diff options
| author | tslil <tslil@posteo.de> | 2021-01-10 21:40:38 -0500 |
|---|---|---|
| committer | tslil <tslil@posteo.de> | 2026-08-28 19:37:41 +0100 |
| commit | b598a3ab9e682a826516b242a710b26e0c22389f (patch) | |
| tree | eedbf2f8f2b4343fa1ae86146439090057c99258 /include/ct1973.c | |
| parent | a627eb4b4ce13834b85dfd1ced666cc912516d52 (diff) | |
This is the general idea, but i'm sure order is incorrect somewhere
Diffstat (limited to 'include/ct1973.c')
| -rw-r--r-- | include/ct1973.c | 82 |
1 files changed, 82 insertions, 0 deletions
diff --git a/include/ct1973.c b/include/ct1973.c new file mode 100644 index 0000000..da56d19 --- /dev/null +++ b/include/ct1973.c @@ -0,0 +1,82 @@ +#include "ct1973.h" + +static float flattened[CONV_NUM+2]; +static float dense1[DENSE1_NUM]; +static float dense2[DENSE2_NUM]; + +#define RELU(x) ((x) = ((x)>0)?(x):0) + +float +evaluate_black_win(void) { + /* ------------------ * + * Convolution layer * + * ------------------ */ + // for each kernel + for (uint8_t k = 0; k < KERN_NUM; k++) { + // the stride is 1, march across the board + for (uint8_t by = 0; by < KERN_OSIZE; by++) { + for (uint8_t bx = 0; bx < KERN_OSIZE; bx++) { + flattened[(k*KERN_OSIZE+by)*KERN_OSIZE+bx] = conv2d_biases[k]; + // Compute the convolution for this position + for (uint8_t ky = 0; ky < KERN_SIZE; ky++) { + for (uint8_t kx = 0; kx < KERN_SIZE; kx++) { + for (uint8_t c = 0; c < KERN_CHAN; c++) { + // Where we are on the board + const uint8_t loc = kx+bx+(ky+by)*board_size; + // Look up what's on the board at this location, and + // multiply it. For c=0 we have to do some extra work + float lookup = 0; + if (COUNT_AT(loc)>c) { + if (c==0) { + if (STONE_AT(loc) == STONE_STANDING) { + lookup = (colours[loc] & 1) ? +0.25 : -0.25; + } else if (STONE_AT(loc) == STONE_CAPSTONE) { + lookup = (colours[loc] & 1) ? +1.00 : -1.00; + } else { + lookup = (colours[loc] & 1) ? +0.50 : -0.50; + } + } else { + lookup = (colours[k] & (1<<c)) ? +0.50 : -0.50; + } + } + flattened[(k*KERN_OSIZE+by)*KERN_OSIZE+bx] + += lookup*conv2d_weights[k][c][ky][kx]; + } + } + } + RELU(flattened[(k*KERN_OSIZE+by)*KERN_OSIZE+bx]); + } + } + } + /* ------------------ * + * First dense layer * + * ------------------ */ + flattened[CONV_NUM] = (float)(white_count & 127)/21.0; + flattened[CONV_NUM+1] = (float)(black_count & 127)/21.0; + for (uint8_t d1 = 0; d1 < DENSE1_NUM; d1++) { + dense1[d1] = dense1_biases[d1]; + for (uint8_t fl = 0; fl < CONV_NUM+2; fl++) { + dense1[d1] += flattened[fl]*dense1_weights[fl][d1]; + } + RELU(dense1[d1]); + } + /* ------------------- * + * Second dense layer * + * ------------------- */ + for (uint8_t d2 = 0; d2 < DENSE2_NUM; d2++) { + dense2[d2] = dense2_biases[d2]; + for (uint8_t d1 = 0; d1 < DENSE1_NUM; d1++) { + dense2[d2] += dense1[d1]*dense2_weights[d1][d2]; + } + RELU(dense2[d2]); + } + /* ------------- * + * Output layer * + * ------------- */ + float black = output_biases[1]; + for (uint8_t d2 = 0; d2 < DENSE2_NUM; d2++) { + black += dense2[d2]*output_weights[d2][1]; + } + RELU(black); + return black; +} |
