BitUtil: Delta, ZigZag, NumBits, Floating Point,...
This commit is contained in:
229
bitutil.c
229
bitutil.c
@ -25,6 +25,13 @@
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#include "conf.h"
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#include "bitutil.h"
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//------------- max. bits for bit packing -------------------
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unsigned bit8( uint8_t *in, unsigned n) { uint8_t b; BITSIZE_( in, n, b, 8); return b; }
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unsigned bit16(uint16_t *in, unsigned n) { uint16_t b; BITSIZE_( in, n, b, 16); return b; }
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unsigned bit32(uint32_t *in, unsigned n) { uint32_t b; BITSIZE32(in, n, b); return b; }
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unsigned bit64(uint64_t *in, unsigned n) { uint64_t b; BITSIZE_( in, n, b, 64); return b; }
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//---------------- Delta ----------------------------------------
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#define BITDELTA(_p_,_n_, __inc, _start_, _act_) {\
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typeof(_p_[0]) _x, *_p;\
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for(_p = _p_; _p != _p_+(_n_&~(4-1)); ) {\
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@ -37,35 +44,35 @@
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_x = *_p-_start_-__inc; _start_ = *_p++; _act_;\
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}\
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}
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#define BITUNDELTA(__p, __n, __start, __inc) {\
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typeof(__p[0]) *_p;\
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for(_p = __p; _p != __p+(__n&~(4-1)); ) {\
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*_p = (__start += (*_p) + __inc); _p++;\
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*_p = (__start += (*_p) + __inc); _p++;\
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*_p = (__start += (*_p) + __inc); _p++;\
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*_p = (__start += (*_p) + __inc); _p++;\
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}\
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while(_p != __p+__n) {\
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*_p = (__start += (*_p) + __inc); _p++;\
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}\
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// max. bits for delta bit packing
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unsigned bitd32(uint32_t *in, unsigned n, uint32_t start) {
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#ifdef __SSE2__
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unsigned *ip,b; __m128i bv = _mm_setzero_si128(), sv = _mm_set1_epi32(start);
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for(ip = in; ip != in+(n&~(4-1)); ip += 4) {
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__m128i iv = _mm_loadu_si128((__m128i *)ip);
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bv = _mm_or_si128(bv, DELTA128x32(iv,sv));
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sv = iv;
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}
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#define BITMINMAX(_p_,_n_, __mi, __mx) {\
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typeof(_p_[0]) _x, *_p;\
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for(_p = _p_, __mi = __mx = 0; _p != _p_+(_n_&~(4-1)); ) {\
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if(*_p < __mi) __mi = *_p; if(*_p > __mx) __mx = *_p; _p++; \
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if(*_p < __mi) __mi = *_p; if(*_p > __mx) __mx = *_p; _p++; \
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if(*_p < __mi) __mi = *_p; if(*_p > __mx) __mx = *_p; _p++; \
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if(*_p < __mi) __mi = *_p; if(*_p > __mx) __mx = *_p; _p++; \
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}\
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while(_p != _p_+_n_) { \
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if(*_p < __mi) __mi = *_p; if(*_p > __mx) __mx = *_p; _p++; \
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}\
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start = (unsigned)_mm_cvtsi128_si32(_mm_srli_si128(sv,12));
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HOR128x32(bv, b);
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while(ip != in+n) {
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unsigned x = *ip-start;
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start = *ip++;
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b |= x;
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}
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#else
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typeof(in[0]) b = 0;
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BITDELTA(in,n, 0, start, b |= _x);
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#endif
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return bsr32(b);
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}
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unsigned bitdelta32(unsigned *in, unsigned n, unsigned *out, unsigned start, unsigned inc) {
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unsigned bitd8( uint8_t *in, unsigned n, uint8_t start) { uint8_t b = 0; BITDELTA(in, n, 0, start, b |= _x); return bsr8(b); }
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unsigned bitd16(uint16_t *in, unsigned n, uint16_t start) { uint16_t b = 0; BITDELTA(in, n, 0, start, b |= _x); return bsr16(b); }
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unsigned bitd64(uint64_t *in, unsigned n, uint64_t start) { uint64_t b = 0; BITDELTA(in, n, 0, start, b |= _x); return bsr64(b); }
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unsigned bitdelta32(uint32_t *in, unsigned n, uint32_t *out, uint32_t start, unsigned inc) {
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#ifdef __SSE2__
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unsigned *ip,b,*op = out;
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__m128i bv = _mm_setzero_si128(), sv = _mm_set1_epi32(start), cv = _mm_set1_epi32(inc), dv;
