xref: /freebsd/contrib/ntp/include/ntp_fp.h (revision ea906c4152774dff300bb26fbfc1e4188351c89a)
1c0b746e5SOllivier Robert /*
2c0b746e5SOllivier Robert  * ntp_fp.h - definitions for NTP fixed/floating-point arithmetic
3c0b746e5SOllivier Robert  */
4c0b746e5SOllivier Robert 
5c0b746e5SOllivier Robert #ifndef NTP_FP_H
6c0b746e5SOllivier Robert #define NTP_FP_H
7c0b746e5SOllivier Robert 
8c0b746e5SOllivier Robert #include <sys/types.h>
9c0b746e5SOllivier Robert #include <sys/socket.h>
10c0b746e5SOllivier Robert #include <netinet/in.h>
11c0b746e5SOllivier Robert 
12ea906c41SOllivier Robert #include "ntp_rfc2553.h"
13ea906c41SOllivier Robert 
14c0b746e5SOllivier Robert #include "ntp_types.h"
15c0b746e5SOllivier Robert 
16c0b746e5SOllivier Robert /*
17c0b746e5SOllivier Robert  * NTP uses two fixed point formats.  The first (l_fp) is the "long"
18c0b746e5SOllivier Robert  * format and is 64 bits long with the decimal between bits 31 and 32.
19c0b746e5SOllivier Robert  * This is used for time stamps in the NTP packet header (in network
20c0b746e5SOllivier Robert  * byte order) and for internal computations of offsets (in local host
21c0b746e5SOllivier Robert  * byte order). We use the same structure for both signed and unsigned
22c0b746e5SOllivier Robert  * values, which is a big hack but saves rewriting all the operators
23c0b746e5SOllivier Robert  * twice. Just to confuse this, we also sometimes just carry the
24c0b746e5SOllivier Robert  * fractional part in calculations, in both signed and unsigned forms.
25c0b746e5SOllivier Robert  * Anyway, an l_fp looks like:
26c0b746e5SOllivier Robert  *
27c0b746e5SOllivier Robert  *    0			  1		      2			  3
28c0b746e5SOllivier Robert  *    0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
29c0b746e5SOllivier Robert  *   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
30c0b746e5SOllivier Robert  *   |			       Integral Part			     |
31c0b746e5SOllivier Robert  *   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
32c0b746e5SOllivier Robert  *   |			       Fractional Part			     |
33c0b746e5SOllivier Robert  *   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
34c0b746e5SOllivier Robert  *
35c0b746e5SOllivier Robert  */
36c0b746e5SOllivier Robert typedef struct {
37c0b746e5SOllivier Robert 	union {
38c0b746e5SOllivier Robert 		u_int32 Xl_ui;
39c0b746e5SOllivier Robert 		int32 Xl_i;
40c0b746e5SOllivier Robert 	} Ul_i;
41c0b746e5SOllivier Robert 	union {
42c0b746e5SOllivier Robert 		u_int32 Xl_uf;
43c0b746e5SOllivier Robert 		int32 Xl_f;
44c0b746e5SOllivier Robert 	} Ul_f;
45c0b746e5SOllivier Robert } l_fp;
46c0b746e5SOllivier Robert 
47c0b746e5SOllivier Robert #define l_ui	Ul_i.Xl_ui		/* unsigned integral part */
48c0b746e5SOllivier Robert #define	l_i	Ul_i.Xl_i		/* signed integral part */
49c0b746e5SOllivier Robert #define	l_uf	Ul_f.Xl_uf		/* unsigned fractional part */
50c0b746e5SOllivier Robert #define	l_f	Ul_f.Xl_f		/* signed fractional part */
51c0b746e5SOllivier Robert 
52c0b746e5SOllivier Robert /*
53c0b746e5SOllivier Robert  * Fractional precision (of an l_fp) is actually the number of
54c0b746e5SOllivier Robert  * bits in a long.
