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All member variables of ast_type_qualifier are already being
initialized from its implicitly defined constructor, it's not
necessary to use rzalloc to allocate its memory.
Reviewed-by: Kenneth Graunke <[email protected]>
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All member variables of ast_node are already being initialized from
its constructor, but some of its derived classes were leaving members
uninitialized -- Fix them.
Using rzalloc makes it more likely that we will start relying on the
allocator to zero out all memory if the class is ever extended with
new member variables. That's bad because it ties objects to some
specific allocation scheme, and gives unpredictable results when an
object is created with a different allocator -- Stack allocation,
array allocation, or aggregation inside a different object are some of
the useful possibilities that come to my mind.
v2: Use NULL initialization instead of default construction for pointers.
Reviewed-by: Kenneth Graunke <[email protected]>
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This eliminates a lot of boilerplate and should be 100% equivalent.
Signed-off-by: Kenneth Graunke <[email protected]>
Reviewed-by: Eric Anholt <[email protected]>
Reviewed-by: Chad Versace <[email protected]>
Reviewed-by: Ian Romanick <[email protected]>
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No longer used.
Reviewed-by: Ian Romanick <[email protected]>
Reviewed-by: Anuj Phogat <[email protected]>
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The variable means that UBO qualifiers are allowed in a particular
context (e.g., not allowed in a struct field declaration), rather than a
particular set of UBO qualifiers are valid.
Reviewed-by: Ian Romanick <[email protected]>
Reviewed-by: Anuj Phogat <[email protected]>
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This is required by the spec, and it's a bit tricky because the default
precision is scoped. As a result, I'm slightly abusing the symbol
table.
Fixes piglit no-default-float-precision.frag tests and the piglit
default-precision-nested-scope-0[1234].frag tests that are currently on
the piglit mailing list for review.
On IRC I got confirmation from cwabbot that ARM (Mali T6xx and T400)
enforces this requirement and from kusma that NVIDIA (Tegra2) enforces
this requirement. We should be safe from regressing shipping
applications.
Signed-off-by: Ian Romanick <[email protected]>
Reviewed-by: Kenneth Graunke <[email protected]>
Cc: "9.2" <[email protected]>
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Reviewed-by: Kenneth Graunke <[email protected]>
Reviewed-by: Ian Romanick <[email protected]>
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Limited semantic checking (compatibility between declarations, checking
that they're in the right shader target, etc.) is done.
v2: Remove stray debug printfs.
v3 (Paul Berry <[email protected]>): Process input layout
qualifiers at ast_to_hir time rather than at parse time, since certain
error conditions depend on the relative ordering between input layout
qualifiers, declarations, and calls to .length().
Reviewed-by: Ian Romanick <[email protected]>
Reviewed-by: Kenneth Graunke <[email protected]>
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Nothing actually uses this yet.
v2: Remove >= 0 checks. They'll be handled in later validation.
Signed-off-by: Kenneth Graunke <[email protected]>
Reviewed-by: Paul Berry <[email protected]>
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This is necessary for the parser to be able to accept precision
qualifiers not immediately adjacent to the type, such as "const highp
inout float foo".
Signed-off-by: Kenneth Graunke <[email protected]>
Reviewed-by: Matt Turner <[email protected]>
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Currently, we store precision in ast_type_specifier, rather than
ast_type_qualifier. This works because precision is the last qualifier,
and immediately adjacent to the type.
Default precision statements (such as "precision highp float") are
represented as ast_type_specifier objects, with a boolean to indicate
that it's a default precision statement rather than an ordinary type.
ast_type_specifier::precision will be moving to ast_type_qualifier soon,
in order to support arbitrary qualifier ordering. However, we still
need to store a "this is a precision statement" flag /and/ the default
precision in ast_type_specifier.
This patch changes the boolean into a new field, default_precision.
If default_precision != ast_precision_none, it's a precision statement
with the specified precision. Otherwise, it's an ordinary type.
Signed-off-by: Kenneth Graunke <[email protected]>
Reviewed-by: Matt Turner <[email protected]>
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"Auxiliary storage qualifiers" is the new term given to "centroid",
"patch", and "sample" by GLSL 4.20/GL_ARB_shading_language_420pack.
Even though we only support "centroid", it's useful to add this now
so that all auxiliary storage qualifiers get handled in the right places
once they're eventually supported.
Signed-off-by: Kenneth Graunke <[email protected]>
Reviewed-by: Matt Turner <[email protected]>
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This makes it easy to check if any storage qualifiers are set.
"centroid" is not considered a storage qualifier. In the old language
rules, you can't specify "centroid" by itself; it's always "centroid
in", "centroid out", or "centroid varying." So one of the other storage
qualifiers will always be set; there's no need to specifically check for
centroid.
