David Neto dffa60ca98 spir-writer: handle break continuing block
The continuing block can exit the loop in very constrained ways:

When a break statement is placed such that it would exit from a loop’s
§ 7.3.8 Continuing Statement, then:

   - The break statement must appear as either:
     - The only statement in the if clause of an if statement that has:
       - no else clause or an empty else clause
       - no elseif clauses
     - The only statement in the else clause of an if statement that has an
       empty if clause and no elseif clauses.
   - That if statement must appear last in the continuing clause.

By design, this allows a lossless round-trip from SPIR-V to WGSL and
back to SPIR-V.  But that requires this special case construct in WGSL
to be translated to an OpBranchConditional with one target being
the loop's megre block (which is where 'break' branches to), and the
other targets the loop header (which is the loop backedge).  That
OpBranchConditional takes the place of the normal case of an
unconditional backedge.

Avoids errors like this:
 continue construct with the continue target X is not
 post dominated by the back-edge block Y

Fixed: 1034
Change-Id: If472a179380b8d77af746a3cd8e279c8a5e56b37
Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/59800
Auto-Submit: David Neto <dneto@google.com>
Kokoro: Kokoro <noreply+kokoro@google.com>
Commit-Queue: David Neto <dneto@google.com>
Reviewed-by: Ben Clayton <bclayton@google.com>
2021-07-27 15:12:27 +00:00

