索引 常量 funcChecksum(data[]byte,tab*Table)uint64 funcNew(tab*Table)hash.Hash64 funcUpdate(crcuint64,tab
funcAddUint64Source funcAddUint64(addr*uint64,deltauint64)(newuint64) AddUint64自动地将增量添加到*addr并返回新值。
vfloat64,imaxuint64)*Zipf func(z*Zipf)Uint64()uint64 示例 PackagePermPackage(Rand) 打包文件 exp.gonormal.gorand.gorng.gozipf.go
xint64)int funcRead(rio.Reader,orderByteOrder,datainterface{})error funcReadUvarint(rio.ByteReader)(uint64
funcUint64(显示源代码) funcUint64(namestring,valueuint64,usagestring)*uint64 Uint64定义了一个具有指定名称,默认值和用法字符串的uint64
funcReverse(xuint)uint funcReverse16(xuint16)uint16 funcReverse32(xuint32)uint32 funcReverse64(xuint64)uint64
PRIO8PRIO16PRIO32PRIOLEAST8PRIOLEAST16PRIOLEAST32PRIOAST64PRIOFAST8PRIOFAST16PRIOFAST32PRIOFAST32PRIOFAST64PRIOMAXLOPTR格式转换说明符,输出STD类型的无符号整数值::uint8[医]T,STD::Uint16[医]T,STD::Uint32[医]T,STD::Uint64
索引 常量 funcBswap32(xuint32)uint32 funcBswap64(xuint64)uint64 funcCtz32(xuint32)int funcCtz64(xuint64)int
typeHash64interface{HashSum64()uint64} 子目录 Name概要
typeLineTable funcNewLineTable(data[]byte,textuint64)*LineTable func(t*LineTable)LineToPC(lineint,maxpcuint64)uint64
()(uint64,Accuracy) func(z*Float)UnmarshalText(text[]byte)error typeInt funcNewInt(xint64)*Int func(z
一个例子是math.Float64bits的实现: funcFloat64bits(ffloat64)uint64{return*(*uint64)(unsafe.Pointer(&f))} (2)将指针转换为
)i,err:=strconv.ParseInt("-42",10,64)u,err:=strconv.ParseUint("42",10,64) 解析函数返回最宽的类型(float64,int64和uint64
funcInt64Val(xValue)(int64,bool) funcSign(xValue)int funcStringVal(xValue)string funcUint64Val(xValue)(uint64
types[]byte)error func(d*Data)LineReader(cu*Entry)(*LineReader,error) func(d*Data)Ranges(e*Entry)([][2]uint64
vValue)TryRecv()(xValue,okbool) func(vValue)TrySend(xValue)bool func(vValue)Type()Type func(vValue)Uint()uint64
宏常数%29 无符号整数:最大值 UINT8[医]MAXUINT16[医]MAXUINT32[医]MAXUINT64[医]uint类型对象的最大值8[医]T,uint16[医]T,uint32[医]T,Uint64
float64 funcFloat32bits(ffloat32)uint32 funcFloat32frombits(buint32)float32 funcFloat64bits(ffloat64)uint64
该值使用math.Float64bits转换为uint64。uint64然后被字节反转并作为常规无符号整数发送。字节反转意味着尾数的指数和高精度部分先行。由于低位通常为零,因此可以节省编码字节。