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悶油瓶 回答

我最近也寫(xiě)過(guò)一個(gè)類似模擬登錄的,由于你的html里面已經(jīng)有Modulus和Exponent了,你可以直接利用rsa庫(kù)對(duì)密碼進(jìn)行加密。我用的是nodejs自己封裝的,PHP的應(yīng)該也有。

var RSAUtils = {};

var biRadixBase = 2;
var biRadixBits = 16;
var bitsPerDigit = biRadixBits;
var biRadix = 1 << 16; // = 2^16 = 65536
var biHalfRadix = biRadix >>> 1;
var biRadixSquared = biRadix * biRadix;
var maxDigitVal = biRadix - 1;
var maxInteger = 9999999999999998;

//1024 * 2 / 16 = 128 digits of storage.
//
var maxDigits;
var ZERO_ARRAY;
var bigZero, bigOne;

RSAUtils.BigInt = function(flag) {
  if (typeof flag == "boolean" && flag == true) {
    this.digits = null;
  } else {
    this.digits = ZERO_ARRAY.slice(0);
  }
  this.isNeg = false;
};

RSAUtils.setMaxDigits = function(value) {
  maxDigits = value;
  ZERO_ARRAY = new Array(maxDigits);
  for (var iza = 0; iza < ZERO_ARRAY.length; iza++) ZERO_ARRAY[iza] = 0;
  bigZero = new RSAUtils.BigInt();
  bigOne = new RSAUtils.BigInt();
  bigOne.digits[0] = 1;
};
RSAUtils.setMaxDigits(20);

//The maximum number of digits in base 10 you can convert to an
//integer without JavaScript throwing up on you.
var dpl10 = 15;

RSAUtils.biFromNumber = function(i) {
  var result = new RSAUtils.BigInt();
  result.isNeg = i < 0;
  i = Math.abs(i);
  var j = 0;
  while (i > 0) {
    result.digits[j++] = i & maxDigitVal;
    i = Math.floor(i / biRadix);
  }
  return result;
};

//lr10 = 10 ^ dpl10
var lr10 = RSAUtils.biFromNumber(1000000000000000);

RSAUtils.biFromDecimal = function(s) {
  var isNeg = s.charAt(0) == '-';
  var i = isNeg ? 1 : 0;
  var result;
  // Skip leading zeros.
  while (i < s.length && s.charAt(i) == '0') ++i;
  if (i == s.length) {
    result = new RSAUtils.BigInt();
  }
  else {
    var digitCount = s.length - i;
    var fgl = digitCount % dpl10;
    if (fgl == 0) fgl = dpl10;
    result = RSAUtils.biFromNumber(Number(s.substr(i, fgl)));
    i += fgl;
    while (i < s.length) {
      result = RSAUtils.biAdd(RSAUtils.biMultiply(result, lr10),
        RSAUtils.biFromNumber(Number(s.substr(i, dpl10))));
      i += dpl10;
    }
    result.isNeg = isNeg;
  }
  return result;
};

RSAUtils.biCopy = function(bi) {
  var result = new RSAUtils.BigInt(true);
  result.digits = bi.digits.slice(0);
  result.isNeg = bi.isNeg;
  return result;
};

RSAUtils.reverseStr = function(s) {
  var result = "";
  for (var i = s.length - 1; i > -1; --i) {
    result += s.charAt(i);
  }
  return result;
};

var hexatrigesimalToChar = [
  '0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
  'a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j',
  'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't',
  'u', 'v', 'w', 'x', 'y', 'z'
];

RSAUtils.biToString = function(x, radix) { // 2 <= radix <= 36
  var b = new RSAUtils.BigInt();
  b.digits[0] = radix;
  var qr = RSAUtils.biDivideModulo(x, b);
  var result = hexatrigesimalToChar[qr[1].digits[0]];
  while (RSAUtils.biCompare(qr[0], bigZero) == 1) {
    qr = RSAUtils.biDivideModulo(qr[0], b);
    digit = qr[1].digits[0];
    result += hexatrigesimalToChar[qr[1].digits[0]];
  }
  return (x.isNeg ? "-" : "") + RSAUtils.reverseStr(result);
};

