[2c47b73] | 1 | #ifndef PASTRIGENERAL_H |
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| 2 | #define PASTRIGENERAL_H |
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| 3 | |
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| 4 | |
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| 5 | static inline double abs_FastD(double x){ |
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| 6 | u_UI64I64D u1; |
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| 7 | u1.d=x; |
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| 8 | //(*((uint64_t *)(&x)))&=(int64_t)0x7FFFFFFFFFFFFFFF; |
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| 9 | u1.ui64&=(int64_t)0x7FFFFFFFFFFFFFFF; |
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| 10 | return u1.d; |
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| 11 | } |
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| 12 | |
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| 13 | static inline int64_t abs_FastI64(int64_t x){ |
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| 14 | return (x^((x&(int64_t)0x8000000000000000)>>63))+((x&(int64_t)0x8000000000000000)!=0); |
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| 15 | } |
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| 16 | /* |
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| 17 | int abs(int x) { |
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| 18 | int mask = (x >> (sizeof(int) * CHAR_BIT - 1)); |
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| 19 | return (x + mask) ^ mask; |
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| 20 | } |
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| 21 | */ |
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| 22 | |
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| 23 | |
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| 24 | |
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| 25 | |
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| 26 | //Returns the min. bits needed to represent x. |
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| 27 | //Same as: ceil(log2(abs(x))) |
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| 28 | //Actually to be completely safe, it correspond to: ceil(log2(abs(i)+1))+0.1 |
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| 29 | //+0.1 was for fixing rounding errors |
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| 30 | //REMEMBER: To represent the whole range [-x:x], the number of bits required is bitsNeeded(x)+1 |
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| 31 | static inline int bitsNeeded_double(double x){ |
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| 32 | u_UI64I64D u1; |
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| 33 | u1.d=x; |
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| 34 | return (((u1.ui64<<1)>>53)-1022) & (((x!=0)<<31)>>31); |
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| 35 | } |
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| 36 | |
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| 37 | //Returns the min. bits needed to represent x. |
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| 38 | //Same as: ceil(log2(abs(x))) |
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| 39 | //NEEDS OPTIMIZATION! |
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| 40 | static inline int bitsNeeded_float(float x){ |
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| 41 | u_UI64I64D u1; |
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| 42 | u1.d=x; //Casting to Double! |
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| 43 | return (((u1.ui64<<1)>>53)-1022) & (((x!=0)<<31)>>31); |
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| 44 | } |
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| 45 | |
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| 46 | static inline int bitsNeeded_UI64(uint64_t x){ |
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| 47 | int shift; |
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| 48 | int res=0; |
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| 49 | |
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| 50 | //Get the absolute value of x: |
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| 51 | //x=(x^((x&(int64_t)0x8000000000000000)>>63))+((x&(int64_t)0x8000000000000000)!=0); |
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| 52 | //x=abs_FastI64(x); |
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| 53 | |
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| 54 | //printf("%d\n",(x&(uint64_t)0xFFFFFFFF00000000)!=0); |
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| 55 | shift=(((x&(uint64_t)0xFFFFFFFF00000000)!=0)*32); |
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| 56 | x>>=shift; |
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| 57 | res+=shift; |
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| 58 | |
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| 59 | //printf("%d\n",(x&(uint64_t)0x00000000FFFF0000)!=0); |
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| 60 | shift=(((x&(uint64_t)0x00000000FFFF0000)!=0)*16); |
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| 61 | x>>=shift; |
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| 62 | res+=shift; |
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| 63 | |
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| 64 | //printf("%d\n",(x&(uint64_t)0x000000000000FF00)!=0); |
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| 65 | shift=(((x&(uint64_t)0x000000000000FF00)!=0)*8); |
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| 66 | x>>=shift; |
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| 67 | res+=shift; |
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| 68 | |
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| 69 | //printf("%d\n",(x&(uint64_t)0x00000000000000F0)!=0); |
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| 70 | shift=(((x&(uint64_t)0x00000000000000F0)!=0)*4); |
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| 71 | x>>=shift; |
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| 72 | res+=shift; |
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| 73 | |
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| 74 | //printf("%d\n",(x&(uint64_t)0x000000000000000C)!=0); |
