18 #define DO1(buf,i)  {adler += (buf)[i]; sum2 += adler;} 
   19 #define DO2(buf,i)  DO1(buf,i); DO1(buf,i+1); 
   20 #define DO4(buf,i)  DO2(buf,i); DO2(buf,i+2); 
   21 #define DO8(buf,i)  DO4(buf,i); DO4(buf,i+4); 
   22 #define DO16(buf)   DO8(buf,0); DO8(buf,8); 
   31         unsigned long tmp = a >> 16; \ 
   33         a += (tmp << 4) - tmp; \ 
   38         if (a >= BASE) a -= BASE; \ 
   47         z_off64_t tmp = a >> 32; \ 
   49         a += (tmp << 8) - (tmp << 5) + tmp; \ 
   52         a += (tmp << 4) - tmp; \ 
   55         a += (tmp << 4) - tmp; \ 
   56         if (a >= BASE) a -= BASE; \ 
   59 #  define MOD(a) a %= BASE 
   60 #  define MOD28(a) a %= BASE 
   61 #  define MOD63(a) a %= BASE 
   65 uLong ZEXPORT 
adler32(uLong adler, 
const Bytef *buf, uInt len)
 
   71     sum2 = (adler >> 16) & 0xffff;
 
   82         return adler | (sum2 << 16);
 
   98         return adler | (sum2 << 16);
 
  102     while (len >= 
NMAX) {
 
  129     return adler | (sum2 << 16);
 
  145     rem = (unsigned)len2;
 
  146     sum1 = adler1 & 0xffff;
 
  149     sum1 += (adler2 & 0xffff) + 
BASE - 1;
 
  150     sum2 += ((adler1 >> 16) & 0xffff) + ((adler2 >> 16) & 0xffff) + 
BASE - rem;
 
  153     if (sum2 >= (
BASE << 1)) sum2 -= (
BASE << 1);
 
  155     return sum1 | (sum2 << 16);
 
uLong ZEXPORT adler32(uLong adler, const Bytef *buf, uInt len)
 
static constexpr double L
 
uLong ZEXPORT adler32_combine(uLong adler1, uLong adler2, z_off_t len2)
 
local uLong adler32_combine_(uLong adler1, uLong adler2, z_off64_t len2)
 
local uLong adler32_combine_ OF((uLong adler1, uLong adler2, z_off64_t len2))
 
uLong ZEXPORT adler32_combine64(uLong adler1, uLong adler2, z_off64_t len2)