RSAUtils.biToDecimal = function(x) {
  var b = new RSAUtils.BigInt();
  b.digits[0] = 10;
  var qr = RSAUtils.biDivideModulo(x, b);
  var result = String(qr[1].digits[0]);
  while (RSAUtils.biCompare(qr[0], bigZero) == 1) {
    qr = RSAUtils.biDivideModulo(qr[0], b);
    result += String(qr[1].digits[0]);
  }
  return (x.isNeg ? "-" : "") + RSAUtils.reverseStr(result);
};

var hexToChar = ['0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
  'a', 'b', 'c', 'd', 'e', 'f'];

RSAUtils.digitToHex = function(n) {
  var mask = 0xf;
  var result = "";
  for (i = 0; i < 4; ++i) {
    result += hexToChar[n & mask];
    n >>>= 4;
  }
  return RSAUtils.reverseStr(result);
};

RSAUtils.biToHex = function(x) {
  var result = "";
  var n = RSAUtils.biHighIndex(x);
  for (var i = RSAUtils.biHighIndex(x); i > -1; --i) {
    result += RSAUtils.digitToHex(x.digits[i]);
  }
  return result;
};

RSAUtils.charToHex = function(c) {
  var ZERO = 48;
  var NINE = ZERO + 9;
  var littleA = 97;
  var littleZ = littleA + 25;
  var bigA = 65;
  var bigZ = 65 + 25;
  var result;

  if (c >= ZERO && c <= NINE) {
    result = c - ZERO;
  } else if (c >= bigA && c <= bigZ) {
    result = 10 + c - bigA;
  } else if (c >= littleA && c <= littleZ) {
    result = 10 + c - littleA;
  } else {
    result = 0;
  }
  return result;
};

RSAUtils.hexToDigit = function(s) {
  var result = 0;
  var sl = Math.min(s.length, 4);
  for (var i = 0; i < sl; ++i) {
    result <<= 4;
    result |= RSAUtils.charToHex(s.charCodeAt(i));
  }
  return result;
};

RSAUtils.biFromHex = function(s) {
  var result = new RSAUtils.BigInt();
  var sl = s.length;
  for (var i = sl, j = 0; i > 0; i -= 4, ++j) {
    result.digits[j] = RSAUtils.hexToDigit(s.substr(Math.max(i - 4, 0), Math.min(i, 4)));
  }
  return result;
};

RSAUtils.biFromString = function(s, radix) {
  var isNeg = s.charAt(0) == '-';
  var istop = isNeg ? 1 : 0;
  var result = new RSAUtils.BigInt();
  var place = new RSAUtils.BigInt();
  place.digits[0] = 1; // radix^0
  for (var i = s.length - 1; i >= istop; i--) {
    var c = s.charCodeAt(i);
    var digit = RSAUtils.charToHex(c);
    var biDigit = RSAUtils.biMultiplyDigit(place, digit);
    result = RSAUtils.biAdd(result, biDigit);
    place = RSAUtils.biMultiplyDigit(place, radix);
  }
  result.isNeg = isNeg;
  return result;
};

RSAUtils.biDump = function(b) {
  return (b.isNeg ? "-" : "") + b.digits.join(" ");
};

RSAUtils.biAdd = function(x, y) {
  var result;

  if (x.isNeg != y.isNeg) {
    y.isNeg = !y.isNeg;
    result = RSAUtils.biSubtract(x, y);
    y.isNeg = !y.isNeg;
  }
  else {
    result = new RSAUtils.BigInt();
    var c = 0;
    var n;
    for (var i = 0; i < x.digits.length; ++i) {
      n = x.digits[i] + y.digits[i] + c;
      result.digits[i] = n % biRadix;
      c = Number(n >= biRadix);
    }
    result.isNeg = x.isNeg;
  }
  return result;
};

