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/***************************************************************************
 *             __________               __   ___.
 *   Open      \______   \ ____   ____ |  | _\_ |__   _______  ___
 *   Source     |       _//  _ \_/ ___\|  |/ /| __ \ /  _ \  \/  /
 *   Jukebox    |    |   (  <_> )  \___|    < | \_\ (  <_> > <  <
 *   Firmware   |____|_  /\____/ \___  >__|_ \|___  /\____/__/\_ \
 *                     \/            \/     \/    \/            \/
 * $Id$
 *
 * Copyright (C) 2006 Bob Jenkins
 * http://burtleburtle.net/bob/c/lookup3.c
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License
 * as published by the Free Software Foundation; either version 2
 * of the License, or (at your option) any later version.
 *
 * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
 * KIND, either express or implied.
 *
 ****************************************************************************/
/*
lookup3.c, by Bob Jenkins, May 2006, Public Domain.

These are functions for producing 32-bit hashes for hash table lookup.
hashword(), hashlittle(), hashlittle2(), hashbig(), mix(), and final() 
are externally useful functions.  Routines to test the hash are included 
if SELF_TEST is defined.  You can use this free for any purpose.  It's in
the public domain.  It has no warranty.

You probably want to use hashlittle().  hashlittle() and hashbig()
hash byte arrays.  hashlittle() is is faster than hashbig() on
little-endian machines.  Intel and AMD are little-endian machines.
On second thought, you probably want hashlittle2(), which is identical to
hashlittle() except it returns two 32-bit hashes for the price of one.  
You could implement hashbig2() if you wanted but I haven't bothered here.

If you want to find a hash of, say, exactly 7 integers, do
a = i1;  b = i2;  c = i3;
mix(a,b,c);
a += i4; b += i5; c += i6;
mix(a,b,c);
a += i7;
final(a,b,c);
then use c as the hash value.  If you have a variable length array of
4-byte integers to hash, use hashword().  If you have a byte array (like
a character string), use hashlittle().  If you have several byte arrays, or
a mix of things, see the comments above hashlittle().  

Why is this so big?  I read 12 bytes at a time into 3 4-byte integers, 
then mix those integers.  This is fast (you can do a lot more thorough
mixing with 12*3 instructions on 3 integers than you can with 3 instructions
on 1 byte), but shoehorning those bytes into integers efficiently is messy.
*/

#include "jhash.h"

/*
* My best guess at if you are big-endian or little-endian.  This may
* need adjustment.
*/
#if defined(ROCKBOX_LITTLE_ENDIAN)
# define HASH_LITTLE_ENDIAN 1
# define HASH_BIG_ENDIAN 0
#elif defined(ROCKBOX_BIG_ENDIAN)
# define HASH_LITTLE_ENDIAN 0
# define HASH_BIG_ENDIAN 1
#else
# define HASH_LITTLE_ENDIAN 0
# define HASH_BIG_ENDIAN 0
#endif

#define hashsize(n) ((uint32_t)1<<(n))
#define hashmask(n) (hashsize(n)-1)
#define rot(x,k) (((x)<<(k)) | ((x)>>(32-(k))))

/*

mix -- mix 3 32-bit values reversibly.

This is reversible, so any information in (a,b,c) before mix() is
still in (a,b,c) after mix().

If four pairs of (a,b,c) inputs are run through mix(), or through
mix() in reverse, there are at least 32 bits of the output that
are sometimes the same for one pair and different for another pair.
This was tested for:
* pairs that differed by one bit, by two bits, in any combination
  of top bits of (a,b,c), or in any combination of bottom bits of
  (a,b,c).
* "differ" is defined as +, -, ^, or ~^.  For + and -, I transformed
  the output delta to a Gray code (a^(a>>1)) so a string of 1's (as
  is commonly produced by subtraction) look like a single 1-bit
  difference.
* the base values were pseudorandom, all zero but one bit set, or 
  all zero plus a counter that starts at zero.

Some k values for my "a-=c; a^=rot(c,k); c+=b;" arrangement that
satisfy this are
  4  6  8 16 19  4
  9 15  3 18 27 15
 14  9  3  7 17  3
Well, "9 15 3 18 27 15" didn't quite get 32 bits diffing
for "differ" defined as + with a one-bit base and a two-bit delta.  I
used http://burtleburtle.net/bob/hash/avalanche.html to choose 
the operations, constants, and arrangements of the variables.

This does not achieve avalanche.  There are input bits of (a,b,c)
that fail to affect some output bits of (a,b,c), especially of a.  The
most thoroughly mixed value is c, but it doesn't really even achieve
avalanche in c.

This allows some parallelism.  Read-after-writes are good at doubling
the number of bits affected, so the goal of mixing pulls in the opposite
direction as the goal of parallelism.  I did what I could.  Rotates
seem to cost as much as shifts on every machine I could lay my hands
on, and rotates are much kinder to the top and bottom bits, so I used
rotates.
*/
#define mix(a,b,c) \
{ \
    a -= c;  a ^= rot(c, 4);  c += b; \
    b -= a;  b ^= rot(a, 6);  a += c; \
    c -= b;  c ^= rot(b, 8);  b += a; \
    a -= c;  a ^= rot(c,16);  c += b; \
    b -= a;  b ^= rot(a,19);  a += c; \
    c -= b;  c ^= rot(b, 4);  b += a; \
}

/*
final -- final mixing of 3 32-bit values (a,b,c) into c

Pairs of (a,b,c) values differing in only a few bits will usually
produce values of c that look totally different.  This was tested for
* pairs that differed by one bit, by two bits, in any combination
  of top bits of (a,b,c), or in any combination of bottom bits of
(a,b,c).
* "differ" is defined as +, -, ^, or ~^.  For + and -, I transformed
  the output delta to a Gray code (a^(a>>1)) so a string of 1's (as
  is commonly produced by subtraction) look like a single 1-bit
  difference.
* the base values were pseudorandom, all zero but one bit set, or 
  all zero plus a counter that starts at zero.

These constants passed:
 14 11 25 16  4 14 24
 12 14 25 16  4 14 24
and these came close:
  4  8 15 26  3 22 24
 10  8 15 26  3 22 24
 11  8 15 26  3 22 24
*/
#define final(a,b,c) \
{ \
    c ^= b; c -= rot(b,14); \
    a ^= c; a -= rot(c,11); \
    b ^= a; b -= rot(a,25); \
    c ^= b; c -= rot(b,16); \
    a ^= c; a -= rot(c,4);  \
    b ^= a; b -= rot(a,14); \
    c ^= b; c -= rot(b,24); \
}

/*
  k:       pointer to the key, an array of uint32_t
  length:  number of elements in the key
  initval: an initialization value
  returns the 32-bit hash
*/
uint32_t hashw(const uint32_t *k, size_t length, uint32_t  initval)
{
    uint32_t a, b, c;

    /* Set up the internal state */
    a = b = c = 0xdeadbeef + (((uint32_t)length)<<2) + initval;

    /* handle most of the key */
    while (length > 3)
    {
        a += k[0];
        b += k[1];
        c += k[2];
        mix(a,b,c);
        length -= 3;
        k += 3;
    }

    /* handle the last 3 uint32_t's */
    switch(length) /* all the case statements fall through */
    { 
    case 3:
        c+=k[2];
    case 2:
        b+=k[1];
    case 1:
        a+=k[0];
        final(a,b,c);
    case 0:     /* case 0: nothing left to add */
        break;
    }
    /* report the result */
    return c;
}


/*
hashw2() -- same as hashw(), but take two seeds and return two
32-bit values.  pc and pb must both be nonnull, and *pc and *pb must
both be initialized with seeds.  If you pass in (*pb)==0, the output 
(*pc) will be the same as the return value from hashword().
  k:      pointer to the key, an array of uint32_t
  length: number of elements in the key
  pc, pb: pointers to primary and secondary initial values, also used to store
          the hash results.
*/
void hashw2 (const uint32_t *k, size_t length, uint32_t *pc, uint32_t *pb)
{
    uint32_t a,b,c;

    /* Set up the internal state */
    a = b = c = 0xdeadbeef + ((uint32_t)(length<<2)) + *pc;
    c += *pb;

    /* handle most of the key */
    while (length > 3)
    {
        a += k[0];
        b += k[1];
        c += k[2];
        mix(a,b,c);
        length -= 3;
        k += 3;
    }

    /* handle the last 3 uint32_t's */
    switch(length) /* all the case statements fall through */
    { 
    case 3:
        c+=k[2];
    case 2:
        b+=k[1];
    case 1:
        a+=k[0];
        final(a,b,c);
    case 0: /* case 0: nothing left to add */
        break;
    }
    /* report the result */
    *pc=c; *pb=b;
}


/*
hashs() -- hash a variable-length key into a 32-bit value
  k:       pointer to the key, an array of bytes
  length:  number of elements in the key
  initval: an initialization value
  returns the 32-bit hash
Returns a 32-bit value.  Every bit of the key affects every bit of
the return value.  Two keys differing by one or two bits will have
totally different hash values.

The best hash table sizes are powers of 2.  There is no need to do
mod a prime (mod is sooo slow!).  If you need less than 32 bits,
use a bitmask.  For example, if you need only 10 bits, do
h = (h & hashmask(10));
In which case, the hash table should have hashsize(10) elements.

If you are hashing n strings (uint8_t **)k, do it like this:
for (i=0, h=0; i<n; ++i) h = hashlittle( k[i], len[i], h);

By Bob Jenkins, 2006.  bob_jenkins@burtleburtle.net.  You may use this
code any way you wish, private, educational, or commercial.  It's free.

Use for hash table lookup, or anything where one collision in 2^^32 is
acceptable.  Do NOT use for cryptographic purposes.
*/

uint32_t hashs( const void *key, size_t length, uint32_t initval)
{
    uint32_t a,b,c; /* internal state */
    union { const void *ptr; size_t i; } u;/* needed for Mac Powerbook G4 */

    /* Set up the internal state */
    a = b = c = 0xdeadbeef + ((uint32_t)length) + initval;

    u.ptr = key;
#if HASH_LITTLE_ENDIAN
    if ((u.i & 0x3) == 0) {
        const uint32_t *k = (const uint32_t *)key;         /* read 32-bit chunks */

        /* all but last block: aligned reads and affect 32 bits of (a,b,c) */
        while (length > 12)
        {
            a += k[0];
            b += k[1];
            c += k[2];
            mix(a,b,c);
            length -= 12;
            k += 3;
        }

/* handle the last (probably partial) block */
        switch(length)
        {
        case 12:
            c += k[2];
            b += k[1];
            a += k[0];
            break;
        case 11:
            c += k[2] & 0xffffff;
            b += k[1];
            a += k[0];
            break;
        case 10:
            c += k[2] & 0xffff;
            b += k[1];
            a += k[0];
            break;
        case 9:
            c += k[2] & 0xff;
            b += k[1];
            a += k[0];
            break;
        case 8:
            b += k[1];
            a += k[0];
            break;
        case 7:
            b += k[1] & 0xffffff;
            a += k[0];
            break;
        case 6:
            b += k[1] & 0xffff;
            a += k[0];
            break;
        case 5:
            b += k[1] & 0xff;
            a += k[0];
            break;
        case 4:
            a += k[0];
            break;
        case 3:
            a += k[0] & 0xffffff;
            break;
        case 2 :
            a += k[0] & 0xffff;
            break;
        case 1:
            a += k[0] & 0xff;
            break;
        case 0: 
            return c; /* zero length strings require no mixing */
        }

    } else if ((u.i & 0x1) == 0) {
        const uint16_t *k = (const uint16_t *)key; /* read 16-bit chunks */
        const uint8_t  *k8;

    /* all but last block: aligned reads and different mixing */
        while (length > 12)
        {
            a += k[0] + (((uint32_t)k[1])<<16);
            b += k[2] + (((uint32_t)k[3])<<16);
            c += k[4] + (((uint32_t)k[5])<<16);
            mix(a,b,c);
            length -= 12;
            k += 6;
        }

        /* handle the last (probably partial) block */
        k8 = (const uint8_t *)k;
        switch(length)
        {
        case 12:
            c += k[4] + (((uint32_t)k[5])<<16);
            b += k[2] + (((uint32_t)k[3])<<16);
            a += k[0] + (((uint32_t)k[1])<<16);
            break;
        case 11:
            c += ((uint32_t)k8[10])<<16; /* fall through */
        case 10:
            c += k[4];
            b += k[2] + (((uint32_t)k[3])<<16);
            a += k[0] + (((uint32_t)k[1])<<16);
            break;
        case 9:
            c += k8[8]; /* fall through */
        case 8:
            b += k[2] + (((uint32_t)k[3])<<16);
            a += k[0] + (((uint32_t)k[1])<<16);
            break;
        case 7:
            b += ((uint32_t)k8[6])<<16; /* fall through */
        case 6:
            b += k[2];
            a += k[0] + (((uint32_t)k[1])<<16);
            break;
        case 5:
            b += k8[4]; /* fall through */
        case 4:
            a += k[0] + (((uint32_t)k[1])<<16);
            break;
        case 3:
            a += ((uint32_t)k8[2])<<16;      /* fall through */
        case 2:
            a += k[0];
            break;
        case 1:
            a += k8[0];
            break;
        case 0:
            return c; /* zero length requires no mixing */
        }

    } else
#endif
    { /* need to read the key one byte at a time */
        const uint8_t *k = (const uint8_t *)key;

        /* all but the last block: affect some 32 bits of (a,b,c) */
        while (length > 12)
        {
            a += k[0];
            a += ((uint32_t)k[1])<<8;
            a += ((uint32_t)k[2])<<16;
            a += ((uint32_t)k[3])<<24;
            b += k[4];
            b += ((uint32_t)k[5])<<8;
            b += ((uint32_t)k[6])<<16;
            b += ((uint32_t)k[7])<<24;
            c += k[8];
            c += ((uint32_t)k[9])<<8;
            c += ((uint32_t)k[10])<<16;
            c += ((uint32_t)k[11])<<24;
            mix(a,b,c);
            length -= 12;
            k += 12;
        }

        /* last block: affect all 32 bits of (c) */
        switch(length) /* all the case statements fall through */
        {
        case 12:
            c += ((uint32_t)k[11])<<24;
        case 11:
            c += ((uint32_t)k[10])<<16;
        case 10:
            c += ((uint32_t)k[9])<<8;
        case 9:
            c += k[8];
        case 8:
            b += ((uint32_t)k[7])<<24;
        case 7:
            b += ((uint32_t)k[6])<<16;
        case 6:
            b += ((uint32_t)k[5])<<8;
        case 5:
            b += k[4];
        case 4:
            a += ((uint32_t)k[3])<<24;
        case 3:
            a += ((uint32_t)k[2])<<16;
        case 2:
            a += ((uint32_t)k[1])<<8;
        case 1:
            a +=k [0];
            break;
        case 0:
            return c;
        }
    }

    final(a,b,c);
    return c;
}


/*
hashs2: return 2 32-bit hash values
  k:       pointer to the key, an array of bytes
  length: number of elements in the key
  pc, pb: pointers to primary and secondary initial values, also used to store
          the hash results.
* This is identical to hashlittle(), except it returns two 32-bit hash
* values instead of just one.  This is good enough for hash table
* lookup with 2^^64 buckets, or if you want a second hash if you're not
* happy with the first, or if you want a probably-unique 64-bit ID for
* the key.  *pc is better mixed than *pb, so use *pc first.  If you want
* a 64-bit value do something like "*pc + (((uint64_t)*pb)<<32)".
*/
void hashs2(const void *key, size_t length, uint32_t *pc, uint32_t *pb)
{
    uint32_t a, b, c; /* internal state */
    union { const void *ptr; size_t i; } u; /* needed for Mac Powerbook G4 */

    /* Set up the internal state */
    a = b = c = 0xdeadbeef + ((uint32_t)length) + *pc;
    c += *pb;

    u.ptr = key;
#if HASH_LITTLE_ENDIAN
    if (((u.i & 0x3) == 0)) {
        const uint32_t *k = (const uint32_t *)key; /* read 32-bit chunks */

        /* all but last block: aligned reads and affect 32 bits of (a,b,c) */
        while (length > 12)
        {
            a += k[0];
            b += k[1];
            c += k[2];
            mix(a,b,c);
            length -= 12;
            k += 3;
        }

