327 Commits

Author SHA1 Message Date
John Kessenich
9855bdad00 GLSL: Promote HLSL entry-point renaming code to be used by GLSL as well.
Fixes #1045.
2017-09-12 09:40:54 -06:00
mchock-nv
933c10cd4b Delete unused 'this' capture
Remove an unused 'this' entry from a lambda capture list.

This cleans up a unused-lambda-capture warning.
2017-09-11 15:20:52 -07:00
John Kessenich
75e057f980 Merge pull request #1037 from LoopDawg/clip-cull-geom
HLSL: add geometry stage support for clip/cull distance
2017-08-31 12:36:06 -06:00
LoopDawg
5e5b12e931 HLSL: add geometry stage support for clip/cull distance
Changes:

(1) Allow clip/cull builtins as both input and output in the same shader stage.  Previously,
not enough data was tracked to handle this.

(2) Handle the extra array dimension in GS inputs.  The synthesized external variable can
now be created with the extra array dimension if needed, and the form conversion code is
able to handle it as well.

For example, both of these GS inputs would result in the same synthesized external type:

    triangle in float4 clip[3] : SV_ClipDistance

    triangle in float2 clip[3][2] : SV_ClipDistance

In the second case, the inner array dimension packs with the 2-vector of floats into an array[4],
which there is an array[3] of due to the triangle geometry.
2017-08-31 10:37:46 -06:00
John Kessenich
4e2f05da41 Build: Fix #1036: size_t warning. 2017-08-29 12:36:09 -06:00
LoopDawg
d6f4d9b48c HLSL: fix type on clip/cull index result
While adding geometry stage support for clip/cull, it transpired that the
existing clip/cull support was not setting the type of the result of indexing
into the clup/cull variable.  That's a defect independent of the geometry
support, so to simplify the geometry PR, this is addressed separately.

It doesn't appear to change the generated SPIR-V, but that's probably down to
something else tolerating a bad input.
2017-08-28 14:05:41 -06:00
John Kessenich
1f312f9078 Merge pull request #1028 from LoopDawg/clip-cull-input
HLSL: handle clip and cull distance input builtin type conversion
2017-08-24 12:15:00 -06:00
LoopDawg
e2cda3c2d7 HLSL: handle clip and cull distance input builtin type conversion
HLSL allows a range of types for clip and cull distances.  There are
three dimensions, including arrayness, vectorness, and semantic ID.
SPIR-V requires clip and cull distance be a single array of floats in
all cases.

This code provides input side conversion between the SPIR-V form and
the HLSL form.  (Output conversion was added in PR #947 and #997).

This PR extends HlslParseContext::assignClipCullDistance to cope with
the input side conversion.  Not as much changed as appears: there was
also a lot of renaming to reflect the fact that the code now handles
either direction.

Currently, non-{frag,vert} stages are not handled, and are explicitly
rejected.

Fixes #1026.
2017-08-24 08:35:40 -06:00
John Kessenich
3d1b709676 HLSL: Fix #1027. 2017-08-23 14:33:31 -06:00
John Kessenich
778806a692 HLSL: Fix #1018: Give an error for mismatched return type. 2017-08-19 17:29:44 -06:00
LoopDawg
5ee05891cf HLSL: add methods to track user structure in texture return type.
Some languages allow a restricted set of user structure types returned from texture sampling
operations.  Restrictions include the total vector size of all components may not exceed 4,
and the basic types of all members must be identical.

This adds underpinnings for that ability.  Because storing a whole TType or even a simple
TTypeList in the TSampler would be expensive, the structure definition is held in a
table outside the TType.  The TSampler contains a small bitfield index, currently 4 bits
to support up to 15 separate texture template structure types, but that can be adjusted
up or down.  Vector returns are handled as before.

There are abstraction methods accepting and returning a TType (such as may have been parsed
from a grammar).  The new methods will accept a texture template type and set the
sampler to the structure if possible, checking a range of error conditions such as whether
the total structure vector components exceed 4, or whether their basic types differe, or
whether the struct contains non-vector-or-scalar members.  Another query returns the
appropriate TType for the sampler.