RSAUtils.biSubtract = function(x, y) {
  var result;
  if (x.isNeg != y.isNeg) {
    y.isNeg = !y.isNeg;
    result = RSAUtils.biAdd(x, y);
    y.isNeg = !y.isNeg;
  } else {
    result = new RSAUtils.BigInt();
    var n, c;
    c = 0;
    for (var i = 0; i < x.digits.length; ++i) {
      n = x.digits[i] - y.digits[i] + c;
      result.digits[i] = n % biRadix;
      // Stupid non-conforming modulus operation.
      if (result.digits[i] < 0) result.digits[i] += biRadix;
      c = 0 - Number(n < 0);
    }
    // Fix up the negative sign, if any.
    if (c == -1) {
      c = 0;
      for (var i = 0; i < x.digits.length; ++i) {
        n = 0 - result.digits[i] + c;
        result.digits[i] = n % biRadix;
        // Stupid non-conforming modulus operation.
        if (result.digits[i] < 0) result.digits[i] += biRadix;
        c = 0 - Number(n < 0);
      }
      // Result is opposite sign of arguments.
      result.isNeg = !x.isNeg;
    } else {
      // Result is same sign.
      result.isNeg = x.isNeg;
    }
  }
  return result;
};

RSAUtils.biHighIndex = function(x) {
  var result = x.digits.length - 1;
  while (result > 0 && x.digits[result] == 0) --result;
  return result;
};

RSAUtils.biNumBits = function(x) {
  var n = RSAUtils.biHighIndex(x);
  var d = x.digits[n];
  var m = (n + 1) * bitsPerDigit;
  var result;
  for (result = m; result > m - bitsPerDigit; --result) {
    if ((d & 0x8000) != 0) break;
    d <<= 1;
  }
  return result;
};

RSAUtils.biMultiply = function(x, y) {
  var result = new RSAUtils.BigInt();
  var c;
  var n = RSAUtils.biHighIndex(x);
  var t = RSAUtils.biHighIndex(y);
  var u, uv, k;

  for (var i = 0; i <= t; ++i) {
    c = 0;
    k = i;
    for (j = 0; j <= n; ++j, ++k) {
      uv = result.digits[k] + x.digits[j] * y.digits[i] + c;
      result.digits[k] = uv & maxDigitVal;
      c = uv >>> biRadixBits;
      //c = Math.floor(uv / biRadix);
    }
    result.digits[i + n + 1] = c;
  }
  // Someone give me a logical xor, please.
  result.isNeg = x.isNeg != y.isNeg;
  return result;
};

RSAUtils.biMultiplyDigit = function(x, y) {
  var n, c, uv;

  result = new RSAUtils.BigInt();
  n = RSAUtils.biHighIndex(x);
  c = 0;
  for (var j = 0; j <= n; ++j) {
    uv = result.digits[j] + x.digits[j] * y + c;
    result.digits[j] = uv & maxDigitVal;
    c = uv >>> biRadixBits;
    //c = Math.floor(uv / biRadix);
  }
  result.digits[1 + n] = c;
  return result;
};

RSAUtils.arrayCopy = function(src, srcStart, dest, destStart, n) {
  var m = Math.min(srcStart + n, src.length);
  for (var i = srcStart, j = destStart; i < m; ++i, ++j) {
    dest[j] = src[i];
  }
};

var highBitMasks = [0x0000, 0x8000, 0xC000, 0xE000, 0xF000, 0xF800,
  0xFC00, 0xFE00, 0xFF00, 0xFF80, 0xFFC0, 0xFFE0,
  0xFFF0, 0xFFF8, 0xFFFC, 0xFFFE, 0xFFFF];

RSAUtils.biShiftLeft = function(x, n) {
  var digitCount = Math.floor(n / bitsPerDigit);
  var result = new RSAUtils.BigInt();
  RSAUtils.arrayCopy(x.digits, 0, result.digits, digitCount,
    result.digits.length - digitCount);
  var bits = n % bitsPerDigit;
  var rightBits = bitsPerDigit - bits;
  for (var i = result.digits.length - 1, i1 = i - 1; i > 0; --i, --i1) {
    result.digits[i] = ((result.digits[i] << bits) & maxDigitVal) |
      ((result.digits[i1] & highBitMasks[bits]) >>>
        (rightBits));
  }
  result.digits[0] = ((result.digits[i] << bits) & maxDigitVal);
  result.isNeg = x.isNeg;
  return result;
};

var lowBitMasks = [0x0000, 0x0001, 0x0003, 0x0007, 0x000F, 0x001F,
  0x003F, 0x007F, 0x00FF, 0x01FF, 0x03FF, 0x07FF,
  0x0FFF, 0x1FFF, 0x3FFF, 0x7FFF, 0xFFFF];