55c0b746e5SOllivier Robert  */
56c0b746e5SOllivier Robert #define	FRACTION_PREC	(32)
57c0b746e5SOllivier Robert 
58c0b746e5SOllivier Robert 
59c0b746e5SOllivier Robert /*
60c0b746e5SOllivier Robert  * The second fixed point format is 32 bits, with the decimal between
61c0b746e5SOllivier Robert  * bits 15 and 16.  There is a signed version (s_fp) and an unsigned
62c0b746e5SOllivier Robert  * version (u_fp).  This is used to represent synchronizing distance
63c0b746e5SOllivier Robert  * and synchronizing dispersion in the NTP packet header (again, in
64c0b746e5SOllivier Robert  * network byte order) and internally to hold both distance and
65c0b746e5SOllivier Robert  * dispersion values (in local byte order).  In network byte order
66c0b746e5SOllivier Robert  * it looks like:
67c0b746e5SOllivier Robert  *
68c0b746e5SOllivier Robert  *    0			  1		      2			  3
69c0b746e5SOllivier Robert  *    0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
70c0b746e5SOllivier Robert  *   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
71c0b746e5SOllivier Robert  *   |		  Integer Part	     |	   Fraction Part	     |
72c0b746e5SOllivier Robert  *   +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
73c0b746e5SOllivier Robert  *
74c0b746e5SOllivier Robert  */
75c0b746e5SOllivier Robert typedef int32 s_fp;
76c0b746e5SOllivier Robert typedef u_int32 u_fp;
77c0b746e5SOllivier Robert 
78c0b746e5SOllivier Robert /*
79c0b746e5SOllivier Robert  * A unit second in fp format.  Actually 2**(half_the_bits_in_a_long)
80c0b746e5SOllivier Robert  */
81c0b746e5SOllivier Robert #define	FP_SECOND	(0x10000)
82c0b746e5SOllivier Robert 
83c0b746e5SOllivier Robert /*
84c0b746e5SOllivier Robert  * Byte order conversions
85c0b746e5SOllivier Robert  */
86c0b746e5SOllivier Robert #define	HTONS_FP(x)	(htonl(x))
87c0b746e5SOllivier Robert #define	HTONL_FP(h, n)	do { (n)->l_ui = htonl((h)->l_ui); \
88c0b746e5SOllivier Robert 			     (n)->l_uf = htonl((h)->l_uf); } while (0)
89c0b746e5SOllivier Robert #define	NTOHS_FP(x)	(ntohl(x))
90c0b746e5SOllivier Robert #define	NTOHL_FP(n, h)	do { (h)->l_ui = ntohl((n)->l_ui); \
91c0b746e5SOllivier Robert 			     (h)->l_uf = ntohl((n)->l_uf); } while (0)
92c0b746e5SOllivier Robert #define	NTOHL_MFP(ni, nf, hi, hf) \
93c0b746e5SOllivier Robert 	do { (hi) = ntohl(ni); (hf) = ntohl(nf); } while (0)
94c0b746e5SOllivier Robert #define	HTONL_MFP(hi, hf, ni, nf) \
95c0b746e5SOllivier Robert 	do { (ni) = ntohl(hi); (nf) = ntohl(hf); } while (0)
96c0b746e5SOllivier Robert 
97c0b746e5SOllivier Robert /* funny ones.  Converts ts fractions to net order ts */
98c0b746e5SOllivier Robert #define	HTONL_UF(uf, nts) \
99c0b746e5SOllivier Robert 	do { (nts)->l_ui = 0; (nts)->l_uf = htonl(uf); } while (0)
