" state=3;\n"
" }\n"
" switch (state)\n"
- " {"
- " case 0:"
- " {"
+ " {\n"
+ " case 0:\n"
+ " {\n"
" for (long v=(-mid_height); v <= mid_height; v++)\n"
" {\n"
" for (long u=(-mid_width); u <= mid_width; u++)\n"
" i++;\n"
" }\n"
" }\n"
- " break;"
- " }"
- " case 1:"
- " {"
+ " break;\n"
+ " }\n"
+ " case 1:\n"
+ " {\n"
" for (long v=(-mid_height); v <= mid_height; v++)\n"
" {\n"
" for (long u=(-mid_width); u <= mid_width; u++)\n"
" i++;\n"
" }\n"
" }\n"
- " break;"
- " }"
- " case 2:"
- " {"
+ " break;\n"
+ " }\n"
+ " case 2:\n"
+ " {\n"
" for (long v=(-mid_height); v <= mid_height; v++)\n"
" {\n"
" for (long u=(-mid_width); u <= mid_width; u++)\n"
" i++;\n"
" }\n"
" }\n"
- " break;"
- " }"
- " case 3:"
- " {"
+ " break;\n"
+ " }\n"
+ " case 3:\n"
+ " {\n"
" for (long v=(-mid_height); v <= mid_height; v++)\n"
" {\n"
" for (long u=(-mid_width); u <= mid_width; u++)\n"
" i++;\n"
" }\n"
" }\n"
- " break;"
- " }"
- " }"
+ " break;\n"
+ " }\n"
+ " }\n"
" gamma=1.0/((gamma <= 0.000001) && (gamma >= -0.000001) ? 1.0 : gamma);\n"
" index=y*columns+x;\n"
" output[index].x=AuthenticQuantum(gamma*sum.x);\n"