In the new 4.20 rules, centroid is an auxiliary storage qualifier, not a
storage qualifier.
Signed-off-by: Kenneth Graunke <[email protected]>
Reviewed-by: Matt Turner <[email protected]>
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This makes it easy to check if any layout qualifiers are set.
Signed-off-by: Kenneth Graunke <[email protected]>
Reviewed-by: Matt Turner <[email protected]>
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Fixes "Uninitialized pointer field" defect reported by Coverity.
Signed-off-by: Vinson Lee <[email protected]>
Reviewed-by: Matt Turner <[email protected]>
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Required by GL_ARB_shading_language_420pack.
Parts based on work done by Todd Previte and Ken Graunke, implementing
basic support for C-style initializers of arrays.
Reviewed-by: Ian Romanick <[email protected]>
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Reviewed-by: Ian Romanick <[email protected]>
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Will be used in a later commit to differentiate between a structure type
declaration and a variable declaration of a struct type. I.e., the
difference between
struct S { float x; }; (is_declaration = true)
and
S s; (is_declaration = false)
Also note that is_declaration = true for
struct S { float x; } s;
Reviewed-by: Ian Romanick <[email protected]>
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Reviewed-by: Chad Versace <[email protected]>
Reviewed-by: Ian Romanick <[email protected]>
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Reviewed-by: Chad Versace <[email protected]>
Reviewed-by: Ian Romanick <[email protected]>
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Reviewed-by: Ian Romanick <[email protected]>
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Reviewed-by: Chad Versace <[email protected]>
Reviewed-by: Ian Romanick <[email protected]>
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Signed-off-by: Jordan Justen <[email protected]>
Reviewed-by: Eric Anholt <[email protected]>
Reviewed-by: Kenneth Graunke <[email protected]>
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Check the type of the array operand and the index operand before doing
other checks. This simplifies the code a bit now (eliminating the
error_emitted parameter), and enables some later functional changes.
The shader
uniform float x[6];
uniform sampler2D s;
void main() { gl_Position.x = xx[s + 1]; }
still generates (only) the two expected errors:
0:3(33): error: `xx' undeclared
0:3(39): error: Operands to arithmetic operators must be numeric
Signed-off-by: Ian Romanick <[email protected]>
Reviewed-by: Kenneth Graunke <[email protected]>
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That last consumer of the return value was changed to not use it by the
previous commit.
Signed-off-by: Ian Romanick <[email protected]>
Reviewed-by: Kenneth Graunke <[email protected]>
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I love 800+ line switch-statements as much as the next guy... Future
commits will make changes to this part of the AST-to-HIR conversion, and
extracting this code will make that a bit easier.
Signed-off-by: Ian Romanick <[email protected]>
Reviewed-by: Kenneth Graunke <[email protected]>
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A future commit will try to use this function in a different file.
Signed-off-by: Ian Romanick <[email protected]>
Reviewed-by: Kenneth Graunke <[email protected]>
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Fixes uninitialized pointer field defect reported by Coverity.
Signed-off-by: Vinson Lee <[email protected]>
Reviewed-by: Brian Paul <[email protected]>
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The size is parsed and stored in the AST, but it is not used yet.
Processing of the array size is added in the patch "glsl: Handle
instance array declarations"
v2: Update the commit message (suggested by Carl Worth). Add a comment
to ast_uniform_block::array_size (suggested by Paul Berry).
Signed-off-by: Ian Romanick <[email protected]>
Reviewed-by: Chad Versace <[email protected]>
Reviewed-by: Kenneth Graunke <[email protected]>
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In GLSL ES 3.00 (and GLSL 1.50), uniform blocks can have an associated
"instance name", which essentially namespaces the variables inside.
This patch adds basic parsing for this new feature, but doesn't yet hook
it up to actually do anything yet.
It does not support for arrays of interface blocks; a later commit will
take care of that.
This change temporarily regresses the piglit test
interface-name-access-without-interface-name.vert. This shader failed
to compile before (the expected result), but it failed to compile for
the wrong reason. This is not a real regression.
v2: Add some comments to ast_uniform_block::instance_name. Suggested by
Paul Berry.
Reviewed-by: Carl Worth <[email protected]>
Reviewed-by: Chad Versace <[email protected]>
Reviewed-by: Kenneth Graunke <[email protected]>
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I ended up having to add rallocing of the ast_type_qualifier in order
to avoid pulling in ast.h for glsl_parser_extras.h, because I wanted
to track an ast_type_qualifier in the state.
Fixes piglit ARB_uniform_buffer_object/row-major.
Reviewed-by: Kenneth Graunke <[email protected]>
Reviewed-by: Ian Romanick <[email protected]>
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Fixes piglit layout-*-non-uniform and layout-*-within-block.