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| 75 | shift=(((x&(uint64_t)0x000000000000000C)!=0)*2); |
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| 76 | x>>=shift; |
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| 77 | res+=shift; |
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| 78 | |
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| 79 | //printf("%d\n",(x&(uint64_t)0x0000000000000002)!=0); |
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| 80 | shift=((x&(uint64_t)0x0000000000000002)!=0); |
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| 81 | x>>=shift; |
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| 82 | res+=shift; |
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| 83 | |
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| 84 | //printf("%d\n",(x&(uint64_t)0x0000000000000001)!=0); |
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| 85 | shift=((x&(uint64_t)0x0000000000000001)!=0); |
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| 86 | x>>=shift; |
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| 87 | res+=shift; |
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| 88 | |
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| 89 | //printf("BITS NEEDED: %d\n",res); |
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| 90 | return res; |
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| 91 | } |
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| 92 | |
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| 93 | static inline int bitsNeeded_I64(int64_t x){ |
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| 94 | uint64_t ux; |
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| 95 | ux=abs_FastI64(x); |
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| 96 | return bitsNeeded_UI64(ux); |
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| 97 | } |
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| 98 | |
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| 99 | //Implementations(They are inline, so they should be in this header file) |
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| 100 | |
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| 101 | static inline int myEndianType(){ //Should work for most cases. May not work at mixed endian systems. |
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| 102 | uint64_t n=1; |
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| 103 | if (*(unsigned char*)&n == 1){ |
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| 104 | //cout<<"Little-Endian"<<endl; |
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| 105 | return 0; //0 for little endian |
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| 106 | } |
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| 107 | else{ |
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| 108 | //cout<<"Big-Endian"<<endl; |
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| 109 | return 1; //1 for big endian |
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| 110 | } |
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| 111 | } |
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| 112 | |
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| 113 | static inline void flipBytes_UI64(uint64_t *dataPtr){ |
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| 114 | unsigned char*tempA; |
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| 115 | char temp8b; |
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| 116 | tempA=(unsigned char*)dataPtr; |
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| 117 | temp8b=tempA[7]; |
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| 118 | tempA[7]=tempA[0]; |
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| 119 | tempA[0]=temp8b; |
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| 120 | temp8b=tempA[6]; |
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| 121 | tempA[6]=tempA[1]; |
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| 122 | tempA[1]=temp8b; |
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| 123 | temp8b=tempA[5]; |
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| 124 | tempA[5]=tempA[2]; |
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| 125 | tempA[2]=temp8b; |
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| 126 | temp8b=tempA[4]; |
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| 127 | tempA[4]=tempA[3]; |
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| 128 | tempA[3]=temp8b; |
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| 129 | return; |
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| 130 | } |
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| 131 | |
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| 132 | //WARNING: readBits works properly only on Little Endian machines! (For Big Endians, some modifications are needed) |
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| 133 | |
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| 134 | static inline uint64_t readBits_UI64(unsigned char* buffer,uint64_t *bitPosPtr,char numBits){ // numBits must be in range [0:56] |
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| 135 | uint64_t mask = ((uint64_t)0x0000000000000001<<numBits)-1; |
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| 136 | //cout<<"bitPos:"<<(*bitPosPtr)<<"\tbitPos>>3:"<<(*bitPosPtr>>3)<<endl; |
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| 137 | uint64_t temp64b = *(uint64_t*)(buffer + ( *bitPosPtr >> 3)); |
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| 138 | //NOTE: bitPos>>3 is the same as bitPos/8 |
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| 139 | temp64b >>= (*bitPosPtr) & (uint64_t)0x0000000000000007; |
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| 140 | |
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| 141 | //cout<<endl; |
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| 142 | //cout<<"bitpos>>3:"<<(bitPos>>3)<<" bitPos&0x7:"<<(bitPos & 0x00000007)<<" bitPos%8:"<<(bitPos%8)<<endl; |
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| 143 | //cout<<"Read:"<<(temp64b & mask)<<" temp64b:"<<temp64b<<" Mask:"<<mask<<" numBits:"<<numBits<<endl; |
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| 144 | |
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| 145 | (*bitPosPtr) += numBits; |
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| 146 | return (temp64b & mask); |