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@ -90,65 +97,11 @@ unsigned bitdelta32(unsigned *in, unsigned n, unsigned *out, unsigned start, uns
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return bsr32(b);
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}
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unsigned bitdelta64(uint64_t *in, unsigned n, uint64_t *out, uint64_t start, unsigned inc) {
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typeof(in[0]) b = 0,*op = out;
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BITDELTA(in, n, inc, start, b |= _x; *op++ = _x);
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return bsr64(b);
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}
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unsigned bitdelta8( uint8_t *in, unsigned n, uint8_t *out, uint8_t start, unsigned inc) { uint8_t b = 0,*op = out; BITDELTA(in, n, inc, start, b |= _x; *op++ = _x); return bsr8(b);}
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unsigned bitdelta16(uint16_t *in, unsigned n, uint16_t *out, uint16_t start, unsigned inc) { uint16_t b = 0,*op = out; BITDELTA(in, n, inc, start, b |= _x; *op++ = _x); return bsr16(b);}
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unsigned bitdelta64(uint64_t *in, unsigned n, uint64_t *out, uint64_t start, unsigned inc) { uint64_t b = 0,*op = out; BITDELTA(in, n, inc, start, b |= _x; *op++ = _x); return bsr64(b);}
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unsigned bitdelta16(unsigned short *in, unsigned n, unsigned short *out, unsigned short start, unsigned inc) {
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typeof(in[0]) b = 0,*op = out;
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BITDELTA(in, n, inc, start, b |= _x; *op++ = _x);
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return bsr16(b);
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}
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unsigned bit32(unsigned *in, unsigned n) {
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typeof(in[0]) b;
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BITSIZE32(in, n, b);
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return b;
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}
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unsigned bitf32( unsigned *in, unsigned n, unsigned start) { return n?bsr32(in[n-1] - start ):0; }
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unsigned bitf132( unsigned *in, unsigned n, unsigned start) { return n?bsr32(in[n-1] - start - n):0; }
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unsigned bitfm32(unsigned *in, unsigned n, unsigned *pmin) {
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unsigned mi,mx;
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BITMINMAX(in, n, mi, mx);
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*pmin = mi;
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return bsr32(mx - mi);
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}
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unsigned bitf1m32(unsigned *in, unsigned n, unsigned *pmin) {
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unsigned mi,mx;
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BITMINMAX(in, n, mi, mx);
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*pmin = mi;
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return bsr32(mx - mi);
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}
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unsigned bitd32(unsigned *in, unsigned n, unsigned start) {
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#ifdef __SSE2__
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unsigned *ip,b; __m128i bv = _mm_setzero_si128(), sv = _mm_set1_epi32(start);
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for(ip = in; ip != in+(n&~(4-1)); ip += 4) {
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__m128i iv = _mm_loadu_si128((__m128i *)ip);
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bv = _mm_or_si128(bv, DELTA128x32(iv,sv));
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sv = iv;
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}
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start = (unsigned)_mm_cvtsi128_si32(_mm_srli_si128(sv,12));
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HOR128x32(bv, b);
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while(ip != in+n) {
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unsigned x = *ip-start;
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start = *ip++;
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b |= x;
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}
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#else
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typeof(in[0]) b = 0;
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BITDELTA(in,n, 0, start, b |= _x);
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#endif
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return bsr32(b);
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}
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unsigned bitd132(unsigned *in, unsigned n, unsigned start) {
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unsigned bitd132(uint32_t *in, unsigned n, uint32_t start) {
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#ifdef __SSE2__
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unsigned *ip,b; __m128i bv = _mm_setzero_si128(), sv = _mm_set1_epi32(start), cv = _mm_set1_epi32(1);
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for(ip = in; ip != in+(n&~(4-1)); ip += 4) {
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@ -165,46 +118,66 @@ unsigned bitd132(unsigned *in, unsigned n, unsigned start) {
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b |= x;
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}
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#else
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typeof(in[0]) b = 0;
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uint32_t b = 0;
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BITDELTA(in, n, 1, start, b |= _x);
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#endif
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return bsr32(b);
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}