/* handle the last (probably partial) block */
        switch(length)
        {
        case 12:
            c += k[2];
            b += k[1];
            a += k[0];
            break;
        case 11:
            c += k[2] & 0xffffff;
            b += k[1];
            a += k[0];
            break;
        case 10:
            c += k[2] & 0xffff;
            b += k[1];
            a += k[0];
            break;
        case 9:
            c += k[2] & 0xff;
            b += k[1];
            a += k[0];
            break;
        case 8:
            b += k[1];
            a += k[0];
            break;
        case 7:
            b += k[1] & 0xffffff;
            a += k[0];
            break;
        case 6:
            b += k[1] & 0xffff;
            a += k[0];
            break;
        case 5:
            b += k[1] & 0xff;
            a += k[0];
            break;
        case 4:
            a += k[0];
            break;
        case 3:
            a += k[0] & 0xffffff;
            break;
        case 2:
            a += k[0] & 0xffff;
            break;
        case 1:
            a += k[0] & 0xff;
            break;
        case 0:
            *pc=c;
            *pb=b;
            return; /* zero length strings require no mixing */
        }
    } else if (((u.i & 0x1) == 0)) {
        const uint16_t *k = (const uint16_t *)key; /* read 16-bit chunks */
        const uint8_t  *k8;

        /* all but last block: aligned reads and different mixing */
        while (length > 12)
        {
            a += k[0] + (((uint32_t)k[1])<<16);
            b += k[2] + (((uint32_t)k[3])<<16);
            c += k[4] + (((uint32_t)k[5])<<16);
            mix(a,b,c);
            length -= 12;
            k += 6;
        }

        /* handle the last (probably partial) block */
        k8 = (const uint8_t *)k;
        switch(length)
        {
        case 12:
            c += k[4] + (((uint32_t)k[5])<<16);
            b += k[2] + (((uint32_t)k[3])<<16);
            a += k[0] + (((uint32_t)k[1])<<16);
            break;
        case 11:
            c += ((uint32_t)k8[10])<<16; /* fall through */
        case 10:
            c += k[4];
            b += k[2] + (((uint32_t)k[3])<<16);
            a += k[0] + (((uint32_t)k[1])<<16);
            break;
        case 9:
            c += k8[8]; /* fall through */
        case 8:
            b += k[2] + (((uint32_t)k[3])<<16);
            a += k[0] + (((uint32_t)k[1])<<16);
            break;
        case 7:
            b += ((uint32_t)k8[6])<<16; /* fall through */
        case 6:
            b += k[2];
            a += k[0] + (((uint32_t)k[1])<<16);
            break;
        case 5:
            b += k8[4]; /* fall through */
        case 4:
            a += k[0] + (((uint32_t)k[1])<<16);
            break;
        case 3:
            a += ((uint32_t)k8[2])<<16; /* fall through */
        case 2:
            a += k[0];
            break;
        case 1:
            a += k8[0];
            break;
        case 0:
            *pc=c;
            *pb=b;
            return; /* zero length strings require no mixing */
        }
    } else
#endif
    { /* need to read the key one byte at a time */
        const uint8_t *k = (const uint8_t *)key;

        /* all but the last block: affect some 32 bits of (a,b,c) */
        while (length > 12)
        {
            a += k[0];
            a += ((uint32_t)k[1])<<8;
            a += ((uint32_t)k[2])<<16;
            a += ((uint32_t)k[3])<<24;
            b += k[4];
            b += ((uint32_t)k[5])<<8;
            b += ((uint32_t)k[6])<<16;
            b += ((uint32_t)k[7])<<24;
            c += k[8];
            c += ((uint32_t)k[9])<<8;
            c += ((uint32_t)k[10])<<16;
            c += ((uint32_t)k[11])<<24;
            mix(a,b,c);
            length -= 12;
            k += 12;
        }

        /* last block: affect all 32 bits of (c) */
        switch(length) /* all the case statements fall through */
        {
        case 12:
            c += ((uint32_t)k[11]) << 24;
        case 11:
            c += ((uint32_t)k[10]) << 16;
        case 10:
            c += ((uint32_t)k[9]) << 8;
        case 9:
            c += k[8];
        case 8:
            b += ((uint32_t)k[7]) << 24;
        case 7:
            b += ((uint32_t)k[6]) << 16;
        case 6:
            b += ((uint32_t)k[5]) << 8;
        case 5:
            b += k[4];
        case 4:
            a += ((uint32_t)k[3]) << 24;
        case 3:
            a += ((uint32_t)k[2]) << 16;
        case 2:
            a += ((uint32_t)k[1]) << 8;
        case 1:
            a += k[0];
            break;
        case 0:
            *pc=c;
            *pb=b;
            return; /* zero length strings require no mixing */
        }
    }

