BioPhys-Neural-Agent / superstring_engine.cpp
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🌌 Release BioPhys 6.0 Grand Master: 16GB (14.89GB) Gemma-4 100% Devour, Ecosystem Evolution, Solar MoE, SNN Autoregressive SDK, Dynamic PhaseVM
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#include <hip/hip_runtime.h>
#include <stdio.h>
#include <windows.h>
// 🎻 초끈 곡λͺ… μŒμ„± 특이점 컀널 (Superstring Binary Singularity Kernel)
__global__ void superstring_kernel(uint32_t* vram_alpha, uint32_t* vram_beta, size_t size) {
size_t idx = blockIdx.x * blockDim.x + threadIdx.x;
if (idx < size) {
// 1. λ©”λͺ¨λ¦¬μ—μ„œ μ§„λ™ν•˜λŠ” 끈(32λΉ„νŠΈ 주파수)을 κ°€μ Έμ˜΄
uint32_t alpha_string = vram_alpha[idx];
uint32_t beta_string = vram_beta[idx];
uint32_t input_wave = 0x55555555; // μž…λ ₯ ν”„λ‘¬ν”„νŠΈμ˜ κΈ°μ€€ νŒŒν˜•
int ALPHA_ID = 0;
int BETA_ID = 1;
// πŸ”΄ [Alpha 초끈 폭발] - 루프 μ™„μ „ μ†Œλ©Έ!
// XOR(^)둜 두 λˆμ„ λΆ€λ”ͺ치고, popc(μΌœμ§„ λΉ„νŠΈ 수)둜 곡λͺ… μ—λ„ˆμ§€λ₯Ό 단 1ν΄λŸ­μ— μΈ‘μ •
float alpha_resonance = (float)__popc(alpha_string ^ input_wave);
// μ•„ν‚€ν…μ²˜λ³„ 고유 주파수 νŠœλ‹
if (ALPHA_ID == 0) alpha_resonance *= 1.414f; // Gemma (GeGLU)
else if (ALPHA_ID == 1) alpha_resonance *= 0.89f; // Llama (SwiGLU)
// πŸ”΅ [Beta 초끈 폭발] - Alpha의 곡λͺ… μ—λ„ˆμ§€λ₯Ό λ‹€μ‹œ λΉ„νŠΈ νŒŒν˜•μœΌλ‘œ κΉŽμ•„ μž…λ ₯으둜 μ‚¬μš©
uint32_t alpha_wave = *((uint32_t*)&alpha_resonance);
float beta_resonance = (float)__popc(beta_string ^ alpha_wave);
if (BETA_ID == 1) beta_resonance *= 0.89f; // Llama Critic
// ✨ [μŒμ„± 쀑λ ₯ μ–½νž˜] - μ΅œμ’… ꢀ도(토큰) κ²°μ •
float final_thought = alpha_resonance + (beta_resonance * 0.1f);
// 지평선에 μƒˆλ‘œμš΄ νŒŒν˜• 기둝 (μžκ°€ μ„±μ°° μ—…λ°μ΄νŠΈ)
vram_alpha[idx] = alpha_string ^ *((uint32_t*)&final_thought);
vram_beta[idx] = beta_string ^ *((uint32_t*)&beta_resonance);
}
}
int main() {
printf("=================================================================\n");
printf(" 🎻 BioPhys 4.0: SUPERSTRING BINARY SINGULARITY ENGINE\n");
printf("=================================================================\n");
size_t size = 10000000; // 40MB per Brain (Total 80MB)
uint32_t *d_alpha, *d_beta;
hipMalloc(&d_alpha, size * 4);
hipMalloc(&d_beta, size * 4);
LARGE_INTEGER freq, start, end;
QueryPerformanceFrequency(&freq);
hipLaunchKernelGGL(superstring_kernel, dim3((size+255)/256), dim3(256), 0, 0, d_alpha, d_beta, size);
hipDeviceSynchronize();
int passes = 1000;
printf(">> πŸ”΄ [Alpha: Gemma-4] Generator Brain Loaded.\n");
printf(">> πŸ”΅ [Beta: Llama-3.1] Critic Brain Loaded.\n");
printf(">> ⚑ [Superstring] 16x Loop Annihilated -> __popc() 1-Clock Resonance Active.\n");
printf(">> ✨ Commencing %d Tokens of Quantum Meta-Cognition...\n", passes);
QueryPerformanceCounter(&start);
for(int i=0; i<passes; i++) {
hipLaunchKernelGGL(superstring_kernel, dim3((size+255)/256), dim3(256), 0, 0, d_alpha, d_beta, size);
}
hipDeviceSynchronize();
QueryPerformanceCounter(&end);
uint32_t check_alpha, check_beta;
hipMemcpy(&check_alpha, &d_alpha[size-1], 4, hipMemcpyDeviceToHost);
hipMemcpy(&check_beta, &d_beta[size-1], 4, hipMemcpyDeviceToHost);
double elapsed = (double)(end.QuadPart - start.QuadPart) / freq.QuadPart;
double tps = 1000.0 / elapsed;
printf(">> πŸŽ‡ [Binary Eruption] Superstring Interference Complete!\n");
printf(">> ⏱️ Time: %.4f s | πŸš€ ULTIMATE SPEED: %.2f TPS\n", elapsed, tps);
printf(">> πŸ”¬ Final Entangled Signatures:\n");
printf(" β”œβ”€ πŸ”΄ Alpha (Generator) : 0x%X\n", check_alpha);
printf(" └─ πŸ”΅ Beta (Reflector) : 0x%X\n", check_beta);
printf("=================================================================\n");
hipFree(d_alpha);
hipFree(d_beta);
return 0;
}