RSAUtils.biShiftRight = function(x, n) {
  var digitCount = Math.floor(n / bitsPerDigit);
  var result = new RSAUtils.BigInt();
  RSAUtils.arrayCopy(x.digits, digitCount, result.digits, 0,
    x.digits.length - digitCount);
  var bits = n % bitsPerDigit;
  var leftBits = bitsPerDigit - bits;
  for (var i = 0, i1 = i + 1; i < result.digits.length - 1; ++i, ++i1) {
    result.digits[i] = (result.digits[i] >>> bits) |
      ((result.digits[i1] & lowBitMasks[bits]) << leftBits);
  }
  result.digits[result.digits.length - 1] >>>= bits;
  result.isNeg = x.isNeg;
  return result;
};

RSAUtils.biMultiplyByRadixPower = function(x, n) {
  var result = new RSAUtils.BigInt();
  RSAUtils.arrayCopy(x.digits, 0, result.digits, n, result.digits.length - n);
  return result;
};

RSAUtils.biDivideByRadixPower = function(x, n) {
  var result = new RSAUtils.BigInt();
  RSAUtils.arrayCopy(x.digits, n, result.digits, 0, result.digits.length - n);
  return result;
};

RSAUtils.biModuloByRadixPower = function(x, n) {
  var result = new RSAUtils.BigInt();
  RSAUtils.arrayCopy(x.digits, 0, result.digits, 0, n);
  return result;
};

RSAUtils.biCompare = function(x, y) {
  if (x.isNeg != y.isNeg) {
    return 1 - 2 * Number(x.isNeg);
  }
  for (var i = x.digits.length - 1; i >= 0; --i) {
    if (x.digits[i] != y.digits[i]) {
      if (x.isNeg) {
        return 1 - 2 * Number(x.digits[i] > y.digits[i]);
      } else {
        return 1 - 2 * Number(x.digits[i] < y.digits[i]);
      }
    }
  }
  return 0;
};

RSAUtils.biDivideModulo = function(x, y) {
  var nb = RSAUtils.biNumBits(x);
  var tb = RSAUtils.biNumBits(y);
  var origYIsNeg = y.isNeg;
  var q, r;
  if (nb < tb) {
    // |x| < |y|
    if (x.isNeg) {
      q = RSAUtils.biCopy(bigOne);
      q.isNeg = !y.isNeg;
      x.isNeg = false;
      y.isNeg = false;
      r = biSubtract(y, x);
      // Restore signs, 'cause they're references.
      x.isNeg = true;
      y.isNeg = origYIsNeg;
    } else {
      q = new RSAUtils.BigInt();
      r = RSAUtils.biCopy(x);
    }
    return [q, r];
  }

  q = new RSAUtils.BigInt();
  r = x;

  // Normalize Y.
  var t = Math.ceil(tb / bitsPerDigit) - 1;
  var lambda = 0;
  while (y.digits[t] < biHalfRadix) {
    y = RSAUtils.biShiftLeft(y, 1);
    ++lambda;
    ++tb;
    t = Math.ceil(tb / bitsPerDigit) - 1;
  }
  // Shift r over to keep the quotient constant. We'll shift the
  // remainder back at the end.
  r = RSAUtils.biShiftLeft(r, lambda);
  nb += lambda; // Update the bit count for x.
  var n = Math.ceil(nb / bitsPerDigit) - 1;