100c0b746e5SOllivier Robert #define	HTONL_F(f, nts) do { (nts)->l_uf = htonl(f); \
101c0b746e5SOllivier Robert 				if ((f) & 0x80000000) \
102c0b746e5SOllivier Robert 					(nts)->l_i = -1; \
103c0b746e5SOllivier Robert 				else \
104c0b746e5SOllivier Robert 					(nts)->l_i = 0; \
105c0b746e5SOllivier Robert 			} while (0)
106c0b746e5SOllivier Robert 
107c0b746e5SOllivier Robert /*
108c0b746e5SOllivier Robert  * Conversions between the two fixed point types
109c0b746e5SOllivier Robert  */
110c0b746e5SOllivier Robert #define	MFPTOFP(x_i, x_f)	(((x_i) >= 0x00010000) ? 0x7fffffff : \
111c0b746e5SOllivier Robert 				(((x_i) <= -0x00010000) ? 0x80000000 : \
112c0b746e5SOllivier Robert 				(((x_i)<<16) | (((x_f)>>16)&0xffff))))
113c0b746e5SOllivier Robert #define	LFPTOFP(v)		MFPTOFP((v)->l_i, (v)->l_f)
114c0b746e5SOllivier Robert 
115c0b746e5SOllivier Robert #define UFPTOLFP(x, v) ((v)->l_ui = (u_fp)(x)>>16, (v)->l_uf = (x)<<16)
116c0b746e5SOllivier Robert #define FPTOLFP(x, v)  (UFPTOLFP((x), (v)), (x) < 0 ? (v)->l_ui -= 0x10000 : 0)
117c0b746e5SOllivier Robert 
118c0b746e5SOllivier Robert #define MAXLFP(v) ((v)->l_ui = 0x7fffffff, (v)->l_uf = 0xffffffff)
119c0b746e5SOllivier Robert #define MINLFP(v) ((v)->l_ui = 0x80000000, (v)->l_uf = 0)
120c0b746e5SOllivier Robert 
121c0b746e5SOllivier Robert /*
122c0b746e5SOllivier Robert  * Primitive operations on long fixed point values.  If these are
123c0b746e5SOllivier Robert  * reminiscent of assembler op codes it's only because some may
124c0b746e5SOllivier Robert  * be replaced by inline assembler for particular machines someday.
125c0b746e5SOllivier Robert  * These are the (kind of inefficient) run-anywhere versions.
126c0b746e5SOllivier Robert  */
127c0b746e5SOllivier Robert #define	M_NEG(v_i, v_f) 	/* v = -v */ \
128c0b746e5SOllivier Robert 	do { \
129c0b746e5SOllivier Robert 		if ((v_f) == 0) \
130c0b746e5SOllivier Robert 			(v_i) = -((s_fp)(v_i)); \
131c0b746e5SOllivier Robert 		else { \
132c0b746e5SOllivier Robert 			(v_f) = -((s_fp)(v_f)); \
133c0b746e5SOllivier Robert 			(v_i) = ~(v_i); \
134c0b746e5SOllivier Robert 		} \
135c0b746e5SOllivier Robert 	} while(0)
136c0b746e5SOllivier Robert 
137c0b746e5SOllivier Robert #define	M_NEGM(r_i, r_f, a_i, a_f) 	/* r = -a */ \
138c0b746e5SOllivier Robert 	do { \
139c0b746e5SOllivier Robert 		if ((a_f) == 0) { \
140c0b746e5SOllivier Robert 			(r_f) = 0; \
141c0b746e5SOllivier Robert 			(r_i) = -(a_i); \
142c0b746e5SOllivier Robert 		} else { \
143c0b746e5SOllivier Robert 			(r_f) = -(a_f); \
144c0b746e5SOllivier Robert 			(r_i) = ~(a_i); \
145c0b746e5SOllivier Robert 		} \
146c0b746e5SOllivier Robert 	} while(0)
147c0b746e5SOllivier Robert 