High level summary of design:

In the TSampler, this holds an index into the texture structure return type table:

    unsigned int structReturnIndex : structReturnIndexBits;

These are the methods to set or get the return type from the TSampler.  They work for vector or structure returns, and potentially could be expanded to handle other things (small arrays?) if ever needed.

    bool setTextureReturnType(TSampler& sampler, const TType& retType, const TSourceLoc& loc);
    void getTextureReturnType(const TSampler& sampler, const TType& retType, const TSourceLoc& loc) const;

The ``convertReturn`` lambda in ``HlslParseContext::decomposeSampleMethods`` is greatly expanded to know how to copy a vec4 sample return to whatever the structure type should be.  This is a little awkward since it involves introducing a comma expression to return the proper aggregate value after a set of memberwise copies.
2017-08-15 16:40:21 -06:00
John Kessenich
03e63fa805 HLSL: Add fall-back for opaque initializers to just generate long-term expected code.
This generated code needs an optimization pass to eliminate the assignments
to the opaque members.
2017-08-15 10:18:32 -06:00
John Kessenich
e29ff3cd65 HLSL: Flatten structs for all non-arrayed I/O interfaces. 2017-08-11 00:17:26 -06:00
John Kessenich
01109546d8 HLSL: Make fresh array sizes for TessLevelOuter and TessLevelInner arrays.
This prevents potentional sharing from inadvertently affecting other arrays.
2017-08-11 00:14:46 -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
3322dd8f99 HLSL: Include built-in processing for vertex input and fragment output flattening. 2017-08-09 11:03:49 -06:00
John Kessenich
ecd08bc36c Non-functional HLSL: Factor out built-ins from splitting and related simplifications. 2017-08-08 17:32:38 -06:00
John Kessenich
eaed06823a Merge pull request #1011 from LoopDawg/pragma-pack-matrix
HLSL: implement #pragma pack_matrix(layout)
2017-08-08 06:35:29 +09:00
LoopDawg
6a264bed88 HLSL: implement #pragma pack_matrix(layout)
This adds support for #pragma pack_matrix() to the HLSL front end.

The pragma sets the default matrix layout for subsequent unqualified matrices
in structs or buffers. Explicit qualification overrides the pragma value. Matrix
layout is not permitted at the structure level in HLSL, so only leaves which are
matrix types can be so qualified.

Note that due to the semantic (not layout) difference in first matrix indirections
between HLSL and SPIR-V, the sense of row and column major are flipped.  That's
independent of this PR: just a factor to note.  A column_major qualifier appears
as a RowMajor member decoration in SPIR-V modules, and vice versa.
2017-08-07 12:41:44 -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
LoopDawg
898f5fbef7 HLSL: fix qualifier propagation from user struct types to block definitions.
The HLSL FE tracks four versions of a declared type to avoid losing information, since it
is not (at type-decl time) known how the type will be used downstream.  If such a type
was used in a cbuffer declaration, the cbuffer type's members should have been using
the uniform form of the original user structure type, but were not.

This would manifest as matrix qualifiers (and other things, such as pack offsets) on user struct
members going missing in the SPIR-V module if the struct type was a member of a cbuffer, like so:

    struct MyBuffer
    {
        row_major float4x4 mat1;
        column_major float4x4 mat2;
    };

    cbuffer Example
    {
        MyBuffer g_MyBuffer;
    };

Fixes: #789
2017-08-04 15:50:10 -06:00
John Kessenich
2b4f77f2dc HLSL: Correct use of isPerVertexBuiltIn() to be isClipOrCullDistance().
This allows removal of isPerVertexBuiltIn(). It also leads to
removal of addInterstageIoToLinkage(), which is no longer needed.