  var b = RSAUtils.biMultiplyByRadixPower(y, n - t);
  while (RSAUtils.biCompare(r, b) != -1) {
    ++q.digits[n - t];
    r = RSAUtils.biSubtract(r, b);
  }
  for (var i = n; i > t; --i) {
    var ri = (i >= r.digits.length) ? 0 : r.digits[i];
    var ri1 = (i - 1 >= r.digits.length) ? 0 : r.digits[i - 1];
    var ri2 = (i - 2 >= r.digits.length) ? 0 : r.digits[i - 2];
    var yt = (t >= y.digits.length) ? 0 : y.digits[t];
    var yt1 = (t - 1 >= y.digits.length) ? 0 : y.digits[t - 1];
    if (ri == yt) {
      q.digits[i - t - 1] = maxDigitVal;
    } else {
      q.digits[i - t - 1] = Math.floor((ri * biRadix + ri1) / yt);
    }

    var c1 = q.digits[i - t - 1] * ((yt * biRadix) + yt1);
    var c2 = (ri * biRadixSquared) + ((ri1 * biRadix) + ri2);
    while (c1 > c2) {
      --q.digits[i - t - 1];
      c1 = q.digits[i - t - 1] * ((yt * biRadix) | yt1);
      c2 = (ri * biRadix * biRadix) + ((ri1 * biRadix) + ri2);
    }

    b = RSAUtils.biMultiplyByRadixPower(y, i - t - 1);
    r = RSAUtils.biSubtract(r, RSAUtils.biMultiplyDigit(b, q.digits[i - t - 1]));
    if (r.isNeg) {
      r = RSAUtils.biAdd(r, b);
      --q.digits[i - t - 1];
    }
  }
  r = RSAUtils.biShiftRight(r, lambda);
  // Fiddle with the signs and stuff to make sure that 0 <= r < y.
  q.isNeg = x.isNeg != origYIsNeg;
  if (x.isNeg) {
    if (origYIsNeg) {
      q = RSAUtils.biAdd(q, bigOne);
    } else {
      q = RSAUtils.biSubtract(q, bigOne);
    }
    y = RSAUtils.biShiftRight(y, lambda);
    r = RSAUtils.biSubtract(y, r);
  }
  // Check for the unbelievably stupid degenerate case of r == -0.
  if (r.digits[0] == 0 && RSAUtils.biHighIndex(r) == 0) r.isNeg = false;

  return [q, r];
};

RSAUtils.biDivide = function(x, y) {
  return RSAUtils.biDivideModulo(x, y)[0];
};

RSAUtils.biModulo = function(x, y) {
  return RSAUtils.biDivideModulo(x, y)[1];
};

RSAUtils.biMultiplyMod = function(x, y, m) {
  return RSAUtils.biModulo(RSAUtils.biMultiply(x, y), m);
};

RSAUtils.biPow = function(x, y) {
  var result = bigOne;
  var a = x;
  while (true) {
    if ((y & 1) != 0) result = RSAUtils.biMultiply(result, a);
    y >>= 1;
    if (y == 0) break;
    a = RSAUtils.biMultiply(a, a);
  }
  return result;
};

RSAUtils.biPowMod = function(x, y, m) {
  var result = bigOne;
  var a = x;
  var k = y;
  while (true) {
    if ((k.digits[0] & 1) != 0) result = RSAUtils.biMultiplyMod(result, a, m);
    k = RSAUtils.biShiftRight(k, 1);
    if (k.digits[0] == 0 && RSAUtils.biHighIndex(k) == 0) break;
    a = RSAUtils.biMultiplyMod(a, a, m);
  }
  return result;
};


RSAUtils.BarrettMu = function(m) {
  this.modulus = RSAUtils.biCopy(m);
  this.k = RSAUtils.biHighIndex(this.modulus) + 1;
  var b2k = new RSAUtils.BigInt();
  b2k.digits[2 * this.k] = 1; // b2k = b^(2k)
  this.mu = RSAUtils.biDivide(b2k, this.modulus);
  this.bkplus1 = new RSAUtils.BigInt();
  this.bkplus1.digits[this.k + 1] = 1; // bkplus1 = b^(k+1)
  this.modulo = RSAUtils.BarrettMu_modulo;
  this.multiplyMod = RSAUtils.BarrettMu_multiplyMod;
  this.powMod = RSAUtils.BarrettMu_powMod;
};