148c0b746e5SOllivier Robert #define M_ADD(r_i, r_f, a_i, a_f) 	/* r += a */ \
149c0b746e5SOllivier Robert 	do { \
150c0b746e5SOllivier Robert 		register u_int32 lo_tmp; \
151c0b746e5SOllivier Robert 		register u_int32 hi_tmp; \
152c0b746e5SOllivier Robert 		\
153c0b746e5SOllivier Robert 		lo_tmp = ((r_f) & 0xffff) + ((a_f) & 0xffff); \
154c0b746e5SOllivier Robert 		hi_tmp = (((r_f) >> 16) & 0xffff) + (((a_f) >> 16) & 0xffff); \
155c0b746e5SOllivier Robert 		if (lo_tmp & 0x10000) \
156c0b746e5SOllivier Robert 			hi_tmp++; \
157c0b746e5SOllivier Robert 		(r_f) = ((hi_tmp & 0xffff) << 16) | (lo_tmp & 0xffff); \
158c0b746e5SOllivier Robert 		\
159c0b746e5SOllivier Robert 		(r_i) += (a_i); \
160c0b746e5SOllivier Robert 		if (hi_tmp & 0x10000) \
161c0b746e5SOllivier Robert 			(r_i)++; \
162c0b746e5SOllivier Robert 	} while (0)
163c0b746e5SOllivier Robert 
164c0b746e5SOllivier Robert #define M_ADD3(r_ovr, r_i, r_f, a_ovr, a_i, a_f) /* r += a, three word */ \
165c0b746e5SOllivier Robert 	do { \
166c0b746e5SOllivier Robert 		register u_int32 lo_tmp; \
167c0b746e5SOllivier Robert 		register u_int32 hi_tmp; \
168c0b746e5SOllivier Robert 		\
169c0b746e5SOllivier Robert 		lo_tmp = ((r_f) & 0xffff) + ((a_f) & 0xffff); \
170c0b746e5SOllivier Robert 		hi_tmp = (((r_f) >> 16) & 0xffff) + (((a_f) >> 16) & 0xffff); \
171c0b746e5SOllivier Robert 		if (lo_tmp & 0x10000) \
172c0b746e5SOllivier Robert 			hi_tmp++; \
173c0b746e5SOllivier Robert 		(r_f) = ((hi_tmp & 0xffff) << 16) | (lo_tmp & 0xffff); \
174c0b746e5SOllivier Robert 		\
175c0b746e5SOllivier Robert 		lo_tmp = ((r_i) & 0xffff) + ((a_i) & 0xffff); \
176c0b746e5SOllivier Robert 		if (hi_tmp & 0x10000) \
177c0b746e5SOllivier Robert 			lo_tmp++; \
178c0b746e5SOllivier Robert 		hi_tmp = (((r_i) >> 16) & 0xffff) + (((a_i) >> 16) & 0xffff); \
179c0b746e5SOllivier Robert 		if (lo_tmp & 0x10000) \
180c0b746e5SOllivier Robert 			hi_tmp++; \
181c0b746e5SOllivier Robert 		(r_i) = ((hi_tmp & 0xffff) << 16) | (lo_tmp & 0xffff); \
182c0b746e5SOllivier Robert 		\
183c0b746e5SOllivier Robert 		(r_ovr) += (a_ovr); \
184c0b746e5SOllivier Robert 		if (hi_tmp & 0x10000) \
185c0b746e5SOllivier Robert 			(r_ovr)++; \
186c0b746e5SOllivier Robert 	} while (0)
187c0b746e5SOllivier Robert 
188c0b746e5SOllivier Robert #define M_SUB(r_i, r_f, a_i, a_f)	/* r -= a */ \
189c0b746e5SOllivier Robert 	do { \
190c0b746e5SOllivier Robert 		register u_int32 lo_tmp; \
191c0b746e5SOllivier Robert 		register u_int32 hi_tmp; \
192c0b746e5SOllivier Robert 		\
193c0b746e5SOllivier Robert 		if ((a_f) == 0) { \
194c0b746e5SOllivier Robert 			(r_i) -= (a_i); \
195c0b746e5SOllivier Robert 		} else { \
196c0b746e5SOllivier Robert 			lo_tmp = ((r_f) & 0xffff) + ((-((s_fp)(a_f))) & 0xffff); \
