some optimisations in hooks
[lttv.git] / ltt / branches / poly / ltt / time.h
CommitLineData
9c312311 1/* This file is part of the Linux Trace Toolkit trace reading library
2 * Copyright (C) 2003-2004 Michel Dagenais
3 *
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Lesser General Public
6 * License Version 2.1 as published by the Free Software Foundation.
7 *
8 * This library is distributed in the hope that it will be useful,
9 * but WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 * Lesser General Public License for more details.
12 *
13 * You should have received a copy of the GNU Lesser General Public
14 * License along with this library; if not, write to the
15 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
16 * Boston, MA 02111-1307, USA.
17 */
18
308711e5 19#ifndef LTT_TIME_H
20#define LTT_TIME_H
21
a00149f6 22#include <glib.h>
23
308711e5 24
25typedef struct _LttTime {
26 unsigned long tv_sec;
27 unsigned long tv_nsec;
28} LttTime;
29
30
0aa6c3a1 31#define NANOSECONDS_PER_SECOND 1000000000
0ce58d10 32#define SHIFT_CONST 1.07374182400631629848
308711e5 33
0aa6c3a1 34static const LttTime ltt_time_zero = { 0, 0 };
308711e5 35
18206708 36static const LttTime ltt_time_one = { 0, 1 };
37
0aa6c3a1 38static const LttTime ltt_time_infinite = { G_MAXUINT, NANOSECONDS_PER_SECOND };
308711e5 39
40static inline LttTime ltt_time_sub(LttTime t1, LttTime t2)
41{
42 LttTime res;
43 res.tv_sec = t1.tv_sec - t2.tv_sec;
f3167549 44 res.tv_nsec = t1.tv_nsec - t2.tv_nsec;
308711e5 45 if(t1.tv_nsec < t2.tv_nsec) {
46 res.tv_sec--;
f3167549 47 res.tv_nsec += NANOSECONDS_PER_SECOND;
308711e5 48 }
49 return res;
50}
51
52
53static inline LttTime ltt_time_add(LttTime t1, LttTime t2)
54{
55 LttTime res;
308711e5 56 res.tv_nsec = t1.tv_nsec + t2.tv_nsec;
f3167549 57 res.tv_sec = t1.tv_sec + t2.tv_sec;
308711e5 58 if(res.tv_nsec >= NANOSECONDS_PER_SECOND) {
59 res.tv_sec++;
60 res.tv_nsec -= NANOSECONDS_PER_SECOND;
61 }
62 return res;
63}
64
65
308711e5 66static inline int ltt_time_compare(LttTime t1, LttTime t2)
67{
68 if(t1.tv_sec > t2.tv_sec) return 1;
69 if(t1.tv_sec < t2.tv_sec) return -1;
70 if(t1.tv_nsec > t2.tv_nsec) return 1;
71 if(t1.tv_nsec < t2.tv_nsec) return -1;
72 return 0;
73}
74
0aa6c3a1 75#define LTT_TIME_MIN(a,b) ((ltt_time_compare((a),(b)) < 0) ? (a) : (b))
76#define LTT_TIME_MAX(a,b) ((ltt_time_compare((a),(b)) > 0) ? (a) : (b))
77
8aee234c 78#define MAX_TV_SEC_TO_DOUBLE 0x7FFFFF
308711e5 79static inline double ltt_time_to_double(LttTime t1)
80{
8aee234c 81 /* We lose precision if tv_sec is > than (2^23)-1
82 *
83 * Max values that fits in a double (53 bits precision on normalised
84 * mantissa):
85 * tv_nsec : NANOSECONDS_PER_SECONDS : 2^30
86 *
87 * So we have 53-30 = 23 bits left for tv_sec.
88 * */
c74e0cf9 89#ifdef EXTRA_CHECK
0c5dbe3b 90 g_assert(t1.tv_sec <= MAX_TV_SEC_TO_DOUBLE);
8aee234c 91 if(t1.tv_sec > MAX_TV_SEC_TO_DOUBLE)
92 g_warning("Precision loss in conversion LttTime to double");
c74e0cf9 93#endif //EXTRA_CHECK
a18124ff 94 return ((double)t1.tv_sec * (double)NANOSECONDS_PER_SECOND) + (double)t1.tv_nsec;
308711e5 95}
96
97
98static inline LttTime ltt_time_from_double(double t1)
99{
8aee234c 100 /* We lose precision if tv_sec is > than (2^23)-1
101 *
102 * Max values that fits in a double (53 bits precision on normalised
103 * mantissa):
104 * tv_nsec : NANOSECONDS_PER_SECONDS : 2^30
105 *
106 * So we have 53-30 = 23 bits left for tv_sec.
