rts-sim-testing-service/third_party/balisecodec/decode.go
2024-09-25 11:19:18 +08:00

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package balisecodec
// 将830位的二进制数组以10位为单位组成一个左边为最高有效位MSB的无符号整数数组除了第一个10位值其余值求和然后循环2的10次方次与其他值求和结果相加后模2的10次方若结果和第一个10位值相同则结束此值即为原始的第一个10位值将此值替换为第一个10位二进制数组依然是左边为MSB
func revertFirst10Bits(b []byte) []byte {
if len(b) != 830 {
panic("invalid length")
}
// 将830位的二进制数组以10位为单位组成一个左边为最高有效位MSB的无符号整数数组
w10s := make([]uint16, 83)
for i := 0; i < 83; i++ {
w10s[i] = uint16(ToValLeftMsb(b[i*10 : i*10+10]))
//// 打印输出
//for j := 0; j < 10; j++ {
// fmt.Printf("%01b", b[i*10+j])
//}
//print(" ")
//if i != 0 && i%10 == 9 {
// println()
//}
}
//println()
// 将除了第一个10位字整数求和
sum := uint64(0)
for i := 1; i < 83; i++ {
sum += uint64(w10s[i])
}
// 循环2的10次方次与其他值求和结果相加后模2的10次方
for i := 0; i < 1024; i++ {
test := sum + uint64(i)
if test%1024 == uint64(w10s[0]) {
w10s[0] = uint16(i)
break
}
}
//slog.Info("还原第一个10位值", "sum", sum, "bits[0]", w10s[0], "bits[0]b", fmt.Sprintf("%010b", w10s[0]))
bits := make([]byte, 830)
// 将整个10位数组转换为二进制数组依然是MSB
u0bits := ToBitsLeftMsb(int(w10s[0]), 10)
for i := 0; i < 10; i++ {
bits[i] = u0bits[i]
}
for i := 10; i < 830; i++ {
bits[i] = b[i]
}
return bits
}
// 解扰由加扰计算得到的S作为初始状态为S的32位线性反馈移位寄存器对数据进行解扰
func descrambling(dn []byte, S uint32) []byte {
if len(dn) != 830 {
panic("invalid length")
}
// const Polynomial = 0x000000AF
out := make([]byte, len(dn))
t := S // 寄存器初始值
for i := 0; i < len(dn); i++ {
msb := (t >> 31) & 1
out[i] = (dn[i] ^ byte(msb)) & 1
// fmt.Printf("i=%d, t=%032b, msb=%d, dn=%d, out=%d\n", i, t, msb, dn[i], out[i])
xor := uint32(dn[i])
t = (xor << 30) ^ (xor << 29) ^ (xor << 28) ^ (xor << 26) ^ (xor << 24) ^ t
t = (t << 1) | xor
}
return out
}
// 转换913位数据为830位数据
func convert913To830(b913 []byte) ([]byte, error) {
if len(b913) != 913 {
panic("invalid length")
}
b830 := make([]byte, 830)
for i := 0; i < 83; i++ {
b10, err := From11(b913[i*11 : i*11+11])
if err != nil {
return nil, buildError(err.Error())
}
for j := 0; j < 10; j++ {
b830[i*10+j] = b10[j]
}
}
return b830, nil
}