task_id stringlengths 10 10 | rule stringclasses 40
values | rule_kind stringclasses 2
values | rule_description stringclasses 40
values | num_colors int64 4 6 | grid_h int64 3 6 | grid_w int64 3 6 | num_support int64 2 4 | support listlengths 2 4 | query_input stringlengths 17 71 | query_output stringlengths 7 99 |
|---|---|---|---|---|---|---|---|---|---|---|
icgr-00965 | border | atomic | Paint the outer border of the grid a fixed colour. | 5 | 3 | 3 | 4 | [
{
"input": "2 0 2;4 4 1;2 0 2",
"output": "3 3 3;3 4 3;3 3 3"
},
{
"input": "4 3 3;1 1 0;4 3 2",
"output": "3 3 3;3 1 3;3 3 3"
},
{
"input": "1 3 2;1 1 3;3 0 2",
"output": "3 3 3;3 1 3;3 3 3"
},
{
"input": "4 3 1;4 2 3;2 4 2",
"output": "3 3 3;3 2 3;3 3 3"
}
] | 3 0 3;1 0 3;0 1 3 | 3 3 3;3 0 3;3 3 3 |
icgr-00299 | color_swap | atomic | Swap two colours everywhere they appear. | 6 | 4 | 3 | 3 | [
{
"input": "5 1 5;3 0 2;5 0 3;4 4 4",
"output": "5 1 5;3 4 2;5 4 3;0 0 0"
},
{
"input": "3 0 1;0 1 5;1 3 5;1 3 4",
"output": "3 4 1;4 1 5;1 3 5;1 3 0"
},
{
"input": "3 4 5;2 3 5;0 2 1;3 3 5",
"output": "3 0 5;2 3 5;4 2 1;3 3 5"
}
] | 4 0 2;0 3 1;2 5 1;4 3 4 | 0 4 2;4 3 1;2 5 1;0 3 0 |
icgr-00454 | flip_v+shift_rows | composed | Mirror the grid top-to-bottom. Then, Cyclically shift every row right by a fixed amount. | 6 | 4 | 3 | 3 | [
{
"input": "5 2 1;1 0 0;3 3 0;2 0 3",
"output": "3 2 0;0 3 3;0 1 0;1 5 2"
},
{
"input": "1 1 3;1 3 4;2 2 5;0 0 3",
"output": "3 0 0;5 2 2;4 1 3;3 1 1"
},
{
"input": "5 5 3;3 0 5;5 3 4;4 1 1",
"output": "1 4 1;4 5 3;5 3 0;3 5 5"
}
] | 3 2 2;1 0 4;2 1 4;2 2 4 | 4 2 2;4 2 1;4 1 0;2 3 2 |
icgr-00183 | transpose | atomic | Swap rows and columns (transpose). | 6 | 3 | 3 | 4 | [
{
"input": "1 4 0;2 4 0;5 3 4",
"output": "1 2 5;4 4 3;0 0 4"
},
{
"input": "2 1 1;0 4 1;3 1 4",
"output": "2 0 3;1 4 1;1 1 4"
},
{
"input": "1 0 1;2 5 5;1 5 1",
"output": "1 2 1;0 5 5;1 5 1"
},
{
"input": "1 2 2;0 5 2;3 2 0",
"output": "1 0 3;2 5 2;2 2 0"
}
] | 5 5 3;1 0 3;4 4 2 | 5 1 4;5 0 4;3 3 2 |
icgr-00890 | border | atomic | Paint the outer border of the grid a fixed colour. | 5 | 4 | 4 | 2 | [
{
"input": "0 3 0 4;2 2 3 1;1 3 2 2;1 0 2 3",
"output": "4 4 4 4;4 2 3 4;4 3 2 4;4 4 4 4"
},
{
"input": "0 1 2 3;1 4 1 2;3 2 1 4;0 2 1 1",
"output": "4 4 4 4;4 4 1 4;4 2 1 4;4 4 4 4"
}
] | 4 4 0 1;2 4 1 3;0 1 4 3;4 2 2 1 | 4 4 4 4;4 4 1 4;4 1 4 4;4 4 4 4 |
icgr-00368 | border | atomic | Paint the outer border of the grid a fixed colour. | 6 | 5 | 5 | 3 | [
{
"input": "5 4 0 0 1;4 3 5 2 1;5 4 5 2 5;1 0 0 0 5;3 1 3 2 0",
"output": "4 4 4 4 4;4 3 5 2 4;4 4 5 2 4;4 0 0 0 4;4 4 4 4 4"
},
{
"input": "0 1 5 3 2;4 0 0 5 1;4 5 5 3 3;2 2 5 3 3;5 0 5 1 3",
"output": "4 4 4 4 4;4 0 0 5 4;4 5 5 3 4;4 2 5 3 4;4 4 4 4 4"
},
{
"input": "4 0 1 3 0;3 3 3 3 ... | 5 2 1 1 1;1 4 0 5 4;3 5 4 4 3;4 2 0 3 1;0 0 1 2 2 | 4 4 4 4 4;4 4 0 5 4;4 5 4 4 4;4 2 0 3 4;4 4 4 4 4 |
icgr-00213 | flip_v | atomic | Mirror the grid top-to-bottom. | 6 | 3 | 5 | 4 | [
{
"input": "1 3 1 4 0;4 3 5 3 0;2 2 2 1 4",
"output": "2 2 2 1 4;4 3 5 3 0;1 3 1 4 0"
},
{
"input": "3 5 3 2 3;3 3 0 5 3;1 4 1 4 0",
"output": "1 4 1 4 0;3 3 0 5 3;3 5 3 2 3"
},
{
"input": "0 3 2 5 0;3 3 1 4 2;3 2 2 1 3",
"output": "3 2 2 1 3;3 3 1 4 2;0 3 2 5 0"
},
{
"input"... | 3 3 3 4 3;3 5 3 0 0;2 1 1 1 0 | 2 1 1 1 0;3 5 3 0 0;3 3 3 4 3 |
icgr-00628 | max_pool2 | atomic | Replace each non-overlapping 2x2 block with its maximum value. | 4 | 6 | 6 | 2 | [
{
"input": "3 2 3 2 2 3;3 0 2 2 1 2;2 0 1 3 1 0;0 1 2 0 2 3;1 1 1 0 2 3;2 2 1 1 1 2",
"output": "3 3 3;2 3 3;2 1 3"
},
{
"input": "0 3 3 3 2 1;1 3 2 3 1 0;3 3 1 1 3 1;1 1 2 0 1 3;0 0 1 3 3 2;3 2 1 3 1 0",
"output": "3 3 2;3 2 3;3 3 3"
}
] | 3 0 3 2 3 2;3 0 1 3 1 1;0 3 1 0 2 2;3 2 1 1 1 1;3 2 2 2 1 1;2 2 3 2 2 3 | 3 3 3;3 1 2;3 3 3 |
icgr-00159 | shift_rows | atomic | Cyclically shift every row right by a fixed amount. | 5 | 4 | 4 | 2 | [
{
"input": "0 1 0 2;3 1 0 0;0 2 0 4;4 0 4 1",
"output": "2 0 1 0;0 3 1 0;4 0 2 0;1 4 0 4"
},
{
"input": "0 0 4 2;1 4 4 4;4 3 0 4;2 1 0 1",
"output": "2 0 0 4;4 1 4 4;4 4 3 0;1 2 1 0"
}
] | 4 0 0 3;1 3 1 3;4 0 0 2;0 2 0 3 | 3 4 0 0;3 1 3 1;2 4 0 0;3 0 2 0 |
icgr-00168 | tile_h | atomic | Concatenate the grid with a copy of itself, side by side. | 6 | 4 | 4 | 2 | [
{
"input": "1 3 3 3;3 3 0 2;4 4 5 1;4 3 3 5",
"output": "1 3 3 3 1 3 3 3;3 3 0 2 3 3 0 2;4 4 5 1 4 4 5 1;4 3 3 5 4 3 3 5"
},
{
"input": "5 3 4 1;0 1 5 5;3 5 2 1;0 2 0 0",
"output": "5 3 4 1 5 3 4 1;0 1 5 5 0 1 5 5;3 5 2 1 3 5 2 1;0 2 0 0 0 2 0 0"
}
] | 1 2 5 4;0 1 5 4;4 4 4 1;2 0 1 1 | 1 2 5 4 1 2 5 4;0 1 5 4 0 1 5 4;4 4 4 1 4 4 4 1;2 0 1 1 2 0 1 1 |
icgr-00329 | flip_h | atomic | Mirror the grid left-to-right. | 6 | 5 | 3 | 3 | [
{
"input": "3 4 0;1 2 2;2 0 1;4 2 4;3 0 5",
"output": "0 4 3;2 2 1;1 0 2;4 2 4;5 0 3"
},
{
"input": "4 2 3;3 2 3;1 2 2;2 5 4;5 2 2",
"output": "3 2 4;3 2 3;2 2 1;4 5 2;2 2 5"
},
{
"input": "5 4 5;0 0 0;0 2 3;2 4 1;4 4 2",
"output": "5 4 5;0 0 0;3 2 0;1 4 2;2 4 4"
}
] | 1 0 1;0 5 0;1 5 1;2 1 2;2 2 1 | 1 0 1;0 5 0;1 5 1;2 1 2;1 2 2 |
icgr-00446 | add_mod | atomic | Add a fixed constant to every cell, modulo the colour count. | 4 | 3 | 5 | 3 | [
{
"input": "0 2 2 3 0;0 1 3 3 2;0 2 2 3 1",
"output": "3 1 1 2 3;3 0 2 2 1;3 1 1 2 0"
},
{
"input": "1 0 2 2 2;1 3 3 0 0;3 3 2 1 1",
"output": "0 3 1 1 1;0 2 2 3 3;2 2 1 0 0"
},
{
"input": "0 3 0 0 3;2 0 3 3 2;3 1 3 3 1",
"output": "3 2 3 3 2;1 3 2 2 1;2 0 2 2 0"
}
] | 2 2 1 0 1;2 0 0 0 1;3 2 3 3 1 | 1 1 0 3 0;1 3 3 3 0;2 1 2 2 0 |
icgr-00230 | flip_v | atomic | Mirror the grid top-to-bottom. | 5 | 3 | 5 | 4 | [
{
"input": "4 4 2 0 2;3 0 1 0 2;0 3 0 1 4",
"output": "0 3 0 1 4;3 0 1 0 2;4 4 2 0 2"
},
{
"input": "2 1 2 4 1;4 4 0 1 0;4 3 0 2 4",
"output": "4 3 0 2 4;4 4 0 1 0;2 1 2 4 1"
},
{
"input": "4 0 1 1 2;0 4 4 1 1;4 0 1 3 0",
"output": "4 0 1 3 0;0 4 4 1 1;4 0 1 1 2"
},
{
"input"... | 3 2 3 4 2;3 3 4 2 2;1 2 4 3 0 | 1 2 4 3 0;3 3 4 2 2;3 2 3 4 2 |
icgr-00238 | color_swap+flip_v | composed | Swap two colours everywhere they appear. Then, Mirror the grid top-to-bottom. | 5 | 3 | 5 | 4 | [
