X-Git-Url: http://git.lttng.org./?a=blobdiff_plain;f=ltt%2Fbranches%2Fpoly%2Fltt%2Ftime.h;h=d826e4ac93d54b5cdb5d4d71e6101a6462b6174b;hb=348c6ba830cba63cc5486e2cea042c8a70cf1fb2;hp=fe7641dfbbf49fdcc871e37ac3d55e1994a36b40;hpb=1d1df11d0582bef07ef2b33e8e82a75b08f32be4;p=lttv.git diff --git a/ltt/branches/poly/ltt/time.h b/ltt/branches/poly/ltt/time.h index fe7641df..d826e4ac 100644 --- a/ltt/branches/poly/ltt/time.h +++ b/ltt/branches/poly/ltt/time.h @@ -21,6 +21,7 @@ #include #include +#include typedef struct _LttTime { unsigned long tv_sec; @@ -29,7 +30,21 @@ typedef struct _LttTime { #define NANOSECONDS_PER_SECOND 1000000000 -#define SHIFT_CONST 1.07374182400631629848 + +/* We give the DIV and MUL constants so we can always multiply, for a + * division as well as a multiplication of NANOSECONDS_PER_SECOND */ +/* 2^30/1.07374182400631629848 = 1000000000.0 */ +#define DOUBLE_SHIFT_CONST_DIV 1.07374182400631629848 +#define DOUBLE_SHIFT 30 + +/* 2^30*0.93132257461547851562 = 1000000000.0000000000 */ +#define DOUBLE_SHIFT_CONST_MUL 0.93132257461547851562 + + +/* 1953125 * 2^9 = NANOSECONDS_PER_SECOND */ +#define LTT_TIME_UINT_SHIFT_CONST 1953125 +#define LTT_TIME_UINT_SHIFT 9 + static const LttTime ltt_time_zero = { 0, 0 }; @@ -101,7 +116,9 @@ static inline double ltt_time_to_double(LttTime t1) if(t1.tv_sec > MAX_TV_SEC_TO_DOUBLE) g_warning("Precision loss in conversion LttTime to double"); #endif //EXTRA_CHECK - return ((double)t1.tv_sec * (double)NANOSECONDS_PER_SECOND) + (double)t1.tv_nsec; + return ((double)((guint64)t1.tv_sec<> 30; - res.tv_nsec = (t1 - (res.tv_sec*NANOSECONDS_PER_SECOND)); + res.tv_sec = (guint64)(t1 * DOUBLE_SHIFT_CONST_DIV) >> DOUBLE_SHIFT; + res.tv_nsec = (t1 - (((guint64)res.tv_sec< than (2^62)-1 @@ -207,11 +230,19 @@ static inline LttTime ltt_time_from_uint64(guint64 t1) #ifdef EXTRA_CHECK g_assert(t1 <= MAX_TV_SEC_TO_UINT64); if(t1 > MAX_TV_SEC_TO_UINT64) - g_warning("Conversion from non precise uint64 to LttTime"); + g_warning("Conversion from uint64 to non precise LttTime"); #endif //EXTRA_CHECK LttTime res; - res.tv_sec = t1/NANOSECONDS_PER_SECOND; - res.tv_nsec = (t1 - res.tv_sec*NANOSECONDS_PER_SECOND); + //if(unlikely(t1 >= NANOSECONDS_PER_SECOND)) { + if(likely(t1>>LTT_TIME_UINT_SHIFT >= LTT_TIME_UINT_SHIFT_CONST)) { + //res.tv_sec = t1/NANOSECONDS_PER_SECOND; + res.tv_sec = (t1>>LTT_TIME_UINT_SHIFT) + /LTT_TIME_UINT_SHIFT_CONST; // acceleration + res.tv_nsec = (t1 - res.tv_sec*NANOSECONDS_PER_SECOND); + } else { + res.tv_sec = 0; + res.tv_nsec = (guint32)t1; + } return res; }