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* vo_gpu: vulkan: Add support for exporting buffer memoryPhilip Langdale2018-10-221-1/+3
| | | | | | | | | | | | | | | | | | | | The CUDA/Vulkan interop works on the basis of memory being exported from Vulkan and then imported by CUDA. To enable this, we add a way to declare a buffer as being intended for export, and then add a function to do the export. For now, we support the fd and Handle based exports on Linux and Windows respectively. There are others, which we can support when a need arises. Also note that this is just for exporting buffers, rather than textures (VkImages). Image import on the CUDA side is supposed to work, but it is currently buggy and waiting for a new driver release. Finally, at least with my nvidia hardware and drivers, everything seems to work even if we don't initialise the buffer with the right exportability options. Nevertheless I'm enforcing it so that we're following the spec.
* vo_gpu: vulkan: normalize use of *Flags and *FlagBitsNiklas Haas2017-09-271-3/+3
| | | | | | | | | | | | FlagBits is just the name of the enum. The actual data type representing a combination of these flags follows the *Flags convention. (The relevant difference is that the latter is defined to be uint32_t instead of left implicit) For consistency, use *Flags everywhere instead of randomly switching between *Flags and *FlagBits. Also fix a wrong type name on `stageFlags`, pointed out by @atomnuker
* vo_gpu: vulkan: initial implementationNiklas Haas2017-09-261-0/+35
This time based on ra/vo_gpu. 2017 is the year of the vulkan desktop! Current problems / limitations / improvement opportunities: 1. The swapchain/flipping code violates the vulkan spec, by assuming that the presentation queue will be bounded (in cases where rendering is significantly faster than vsync). But apparently, there's simply no better way to do this right now, to the point where even the stupid cube.c examples from LunarG etc. do it wrong. (cf. https://github.com/KhronosGroup/Vulkan-Docs/issues/370) 2. The memory allocator could be improved. (This is a universal constant) 3. Could explore using push descriptors instead of descriptor sets, especially since we expect to switch descriptors semi-often for some passes (like interpolation). Probably won't make a difference, but the synchronization overhead might be a factor. Who knows. 4. Parallelism across frames / async transfer is not well-defined, we either need to use a better semaphore / command buffer strategy or a resource pooling layer to safely handle cross-frame parallelism. (That said, I gave resource pooling a try and was not happy with the result at all - so I'm still exploring the semaphore strategy) 5. We aggressively use pipeline barriers where events would offer a much more fine-grained synchronization mechanism. As a result of this, we might be suffering from GPU bubbles due to too-short dependencies on objects. (That said, I'm also exploring the use of semaphores as a an ordering tactic which would allow cross-frame time slicing in theory) Some minor changes to the vo_gpu and infrastructure, but nothing consequential. NOTE: For safety, all use of asynchronous commands / multiple command pools is currently disabled completely. There are some left-over relics of this in the code (e.g. the distinction between dev_poll and pool_poll), but that is kept in place mostly because this will be re-extended in the future (vulkan rev 2). The queue count is also currently capped to 1, because of the lack of cross-frame semaphores means we need the implicit synchronization from the same-queue semantics to guarantee a correct result.