17 Commits

Author SHA1 Message Date
John Kessenich
30cb924538 Move to next SPIRV-Tools known good. 2018-11-15 23:43:35 -07:00
John Kessenich
75cbfcc278 Update to latest SPIR-V Tools. 2018-11-15 09:57:43 -07:00
John Kessenich
d6c975572e Change the major revision number for next commit. 2018-06-04 15:33:31 -06:00
John Kessenich
ac3707921e Revert the commits that change OpArrayLength type and bumped the version number.
Now, version 5.* is all connected to making the uint type, which doesn't quite work.
Generator versions 4 and 6 do not do this.
2018-03-07 11:48:25 -07:00
John Kessenich
0216f24f0e SPV: Bump up the generator number. 2018-03-03 11:47:07 -07:00
John Kessenich
71b5da60d0 SPV: Bump up generator number, because previous commit changes code gen slightly. 2018-02-06 08:06:36 -07:00
John Kessenich
2b5ea9f851 SPV Version: Emit the requested SPIR-V version, not the header version.
Fixes #1236.
2018-01-31 18:41:59 -07:00
John Kessenich
6c1c2766b6 SPV: Bump SPIR-V header to the unified1 version (version 1.2). 2018-01-29 16:16:11 -07:00
John Kessenich
c72e5937dd SPV: Bump the generator number to account for barrier changes. 2017-12-16 00:34:08 -07:00
John Kessenich
41aa19953f HLSL: Partially flatten hierarchies, instead of all or nothing.
Fixes #1092.  Allows arrays of opaques to keep arrayness, unless
needed by uniform array flattening.
Can handle assignments of mixed amounts of flattening.
2017-10-12 16:52:32 -06:00
John Kessenich
07ed11f9a0 SPV: GeneratorVersion: bump version number because of atomic decrement change. 2017-10-07 11:41:20 -06:00
John Kessenich
e516d4335f HLSL: Move debug naming to a simpler, more consistent, scheme.
This will help in expanding flattening and reducing splitting.
2017-08-09 14:29:29 -06:00
John Kessenich
d5aedc199f HLSL: Correct which things flattening tracks for linkage, based on caller, not type.
Includes related trackLinkage() code removal and name improvements.
2017-08-06 21:18:56 -06:00
John Kessenich
6fa17641b5 HLSL: Emit the OpSource HLSL instruction for HLSL, using new headers. 2017-04-07 15:40:01 -06:00
John Kessenich
71c100d7c0 GLSL output: Removed fixed-size buffer; fixes #769.
Makes some white-space differences in most output, plus a few cases
where more could have been put out but was cut short by the previous
fix-sized buffer.
2017-03-14 19:51:29 -06:00
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
steve-lunarg
a2b01a0da8 HLSL: Recursive composite flattening
This PR implements recursive type flattening.  For example, an array of structs of other structs
can be flattened to individual member variables at the shader interface.

This is sufficient for many purposes, e.g, uniforms containing opaque types, but is not sufficient
for geometry shader arrayed inputs.  That will be handled separately with structure splitting,
 which is not implemented by this PR.  In the meantime, that case is detected and triggers an error.

The recursive flattening extends the following three aspects of single-level flattening:

- Flattening of structures to individual members with names such as "foo[0].samp[1]";

- Turning constant references to the nested composite type into a reference to a particular
  flattened member.

- Shadow copies between arrays of flattened members and the nested composite type.

Previous single-level flattening only flattened at the shader interface, and that is unchanged by this PR.
Internally, shadow copies are, such as if the type is passed to a function.

Also, the reasons for flattening are unchanged.  Uniforms containing opaque types, and interface struct
types are flattened.  (The latter will change with structure splitting).

One existing test changes: hlsl.structin.vert, which did in fact contain a nested composite type to be
flattened.

Two new tests are added: hlsl.structarray.flatten.frag, and hlsl.structarray.flatten.geom (currently
issues an error until type splitting is online).

The process of arriving at the individual member from chained postfix expressions is more complex than
it was with one level.  See large-ish comment above HlslParseContext::flatten() for details.
2016-12-07 14:40:01 -07:00