    final(a,b,c);
    *pc=c;
    *pb=b;
}
IBSS_ATTR; uint8 t8l [ 36] IBSS_ATTR; uint8 t9l [ 36] IBSS_ATTR; uint8 t10l [ 64] IBSS_ATTR; uint8 t11l [ 64] IBSS_ATTR; uint8 t12l [ 64] IBSS_ATTR; uint8 t13l [256] IBSS_ATTR; uint8 t15l [256] IBSS_ATTR; uint8 t16l [256] IBSS_ATTR; uint8 t24l [256] IBSS_ATTR; struct huffcodetab ht [HTN] IBSS_ATTR; static const uint8 ht_count_const[2][2][16] = { { { 1, 5, 4, 5, 6, 5, 4, 4, 7, 3, 6, 0, 7, 2, 3, 1 }, /* table0 */ { 1, 5, 5, 7, 5, 8, 7, 9, 5, 7, 7, 9, 7, 9, 9,10 } }, /* hleng0 */ { {15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0 }, /* table1 */ { 4, 5, 5, 6, 5, 6, 6, 7, 5, 6, 6, 7, 6, 7, 7, 8 } } }; /* hleng1 */ static const uint8 t1HB_const[4] = {1,1,1,0}; static const uint8 t2HB_const[9] = {1,2,1,3,1,1,3,2,0}; static const uint8 t3HB_const[9] = {3,2,1,1,1,1,3,2,0}; static const uint8 t5HB_const[16] = {1,2,6,5,3,1,4,4,7,5,7,1,6,1,1,0}; static const uint8 t6HB_const[16] = {7,3,5,1,6,2,3,2,5,4,4,1,3,3,2,0}; static const uint8 t7HB_const[36] = { 1, 2,10,19,16,10, 3, 3, 7,10, 5, 3,11, 4,13,17, 8, 4, 12,11,18,15,11, 2, 7, 6, 9,14, 3, 1, 6, 4, 5, 3, 2, 0 }; static const uint8 t8HB_const[36] = { 3, 4, 6,18,12, 5, 5, 1, 2,16, 9, 3, 7, 3, 5,14, 7, 3, 19,17,15,13,10, 4,13, 5, 8,11, 5, 1,12, 4, 4, 1, 1, 0 }; static const uint8 t9HB_const[36] = { 7, 5, 9,14,15, 7, 6, 4, 5, 5, 6, 7, 7, 6, 8, 8, 8, 5, 15, 6, 9,10, 5, 1,11, 7, 9, 6, 4, 1,14, 4, 6, 2, 6, 0 }; static const uint8 t10HB_const[64] = {1,2,10,23,35,30,12,17,3,3,8,12,18,21,12,7,11,9,15,21,32, 40,19,6,14,13,22,34,46,23,18,7,20,19,33,47,27,22,9,3,31,22, 41,26,21,20,5,3,14,13,10,11,16,6,5,1,9,8,7,8,4,4,2,0 }; static const uint8 t11HB_const[64] = {3,4,10,24,34,33,21,15,5,3,4,10,32,17,11,10,11,7,13,18,30, 31,20,5,25,11,19,59,27,18,12,5,35,33,31,58,30,16,7,5,28,26, 32,19,17,15,8,14,14,12,9,13,14,9,4,1,11,4,6,6,6,3,2,0 }; static const uint8 t12HB_const[64] = {9,6,16,33,41,39,38,26,7,5,6,9,23,16,26,11,17,7,11,14,21, 30,10,7,17,10,15,12,18,28,14,5,32,13,22,19,18,16,9,5,40,17, 31,29,17,13,4,2,27,12,11,15,10,7,4,1,27,12,8,12,6,3,1,0 }; static const uint8 t13HB_const[256] = {1,5,14,21,34,51,46,71,42,52,68,52,67,44,43,19,3,4,12,19,31,26,44,33,31,24,32, 24,31,35,22,14,15,13,23,36,59,49,77,65,29,40,30,40,27,33,42,16,22,20,37,61,56, 79,73,64,43,76,56,37,26,31,25,14,35,16,60,57,97,75,114,91,54,73,55,41,48,53, 23,24,58,27,50,96,76,70,93,84,77,58,79,29,74,49,41,17,47,45,78,74,115,94,90, 79,69,83,71,50,59,38,36,15,72,34,56,95,92,85,91,90,86,73,77,65,51,44,43,42,43, 20,30,44,55,78,72,87,78,61,46,54,37,30,20,16,53,25,41,37,44,59,54,81,66,76,57, 54,37,18,39,11,35,33,31,57,42,82,72,80,47,58,55,21,22,26,38,22,53,25,23,38,70, 60,51,36,55,26,34,23,27,14,9,7,34,32,28,39,49,75,30,52,48,40,52,28,18,17,9,5, 45,21,34,64,56,50,49,45,31,19,12,15,10,7,6,3,48,23,20,39,36,35,53,21,16,23,13, 10,6,1,4,2,16,15,17,27,25,20,29,11,17,12,16,8,1,1,0,1 }; static const uint8 t15HB_const[256] = {7,12,18,53,47,76,124,108,89,123,108,119,107,81,122,63,13,5,16,27,46,36,61,51, 42,70,52,83,65,41,59,36,19,17,15,24,41,34,59,48,40,64,50,78,62,80,56,33,29,28, 25,43,39,63,55,93,76,59,93,72,54,75,50,29,52,22,42,40,67,57,95,79,72,57,89,69, 49,66,46,27,77,37,35,66,58,52,91,74,62,48,79,63,90,62,40,38,125,32,60,56,50, 92,78,65,55,87,71,51,73,51,70,30,109,53,49,94,88,75,66,122,91,73,56,42,64,44, 21,25,90,43,41,77,73,63,56,92,77,66,47,67,48,53,36,20,71,34,67,60,58,49,88,76, 67,106,71,54,38,39,23,15,109,53,51,47,90,82,58,57,48,72,57,41,23,27,62,9,86, 42,40,37,70,64,52,43,70,55,42,25,29,18,11,11,118,68,30,55,50,46,74,65,49,39, 24,16,22,13,14,7,91,44,39,38,34,63,52,45,31,52,28,19,14,8,9,3,123,60,58,53,47, 43,32,22,37,24,17,12,15,10,2,1,71,37,34,30,28,20,17,26,21,16,10,6,8,6,2,0}; static const uint16 t16HB_const[256] = {1,5,14,44,74,63,110,93,172,149,138,242,225,195,376,17,3,4,12,20,35,62,53,47, 83,75,68,119,201,107,207,9,15,13,23,38,67,58,103,90,161,72,127,117,110,209, 206,16,45,21,39,69,64,114,99,87,158,140,252,212,199,387,365,26,75,36,68,65, 115,101,179,164,155,264,246,226,395,382,362,9,66,30,59,56,102,185,173,265,142, 253,232,400,388,378,445,16,111,54,52,100,184,178,160,133,257,244,228,217,385, 366,715,10,98,48,91,88,165,157,148,261,248,407,397,372,380,889,884,8,85,84,81, 159,156,143,260,249,427,401,392,383,727,713,708,7,154,76,73,141,131,256,245, 426,406,394,384,735,359,710,352,11,139,129,67,125,247,233,229,219,393,743,737, 720,885,882,439,4,243,120,118,115,227,223,396,746,742,736,721,712,706,223,436, 6,202,224,222,218,216,389,386,381,364,888,443,707,440,437,1728,4,747,211,210, 208,370,379,734,723,714,1735,883,877,876,3459,865,2,377,369,102,187,726,722, 358,711,709,866,1734,871,3458,870,434,0,12,10,7,11,10,17,11,9,13,12,10,7,5,3, 1,3}; static const uint16 t24HB_const[256] = {15,13,46,80,146,262,248,434,426,669,653,649,621,517,1032,88,14,12,21,38,71, 130,122,216,209,198,327,345,319,297,279,42,47,22,41,74,68,128,120,221,207,194, 182,340,315,295,541,18,81,39,75,70,134,125,116,220,204,190,178,325,311,293, 271,16,147,72,69,135,127,118,112,210,200,188,352,323,306,285,540,14,263,66, 129,126,119,114,214,202,192,180,341,317,301,281,262,12,249,123,121,117,113, 215,206,195,185,347,330,308,291,272,520,10,435,115,111,109,211,203,196,187, 353,332,313,298,283,531,381,17,427,212,208,205,201,193,186,177,169,320,303, 286,268,514,377,16,335,199,197,191,189,181,174,333,321,305,289,275,521,379, 371,11,668,184,183,179,175,344,331,314,304,290,277,530,383,373,366,10,652,346, 171,168,164,318,309,299,287,276,263,513,375,368,362,6,648,322,316,312,307,302, 292,284,269,261,512,376,370,364,359,4,620,300,296,294,288,282,273,266,515,380, 374,369,365,361,357,2,1033,280,278,274,267,264,259,382,378,372,367,363,360, 358,356,0,43,20,19,17,15,13,11,9,7,6,4,7,5,3,1,3}; static const uint32 tab1315_const[256] = { 0x010003,0x050005,0x070006,0x080008,0x090008,0x0a0009,0x0a000a,0x0b000a, 0x0a000a,0x0b000b,0x0c000b,0x0c000c,0x0d000c,0x0d000c,0x0e000d,0x0e000e, 0x040005,0x060005,0x080007,0x090008,0x0a0009,0x0a0009,0x0b000a,0x0b000a, 0x0b000a,0x0b000b,0x0c000b,0x0c000c,0x0d000c,0x0e000c,0x0e000d,0x0e000d, 0x070006,0x080007,0x090007,0x0a0008,0x0b0009,0x0b0009,0x0c000a,0x0c000a, 0x0b000a,0x0c000b,0x0c000b,0x0d000c,0x0d000c,0x0e000d,0x0f000d,0x0f000d, 0x080007,0x090008,0x0a0008,0x0b0009,0x0b0009,0x0c000a,0x0c000a,0x0c000b, 0x0c000b,0x0d000b,0x0d000c,0x0d000c,0x0d000c,0x0e000d,0x0f000d,0x0f000d, 0x090008,0x090008,0x0b0009,0x0b0009,0x0c000a,0x0c000a,0x0d000b,0x0d000b, 0x0c000b,0x0d000b,0x0d000c,0x0e000c,0x0e000c,0x0f000d,0x0f000d,0x10000d, 0x0a0009,0x0a0009,0x0b0009,0x0c000a,0x0c000a,0x0c000a,0x0d000b,0x0d000b, 0x0d000b,0x0d000b,0x0e000c,0x0d000c,0x0f000d,0x0f000d,0x10000d,0x10000e, 0x0a000a,0x0b0009,0x0c000a,0x0c000a,0x0d000a,0x0d000b,0x0d000b,0x0d000b, 0x0d000b,0x0e000c,0x0e000c,0x0e000c,0x0f000d,0x0f000d,0x10000e,0x10000e, 0x0b000a,0x0b000a,0x0c000a,0x0d000b,0x0d000b,0x0d000b,0x0e000b,0x0e000c, 0x0e000c,0x0e000c,0x0f000c,0x0f000c,0x0f000d,0x10000d,0x12000d,0x12000e, 0x0a000a,0x0a000a,0x0b000a,0x0c000b,0x0c000b,0x0d000b,0x0d000b,0x0e000c, 0x0e000c,0x0e000c,0x0e000c,0x0f000d,0x0f000d,0x10000e,0x11000e,0x11000e, 0x0b000a,0x0b000a,0x0c000b,0x0c000b,0x0d000b,0x0d000b,0x0d000c,0x0f000c, 0x0e000c,0x0f000d,0x0f000d,0x10000d,0x10000d,0x10000e,0x12000e,0x11000e, 0x0b000b,0x0c000b,0x0c000b,0x0d000b,0x0d000c,0x0e000c,0x0e000c,0x0f000c, 0x0e000c,0x0f000d,0x10000d,0x0f000d,0x10000d,0x11000e,0x12000f,0x13000e, 0x0c000b,0x0c000b,0x0c000b,0x0d000b,0x0e000c,0x0e000c,0x0e000c,0x0e000c, 0x0f000d,0x0f000d,0x0f000d,0x10000d,0x11000e,0x11000e,0x11000e,0x12000f, 0x0c000c,0x0d000c,0x0d000b,0x0e000c,0x0e000c,0x0f000c,0x0e000d,0x0f000d, 0x10000d,0x10000d,0x11000d,0x11000d,0x11000e,0x12000e,0x12000f,0x12000f, 0x0d000c,0x0d000c,0x0e000c,0x0f000c,0x0f000c,0x0f000d,0x10000d,0x10000d, 0x10000d,0x10000e,0x10000e,0x11000e,0x12000e,0x11000e,0x12000f,0x12000f, 0x0e000d,0x0e000d,0x0e000d,0x0f000d,0x0f000d,0x0f000d,0x11000d,0x10000d, 0x10000e,0x13000e,0x11000e,0x11000e,0x11000f,0x13000f,0x12000e,0x12000f, 0x0d000d,0x0e000d,0x0f000d,0x10000d,0x10000d,0x10000d,0x11000d,0x10000e, 0x11000e,0x11000e,0x12000e,0x12000e,0x15000f,0x14000f,0x15000f,0x12000f }; static const uint32 tab01_const[16] = { 0x10004,0x50005,0x50005,0x70006,0x50005,0x80006,0x70006,0x90007, 0x50005,0x70006,0x70006,0x90007,0x70006,0x90007,0x90007,0xa0008 }; static const uint32 tab23_const[ 9] = { 0x10002,0x40003,0x70007,0x40004,0x50004,0x70007,0x60006,0x70007,0x80008 }; static const uint32 tab56_const[16] = { 0x10003,0x40004,0x70006,0x80008,0x40004,0x50004,0x80006,0x90007, 0x70005,0x80006,0x90007,0xa0008,0x80007,0x80007,0x90008,0xa0009 }; static const uint32 tab789_const[36] = {0x00100803,0x00401004,0x00701c06,0x00902407,0x00902409,0x00a0280a,0x00401004, 0x00601005,0x00801806,0x00902807,0x00902808,0x00a0280a,0x00701c05,0x00701806, 0x00902007,0x00a02808,0x00a02809,0x00b02c0a,0x00802407,0x00902807,0x00a02808, 0x00b02c09,0x00b02c09,0x00b0300a,0x00802408,0x00902408,0x00a02809,0x00b02c09, 0x00b0300a,0x00c0300b,0x00902809,0x00a02809,0x00b02c0a,0x00c02c0a,0x00c0340b, 0x00c0340b}; static const uint32 tabABC_const[64] = {0x00100804,0x00401004,0x00701806,0x00902008,0x00a02409,0x00a0280a,0x00a0240a, 0x00b0280a,0x00401004,0x00601405,0x00801806,0x00902007,0x00a02809,0x00b02809, 0x00a0240a,0x00a0280a,0x00701806,0x00801c06,0x00902007,0x00a02408,0x00b02809, 0x00c02c0a,0x00b02809,0x00b0280a,0x00802007,0x00902007,0x00a02408,0x00b02c08, 0x00c02809,0x00c0300a,0x00b0280a,0x00c02c0a,0x00902408,0x00a02808,0x00b02809, 0x00c02c09,0x00c02c0a,0x00c0300a,0x00c02c0a,0x00c0300b,0x00a02409,0x00b02809, 0x00c02c0a,0x00c0300a,0x00d0300a,0x00d0340b,0x00c0300a,0x00d0340b,0x00902409, 0x00a02409,0x00b02409,0x00c0280a,0x00c02c0a,0x00c0300b,0x00d0300b,0x00d0300c, 0x00a0240a,0x00a0240a,0x00b0280a,0x00c02c0b,0x00c0300b,0x00d0300b,0x00d0300b, 0x00d0300c}; static const uint32 tab1624_const[256] = {0x00010004,0x00050005,0x00070007,0x00090008,0x000a0009,0x000a000a,0x000b000a, 0x000b000b,0x000c000b,0x000c000c,0x000c000c,0x000d000c,0x000d000c,0x000d000c, 0x000e000d,0x000a000a,0x00040005,0x00060006,0x00080007,0x00090008,0x000a0009, 0x000b000a,0x000b000a,0x000b000b,0x000c000b,0x000c000b,0x000c000c,0x000d000c, 0x000e000c,0x000d000c,0x000e000c,0x000a000a,0x00070007,0x00080007,0x00090008, 0x000a0009,0x000b0009,0x000b000a,0x000c000a,0x000c000b,0x000d000b,0x000c000b, 0x000d000b,0x000d000c,0x000d000c,0x000e000c,0x000e000d,0x000b0009,0x00090008, 0x00090008,0x000a0009,0x000b0009,0x000b000a,0x000c000a,0x000c000a,0x000c000b, 0x000d000b,0x000d000b,0x000e000b,0x000e000c,0x000e000c,0x000f000c,0x000f000c, 0x000c0009,0x000a0009,0x000a0009,0x000b0009,0x000b000a,0x000c000a,0x000c000a, 0x000d000a,0x000d000b,0x000d000b,0x000e000b,0x000e000c,0x000e000c,0x000f000c, 0x000f000c,0x000f000d,0x000b0009,0x000a000a,0x000a0009,0x000b000a,0x000b000a, 0x000c000a,0x000d000a,0x000d000b,0x000e000b,0x000d000b,0x000e000b,0x000e000c, 0x000f000c,0x000f000c,0x000f000c,0x0010000c,0x000c0009,0x000b000a,0x000b000a, 0x000b000a,0x000c000a,0x000d000a,0x000d000b,0x000d000b,0x000d000b,0x000e000b, 0x000e000c,0x000e000c,0x000e000c,0x000f000c,0x000f000c,0x0010000d,0x000c0009, 0x000b000b,0x000b000a,0x000c000a,0x000c000a,0x000d000b,0x000d000b,0x000d000b, 0x000e000b,0x000e000c,0x000f000c,0x000f000c,0x000f000c,0x000f000c,0x0011000d, 0x0011000d,0x000c000a,0x000b000b,0x000c000b,0x000c000b,0x000d000b,0x000d000b, 0x000d000b,0x000e000b,0x000e000b,0x000f000b,0x000f000c,0x000f000c,0x000f000c, 0x0010000c,0x0010000d,0x0010000d,0x000c000a,0x000c000b,0x000c000b,0x000c000b, 0x000d000b,0x000d000b,0x000e000b,0x000e000b,0x000f000c,0x000f000c,0x000f000c, 0x000f000c,0x0010000c,0x000f000d,0x0010000d,0x000f000d,0x000d000a,0x000c000c, 0x000d000b,0x000c000b,0x000d000b,0x000e000b,0x000e000c,0x000e000c,0x000e000c, 0x000f000c,0x0010000c,0x0010000c,0x0010000d,0x0011000d,0x0011000d,0x0010000d, 0x000c000a,0x000d000c,0x000d000c,0x000d000b,0x000d000b,0x000e000b,0x000e000c, 0x000f000c,0x0010000c,0x0010000c,0x0010000c,0x0010000c,0x0010000d,0x0010000d, 0x000f000d,0x0010000d,0x000d000a,0x000d000c,0x000e000c,0x000e000c,0x000e000c, 0x000e000c,0x000f000c,0x000f000c,0x000f000c,0x000f000c,0x0011000c,0x0010000d, 0x0010000d,0x0010000d,0x0010000d,0x0012000d,0x000d000a,0x000f000c,0x000e000c, 0x000e000c,0x000e000c,0x000f000c,0x000f000c,0x0010000c,0x0010000c,0x0010000d, 0x0012000d,0x0011000d,0x0011000d,0x0011000d,0x0013000d,0x0011000d,0x000d000a, 0x000e000d,0x000f000c,0x000d000c,0x000e000c,0x0010000c,0x0010000c,0x000f000c, 0x0010000d,0x0010000d,0x0011000d,0x0012000d,0x0011000d,0x0013000d,0x0011000d, 0x0010000d,0x000d000a,0x000a0009,0x000a0009,0x000a0009,0x000b0009,0x000b0009, 0x000c0009,0x000c0009,0x000c0009,0x000d0009,0x000d0009,0x000d0009,0x000d000a, 0x000d000a,0x000d000a,0x000d000a,0x000a0006}; static const uint8 t1l_const[8] = {1,3,2,3,1,4,3,5}; static