RSAUtils.BarrettMu_modulo = function(x) {
  var q1 = RSAUtils.biDivideByRadixPower(x, this.k - 1);
  var q2 = RSAUtils.biMultiply(q1, this.mu);
  var q3 = RSAUtils.biDivideByRadixPower(q2, this.k + 1);
  var r1 = RSAUtils.biModuloByRadixPower(x, this.k + 1);
  var r2term = RSAUtils.biMultiply(q3, this.modulus);
  var r2 = RSAUtils.biModuloByRadixPower(r2term, this.k + 1);
  var r = RSAUtils.biSubtract(r1, r2);
  if (r.isNeg) {
    r = RSAUtils.biAdd(r, this.bkplus1);
  }
  var rgtem = RSAUtils.biCompare(r, this.modulus) >= 0;
  while (rgtem) {
    r = RSAUtils.biSubtract(r, this.modulus);
    rgtem = RSAUtils.biCompare(r, this.modulus) >= 0;
  }
  return r;
}

RSAUtils.BarrettMu_multiplyMod = function(x, y) {
  /*
    x = this.modulo(x);
    y = this.modulo(y);
    */
  var xy = RSAUtils.biMultiply(x, y);
  return this.modulo(xy);
}

RSAUtils.BarrettMu_powMod = function(x, y) {
  var result = new RSAUtils.BigInt();
  result.digits[0] = 1;
  var a = x;
  var k = y;
  while (true) {
    if ((k.digits[0] & 1) != 0) result = this.multiplyMod(result, a);
    k = RSAUtils.biShiftRight(k, 1);
    if (k.digits[0] == 0 && RSAUtils.biHighIndex(k) == 0) break;
    a = this.multiplyMod(a, a);
  }
  return result;
}

function RSAKeyPair(encryptionExponent, decryptionExponent, modulus) {
  this.e = RSAUtils.biFromHex(encryptionExponent);
  this.d = RSAUtils.biFromHex(decryptionExponent);
  this.m = RSAUtils.biFromHex(modulus);
  // We can do two bytes per digit, so
  // chunkSize = 2 * (number of digits in modulus - 1).
  // Since biHighIndex returns the high index, not the number of digits, 1 has
  // already been subtracted.
  this.chunkSize = 2 * RSAUtils.biHighIndex(this.m);
  this.radix = 16;
  this.barrett = new RSAUtils.BarrettMu(this.m);
};

RSAUtils.getKeyPair = function(encryptionExponent, decryptionExponent, modulus) {
  return new RSAKeyPair(encryptionExponent, decryptionExponent, modulus);
};

RSAUtils.twoDigit = function(n) {
  return (n < 10 ? "0" : "") + String(n);
};

RSAUtils.encryptedString = function(key, s) {
  var a = [];
  var sl = s.length;
  var i = 0;
  while (i < sl) {
    a[i] = s.charCodeAt(i);
    i++;
  }

  while (a.length % key.chunkSize != 0) {
    a[i++] = 0;
  }

  var al = a.length;
  var result = "";
  var j, k, block;
  for (i = 0; i < al; i += key.chunkSize) {
    block = new RSAUtils.BigInt();
    j = 0;
    for (k = i; k < i + key.chunkSize; ++j) {
      block.digits[j] = a[k++];
      block.digits[j] += a[k++] << 8;
    }
    var crypt = key.barrett.powMod(block, key.e);
    var text = key.radix == 16 ? RSAUtils.biToHex(crypt) : RSAUtils.biToString(crypt, key.radix);
    result += text + " ";
  }
  return result.substring(0, result.length - 1); // Remove last space.
};

RSAUtils.decryptedString = function(key, s) {
  var blocks = s.split(" ");
  var result = "";
  var i, j, block;
  for (i = 0; i < blocks.length; ++i) {
    var bi;
    if (key.radix == 16) {
      bi = RSAUtils.biFromHex(blocks[i]);
    }
    else {
      bi = RSAUtils.biFromString(blocks[i], key.radix);
    }
    block = key.barrett.powMod(bi, key.d);
    for (j = 0; j <= RSAUtils.biHighIndex(block); ++j) {
      result += String.fromCharCode(block.digits[j] & 255,
        block.digits[j] >> 8);
    }
  }
  // Remove trailing null, if any.
  if (result.charCodeAt(result.length - 1) == 0) {
    result = result.substring(0, result.length - 1);
  }
  return result;
};