197c0b746e5SOllivier Robert 			hi_tmp = (((r_f) >> 16) & 0xffff) \
198c0b746e5SOllivier Robert 			    + (((-((s_fp)(a_f))) >> 16) & 0xffff); \
199c0b746e5SOllivier Robert 			if (lo_tmp & 0x10000) \
200c0b746e5SOllivier Robert 				hi_tmp++; \
201c0b746e5SOllivier Robert 			(r_f) = ((hi_tmp & 0xffff) << 16) | (lo_tmp & 0xffff); \
202c0b746e5SOllivier Robert 			\
203c0b746e5SOllivier Robert 			(r_i) += ~(a_i); \
204c0b746e5SOllivier Robert 			if (hi_tmp & 0x10000) \
205c0b746e5SOllivier Robert 				(r_i)++; \
206c0b746e5SOllivier Robert 		} \
207c0b746e5SOllivier Robert 	} while (0)
208c0b746e5SOllivier Robert 
209c0b746e5SOllivier Robert #define	M_RSHIFTU(v_i, v_f)		/* v >>= 1, v is unsigned */ \
210c0b746e5SOllivier Robert 	do { \
211c0b746e5SOllivier Robert 		(v_f) = (u_int32)(v_f) >> 1; \
212c0b746e5SOllivier Robert 		if ((v_i) & 01) \
213c0b746e5SOllivier Robert 			(v_f) |= 0x80000000; \
214c0b746e5SOllivier Robert 		(v_i) = (u_int32)(v_i) >> 1; \
215c0b746e5SOllivier Robert 	} while (0)
216c0b746e5SOllivier Robert 
217c0b746e5SOllivier Robert #define	M_RSHIFT(v_i, v_f)		/* v >>= 1, v is signed */ \
218c0b746e5SOllivier Robert 	do { \
219c0b746e5SOllivier Robert 		(v_f) = (u_int32)(v_f) >> 1; \
220c0b746e5SOllivier Robert 		if ((v_i) & 01) \
221c0b746e5SOllivier Robert 			(v_f) |= 0x80000000; \
222c0b746e5SOllivier Robert 		if ((v_i) & 0x80000000) \
223c0b746e5SOllivier Robert 			(v_i) = ((v_i) >> 1) | 0x80000000; \
224c0b746e5SOllivier Robert 		else \
225c0b746e5SOllivier Robert 			(v_i) = (v_i) >> 1; \
226c0b746e5SOllivier Robert 	} while (0)
227c0b746e5SOllivier Robert 
228c0b746e5SOllivier Robert #define	M_LSHIFT(v_i, v_f)		/* v <<= 1 */ \
229c0b746e5SOllivier Robert 	do { \
230c0b746e5SOllivier Robert 		(v_i) <<= 1; \
231c0b746e5SOllivier Robert 		if ((v_f) & 0x80000000) \
232c0b746e5SOllivier Robert 			(v_i) |= 0x1; \
233c0b746e5SOllivier Robert 		(v_f) <<= 1; \
234c0b746e5SOllivier Robert 	} while (0)
235c0b746e5SOllivier Robert 
236c0b746e5SOllivier Robert #define	M_LSHIFT3(v_ovr, v_i, v_f)	/* v <<= 1, with overflow */ \
237c0b746e5SOllivier Robert 	do { \
238c0b746e5SOllivier Robert 		(v_ovr) <<= 1; \
239c0b746e5SOllivier Robert 		if ((v_i) & 0x80000000) \
240c0b746e5SOllivier Robert 			(v_ovr) |= 0x1; \
241c0b746e5SOllivier Robert 		(v_i) <<= 1; \
242c0b746e5SOllivier Robert 		if ((v_f) & 0x80000000) \
243c0b746e5SOllivier Robert 			(v_i) |= 0x1; \
244c0b746e5SOllivier Robert 		(v_f) <<= 1; \
245c0b746e5SOllivier Robert 	} while (0)
246c0b746e5SOllivier Robert 
247c0b746e5SOllivier Robert #define	M_ADDUF(r_i, r_f, uf) 		/* r += uf, uf is u_int32 fraction */ \
248c0b746e5SOllivier Robert 	M_ADD((r_i), (r_f), 0, (uf))	/* let optimizer worry about it */
249c0b746e5SOllivier Robert 