Includes related name improvements.
2017-08-04 15:32:24 -06:00
John Kessenich
b6be80f44e HLSL: Flatten more I/O: non-arrayed user-only structures.
The goal is to flatten all I/O, but there are multiple categories and
steps to complete, likely including a final unification of splitting
and flattening.
2017-08-04 12:19:58 -06:00
John Kessenich
cca42a8ea6 HLSL: Stop including empty structures in the I/O interface. Fix #785. 2017-08-03 18:41:48 -06:00
John Kessenich
6042eb475b Non-functional: HLSL: Simplify I/O logic for splitting. 2017-08-02 17:08:43 -06:00
John Kessenich
318a379b1f Non-functional: HLSL further simplications to base I/O flattening on. 2017-07-30 23:51:35 -06:00
John Kessenich
8bcdf2eaf5 Non-functional: HLSL: clean up dead code for splitting.
Most of this was obsoleted by entry-point wrapping.
Some other is just unnecessary.
Also, includes some spelling/name improvements.

This is to help lay ground work for flattening user I/O.
2017-07-30 18:53:16 -06:00
LoopDawg
7a3cef10dc HLSL: Non-functional: warning fix, remove unused member.
Two non-functional changes:

1. Remove flattenLevel, which is unneeded since at or around d1be7545c6a23657587dfe3bc4b149c91290a66f.

2. Fix build warining about unused variable in executeInitializer.
2017-07-28 18:41:53 -06:00
John Kessenich
2ceec68109 Nonfunctional: Shorten some lines to the coding standard, to retrigger failed test run. 2017-07-28 16:21:04 -06:00
LoopDawg
307b6507b3 HLSL: handle multiple clip/cull semantic IDs
HLSL allows several variables to be declared.  There are packing rules involved:
e.g, a float3 and a float1 can be packed into a single array[4], while for a
float3 and another float3, the second one will skip the third array entry to
avoid straddling

This is implements that ability.  Because there can be multiple variables involved,
and the final output array will often be a different type altogether (to fuse
the values into a single destination), a new variable is synthesized, unlike the prior
clip/cull support which used the declared variable.  The new variable name is
taken from one of the declared ones, so the old tests are unchanged.

Several new tests are added to test various packing scenarios.

Only two semantic IDs are supported: 0, and 1, per HLSL rules.  This is
encapsulated in

     static const int maxClipCullRegs = 2;

and the algorithm (probably :) ) generalizes to larger values, although there
are a few issues around how HLSL would pack (e.g, would 4 scalars be packed into
a single HLSL float4 out reg?  Probably, and this algorithm assumes so).
2017-07-26 11:18:09 -06:00
John Kessenich
ab0086754e Merge pull request #991 from LoopDawg/resource-set-binding-fix
HLSL: Fix crash with --resource-set-binding [n] (global form, not per-register form)
2017-07-22 01:59:42 +09:00
LoopDawg
52017192e5 Fix crash with --resource-set-binding [n] (common set form, not per-register form)
--resource-set-binding has a mode which allows per-register assignments of
bindings and descriptor sets on the command line, and another accepting a
single descriptor set value to assign to all variables.

The former worked, but the latter would crash when assigning the values.
This fixes it, and makes the former case a bit more robust against premature
termination of the pre-register values, which must come in (regname,set,binding)
triples.

This also allows the form "--resource-set-binding stage setnum", which was
mentioned in the usage message, but did not parse.

The operation of the per-register form of this option is unchanged.
2017-07-18 11:15:40 -06:00
John Kessenich
0e6e2ffd9c Fix #980: flatten opaque initializers to use aliases. 2017-07-16 05:46:13 -06:00
LoopDawg
0fca0bafaf WIP: HLSL: support global const initializers from non-constant rvalues
Semantic test left over from other source languages is removed, since this is permitted by HLSL.
Also, to support the functionality, a targeted test is performed for this case and it is
turned into a EvqGlobal qualifier to create an AST initialization segment when needed.