const uint8 t2l_const[9] = {1,3,6,3,3,5,5,5,6}; static const uint8 t3l_const[9] = {2,2,6,3,2,5,5,5,6}; static const uint8 t5l_const[16] = {1,3,6,7,3,3,6,7,6,6,7,8,7,6,7,8}; static const uint8 t6l_const[16] = {3,3,5,7,3,2,4,5,4,4,5,6,6,5,6,7}; static const uint8 t7l_const[36] = {1,3,6,8,8,9,3,4,6,7,7,8,6,5,7,8,8,9,7,7,8,9,9,9,7,7,8,9,9,10,8,8,9,10,10,10}; static const uint8 t8l_const[36] = {2,3,6,8,8,9,3,2,4,8,8,8,6,4,6,8,8,9,8,8,8,9,9,10,8,7,8,9,10,10,9,8,9,9,11,11}; static const uint8 t9l_const[36] = {3,3,5,6,8,9,3,3,4,5,6,8,4,4,5,6,7,8,6,5,6,7,7,8,7,6,7,7,8,9,8,7,8,8,9,9}; static const uint8 t10l_const[64] = {1,3,6,8,9,9,9,10,3,4,6,7,8,9,8,8,6,6,7,8,9,10,9,9,7,7,8,9,10,10,9,10,8,8,9,10, 10,10,10,10,9,9,10,10,11,11,10,11,8,8,9,10,10,10,11,11,9,8,9,10,10,11,11,11}; static const uint8 t11l_const[64] = {2,3,5,7,8,9,8,9,3,3,4,6,8,8,7,8,5,5,6,7,8,9,8,8,7,6,7,9,8,10,8,9,8,8,8,9,9,10, 9,10,8,8,9,10,10,11,10,11,8,7,7,8,9,10,10,10,8,7,8,9,10,10,10,10}; static const uint8 t12l_const[64] = {4,3,5,7,8,9,9,9,3,3,4,5,7,7,8,8,5,4,5,6,7,8,7,8,6,5,6,6,7,8,8,8,7,6,7,7,8, 8,8,9,8,7,8,8,8,9,8,9,8,7,7,8,8,9,9,10,9,8,8,9,9,9,9,10}; static const uint8 t13l_const[256] = {1,4,6,7,8,9,9,10,9,10,11,11,12,12,13,13,3,4,6,7,8,8,9,9,9,9,10,10,11,12,12,12, 6,6,7,8,9,9,10,10,9,10,10,11,11,12,13,13,7,7,8,9,9,10,10,10,10,11,11,11,11,12, 13,13,8,7,9,9,10,10,11,11,10,11,11,12,12,13,13,14,9,8,9,10,10,10,11,11,11,11, 12,11,13,13,14,14,9,9,10,10,11,11,11,11,11,12,12,12,13,13,14,14,10,9,10,11,11, 11,12,12,12,12,13,13,13,14,16,16,9,8,9,10,10,11,11,12,12,12,12,13,13,14,15,15, 10,9,10,10,11,11,11,13,12,13,13,14,14,14,16,15,10,10,10,11,11,12,12,13,12,13, 14,13,14,15,16,17,11,10,10,11,12,12,12,12,13,13,13,14,15,15,15,16,11,11,11,12, 12,13,12,13,14,14,15,15,15,16,16,16,12,11,12,13,13,13,14,14,14,14,14,15,16,15, 16,16,13,12,12,13,13,13,15,14,14,17,15,15,15,17,16,16,12,12,13,14,14,14,15,14, 15,15,16,16,19,18,19,16}; static const uint8 t15l_const[256] = {3,4,5,7,7,8,9,9,9,10,10,11,11,11,12,13,4,3,5,6,7,7,8,8,8,9,9,10,10,10,11,11,5, 5,5,6,7,7,8,8,8,9,9,10,10,11,11,11,6,6,6,7,7,8,8,9,9,9,10,10,10,11,11,11,7,6, 7,7,8,8,9,9,9,9,10,10,10,11,11,11,8,7,7,8,8,8,9,9,9,9,10,10,11,11,11,12,9,7,8, 8,8,9,9,9,9,10,10,10,11,11,12,12,9,8,8,9,9,9,9,10,10,10,10,10,11,11,11,12,9,8, 8,9,9,9,9,10,10,10,10,11,11,12,12,12,9,8,9,9,9,9,10,10,10,11,11,11,11,12,12, 12,10,9,9,9,10,10,10,10,10,11,11,11,11,12,13,12,10,9,9,9,10,10,10,10,11,11,11, 11,12,12,12,13,11,10,9,10,10,10,11,11,11,11,11,11,12,12,13,13,11,10,10,10,10, 11,11,11,11,12,12,12,12,12,13,13,12,11,11,11,11,11,11,11,12,12,12,12,13,13,12, 13,12,11,11,11,11,11,11,12,12,12,12,12,13,13,13,13}; static const uint8 t16l_const[256] = {1,4,6,8,9,9,10,10,11,11,11,12,12,12,13,9,3,4,6,7,8,9,9,9,10,10,10,11,12,11,12, 8,6,6,7,8,9,9,10,10,11,10,11,11,11,12,12,9,8,7,8,9,9,10,10,10,11,11,12,12,12, 13,13,10,9,8,9,9,10,10,11,11,11,12,12,12,13,13,13,9,9,8,9,9,10,11,11,12,11,12, 12,13,13,13,14,10,10,9,9,10,11,11,11,11,12,12,12,12,13,13,14,10,10,9,10,10,11, 11,11,12,12,13,13,13,13,15,15,10,10,10,10,11,11,11,12,12,13,13,13,13,14,14,14, 10,11,10,10,11,11,12,12,13,13,13,13,14,13,14,13,11,11,11,10,11,12,12,12,12,13, 14,14,14,15,15,14,10,12,11,11,11,12,12,13,14,14,14,14,14,14,13,14,11,12,12,12, 12,12,13,13,13,13,15,14,14,14,14,16,11,14,12,12,12,13,13,14,14,14,16,15,15,15, 17,15,11,13,13,11,12,14,14,13,14,14,15,16,15,17,15,14,11,9,8,8,9,9,10,10,10, 11,11,11,11,11,11,11,8}; static const uint8 t24l_const[256] = {4,4,6,7,8,9,9,10,10,11,11,11,11,11,12,9,4,4,5,6,7,8,8,9,9,9,10,10,10,10,10,8, 6,5,6,7,7,8,8,9,9,9,9,10,10,10,11,7,7,6,7,7,8,8,8,9,9,9,9,10,10,10,10,7,8,7,7, 8,8,8,8,9,9,9,10,10,10,10,11,7,9,7,8,8,8,8,9,9,9,9,10,10,10,10,10,7,9,8,8,8,8, 9,9,9,9,10,10,10,10,10,11,7,10,8,8,8,9,9,9,9,10,10,10,10,10,11,11,8,10,9,9,9, 9,9,9,9,9,10,10,10,10,11,11,8,10,9,9,9,9,9,9,10,10,10,10,10,11,11,11,8,11,9,9, 9,9,10,10,10,10,10,10,11,11,11,11,8,11,10,9,9,9,10,10,10,10,10,10,11,11,11,11, 8,11,10,10,10,10,10,10,10,10,10,11,11,11,11,11,8,11,10,10,10,10,10,10,10,11, 11,11,11,11,11,11,8,12,10,10,10,10,10,10,11,11,11,11,11,11,11,11,8,8,7,7,7,7, 7,7,7,7,7,7,8,8,8,8,4}; static const struct huffcodetab ht_const[HTN] = { { 0, NULL, NULL}, /* Apparently not used */ { 2, t1HB, t1l}, { 3, t2HB, t2l}, { 3, t3HB, t3l}, { 0, NULL, NULL}, /* Apparently not used */ { 4, t5HB, t5l}, { 4, t6HB, t6l}, { 6, t7HB, t7l}, { 6, t8HB, t8l}, { 6, t9HB, t9l}, { 8, t10HB, t10l}, { 8, t11HB, t11l}, { 8, t12HB, t12l}, {16, t13HB, t13l}, { 0, NULL, NULL}, /* Apparently not used */ {16, t15HB, t15l} }; static const struct huffcodebig ht_big[HTN] = { { 16, 1, 1 }, { 16, 2, 3 }, { 16, 3, 7 }, { 16, 4, 15 }, { 16, 6, 63 }, { 16, 8, 255 }, { 16, 10, 1023 }, { 16, 13, 8191 }, { 16, 4, 15 }, { 16, 5, 31 }, { 16, 6, 63 }, { 16, 7, 127 }, { 16, 8, 255 }, { 16, 9, 511 }, { 16, 11, 2047 }, { 16, 13, 8191 } }; static const struct { uint32 region0_cnt; uint32 region1_cnt; } subdv_table[23] = { {0, 0}, /* 0 bands */ {0, 0}, /* 1 bands */ {0, 0}, /* 2 bands */ {0, 0}, /* 3 bands */ {0, 0}, /* 4 bands */ {0, 1}, /* 5 bands */ {1, 1}, /* 6 bands */ {1, 1}, /* 7 bands */ {1, 2}, /* 8 bands */ {2, 2}, /* 9 bands */ {2, 3}, /* 10 bands */ {2, 3}, /* 11 bands */ {3, 4}, /* 12 bands */ {3, 4}, /* 13 bands */ {3, 4}, /* 14 bands */ {4, 5}, /* 15 bands */ {4, 5}, /* 16 bands */ {4, 6}, /* 17 bands */ {5, 6}, /* 18 bands */ {5, 6}, /* 19 bands */ {5, 7}, /* 20 bands */ {6, 7}, /* 21 bands */ {6, 7}, /* 22 bands */ }; static const uint32 sfBand[6][23] = { /* Table B.2.b: 22.05 kHz */ {0,6,12,18,24,30,36,44,54,66,80,96,116,140,168,200,238,284,336,396,464,522,576}, /* Table B.2.c: 24 kHz */ {0,6,12,18,24,30,36,44,54,66,80,96,114,136,162,194,232,278,330,394,464,540,576}, /* Table B.2.a: 16 kHz */ {0,6,12,18,24,30,36,44,45,66,80,96,116,140,168,200,238,248,336,396,464,522,576}, /* Table B.8.b: 44.1 kHz */ {0,4, 8,12,16,20,24,30,36,44,52,62, 74, 90,110,134,162,196,238,288,342,418,576}, /* Table B.8.c: 48 kHz */ {0,4, 8,12,16,20,24,30,36,42,50,60, 72, 88,106,128,156,190,230,276,330,384,576}, /* Table B.8.a: 32 kHz */ {0,4, 8,12,16,20,24,30,36,44,54,66, 82,102,126,156,194,240,296,364,448,550,576} }; static const short int2idx_const[4096] = /* int2idx[i] = sqrt(i*sqrt(i)); */ { 0, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 6, 7, 7, 8, 8, 8, 9, 9, 9, 10, 10, 11, 11, 11, 12, 12, 12, 12, 13, 13, 13, 14, 14, 14, 15, 15, 15, 16, 16, 16, 16, 17, 17, 17, 18, 18, 18, 19, 19, 19, 19, 20, 20, 20, 20, 21, 21, 21, 22, 22, 22, 22, 23, 23, 23, 23, 24, 24, 24, 24, 25, 25, 25, 25, 26, 26, 26, 26, 27, 27, 27, 27, 28, 28, 28, 28, 29, 29, 29, 29, 30, 30, 30, 30, 31, 31, 31, 31, 32, 32, 32, 32, 33, 33, 33, 33, 34, 34, 34, 34, 34, 35, 35, 35, 35, 36, 36, 36, 36, 36, 37, 37, 37, 37, 38, 38, 38, 38, 38, 39, 39, 39, 39, 40, 40, 40, 40, 40, 41, 41, 41, 41, 42, 42, 42, 42, 42, 43, 43, 43, 43, 44, 44, 44, 44, 44, 45, 45, 45, 45, 45, 46, 46, 46, 46, 46, 47, 47, 47, 47, 47, 48, 48, 48, 48, 49, 49, 49, 49, 49, 50, 50, 50, 50, 50, 51, 51, 51, 51, 51, 52, 52, 52, 52, 52, 53, 53, 53, 53, 53, 54, 54, 54, 54, 54, 55, 55, 55, 55, 55, 56, 56, 56, 56, 56, 57, 57, 57, 57, 57, 58, 58, 58, 58, 58, 58, 59, 59, 59, 59, 59, 60, 60, 60, 60, 60, 61, 61, 61, 61, 61, 62, 62, 62, 62, 62, 62, 63, 63, 63, 63, 63, 64, 64, 64, 64, 64, 65, 65, 65, 65, 65, 65, 66, 66, 66, 66, 66, 67, 67, 67, 67, 67, 68, 68, 68, 68, 68, 68, 69, 69, 69, 69, 69, 70, 70, 70, 70, 70, 70, 71, 71, 71, 71, 71, 72, 72, 72, 72, 72, 72, 73, 73, 73, 73, 73, 74, 74, 74, 74, 74, 74, 75, 75, 75, 75, 75, 75, 76, 76, 76, 76, 76, 77, 77, 77, 77, 77, 77, 78, 78, 78, 78, 78, 78, 79, 79, 79, 79, 79, 80, 80, 80, 80, 80, 80, 81, 81, 81, 81, 81, 81, 82, 82, 82, 82, 82, 82, 83, 83, 83, 83, 83, 84, 84, 84, 84, 84, 84, 85, 85, 85, 85, 85, 85, 86, 86, 86, 86, 86, 86, 87, 87, 87, 87, 87, 87, 88, 88, 88, 88, 88, 88, 89, 89, 89, 89, 89, 89, 90, 90, 90, 90, 90, 90, 91, 91, 91, 91, 91, 91, 92, 92, 92, 92, 92, 92, 93, 93, 93, 93, 93, 93, 94, 94, 94, 94, 94, 94, 95, 95, 95, 95, 95, 95, 96, 96, 96, 96, 96, 96, 97, 97, 97, 97, 97, 97, 98, 98, 98, 98, 98, 98, 99, 99, 99, 99, 99, 99, 99,100,100,100,100,100,100,101,101,101,101,101,101,102,102,102,102,102,102, 103,103,103,103,103,103,104,104,104,104,104,104,104,105,105,105,105,105,105,106, 106,106,106,106,106,107,107,107,107,107,107,107,108,108,108,108,108,108,109,109, 109,109,109,109,110,110,110,110,110,110,110,111,111,111,111,111,111,112,112,112, 112,112,112,112,113,113,113,113,113,113,114,114,114,114,114,114,115,115,115,115, 115,115,115,116,116,116,116,116,116,117,117,117,117,117,117,117,118,118,118,118, 118,118,118,119,119,119,119,119,119,120,120,120,120,120,120,120,121,121,121,121, 121,121,122,122,122,122,122,122,122,123,123,123,123,123,123,123,124,124,124,124, 124,124,125,125,125,125,125,125,125,126,126,126,126,126,126,126,127,127,127,127, 127,127,128,128,128,128,128,128,128,129,129,129,129,129,129,129,130,130,130,130, 130,130,131,131,131,131,131,131,131,132,132,132,132,132,132,132,133,133,133,133, 133,133,133,134,134,134,134,134,134,134,135,135,135,135,135,135,136,136,136,136, 136,136,136,137,137,137,137,137,137,137,138,138,138,138,138,138,138,139,139,139, 139,139,139,139,140,140,140,140,140,140,140,141,141,141,141,141,141,141,142,142, 142,142,142,142,142,143,143,143,143,143,143,143,144,144,144,144,144,144,144,145, 145,145,145,145,145,145,146,146,146,146,146,146,146,147,147,147,147,147,147,147, 148,148,148,148,148,148,148,149,149,149,149,149,149,149,150,150,150,150,150,150, 150,151,151,151,151,151,151,151,152,152,152,152,152,152,152,153,153,153,153,153, 153,153,154,154,154,154,154,154,154,154,155,155,155,155,155,155,155,156,156,156, 156,156,156,156,157,157,157,157,157,157,157,158,158,158,158,158,158,158,159,159, 159,159,159,159,159,160,160,160,160,160,160,160,160,161,161,161,161,161,161,161, 162,162,162,162,162,162,162,163,163,163,163,163,163,163,163,164,164,164,164,164, 164,164,165,165,165,165,165,165,165,166,166,166,166,166,166,166,167,167,167,167, 167,167,167,167,168,168,168,168,168,168,168,169,169,169,169,169,169,169,169,170, 170,170,170,170,170,170,171,171,171,171,171,171,171,172,172,172,172,172,172,172, 172,173,173,173,173,173,173,173,174,174,174,174,174,174,174,174,175,175,175,175, 175,175,175,176,176,176,176,176,176,176,176,177,177,177,177,177,177,177,178,178, 178,178,178,178,178,178,179,179,179,179,179,179,179,180,180,180,180,180,180,180, 180,181,181,181,181,181,181,181,182,182,182,182,182,182,182,182,183,183,183,183, 183,183,183,184,184,184,184,184,184,184,184,185,185,185,185,185,185,185,186,186, 186,186,186,186,186,186,187,187,187,187,187,187,187,187,188,188,188,188,188,188, 188,189,189,189,189,189,189,189,189,190,190,190,190,190,190,190,190,191,191,191, 191,191,191,191,192,192,192,192,192,192,192,192,193,193,193,193,193,193,193,193, 194,194,194,194,194,194,194,195,195,195,195,195,195,195,195,196,196,196,196,196, 196,196,196,197,197,197,197,197,197,197,197,198,198,198,198,198,198,198,199,199, 199,199,199,199,199,199,200,200,200,200,200,200,200,200,201,201,201,201,201,201, 201,201,202,202,202,202,202,202,202,202,203,203,203,203,203,203,203,204,204,204, 204,204,204,204,204,205,205,205,205,205,205,205,205,206,206,206,206,206,206,206, 206,207,207,207,207,207,207,207,207,208,208,208,208,208,208,208,208,209,209,209, 209,209,209,209,209,210,210,210,210,210,210,210,210,211,211,211,211,211,211,211, 211,212,212,212,212,212,212,212,212,213,213,213,213,213,213,213,213,214,214,214, 214,214,214,214,214,215,215,215,215,215,215,215,215,216,216,216,216,216,216,216, 216,217,217,217,217,217,217,217,217,218,218,218,218,218,218,218,218,219,219,219, 219,219,219,219,219,220,220,220,220,220,220,220,220,221,221,221,221,221,221,221, 221,222,222,222,222,222,222,222,222,223,223,223,223,223,223,223,223,224,224,224, 224,224,224,224,224,225,225,225,225,225,225,225,225,226,226,226,226,226,226,226, 226,227,227,227,227,227,227,227,227,228,228,228,228,228,228,228,228,229,229,229, 229,229,229,229,229,229,230,230,230,230,230,230,230,230,231,231,231,231,231,231, 231,231,232,232,232,232,232,232,232,232,233,233,233,233,233,233,233,233,234,234, 234,234,234,234,234,234,234,235,235,235,235,235,235,235,235,236,236,236,236,236, 236,236,236,237,237,237,237,237,237,237,237,238,238,238,238,238,238,238,238,238, 239,239,239,239,239,239,239,239,240,240,240,240,240,240,240,240,241,241,241,241, 241,241,241,241,242,242,242,242,242,242,242,242,242,243,243,243,243,243,243,243, 243,244,244,244,244,244,244,244,244,245,245,245,245,245,245,245,245,245,246,246, 246,246,246,246,246,246,247,247,247,247,247,247,247,247,248,248,248,248,248,248, 248,248,248,249,249,249,249,249,249,249,249,250,250,250,250,250,250,250,250,250, 251,251,251,251,251,251,251,251,252,252,252,252,252,252,252,252,253,253,253,253, 