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transform/shader_io: Generate a wrapper function
This is a major reworking of this transform. The old transform code was getting unwieldy, with part of the complication coming from the handling of multiple return statements. By generating a wrapper function instead, we can avoid a lot of this complexity. The original entry point function is stripped of all shader IO attributes (as well as `stage` and `workgroup_size`), but the body is left unmodified. A new entry point wrapper function is introduced which calls the original function, packing/unpacking the shader inputs as necessary, and propagates the result to the corresponding shader outputs. The new code has been refactored to use a state object with the different parts of the transform split into separate functions, which makes it much more manageable. Fixed: tint:1076 Bug: tint:920 Change-Id: I3490a0ea7a3509a4e198ce730e476516649d8d96 Reviewed-on: https://dawn-review.googlesource.com/c/tint/+/60521 Auto-Submit: James Price <jrprice@google.com> Kokoro: Kokoro <noreply+kokoro@google.com> Commit-Queue: James Price <jrprice@google.com> Reviewed-by: Ben Clayton <bclayton@google.com>
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Tint LUCI CQ
parent
3e92e9f8ba
commit
a5d73ce965
@@ -34,9 +34,15 @@ struct tint_symbol {
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float4 x_GLF_color_1 : SV_Target0;
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};
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tint_symbol main() {
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main_out main_inner() {
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main_1();
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const main_out tint_symbol_1 = {x_GLF_color};
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const tint_symbol tint_symbol_3 = {tint_symbol_1.x_GLF_color_1};
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return tint_symbol_3;
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const main_out tint_symbol_2 = {x_GLF_color};
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return tint_symbol_2;
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}
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tint_symbol main() {
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const main_out inner_result = main_inner();
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tint_symbol wrapper_result = (tint_symbol)0;
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wrapper_result.x_GLF_color_1 = inner_result.x_GLF_color_1;
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return wrapper_result;
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}
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@@ -14,13 +14,13 @@ struct tint_symbol_1 {
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float4 x_GLF_color_1 [[color(0)]];
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};
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void main_1(constant buf0& x_5, thread float4* const tint_symbol_4) {
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void main_1(constant buf0& x_5, thread float4* const tint_symbol_3) {
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tint_array_wrapper x_9 = {};
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int x_10_phi = 0;
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tint_array_wrapper const x_33 = x_9;
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int const x_6 = x_33.arr[0u];
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while (true) {
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*(tint_symbol_4) = float4(0.0f, 0.0f, 0.0f, 0.0f);
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*(tint_symbol_3) = float4(0.0f, 0.0f, 0.0f, 0.0f);
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int const x_7 = x_5.zero;
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int const x_8 = x_9.arr[x_7];
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if ((x_8 == x_6)) {
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@@ -32,18 +32,24 @@ void main_1(constant buf0& x_5, thread float4* const tint_symbol_4) {
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}
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int const x_10 = x_10_phi;
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if (((x_10 == 1) | (x_10 == 2))) {
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*(tint_symbol_4) = float4(1.0f, 0.0f, 0.0f, 1.0f);
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*(tint_symbol_3) = float4(1.0f, 0.0f, 0.0f, 1.0f);
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} else {
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*(tint_symbol_4) = float4(0.0f, 0.0f, 0.0f, 0.0f);
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*(tint_symbol_3) = float4(0.0f, 0.0f, 0.0f, 0.0f);
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}
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return;
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}
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fragment tint_symbol_1 tint_symbol(constant buf0& x_5 [[buffer(0)]]) {
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thread float4 tint_symbol_5 = 0.0f;
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main_1(x_5, &(tint_symbol_5));
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main_out const tint_symbol_2 = {.x_GLF_color_1=tint_symbol_5};
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tint_symbol_1 const tint_symbol_3 = {.x_GLF_color_1=tint_symbol_2.x_GLF_color_1};
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return tint_symbol_3;
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main_out tint_symbol_inner(constant buf0& x_5, thread float4* const tint_symbol_4) {
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main_1(x_5, tint_symbol_4);
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main_out const tint_symbol_2 = {.x_GLF_color_1=*(tint_symbol_4)};
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return tint_symbol_2;
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}
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fragment tint_symbol_1 tint_symbol(constant buf0& x_5 [[buffer(0)]]) {