250c0b746e5SOllivier Robert #define	M_SUBUF(r_i, r_f, uf)		/* r -= uf, uf is u_int32 fraction */ \
251c0b746e5SOllivier Robert 	M_SUB((r_i), (r_f), 0, (uf))	/* let optimizer worry about it */
252c0b746e5SOllivier Robert 
253c0b746e5SOllivier Robert #define	M_ADDF(r_i, r_f, f)		/* r += f, f is a int32 fraction */ \
254c0b746e5SOllivier Robert 	do { \
255c0b746e5SOllivier Robert 		if ((f) > 0) \
256c0b746e5SOllivier Robert 			M_ADD((r_i), (r_f), 0, (f)); \
257c0b746e5SOllivier Robert 		else if ((f) < 0) \
258c0b746e5SOllivier Robert 			M_ADD((r_i), (r_f), (-1), (f));\
259c0b746e5SOllivier Robert 	} while(0)
260c0b746e5SOllivier Robert 
261c0b746e5SOllivier Robert #define	M_ISNEG(v_i, v_f) 		/* v < 0 */ \
262c0b746e5SOllivier Robert 	(((v_i) & 0x80000000) != 0)
263c0b746e5SOllivier Robert 
264c0b746e5SOllivier Robert #define	M_ISHIS(a_i, a_f, b_i, b_f)	/* a >= b unsigned */ \
265c0b746e5SOllivier Robert 	(((u_int32)(a_i)) > ((u_int32)(b_i)) || \
266c0b746e5SOllivier Robert 	  ((a_i) == (b_i) && ((u_int32)(a_f)) >= ((u_int32)(b_f))))
267c0b746e5SOllivier Robert 
268c0b746e5SOllivier Robert #define	M_ISGEQ(a_i, a_f, b_i, b_f)	/* a >= b signed */ \
269c0b746e5SOllivier Robert 	(((int32)(a_i)) > ((int32)(b_i)) || \
270c0b746e5SOllivier Robert 	  ((a_i) == (b_i) && ((u_int32)(a_f)) >= ((u_int32)(b_f))))
271c0b746e5SOllivier Robert 
272c0b746e5SOllivier Robert #define	M_ISEQU(a_i, a_f, b_i, b_f)	/* a == b unsigned */ \
273c0b746e5SOllivier Robert 	((a_i) == (b_i) && (a_f) == (b_f))
274c0b746e5SOllivier Robert 
275c0b746e5SOllivier Robert /*
276c0b746e5SOllivier Robert  * Operations on the long fp format
277c0b746e5SOllivier Robert  */
278c0b746e5SOllivier Robert #define	L_ADD(r, a)	M_ADD((r)->l_ui, (r)->l_uf, (a)->l_ui, (a)->l_uf)
279c0b746e5SOllivier Robert #define	L_SUB(r, a)	M_SUB((r)->l_ui, (r)->l_uf, (a)->l_ui, (a)->l_uf)
280c0b746e5SOllivier Robert #define	L_NEG(v)	M_NEG((v)->l_ui, (v)->l_uf)
281c0b746e5SOllivier Robert #define L_ADDUF(r, uf)	M_ADDUF((r)->l_ui, (r)->l_uf, (uf))
282c0b746e5SOllivier Robert #define L_SUBUF(r, uf)	M_SUBUF((r)->l_ui, (r)->l_uf, (uf))
283c0b746e5SOllivier Robert #define	L_ADDF(r, f)	M_ADDF((r)->l_ui, (r)->l_uf, (f))
284c0b746e5SOllivier Robert #define	L_RSHIFT(v)	M_RSHIFT((v)->l_i, (v)->l_uf)
285ea906c41SOllivier Robert #define	L_RSHIFTU(v)	M_RSHIFTU((v)->l_ui, (v)->l_uf)
286c0b746e5SOllivier Robert #define	L_LSHIFT(v)	M_LSHIFT((v)->l_ui, (v)->l_uf)
287c0b746e5SOllivier Robert #define	L_CLR(v)	((v)->l_ui = (v)->l_uf = 0)
288c0b746e5SOllivier Robert 
289c0b746e5SOllivier Robert #define	L_ISNEG(v)	(((v)->l_ui & 0x80000000) != 0)
290c0b746e5SOllivier Robert #define L_ISZERO(v)	((v)->l_ui == 0 && (v)->l_uf == 0)
291c0b746e5SOllivier Robert #define	L_ISHIS(a, b)	((a)->l_ui > (b)->l_ui || \