{
"input": "0 4 2 4 1;1 0 0 1 0;1 1 4 4 0",
"output": "1 1 4 4 0;1 0 0 1 0;0 4 2 4 1"
},
{
"input": "1 0 3 3 2;4 3 1 4 2;3 3 4 1 2",
"output": "3 3 4 1 2;4 3 1 4 2;1 0 3 3 2"
},
{
"input": "2 1 4 2 1;0 1 4 3 1;0 3 2 3 4",
"output": "0 3 2 3 4;0 1 4 3 1;2 1 4 2 1"
},
{
"input"... | 1 0 1 0 3;2 1 2 2 4;3 2 1 1 0 | 3 2 1 1 0;2 1 2 2 4;1 0 1 0 3 |
icgr-00493 | add_mod+shift_rows | composed | Add a fixed constant to every cell, modulo the colour count. Then, Cyclically shift every row right by a fixed amount. | 6 | 4 | 3 | 2 | [
{
"input": "3 4 2;0 2 4;5 2 0;1 1 4",
"output": "3 4 5;5 1 3;1 0 3;5 2 2"
},
{
"input": "3 5 1;3 3 1;2 5 3;2 2 0",
"output": "2 4 0;2 4 4;4 3 0;1 3 3"
}
] | 4 3 3;4 4 0;1 4 1;1 1 2 | 4 5 4;1 5 5;2 2 5;3 2 2 |
icgr-00753 | max_pool2 | atomic | Replace each non-overlapping 2x2 block with its maximum value. | 6 | 6 | 6 | 4 | [
{
"input": "4 5 4 4 0 3;2 4 3 5 2 0;1 5 3 4 5 0;0 5 0 1 0 2;0 1 2 1 3 2;4 3 2 1 2 1",
"output": "5 5 3;5 4 5;4 2 3"
},
{
"input": "1 0 5 1 1 4;0 5 0 3 2 4;2 0 0 0 4 5;5 0 2 4 0 1;1 0 2 2 2 0;5 1 5 5 3 2",
"output": "5 5 4;5 4 5;5 5 3"
},
{
"input": "2 2 1 0 0 4;0 1 3 4 4 4;0 4 3 0 3 2;3 ... | 1 0 0 5 2 3;5 5 4 4 0 4;2 4 1 1 0 0;1 1 5 3 3 4;4 1 0 2 5 3;2 1 2 1 3 3 | 5 5 4;4 5 4;4 2 5 |
icgr-00129 | color_swap | atomic | Swap two colours everywhere they appear. | 4 | 4 | 3 | 2 | [
{
"input": "2 0 1;1 0 3;3 2 3;1 3 0",
"output": "3 0 1;1 0 2;2 3 2;1 2 0"
},
{
"input": "3 3 0;2 0 2;3 1 1;2 1 0",
"output": "2 2 0;3 0 3;2 1 1;3 1 0"
}
] | 2 3 0;2 1 3;3 1 1;2 0 3 | 3 2 0;3 1 2;2 1 1;3 0 2 |
icgr-00840 | flip_v | atomic | Mirror the grid top-to-bottom. | 4 | 5 | 4 | 2 | [
{
"input": "3 0 3 1;1 3 1 0;0 1 0 2;3 3 1 2;3 2 1 0",
"output": "3 2 1 0;3 3 1 2;0 1 0 2;1 3 1 0;3 0 3 1"
},
{
"input": "3 1 2 3;0 1 2 1;2 3 1 2;0 0 3 3;0 3 3 0",
"output": "0 3 3 0;0 0 3 3;2 3 1 2;0 1 2 1;3 1 2 3"
}
] | 1 1 1 3;2 3 3 2;0 3 1 2;3 0 3 0;3 1 3 2 | 3 1 3 2;3 0 3 0;0 3 1 2;2 3 3 2;1 1 1 3 |
icgr-00924 | color_swap | atomic | Swap two colours everywhere they appear. | 4 | 4 | 5 | 3 | [
{
"input": "0 2 1 1 2;1 0 2 0 2;1 3 0 0 2;2 1 1 3 1",
"output": "0 2 1 1 2;1 0 2 0 2;1 3 0 0 2;2 1 1 3 1"
},
{
"input": "0 1 1 3 2;1 2 2 1 3;2 1 2 0 3;0 0 1 1 3",
"output": "0 1 1 3 2;1 2 2 1 3;2 1 2 0 3;0 0 1 1 3"
},
{
"input": "1 2 0 1 0;2 3 2 2 0;3 3 0 0 1;1 2 2 3 0",
"output": "1... | 0 1 0 2 1;1 1 2 3 0;2 1 3 2 3;1 3 2 2 0 | 0 1 0 2 1;1 1 2 3 0;2 1 3 2 3;1 3 2 2 0 |
icgr-00334 | color_swap | atomic | Swap two colours everywhere they appear. | 6 | 4 | 4 | 4 | [
{
"input": "2 5 2 3;1 2 3 2;2 4 2 3;1 3 1 5",
"output": "2 0 2 3;1 2 3 2;2 4 2 3;1 3 1 0"
},
{
"input": "4 1 2 1;5 2 0 0;2 0 3 0;0 1 3 3",
"output": "4 1 2 1;0 2 5 5;2 5 3 5;5 1 3 3"
},
{
"input": "2 1 0 3;0 1 0 2;1 1 2 4;3 4 5 4",
"output": "2 1 5 3;5 1 5 2;1 1 2 4;3 4 0 4"
},
{... | 0 5 4 0;0 0 5 5;1 2 3 3;3 4 0 3 | 5 0 4 5;5 5 0 0;1 2 3 3;3 4 5 3 |
icgr-00852 | rotate90 | atomic | Rotate the grid 90 degrees clockwise. | 4 | 5 | 4 | 2 | [
{
"input": "1 1 0 2;3 1 2 2;3 3 0 3;3 2 0 2;2 3 0 3",
"output": "2 3 3 3 1;3 2 3 1 1;0 0 0 2 0;3 2 3 2 2"
},
{
"input": "0 0 1 3;2 3 3 0;0 2 1 0;3 3 2 2;2 1 0 1",
"output": "2 3 0 2 0;1 3 2 3 0;0 2 1 3 1;1 2 0 0 3"
}
] | 1 0 2 2;1 2 2 0;3 3 3 3;2 1 1 3;2 1 2 0 | 2 2 3 1 1;1 1 3 2 0;2 1 3 2 2;0 3 3 0 2 |
icgr-00901 | tile_h | atomic | Concatenate the grid with a copy of itself, side by side. | 5 | 3 | 4 | 3 | [
{
"input": "3 0 1 4;0 2 2 2;1 4 2 4",
"output": "3 0 1 4 3 0 1 4;0 2 2 2 0 2 2 2;1 4 2 4 1 4 2 4"
},
{
"input": "2 2 2 1;0 2 3 2;3 0 4 3",
"output": "2 2 2 1 2 2 2 1;0 2 3 2 0 2 3 2;3 0 4 3 3 0 4 3"
},
{
"input": "0 4 3 1;4 2 2 0;4 1 1 3",
"output": "0 4 3 1 0 4 3 1;4 2 2 0 4 2 2 0;4... | 3 0 3 2;3 3 3 0;1 3 1 1 | 3 0 3 2 3 0 3 2;3 3 3 0 3 3 3 0;1 3 1 1 1 3 1 1 |
icgr-00988 | flip_h+shift_rows | composed | Mirror the grid left-to-right. Then, Cyclically shift every row right by a fixed amount. | 6 | 5 | 4 | 2 | [
{
"input": "1 2 5 1;5 0 3 1;4 3 3 2;0 1 0 0;0 0 1 5",
"output": "1 1 5 2;5 1 3 0;4 2 3 3;0 0 0 1;0 5 1 0"
},
{
"input": "2 0 0 1;1 3 5 4;3 3 1 1;2 1 5 5;5 3 3 3",
"output": "2 1 0 0;1 4 5 3;3 1 1 3;2 5 5 1;5 3 3 3"
}
] | 3 1 3 5;3 2 4 5;3 5 2 3;0 0 2 3;5 3 3 2 | 3 5 3 1;3 5 4 2;3 3 2 5;0 3 2 0;5 2 3 3 |
icgr-00997 | flip_h | atomic | Mirror the grid left-to-right. | 4 | 3 | 3 | 4 | [
{
"input": "1 3 3;0 3 0;0 0 3",
"output": "3 3 1;0 3 0;3 0 0"
},
{
"input": "2 3 2;2 0 3;0 0 0",
"output": "2 3 2;3 0 2;0 0 0"
},
{
"input": "3 0 1;2 1 1;3 3 3",
"output": "1 0 3;1 1 2;3 3 3"
},
{
"input": "3 0 2;1 3 2;0 1 2",
"output": "2 0 3;2 3 1;2 1 0"
}
] | 2 2 1;2 1 2;0 1 2 | 1 2 2;2 1 2;2 1 0 |
icgr-00980 | border | atomic | Paint the outer border of the grid a fixed colour. | 6 | 5 | 4 | 4 | [
{
"input": "4 2 5 4;3 3 4 4;2 5 5 0;4 2 5 3;2 3 4 4",
"output": "0 0 0 0;0 3 4 0;0 5 5 0;0 2 5 0;0 0 0 0"
},
{
"input": "3 1 4 3;3 3 5 4;3 0 5 3;2 2 4 5;3 0 2 4",
"output": "0 0 0 0;0 3 5 0;0 0 5 0;0 2 4 0;0 0 0 0"
},
{
"input": "2 4 5 5;2 0 5 0;0 2 0 3;3 2 0 2;3 5 4 1",
"output": "0... | 1 3 4 2;3 0 5 4;5 0 1 2;5 1 0 3;2 5 1 5 | 0 0 0 0;0 0 5 0;0 0 1 0;0 1 0 0;0 0 0 0 |
icgr-00505 | border+shift_rows | composed | Paint the outer border of the grid a fixed colour. Then, Cyclically shift every row right by a fixed amount. | 6 | 4 | 5 | 4 | [
{
"input": "0 1 4 1 5;0 4 4 1 0;4 0 5 4 0;0 5 3 3 3",
"output": "3 3 3 3 3;3 3 4 4 1;3 3 0 5 4;3 3 3 3 3"
},
{
"input": "2 2 3 2 5;3 2 2 1 1;3 3 2 3 1;0 5 0 0 3",
"output": "3 3 3 3 3;3 3 2 2 1;3 3 3 2 3;3 3 3 3 3"
},
{
"input": "2 4 2 5 4;2 0 2 0 0;5 4 1 4 3;0 1 4 3 1",
"output": "3... | 3 1 4 4 5;4 4 1 4 2;3 5 5 4 1;5 1 0 1 5 | 3 3 3 3 3;3 3 4 1 4;3 3 5 5 4;3 3 3 3 3 |
icgr-00991 | color_swap+add_mod | composed | Swap two colours everywhere they appear. Then, Add a fixed constant to every cell, modulo the colour count. | 4 | 3 | 3 | 3 | [
{
"input": "3 2 2;2 1 2;3 3 2",
"output": "0 1 1;1 2 1;0 0 1"
},
{
"input": "3 0 3;0 0 0;3 3 3",
"output": "0 3 0;3 3 3;0 0 0"
},
{
"input": "2 3 0;1 2 1;3 1 2",
