2016-07-30 13:38:55 +00:00
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void Test1()
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{
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struct mystruct { float2 a; };
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mystruct test1 = {
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2016-07-30 16:36:09 +00:00
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{ 1, 2, }, // test trailing commas in list
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2016-07-30 13:38:55 +00:00
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};
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mystruct test2 = {
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2016-07-30 16:36:09 +00:00
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float2(3, 4),
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2016-07-30 13:38:55 +00:00
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};
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2016-07-30 16:36:09 +00:00
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// mystruct test3 = {
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// { { 5, 6, } }, // TODO: test unneeded levels
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// };
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float test4 = { 7, } ; // test scalar initialization
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struct mystruct2 { float a; float b; float c; };
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mystruct2 test5 = { {8,}, {9,}, {10}, };
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2017-01-05 17:28:26 +00:00
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const mystruct2 constTest5 = { {8,}, {9,}, {10}, };
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constTest5.c;
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const float step = 1.f;
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float n = 0;
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const float3 a[8] = {
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normalize(float3(1, 1, 1)) * (n += step),
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normalize(float3(-1, -1, -1)) * (n += step),
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normalize(float3(-1, -1, 1)) * (n += step),
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normalize(float3(-1, 1, -1)) * (n += step),
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normalize(float3(-1, 1, 1)) * (n += step),
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normalize(float3(1, -1, -1)) * (n += step),
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normalize(float3(1, -1, 1)) * (n += step),
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normalize(float3(1, 1, -1)) * (n += step) };
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const struct one { float3 a; } oneNonConst = { normalize(float3(-1, 1, 1)) * (n += step) };
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const struct two { float3 a;
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float3 b; } twoNonConst = { normalize(float3(-1, 1, 1)) * (n += step),
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normalize(float3(-1, 1, 1)) * (n += step) };
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2016-07-30 13:38:55 +00:00
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}
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struct PS_OUTPUT { float4 color : SV_Target0; };
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PS_OUTPUT main()
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{
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2016-07-30 16:36:09 +00:00
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Test1();
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2016-07-30 13:38:55 +00:00
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PS_OUTPUT ps_output;
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ps_output.color = 1.0;
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return ps_output;
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}
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