Reviewed-by: Ian Romanick <[email protected]>
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This doesn't do anything with the uniform block declarations yet, so
usage of those uniforms finds them to be undeclared.
Reviewed-by: Kenneth Graunke <[email protected]>
Reviewed-by: Ian Romanick <[email protected]>
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I've been trying to derive from this for UBO support, and the slightly
obfuscated types were putting me over the edge.
Reviewed-by: Kenneth Graunke <[email protected]>
Reviewed-by: Ian Romanick <[email protected]>
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This adds index support to the GLSL compiler.
I'm not 100% sure of my approach here, esp without how output ordering
happens wrt location, index pairs, in the "mark" function.
Since current hw doesn't ever have a location > 0 with an index > 0,
we don't have to work out if the output ordering the hw requires is
location, index, location, index or location, location, index, index.
But we have no hw to know, so punt on it for now.
v2: index requires layout - catch and error
setup explicit index properly.
v3: drop idx_offset stuff, assume index follow location
Signed-off-by: Dave Airlie <[email protected]>
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We have lexer recognition of a bunch of our types based on the
handling. This code was mapping those recognized tokens to an enum
and then to a string of their name. Just drop the enums and provide
the string directly in the parser.
Reviewed-by: Ian Romanick <[email protected]>
Reviewed-by: Kenneth Graunke <[email protected]>
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Nothing actually relied on them being mutable, and there was at least
one cast which discarded const qualifiers. The next patch would have
introduced many more.
Casting away const qualifiers should be avoided if at all possible.
Signed-off-by: Kenneth Graunke <[email protected]>
Reviewed-by: Ian Romanick <[email protected]>
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Signed-off-by: Ian Romanick <[email protected]>
Reviewed-by: Paul Berry <[email protected]>
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Previously we added productions for:
switch_body
case_label_list
case_statement
case_statement_list
Now add AST structs corresponding to those productions.
Reviewed-by: Kenneth Graunke <[email protected]>
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Data structures for switch statement and case label are created that parallel
the structure of other AST data.
Reviewed-by: Kenneth Graunke <[email protected]>
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This extension introduces a new sampler type: samplerExternalOES.
texture2D (and texture2DProj) can be used to do a texture look up in an
external texture.
Reviewed-by: Brian Paul <[email protected]>
Acked-by: Jakob Bornecrantz <[email protected]>
Reviewed-by: Ian Romanick <[email protected]>
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expression >= 0 is always true"
ast_type_qualifier::location should have been a signed integer from
the beginning, and the giant comment in
apply_type_qualifier_to_variable explains why.
Bugzilla: https://bugs.freedesktop.org/show_bug.cgi?id=40207
Reviewed-by: Kenneth Graunke <[email protected]>
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The ast-to-hir conversion needs to emit function signatures in two
circumstances: when a function declaration (or definition) is
encountered, and when a built-in function is encountered.
To avoid emitting a function signature in an illegal place (such as
inside a function), emit_function() checked whether we were inside a
function definition, and if so, emitted the signature before the
function definition.
However, this didn't cover the case of emitting function signatures
for built-in functions when those built-in functions are called from
inside the constant integer expression that specifies the length of a
global array. This failed because when processing an array length, we
are emitting IR into a dummy exec_list (see process_array_type() in
ast_to_hir.cpp). process_array_type() later checks (via an assertion)
that no instructions were emitted to the dummy exec_list, based on the
reasonable assumption that we shouldn't need to emit instructions to
calculate the value of a constant.
This patch changes emit_function() so that it emits function
signatures at toplevel in all cases.
This partially fixes bug 38625
(https://bugs.freedesktop.org/show_bug.cgi?id=38625). The remainder
of the fix is in the patch that follows.
Reviewed-by: Kenneth Graunke <[email protected]>
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* Add new field ast_type_specifier::is_precision_statement.
* Add semantic checks in ast_type_specifier::hir().
* Alter parser rules accordingly.
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Change default value to ast_precision_none, which denotes the absence of
a precision of a qualifier.
Previously, the default value was ast_precision_high. This made it
impossible to detect if a precision qualifier was present or not.
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... and 'centroid varying'. The check is performed only in GLSL
versions >= 1.30.
From page 29 (page 35 of the PDF) of the GLSL 1.30 spec:
"interpolation qualifiers may only precede the qualifiers in, centroid
in, out, or centroid out in a declaration. They do not apply to the
deprecated storage qualifiers varying or centroid varying."
Fixes Piglit test
spec/glsl-1.30/compiler/interpolation-qualifiers/smooth-varying-01.frag.
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If an interpolation qualifier is present, then the method returns that
qualifier's string representation. For example, if the noperspective bit
is set, then it returns "noperspective".
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