"output": "1 0 3;2 1 2;0 2 1"
}
] | 2 0 3;1 3 3;1 2 2 | 1 3 0;2 0 0;2 1 1 |
icgr-00875 | flip_v+add_mod | composed | Mirror the grid top-to-bottom. Then, Add a fixed constant to every cell, modulo the colour count. | 4 | 4 | 5 | 4 | [
{
"input": "1 1 2 0 2;3 3 3 0 2;2 3 1 3 1;2 1 3 1 3",
"output": "0 3 1 3 1;0 1 3 1 3;1 1 1 2 0;3 3 0 2 0"
},
{
"input": "1 3 0 1 0;2 3 1 3 3;1 1 2 3 2;2 0 3 2 3",
"output": "0 2 1 0 1;3 3 0 1 0;0 1 3 1 1;3 1 2 3 2"
},
{
"input": "0 3 3 2 2;1 0 1 2 1;1 3 0 0 2;1 2 3 1 0",
"output": "3... | 2 3 2 2 0;2 1 0 3 1;1 0 3 0 1;0 0 2 3 2 | 2 2 0 1 0;3 2 1 2 3;0 3 2 1 3;0 1 0 0 2 |
icgr-00158 | flip_h+color_swap | composed | Mirror the grid left-to-right. Then, Swap two colours everywhere they appear. | 4 | 5 | 4 | 3 | [
{
"input": "3 1 2 2;2 1 0 2;2 2 1 0;2 3 3 3;2 0 2 1",
"output": "2 2 0 3;2 1 0 2;1 0 2 2;3 3 3 2;0 2 1 2"
},
{
"input": "3 0 3 0;3 2 2 0;1 1 0 1;3 0 1 2;0 2 0 0",
"output": "1 3 1 3;1 2 2 3;0 1 0 0;2 0 1 3;1 1 2 1"
},
{
"input": "0 1 2 3;1 2 3 0;1 1 1 3;1 3 2 0;3 0 0 3",
"output": "3... | 1 1 1 3;0 2 2 1;0 3 0 1;2 3 1 1;1 1 0 1 | 3 0 0 0;0 2 2 1;0 1 3 1;0 0 3 2;0 1 0 0 |
icgr-00365 | color_swap | atomic | Swap two colours everywhere they appear. | 5 | 3 | 5 | 4 | [
{
"input": "4 2 0 4 4;3 4 3 4 2;1 3 4 1 1",
"output": "0 2 4 0 0;3 0 3 0 2;1 3 0 1 1"
},
{
"input": "0 0 1 0 4;1 0 4 1 4;4 0 2 1 2",
"output": "4 4 1 4 0;1 4 0 1 0;0 4 2 1 2"
},
{
"input": "2 2 0 1 2;0 2 2 2 0;2 4 3 0 1",
"output": "2 2 4 1 2;4 2 2 2 4;2 0 3 4 1"
},
{
"input"... | 4 4 1 1 2;0 4 2 0 3;3 0 0 2 1 | 0 0 1 1 2;4 0 2 4 3;3 4 4 2 1 |
icgr-00638 | flip_h | atomic | Mirror the grid left-to-right. | 4 | 3 | 4 | 3 | [
{
"input": "3 3 0 0;3 0 3 1;2 3 0 0",
"output": "0 0 3 3;1 3 0 3;0 0 3 2"
},
{
"input": "0 3 0 0;3 1 0 1;0 1 3 1",
"output": "0 0 3 0;1 0 1 3;1 3 1 0"
},
{
"input": "3 1 1 3;2 2 3 0;0 1 0 3",
"output": "3 1 1 3;0 3 2 2;3 0 1 0"
}
] | 2 3 2 1;2 0 1 1;3 2 0 3 | 1 2 3 2;1 1 0 2;3 0 2 3 |
icgr-00721 | color_swap | atomic | Swap two colours everywhere they appear. | 5 | 5 | 4 | 3 | [
{
"input": "1 2 4 2;0 2 1 2;0 4 0 1;1 4 0 2;1 1 3 1",
"output": "1 2 3 2;0 2 1 2;0 3 0 1;1 3 0 2;1 1 4 1"
},
{
"input": "1 2 0 3;4 1 3 3;1 1 3 0;3 1 2 4;2 4 1 2",
"output": "1 2 0 4;3 1 4 4;1 1 4 0;4 1 2 3;2 3 1 2"
},
{
"input": "1 4 0 4;4 4 4 4;1 0 0 4;3 0 1 2;1 1 1 4",
"output": "1... | 0 3 0 0;0 2 3 4;1 4 4 2;1 1 3 0;1 1 0 4 | 0 4 0 0;0 2 4 3;1 3 3 2;1 1 4 0;1 1 0 3 |
icgr-00274 | add_mod+color_swap | composed | Add a fixed constant to every cell, modulo the colour count. Then, Swap two colours everywhere they appear. | 5 | 4 | 3 | 4 | [
{
"input": "0 0 1;4 3 1;0 0 2;3 3 3",
"output": "1 1 3;0 4 3;1 1 2;4 4 4"
},
{
"input": "0 1 3;3 0 2;4 1 3;2 0 3",
"output": "1 3 4;4 1 2;0 3 4;2 1 4"
},
{
"input": "3 0 0;2 0 3;0 4 0;1 4 0",
"output": "4 1 1;2 1 4;1 0 1;3 0 1"
},
{
"input": "1 0 2;3 0 4;4 2 3;4 4 2",
"ou... | 2 1 4;1 1 0;2 1 0;2 0 3 | 2 3 0;3 3 1;2 3 1;2 1 4 |
icgr-00502 | max_pool2 | atomic | Replace each non-overlapping 2x2 block with its maximum value. | 6 | 6 | 6 | 2 | [
{
"input": "2 0 5 2 4 0;2 1 3 2 3 5;5 5 3 4 0 2;2 4 2 5 3 2;0 2 4 0 2 4;4 5 1 1 0 0",
"output": "2 5 5;5 5 3;5 4 4"
},
{
"input": "3 4 4 5 1 4;4 5 4 2 5 3;1 1 0 0 5 1;1 5 2 3 5 2;5 0 5 2 5 4;3 1 1 5 5 3",
"output": "5 5 5;5 3 5;5 5 5"
}
] | 0 4 5 5 3 5;5 4 5 0 5 4;5 2 0 5 1 3;5 0 4 1 1 2;0 0 2 4 0 2;5 4 1 0 2 5 | 5 5 5;5 5 3;5 4 5 |
icgr-00829 | border | atomic | Paint the outer border of the grid a fixed colour. | 4 | 5 | 5 | 2 | [
{
"input": "2 1 1 2 1;1 0 3 3 0;3 3 2 0 1;0 2 1 2 0;1 2 1 0 2",
"output": "1 1 1 1 1;1 0 3 3 1;1 3 2 0 1;1 2 1 2 1;1 1 1 1 1"
},
{
"input": "0 3 2 2 3;1 1 2 3 3;1 3 0 3 0;2 2 3 3 1;2 0 0 2 1",
"output": "1 1 1 1 1;1 1 2 3 1;1 3 0 3 1;1 2 3 3 1;1 1 1 1 1"
}
] | 2 2 2 1 1;3 3 3 2 3;1 1 1 3 1;3 2 3 3 3;2 0 3 3 2 | 1 1 1 1 1;1 3 3 2 1;1 1 1 3 1;1 2 3 3 1;1 1 1 1 1 |
icgr-00769 | color_swap+add_mod | composed | Swap two colours everywhere they appear. Then, Add a fixed constant to every cell, modulo the colour count. | 6 | 3 | 5 | 3 | [
{
"input": "5 4 5 4 1;4 1 0 5 0;2 0 5 0 2",
"output": "4 3 4 3 0;3 0 5 4 5;2 5 4 5 2"
},
{
"input": "3 2 2 1 1;3 1 2 3 2;0 1 3 4 1",
"output": "1 2 2 0 0;1 0 2 1 2;5 0 1 3 0"
},
{
"input": "4 4 2 2 5;5 3 1 1 5;1 1 2 5 5",
"output": "3 3 2 2 4;4 1 0 0 4;0 0 2 4 4"
}
] | 5 4 1 3 5;2 5 0 5 5;5 0 5 4 4 | 4 3 0 1 4;2 4 5 4 4;4 5 4 3 3 |
icgr-00668 | border | atomic | Paint the outer border of the grid a fixed colour. | 6 | 3 | 4 | 2 | [
{
"input": "2 2 2 5;4 1 0 1;3 0 2 0",
"output": "2 2 2 2;2 1 0 2;2 2 2 2"
},
{
"input": "0 0 1 1;4 0 0 4;5 1 0 5",
"output": "2 2 2 2;2 0 0 2;2 2 2 2"
}
] | 4 2 1 0;2 3 2 4;3 1 3 1 | 2 2 2 2;2 3 2 2;2 2 2 2 |
icgr-00586 | flip_v+flip_h | composed | Mirror the grid top-to-bottom. Then, Mirror the grid left-to-right. | 6 | 3 | 5 | 4 | [
{
"input": "0 4 4 2 1;5 2 4 5 0;1 5 1 4 2",
"output": "2 4 1 5 1;0 5 4 2 5;1 2 4 4 0"
},
{
"input": "0 4 0 4 4;0 5 5 5 1;0 4 5 5 4",
"output": "4 5 5 4 0;1 5 5 5 0;4 4 0 4 0"
},
{
"input": "4 1 4 5 0;5 5 3 1 4;4 3 1 2 1",
"output": "1 2 1 3 4;4 1 3 5 5;0 5 4 1 4"
},
{
"input"... | 2 3 3 2 5;2 0 0 1 0;4 1 4 4 5 | 5 4 4 1 4;0 1 0 0 2;5 2 3 3 2 |
icgr-00797 | flip_h | atomic | Mirror the grid left-to-right. | 4 | 4 | 5 | 4 | [
{
"input": "1 1 3 0 1;1 2 3 0 3;3 1 1 3 3;1 2 0 1 1",
"output": "1 0 3 1 1;3 0 3 2 1;3 3 1 1 3;1 1 0 2 1"
},
{
"input": "0 3 0 1 2;1 3 0 1 2;1 1 2 0 0;0 0 1 0 3",
"output": "2 1 0 3 0;2 1 0 3 1;0 0 2 1 1;3 0 1 0 0"
},
{
"input": "2 2 2 0 2;0 3 2 2 1;1 1 2 1 3;3 1 3 0 1",
"output": "2... | 2 3 2 1 2;1 2 2 1 1;1 0 0 1 2;0 3 2 3 2 | 2 1 2 3 2;1 1 2 2 1;2 1 0 0 1;2 3 2 3 0 |
icgr-00145 | border+flip_v | composed | Paint the outer border of the grid a fixed colour. Then, Mirror the grid top-to-bottom. | 5 | 3 | 3 | 2 | [
{
"input": "4 1 4;4 2 0;0 1 4",
"output": "2 2 2;2 2 2;2 2 2"
},
{
"input": "2 1 2;0 0 3;4 1 0",
"output": "2 2 2;2 0 2;2 2 2"
}
] | 4 2 1;0 1 4;3 4 2 | 2 2 2;2 1 2;2 2 2 |
