9 Commits

Author SHA1 Message Date
John Kessenich
bf47286fe7 HLSL: Move to fine-grained control for defining input/output/uniform IO types. 2017-02-06 23:13:16 -07:00
John Kessenich
88c4464df5 HLSL: Have loose uniforms also go through the makeTypeNonIo() path. 2017-02-06 23:00:51 -07:00
John Kessenich
02467d8d94 HLSL: Wrap the entry-point; need to write 'in' args, and support 'inout' args.
This needs some render testing, but is destined to be part of master.

This also leads to a variety of other simplifications.
 - IO are global symbols, so only need one list of linkage nodes (deferred)
 - no longer need parse-context-wide 'inEntryPoint' state, entry-point is localized
 - several parts of splitting/flattening are now localized
2017-02-06 22:58:32 -07:00
John Kessenich
d3f1122a44 Whole stack: Fix stale types in the AST linker object nodes, fixing #557.
Rationalizes the entire tracking of the linker object nodes, effecting
GLSL, HLSL, and SPIR-V, to allow tracked objects to be fully edited before
their type snapshot for linker objects.

Should only effect things when the rest of the AST contained no reference to
the symbol, because normal AST nodes were not stale. Also will only effect such
objects when their types were edited.
2016-11-05 10:22:33 -06:00
steve-lunarg
8b0227ced9 HLSL: phase 3b: Texture methods remember and return vector size.
Also makes a (correct) test change for global -> temp vars.
2016-10-14 18:44:32 -06:00
John Kessenich
a08c929d8e HLSL: Line numbers only: Set locations (line numbers) on synthesized flattening code. 2016-10-01 17:17:55 -06:00
John Kessenich
4e55988a47 HLSL Tests: Tests for previous commit, to make it easier to see what's changing. 2016-09-29 10:25:15 -06:00
steve-lunarg
cf43e66125 Fix defects in uniform array flattening
Fix for two defects as follows:

- The IO mapping traverser was not setting inVisit, and would skip some AST nodes.
  Depending on the order of nodes, this could have prevented the binding from
  showing up in the generated SPIR-V.

- If a uniform array was flattened, each of the flattened scalars from the array
  is still a (now-scalar) uniform.  It was being converted to a temporary.
2016-09-22 15:58:06 -06:00
steve-lunarg
e0b9debda2 Flatten uniform arrays
This checkin adds a --flatten-uniform-arrays option which can break
uniform arrays of samplers, textures, or UBOs up into individual
scalars named (e.g) myarray[0], myarray[1], etc.  These appear as
individual linkage objects.

Code notes:

- shouldFlatten internally calls shouldFlattenIO, and shouldFlattenUniform,
  but is the only flattening query directly called.

- flattenVariable will handle structs or arrays (but not yet arrayed structs;
  this is tested an an error is generated).

- There's some error checking around unhandled situations.  E.g, flattening
  uniform arrays with initializer lists is not implemented.

- This piggybacks on as much of the existing mechanism for struct flattening
  as it can.  E.g, it uses the same flattenMap, and the same
  flattenAccess() method.

- handleAssign() has been generalized to cope with either structs or arrays.

- Extended test infrastructure to test flattening ability.
2016-09-22 08:47:48 -06:00