253,253,253,253,253,254,254,254,254,254,254,254,254,255,255,255,255,255,255,255, 255,255,256,256,256,256,256,256,256,256,257,257,257,257,257,257,257,257,257,258, 258,258,258,258,258,258,258,259,259,259,259,259,259,259,259,259,260,260,260,260, 260,260,260,260,261,261,261,261,261,261,261,261,261,262,262,262,262,262,262,262, 262,263,263,263,263,263,263,263,263,263,264,264,264,264,264,264,264,264,265,265, 265,265,265,265,265,265,265,266,266,266,266,266,266,266,266,267,267,267,267,267, 267,267,267,267,268,268,268,268,268,268,268,268,268,269,269,269,269,269,269,269, 269,270,270,270,270,270,270,270,270,270,271,271,271,271,271,271,271,271,271,272, 272,272,272,272,272,272,272,273,273,273,273,273,273,273,273,273,274,274,274,274, 274,274,274,274,275,275,275,275,275,275,275,275,275,276,276,276,276,276,276,276, 276,276,277,277,277,277,277,277,277,277,277,278,278,278,278,278,278,278,278,279, 279,279,279,279,279,279,279,279,280,280,280,280,280,280,280,280,280,281,281,281, 281,281,281,281,281,282,282,282,282,282,282,282,282,282,283,283,283,283,283,283, 283,283,283,284,284,284,284,284,284,284,284,284,285,285,285,285,285,285,285,285, 286,286,286,286,286,286,286,286,286,287,287,287,287,287,287,287,287,287,288,288, 288,288,288,288,288,288,288,289,289,289,289,289,289,289,289,289,290,290,290,290, 290,290,290,290,291,291,291,291,291,291,291,291,291,292,292,292,292,292,292,292, 292,292,293,293,293,293,293,293,293,293,293,294,294,294,294,294,294,294,294,294, 295,295,295,295,295,295,295,295,295,296,296,296,296,296,296,296,296,296,297,297, 297,297,297,297,297,297,297,298,298,298,298,298,298,298,298,299,299,299,299,299, 299,299,299,299,300,300,300,300,300,300,300,300,300,301,301,301,301,301,301,301, 301,301,302,302,302,302,302,302,302,302,302,303,303,303,303,303,303,303,303,303, 304,304,304,304,304,304,304,304,304,305,305,305,305,305,305,305,305,305,306,306, 306,306,306,306,306,306,306,307,307,307,307,307,307,307,307,307,308,308,308,308, 308,308,308,308,308,309,309,309,309,309,309,309,309,309,310,310,310,310,310,310, 310,310,310,311,311,311,311,311,311,311,311,311,312,312,312,312,312,312,312,312, 312,313,313,313,313,313,313,313,313,313,314,314,314,314,314,314,314,314,314,315, 315,315,315,315,315,315,315,315,316,316,316,316,316,316,316,316,316,317,317,317, 317,317,317,317,317,317,318,318,318,318,318,318,318,318,318,318,319,319,319,319, 319,319,319,319,319,320,320,320,320,320,320,320,320,320,321,321,321,321,321,321, 321,321,321,322,322,322,322,322,322,322,322,322,323,323,323,323,323,323,323,323, 323,324,324,324,324,324,324,324,324,324,325,325,325,325,325,325,325,325,325,325, 326,326,326,326,326,326,326,326,326,327,327,327,327,327,327,327,327,327,328,328, 328,328,328,328,328,328,328,329,329,329,329,329,329,329,329,329,330,330,330,330, 330,330,330,330,330,330,331,331,331,331,331,331,331,331,331,332,332,332,332,332, 332,332,332,332,333,333,333,333,333,333,333,333,333,334,334,334,334,334,334,334, 334,334,335,335,335,335,335,335,335,335,335,335,336,336,336,336,336,336,336,336, 336,337,337,337,337,337,337,337,337,337,338,338,338,338,338,338,338,338,338,338, 339,339,339,339,339,339,339,339,339,340,340,340,340,340,340,340,340,340,341,341, 341,341,341,341,341,341,341,341,342,342,342,342,342,342,342,342,342,343,343,343, 343,343,343,343,343,343,344,344,344,344,344,344,344,344,344,344,345,345,345,345, 345,345,345,345,345,346,346,346,346,346,346,346,346,346,347,347,347,347,347,347, 347,347,347,347,348,348,348,348,348,348,348,348,348,349,349,349,349,349,349,349, 349,349,350,350,350,350,350,350,350,350,350,350,351,351,351,351,351,351,351,351, 351,352,352,352,352,352,352,352,352,352,352,353,353,353,353,353,353,353,353,353, 354,354,354,354,354,354,354,354,354,355,355,355,355,355,355,355,355,355,355,356, 356,356,356,356,356,356,356,356,357,357,357,357,357,357,357,357,357,357,358,358, 358,358,358,358,358,358,358,359,359,359,359,359,359,359,359,359,359,360,360,360, 360,360,360,360,360,360,361,361,361,361,361,361,361,361,361,361,362,362,362,362, 362,362,362,362,362,363,363,363,363,363,363,363,363,363,363,364,364,364,364,364, 364,364,364,364,365,365,365,365,365,365,365,365,365,365,366,366,366,366,366,366, 366,366,366,367,367,367,367,367,367,367,367,367,367,368,368,368,368,368,368,368, 368,368,369,369,369,369,369,369,369,369,369,369,370,370,370,370,370,370,370,370, 370,370,371,371,371,371,371,371,371,371,371,372,372,372,372,372,372,372,372,372, 372,373,373,373,373,373,373,373,373,373,374,374,374,374,374,374,374,374,374,374, 375,375,375,375,375,375,375,375,375,375,376,376,376,376,376,376,376,376,376,377, 377,377,377,377,377,377,377,377,377,378,378,378,378,378,378,378,378,378,379,379, 379,379,379,379,379,379,379,379,380,380,380,380,380,380,380,380,380,380,381,381, 381,381,381,381,381,381,381,382,382,382,382,382,382,382,382,382,382,383,383,383, 383,383,383,383,383,383,383,384,384,384,384,384,384,384,384,384,385,385,385,385, 385,385,385,385,385,385,386,386,386,386,386,386,386,386,386,386,387,387,387,387, 387,387,387,387,387,387,388,388,388,388,388,388,388,388,388,389,389,389,389,389, 389,389,389,389,389,390,390,390,390,390,390,390,390,390,390,391,391,391,391,391, 391,391,391,391,391,392,392,392,392,392,392,392,392,392,393,393,393,393,393,393, 393,393,393,393,394,394,394,394,394,394,394,394,394,394,395,395,395,395,395,395, 395,395,395,395,396,396,396,396,396,396,396,396,396,397,397,397,397,397,397,397, 397,397,397,398,398,398,398,398,398,398,398,398,398,399,399,399,399,399,399,399, 399,399,399,400,400,400,400,400,400,400,400,400,400,401,401,401,401,401,401,401, 401,401,402,402,402,402,402,402,402,402,402,402,403,403,403,403,403,403,403,403, 403,403,404,404,404,404,404,404,404,404,404,404,405,405,405,405,405,405,405,405, 405,405,406,406,406,406,406,406,406,406,406,406,407,407,407,407,407,407,407,407, 407,407,408,408,408,408,408,408,408,408,408,408,409,409,409,409,409,409,409,409, 409,410,410,410,410,410,410,410,410,410,410,411,411,411,411,411,411,411,411,411, 411,412,412,412,412,412,412,412,412,412,412,413,413,413,413,413,413,413,413,413, 413,414,414,414,414,414,414,414,414,414,414,415,415,415,415,415,415,415,415,415, 415,416,416,416,416,416,416,416,416,416,416,417,417,417,417,417,417,417,417,417, 417,418,418,418,418,418,418,418,418,418,418,419,419,419,419,419,419,419,419,419, 419,420,420,420,420,420,420,420,420,420,420,421,421,421,421,421,421,421,421,421, 421,422,422,422,422,422,422,422,422,422,422,423,423,423,423,423,423,423,423,423, 423,424,424,424,424,424,424,424,424,424,424,425,425,425,425,425,425,425,425,425, 425,426,426,426,426,426,426,426,426,426,426,427,427,427,427,427,427,427,427,427, 427,428,428,428,428,428,428,428,428,428,428,429,429,429,429,429,429,429,429,429, 429,430,430,430,430,430,430,430,430,430,430,431,431,431,431,431,431,431,431,431, 431,432,432,432,432,432,432,432,432,432,432,433,433,433,433,433,433,433,433,433, 433,434,434,434,434,434,434,434,434,434,434,435,435,435,435,435,435,435,435,435, 435,435,436,436,436,436,436,436,436,436,436,436,437,437,437,437,437,437,437,437, 437,437,438,438,438,438,438,438,438,438,438,438,439,439,439,439,439,439,439,439, 439,439,440,440,440,440,440,440,440,440,440,440,441,441,441,441,441,441,441,441, 441,441,442,442,442,442,442,442,442,442,442,442,443,443,443,443,443,443,443,443, 443,443,443,444,444,444,444,444,444,444,444,444,444,445,445,445,445,445,445,445, 445,445,445,446,446,446,446,446,446,446,446,446,446,447,447,447,447,447,447,447, 447,447,447,448,448,448,448,448,448,448,448,448,448,448,449,449,449,449,449,449, 449,449,449,449,450,450,450,450,450,450,450,450,450,450,451,451,451,451,451,451, 451,451,451,451,452,452,452,452,452,452,452,452,452,452,453,453,453,453,453,453, 453,453,453,453,453,454,454,454,454,454,454,454,454,454,454,455,455,455,455,455, 455,455,455,455,455,456,456,456,456,456,456,456,456,456,456,457,457,457,457,457, 457,457,457,457,457,457,458,458,458,458,458,458,458,458,458,458,459,459,459,459, 459,459,459,459,459,459,460,460,460,460,460,460,460,460,460,460,460,461,461,461, 461,461,461,461,461,461,461,462,462,462,462,462,462,462,462,462,462,463,463,463, 463,463,463,463,463,463,463,463,464,464,464,464,464,464,464,464,464,464,465,465, 465,465,465,465,465,465,465,465,466,466,466,466,466,466,466,466,466,466,466,467, 467,467,467,467,467,467,467,467,467,468,468,468,468,468,468,468,468,468,468,469, 469,469,469,469,469,469,469,469,469,469,470,470,470,470,470,470,470,470,470,470, 471,471,471,471,471,471,471,471,471,471,472,472,472,472,472,472,472,472,472,472, 472,473,473,473,473,473,473,473,473,473,473,474,474,474,474,474,474,474,474,474, 474,475,475,475,475,475,475,475,475,475,475,475,476,476,476,476,476,476,476,476, 476,476,477,477,477,477,477,477,477,477,477,477,477,478,478,478,478,478,478,478, 478,478,478,479,479,479,479,479,479,479,479,479,479,479,480,480,480,480,480,480, 480,480,480,480,481,481,481,481,481,481,481,481,481,481,482,482,482,482,482,482, 482,482,482,482,482,483,483,483,483,483,483,483,483,483,483,484,484,484,484,484, 484,484,484,484,484,484,485,485,485,485,485,485,485,485,485,485,486,486,486,486, 486,486,486,486,486,486,486,487,487,487,487,487,487,487,487,487,487,488,488,488, 488,488,488,488,488,488,488,488,489,489,489,489,489,489,489,489,489,489,490,490, 490,490,490,490,490,490,490,490,490,491,491,491,491,491,491,491,491,491,491,492, 492,492,492,492,492,492,492,492,492,492,493,493,493,493,493,493,493,493,493,493, 494,494,494,494,494,494,494,494,494,494,494,495,495,495,495,495,495,495,495,495, 495,496,496,496,496,496,496,496,496,496,496,496,497,497,497,497,497,497,497,497, 497,497,497,498,498,498,498,498,498,498,498,498,498,499,499,499,499,499,499,499, 499,499,499,499,500,500,500,500,500,500,500,500,500,500,501,501,501,501,501,501, 501,501,501,501,501,502,502,502,502,502,502,502,502,502,502,503,503,503,503,503, 503,503,503,503,503,503,504,504,504,504,504,504,504,504,504,504,504,505,505,505, 505,505,505,505,505,505,505,506,506,506,506,506,506,506,506,506,506,506,507,507, 507,507,507,507,507,507,507,507,507,508,508,508,508,508,508,508,508,508,508,509, 509,509,509,509,509,509,509,509,509,509,510,510,510,510,510,510,510,510,510,510, 510,511,511,511,511,511,511,511,511,511,511,512,512,512,512,512 }; static const int order[32] = { 0, 1, 16, 17, 8, 9, 24, 25, 4, 5, 20, 21, 12, 13, 28, 29, 2, 3, 18, 19,10,11, 26, 27, 6, 7, 22, 23, 14, 15, 30, 31 }; static const int bitr_index[2][15] = { {0, 8,16,24,32,40,48,56, 64, 80, 96,112,128,144,160}, {0,32,40,48,56,64,80,96,112,128,160,192,224,256,320} }; static const int num_bands[3][15] = { {0,10,10,10,10,12,14,16, 20, 22, 24, 26, 28, 30, 32}, {0,10,10,10,10,10,12,14, 18, 24, 26, 28, 30, 32, 32}, {0,10,12,14,18,24,26,28, 30, 32, 32, 32, 32, 32, 32} }; static const int cx_const[9] = { 16135, 10531, 5604, 15396, -2845,-12551, 14189, 8192, 16384 }; static const int ca_const[8] = {-16859,-15458,-10269, -5961, -3099, -1342, -465, -121 }; static const int cs_const[8] = { 28098, 28893, 31117, 32221, 32621, 32740, 32765, 32768 }; static const short enwindow_const[15*27+24] = { 0, 65, 593, 1766, 22228, 2115, 611, 62, 8, 119, 1419, 10564,-11659,-1635,-154, -9, -8, -119,-1419,-10564, 11659, 1635, 154, 9, 464, 100, 91, 0, 69, 604, 1635, 23148, 2363, 643, 62, 7, 107, 1368, 10449,-12733,-1818,-180,-11, -7, -107,-1368,-10449, 12733, 1818, 180, 11, 420, 200, 164, 0, 72, 608, 1465, 23979, 2600, 671, 63, 7, 94, 1305, 10265,-13818,-2004,-207,-12, -7, -94,-1305,-10265, 13818, 2004, 207, 12, 380, 297, 220, 0, 76, 606, 1256, 24718, 2825, 693, 63, 6, 81, 1232, 10016,-14908,-2192,-236,-14, -6, -81,-1232,-10016, 14908, 2192, 236, 14, 342, 392, 262, 0, 78, 597, 1007, 25359, 3033, 712, 63, 6, 68, 1150, 9706,-15995,-2380,-267,-15, -6, -68,-1150, -9706, 15995, 2380, 267, 15, 307, 483, 289, 0, 80, 580, 719, 25901, 3224, 726, 62, 6, 54, 1060, 9343,-17072,-2565,-299,-17, -6, -54,-1060, -9343, 17072, 2565, 299, 17, 274, 569, 304, -1, 82, 555, 391, 26339, 3395, 735, 61, 5, 40, 963, 8930,-18131,-2747,-332,-19, -5, -40, -963, -8930, 18131, 2747, 332, 19, 242, 650, 307, -1, 83, 523, 26, 26672, 3545, 740, 60, 5, 27, 861, 8474,-19164,-2923,-366,-21, -5, -27, -861, -8474, 19164, 2923, 366, 21, 212, 724, 300, -1, 83, 482, -376, 26900, 3672, 739, 58, 4, 14, 756, 7981,-20163,-3092,-401,-24, -4, -14, -756, -7981, 20163, 3092, 401, 24, 183, 792, 283, -1, 82, 433, -812, 27022, 3776, 735, 56, 4, 1, 648, 7456,-21122,-3250,-435,-26, -4, -1, -648, -7456, 21122, 3250, 435, 26, 155, 851, 258, -1, 81, 376, -1281, 27038, 3855, 726, 54, 3, -11, 539, 6907,-22032,-3397,-470,-28, -3, 11, -539, -6907, 22032, 3397, 470, 28, 128, 903, 226, -1, 78, 312, -1778, 26951, 3910, 713, 52, 3, -22, 430, 6338,-22887,-3530,-503,-31, -3, 22, -430, -6338, 22887, 3530, 503, 31, 102, 946, 188, -2, 75, 239, -2302, 26761, 3941, 696, 49, 3, -33, 322, 5757,-23678,-3648,-537,-34, -3, 