icgr-00187 | max_pool2 | atomic | Replace each non-overlapping 2x2 block with its maximum value. | 4 | 4 | 6 | 4 | [
{
"input": "2 1 2 3 3 1;2 1 3 1 0 0;2 0 0 0 1 0;1 3 1 1 1 1",
"output": "2 3 3;3 1 1"
},
{
"input": "0 3 2 0 1 1;1 0 1 3 0 1;1 0 2 1 3 2;1 3 1 3 1 0",
"output": "3 3 1;3 3 3"
},
{
"input": "1 3 2 3 3 1;2 0 0 1 3 1;3 0 1 1 3 2;2 2 1 2 3 3",
"output": "3 3 3;3 2 3"
},
{
"input"... | 2 2 2 0 2 3;1 3 2 2 1 1;2 0 0 1 1 0;3 3 3 2 2 0 | 3 2 3;3 3 2 |
icgr-00083 | color_swap+flip_h | composed | Swap two colours everywhere they appear. Then, Mirror the grid left-to-right. | 5 | 5 | 5 | 2 | [
{
"input": "0 2 0 2 4;1 0 4 4 2;2 2 3 4 3;0 2 4 0 1;1 1 2 0 3",
"output": "4 1 0 1 0;1 4 4 0 2;3 4 3 1 1;2 0 4 1 0;3 0 1 2 2"
},
{
"input": "1 4 2 3 2;3 3 0 3 4;0 3 4 0 4;3 3 0 4 4;2 0 4 3 2",
"output": "1 3 1 4 2;4 3 0 3 3;4 0 4 3 0;4 4 0 3 3;1 3 4 0 1"
}
] | 4 3 4 4 2;3 0 3 1 0;0 0 0 3 3;0 2 0 2 0;2 4 4 3 1 | 1 4 4 3 4;0 2 3 0 3;3 3 0 0 0;0 1 0 1 0;2 3 4 4 1 |
icgr-00464 | flip_h+flip_v | composed | Mirror the grid left-to-right. Then, Mirror the grid top-to-bottom. | 4 | 5 | 5 | 4 | [
{
"input": "3 0 0 2 0;0 1 3 2 1;3 0 3 0 0;2 0 1 1 3;1 1 2 2 2",
"output": "2 2 2 1 1;3 1 1 0 2;0 0 3 0 3;1 2 3 1 0;0 2 0 0 3"
},
{
"input": "1 1 0 0 0;2 2 3 1 0;1 3 2 3 0;3 3 1 1 1;1 1 0 2 2",
"output": "2 2 0 1 1;1 1 1 3 3;0 3 2 3 1;0 1 3 2 2;0 0 0 1 1"
},
{
"input": "1 1 0 3 1;3 1 2 0 ... | 3 2 3 0 0;0 2 0 0 1;0 1 2 2 0;2 2 1 1 3;0 1 2 3 0 | 0 3 2 1 0;3 1 1 2 2;0 2 2 1 0;1 0 0 2 0;0 0 3 2 3 |
icgr-00466 | color_swap+add_mod | composed | Swap two colours everywhere they appear. Then, Add a fixed constant to every cell, modulo the colour count. | 6 | 5 | 5 | 4 | [
{
"input": "5 4 0 3 5;1 5 3 1 3;2 5 5 3 4;1 2 5 3 2;1 4 4 5 2",
"output": "3 4 5 2 3;0 3 2 0 2;1 3 3 2 4;0 1 3 2 1;0 4 4 3 1"
},
{
"input": "2 0 0 2 1;5 4 2 5 4;4 1 2 5 4;0 1 1 5 5;3 3 1 4 5",
"output": "1 5 5 1 0;3 4 1 3 4;4 0 1 3 4;5 0 0 3 3;2 2 0 4 3"
},
{
"input": "2 1 4 1 4;3 0 0 4 ... | 5 5 5 0 5;1 0 0 3 0;4 2 1 2 4;1 3 5 2 4;1 3 4 4 3 | 3 3 3 5 3;0 5 5 2 5;4 1 0 1 4;0 2 3 1 4;0 2 4 4 2 |
icgr-00525 | border+add_mod | composed | Paint the outer border of the grid a fixed colour. Then, Add a fixed constant to every cell, modulo the colour count. | 4 | 3 | 3 | 2 | [
{
"input": "3 2 1;3 3 3;0 1 2",
"output": "1 1 1;1 1 1;1 1 1"
},
{
"input": "1 3 0;3 3 2;2 2 1",
"output": "1 1 1;1 1 1;1 1 1"
}
] | 1 0 3;2 2 0;1 1 0 | 1 1 1;1 0 1;1 1 1 |
icgr-00243 | add_mod | atomic | Add a fixed constant to every cell, modulo the colour count. | 6 | 4 | 3 | 3 | [
{
"input": "3 1 1;0 3 3;1 3 5;4 0 3",
"output": "1 5 5;4 1 1;5 1 3;2 4 1"
},
{
"input": "3 1 3;4 5 5;5 0 2;2 3 4",
"output": "1 5 1;2 3 3;3 4 0;0 1 2"
},
{
"input": "5 1 4;4 5 5;2 1 2;5 1 0",
"output": "3 5 2;2 3 3;0 5 0;3 5 4"
}
] | 4 2 3;4 3 0;2 2 0;5 2 1 | 2 0 1;2 1 4;0 0 4;3 0 5 |
icgr-00474 | color_swap+border | composed | Swap two colours everywhere they appear. Then, Paint the outer border of the grid a fixed colour. | 4 | 4 | 3 | 3 | [
{
"input": "3 1 0;3 2 0;3 3 1;1 3 2",
"output": "2 2 2;2 2 2;2 3 2;2 2 2"
},
{
"input": "1 0 2;2 0 2;1 0 1;1 3 3",
"output": "2 2 2;2 0 2;2 0 2;2 2 2"
},
{
"input": "3 0 3;3 3 1;1 0 0;1 2 3",
"output": "2 2 2;2 3 2;2 0 2;2 2 2"
}
] | 3 1 0;2 3 1;0 3 1;0 0 1 | 2 2 2;2 3 2;2 3 2;2 2 2 |
icgr-00849 | color_swap | atomic | Swap two colours everywhere they appear. | 6 | 5 | 3 | 3 | [
{
"input": "0 5 1;3 1 2;4 1 3;2 3 2;0 4 5",
"output": "0 5 4;3 4 2;1 4 3;2 3 2;0 1 5"
},
{
"input": "1 0 3;0 3 4;4 4 2;4 1 4;2 5 4",
"output": "4 0 3;0 3 1;1 1 2;1 4 1;2 5 1"
},
{
"input": "4 0 3;1 1 3;1 1 1;3 5 2;1 4 2",
"output": "1 0 3;4 4 3;4 4 4;3 5 2;4 1 2"
}
] | 5 0 1;5 5 4;0 5 4;1 1 0;4 1 0 | 5 0 4;5 5 1;0 5 1;4 4 0;1 4 0 |
icgr-00272 | color_swap | atomic | Swap two colours everywhere they appear. | 6 | 3 | 5 | 2 | [
{
"input": "4 2 0 2 2;0 1 5 0 4;1 3 5 3 5",
"output": "4 1 0 1 1;0 2 5 0 4;2 3 5 3 5"
},
{
"input": "2 2 2 4 4;2 5 1 2 1;0 4 2 5 4",
"output": "1 1 1 4 4;1 5 2 1 2;0 4 1 5 4"
}
] | 5 4 3 4 3;1 2 3 3 1;5 4 5 5 3 | 5 4 3 4 3;2 1 3 3 2;5 4 5 5 3 |
icgr-00371 | add_mod | atomic | Add a fixed constant to every cell, modulo the colour count. | 5 | 3 | 5 | 2 | [
{
"input": "2 1 0 4 1;3 0 0 1 4;4 3 0 3 1",
"output": "1 0 4 3 0;2 4 4 0 3;3 2 4 2 0"
},
{
"input": "0 2 3 1 3;4 1 4 2 4;0 4 1 1 3",
"output": "4 1 2 0 2;3 0 3 1 3;4 3 0 0 2"
}
] | 4 2 3 0 4;0 3 0 1 4;2 0 4 0 1 | 3 1 2 4 3;4 2 4 0 3;1 4 3 4 0 |
icgr-00795 | tile_h | atomic | Concatenate the grid with a copy of itself, side by side. | 6 | 4 | 4 | 3 | [
{
"input": "0 1 1 0;1 2 3 5;5 1 1 4;3 3 3 3",
"output": "0 1 1 0 0 1 1 0;1 2 3 5 1 2 3 5;5 1 1 4 5 1 1 4;3 3 3 3 3 3 3 3"
},
{
"input": "1 2 5 0;2 0 0 1;4 0 2 5;3 4 5 1",
"output": "1 2 5 0 1 2 5 0;2 0 0 1 2 0 0 1;4 0 2 5 4 0 2 5;3 4 5 1 3 4 5 1"
},
{
"input": "4 3 5 2;2 5 3 0;2 0 2 5;3 ... | 1 4 2 0;5 1 1 0;3 5 1 2;3 2 0 4 | 1 4 2 0 1 4 2 0;5 1 1 0 5 1 1 0;3 5 1 2 3 5 1 2;3 2 0 4 3 2 0 4 |
icgr-00306 | add_mod+shift_rows | composed | Add a fixed constant to every cell, modulo the colour count. Then, Cyclically shift every row right by a fixed amount. | 5 | 3 | 4 | 4 | [
{
"input": "0 4 2 4;1 4 0 2;0 4 4 0",
"output": "4 1 2 1;2 4 3 1;1 2 2 1"
},
{
"input": "2 2 2 3;1 2 2 4;3 4 0 0",
"output": "4 0 4 4;4 1 3 4;2 2 0 1"
},
{
"input": "4 2 4 0;1 2 0 0;3 0 4 4",
"output": "1 2 1 4;2 2 3 4;1 1 0 2"
},
{
"input": "2 2 4 4;0 3 2 1;1 0 0 2",
"ou... | 2 1 1 1;4 1 0 3;4 2 3 4 | 3 3 4 3;2 0 1 3;0 1 1 4 |
icgr-00260 | flip_h+border | composed | Mirror the grid left-to-right. Then, Paint the outer border of the grid a fixed colour. | 6 | 4 | 3 | 3 | [
{
"input": "4 5 1;4 3 0;2 5 5;5 4 1",
"output": "0 0 0;0 3 0;0 5 0;0 0 0"
},
{
"input": "4 5 0;0 5 4;0 0 0;3 0 0",
"output": "0 0 0;0 5 0;0 0 0;0 0 0"
},
{
"input": "4 2 5;4 1 5;5 5 1;4 0 4",
"output": "0 0 0;0 1 0;0 5 0;0 0 0"
}
] | 0 5 3;3 5 1;2 0 1;3 0 5 | 0 0 0;0 5 0;0 0 0;0 0 0 |
icgr-00770 | flip_v+color_swap | composed | Mirror the grid top-to-bottom. Then, Swap two colours everywhere they appear. | 4 | 3 | 4 | 4 | [
{