Constness is now propagated up aggregate chains during initializer construction.  This
handles hierarchical cases such as the distinction between:

    static const float2 a[2] = { { 1, 2 }, { 3, 4} };

vs

    static const float2 a[2] = { { 1, 2 }, { cbuffer_member, 4} };

The first of which can use a first class constant initalization, and the second cannot.
2017-07-11 13:41:39 -06:00
Rex Xu
57e65929e4 HLSL: Translate directive [flatten] and [branch] to SPV control mask. 2017-07-06 11:31:33 +08:00
LoopDawg
54b9ff9c34 HLSL: handle type conversion for any/all intrinsics
HLSL allows float/etc types for any/all intrinsics, while the
SPIR-V opcode requires bool.  This adds a simple decomposition
to type convert the argument.  It could get a little more clever
in some of the type cases if it ever had to.
2017-07-05 12:19:39 -06:00
John Kessenich
d1be7545c6 HLSL: Non-functional: Move partial flattened access into symbol node.
Lays the groundwork for fixing issue #954.

Partial flattenings were previously tracked through a stack of active subsets
in the parse context, but full functionality needs AST nodes to represent
this across time, removing the need for parsecontext tracking.
2017-07-03 21:49:09 -06:00
John Kessenich
02a14e7c99 HLSL: Non-functional: some coding convention tweaks (120 columns, nullptr).
This commit, and next one, are specifically to make a future commit
handling partial dereferences of flattening objects easier to see.
2017-07-03 21:49:09 -06:00
Rex Xu
37cdceed41 Implement extension GL_ARB_shader_stencil_export 2017-06-29 17:50:46 +08:00
John Kessenich
89f8d1e64f HLSL: Fix #942: Map SV_TargetN to SPV Location N. 2017-06-27 15:17:38 -06:00
John Kessenich
fe6689c6c4 HLSL: support point mode. 2017-06-26 17:52:22 -06:00
LoopDawg
c44b95fdec WIP: HLSL: handle clip/cull distance array semantic matching
In HLSL, there are three (TODO: ??) dimensions of clip and cull
distance values:

  * The semantic's value N, ala SV_ClipDistanceN.
  * The array demension, if the value is an array.
  * The vector element, if the value is a vector or array of vectors.

In SPIR-V, clip and cull distance are arrays of scalar floats, always.

This PR currently ignores the semantic N axis, and handles the other
two axes by sequentially copying each vector element of each array member
into sequential floats in the output array.

Fixes: #946
2017-06-23 13:06:53 -06:00
John Kessenich
4329d555ad HLSL: Broaden solution for #940, editing integer input for 'flat'. 2017-06-21 01:35:57 -06:00
John Kessenich
f0bc598dd7 HLSL: Force flat interpolation for structure members. Fixes #940. 2017-06-20 13:19:53 -06:00
John Kessenich
54596ff99e HLSL: Force flat (nointerp) onto integer fragment inputs.
Addresses #940.
2017-06-20 03:20:59 -06:00
John Kessenich
f02c8e6ba1 Non-functional: Attempt to reset Travis error, while adding more nullptr use.
Top of master is listing a test error, not from glslang, but internally
within Travis itself.  Seeing if another run gets it to work again.
2017-06-19 16:25:44 -06:00
LoopDawg
e2713125b9 HLSL: fix several issues in mat construction from scalars
This fixes:

1. A compilation error when assigning scalars to matricies

2. A semantic error in matrix construction from scalars.  This was
initializing the diagonal, where HLSL semantics require the scalar be
replicated to every matrix element.

3. Functions accepting mats can be called with scalars, which will
be shape-converted to the matrix type.  This was previously failing
to match the function signature.

NOTE: this does not yet handle complex scalars (a function call,
say) used to construct matricies.  That'll be added when the
node replicator service is available.  For now, there's an assert.

There's one new test (hlsl.scalar2matrix.frag).  An existing test
lsl.type.half.frag changes, because of (2) above, and a negative
test error message changes due to (3) above.

Fixes #923.
2017-06-14 14:11:18 -06:00
John Kessenich
82ae8c31e0 HLSL: Fix #924: Convert between two different arrays with cast. 2017-06-13 23:13:10 -06:00
LoopDawg
1892886ae1 HLSL: compilation warning fix: no functional change
One liner to eliminate a compile warning.
2017-06-10 07:42:03 -06:00
John Kessenich
f6deacd579 HLSL: Track control-flow nesting and warn on aliasing under it. 2017-06-06 19:53:24 -06:00