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thread float4 tint_symbol_5 = 0.0f;
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main_out const inner_result = tint_symbol_inner(x_5, &(tint_symbol_5));
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tint_symbol_1 wrapper_result = {};
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wrapper_result.x_GLF_color_1 = inner_result.x_GLF_color_1;
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return wrapper_result;
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}
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@@ -38,9 +38,15 @@ struct tint_symbol {
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float4 x_GLF_color_1 : SV_Target0;
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};
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tint_symbol main() {
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main_out main_inner() {
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main_1();
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const main_out tint_symbol_1 = {x_GLF_color};
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const tint_symbol tint_symbol_3 = {tint_symbol_1.x_GLF_color_1};
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return tint_symbol_3;
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const main_out tint_symbol_2 = {x_GLF_color};
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return tint_symbol_2;
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}
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tint_symbol main() {
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const main_out inner_result = main_inner();
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tint_symbol wrapper_result = (tint_symbol)0;
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wrapper_result.x_GLF_color_1 = inner_result.x_GLF_color_1;
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return wrapper_result;
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}
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@@ -14,13 +14,13 @@ struct tint_symbol_1 {
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float4 x_GLF_color_1 [[color(0)]];
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};
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void main_1(constant buf0& x_5, thread float4* const tint_symbol_4) {
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void main_1(constant buf0& x_5, thread float4* const tint_symbol_3) {
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tint_array_wrapper x_9 = {};
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int x_10_phi = 0;
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tint_array_wrapper const x_33 = x_9;
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int const x_6 = x_33.arr[0u];
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while (true) {
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*(tint_symbol_4) = float4(0.0f, 0.0f, 0.0f, 0.0f);
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*(tint_symbol_3) = float4(0.0f, 0.0f, 0.0f, 0.0f);
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int const x_7 = x_5.zero;
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int const x_8 = x_9.arr[x_7];
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if ((x_8 == x_6)) {
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@@ -32,18 +32,24 @@ void main_1(constant buf0& x_5, thread float4* const tint_symbol_4) {
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}
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int const x_10 = x_10_phi;
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if (((x_10 == 1) || (x_10 == 2))) {
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*(tint_symbol_4) = float4(1.0f, 0.0f, 0.0f, 1.0f);
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*(tint_symbol_3) = float4(1.0f, 0.0f, 0.0f, 1.0f);
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} else {
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*(tint_symbol_4) = float4(0.0f, 0.0f, 0.0f, 0.0f);
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*(tint_symbol_3) = float4(0.0f, 0.0f, 0.0f, 0.0f);
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}
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return;
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}
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fragment tint_symbol_1 tint_symbol(constant buf0& x_5 [[buffer(0)]]) {
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thread float4 tint_symbol_5 = 0.0f;
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main_1(x_5, &(tint_symbol_5));
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main_out const tint_symbol_2 = {.x_GLF_color_1=tint_symbol_5};
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tint_symbol_1 const tint_symbol_3 = {.x_GLF_color_1=tint_symbol_2.x_GLF_color_1};
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return tint_symbol_3;
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main_out tint_symbol_inner(constant buf0& x_5, thread float4* const tint_symbol_4) {
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main_1(x_5, tint_symbol_4);
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main_out const tint_symbol_2 = {.x_GLF_color_1=*(tint_symbol_4)};
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return tint_symbol_2;
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}
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fragment tint_symbol_1 tint_symbol(constant buf0& x_5 [[buffer(0)]]) {
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thread float4 tint_symbol_5 = 0.0f;
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main_out const inner_result = tint_symbol_inner(x_5, &(tint_symbol_5));
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tint_symbol_1 wrapper_result = {};
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wrapper_result.x_GLF_color_1 = inner_result.x_GLF_color_1;
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return wrapper_result;
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}
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