reduced kernel launches for more efficiency
Signed-off-by: RubenCGomes <rlcg@ua.pt>
This commit is contained in:
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a906816cd4
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111aa0fa74
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@ -38,7 +38,7 @@ static void reconstruct_coin(u32_t *stored_data, u32_t coin[14])
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//
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// Mine DETI coins using CUDA
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//
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static void mine_coins_cuda(u64_t max_attempts, int use_scan_kernel)
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static void mine_coins_cuda(u64_t max_attempts)
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{
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cuda_data_t cd;
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u32_t *host_storage;
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@ -49,7 +49,7 @@ static void mine_coins_cuda(u64_t max_attempts, int use_scan_kernel)
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// Initialize CUDA
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cd.device_number = 0;
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cd.cubin_file_name = "coin_miner_cuda_kernel.cubin";
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cd.kernel_name = use_scan_kernel ? "mine_deti_coins_scan_kernel" : "mine_deti_coins_kernel";
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cd.kernel_name = "mine_deti_coins_kernel";
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cd.data_size[0] = COINS_STORAGE_SIZE * sizeof(u32_t);
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cd.data_size[1] = 0;
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@ -69,12 +69,10 @@ static void mine_coins_cuda(u64_t max_attempts, int use_scan_kernel)
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printf("Kernel: %s\n", cd.kernel_name);
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printf("Press Ctrl+C to stop\n\n");
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u32_t param1 = (u32_t)time(NULL);
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u32_t param2 = 0x12345678u;
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int scan_pos = 12;
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u64_t base_nonce = 0;
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u32_t attempts_per_thread = 1024 * 8; // Increased attempts per thread
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time_measurement();
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// double start_time = wall_time_delta();
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while(keep_running && (max_attempts == 0 || attempts < max_attempts))
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{
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@ -85,12 +83,10 @@ static void mine_coins_cuda(u64_t max_attempts, int use_scan_kernel)
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host_to_device_copy(&cd, 0);
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// Set kernel arguments
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cd.n_kernel_arguments = use_scan_kernel ? 4 : 3;
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cd.n_kernel_arguments = 2;
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cd.arg[0] = &cd.device_data[0];
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cd.arg[1] = ¶m1;
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cd.arg[2] = ¶m2;
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if(use_scan_kernel)
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cd.arg[3] = &scan_pos;
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cd.arg[1] = &base_nonce;
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cd.arg[2] = &attempts_per_thread;
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// Launch the CUDA kernel
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launch_kernel(&cd);
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@ -104,58 +100,24 @@ static void mine_coins_cuda(u64_t max_attempts, int use_scan_kernel)
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if(n_stored > 0 && host_storage[0] < COINS_STORAGE_SIZE)
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{
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printf("DEBUG: host_storage[0] = %u, n_stored = %u\n", host_storage[0], n_stored);
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for(u32_t i = 0; i < n_stored; i++)
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{
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u32_t coin[14];
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reconstruct_coin(&host_storage[1 + i * 14], coin);
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// Verify it's actually a valid coin
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u32_t hash[5];
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sha1(coin, hash);
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printf("DEBUG: Coin %u - hash[0] = 0x%08X (expected 0xAAD20250)\n", i, hash[0]);
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// Print the coin as string
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if(i == 0) {
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printf("DEBUG: First coin content: ");
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u08_t *bytes = (u08_t *)coin;
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for(int j = 0; j < 55; j++) {
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char c = bytes[j ^ 3];
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if(c >= 32 && c <= 126)
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printf("%c", c);
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else
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printf("[0x%02X]", (u08_t)c);
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}
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printf("\n");
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}
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if(hash[0] == 0xAAD20250u)
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{
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coins_found++;
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n_coins_this_kernel++;
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printf("COIN FOUND! (kernel %u, coin %u in this kernel)\n",
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kernel_runs, n_coins_this_kernel);
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printf("COIN FOUND! (kernel %u, coin %u in this kernel). Total coins:%u\n",
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kernel_runs, n_coins_this_kernel, coins_found);
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save_coin(coin);
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}
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}
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}
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// Update counters
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kernel_runs++;
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if(use_scan_kernel)
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attempts += n_threads * 256; // Each thread tries 256 values
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else
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attempts += n_threads;
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// Update parameters for next iteration
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param1++;
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param2 = param2 ^ 0x9E3779B9u;
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if(use_scan_kernel)
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scan_pos = (scan_pos + 1) % 42 + 12; // Cycle through positions 12-53
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u64_t attempts_this_launch = (u64_t)n_threads * attempts_per_thread;
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attempts += attempts_this_launch;
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base_nonce += attempts_this_launch;
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}
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time_measurement();
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@ -178,20 +140,13 @@ static void mine_coins_cuda(u64_t max_attempts, int use_scan_kernel)
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int main(int argc, char *argv[])
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{
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u64_t max_attempts = 0;
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int use_scan_kernel = 0;
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signal(SIGINT, signal_handler);
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if(argc > 1)
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max_attempts = strtoull(argv[1], NULL, 10);
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if(argc > 2 && strcmp(argv[2], "scan") == 0)
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{
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use_scan_kernel = 1;
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printf("Using scan kernel (tries 256 values per thread)\n");
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}
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mine_coins_cuda(max_attempts, use_scan_kernel);
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mine_coins_cuda(max_attempts);
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return 0;
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}
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@ -13,7 +13,7 @@
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//
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extern "C" __global__ __launch_bounds__(RECOMMENDED_CUDA_BLOCK_SIZE,1)
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void mine_deti_coins_kernel(u32_t *coins_storage_area, u32_t param1, u32_t param2)
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void mine_deti_coins_kernel(u32_t *coins_storage_area, u64_t base_nonce, u32_t attempts_per_thread)
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{