"input": "0 0 3 0;1 2 2 0;0 2 1 3",
"output": "3 2 1 0;1 2 2 3;3 3 0 3"
},
{
"input": "3 1 3 1;2 2 2 1;3 1 3 3",
"output": "0 1 0 0;2 2 2 1;0 1 0 1"
},
{
"input": "2 1 3 0;1 1 1 2;0 2 3 2",
"output": "3 2 0 2;1 1 1 2;2 1 0 3"
},
{
"input": "1 2 1 2;1 3 0 2;1 2 2 3",
"ou... | 3 0 2 3;1 3 0 3;1 3 1 3 | 1 0 1 0;1 0 3 0;0 3 2 0 |
icgr-00027 | add_mod+flip_h | composed | Add a fixed constant to every cell, modulo the colour count. Then, Mirror the grid left-to-right. | 4 | 3 | 5 | 4 | [
{
"input": "3 2 0 2 0;0 3 0 0 2;0 1 1 3 3",
"output": "2 0 2 0 1;0 2 2 1 2;1 1 3 3 2"
},
{
"input": "3 1 2 1 2;2 3 2 0 2;1 1 2 1 0",
"output": "0 3 0 3 1;0 2 0 1 0;2 3 0 3 3"
},
{
"input": "1 1 3 3 3;1 0 2 1 1;3 1 2 2 1",
"output": "1 1 1 3 3;3 3 0 2 3;3 0 0 3 1"
},
{
"input"... | 0 3 2 2 0;0 2 0 0 3;1 1 0 1 3 | 2 0 0 1 2;1 2 2 0 2;1 3 2 3 3 |
icgr-00303 | shift_rows | atomic | Cyclically shift every row right by a fixed amount. | 5 | 3 | 4 | 2 | [
{
"input": "4 3 0 2;2 4 2 3;3 0 2 3",
"output": "0 2 4 3;2 3 2 4;2 3 3 0"
},
{
"input": "3 2 1 0;1 1 4 4;1 1 1 3",
"output": "1 0 3 2;4 4 1 1;1 3 1 1"
}
] | 4 2 4 0;2 2 4 1;0 0 4 1 | 4 0 4 2;4 1 2 2;4 1 0 0 |
icgr-00629 | border | atomic | Paint the outer border of the grid a fixed colour. | 6 | 4 | 3 | 2 | [
{
"input": "5 0 3;2 3 4;1 3 0;3 5 2",
"output": "1 1 1;1 3 1;1 3 1;1 1 1"
},
{
"input": "5 1 0;2 3 5;2 0 1;1 0 2",
"output": "1 1 1;1 3 1;1 0 1;1 1 1"
}
] | 1 1 0;2 3 0;2 2 1;4 4 1 | 1 1 1;1 3 1;1 2 1;1 1 1 |
icgr-00207 | transpose | atomic | Swap rows and columns (transpose). | 6 | 5 | 4 | 4 | [
{
"input": "1 4 1 3;4 2 2 0;5 4 4 3;1 5 0 1;5 0 3 5",
"output": "1 4 5 1 5;4 2 4 5 0;1 2 4 0 3;3 0 3 1 5"
},
{
"input": "2 1 3 5;3 3 5 3;5 0 0 1;3 5 4 3;1 4 0 1",
"output": "2 3 5 3 1;1 3 0 5 4;3 5 0 4 0;5 3 1 3 1"
},
{
"input": "3 1 3 5;0 0 5 0;3 5 3 3;0 5 0 0;3 3 5 1",
"output": "3... | 2 2 4 3;0 2 2 0;2 5 5 5;3 0 2 2;5 0 5 2 | 2 0 2 3 5;2 2 5 0 0;4 2 5 2 5;3 0 5 2 2 |
icgr-00338 | flip_h+add_mod | composed | Mirror the grid left-to-right. Then, Add a fixed constant to every cell, modulo the colour count. | 4 | 4 | 5 | 3 | [
{
"input": "1 0 0 2 3;3 3 1 2 3;3 3 1 1 1;2 3 1 1 1",
"output": "0 3 1 1 2;0 3 2 0 0;2 2 2 0 0;2 2 2 0 3"
},
{
"input": "3 3 0 0 1;0 0 0 1 0;0 1 1 3 2;2 0 2 1 3",
"output": "2 1 1 0 0;1 2 1 1 1;3 0 2 2 1;0 2 3 1 3"
},
{
"input": "1 1 0 2 1;3 2 2 0 2;1 1 1 3 3;2 3 0 2 2",
"output": "2... | 1 2 0 0 1;2 0 2 2 1;3 2 2 3 3;2 2 0 0 2 | 2 1 1 3 2;2 3 3 1 3;0 0 3 3 0;3 1 1 3 3 |
icgr-00046 | flip_v | atomic | Mirror the grid top-to-bottom. | 5 | 4 | 3 | 4 | [
{
"input": "0 1 4;3 4 0;4 0 4;3 2 0",
"output": "3 2 0;4 0 4;3 4 0;0 1 4"
},
{
"input": "4 3 4;4 2 4;2 1 0;0 4 3",
"output": "0 4 3;2 1 0;4 2 4;4 3 4"
},
{
"input": "1 3 3;2 3 4;4 4 4;2 1 4",
"output": "2 1 4;4 4 4;2 3 4;1 3 3"
},
{
"input": "4 1 1;3 3 4;4 3 3;1 2 4",
"ou... | 2 4 4;2 3 0;4 0 4;2 1 0 | 2 1 0;4 0 4;2 3 0;2 4 4 |
icgr-00053 | border+shift_rows | composed | Paint the outer border of the grid a fixed colour. Then, Cyclically shift every row right by a fixed amount. | 5 | 4 | 3 | 3 | [
{
"input": "0 1 3;0 3 3;4 2 0;1 2 3",
"output": "3 3 3;3 3 3;3 3 2;3 3 3"
},
{
"input": "2 4 0;4 3 2;3 4 3;2 1 0",
"output": "3 3 3;3 3 3;3 3 4;3 3 3"
},
{
"input": "4 4 4;2 2 3;1 0 4;0 0 2",
"output": "3 3 3;3 3 2;3 3 0;3 3 3"
}
] | 0 1 1;3 3 3;2 0 2;3 2 0 | 3 3 3;3 3 3;3 3 0;3 3 3 |
icgr-00750 | add_mod | atomic | Add a fixed constant to every cell, modulo the colour count. | 6 | 4 | 4 | 3 | [
{
"input": "5 5 5 3;0 0 4 3;4 3 1 4;5 2 0 3",
"output": "1 1 1 5;2 2 0 5;0 5 3 0;1 4 2 5"
},
{
"input": "5 3 2 1;3 4 2 0;5 2 1 0;0 2 5 5",
"output": "1 5 4 3;5 0 4 2;1 4 3 2;2 4 1 1"
},
{
"input": "3 0 3 0;5 4 2 5;5 0 3 4;2 2 4 4",
"output": "5 2 5 2;1 0 4 1;1 2 5 0;4 4 0 0"
}
] | 2 0 5 4;5 1 0 0;4 1 1 0;3 1 1 1 | 4 2 1 0;1 3 2 2;0 3 3 2;5 3 3 3 |
icgr-00249 | color_swap+flip_v | composed | Swap two colours everywhere they appear. Then, Mirror the grid top-to-bottom. | 5 | 4 | 4 | 4 | [
{
"input": "2 1 4 3;0 0 2 4;3 1 4 0;0 1 3 3",
"output": "0 1 4 4;4 1 3 0;0 0 2 3;2 1 3 4"
},
{
"input": "2 1 1 0;4 0 4 4;1 3 1 0;3 0 0 0",
"output": "4 0 0 0;1 4 1 0;3 0 3 3;2 1 1 0"
},
{
"input": "2 0 3 4;1 0 4 4;1 0 0 2;1 3 0 0",
"output": "1 4 0 0;1 0 0 2;1 0 3 3;2 0 4 3"
},
{... | 1 0 1 0;1 4 0 1;3 1 1 1;3 4 0 0 | 4 3 0 0;4 1 1 1;1 3 0 1;1 0 1 0 |
icgr-00178 | color_swap+flip_h | composed | Swap two colours everywhere they appear. Then, Mirror the grid left-to-right. | 4 | 4 | 4 | 4 | [
{
"input": "2 1 2 2;1 2 2 3;3 3 1 1;3 0 2 2",
"output": "3 3 1 3;2 3 3 1;1 1 2 2;3 3 0 2"
},
{
"input": "3 2 3 0;1 0 0 0;0 3 2 3;0 3 3 1",
"output": "0 2 3 2;0 0 0 1;2 3 2 0;1 2 2 0"
},
{
"input": "3 2 3 0;2 3 1 3;3 3 1 2;2 0 3 1",
"output": "0 2 3 2;2 1 2 3;3 1 2 2;1 2 0 3"
},
{... | 1 1 3 2;1 3 1 2;0 1 3 0;1 0 0 0 | 3 2 1 1;3 1 2 1;0 2 1 0;0 0 0 1 |
icgr-00825 | flip_v+color_swap | composed | Mirror the grid top-to-bottom. Then, Swap two colours everywhere they appear. | 4 | 3 | 4 | 3 | [
{
"input": "0 1 2 3;0 0 2 2;2 3 0 0",
"output": "0 3 2 2;2 2 0 0;2 1 0 3"
},
{
"input": "3 3 1 1;2 2 1 3;0 2 2 1",
"output": "2 0 0 1;0 0 1 3;3 3 1 1"
},
{
"input": "3 2 1 1;0 2 0 3;0 3 1 1",
"output": "2 3 1 1;2 0 2 3;3 0 1 1"
}
] | 1 1 1 2;1 2 0 0;2 1 0 0 | 0 1 2 2;1 0 2 2;1 1 1 0 |
icgr-00203 | color_swap+flip_h | composed | Swap two colours everywhere they appear. Then, Mirror the grid left-to-right. | 4 | 4 | 4 | 2 | [
{
"input": "3 3 3 0;0 0 3 1;0 2 1 2;2 2 0 2",
"output": "0 3 3 3;1 3 0 0;2 1 2 0;2 0 2 2"
},
{
"input": "2 1 3 1;1 0 1 1;2 3 2 2;0 1 2 0",
"output": "1 3 1 2;1 1 0 1;2 2 3 2;0 2 1 0"
}
] | 3 0 3 3;3 0 3 2;3 0 2 2;0 1 3 2 | 3 3 0 3;2 3 0 3;2 2 0 3;2 3 1 0 |
icgr-00787 | shift_rows+flip_h | composed | Cyclically shift every row right by a fixed amount. Then, Mirror the grid left-to-right. | 6 | 5 | 4 | 3 | [
{
"input": "2 3 2 4;3 3 1 0;0 2 5 2;5 4 4 3;5 1 0 1",
"output": "2 3 2 4;1 3 3 0;5 2 0 2;4 4 5 3;0 1 5 1"
},
{
"input": "1 3 3 1;5 5 0 3;3 1 1 4;1 3 0 3;4 0 5 4",