33, -322, -5757, 23678, 3648, 537, 34, 76, 980, 145, -2, 70, 160, -2848, 26472, 3948, 676, 47, 3, -42, 217, 5167,-24399,-3749,-568,-36, -3, 42, -217, -5167, 24399, 3749, 568, 36, 50, 1004, 99, -2, 65, 74, -3412, 26087, 3931, 653, 44, 2, -51, 115, 4577,-25045,-3830,-599,-39, -2, 51, -115, -4577, 25045, 3830, 599, 39, 25, 1019, 50, 25610,3891,627,42,-3990,-18,58,-2, 21226,-21226,10604,-10604,1860,-1860,1458,-1458,576,-576,130,-130,60,-60,8,-8 }; static const int win_const[18][4] = { { -3072, -134, -146, 3352 }, { -2747, -362, -471, 3579 }, { -2387, -529, -831, 3747 }, { -2004, -632,-1214, 3850 }, { -1609, -666,-1609, 3884 }, { -1214, -632,-2004, 3850 }, { -831, -529,-2387, 3747 }, { -471, -362,-2747, 3579 }, { -146, -134,-3072, 3352 }, { 134,-3072,-3352, -146 }, { 362,-2747,-3579, -471 }, { 529,-2387,-3747, -831 }, { 632,-2004,-3850,-1214 }, { 666,-1609,-3884,-1609 }, { 632,-1214,-3850,-2004 }, { 529, -831,-3747,-2387 }, { 362, -471,-3579,-2747 }, { 134, -146,-3352,-3072 } }; static char* wav_filename; static int mp3file, wavfile, wav_size, frames; static uint32 enc_buffer[16384]; /* storage for 65536 Bytes */ static int enc_chunk = 0; /* encode chunk counter */ static int enc_size; static config_t cfg; /* forward declarations */ int HuffmanCode( short *ix, int *xr, uint32 begin, uint32 end, int table); int HuffmanCod1( short *ix, int *xr, uint32 begin, uint32 end, int table); void putbits(uint32 val, uint32 nbit); int find_best_2( short *ix, uint32 start, uint32 end, const uint32 *table, uint32 len, int *bits); int find_best_3( short *ix, uint32 start, uint32 end, const uint32 *table, uint32 len, int *bits); int count_bit1 ( short *ix, uint32 start, uint32 end, int *bits ); int count_bigv ( short *ix, uint32 start, uint32 end, int table0, int table1, int *bits); bool checkString(int fd, char *string) { char temp[4]; rb->read(fd, temp, 4); return (*(long*)temp == *(long*)string) ? 1 : 0; } int Read16BitsLowHigh(int fd) { char first, second; rb->read(fd, &first, 1); rb->read(fd, &second, 1); return ((int)second << 8) | (first & 0xff); } int Read32BitsLowHigh(int fd) { int first = 0xffff & Read16BitsLowHigh(fd); int second = 0xffff & Read16BitsLowHigh(fd); return (second << 16) + first; } int wave_open(void) { unsigned short wFormatTag; unsigned long dAvgBytesPerSec; unsigned short wBlockAlign; unsigned short bits_per_samp; long header_size; if((wavfile = rb->open(wav_filename, O_RDONLY)) < 0) return -1; if(!checkString(wavfile,"RIFF")) return -2; Read32BitsLowHigh(wavfile); /* complete wave chunk size */ if(!checkString(wavfile,"WAVE")) return -3; if(!checkString(wavfile,"fmt ")) return -4; header_size = Read32BitsLowHigh(wavfile); /* chunk size */ wFormatTag = Read16BitsLowHigh(wavfile); cfg.channels = Read16BitsLowHigh(wavfile); cfg.samplerate = Read32BitsLowHigh(wavfile); dAvgBytesPerSec = Read32BitsLowHigh(wavfile); wBlockAlign = Read16BitsLowHigh(wavfile); bits_per_samp = Read16BitsLowHigh(wavfile); if(wFormatTag != 0x0001) return -5; if(bits_per_samp != 16) return -6; if(cfg.channels > 2) return -7; if(!checkString(wavfile,"data")) return -8; header_size = 0x28; wav_size = rb->filesize(wavfile); rb->lseek(wavfile, header_size, SEEK_SET); return 0; } int read_samples(uint32 *buffer, int num_samples) { int s, samples = rb->read(wavfile, buffer, 4 * num_samples) / 4; /* Pad last sample with zeros */ for(s=samples; s<num_samples; s++) buffer[s] = 0; return samples; } inline uint32 myswap32(uint32 val) { const uint8* v = (const uint8*)&val; return ((uint32)v[0]<<24) | ((uint32)v[1]<<16) | ((uint32)v[2]<<8) | v[3]; } void encodeSideInfo( side_info_t si[2][2] ) { int gr, ch, header; uint32 cc=0, sz=0; header = 0xfff00000; header |= cfg.mpg.type << 19; /* mp3 type: 1 */ header |= 1 << 17; /* mp3 layer: 1 */ header |= 1 << 16; /* mp3 crc: 0 */ header |= cfg.mpg.bitr_id << 12; header |= cfg.mpg.smpl_id << 10; header |= cfg.mpg.padding << 9; header |= cfg.mpg.mode << 6; header |= 1 << 2; /* mp3 original: 1 */ putbits( header, 32 ); if(cfg.mpg.type) { /* MPEG1 */ if(cfg.channels == 2) { putlong( 0, 20); } else { putlong( 0, 18); } for(gr=0; gr<cfg.granules; gr++) for(ch=0; ch<cfg.channels; ch++) { side_info_t *gi = &si[gr][ch]; putlong( gi->part2_3_length, 12 ); putlong( gi->address3>>1, 9 ); putlong( gi->global_gain, 8 ); putlong( gi->table_select[0], 10 ); putlong( gi->table_select[1], 5 ); putlong( gi->table_select[2], 5 ); putlong( gi->region_0_1, 7 ); putlong( gi->table_select[3], 3 ); } } else { /* MPEG2 */ if(cfg.channels == 2) { putlong( 0, 10); } else { putlong( 0, 9); } for(ch=0; ch<cfg.channels; ch++) { side_info_t *gi = &si[0][ch]; putlong( gi->part2_3_length, 12); putlong( gi->address3>>1, 9); putlong( gi->global_gain, 8); putlong( gi->table_select[0], 15); putlong( gi->table_select[1], 5); putlong( gi->table_select[2], 5); putlong( gi->region_0_1, 7); putlong( gi->table_select[3], 2); } } /* flush remaining bits */ putbits(cc, sz); } /* Note the discussion of huffmancodebits() on pages 28 and 29 of the IS, as well as the definitions of the side information on pages 26 and 27. */ void Huffmancodebits( short *ix, int *xr, side_info_t *gi ) { int region1 = gi->address1; int region2 = gi->address2; int bigvals = gi->address3; int count1 = bigvals + (gi->count1 << 2); int stuffBits = 0; int bits = 0; if(region1 > 0) bits += HuffmanCode(ix, xr, 0 , region1, gi->table_select[0]); if(region2 > region1) bits += HuffmanCode(ix, xr, region1, region2, gi->table_select[1]); if(bigvals > region2) bits += HuffmanCode(ix, xr, region2, bigvals, gi->table_select[2]); if(count1 > bigvals) bits += HuffmanCod1(ix, xr, bigvals, count1, gi->table_select[3]); if((stuffBits = gi->part2_3_length - bits) > 0) { int stuffWords = stuffBits >> 5; int remainBits = stuffBits & 31; if( remainBits ) putbits( ~0, remainBits ); while( stuffWords-- ) putbits( ~0, 32 ); /* Huffman code tables leed to padding ones */ } } int HuffmanCod1( short *ix, int *xr, uint32 begin, uint32 end, int tbl) { uint32 cc=0, sz=0; uint32 i, d, p; int sumbit=0, s=0, l=0, v, w, x, y; #define sgnv (xr[i+0] < 0 ? 1 : 0) #define sgnw (xr[i+1] < 0 ? 1 : 0) #define sgnx (xr[i+2] < 0 ? 1 : 0) #define sgny (xr[i+3] < 0 ? 1 : 0) for(i=begin; i<end; i+=4) { v = ix[i+0]; w = ix[i+1]; x = ix[i+2]; y = ix[i+3]; p = (v << 3) + (w << 2) + (x << 1) + y; switch(p) { case 0: l=0; s = 0; break; case 1: l=1; s = sgnv; break; case 2: l=1; s = sgnw; break; case 3: l=2; s = (sgnv << 1) + sgnw; break; case 4: l=1; s = sgnx; break; case 5: l=2; s = (sgnv << 1) + sgnx; break; case 6: l=2; s = (sgnw << 1) + sgnx; break; case 7: l=3; s = (sgnv << 2) + (sgnw << 1) + sgnx; break; case 8: l=1; s = sgny; break; case 9: l=2; s = (sgnv << 1) + sgny; break; case 10: l=2; s = (sgnw << 1) + sgny; break; case 11: l=3; s = (sgnv << 2) + (sgnw << 1) + sgny; break; case 12: l=2; s = (sgnx << 1) + sgny; break; case 13: l=3; s = (sgnv << 2) + (sgnx << 1) + sgny; break; case 14: l=3; s = (sgnw << 2) + (sgnx << 1) + sgny; break; case 15: l=4; s = (sgnv << 3) + (sgnw << 2) + (sgnx << 1) + sgny; break; } d = (ht_count[tbl][0][p] << l) + s; l = ht_count[tbl][1][p]; putlong( d, l ); sumbit += l; } /* flush remaining bits */ putbits(cc, sz); return sumbit; } /* Implements the pseudocode of page 98 of the IS */ int HuffmanCode( short *ix, int *xr, uint32 begin, uint32 end, int table) { uint32 cc=0, sz=0, code; uint32 i, xl=0, yl=0, idx; int x, y, bit, sumbit=0; #define sign_x (xr[i+0] < 0 ? 1 : 0) #define sign_y (xr[i+1] < 0 ? 1 : 0) if(table == 0) return 0; if( table > 15 ) { /* ESC-table is used */ uint32 linbits = ht_big[table-16].linbits; uint16 *hffcode = table < 24 ? t16HB : t24HB; uint8 *hlen = table < 24 ? t16l : t24l; for(i=begin; i<end; i+=2) { x = ix[ i ]; y = ix[i+1]; if(x > 14) { xl = x - 15; x = 15; } if(y > 14) { yl = y - 15; y = 15; } idx = x * 16 + y; code = hffcode[idx]; bit = hlen [idx]; if(x) { if(x > 14) { code = (code << linbits) | xl; bit += linbits; } code = (code << 1) | sign_x; bit += 1; } if(y) { if(y > 14) { code = (code << linbits) | yl; bit += linbits; } code = (code << 1) | sign_y; bit += 1; } putlong( code, bit ); sumbit += bit; } } else { /* No ESC-words */ const struct huffcodetab *h = &ht[table]; for(i=begin; i<end; i+=2) { x = ix[i]; y = ix[i+1]; idx = x * h->len + y; code = h->table[idx]; bit = h->hlen [idx]; if(x) { code = (code << 1) | sign_x; bit += 1; } if(y) { code = (code << 1) | sign_y; bit += 1; } putlong( code, bit ); sumbit += bit; } } /* flush remaining bits */ putbits(cc, sz); return sumbit; } void putbits(uint32 val, uint32 nbit) { int new_bitpos = CodedData.bitpos + nbit; int ptrpos = CodedData.bitpos >> 5; val = val & (0xffffffff >> (32 - nbit)); /* data fit in one uint32 */ if(((new_bitpos - 1) >> 5) == ptrpos) CodedData.bbuf[ptrpos] |= val << ((32 - new_bitpos) & 31); else { CodedData.bbuf[ptrpos ] |= val >> ((new_bitpos - 32) & 31); CodedData.bbuf[ptrpos+1] |= val << ((32 - new_bitpos) & 31); } CodedData.bitpos = new_bitpos; } /***************************************************************************/ /* Choose the Huffman table that will encode ix[begin..end] with */ /* the fewest bits. */ /* Note: This code contains knowledge about the sizes and characteristic */ /* of the Huffman tables as defined in the IS (Table B.7), and will not */ /* work with any arbitrary tables. */ /***************************************************************************/ int choose_table( short *ix, uint32 begin, uint32 end, int *bits ) { uint32 i; int max, table0, table1; for(i=begin,max=0; i<end; i++) if(ix[i] > max) max = ix[i]; if(max < 16) { /* tables without linbits */ /* indx: 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 */ /* len: 0, 2, 3, 3, 0, 4, 4, 6, 6, 6, 8, 8, 8, 16, 0, 16 */ switch(max) { case 0: return 0; case 1: return count_bit1(ix, begin, end, bits); case 2: return 2 + find_best_2(ix, begin, end, tab23, 3, bits); case 3: return 5 + find_best_2(ix, begin, end, tab56, 4, bits); case 4: case 5: return 7 + find_best_3(ix, begin, end, tab789, 6, bits); case 6: case 7: return 10 + find_best_3(ix, begin, end, tabABC, 8, bits); default: return 13 + find_best_2(ix, begin, end, tab1315, 16, bits) * 2; } } else { /* tables with linbits */ max -= 15; for(table0=0; table0<8; table0++) if(ht_big[table0].linmax >= max) break; for(table1=8; table1<16; table1++) if(ht_big[table1].linmax >= max) break; return 16 + count_bigv(ix, begin, end, table0, table1, bits); } } int find_best_2(short *ix, uint32 start, uint32 end, const uint32 *table, uint32 len, int *bits) { uint32 i, sum = 0; for(i=start; i<end; i+=2) sum += table[ix[i] * len + ix[i+1]]; if((sum & 0xffff) <= (sum >> 16)) { *bits = (sum & 0xffff); return 1; } else { *bits = sum >> 16; return 0; } } int find_best_3(short *ix, uint32 start, uint32 end, const uint32 *table, uint32 len, int *bits) { uint32 i, j, sum = 0; int sum1 = 0; int sum2 = 0; int sum3 = 0; /* avoid overflow in packed additions: 78*13 < 1024 */ for(i=start; i<end; ) { j = i + 2*78 > end ? end : i + 2*78; for(sum=0; i<j; i+=2) sum += table[ix[i] * len + ix[i+1]]; sum1 += (sum >> 20); sum2 += (sum >> 10) & 0x3ff; sum3 += (sum >> 0) & 0x3ff; } i = 0; if(sum1 > sum2) { sum1 = sum2; i = 1; } if(sum1 > sum3) { sum1 = sum3; i = 2; } *bits = sum1; return i; } /*************************************************************************/ /* Function: Count the number of bits necessary to code the subregion. */ /*************************************************************************/ int count_bit1(short *ix, uint32 start, uint32 end, int *bits ) { uint32 i, sum = 0; for(i=start; i<end; i+=2) sum += t1l[4 + ix[i] * 2 + ix[i+1]]; *bits = sum; return 1; /* this is table1 */ } int count_bigv(short *ix, uint32 start, uint32 end, int table0, int table1, int *bits ) { uint32 i, sum0, sum1, sum=0, bigv=0, x, y; /* ESC-table is used */ for(i=start; i<end; i+=2) { x = ix[i]; y = ix[i+1]; if(x > 14) { x = 15; bigv++; } if(y > 14) { y = 15; bigv++; } sum += tab1624[x * 16 + y]; } sum0 = (sum >> 16) + bigv * ht_big[table0].linbits; sum1 = (sum & 0xffff) + bigv * ht_big[table1].linbits; if(sum0 <= sum1) { *bits = sum0; return table0; } else { *bits = sum1; return table1; } } /*************************************************************************/ /* Function: Calculation of rzero, count1, address3 */ /* (Partitions ix into big values, quadruples and zeros). */ /*************************************************************************/ int calc_runlen( short *ix, side_info_t *si ) { int p, i, sum = 0; for(i=SAMPL2; i-=2; ) if(*(uint32*)&ix[i-2]) /* !!!! short *ix; !!!!! */ break; si->count1 = 0; for( ; i>3; i-=4) { int v = ix[i-1]; int w = ix[i-2]; int x = ix[i-3]; int