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| 147 | } |
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| 148 | |
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| 149 | static inline int64_t readBits_I64(unsigned char* buffer,uint64_t *bitPosPtr,char numBits){ // numBits must be in range [0:56] |
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| 150 | int64_t val; |
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| 151 | val=readBits_UI64(buffer,bitPosPtr,numBits);//Read value |
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| 152 | int64_t shiftAmount=64-numBits; |
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| 153 | val=(val<<shiftAmount)>>shiftAmount;//Sign correction |
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| 154 | return val; |
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| 155 | } |
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| 156 | |
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| 157 | //WARNING: readBits_EndianSafe is not tested on Big-Endian machines |
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| 158 | static inline uint64_t readBits_EndianSafe(unsigned char* buffer,uint64_t *bitPosPtr,char numBits){ // numBits must be in range [0:56] |
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| 159 | uint64_t mask = ((uint64_t)0x0000000000000001<<numBits)-1; |
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| 160 | uint64_t temp64b = *(uint64_t*)(buffer + ((*bitPosPtr)>>3)); |
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| 161 | //NOTE: (*bitPosPtr)>>3 is the same as (*bitPosPtr)/8 |
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| 162 | if(myEndianType()) |
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| 163 | flipBytes_UI64(&temp64b); |
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| 164 | temp64b >>= (*bitPosPtr) & (uint64_t)0x0000000000000007; |
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| 165 | (*bitPosPtr) += numBits; |
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| 166 | return temp64b & mask; |
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| 167 | } |
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| 168 | |
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| 169 | //WARNING: writeBits_Fast works properly only on Little Endian machines! (For Big Endians, some modifications are needed) |
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| 170 | //The buffer should be initialized as 0's for this to work! |
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| 171 | //Also, the range of data is not checked!(If data exceeds numBits, it may be cause problems) |
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| 172 | static inline void writeBits_Fast(unsigned char* buffer,uint64_t *bitPosPtr,char numBits,int64_t data){ |
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| 173 | //if(DEBUG){printf("writeBits_Fast: data:0x%lx %ld\n",data,data);} //DEBUG |
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| 174 | //if(DEBUG){printf("writeBits_Fast: numBits:0x%lx %ld\n",numBits,numBits);} //DEBUG |
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| 175 | uint64_t mask = ((uint64_t)0x0000000000000001<<numBits)-1; |
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| 176 | //if(DEBUG){printf("writeBits_Fast: mask:0x%lx %ld\n",mask,mask);} //DEBUG |
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| 177 | //if(DEBUG){printf("writeBits_Fast: data&mask:0x%lx %ld\n",((*(uint64_t*)&data)&mask),((*(uint64_t*)&data)&mask));} //DEBUG |
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| 178 | |
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| 179 | //if(DEBUG){printf("writeBits_Fast: buffer_O:0x%lx\n",*(uint64_t*)(buffer + ((*bitPosPtr)>>3)));} //DEBUG |
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| 180 | *(uint64_t*)(buffer + ((*bitPosPtr)>>3)) |= ((*(uint64_t*)&data)&mask) << ((*bitPosPtr) & (uint64_t)0x0000000000000007); |
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| 181 | //if(DEBUG){printf("writeBits_Fast: buffer_N:0x%lx\n",*(uint64_t*)(buffer + ((*bitPosPtr)>>3)));} //DEBUG |
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| 182 | |
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| 183 | |
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| 184 | (*bitPosPtr) += numBits; |
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| 185 | } |
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| 186 | |
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| 187 | //WARNING: writeBits_EndianSafe is not tested on Big-Endian machines |
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| 188 | static inline void writeBits_EndianSafe(unsigned char* buffer,uint64_t *bitPosPtr,char numBits,uint64_t data){ |
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| 189 | uint64_t mask = ((uint64_t)0x0000000000000001<<numBits)-1; |
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| 190 | data=data&mask; |
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| 191 | uint64_t temp64b_inBuffer=*(uint64_t*)(buffer + ((*bitPosPtr)>>3)); |
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| 192 | uint64_t temp64b_outBuffer=data << ((*bitPosPtr) & (uint64_t)0x0000000000000007); |
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| 193 | if(myEndianType()){ |
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| 194 | flipBytes_UI64(&temp64b_inBuffer); |
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| 195 | } |
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| 196 | temp64b_outBuffer |= temp64b_inBuffer; |
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| 197 | if(myEndianType()){ |
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| 198 | flipBytes_UI64(&temp64b_outBuffer); |
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| 199 | } |
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| 200 | *(uint64_t*)(buffer + ((*bitPosPtr)>>3))=temp64b_outBuffer; // "|=" may also work |
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| 201 | (*bitPosPtr) += numBits; |
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| 202 | } |
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| 203 | |
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| 204 | |
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| 205 | #endif |
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