"output": "3 3 1 1;0 5 5 3;1 1 3 4;0 3 1 3;5 0 4 4"
},
{
"input": "5 1 4 2;2 4 3 2;4 2 3 0;1 3 5 3;1 5 4 1",
"output": "4... | 0 4 0 4;1 5 3 4;5 4 4 1;4 2 3 0;5 3 2 0 | 0 4 0 4;3 5 1 4;4 4 5 1;3 2 4 0;2 3 5 0 |
icgr-00673 | tile_h | atomic | Concatenate the grid with a copy of itself, side by side. | 6 | 3 | 3 | 2 | [
{
"input": "1 5 1;2 2 0;2 5 0",
"output": "1 5 1 1 5 1;2 2 0 2 2 0;2 5 0 2 5 0"
},
{
"input": "4 3 3;3 0 2;4 0 5",
"output": "4 3 3 4 3 3;3 0 2 3 0 2;4 0 5 4 0 5"
}
] | 4 1 0;0 4 5;5 3 3 | 4 1 0 4 1 0;0 4 5 0 4 5;5 3 3 5 3 3 |
icgr-00542 | shift_rows+color_swap | composed | Cyclically shift every row right by a fixed amount. Then, Swap two colours everywhere they appear. | 5 | 4 | 5 | 2 | [
{
"input": "3 3 1 4 4;4 0 2 0 2;0 1 3 4 3;1 4 4 3 0",
"output": "3 3 4 4 1;0 2 3 0 2;3 4 0 1 4;4 0 1 3 3"
},
{
"input": "0 0 1 4 4;0 0 4 3 2;4 2 3 0 1;3 4 0 4 0",
"output": "3 3 0 0 1;4 2 0 0 3;0 1 3 2 4;3 0 4 3 0"
}
] | 1 4 2 2 2;1 3 2 2 0;3 4 0 2 1;3 1 2 0 0 | 2 2 1 3 2;2 0 1 4 2;2 1 4 3 0;0 0 4 1 2 |
icgr-00756 | add_mod+border | composed | Add a fixed constant to every cell, modulo the colour count. Then, Paint the outer border of the grid a fixed colour. | 4 | 5 | 4 | 2 | [
{
"input": "2 3 0 1;2 2 3 0;0 2 2 0;1 1 1 1;2 3 3 1",
"output": "3 3 3 3;3 1 2 3;3 1 1 3;3 0 0 3;3 3 3 3"
},
{
"input": "0 2 1 3;1 1 1 3;0 2 0 2;2 2 3 2;1 0 0 3",
"output": "3 3 3 3;3 0 0 3;3 1 3 3;3 1 2 3;3 3 3 3"
}
] | 0 0 0 2;2 1 3 0;1 2 0 0;3 3 1 3;3 3 1 3 | 3 3 3 3;3 0 2 3;3 1 3 3;3 2 0 3;3 3 3 3 |
icgr-00859 | max_pool2 | atomic | Replace each non-overlapping 2x2 block with its maximum value. | 5 | 6 | 6 | 4 | [
{
"input": "0 2 0 0 2 0;4 1 4 3 3 4;3 3 2 4 2 0;0 4 4 0 2 2;2 0 0 1 3 4;3 0 3 2 0 0",
"output": "4 4 4;4 4 2;3 3 4"
},
{
"input": "3 4 3 3 0 0;4 2 4 3 1 1;2 2 1 2 3 0;2 2 3 2 2 0;3 4 4 0 4 1;2 0 2 4 1 3",
"output": "4 4 1;2 3 3;4 4 4"
},
{
"input": "0 4 1 3 1 2;2 2 0 2 2 2;2 1 4 3 4 0;4 ... | 3 4 0 0 0 0;2 1 2 3 0 1;2 3 0 0 2 1;0 2 3 3 3 0;4 3 0 4 1 3;4 2 1 1 4 3 | 4 3 1;3 3 3;4 4 4 |
icgr-00748 | transpose | atomic | Swap rows and columns (transpose). | 6 | 4 | 3 | 4 | [
{
"input": "2 5 3;5 3 4;5 4 5;1 1 3",
"output": "2 5 5 1;5 3 4 1;3 4 5 3"
},
{
"input": "5 3 5;1 5 1;1 5 0;2 3 4",
"output": "5 1 1 2;3 5 5 3;5 1 0 4"
},
{
"input": "4 5 4;4 2 2;5 5 2;2 0 2",
"output": "4 4 5 2;5 2 5 0;4 2 2 2"
},
{
"input": "4 4 3;3 2 5;3 3 5;5 5 1",
"ou... | 4 3 1;5 4 4;0 1 1;5 5 1 | 4 5 0 5;3 4 1 5;1 4 1 1 |
icgr-00126 | rotate90 | atomic | Rotate the grid 90 degrees clockwise. | 6 | 3 | 5 | 2 | [
{
"input": "5 4 4 3 2;2 5 0 3 4;2 2 0 5 0",
"output": "2 2 5;2 5 4;0 0 4;5 3 3;0 4 2"
},
{
"input": "2 3 1 5 4;3 2 1 0 3;5 2 3 3 2",
"output": "5 3 2;2 2 3;3 1 1;3 0 5;2 3 4"
}
] | 0 4 2 0 5;0 4 4 4 3;2 1 5 0 5 | 2 0 0;1 4 4;5 4 2;0 4 0;5 3 5 |
icgr-00494 | color_swap+border | composed | Swap two colours everywhere they appear. Then, Paint the outer border of the grid a fixed colour. | 6 | 3 | 4 | 4 | [
{
"input": "2 5 3 2;2 0 5 1;5 4 1 5",
"output": "4 4 4 4;4 0 2 4;4 4 4 4"
},
{
"input": "5 4 1 2;4 1 4 1;4 0 1 5",
"output": "4 4 4 4;4 1 4 4;4 4 4 4"
},
{
"input": "2 2 2 2;4 4 0 3;5 3 3 0",
"output": "4 4 4 4;4 4 0 4;4 4 4 4"
},
{
"input": "0 0 3 1;4 0 5 2;1 4 4 5",
"ou... | 0 1 3 1;3 0 4 0;3 2 1 1 | 4 4 4 4;4 0 4 4;4 4 4 4 |
icgr-00820 | shift_rows+border | composed | Cyclically shift every row right by a fixed amount. Then, Paint the outer border of the grid a fixed colour. | 5 | 4 | 3 | 2 | [
{
"input": "4 3 2;0 4 1;1 2 1;2 2 4",
"output": "4 4 4;4 1 4;4 1 4;4 4 4"
},
{
"input": "3 4 0;0 2 3;2 0 1;3 1 4",
"output": "4 4 4;4 3 4;4 1 4;4 4 4"
}
] | 4 1 3;4 0 4;0 0 2;0 2 0 | 4 4 4;4 4 4;4 2 4;4 4 4 |
icgr-00968 | shift_rows | atomic | Cyclically shift every row right by a fixed amount. | 4 | 3 | 3 | 4 | [
{
"input": "3 2 0;2 0 3;1 3 0",
"output": "2 0 3;0 3 2;3 0 1"
},
{
"input": "2 2 3;1 2 2;3 0 2",
"output": "2 3 2;2 2 1;0 2 3"
},
{
"input": "1 3 0;2 1 1;2 1 2",
"output": "3 0 1;1 1 2;1 2 2"
},
{
"input": "1 1 2;2 0 3;2 0 1",
"output": "1 2 1;0 3 2;0 1 2"
}
] | 1 2 1;3 2 0;3 2 2 | 2 1 1;2 0 3;2 2 3 |
icgr-00842 | border | atomic | Paint the outer border of the grid a fixed colour. | 4 | 5 | 4 | 4 | [
{
"input": "2 3 3 0;1 0 0 1;0 3 2 2;3 0 2 1;2 1 2 1",
"output": "2 2 2 2;2 0 0 2;2 3 2 2;2 0 2 2;2 2 2 2"
},
{
"input": "2 2 2 2;1 2 1 1;2 1 3 0;0 0 2 2;3 2 2 0",
"output": "2 2 2 2;2 2 1 2;2 1 3 2;2 0 2 2;2 2 2 2"
},
{
"input": "1 1 3 1;1 0 3 0;0 3 0 3;1 3 3 2;2 2 0 2",
"output": "2... | 0 0 0 1;3 0 0 1;0 2 1 0;1 0 0 3;1 2 1 3 | 2 2 2 2;2 0 0 2;2 2 1 2;2 0 0 2;2 2 2 2 |
icgr-00144 | border | atomic | Paint the outer border of the grid a fixed colour. | 4 | 4 | 3 | 2 | [
{
"input": "1 1 0;0 0 0;3 1 1;1 3 0",
"output": "0 0 0;0 0 0;0 1 0;0 0 0"
},
{
"input": "0 2 1;3 0 2;2 3 1;1 1 2",
"output": "0 0 0;0 0 0;0 3 0;0 0 0"
}
] | 2 1 1;2 3 0;1 0 2;1 2 2 | 0 0 0;0 3 0;0 0 0;0 0 0 |
icgr-00801 | shift_rows | atomic | Cyclically shift every row right by a fixed amount. | 4 | 4 | 3 | 2 | [
{
"input": "3 1 3;2 0 1;2 2 0;2 1 0",
"output": "3 3 1;1 2 0;0 2 2;0 2 1"
},
{
"input": "0 2 1;3 3 2;1 0 1;3 1 2",
"output": "1 0 2;2 3 3;1 1 0;2 3 1"
}
] | 3 1 1;1 1 2;0 1 0;3 2 0 | 1 3 1;2 1 1;0 0 1;0 3 2 |
icgr-00625 | border+flip_h | composed | Paint the outer border of the grid a fixed colour. Then, Mirror the grid left-to-right. | 6 | 3 | 4 | 3 | [
{
"input": "3 4 0 4;5 3 2 0;2 4 2 1",
"output": "4 4 4 4;4 2 3 4;4 4 4 4"
},
{
"input": "5 2 2 1;3 4 4 1;4 1 1 2",
"output": "4 4 4 4;4 4 4 4;4 4 4 4"
},
{
"input": "5 0 3 3;4 1 2 4;2 3 0 4",
"output": "4 4 4 4;4 2 1 4;4 4 4 4"
}
] | 5 1 4 4;4 1 0 3;5 3 2 3 | 4 4 4 4;4 0 1 4;4 4 4 4 |
icgr-00164 | rotate90 | atomic | Rotate the grid 90 degrees clockwise. | 6 | 3 | 4 | 4 | [
{
"input": "2 1 2 4;3 1 5 4;0 5 5 1",
"output": "0 3 2;5 1 1;5 5 2;1 4 4"
},
{
"input": "1 3 2 2;5 5 4 0;1 4 1 1",
"output": "1 5 1;4 5 3;1 4 2;1 0 2"
},
{
"input": "0 1 5 3;0 1 1 5;2 3 3 0",
"output": "2 0 0;3 1 1;3 1 5;0 5 3"
},
{
"input": "1 0 5 1;3 2 5 4;3 0 4 1",