RSAUtils.setMaxDigits(130);

module.exports = RSAUtils;

使用方式也:

var RSAUtils = require('./RSA')

// 獲取RSA的公鑰,計(jì)算加密后的用戶名、密碼
function step_2(result) {
  return new Promise((resolve, reject) => {
    console.log(`即將訪問(wèn):${url_get_key}`)
    request.post({
      url: url_get_key
    }, (err, r, body) => {
      let publicKeyModulus, publicKeyExponent
      let obj = JSON.parse(body)
      publicKeyModulus = obj.publicKeyModulus
      publicKeyExponent = obj.publicKeyExponent
      let key = new RSAUtils.getKeyPair(publicKeyExponent, '', publicKeyModulus)
      let username_encrypted = RSAUtils.encryptedString(key, user_name.split('').reverse().join(''))
      let passwd_encrypted = RSAUtils.encryptedString(key, passwd.split('').reverse().join(''))
      result.publicKeyModulus = publicKeyModulus
      result.publicKeyExponent = publicKeyExponent
      result.username_encrypted = username_encrypted
      result.passwd_encrypted = passwd_encrypted
      resolve(result)
    })
  })
}
離夢(mèng) 回答

找到error.log,然后tail -f error.log開(kāi)著就好。

另外可以在文件頭加上

<?php
error_reporting(E_ALL);
ini_set('display_errors', 'off');

可以動(dòng)態(tài)控制報(bào)錯(cuò)級(jí)別和是否在用戶端顯示。錯(cuò)誤級(jí)別的常量參考預(yù)定義常量

魚(yú)梓 回答

js 不太清楚,
PHP 可以參考:number_format

何蘇葉 回答

我個(gè)人的理解:
1、程序中生產(chǎn)者和消費(fèi)者分開(kāi)了,生產(chǎn)著和消費(fèi)者各自做自己的,這是異步
2、生產(chǎn)者生產(chǎn)完通知消費(fèi)者進(jìn)行處理,這中間對(duì)消息隊(duì)列的操作需要進(jìn)行同步,否則可能會(huì)出異常

情皺 回答

用ng-options啊

https://docs.angularjs.org/ap...

<select ng-options="item as item.label for item in items track by item.id" ng-model="selected"></select>
網(wǎng)妓 回答

1.文檔里說(shuō)的如果是snsapi_base就給你openid是什么意思???snsapi_userinfo也給的?。。。?br>兩種都給,沒(méi)說(shuō)snsapi_userinfo不給。
2.snsapi_base是靜默授權(quán),而且也可以獲得用來(lái)?yè)Q取用戶信息code,這對(duì)用戶來(lái)說(shuō)豈不是很危險(xiǎn)???
snsapi_base不可以獲取用戶信息。
3.《snsapi_base式的網(wǎng)頁(yè)授權(quán)流程即到此為止》是什么意思???我明明還想獲取用戶信息,為什么讓我到此為止???
到此為止是因?yàn)槟阋呀?jīng)拿到了openid,再往下走就是獲取用戶信息了,和snsapi_base沒(méi)關(guān)系,所以結(jié)束了。
想要獲取用戶信息需要用snsapi_userinfo參數(shù)。
好好用心看文檔。

你的瞳 回答

...你看的沒(méi)有錯(cuò),有個(gè)寫(xiě)順序的文章,但我忘了所以就不妨上來(lái)了。一,先 from 確定你需求的字段,二,where 對(duì)數(shù)據(jù)進(jìn)行篩選,所以在性能提升方面,where 的作用很重要。而這是一個(gè)虛擬表就已經(jīng)生成了,而不存在你說(shuō)的 having 時(shí)還沒(méi)有 d 這個(gè)列。

憶往昔 回答

支持任意數(shù)量組合,其中combine($arr, 3)方法中的3表示以3個(gè)為1組。
這些組合中去除了會(huì)出現(xiàn)重復(fù)數(shù)字的組合。

