bitrev32
crc = bitrev32(~xgbe_vid_crc32_le(vid_le)) >> 28;
crc = bitrev32(~crc32_le(~0, ha->addr, ETH_ALEN));
crc = bitrev32(~crc32_le(~0, ha->addr, ETH_ALEN));
crc = bitrev32(crc);
crc = bitrev32(crc);
crc = bitrev32(crc);
crc = bitrev32(crc);
return bitrev32(v) >> (BITS_PER_TYPE(v) - len);
crc = crc32c(bitrev32(ETH_MULTICAST_BIN_FROM_MAC_SEED), padded_mac,
int bit_nr = bitrev32(~crc32_le(~0, ha->addr, 6)) >> 26;
int bit_nr = bitrev32(~crc32_le(~0, ha->addr,
u32 bit_nr = bitrev32(~crc32_le(~0, ha->addr,
u32 nr = (bitrev32(~crc32_le(~0, ha->addr, 6)) >>
crc = bitrev32(~stmmac_vid_crc32_le(vid_le)) >> 28;
hash = bitrev32(~crc32_le(~0, addr, 6)) >> mc_offset;
u32 nr = bitrev32(~crc32_le(~0, ha->addr, ETH_ALEN)) >> mc_offset;
crc = bitrev32(~xlgmac_vid_crc32_le(vid_le)) >> 28;
crc = bitrev32(~crc32_le(~0, ha->addr, ETH_ALEN));
crc = bitrev32(~crc32_le(~0, ha->addr, ETH_ALEN));
fdb_slot = bitrev32(crc32_le(0, mac_fid, 8)) & PRUETH_SWITCH_FDB_MASK;
return bitrev32(crc) >> 16;
hoid->hash_reverse_bits = bitrev32(hoid->hash);
#define ether_crc(length, data) bitrev32(crc32_le(~0, data, length))
static_dtree[n].Code = bitrev32((u32)n) >> (32 - 5);
tree[n].Code = bitrev32((u32)(next_code[len]++)) >> (32 - len);
bitrev32(val);
bitrev32(val);
sample = bitrev32(temp);