159 lines
6.2 KiB
Plaintext

; SPIR-V
; Version: 1.3
; Generator: Google Tint Compiler; 0
; Bound: 90
; Schema: 0
OpCapability Shader
OpMemoryModel Logical GLSL450
OpEntryPoint Fragment %main "main" %tint_symbol_1
OpExecutionMode %main OriginUpperLeft
OpName %buf0 "buf0"
OpMemberName %buf0 0 "one"
OpName %x_10 "x_10"
OpName %x_GLF_color "x_GLF_color"
OpName %tint_symbol_1 "tint_symbol_1"
OpName %S "S"
OpMemberName %S 0 "x"
OpMemberName %S 1 "y"
OpName %func_struct_S_i1_i11_ "func_struct_S_i1_i11_"
OpName %arg "arg"
OpName %main_1 "main_1"
OpName %a "a"
OpName %b "b"
OpName %param "param"
OpName %main_out "main_out"
OpMemberName %main_out 0 "x_GLF_color_1"
OpName %tint_symbol_2 "tint_symbol_2"
OpName %tint_symbol "tint_symbol"
OpName %main "main"
OpDecorate %buf0 Block
OpMemberDecorate %buf0 0 Offset 0
OpDecorate %x_10 NonWritable
OpDecorate %x_10 DescriptorSet 0
OpDecorate %x_10 Binding 0
OpDecorate %tint_symbol_1 Location 0
OpMemberDecorate %S 0 Offset 0
OpMemberDecorate %S 1 Offset 4
OpDecorate %_arr_S_uint_2 ArrayStride 8
OpMemberDecorate %main_out 0 Offset 0
%int = OpTypeInt 32 1
%buf0 = OpTypeStruct %int
%_ptr_Uniform_buf0 = OpTypePointer Uniform %buf0
%x_10 = OpVariable %_ptr_Uniform_buf0 Uniform
%float = OpTypeFloat 32
%v4float = OpTypeVector %float 4
%_ptr_Private_v4float = OpTypePointer Private %v4float
%9 = OpConstantNull %v4float
%x_GLF_color = OpVariable %_ptr_Private_v4float Private %9
%_ptr_Output_v4float = OpTypePointer Output %v4float
%tint_symbol_1 = OpVariable %_ptr_Output_v4float Output %9
%void = OpTypeVoid
%S = OpTypeStruct %int %int
%_ptr_Function_S = OpTypePointer Function %S
%12 = OpTypeFunction %void %_ptr_Function_S
%uint = OpTypeInt 32 0
%uint_1 = OpConstant %uint 1
%_ptr_Function_int = OpTypePointer Function %int
%int_1 = OpConstant %int 1
%25 = OpTypeFunction %void
%_ptr_Function_float = OpTypePointer Function %float
%30 = OpConstantNull %float
%uint_2 = OpConstant %uint 2
%_arr_S_uint_2 = OpTypeArray %S %uint_2
%_ptr_Function__arr_S_uint_2 = OpTypePointer Function %_arr_S_uint_2
%35 = OpConstantNull %_arr_S_uint_2
%37 = OpConstantNull %S
%float_5 = OpConstant %float 5
%uint_0 = OpConstant %uint 0
%_ptr_Uniform_int = OpTypePointer Uniform %int
%bool = OpTypeBool
%float_0 = OpConstant %float 0
%false = OpConstantFalse %bool
%float_1 = OpConstant %float 1
%76 = OpConstantComposite %v4float %float_1 %float_0 %float_0 %float_1
%77 = OpConstantComposite %v4float %float_0 %float_0 %float_0 %float_0
%main_out = OpTypeStruct %v4float
%78 = OpTypeFunction %void %main_out
%func_struct_S_i1_i11_ = OpFunction %void None %12
%arg = OpFunctionParameter %_ptr_Function_S
%18 = OpLabel
%23 = OpAccessChain %_ptr_Function_int %arg %uint_1
OpStore %23 %int_1
OpReturn
OpFunctionEnd
%main_1 = OpFunction %void None %25
%27 = OpLabel
%a = OpVariable %_ptr_Function_float Function %30
%b = OpVariable %_ptr_Function__arr_S_uint_2 Function %35
%param = OpVariable %_ptr_Function_S Function %37
OpStore %a %float_5
OpBranch %39
%39 = OpLabel
OpLoopMerge %40 %41 None
OpBranch %42
%42 = OpLabel
%45 = OpAccessChain %_ptr_Uniform_int %x_10 %uint_0
%46 = OpLoad %int %45
%47 = OpAccessChain %_ptr_Function_int %b %46 %uint_0
OpStore %47 %int_1
%48 = OpAccessChain %_ptr_Function_int %b %int_1 %uint_0
%49 = OpLoad %int %48
%50 = OpIEqual %bool %49 %int_1
OpSelectionMerge %52 None
OpBranchConditional %50 %53 %52
%53 = OpLabel
%54 = OpAccessChain %_ptr_Uniform_int %x_10 %uint_0
%55 = OpLoad %int %54
%56 = OpIEqual %bool %55 %int_1
OpSelectionMerge %57 None
OpBranchConditional %56 %58 %57
%58 = OpLabel
OpBranch %40
%57 = OpLabel
%59 = OpAccessChain %_ptr_Function_S %b %int_1
%60 = OpLoad %S %59
OpStore %param %60
%61 = OpFunctionCall %void %func_struct_S_i1_i11_ %param
%63 = OpLoad %S %param
%64 = OpAccessChain %_ptr_Function_S %b %int_1
OpStore %64 %63
%65 = OpAccessChain %_ptr_Function_int %b %int_1 %uint_1
%66 = OpLoad %int %65
%67 = OpConvertSToF %float %66
OpStore %a %67
OpBranch %52
%52 = OpLabel
OpStore %a %float_0
OpBranch %41
%41 = OpLabel
OpBranchConditional %false %39 %40
%40 = OpLabel
%70 = OpLoad %float %a
%71 = OpFOrdEqual %bool %70 %float_5
OpSelectionMerge %72 None
OpBranchConditional %71 %73 %74
%73 = OpLabel
OpStore %x_GLF_color %76
OpBranch %72
%74 = OpLabel
OpStore %x_GLF_color %77
OpBranch %72
%72 = OpLabel
OpReturn
OpFunctionEnd
%tint_symbol_2 = OpFunction %void None %78
%tint_symbol = OpFunctionParameter %main_out
%82 = OpLabel
%83 = OpCompositeExtract %v4float %tint_symbol 0
OpStore %tint_symbol_1 %83
OpReturn
OpFunctionEnd
%main = OpFunction %void None %25
%85 = OpLabel
%86 = OpFunctionCall %void %main_1
%88 = OpLoad %v4float %x_GLF_color
%89 = OpCompositeConstruct %main_out %88
%87 = OpFunctionCall %void %tint_symbol_2 %89
OpReturn
OpFunctionEnd