// Explode it
$data = explode(':', $checkPoint);
- // 1st element is nonce, 2nd hash
- $nonce = $data[0];
- $modulaHash = $data[1];
+ // Assert on count
+ assert(count($data) == 3);
+
+ // 1st element is nonce, 2nd hash, 3rd found hashes
+ $nonce = base64_decode($data[0]);
+ $modulaHash = $data[1];
+ $foundHashes = unserialize(base64_decode($data[2]));
} else {
// Create nonce (small)
$nonce = 1 / mt_rand();
// Output again
print ('modulaHash=' . $modulaHash . PHP_EOL);
print ('nonce=' . $nonce . PHP_EOL);
+print ('found=' . count($foundHashes) . PHP_EOL);
// Start "mining"
while (TRUE) {
$hashrate = 0;
// Wait for BLOCK_SIZE iterations (= found hashes). This is one block
- $timeBlock = microtime(TRUE);
+ $timeBlock = microtime(TRUE);
$timeDisplay = $timeBlock;
+ $timeFlush = $timeBlock;
// Time waited for a good block again (no iteration)
$timeBadHashes = 0;
$iterSecond = 0;
} // END - if
+ // Time spend from last flush
+ $testTime = abs(microtime(TRUE) - $timeFlush);
+
+ // Only once per 10 seconds
+ if ($testTime >= 10) {
+ // Display message
+ print ('FLUSHING: ' . count($foundHashes) . ' total found.' . PHP_EOL);
+
+ // Write check-point
+ file_put_contents(CHECK_POINT, base64_encode($nonce) . ':' . $modulaHash . ':' . base64_encode(serialize($foundHashes)));
+
+ $timeFlush = microtime(TRUE);
+ } // END - if
+
// Next round
$iter++;
$iterSecond++;
// Add amount of hashes per block (double-hash)
$hashesPerBlock += $iter * 2 + 2;
- array_push($foundHashes, $nonceHash);
+
+ // Push found hash
+ array_push($foundHashes, array(
+ 'modula_hash' => $modulaHash,
+ 'nonce' => $nonce,
+ 'iter' => $iter,
+ 'hashes_block' => $hashesPerBlock,
+ 'nonce_hash' => $nonceHash
+ ));
// Found hash:
print ('FOUND: nonceHash=' . $nonceHash . ',nonce=' . $nonce . ',iter=' . $iter . PHP_EOL);
- // Write check-point
- file_put_contents(CHECK_POINT, $nonce . ':' . $nonceHash);
// Use nonceHash as next modula hash
$modulaHash = $nonceHash;