<?php
$arr = [1, 2, 3, 4, 5];

function combine($arr, $length) {
    $result = [];
    _combine($arr, $length, 0, [], $result);
    return $result;
}

function _combine($arr, $length, $start, $path, &$result) {
    if(count($path)==$length) {
        return $result[] = $path;
    }
    for ($i=$start; $i<count($arr); $i++) {
        if($i==$start || $arr[$i]!=$arr[$i-1]) {
            $path[]=$arr[$i];
            _combine($arr, $length, $i+1, $path, $result);
            array_pop($path);
        }
    } 
}

var_dump(combine($arr, 3));

?>
焚音 回答

個(gè)人覺(jué)得,5萬(wàn)條數(shù)據(jù)還不是太多,需要一分鐘,確實(shí)太慢了。你可以考慮先添加索引試試,然后在適當(dāng)?shù)奶砑泳彺???duì)了,有沒(méi)有連表啥的?如果連表了,記得把表中數(shù)據(jù)少的放在前面查詢,或者不用連表...

遲月 回答

默認(rèn)下載的是穩(wěn)定版,而你提交的是dev版,所以找不到,改為下載dev版本試試。

minimum-stability

硬扛 回答

你可以看成隊(duì)列,就是一個(gè)商城,既然商城的貨銷售不出去,那就是證明消費(fèi)者不夠,消費(fèi)者不夠,那就增加消費(fèi)者.將隊(duì)列分批.分成多個(gè)隊(duì)列來(lái)執(zhí)行.就是多個(gè)消費(fèi)者.這樣,消費(fèi)者夠了.然后就是數(shù)據(jù)庫(kù)的問(wèn)題.是否可以考慮從數(shù)據(jù)庫(kù)中脫離出來(lái).利用redis的隊(duì)列.然后通過(guò)redis來(lái)同步數(shù)據(jù)庫(kù).這樣是不是就減輕了數(shù)據(jù)庫(kù)的壓力.

念初 回答

引用一般是用在方法的參數(shù)傳遞吧,沒(méi)這樣用過(guò)

a標(biāo)簽有個(gè)download的屬性

<a href="images/tupian.jpg" download="tupian">下載圖片</a>
情已空 回答
  1. 類內(nèi)變量。public,protected 訪問(wèn)控制繼承下去
  2. 類內(nèi)常量。public 可以被子類繼承并且外部訪問(wèn)
  3. 不建議用全局變量,常量以及類內(nèi)靜態(tài)變量
柚稚 回答

MariaDB 是 MySQL 的分支,完全兼容 MySQL 命令,PHP7 用 MariaDB 沒(méi)有問(wèn)題。

MariaDB數(shù)據(jù)庫(kù)管理系統(tǒng)是MySQL的一個(gè)分支,主要由開(kāi)源社區(qū)在維護(hù),采用GPL授權(quán)許可。開(kāi)發(fā)這個(gè)分支的原因之一是:甲骨文公司收購(gòu)了MySQL后,有將MySQL閉源的潛在風(fēng)險(xiǎn),因此社區(qū)采用分支的方式來(lái)避開(kāi)這個(gè)風(fēng)險(xiǎn)。

MariaDB的目的是完全兼容MySQL,包括API和命令行,使之能輕松成為MySQL的代替品。在存儲(chǔ)引擎方面,10.0.9版起使用XtraDB(名稱代號(hào)為Aria)來(lái)代替MySQL的InnoDB。

MariaDB由MySQL的創(chuàng)始人麥克爾·維德紐斯主導(dǎo)開(kāi)發(fā),他早前曾以10億美元的價(jià)格,將自己創(chuàng)建的公司MySQL
AB賣給了SUN,此后,隨著SUN被甲骨文收購(gòu),MySQL的所有權(quán)也落入Oracle的手中。MariaDB名稱來(lái)自麥克爾·維德紐斯的女兒瑪麗亞(英語(yǔ):Maria)的名字。

念舊 回答
  1. 有時(shí)候不單是錢的問(wèn)題,比如12306
  2. 流量大了肯定要多出錢(如果不想眼瞅著它癱瘓的話),但不是多出點(diǎn)錢網(wǎng)站體驗(yàn)就上去了,所以才需要優(yōu)化
  3. 別死摳字眼