FreeCalypso > hg > gsm-codec-lib
comparison libgsmefr/log2.c @ 53:49dd1ac8e75b
libgsmefr: import most *.c files from ETSI source
author | Mychaela Falconia <falcon@freecalypso.org> |
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date | Fri, 25 Nov 2022 16:18:21 +0000 |
parents | |
children | 68f772469ba7 |
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52:988fd7ff514f | 53:49dd1ac8e75b |
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1 /************************************************************************* | |
2 * | |
3 * FUNCTION: Log2() | |
4 * | |
5 * PURPOSE: Computes log2(L_x), where L_x is positive. | |
6 * If L_x is negative or zero, the result is 0. | |
7 * | |
8 * DESCRIPTION: | |
9 * The function Log2(L_x) is approximated by a table and linear | |
10 * interpolation. The following steps are used to compute Log2(L_x) | |
11 * | |
12 * 1- Normalization of L_x. | |
13 * 2- exponent = 30-exponent | |
14 * 3- i = bit25-b31 of L_x; 32<=i<=63 (because of normalization). | |
15 * 4- a = bit10-b24 | |
16 * 5- i -=32 | |
17 * 6- fraction = table[i]<<16 - (table[i] - table[i+1]) * a * 2 | |
18 * | |
19 *************************************************************************/ | |
20 | |
21 #include "typedef.h" | |
22 #include "basic_op.h" | |
23 #include "count.h" | |
24 | |
25 #include "log2.tab" /* Table for Log2() */ | |
26 | |
27 void Log2 ( | |
28 Word32 L_x, /* (i) : input value */ | |
29 Word16 *exponent, /* (o) : Integer part of Log2. (range: 0<=val<=30) */ | |
30 Word16 *fraction /* (o) : Fractional part of Log2. (range: 0<=val<1) */ | |
31 ) | |
32 { | |
33 Word16 exp, i, a, tmp; | |
34 Word32 L_y; | |
35 | |
36 test (); | |
37 if (L_x <= (Word32) 0) | |
38 { | |
39 *exponent = 0; move16 (); | |
40 *fraction = 0; move16 (); | |
41 return; | |
42 } | |
43 exp = norm_l (L_x); | |
44 L_x = L_shl (L_x, exp); /* L_x is normalized */ | |
45 | |
46 *exponent = sub (30, exp); move16 (); | |
47 | |
48 L_x = L_shr (L_x, 9); | |
49 i = extract_h (L_x); /* Extract b25-b31 */ | |
50 L_x = L_shr (L_x, 1); | |
51 a = extract_l (L_x); /* Extract b10-b24 of fraction */ | |
52 a = a & (Word16) 0x7fff; logic16 (); | |
53 | |
54 i = sub (i, 32); | |
55 | |
56 L_y = L_deposit_h (table[i]); /* table[i] << 16 */ | |
57 tmp = sub (table[i], table[i + 1]); /* table[i] - table[i+1] */ | |
58 L_y = L_msu (L_y, tmp, a); /* L_y -= tmp*a*2 */ | |
59 | |
60 *fraction = extract_h (L_y);move16 (); | |
61 | |
62 return; | |
63 } |