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void bitund16( unsigned short *p, unsigned n, unsigned x) { BITUNDELTA(p, n, x, 0); }
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void bitund32( unsigned *p, unsigned n, unsigned x) { BITUNDELTA(p, n, x, 0); }
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void bitund64( uint64_t *p, unsigned n, uint64_t x) { BITUNDELTA(p, n, x, 0); }
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unsigned bitd18( uint8_t *in, unsigned n, uint8_t start) { uint8_t b = 0; BITDELTA(in, n, 1, start, b |= _x); return bsr8(b); }
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unsigned bitd116(uint16_t *in, unsigned n, uint16_t start) { uint16_t b = 0; BITDELTA(in, n, 1, start, b |= _x); return bsr16(b); }
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unsigned bitd164(uint64_t *in, unsigned n, uint64_t start) { uint64_t b = 0; BITDELTA(in, n, 1, start, b |= _x); return bsr64(b); }
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void bitund132(unsigned *p, unsigned n, unsigned x) {
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// -- undelta: in-place prefix sum ---------------
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#define BITUNDELTA(__p, __n, __start, __inc) {\
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typeof(__p[0]) *_p;\
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for(_p = __p; _p != __p+(__n&~(4-1)); ) {\
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*_p = (__start += (*_p) + __inc); _p++;\
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*_p = (__start += (*_p) + __inc); _p++;\
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*_p = (__start += (*_p) + __inc); _p++;\
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*_p = (__start += (*_p) + __inc); _p++;\
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}\
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while(_p != __p+__n) {\
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*_p = (__start += (*_p) + __inc); _p++;\
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}\
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}
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void bitund8( uint8_t *p, unsigned n, uint8_t start) { BITUNDELTA(p, n, start, 0); }
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void bitund16( uint16_t *p, unsigned n, uint16_t start) { BITUNDELTA(p, n, start, 0); }
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void bitund32( uint32_t *p, unsigned n, uint32_t start) { BITUNDELTA(p, n, start, 0); }
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void bitund64( uint64_t *p, unsigned n, uint64_t start) { BITUNDELTA(p, n, start, 0); }
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void bitund132(unsigned *p, unsigned n, unsigned start) {
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#ifdef __SSE2__
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__m128i sv = _mm_set1_epi32(x), cv = _mm_set_epi32(4,3,2,1);
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__m128i sv = _mm_set1_epi32(start), cv = _mm_set_epi32(4,3,2,1);
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unsigned *ip;
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for(ip = p; ip != p+(n&~(4-1)); ip += 4) {
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__m128i v = _mm_loadu_si128((__m128i *)ip);
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SCANI128x32(v, sv, cv);
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_mm_storeu_si128((__m128i *)ip, sv);
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}
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x = (unsigned)_mm_cvtsi128_si32(_mm_srli_si128(sv,12));
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start = (unsigned)_mm_cvtsi128_si32(_mm_srli_si128(sv,12));
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while(ip != p+n) {
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*ip = (x += (*ip) + 1);
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*ip = (start += (*ip) + 1);
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ip++;
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}
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#else
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BITUNDELTA(p, n, x, 1);
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BITUNDELTA(p, n, start, 1);
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#endif
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}
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void bitund116(unsigned short *p, unsigned n, unsigned x) {
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BITUNDELTA(p, n, x, 1);
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}
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void bitund18( uint8_t *p, unsigned n, uint8_t start) { BITUNDELTA(p, n, start, 1); }
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void bitund116(uint16_t *p, unsigned n, uint16_t start) { BITUNDELTA(p, n, start, 1); }
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void bitund164(uint64_t *p, unsigned n, uint64_t start) { BITUNDELTA(p, n, start, 1); }
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void bitund164(uint64_t *p, unsigned n, unsigned x) {
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BITUNDELTA(p, n, x, 1);
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}
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void bitundn8( uint8_t *p, unsigned n, uint8_t start, uint8_t inc) { BITUNDELTA(p, n, start, inc); }
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void bitundn16(uint16_t *p, unsigned n, uint16_t start, uint16_t inc) { BITUNDELTA(p, n, start, inc); }
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void bitundn32(uint32_t *p, unsigned n, uint32_t start, uint32_t inc) { BITUNDELTA(p, n, start, inc); }
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void bitundn64(uint64_t *p, unsigned n, uint64_t start, uint64_t inc) { BITUNDELTA(p, n, start, inc); }
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void bitundx32(unsigned *p, unsigned n, unsigned x, unsigned inc) { BITUNDELTA(p, n, x, inc); }
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void bitundx64(uint64_t *p, unsigned n, uint64_t x, unsigned inc) { BITUNDELTA(p, n, x, inc); }
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//------------------- For ------------------------------
