#include #include "cuneiform_u_v3.h" int run_test() { printf("======================================================================\n"); printf(" CUNEIFORM-U V3.0 / LANGUAGE U V4.0 C-BASED RANGE CODER BENCHMARK\n"); printf(" zymatica.space | astronautshe.com\n"); printf("======================================================================\n\n"); /* 1. Define Reboot Sequence (40 Concepts) */ /* Repeating: SYNC, ENERGY, CYCLE, ACK */ /* We map these to their 6D coordinates: SYNC (0x8104): domain=8 (ENGINEER), subdomain=0, operation=0 (IDENTITY), modality=4 (LIKELY), depth=7 (TRANSCENDENT), polarity=7 (SUPERPOSED) - wait, let's use the exact coordinates or standard indices. From Python: SYNC (0x8104): rc=0x80 (DOMAIN=8, SUBDOMAIN=0), rf=0x04 (OPERATION=0, MODALITY=4), ra=0x78 (DEPTH=7, POLARITY=8) ENERGY (0x80FE): rc=0x00 (DOMAIN=0, SUBDOMAIN=0), rf=0xFE (OPERATION=15, MODALITY=14), ra=0x51 (DEPTH=5, POLARITY=1) CYCLE (0x807B): rc=0x00, rf=0x7B, ra=0xDF ACK (0x807E): rc=0x00, rf=0x7E, ra=0x0B */ Concept6D reboot_sequence[40]; Concept6D block[4] = { {8, 0, 0, 4, 7, 8}, /* SYNC */ {0, 0, 15, 14, 5, 1}, /* ENERGY */ {0, 0, 7, 11, 13, 15},/* CYCLE */ {0, 0, 7, 14, 0, 11} /* ACK */ }; for (int i = 0; i < 10; i++) { memcpy(&reboot_sequence[i * 4], block, sizeof(block)); } uint8_t compressed_buf[256]; uint32_t max_bytes = sizeof(compressed_buf); /* Encode */ int bit_count = cuneiform_u_v3_encode(reboot_sequence, 40, compressed_buf, max_bytes, 1, 128); if (bit_count < 0) { printf("Encoding failed!\n"); return 1; } int byte_count = (bit_count + 7) / 8; printf("--- BENCHMARK 1: REBOOT SEQUENCE (40 Concepts) ---\n"); printf(" Cuneiform-U v3.0 C-Coder size: %d bytes (%d bits)\n", byte_count, bit_count); printf(" Semantic bits/concept: %.2f bits\n", (float)bit_count / 40.0f); /* Decode & Verify */ Concept6D decoded_sequence[40]; int decode_success = cuneiform_u_v3_decode(compressed_buf, byte_count, decoded_sequence, 40, 1, 128); int match = 1; for (int i = 0; i < 40; i++) { if (reboot_sequence[i].domain != decoded_sequence[i].domain || reboot_sequence[i].subdomain != decoded_sequence[i].subdomain || reboot_sequence[i].operation != decoded_sequence[i].operation || reboot_sequence[i].modality != decoded_sequence[i].modality || reboot_sequence[i].depth != decoded_sequence[i].depth || reboot_sequence[i].polarity != decoded_sequence[i].polarity) { match = 0; printf(" Mismatch at index %d!\n", i); break; } } printf(" Fidelity verification: %s\n\n", match && decode_success ? "PASS ✅" : "FAIL ❌"); /* 2. Zero-Shot Dynamic Concept Composition */ Concept6D dynamic_block[2] = { {1, 3, 3, 13, 4, 6}, /* Relativistic warp anomaly warning */ {1, 1, 0, 6, 5, 5} /* Quantum equilibrium balance */ }; Concept6D dynamic_sequence[20]; for (int i = 0; i < 10; i++) { memcpy(&dynamic_sequence[i * 2], dynamic_block, sizeof(dynamic_block)); } bit_count = cuneiform_u_v3_encode(dynamic_sequence, 20, compressed_buf, max_bytes, 1, 128); byte_count = (bit_count + 7) / 8; printf("--- BENCHMARK 2: ZERO-SHOT DYNAMIC SEMANTIC EXPRESSION (20 Concepts) ---\n"); printf(" Cuneiform-U v3.0 C-Coder size: %d bytes (%d bits)\n", byte_count, bit_count); printf(" Semantic bits/concept: %.2f bits\n", (float)bit_count / 20.0f); Concept6D decoded_dynamic[20]; decode_success = cuneiform_u_v3_decode(compressed_buf, byte_count, decoded_dynamic, 20, 1, 128); match = 1; for (int i = 0; i < 20; i++) { if (dynamic_sequence[i].domain != decoded_dynamic[i].domain || dynamic_sequence[i].subdomain != decoded_dynamic[i].subdomain || dynamic_sequence[i].operation != decoded_dynamic[i].operation || dynamic_sequence[i].modality != decoded_dynamic[i].modality || dynamic_sequence[i].depth != decoded_dynamic[i].depth || dynamic_sequence[i].polarity != decoded_dynamic[i].polarity) { match = 0; printf(" Mismatch at index %d!\n", i); break; } } printf(" Fidelity verification: %s\n", match && decode_success ? "PASS ✅" : "FAIL ❌"); return 0; } int main() { return run_test(); }