292c0b746e5SOllivier Robert 			  ((a)->l_ui == (b)->l_ui && (a)->l_uf >= (b)->l_uf))
293c0b746e5SOllivier Robert #define	L_ISGEQ(a, b)	((a)->l_i > (b)->l_i || \
294c0b746e5SOllivier Robert 			  ((a)->l_i == (b)->l_i && (a)->l_uf >= (b)->l_uf))
295c0b746e5SOllivier Robert #define	L_ISEQU(a, b)	M_ISEQU((a)->l_ui, (a)->l_uf, (b)->l_ui, (b)->l_uf)
296c0b746e5SOllivier Robert 
297c0b746e5SOllivier Robert /*
298c0b746e5SOllivier Robert  * s_fp/double and u_fp/double conversions
299c0b746e5SOllivier Robert  */
300c0b746e5SOllivier Robert #define FRIC		65536.	 		/* 2^16 as a double */
301c0b746e5SOllivier Robert #define DTOFP(r)	((s_fp)((r) * FRIC))
302c0b746e5SOllivier Robert #define DTOUFP(r)	((u_fp)((r) * FRIC))
303c0b746e5SOllivier Robert #define FPTOD(r)	((double)(r) / FRIC)
304c0b746e5SOllivier Robert 
305c0b746e5SOllivier Robert /*
306c0b746e5SOllivier Robert  * l_fp/double conversions
307c0b746e5SOllivier Robert  */
308c0b746e5SOllivier Robert #define FRAC		4294967296. 		/* 2^32 as a double */
309c0b746e5SOllivier Robert #define M_DTOLFP(d, r_i, r_uf) 			/* double to l_fp */ \
310c0b746e5SOllivier Robert 	do { \
311c0b746e5SOllivier Robert 		register double d_tmp; \
312c0b746e5SOllivier Robert 		\
313c0b746e5SOllivier Robert 		d_tmp = (d); \
314c0b746e5SOllivier Robert 		if (d_tmp < 0) { \
315c0b746e5SOllivier Robert 			d_tmp = -d_tmp; \
316c0b746e5SOllivier Robert 			(r_i) = (int32)(d_tmp); \
317c0b746e5SOllivier Robert 			(r_uf) = (u_int32)(((d_tmp) - (double)(r_i)) * FRAC); \
318c0b746e5SOllivier Robert 			M_NEG((r_i), (r_uf)); \
319c0b746e5SOllivier Robert 		} else { \
320c0b746e5SOllivier Robert 			(r_i) = (int32)(d_tmp); \
321c0b746e5SOllivier Robert 			(r_uf) = (u_int32)(((d_tmp) - (double)(r_i)) * FRAC); \
322c0b746e5SOllivier Robert 		} \
323c0b746e5SOllivier Robert 	} while (0)
324c0b746e5SOllivier Robert #define M_LFPTOD(r_i, r_uf, d) 			/* l_fp to double */ \
325c0b746e5SOllivier Robert 	do { \
326c0b746e5SOllivier Robert 		register l_fp l_tmp; \
327c0b746e5SOllivier Robert 		\
328c0b746e5SOllivier Robert 		l_tmp.l_i = (r_i); \
329c0b746e5SOllivier Robert 		l_tmp.l_f = (r_uf); \
330c0b746e5SOllivier Robert 		if (l_tmp.l_i < 0) { \
331c0b746e5SOllivier Robert 			M_NEG(l_tmp.l_i, l_tmp.l_uf); \
332c0b746e5SOllivier Robert 			(d) = -((double)l_tmp.l_i + ((double)l_tmp.l_uf) / FRAC); \
333c0b746e5SOllivier Robert 		} else { \
334c0b746e5SOllivier Robert 			(d) = (double)l_tmp.l_i + ((double)l_tmp.l_uf) / FRAC; \
335c0b746e5SOllivier Robert 		} \
336c0b746e5SOllivier Robert 	} while (0)
337c0b746e5SOllivier Robert #define DTOLFP(d, v) 	M_DTOLFP((d), (v)->l_ui, (v)->l_uf)
338c0b746e5SOllivier Robert #define LFPTOD(v, d) 	M_LFPTOD((v)->l_ui, (v)->l_uf, (d))