"ou... | 5 4 2 0;1 0 3 3;3 1 2 2 | 3 1 5;1 0 4;2 3 2;2 3 0 |
icgr-00360 | tile_h | atomic | Concatenate the grid with a copy of itself, side by side. | 5 | 4 | 5 | 3 | [
{
"input": "1 4 0 0 2;3 3 1 1 2;2 4 2 1 2;1 0 4 4 4",
"output": "1 4 0 0 2 1 4 0 0 2;3 3 1 1 2 3 3 1 1 2;2 4 2 1 2 2 4 2 1 2;1 0 4 4 4 1 0 4 4 4"
},
{
"input": "4 4 2 1 0;2 0 3 0 0;1 1 1 3 3;3 1 4 2 3",
"output": "4 4 2 1 0 4 4 2 1 0;2 0 3 0 0 2 0 3 0 0;1 1 1 3 3 1 1 1 3 3;3 1 4 2 3 3 1 4 2 3"
... | 4 2 2 3 2;4 0 0 2 1;4 1 4 3 0;3 2 2 1 1 | 4 2 2 3 2 4 2 2 3 2;4 0 0 2 1 4 0 0 2 1;4 1 4 3 0 4 1 4 3 0;3 2 2 1 1 3 2 2 1 1 |
icgr-00553 | flip_v | atomic | Mirror the grid top-to-bottom. | 6 | 5 | 4 | 3 | [
{
"input": "1 4 0 0;5 3 2 1;5 3 3 3;5 3 4 2;2 0 0 5",
"output": "2 0 0 5;5 3 4 2;5 3 3 3;5 3 2 1;1 4 0 0"
},
{
"input": "3 2 0 5;0 4 2 0;5 4 0 1;1 3 4 3;5 1 5 0",
"output": "5 1 5 0;1 3 4 3;5 4 0 1;0 4 2 0;3 2 0 5"
},
{
"input": "3 1 2 5;0 4 3 1;3 1 0 3;0 1 1 5;1 0 5 2",
"output": "1... | 2 1 0 5;2 2 1 5;0 1 5 1;3 0 2 4;4 2 3 4 | 4 2 3 4;3 0 2 4;0 1 5 1;2 2 1 5;2 1 0 5 |
icgr-00858 | transpose | atomic | Swap rows and columns (transpose). | 5 | 3 | 5 | 2 | [
{
"input": "0 2 2 3 1;3 2 4 0 4;3 1 4 2 2",
"output": "0 3 3;2 2 1;2 4 4;3 0 2;1 4 2"
},
{
"input": "2 1 0 3 1;0 0 2 1 4;3 3 4 0 3",
"output": "2 0 3;1 0 3;0 2 4;3 1 0;1 4 3"
}
] | 1 3 1 1 3;1 4 4 1 2;4 2 3 0 2 | 1 1 4;3 4 2;1 4 3;1 1 0;3 2 2 |
icgr-00663 | border | atomic | Paint the outer border of the grid a fixed colour. | 5 | 5 | 4 | 3 | [
{
"input": "1 3 3 3;1 2 0 3;1 0 2 0;2 2 0 0;4 4 1 0",
"output": "1 1 1 1;1 2 0 1;1 0 2 1;1 2 0 1;1 1 1 1"
},
{
"input": "1 2 0 1;2 1 1 2;3 0 4 0;4 0 0 4;3 2 2 1",
"output": "1 1 1 1;1 1 1 1;1 0 4 1;1 0 0 1;1 1 1 1"
},
{
"input": "1 0 1 1;3 2 1 0;3 2 3 4;3 3 1 0;2 3 2 3",
"output": "1... | 1 3 0 1;2 3 2 4;1 1 1 3;0 4 2 3;4 3 3 3 | 1 1 1 1;1 3 2 1;1 1 1 1;1 4 2 1;1 1 1 1 |
icgr-00210 | border | atomic | Paint the outer border of the grid a fixed colour. | 5 | 5 | 5 | 3 | [
{
"input": "4 1 1 0 2;3 4 3 0 2;3 3 2 2 2;2 2 4 4 0;3 2 3 3 4",
"output": "3 3 3 3 3;3 4 3 0 3;3 3 2 2 3;3 2 4 4 3;3 3 3 3 3"
},
{
"input": "1 0 1 0 1;2 0 3 0 3;1 2 4 4 0;2 0 1 1 2;4 1 1 3 0",
"output": "3 3 3 3 3;3 0 3 0 3;3 2 4 4 3;3 0 1 1 3;3 3 3 3 3"
},
{
"input": "3 2 4 2 2;2 4 2 3 ... | 2 2 3 0 3;2 0 2 0 1;0 4 4 1 0;0 0 0 2 2;4 2 0 2 1 | 3 3 3 3 3;3 0 2 0 3;3 4 4 1 3;3 0 0 2 3;3 3 3 3 3 |
icgr-00420 | max_pool2 | atomic | Replace each non-overlapping 2x2 block with its maximum value. | 4 | 4 | 4 | 4 | [
{
"input": "1 1 3 0;2 3 3 3;0 1 2 0;2 1 3 3",
"output": "3 3;2 3"
},
{
"input": "3 3 1 3;1 3 3 2;1 1 0 2;0 1 1 3",
"output": "3 3;1 3"
},
{
"input": "3 0 0 3;3 0 0 2;0 1 0 0;0 2 2 0",
"output": "3 3;2 2"
},
{
"input": "1 3 1 0;3 2 1 0;3 2 3 3;1 2 1 3",
"output": "3 1;3 3"... | 2 3 1 1;3 2 2 1;0 0 1 0;3 3 3 2 | 3 2;3 3 |
icgr-00661 | flip_v | atomic | Mirror the grid top-to-bottom. | 4 | 5 | 3 | 2 | [
{
"input": "3 0 2;0 3 2;0 2 1;2 2 1;1 1 2",
"output": "1 1 2;2 2 1;0 2 1;0 3 2;3 0 2"
},
{
"input": "1 0 3;0 2 0;2 1 0;3 0 0;0 1 3",
"output": "0 1 3;3 0 0;2 1 0;0 2 0;1 0 3"
}
] | 0 3 1;3 1 0;2 3 3;3 0 2;1 1 2 | 1 1 2;3 0 2;2 3 3;3 1 0;0 3 1 |
icgr-00959 | color_swap+flip_h | composed | Swap two colours everywhere they appear. Then, Mirror the grid left-to-right. | 6 | 4 | 4 | 3 | [
{
"input": "2 0 3 4;1 1 2 0;3 0 1 1;1 3 2 2",
"output": "4 1 0 2;0 2 3 3;3 3 0 1;2 2 1 3"
},
{
"input": "0 4 3 0;4 0 4 3;4 0 5 4;3 2 3 0",
"output": "0 1 4 0;1 4 0 4;4 5 0 4;0 1 2 1"
},
{
"input": "3 5 2 3;0 2 4 0;4 4 3 4;1 3 4 5",
"output": "1 2 5 1;0 4 2 0;4 1 4 4;5 4 1 3"
}
] | 3 1 3 2;0 1 1 4;2 0 5 2;0 2 0 1 | 2 1 3 1;4 3 3 0;2 5 0 2;3 0 2 0 |
icgr-00087 | flip_v+color_swap | composed | Mirror the grid top-to-bottom. Then, Swap two colours everywhere they appear. | 5 | 4 | 3 | 2 | [
{
"input": "0 3 2;4 4 2;1 3 4;3 4 1",
"output": "3 4 0;0 3 4;4 4 2;1 3 2"
},
{
"input": "1 0 0;0 1 3;1 3 0;1 2 1",
"output": "0 2 0;0 3 1;1 0 3;0 1 1"
}
] | 3 4 4;1 3 0;1 4 0;2 4 0 | 2 4 1;0 4 1;0 3 1;3 4 4 |
icgr-00816 | tile_h | atomic | Concatenate the grid with a copy of itself, side by side. | 5 | 5 | 4 | 3 | [
{
"input": "1 0 2 1;0 2 0 0;3 2 1 3;3 3 3 2;3 2 4 1",
"output": "1 0 2 1 1 0 2 1;0 2 0 0 0 2 0 0;3 2 1 3 3 2 1 3;3 3 3 2 3 3 3 2;3 2 4 1 3 2 4 1"
},
{
"input": "0 0 4 1;3 3 1 0;0 2 3 1;2 3 4 3;4 2 3 1",
"output": "0 0 4 1 0 0 4 1;3 3 1 0 3 3 1 0;0 2 3 1 0 2 3 1;2 3 4 3 2 3 4 3;4 2 3 1 4 2 3 1"
... | 1 0 4 0;0 3 1 0;0 3 1 4;1 4 3 2;1 2 2 2 | 1 0 4 0 1 0 4 0;0 3 1 0 0 3 1 0;0 3 1 4 0 3 1 4;1 4 3 2 1 4 3 2;1 2 2 2 1 2 2 2 |
icgr-00564 | flip_h | atomic | Mirror the grid left-to-right. | 6 | 5 | 3 | 3 | [
{
"input": "2 4 0;5 4 5;2 4 5;1 0 3;3 5 3",
"output": "0 4 2;5 4 5;5 4 2;3 0 1;3 5 3"
},
{
"input": "3 4 3;4 5 5;3 3 3;4 0 5;1 0 5",
"output": "3 4 3;5 5 4;3 3 3;5 0 4;5 0 1"
},
{
"input": "1 1 4;3 1 3;5 0 0;3 5 3;5 4 3",
"output": "4 1 1;3 1 3;0 0 5;3 5 3;3 4 5"
}
] | 2 0 1;5 1 4;5 4 0;3 5 0;2 2 1 | 1 0 2;4 1 5;0 4 5;0 5 3;1 2 2 |
icgr-00998 | flip_h | atomic | Mirror the grid left-to-right. | 6 | 3 | 5 | 2 | [
{
"input": "0 3 0 1 2;5 4 1 4 5;5 4 4 2 4",
"output": "2 1 0 3 0;5 4 1 4 5;4 2 4 4 5"
},
{
"input": "5 2 1 5 5;5 2 1 3 0;5 3 0 4 3",
"output": "5 5 1 2 5;0 3 1 2 5;3 4 0 3 5"
}
] | 4 3 0 3 4;5 0 3 1 0;4 5 3 0 4 | 4 3 0 3 4;0 1 3 0 5;4 0 3 5 4 |
icgr-00823 | shift_rows+flip_h | composed | Cyclically shift every row right by a fixed amount. Then, Mirror the grid left-to-right. | 4 | 3 | 3 | 3 | [
{
"input": "2 3 0;3 2 1;1 1 1",
"output": "3 2 0;2 3 1;1 1 1"
},
{
"input": "0 3 3;2 2 2;2 1 3",
"output": "3 0 3;2 2 2;1 2 3"
},
{
"input": "0 3 1;3 2 0;2 1 2",
"output": "3 0 1;2 3 0;1 2 2"
}
] | 2 3 0;3 2 0;1 2 0 | 3 2 0;2 3 0;2 1 0 |
icgr-00467 | shift_rows | atomic | Cyclically shift every row right by a fixed amount. | 4 | 5 | 4 | 3 | [
{
"input": "3 0 3 0;1 0 3 3;2 1 3 3;2 3 2 0;2 3 2 0",
"output": "0 3 0 3;3 1 0 3;3 2 1 3;0 2 3 2;0 2 3 2"
},
{
"input": "3 0 0 2;0 3 2 2;3 3 3 2;1 1 1 3;0 1 0 1",
"output": "2 3 0 0;2 0 3 2;2 3 3 3;3 1 1 1;1 0 1 0"
},
{