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unsigned bitf32( uint32_t *in, unsigned n, uint32_t start) { return n?bsr32(in[n-1] - start ):0; }
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unsigned bitf132( uint32_t *in, unsigned n, uint32_t start) { return n?bsr32(in[n-1] - start - n):0; }
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//----------------------------- zigzag --------------------------------------------------------
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#define BITZIGZAG(_p_,_n_, _start_, _act_) {\
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@ -233,6 +206,7 @@ void bitundx64(uint64_t *p, unsigned n, uint64_t x, unsigned inc) { BITUNDELTA(p
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}\
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}
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// max. bits for zigzag encoding
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unsigned bitz32(unsigned *in, unsigned n, unsigned start) {
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#ifdef __SSE2__
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unsigned *ip,b;
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@ -309,17 +283,58 @@ void bitunzigzag32(unsigned *p, unsigned n, unsigned start) {
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#endif
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}
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unsigned bitzigzag64(uint64_t *in, unsigned n, uint64_t *out, unsigned start) {
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typeof(in[0]) b = 0,*op = out;
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long long _x;
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BITZIGZAG(in, n, start, b |= (unsigned long long)_x; *op++ = _x);
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unsigned bitzigzag8(uint8_t *in, unsigned n, uint8_t *out, uint8_t start) {
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uint8_t b = 0,*op = out;
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int8_t _x;
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BITZIGZAG(in, n, start, b |= (uint8_t)_x; *op++ = _x);
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return bsr8(b);
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}
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unsigned bitzigzag16(uint16_t *in, unsigned n, uint16_t *out, uint16_t start) {
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uint16_t b = 0,*op = out;
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int64_t _x;
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BITZIGZAG(in, n, start, b |= (uint16_t)_x; *op++ = _x);
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return bsr16(b);
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}
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unsigned bitzigzag64(uint64_t *in, unsigned n, uint64_t *out, uint64_t start) {
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uint64_t b = 0,*op = out;
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int64_t _x;
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BITZIGZAG(in, n, start, b |= (uint64_t)_x; *op++ = _x);
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return bsr32(b);
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}
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void bitunzigzag64(uint64_t *p, unsigned n, unsigned start) {
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BITUNZIGZAG(p, n, start);
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void bitunzigzag8( uint8_t *p, unsigned n, uint8_t start) { BITUNZIGZAG(p, n, start); }
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void bitunzigzag16(uint16_t *p, unsigned n, uint16_t start) { BITUNZIGZAG(p, n, start); }
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void bitunzigzag64(uint64_t *p, unsigned n, uint64_t start) { BITUNZIGZAG(p, n, start); }
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//-------------- For --------------------------
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#define BITMINMAX(_p_,_n_, __mi, __mx) {\
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typeof(_p_[0]) _x, *_p;\
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for(_p = _p_, __mi = __mx = 0; _p != _p_+(_n_&~(4-1)); ) {\
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if(*_p < __mi) __mi = *_p; if(*_p > __mx) __mx = *_p; _p++; \
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if(*_p < __mi) __mi = *_p; if(*_p > __mx) __mx = *_p; _p++; \
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if(*_p < __mi) __mi = *_p; if(*_p > __mx) __mx = *_p; _p++; \
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if(*_p < __mi) __mi = *_p; if(*_p > __mx) __mx = *_p; _p++; \
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}\
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while(_p != _p_+_n_) { \
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if(*_p < __mi) __mi = *_p; if(*_p > __mx) __mx = *_p; _p++; \
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}\
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}
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unsigned bitfm32(uint32_t *in, unsigned n, uint32_t *pmin) {
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unsigned mi,mx;
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BITMINMAX(in, n, mi, mx);
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*pmin = mi;
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return bsr32(mx - mi);
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}
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unsigned bitf1m32(uint32_t *in, unsigned n, uint32_t *pmin) {
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unsigned mi,mx;
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BITMINMAX(in, n, mi, mx);
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*pmin = mi;
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return bsr32(mx - mi);
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}
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//------------------- De-/Compose Floating Point -----------------------------------------
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void bitdouble(double *in, unsigned n, int *expo, uint64_t *mant) {
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double *ip;
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