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extensions was removed from the appendix after revision 1.0.43.
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The display enumeration example code was ported to the cube demo that is
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shipped with the official Khronos SDK, and is being kept up-to-date in that
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location (see:
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https://github.com/KhronosGroup/Vulkan-Tools/blob/master/cube/cube.c).
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====
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=== Version History
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* Revision 1, 2015-02-24 (James Jones)
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- Initial draft
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* Revision 2, 2015-03-12 (Norbert Nopper)
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- Added overlay enumeration for a display.
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* Revision 3, 2015-03-17 (Norbert Nopper)
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- Fixed typos and namings as discussed in Bugzilla.
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- Reordered and grouped functions.
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- Added functions to query count of display, mode and overlay.
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- Added native display handle, which is maybe needed on some platforms to
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create a native Window.
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* Revision 4, 2015-03-18 (Norbert Nopper)
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- Removed primary and virtualPostion members (see comment of James Jones
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in Bugzilla).
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- Added native overlay handle to info structure.
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- Replaced , with ; in struct.
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* Revision 6, 2015-03-18 (Daniel Rakos)
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- Added WSI extension suffix to all items.
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- Made the whole API more "Vulkanish".
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- Replaced all functions with a single vkGetDisplayInfoKHR function to
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better match the rest of the API.
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- Made the display, display mode, and overlay objects be first class
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objects, not subclasses of VkBaseObject as they do not support the
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common functions anyways.
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- Renamed *Info structures to *Properties.
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- Removed overlayIndex field from VkOverlayProperties as there is an
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implicit index already as a result of moving to a "Vulkanish" API.
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- Displays are not get through device, but through physical GPU to match
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the rest of the Vulkan API.
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Also this is something ISVs explicitly requested.
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- Added issue (6) and (7).
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* Revision 7, 2015-03-25 (James Jones)
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- Added an issues section
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- Added rotation and mirroring flags
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* Revision 8, 2015-03-25 (James Jones)
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- Combined the duplicate issues sections introduced in last change.
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- Added proposed resolutions to several issues.
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* Revision 9, 2015-04-01 (Daniel Rakos)
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- Rebased extension against Vulkan 0.82.0
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* Revision 10, 2015-04-01 (James Jones)
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- Added issues (10) and (11).
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- Added more straw-man issue resolutions, and cleaned up the proposed
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resolution for issue (4).
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- Updated the rotation and mirroring enums to have proper bitmask
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semantics.
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* Revision 11, 2015-04-15 (James Jones)
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- Added proposed resolution for issues (1) and (2).
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- Added issues (12), (13), (14), and (15)
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- Removed pNativeHandle field from overlay structure.
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- Fixed small compilation errors in example code.
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* Revision 12, 2015-07-29 (James Jones)
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- Rewrote the guts of the extension against the latest WSI swapchain
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specifications and the latest Vulkan API.
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- Address overlay planes by their index rather than an object handle and
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refer to them as "planes" rather than "overlays" to make it slightly
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clearer that even a display with no "overlays" still has at least one
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base "plane" that images can be displayed on.
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- Updated most of the issues.
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- Added an "extension type" section to the specification header.
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- Re-used the VK_EXT_KHR_surface surface transform enumerations rather
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than redefining them here.
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- Updated the example code to use the new semantics.
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* Revision 13, 2015-08-21 (Ian Elliott)
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- Renamed this extension and all of its enumerations, types, functions,
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etc.
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This makes it compliant with the proposed standard for Vulkan
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extensions.
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- Switched from "revision" to "version", including use of the
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VK_MAKE_VERSION macro in the header file.
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* Revision 14, 2015-09-01 (James Jones)
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- Restore single-field revision number.
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* Revision 15, 2015-09-08 (James Jones)
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- Added alpha flags enum.
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- Added premultiplied alpha support.
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* Revision 16, 2015-09-08 (James Jones)
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- Added description section to the spec.
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- Added issues 16 - 18.
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* Revision 17, 2015-10-02 (James Jones)
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- Planes are now a property of the entire device rather than individual
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displays.
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This allows planes to be moved between multiple displays on devices
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that support it.
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- Added a function to create a VkSurfaceKHR object describing a display
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plane and mode to align with the new per-platform surface creation
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conventions.
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- Removed detailed mode timing data.
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It was agreed that the mode extents and refresh rate are sufficient for
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current use cases.
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Other information could be added back2 in as an extension if it is
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needed in the future.
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- Added support for smart/persistent/buffered display devices.
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* Revision 18, 2015-10-26 (Ian Elliott)
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- Renamed from VK_EXT_KHR_display to VK_KHR_display.
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* Revision 19, 2015-11-02 (James Jones)
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- Updated example code to match revision 17 changes.
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* Revision 20, 2015-11-03 (Daniel Rakos)
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- Added allocation callbacks to creation functions.
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* Revision 21, 2015-11-10 (Jesse Hall)
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- Added VK_DISPLAY_PLANE_ALPHA_OPAQUE_BIT_KHR, and use
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VkDisplayPlaneAlphaFlagBitsKHR for
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VkDisplayPlanePropertiesKHR::alphaMode instead of
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VkDisplayPlaneAlphaFlagsKHR, since it only represents one mode.
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- Added reserved flags bitmask to VkDisplayPlanePropertiesKHR.
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- Use VkSurfaceTransformFlagBitsKHR instead of obsolete
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VkSurfaceTransformKHR.
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- Renamed vkGetDisplayPlaneSupportedDisplaysKHR parameters for clarity.
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* Revision 22, 2015-12-18 (James Jones)
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- Added missing "planeIndex" parameter to
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vkGetDisplayPlaneSupportedDisplaysKHR()
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* Revision 23, 2017-03-13 (James Jones)
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- Closed all remaining issues.
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The specification and implementations have been shipping with the
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proposed resolutions for some time now.
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- Removed the sample code and noted it has been integrated into the
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official Vulkan SDK cube demo.
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