339c0b746e5SOllivier Robert 
340c0b746e5SOllivier Robert /*
341c0b746e5SOllivier Robert  * Prototypes
342c0b746e5SOllivier Robert  */
3439c2daa00SOllivier Robert extern	char *	dofptoa		P((u_fp, int, short, int));
3449c2daa00SOllivier Robert extern	char *	dolfptoa	P((u_long, u_long, int, short, int));
345c0b746e5SOllivier Robert 
346c0b746e5SOllivier Robert extern	int	atolfp		P((const char *, l_fp *));
347c0b746e5SOllivier Robert extern	int	buftvtots	P((const char *, l_fp *));
3489c2daa00SOllivier Robert extern	char *	fptoa		P((s_fp, short));
3499c2daa00SOllivier Robert extern	char *	fptoms		P((s_fp, short));
350c0b746e5SOllivier Robert extern	int	hextolfp	P((const char *, l_fp *));
351c0b746e5SOllivier Robert extern  void    gpstolfp        P((int, int, unsigned long, l_fp *));
352c0b746e5SOllivier Robert extern	int	mstolfp		P((const char *, l_fp *));
353c0b746e5SOllivier Robert extern	char *	prettydate	P((l_fp *));
354c0b746e5SOllivier Robert extern	char *	gmprettydate	P((l_fp *));
355c0b746e5SOllivier Robert extern	char *	uglydate	P((l_fp *));
356c0b746e5SOllivier Robert extern  void    mfp_mul         P((int32 *, u_int32 *, int32, u_int32, int32, u_int32));
357c0b746e5SOllivier Robert 
358c0b746e5SOllivier Robert extern	void	get_systime	P((l_fp *));
359c0b746e5SOllivier Robert extern	int	step_systime	P((double));
360c0b746e5SOllivier Robert extern	int	adj_systime	P((double));
361c0b746e5SOllivier Robert 
362ea906c41SOllivier Robert extern	struct tm * ntp2unix_tm P((u_long ntp, int local));
363ea906c41SOllivier Robert 
364c0b746e5SOllivier Robert #define	lfptoa(_fpv, _ndec)	mfptoa((_fpv)->l_ui, (_fpv)->l_uf, (_ndec))
365c0b746e5SOllivier Robert #define	lfptoms(_fpv, _ndec)	mfptoms((_fpv)->l_ui, (_fpv)->l_uf, (_ndec))
366c0b746e5SOllivier Robert 
3679c2daa00SOllivier Robert #define stoa(_sin)	socktoa((_sin))
3689c2daa00SOllivier Robert #define stohost(_sin)	socktohost((_sin))
3699c2daa00SOllivier Robert 
3709c2daa00SOllivier Robert #define	ntoa(_sin)	stoa(_sin)
3719c2daa00SOllivier Robert #define	ntohost(_sin)	stohost(_sin)
372c0b746e5SOllivier Robert 
373c0b746e5SOllivier Robert #define	ufptoa(_fpv, _ndec)	dofptoa((_fpv), 0, (_ndec), 0)
374c0b746e5SOllivier Robert #define	ufptoms(_fpv, _ndec)	dofptoa((_fpv), 0, (_ndec), 1)
375c0b746e5SOllivier Robert #define	ulfptoa(_fpv, _ndec)	dolfptoa((_fpv)->l_ui, (_fpv)->l_uf, 0, (_ndec), 0)
376c0b746e5SOllivier Robert #define	ulfptoms(_fpv, _ndec)	dolfptoa((_fpv)->l_ui, (_fpv)->l_uf, 0, (_ndec), 1)
377c0b746e5SOllivier Robert #define	umfptoa(_fpi, _fpf, _ndec) dolfptoa((_fpi), (_fpf), 0, (_ndec), 0)
378c0b746e5SOllivier Robert 
379c0b746e5SOllivier Robert #endif /* NTP_FP_H */
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