107 * */
c74e0cf9 108#ifdef EXTRA_CHECK
0c5dbe3b 109 g_assert(t1 <= MAX_TV_SEC_TO_DOUBLE);
8aee234c 110 if(t1 > MAX_TV_SEC_TO_DOUBLE)
111 g_warning("Conversion from non precise double to LttTime");
c74e0cf9 112#endif //EXTRA_CHECK
308711e5 113 LttTime res;
0ce58d10 114 //res.tv_sec = t1/(double)NANOSECONDS_PER_SECOND;
115 res.tv_sec = (guint64)(t1 * SHIFT_CONST) >> 30;
c74e0cf9 116 res.tv_nsec = (t1 - (res.tv_sec*NANOSECONDS_PER_SECOND));
308711e5 117 return res;
118}
119
8d1e6362 120/* Use ltt_time_to_double and ltt_time_from_double to check for lack
121 * of precision.
122 */
123static inline LttTime ltt_time_mul(LttTime t1, double d)
124{
125 LttTime res;
126
127 double time_double = ltt_time_to_double(t1);
128
129 time_double = time_double * d;
130
131 res = ltt_time_from_double(time_double);
132
133 return res;
134
135#if 0
136 /* What is that ? (Mathieu) */
137 if(f == 0.0){
138 res.tv_sec = 0;
139 res.tv_nsec = 0;
140 }else{
141 double d;
142 d = 1.0/f;
143 sec = t1.tv_sec / (double)d;
144 res.tv_sec = sec;
145 res.tv_nsec = t1.tv_nsec / (double)d + (sec - res.tv_sec) *
146 NANOSECONDS_PER_SECOND;
147 res.tv_sec += res.tv_nsec / NANOSECONDS_PER_SECOND;
148 res.tv_nsec %= NANOSECONDS_PER_SECOND;
149 }
150 return res;
151#endif //0
152}
153
154
155/* Use ltt_time_to_double and ltt_time_from_double to check for lack
156 * of precision.
157 */
158static inline LttTime ltt_time_div(LttTime t1, double d)
159{
160 LttTime res;
161
162 double time_double = ltt_time_to_double(t1);
163
164 time_double = time_double / d;
165
166 res = ltt_time_from_double(time_double);
167
168 return res;
169
170
171#if 0
172 double sec;
173 LttTime res;
174
175 sec = t1.tv_sec / (double)f;
176 res.tv_sec = sec;
177 res.tv_nsec = t1.tv_nsec / (double)f + (sec - res.tv_sec) *
178 NANOSECONDS_PER_SECOND;
179 res.tv_sec += res.tv_nsec / NANOSECONDS_PER_SECOND;
180 res.tv_nsec %= NANOSECONDS_PER_SECOND;
181 return res;
182#endif //0
183}
184
90ef7e4a 185static inline guint64 ltt_time_to_uint64(LttTime t1)
186{
187 return (guint64)t1.tv_sec*NANOSECONDS_PER_SECOND
188 + (guint64)t1.tv_nsec;
189}
190
191
192#define MAX_TV_SEC_TO_UINT64 0x3FFFFFFFFFFFFFFFULL
193static inline LttTime ltt_time_from_uint64(guint64 t1)
194{
195 /* We lose precision if tv_sec is > than (2^62)-1
196 * */
c74e0cf9 197#ifdef EXTRA_CHECK
90ef7e4a 198 g_assert(t1 <= MAX_TV_SEC_TO_UINT64);
199 if(t1 > MAX_TV_SEC_TO_UINT64)
200 g_warning("Conversion from non precise uint64 to LttTime");
c74e0cf9 201#endif //EXTRA_CHECK
90ef7e4a 202 LttTime res;
203 res.tv_sec = t1/NANOSECONDS_PER_SECOND;
204 res.tv_nsec = (t1 - res.tv_sec*NANOSECONDS_PER_SECOND);
205 return res;
206}
8d1e6362 207
308711e5 208#endif // LTT_TIME_H
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