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u32_t coin[14];
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u32_t hash[5];
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@ -25,23 +25,27 @@ void mine_deti_coins_kernel(u32_t *coins_storage_area, u32_t param1, u32_t param
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// Initialize coin template: "DETI coin 2 " + variable + "\n\x80"
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// Use byte-swapped format to match host expectations (idx ^ 3)
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coin[0] = 0x44455449u; // "DETI" with byte swap
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coin[1] = 0x20636F69u; // " coi" with byte swap
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coin[2] = 0x6E203220u; // "n 2 " with byte swap
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coin[0] = ('D' << 24) + ('E' << 16) + ('T' << 8) + 'I';
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coin[1] = (' ' << 24) + ('c' << 16) + ('o' << 8) + 'i';
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coin[2] = ('n' << 24) + (' ' << 16) + ('2' << 8) + ' ';
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// Initialize variable part (positions 12-53, 42 bytes)
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// Start with A-Z pattern like CPU/SIMD miners
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for(int i = 12; i < 54; i++)
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bytes[i ^ 3] = 'A' + ((i - 12) % 26);
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// Fill the variable part of the coin with a pattern
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for(int i = 3; i < 14; i++)
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coin[i] = 0x41414141; // 'AAAA'
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// End with newline and padding
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bytes[0x36 ^ 3] = '\n'; // Position 54
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bytes[0x37 ^ 3] = 0x80; // Position 55
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for(u32_t i = 0; i < attempts_per_thread; ++i) {
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// Initialize variable part (positions 12-53, 42 bytes)
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// Start with A-Z pattern like CPU/SIMD miners
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for(int j = 12; j < 54; j++)
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bytes[j ^ 3] = 'A' + ((j - 12) % 26);
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// Calculate offset based on thread index and parameters
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// This creates a unique starting point for each thread
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u64_t offset = ((u64_t)param1 << 32) | param2;
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offset += (u64_t)n;
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u64_t offset = base_nonce + n + (u64_t)i * gridDim.x * blockDim.x;
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// Apply offset to variable part (increment the coin counter)
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for(int pos = 53; pos >= 12 && offset > 0; pos--)
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@ -84,100 +88,9 @@ void mine_deti_coins_kernel(u32_t *coins_storage_area, u32_t param1, u32_t param
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if(idx < 1024u - 14u)
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{
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// Store the complete coin data
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for(int i = 0; i < 14; i++)
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coins_storage_area[idx + i] = coin[i];
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}
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}
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}
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//
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// Kernel that tries all possible values for one character position
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//
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extern "C" __global__ __launch_bounds__(RECOMMENDED_CUDA_BLOCK_SIZE,1)
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void mine_deti_coins_scan_kernel(u32_t *coins_storage_area, u32_t param1, u32_t param2, int scan_position)
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{
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u32_t coin[14];
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u32_t hash[5];
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u32_t n;
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u08_t *bytes = (u08_t *)coin;
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n = (u32_t)threadIdx.x + (u32_t)blockDim.x * (u32_t)blockIdx.x;
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// Initialize coin template (with byte swap for idx ^ 3 convention)
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coin[0] = 0x44455449u; // "DETI" with byte swap
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coin[1] = 0x20636F69u; // " coi" with byte swap
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coin[2] = 0x6E203220u; // "n 2 " with byte swap
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// Initialize variable part with A-Z pattern
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for(int i = 12; i < 54; i++)
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bytes[i ^ 3] = 'A' + ((i - 12) % 26);
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// End with newline and padding
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bytes[0x36 ^ 3] = '\n'; // Position 54
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bytes[0x37 ^ 3] = 0x80; // Position 55
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// Apply base offset from parameters (similar to main kernel)
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u64_t offset = ((u64_t)param1 << 32) | param2;
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offset += (u64_t)n;
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// Apply offset to all positions except the scan position
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for(int pos = 53; pos >= 12 && offset > 0; pos--)
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{
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if(pos == scan_position)
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continue; // Skip the scan position
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u08_t *byte = &bytes[pos ^ 3];
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u64_t add = offset % 95;
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offset /= 95;
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u32_t val = (*byte - 32 + add);
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u08_t new_val = 32 + (val % 95);
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// Skip newline character (ASCII 10) in the variable part
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if(new_val == '\n')
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new_val++;
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*byte = new_val;
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offset += val / 95;
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}
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// Try all possible printable ASCII values for the scan position (32-126)
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for(u32_t val = 32; val < 127; val++)
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{
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// Set the test value at the scan position
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if(scan_position >= 12 && scan_position < 54)
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{
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bytes[scan_position ^ 3] = (u08_t)val;
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// Skip newline in the middle (it's only valid at position 54)
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if(scan_position != 54 && val == '\n')
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continue;
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}
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// Compute SHA1 hash
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# define T u32_t
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# define C(c) (c)
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# define ROTATE(x,n) (((x) << (n)) | ((x) >> (32 - (n))))
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# define DATA(idx) coin[idx]
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# define HASH(idx) hash[idx]
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CUSTOM_SHA1_CODE();
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# undef T
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# undef C
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# undef ROTATE
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# undef DATA
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# undef HASH
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// Check if valid coin
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if(hash[0] == 0xAAD20250u)
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{
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u32_t idx = atomicAdd(coins_storage_area, 14u);
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if(idx < 1024u - 14u)
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{
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for(int i = 0; i < 14; i++)
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coins_storage_area[idx + i] = coin[i];
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for(int k = 0; k < 14; k++)
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coins_storage_area[idx + k] = coin[k];
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}
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}
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}
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}
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