"input": "2 3 3 1;0 1 3 3;0 1 2 1;3 3 1 1;2 1 3 2",
"output": "1... | 3 2 1 2;0 1 0 2;1 1 0 1;1 0 3 1;2 3 2 1 | 2 3 2 1;2 0 1 0;1 1 1 0;1 1 0 3;1 2 3 2 |
icgr-00675 | tile_h | atomic | Concatenate the grid with a copy of itself, side by side. | 5 | 4 | 4 | 2 | [
{
"input": "2 3 2 1;0 3 3 2;3 3 1 1;2 4 3 3",
"output": "2 3 2 1 2 3 2 1;0 3 3 2 0 3 3 2;3 3 1 1 3 3 1 1;2 4 3 3 2 4 3 3"
},
{
"input": "2 3 0 0;3 1 2 1;3 3 1 1;2 0 3 2",
"output": "2 3 0 0 2 3 0 0;3 1 2 1 3 1 2 1;3 3 1 1 3 3 1 1;2 0 3 2 2 0 3 2"
}
] | 3 0 3 0;0 4 4 0;0 0 2 3;3 1 2 0 | 3 0 3 0 3 0 3 0;0 4 4 0 0 4 4 0;0 0 2 3 0 0 2 3;3 1 2 0 3 1 2 0 |
icgr-00821 | add_mod+color_swap | composed | Add a fixed constant to every cell, modulo the colour count. Then, Swap two colours everywhere they appear. | 5 | 5 | 3 | 3 | [
{
"input": "4 1 0;3 4 4;4 0 2;0 4 1;4 3 0",
"output": "0 3 2;1 0 0;0 2 4;2 0 3;0 1 2"
},
{
"input": "3 1 0;1 2 0;4 3 0;4 0 0;3 3 0",
"output": "1 3 2;3 4 2;0 1 2;0 2 2;1 1 2"
},
{
"input": "3 3 0;2 3 1;1 0 4;2 2 2;0 1 3",
"output": "1 1 2;4 1 3;3 2 0;4 4 4;2 3 1"
}
] | 4 1 1;3 3 1;2 1 4;0 0 2;4 4 0 | 0 3 3;1 1 3;4 3 0;2 2 4;0 0 2 |
icgr-00347 | flip_v+flip_h | composed | Mirror the grid top-to-bottom. Then, Mirror the grid left-to-right. | 6 | 4 | 4 | 2 | [
{
"input": "3 4 2 5;3 1 5 1;3 1 1 0;0 3 4 0",
"output": "0 4 3 0;0 1 1 3;1 5 1 3;5 2 4 3"
},
{
"input": "5 3 0 2;0 2 5 2;5 0 4 4;1 3 2 0",
"output": "0 2 3 1;4 4 0 5;2 5 2 0;2 0 3 5"
}
] | 4 2 1 1;3 5 3 1;4 4 3 5;1 0 1 5 | 5 1 0 1;5 3 4 4;1 3 5 3;1 1 2 4 |
icgr-00546 | color_swap+add_mod | composed | Swap two colours everywhere they appear. Then, Add a fixed constant to every cell, modulo the colour count. | 4 | 3 | 5 | 3 | [
{
"input": "3 3 2 1 3;3 3 1 0 2;1 2 3 3 3",
"output": "2 2 1 3 2;2 2 3 0 1;3 1 2 2 2"
},
{
"input": "0 1 1 1 2;3 2 0 0 2;2 1 3 1 1",
"output": "0 3 3 3 1;2 1 0 0 1;1 3 2 3 3"
},
{
"input": "0 3 2 3 3;0 1 0 3 1;2 1 0 2 2",
"output": "0 2 1 2 2;0 3 0 2 3;1 3 0 1 1"
}
] | 0 2 0 3 3;1 0 2 3 0;2 3 0 2 0 | 0 1 0 2 2;3 0 1 2 0;1 2 0 1 0 |
icgr-00304 | color_swap | atomic | Swap two colours everywhere they appear. | 4 | 3 | 5 | 3 | [
{
"input": "1 1 1 0 1;1 2 1 1 2;1 0 1 1 1",
"output": "3 3 3 0 3;3 2 3 3 2;3 0 3 3 3"
},
{
"input": "3 2 2 3 0;3 3 1 1 2;1 0 0 2 3",
"output": "1 2 2 1 0;1 1 3 3 2;3 0 0 2 1"
},
{
"input": "0 1 3 3 0;0 3 0 0 2;0 1 0 3 2",
"output": "0 3 1 1 0;0 1 0 0 2;0 3 0 1 2"
}
] | 0 3 0 0 1;2 1 3 1 0;0 3 2 2 2 | 0 1 0 0 3;2 3 1 3 0;0 1 2 2 2 |
In-Context Grid Reasoning (ICGR)
A small, fully synthetic benchmark for demonstration-conditioned rule induction:
each task shows 2–4 (input grid → output grid) support pairs that share one
hidden transformation, and the model must apply the same transformation to a
held-out query input.
It targets the same behaviour probed by recent in-context / latent-reasoning work on ARC-AGI (e.g. BDH-CQ: In-Context Learning with Recurrent Latent Reasoning, arXiv:2608.09888), but is deliberately tiny, transparent, and license-clean so it can be used freely for quick probes and ablations.
Why this exists
ARC-AGI itself is excellent but small and easy to overfit to via public solvers.
ICGR is procedurally generated from a single script (generate.py),
so you can:
- regenerate it deterministically (
--seed), - scale it up (
--n), - know exactly which rule family each task belongs to (for per-concept scoring),
- trust its provenance — no scraped text, images, or third-party datasets, so there is no upstream copyright. Released under CC-BY-4.0.
Format
One JSON object per line.
| field | type | notes |
|---|---|---|
task_id |
str | e.g. icgr-00042 |
rule |
str | rule id(s), +-joined for compositions |
rule_kind |
str | atomic or composed |
rule_description |
str | plain-English statement of the transformation |
num_colors |
int | cell alphabet size (4–6) |
grid_h, grid_w |
int | query/support grid dimensions before the rule |
num_support |
int | number of demonstration pairs (2–4) |
support |
list | [{"input": grid, "output": grid}, ...] |
query_input |
str | grid to transform |
query_output |
str | expected answer |
Grids are serialised as rows of space-separated integers, rows joined by ;.
Example: "1 2 0;0 1 2" is the 2×3 grid [[1,2,0],[0,1,2]].
from datasets import load_dataset
ds = load_dataset("WhySoCodius/in-context-grid-reasoning", split="test")
ex = ds[0]
print(ex["rule_description"])
for pair in ex["support"]:
print(pair["input"], "->", pair["output"])
print("Q:", ex["query_input"], "=>", ex["query_output"])
Rule families
flip_h, flip_v, transpose, rotate90, add_mod (add constant mod colour
count), color_swap, shift_rows (cyclic), tile_h (self-concat), border
(paint outer ring), max_pool2 (2×2 max). ~35% of tasks compose two of the
size-preserving rules; rule records which and in what order.
Splits
| split | tasks |
|---|---|
| train | 800 |
| test | 200 |
Split is a random shuffle at a fixed seed; the same rule family appears in both.
It is a convenience split, not an adversarial generalisation split — if you need
held-out rules, filter by rule.
Suggested metric
Exact string match on query_output after normalising whitespace. Report overall
accuracy plus a breakdown by rule and by rule_kind.
Limitations
- Rules are simple and enumerable; a symbolic solver can reach 100%. The point is to measure whether a learning system infers the rule from demonstrations alone, not to be unsolvable.
- Grids are small (3×5 max, 6×6 for pooling) and dense.
- English rule descriptions are templated.
Reproduce / extend
python generate.py --n 5000 --seed 123
python test_generate.py # self-check
Citation
@misc{icgr2026,
title = {In-Context Grid Reasoning (ICGR): a synthetic benchmark for
demonstration-conditioned rule induction},
author = {WhySoCodius},
year = {2026},
howpublished = {\url{https://huggingface.co/datasets/WhySoCodius/in-context-grid-reasoning}}
}
License: CC-BY-4.0. Attribution appreciated; no other restrictions.
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