* This is primarily for the benefit of GL/VK where we need to feature-detect for
some extensions or functionality that requires selecting a device, e.g. D3D12
can be more easily detected with a quick check.
* We'll run this once and cache the results when running tests from python so we
can do a better job of filtering out tests that the current machine doesn't
support.
* This is primarily around initial states - either a resource which is from a
previous frame and maybe wasn't dirtied and needs initial states created for
it when it's modified mid-frame, or a resource that's created and destroyed
all within one frame.
* This is a simple test using descriptor indexing in fragment and compute
shaders, with sampled images and storage buffers, including passing bindless
arrays through functions to be sure that's tracked properly.
* There's also a define to turn on a reasonably bad case (though not
worst/extreme) of # of descriptors - roughly 5 million descriptors allocated
in total, with roughly 1 million bound at draw time.
* The extension is not yet whitelisted as there is no solution currently for
feedback on used bindings or handling of pointers in data structures within
the UI or shader reflection.
* We also fix a number of issues that could cause incorrect formats to be
generated.
* Test cases added for D3D11/GL/Vulkan to test different struct types. These
aren't automated at the moment because most of the code they're testing is in
the UI itself.
* We also pick the output pixel in the CBuffer_Zoo tests to ensure the API
agrees with our interpretation of the data.
* Follow-up commit will tidy D3D cbuffer code that needs it.
* This is the only way in GL to do rendering from one mip to another. We handle
it and display the whole texture even if it's temporarily constricted, and
display the mip state in the pipeline viewer.
* If the mip state is constricted at the start of the frame capture, only mips
0..MAX will be visible at all and other mips will be assumed to not be valid.