y = ix[i-4]; if((v | w | x | y) <= 1) { p = (y<<3) + (x<<2) + (w<<1) + (v); sum += tab01[p]; si->count1++; } else break; } si->address3 = i; if((sum >> 16) < (sum & 0xffff)) { si->table_select[3] = 0; return sum >> 16; } else { si->table_select[3] = 1; return sum & 0xffff; } } /*************************************************************************/ /* Function: Quantization of the vector xr ( -> ix) */ /*************************************************************************/ int quantize_int(int *xr, short *ix, side_info_t *si) { int i, s, frac_pow[] = { 0x10000, 0xd745, 0xb505, 0x9838 }; s = frac_pow[si->quantStep & 3] >> si->quantStep / 4; /* check for integer overflow */ if(((si->max_val + 256) >> 8) * s >= (1622 << 8)) return 0; for(i=SAMPL2; i--; ) ix[i] = int2idx[(abs(xr[i]) * s + 0x8000) >> 16]; return 1; } /*************************************************************************/ /* subdivides the bigvalue region which will use separate Huffman tables */ /*************************************************************************/ void subdivide(side_info_t *si) { int scfb, count0, count1; if( !si->address3 ) { /* no bigvalue region */ si->region_0_1 = 0; si->address1 = 0; si->address2 = 0; } else { /* Calculate scale factor band index */ for(scfb=0; scalefac[scfb] < si->address3; ) scfb++; count0 = subdv_table[scfb].region0_cnt; count1 = subdv_table[scfb].region1_cnt; si->region_0_1 = (count0 << 3) | count1; si->address1 = scalefac[count0 + 1]; si->address2 = scalefac[count0 + 1 + count1 + 1]; } } /*******************************************************************/ /* Count the number of bits necessary to code the bigvalues region */ /*******************************************************************/ int bigv_bitcount(short *ix, side_info_t *gi) { int b1=0, b2=0, b3=0; /* Select huffman code tables for bigvalues regions */ gi->table_select[0] = 0; gi->table_select[1] = 0; gi->table_select[2] = 0; if( gi->address1 > 0 ) /* region0 */ gi->table_select[0] = choose_table(ix, 0 , gi->address1, &b1); if( gi->address2 > gi->address1 ) /* region1 */ gi->table_select[1] = choose_table(ix, gi->address1, gi->address2, &b2); if( gi->address3 > gi->address2 ) /* region2 */ gi->table_select[2] = choose_table(ix, gi->address2, gi->address3, &b3); return b1+b2+b3; } int quantize_and_count_bits(int *xr, short *ix, side_info_t *si) { int bits = 10000; if(quantize_int(xr, ix, si)) { bits = calc_runlen(ix, si); /* rzero,count1,address3 */ subdivide(si); /* bigvalues sfb division */ bits += bigv_bitcount(ix,si); /* bit count */ } return bits; } /***********************************************************************/ /* The code selects the best quantStep for a particular set of scalefacs */ /***********************************************************************/ int inner_loop(int *xr, int max_bits, side_info_t *si) { int bits; while((bits=quantize_and_count_bits(xr, enc_data, si)) < max_bits-64) { if(si->quantStep == 0) break; if(si->quantStep <= 2) si->quantStep = 0; else si->quantStep -= 2; } while(bits > max_bits) { si->quantStep++; bits = quantize_and_count_bits(xr, enc_data, si); } return bits; } void iteration_loop(int *xr, side_info_t *si, int gr_cnt) { int remain, tar_bits, max_bits = cfg.mean_bits; /* distribute reserved bits to remaining granules */ tar_bits = max_bits + (cfg.ResvSize / gr_cnt & ~7); if(tar_bits > max_bits + max_bits/2) tar_bits = max_bits + max_bits/2; si->part2_3_length = inner_loop(xr, tar_bits, si); si->global_gain = si->quantStep + 142 - si->additStep; /* unused bits of the reservoir can be used for remaining granules */ cfg.ResvSize += max_bits - si->part2_3_length; /* end: distribute the reserved bits to one or two granules */ if(gr_cnt == 1) { si->part2_3_length += cfg.ResvSize; /* mp3 format allows max 12bits for granule length */ if(si->part2_3_length > 4092) { remain = (si->part2_3_length - 4092 + 31) >> 5; si->part2_3_length -= remain << 5; si[-1].part2_3_length += remain << 5; while(remain--) putbits(~0, 32); } } } /* returns sum_j=0^31 a[j]*cos(PI*j*(k+1/2)/32), 0<=k<32 */ void window_subband1(short *wk, int sb0[SBLIMIT], int sb1[SBLIMIT]) ICODE_ATTR; void window_subband1(short *wk, int sb0[SBLIMIT], int sb1[SBLIMIT]) { int k, i, u, v; short *wp, *x1, *x2; #ifdef CPU_COLDFIRE int s0, s1, t0, t1; for(k=0; k<18; k++, wk+=64, sb0+=SBLIMIT, sb1+=SBLIMIT) { wp = enwindow; x1 = wk; x2 = x1 - 124; for(i=-15; i<0; i++) { asm volatile( "move.l (-224*4,%[x2]), %%d4\n" /* d4 = x2[-224] */ "movem.l (%[wp]), %%d0-%%d3\n" /* load 8 values */ "mac.w %%d0u, %%d4u, %%acc0\n" "mac.w %%d0u, %%d4l, (-160*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d0l, %%d4u, %%acc0\n" "mac.w %%d0l, %%d4l, ( -96*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d1u, %%d4u, %%acc0\n" "mac.w %%d1u, %%d4l, ( -32*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d1l, %%d4u, %%acc0\n" "mac.w %%d1l, %%d4l, ( 32*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d2u, %%d4u, %%acc0\n" "mac.w %%d2u, %%d4l, ( 96*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d2l, %%d4u, %%acc0\n" "mac.w %%d2l, %%d4l, ( 160*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d3u, %%d4u, %%acc0\n" "mac.w %%d3u, %%d4l, ( 224*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d3l, %%d4u, %%acc0\n" "mac.w %%d3l, %%d4l, (-256*4,%[x1]), %%d4, %%acc1\n" "movem.l (16,%[wp]), %%d0-%%d3\n" /* load 8 values */ "mac.w %%d0u, %%d4u, %%acc0\n" "mac.w %%d0u, %%d4l, (-192*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d0l, %%d4u, %%acc0\n" "mac.w %%d0l, %%d4l, (-128*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d1u, %%d4u, %%acc0\n" "mac.w %%d1u, %%d4l, ( -64*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d1l, %%d4u, %%acc0\n" "mac.w %%d1l, %%d4l, ( 0*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d2u, %%d4u, %%acc0\n" "mac.w %%d2u, %%d4l, ( 64*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d2l, %%d4u, %%acc0\n" "mac.w %%d2l, %%d4l, ( 128*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d3u, %%d4u, %%acc0\n" "mac.w %%d3u, %%d4l, ( 192*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d3l, %%d4u, %%acc0\n" "mac.w %%d3l, %%d4l, ( 224*4,%[x1]), %%d4, %%acc1\n" "movclr.l %%acc0, %%d0\n" "move.l %%d0, %[s0]\n" "movclr.l %%acc1, %%d0\n" "move.l %%d0, %[s1]\n" "movem.l (%[wp]), %%d0-%%d3\n" /* load 8 values */ "mac.w %%d0u, %%d4u, %%acc0\n" "mac.w %%d0u, %%d4l, ( 160*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d0l, %%d4u, %%acc0\n" "mac.w %%d0l, %%d4l, ( 96*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d1u, %%d4u, %%acc0\n" "mac.w %%d1u, %%d4l, ( 32*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d1l, %%d4u, %%acc0\n" "mac.w %%d1l, %%d4l, ( -32*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d2u, %%d4u, %%acc0\n" "mac.w %%d2u, %%d4l, ( -96*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d2l, %%d4u, %%acc0\n" "mac.w %%d2l, %%d4l, (-160*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d3u, %%d4u, %%acc0\n" "mac.w %%d3u, %%d4l, (-224*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d3l, %%d4u, %%acc0\n" "mac.w %%d3l, %%d4l, ( 256*4,%[x2]), %%d4, %%acc1\n" "movem.l (32,%[wp]), %%d0-%%d3\n" /* load 8 values */ "mac.w %%d0u, %%d4u, %%acc0\n" "mac.w %%d0u, %%d4l, ( 192*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d0l, %%d4u, %%acc0\n" "mac.w %%d0l, %%d4l, ( 128*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d1u, %%d4u, %%acc0\n" "mac.w %%d1u, %%d4l, ( 64*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d1l, %%d4u, %%acc0\n" "mac.w %%d1l, %%d4l, ( 0*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d2u, %%d4u, %%acc0\n" "mac.w %%d2u, %%d4l, ( -64*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d2l, %%d4u, %%acc0\n" "mac.w %%d2l, %%d4l, (-128*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d3u, %%d4u, %%acc0\n" "mac.w %%d3u, %%d4l, (-192*4,%[x2]), %%d4, %%acc1\n" "mac.w %%d3l, %%d4u, %%acc0\n" "mac.w %%d3l, %%d4l, %%acc1\n" "movclr.l %%acc0, %%d0\n" "move.l %%d0, %[t0]\n" "movclr.l %%acc1, %%d0\n" "move.l %%d0, %[t1]\n" : [x1] "+a" (x1), [x2] "+a" (x2), [s0] "+m" (s0), [t0] "+m" (t0), [s1] "+m" (s1), [t1] "+m" (t1) : [wp] "a" (wp) : "d0", "d1", "d2", "d3", "d4"); sb0[30+i*2] = shft4(t0) + shft13(s0) * wp[24]; sb0[31+i*2] = shft13(t0) * wp[25] - shft13(s0) * wp[26]; sb1[30+i*2] = shft4(t1) + shft13(s1) * wp[24]; sb1[31+i*2] = shft13(t1) * wp[25] - shft13(s1) * wp[26]; wp += 27; x1 -= 2; x2 += 2; } asm volatile( "move.l ( -32*4,%[x1]), %%d4\n" /* d4 = x1[-32] */ "movem.l (%[wp]), %%d0-%%d3\n" /* load 8 values */ "mac.w %%d0u, %%d4u, %%acc0\n" "mac.w %%d0u, %%d4l, ( -96*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d0l, %%d4u, %%acc0\n" "mac.w %%d0l, %%d4l, (-160*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d1u, %%d4u, %%acc0\n" "mac.w %%d1u, %%d4l, (-224*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d1l, %%d4u, %%acc0\n" "mac.w %%d1l, %%d4l, ( 32*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d2u, %%d4u, %%acc0\n" "mac.w %%d2u, %%d4l, ( 96*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d2l, %%d4u, %%acc0\n" "mac.w %%d2l, %%d4l, ( 160*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d3u, %%d4u, %%acc0\n" "mac.w %%d3u, %%d4l, ( 224*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d3l, %%d4u, %%acc0\n" "mac.w %%d3l, %%d4l, ( -16*4,%[x1]), %%d4, %%acc1\n" "movclr.l %%acc0, %%d0\n" "move.l %%d0, %[s0]\n" "movclr.l %%acc1, %%d0\n" "move.l %%d0, %[s1]\n" "movem.l (16,%[wp]), %%d0-%%d3\n" /* load 8 values */ "mac.w %%d0u, %%d4u, %%acc0\n" "mac.w %%d0u, %%d4l, ( -48*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d1u, %%d4u, %%acc0\n" "mac.w %%d1u, %%d4l, ( 16*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d1l, %%d4u, %%acc0\n" "mac.w %%d1l, %%d4l, ( -80*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d2u, %%d4u, %%acc0\n" "mac.w %%d2u, %%d4l, ( 48*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d2u, %%d4u, %%acc0\n" "mac.w %%d2u, %%d4l, (-112*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d3u, %%d4u, %%acc0\n" "mac.w %%d3u, %%d4l, ( 80*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d3l, %%d4u, %%acc0\n" "mac.w %%d3l, %%d4l, (-144*4,%[x1]), %%d4, %%acc1\n" "movem.l (32,%[wp]), %%d0-%%d3\n" /* load 8 values */ "mac.w %%d0u, %%d4u, %%acc0\n" "mac.w %%d0u, %%d4l, ( 112*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d0u, %%d4u, %%acc0\n" "mac.w %%d0u, %%d4l, (-176*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d1u, %%d4u, %%acc0\n" "mac.w %%d1u, %%d4l, ( 144*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d1l, %%d4u, %%acc0\n" "mac.w %%d1l, %%d4l, (-208*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d2u, %%d4u, %%acc0\n" "mac.w %%d2u, %%d4l, ( 176*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d2u, %%d4u, %%acc0\n" "mac.w %%d2u, %%d4l, (-240*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d3u, %%d4u, %%acc0\n" "mac.w %%d3u, %%d4l, ( 208*4,%[x1]), %%d4, %%acc1\n" "mac.w %%d3l, %%d4u, %%acc0\n" "mac.w %%d3l, %%d4l, %%acc1\n" "movclr.l %%acc0, %%d0\n" "move.l %%d0, %[t0]\n" "movclr.l %%acc1, %%d0\n" "move.l %%d0, %[t1]\n" : [x1] "+a" (x1), [s0] "+m" (s0), [t0] "+m" (t0), [s1] "+m" (s1), [t1] "+m" (t1) : [wp] "a" (wp) : "d0", "d1", "d2", "d3", "d4"); u = shft4(s0 - t0); v = shft4(s0 + t0); t0 = sb0[14]; s0 = sb0[15] - t0; sb0[31] = v + t0; /* A0 */ sb0[30] = u + s0; /* A1 */ sb0[15] = u - s0; /* A2 */ sb0[14] = v - t0; /* A3 */ u = shft4(s1 - t1); v = shft4(s1 + t1); t1 = sb1[14]; s1 = sb1[15] - t1; sb1[31] = v + t1; /* A0 */ sb1[30] = u + s1; /* A1 */ sb1[15] = u - s1; /* A2 */ sb1[14] = v - t1; /* A3 */ } #else int ch, s, t, *a; for(ch=0; ch<cfg.channels; ch++) { a = ch ? sb1 : sb0; for(k=0; k<18; k++, wk+=64, a+=SBLIMIT) { wp = enwindow; x1 = wk; x2 = x1 - 124; /* x1[-572] .... x1[448] = 1022 */ /* 18*4*16*32 */ for(i=-15; i<0; i++) { s = (int)x2[-224*2] * wp[ 0]; t = (int)x1[ 224*2] * wp[ 0]; s += (int)x2[-160*2] * wp[ 1]; t += (int)x1[ 160*2] * wp[ 1]; s += (int)x2[- 96*2] * wp[ 2]; t += (int)x1[ 96*2] * wp[ 2]; s += (int)x2[- 32*2] * wp[ 3]; t += (int)x1[ 32*2] * wp[ 3]; s += (int)x2[ 32*2] * wp[ 4]; t += (int)x1[- 32*2] * wp[ 4]; s += (int)x2[ 96*2] * wp[ 5]; t += (int)x1[- 96*2] * wp[ 5]; s += (int)x2[ 160*2] * wp[ 6]; t += (int)x1[-160*2] * wp[ 6]; s += (int)x2[ 224*2] * wp[ 7]; t += (int)x1[-224*2] * wp[ 7]; s += (int)x1[-256*2] * wp[ 8]; t += (int)x2[ 256*2] * wp[16]; s += (int)x1[-192*2] * wp[ 9]; t += (int)x2[ 192*2] * wp[17]; s += (int)x1[-128*2] * wp[10]; t += (int)x2[ 128*2] * wp[18]; s += (int)x1[- 64*2] * wp[11]; t += (int)x2[ 64*2] * wp[19]; s += (int)x1[ 0*2] * wp[12]; t += (int)x2[ 0*2] * wp[20]; s += (int)x1[ 64*2] * wp[13]; t += (int)x2[- 64*2] * wp[21]; s += (int)x1[ 128*2] * wp[14]; t += (int)x2[-128*2] * wp[22]; s += (int)x1[ 192*2] * wp[15]; t += (int)x2[-192*2] * wp[23]; a[30+i*2] = shft4(t) + shft13(s) * wp[24]; a[31+i*2] = shft13(t) * wp[25] - shft13(s) * wp[26]; wp += 27; x1 -= 2; x2 += 2; } t = (int)x1[- 16*2] * wp[ 8]; s = (int)x1[ -32*2] * wp[0]; t += ((int)x1[- 48*2]-x1[ 16*2]) * wp[10]; s += (int)x1[ -96*2] * wp[1]; t += ((int)x1[- 80*2]+x1[ 48*2]) * wp[12]; s += (int)x1[-160*2] * wp[2]; t += ((int)x1[-112*2]-x1[ 80*2]) * wp[14]; s += (int)x1[-224*2] * wp[3]; t += ((int)x1[-144*2]+x1[112*2]) * wp[16]; s += (int)x1[ 32*2] * wp[4]; t += ((int)x1[-176*2]-x1[144*2]) * wp[18]; s += (int)x1[ 96*2] * wp[5]; t += ((int)x1[-208*2]+x1[176*2]) * wp[20]; s += (int)x1[ 160*2] * wp[6]; t += ((int)x1[-240*2]-x1[208*2]) * wp[22]; s += (int)x1[ 224*2] * wp[7]; u = shft4(s - t); v = shft4(s + t); t = a[14]; s = a[15] - t; a[31] = v + t; /* A0 */ a[30] = u + s; /* A1 */ a[15] = u - s; /* A2 */ a[14] = v - t; /* A3 */ } wk -= 18 * 64 - 1; /* rewind wk (to next channel start) */ } #endif } void window_subband2(short *x1, int a[SBLIMIT]) ICODE_ATTR; void window_subband2(short *x1, int a[SBLIMIT]) { int xr; short *wp = enwindow; short *x2 = x1 - 124; wp += 27 * 15; x1 -= 2 * 15; x2 += 2 * 15; xr = a[28] - a[0]; a[0] += a[28]; a[28] = shft9(xr) * wp[-2*27+25]; xr = a[29] - a[1]; a[1] += a[29]; a[29] = shft9(xr) * wp[-2*27+25]; xr = a[26] - a[2]; a[2] += a[26]; a[26] = shft9(xr) * wp[-4*27+25]; xr = a[27] - a[3]; a[3] += a[27]; a[27] = shft9(xr) * wp[-4*27+25]; xr = a[24] - a[4]; a[4] += a[24]; a[24] = shft9(xr) * wp[-6*27+25]; xr = a[25] - a[5]; a[5] += a[25]; a[25] = shft9(xr) * wp[-6*27+25]; xr = a[22] - a[6]; a[6] += a[22]; a[22] = shft9(xr) * SQRT ; xr = a[23] - a[7]; a[7] += a[23]; a[23] = shft9(xr) * SQRT - a[7]; a[ 7] -= a[ 6]; a[22] -= a[ 7]; a[23] -= a[22]; xr = a[ 6]; a[ 6] = a[31] - xr; a[31] = a[31] + xr; xr = a[ 7]; a[ 7] = a[30] - xr; a[30] = a[30] + xr; xr = a[22]; a[22] = a[15] - xr; a[15] = a[15] + xr; xr = a[23]; a[23] = a[14] - xr; a[14] = a[14] + xr; xr = a[20] - a[ 8]; a[ 8] += a[20]; a[20] = shft9(xr) * wp[-10*27+25]; xr = a[21] - a[ 9]; a[ 9] += a[21]; a[21] = shft9(xr) * wp[-10*27+25]; xr = a[18] - a[10]; a[10] += a[18]; a[18] = shft9(xr) * wp[-12*27+25]; xr = a[19] - a[11]; a[11] += a[19]; a[19] = shft9(xr) * wp[-12*27+25]; xr = a[16] - a[12]; a[12] += a[16]; a[16] = shft9(xr) * wp[-14*27+25]; xr = a[17] - a[13]; a[13] += a[17]; a[17] = shft9(xr) * wp[-14*27+25]; xr =-a[20] + a[24]; a[20] += a[24]; a[24] = shft9(xr) * wp[-12*27+25]; xr =-a[21] + a[25]; a[21] += a[25]; a[25] = shft9(xr) * wp[-12*27+25]; xr = a[ 4] - a[ 8]; a[ 4] += a[ 8]; a[ 8] = shft9(xr) * wp[-12*27+25]; xr = a[ 5] - a[ 9]; a[ 5] += a[ 9]; a[ 9] = shft9(xr) * wp[-12*27+25]; xr = a[ 0] - a[12]; a[ 0] += a[12]; a[12] = shft9(xr) * wp[ -4*27+25]; xr = a[ 1] - a[13]; a[ 1] += a[13]; a[13] = shft9(xr) * wp[ -4*27+25]; xr = a[16] - a[28]; a[16] += a[28]; a[28] = shft9(xr) * wp[ -4*27+25]; xr =-a[17] + a[29]; a[17] += a[29]; a[29] = shft9(xr) * wp[ -4*27+25]; xr = SQRT * shft9(a[ 2] - a[10]); a[ 2] += a[10]; a[10] = xr; xr = SQRT * shft9(a[ 3] - a[11]); a[ 3] += a[11]; a[11] = xr; xr = SQRT * shft9(a[26] - a[18]); a[18] += a[26]; a[26] = xr - a[18]; xr = SQRT * shft9(a[27] - a[19]); a[19] += a[27]; a[27] = xr - a[19]; xr = a[ 2]; a[19] -= a[ 3]; a[ 3] -= xr; a[ 2] = a[31] - xr; a[31] += xr; xr = a[ 3]; a[11] -= a[19]; a[18] -= xr; a[ 3] = a[30] - xr; a[30] += xr; xr = a[18]; a[27] -= a[11]; a[19] -= xr; a[18] = a[15] - xr; a[15] += xr; xr = a[19]; a[10] -= xr; a[19] = a[14] - xr; a[14] += xr; xr = a[10]; a[11] -= xr; a[10] = a[23] - xr; a[23] += xr; xr = a[11]; a[26] -= xr; a[11] = a[22] - xr; a[22] += xr; xr = a[26]; a[27] -= xr; a[26] = a[ 7] - xr; a[ 7] += xr; xr = a[27]; a[27] = a[6] - xr; a[6] += xr; xr = SQRT * shft9(a[ 0] - a[ 4]); a[ 0] += a[ 4]; a[ 4] = xr; xr = SQRT * shft9(a[ 1] - a[ 5]); a[ 1] += a[ 5]; a[ 5] = xr; xr = SQRT * shft9(a[16] - a[20]); a[16] += a[20]; a[20] = xr; xr = SQRT * shft9(a[17] - a[21]); a[17] += a[21]; a[21] = xr; xr =-SQRT * shft9(a[ 8] - a[12]); a[ 8] += a[12]; a[12] = xr - a[ 8]; xr =-SQRT * shft9(a[ 9] - a[13]); a[ 9] += a[13]; a[13] = xr - a[ 9]; xr =-SQRT * shft9(a[25] - a[29]); a[25] += a[29]; a[29] = xr - a[25]; xr =-SQRT * shft9(a[24] + a[28]); a[24] -= a[28]; a[28] = xr - a[24]; xr = a[24] - a[16]; a[24] = xr; xr = a[20] - xr; a[20] = xr; xr = a[28] - xr; a[28] = xr; xr = a[25] - a[17]; a[25] = xr; xr = a[21] - xr; a[21] = xr; xr = a[29] - xr; a[29] = xr; xr = a[17] - a[1]; a[17] = xr; xr = a[ 9] - xr; a[ 9] = xr; xr = a[25] - xr; a[25] = xr; xr = a[ 5] - xr; a[ 5] = xr; xr = a[21] - xr; a[21] = xr; xr = a[13] - xr; a[13] = xr; xr = a[29] - xr; a[29] = xr; xr = a[ 1] - a[0]; a[ 1] = xr; xr = a[16] - xr; a[16] = xr; xr = a[17] - xr; a[17] = xr; xr = a[ 8] - xr; a[ 8] = xr; xr = a[ 9] - xr; a[ 9] = xr; xr = a[24] - xr; a[24] = xr; xr = a[25] - xr; a[25] = xr; xr = a[ 4] - xr; a[ 4] = xr; xr = a[ 5] - xr; a[ 5] = xr; xr = a[20] - xr; a[20] = xr; xr = a[21] - xr; a[21] = xr; xr = a[12] - xr; a[12] = xr; xr = a[13] - xr; a[13] = xr; xr = a[28] - xr; a[28] = xr; xr = a[29] - xr; a[29] = xr; xr = a[ 0]; a[ 0] += a[31]; a[31] -= xr; xr = a[ 1]; a[ 1] += a[30]; a[30] -= xr; xr = a[16]; a[16] += a[15]; a[15] -= xr; xr = a[17]; a[17] += a[14]; a[14] -= xr; xr = a[ 8]; a[ 8] += a[23]; a[23] -= xr; xr = a[ 9]; a[ 9] += a[22]; a[22] -= xr; xr = a[24]; a[24] += a[ 7]; a[ 7] -= xr; xr = a[25]; a[25] += a[ 6]; a[ 6] -= xr; xr = a[ 4]; a[ 4] += a[27]; a[27] -= xr; xr = a[ 5]; a[ 5] += a[26]; a[26] -= xr; xr = a[20]; a[20] += a[11]; a[11] -= xr; xr = a[21]; a[21] += a[10]; a[10] -= xr; xr = a[12]; a[12] += a[19]; a[19] -= xr; xr = a[13]; a[13] += a[18]; a[18] -= xr; xr = a[28]; a[28] += a[ 3]; a[ 3] -= xr; xr = a[29]; a[29] += a[ 2]; a[ 2] -= xr; } void mdct_long(int *out, int *in) ICODE_ATTR; void mdct_long(int *out, int *in) { int ct,st; int tc1, tc2, tc3, tc4, ts5, ts6, ts7, ts8; int ts1, ts2, ts3, ts4, tc5, tc6, tc7, tc8; /* 1,2, 5,6, 9,10, 13,14, 17 */ tc1 = in[17] - in[ 9]; tc3 = in[15] - in[11]; tc4 = in[14] - in[12]; ts5 = in[ 0] + in[ 8]; ts6 = in[ 1] + in[ 7]; ts7 = in[ 2] + in[ 6]; ts8 = in[ 3] + in[ 5]; out[17] = (ts5 + ts7 - ts8) * cx[8] - (ts6 - in[4]) * cx[8]; st = (ts5 + ts7 - ts8) * cx[7] + (ts6 - in[4]) * cx[8]; ct = (tc1 - tc3 - tc4) * cx[6]; out[5] = ct + st; out[6] = ct - st; tc2 = (in[16] - in[10]) * cx[6]; ts6 = ts6 * cx[7] + in[4] * cx[8]; ct = tc1 * cx[0] + tc2 + tc3 * cx[1] + tc4 * cx[2]; st = -ts5 * cx[4] + ts6 - ts7 * cx[5] + ts8 * cx[3]; out[1] = ct + st; out[2] = ct - st; ct = tc1 * cx[1] - tc2 - tc3 * cx[2] + tc4 * cx[0]; st = -ts5 * cx[5] + ts6 - ts7 * cx[3] + ts8 * cx[4]; out[ 9] = ct + st; out[10] = ct - st; ct = tc1 * cx[2] - tc2 + tc3 * cx[0] - tc4 * cx[1]; st = ts5 * cx[3] - ts6 + ts7 * cx[4] - ts8 * cx[5]; out[13] = ct + st; out[14] = ct - st; ts1 = in[ 8] - in[ 0]; ts3 = in[ 6] - in[ 2]; ts4 = in[ 5] - in[ 3]; tc5 = in[17] + in[ 9]; tc6 = in[16] + in[10]; tc7 = in[15] + in[11]; tc8 = in[14] + in[12]; out[0] = (tc5 + tc7 + tc8) * cx[8] + (tc6 + in[13]) * cx[8]; ct = (tc5 + tc7 + tc8) * cx[7] - (tc6 + in[13]) * cx[8]; st = (ts1 - ts3 + ts4) * cx[6]; out[11] = ct + st; out[12] = ct - st; ts2 = (in[7] - in[1]) * cx[6]; tc6 = in[13] * cx[8] - tc6 * cx[7]; ct = tc5 * cx[3] - tc6 + tc7 * cx[4] + tc8 * cx[5]; st = ts1 * cx[2] + ts2 + ts3 * cx[0] + ts4 * cx[1]; out[3] = ct + st; out[4] = ct - st; ct =-tc5 * cx[5] + tc6 - tc7 * cx[3] - tc8 * cx[4]; st = ts1 * cx[1] + ts2 - ts3 * cx[2] - ts4 * cx[0]; out[7] = ct + st; out[8] = ct - st; ct =-tc5 * cx[4] + tc6 - tc7 * cx[5] - tc8 * cx[3]; st = ts1 * cx[0] - ts2 + ts3 * cx[1] - ts4 * cx[2]; out[15] = ct + st; out[16] = ct - st; } static int find_bitrate_index(int type, int bitrate) { int i; for(i=0;i<14;i++) if(bitrate == bitr_index[type][i]) break; return i; } static int find_samplerate_index(long freq, int *mp3_type) { /* MPEG 2 */ /* MPEG 1 */ static long mpeg[2][3] = { {22050, 24000, 16000}, {44100, 48000, 32000} }; int mpg, rate; /* set default values: MPEG1 at 44100/s */ *mp3_type = 1; for(mpg=0; mpg<2; mpg++) for(rate=0; rate<3; rate++) if(freq == mpeg[mpg][rate]) { *mp3_type = mpg; return rate; } return 0; } void init_mp3_encoder_engine(bool stereo, int bitrate, int sample_rate) { uint32 avg_byte_per_frame; #ifdef ROCKBOX_LITTLE_ENDIAN cfg.byte_order = order_littleEndian; #else cfg.byte_order = order_bigEndian; #endif if(bitrate < 96 && stereo && sample_rate >= 32000) { /* use MPEG2 format */ sample_rate >>= 1; cfg.resample = 1; cfg.granules = 1; } else { /* use MPEG1 format */ cfg.resample = 0; cfg.granules = 2; } cfg.samplerate = sample_rate; cfg.channels = stereo ? 2 : 1; cfg.mpg.mode = stereo ? 0 : 3; /* 0=stereo, 3=mono */ cfg.mpg.bitrate = stereo ? bitrate : bitrate > 160 ? 160 : bitrate; cfg.mpg.smpl_id = find_samplerate_index(cfg.samplerate, &cfg.mpg.type); cfg.mpg.bitr_id = find_bitrate_index(cfg.mpg.type, cfg.mpg.bitrate); cfg.mpg.num_bands = num_bands[stereo ? cfg.mpg.type : 2][cfg.mpg.bitr_id]; memcpy(scalefac, sfBand[cfg.mpg.smpl_id + 3*cfg.mpg.type], sizeof(scalefac)); memset(mfbuf , 0 , sizeof(mfbuf )); memset(mdct_freq , 0 , sizeof(mdct_freq )); memset(enc_data , 0 , sizeof(enc_data )); memset(sb_data , 0 , sizeof(sb_data )); memset(&CodedData, 0 , sizeof(CodedData )); memcpy(ca , ca_const , sizeof(ca )); memcpy(cs , cs_const , sizeof(cs )); memcpy(cx , cx_const , sizeof(cx )); memcpy(win , win_const , sizeof(win )); memcpy(enwindow , enwindow_const , sizeof(enwindow )); memcpy(int2idx , int2idx_const , sizeof(int2idx )); memcpy(ht_count , ht_count_const , sizeof(ht_count )); memcpy( tab01 , tab01_const , sizeof(tab01 )); memcpy( tab23 , tab23_const , sizeof(tab23 )); memcpy( tab56 , tab56_const , sizeof(tab56 )); memcpy( tab1315 , tab1315_const , sizeof(tab1315 )); memcpy( tab1624 , tab1624_const , sizeof(tab1624 )); memcpy( tab789 , tab789_const , sizeof(tab789 )); memcpy( tabABC , tabABC_const , sizeof(tabABC )); memcpy( t1HB , t1HB_const , sizeof(t1HB )); memcpy( t2HB , t2HB_const , sizeof(t2HB )); memcpy( t3HB , t3HB_const , sizeof(t3HB )); memcpy( t5HB , t5HB_const , sizeof(t5HB )); memcpy( t6HB , t6HB_const , sizeof(t6HB )); memcpy( t7HB , t7HB_const , sizeof(t7HB )); memcpy( t8HB , t8HB_const , sizeof(t8HB )); memcpy( t9HB , t9HB_const , sizeof(t9HB )); memcpy(t10HB , t10HB_const , sizeof(t10HB )); memcpy(t11HB , t11HB_const , sizeof(t11HB )); memcpy(t12HB , t12HB_const , sizeof(t12HB )); memcpy(t13HB , t13HB_const , sizeof(t13HB )); memcpy(t15HB , t15HB_const , sizeof(t15HB )); memcpy(t16HB , t16HB_const , sizeof(t16HB )); memcpy(t24HB , t24HB_const , sizeof(t24HB )); memcpy( t1l , t1l_const , sizeof(t1l )); memcpy( t2l , t2l_const , sizeof(t2l )); memcpy( t3l , t3l_const , sizeof(t3l )); memcpy( t5l , t5l_const , sizeof(t5l )); memcpy( t6l , t6l_const , sizeof(t6l )); memcpy( t7l , t7l_const , sizeof(t7l )); memcpy( t8l , t8l_const , sizeof(t8l )); memcpy( t9l , t9l_const , sizeof(t9l )); memcpy(t10l , t10l_const , sizeof(t10l )); memcpy(t11l , t11l_const , sizeof(t11l )); memcpy(t12l , t12l_const , sizeof(t12l )); memcpy(t13l , t13l_const , sizeof(t13l )); memcpy(t15l , t15l_const , sizeof(t15l )); memcpy(t16l , t16l_const , sizeof(t16l )); memcpy(t24l , t24l_const , sizeof(t24l )); memcpy(ht , ht_const , sizeof(ht )); ht[ 0].table = NULL; ht[ 0].hlen = NULL; /* Apparently not used */ ht[ 1].table = t1HB; ht[ 1].hlen = t1l; ht[ 2].table = t2HB; ht[ 2].hlen = t2l; ht[ 3].table = t3HB; ht[ 3].hlen = t3l; ht[ 4].table = NULL; ht[ 4].hlen = NULL; /* Apparently not used */ ht[ 5].table = t5HB; ht[ 5].hlen = t5l; ht[ 6].table = t6HB; ht[ 6].hlen = t6l; ht[ 7].table = t7HB; ht[ 7].hlen = t7l; ht[ 8].table = t8HB; ht[ 8].hlen = t8l; ht[ 9].table = t9HB; ht[ 9].hlen = t9l; ht[10].table = t10HB; ht[10].hlen = t10l; ht[11].table = t11HB; ht[11].hlen = t11l; ht[12].table = t12HB; ht[12].hlen = t12l; ht[13].table = t13HB; ht[13].hlen = t13l; ht[14].table = NULL; ht[14].hlen = NULL; /* Apparently not used */ ht[15].table = t15HB; ht[15].hlen = t15l; /* Figure average number of 'bytes' per frame */ avg_byte_per_frame = SAMPL2 * 16000 * cfg.mpg.bitrate / (2 - cfg.mpg.type); avg_byte_per_frame = avg_byte_per_frame / cfg.samplerate; cfg.byte_per_frame = avg_byte_per_frame / 64; cfg.frac_per_frame = avg_byte_per_frame & 63; cfg.slot_lag = 0; cfg.sideinfo_len = 32 + (cfg.mpg.type ? (cfg.channels == 1 ? 136 : 256) : (cfg.channels == 1 ? 72 : 136)); } void compress(void) { int i, ii, gr, k, ch, shift, gr_cnt; int max, min; char stg[20]; while(1) { if((frames & 7) == 0) { rb->lcd_clear_display(); rb->snprintf(stg, 20, "Frame %d / %d", frames, wav_size/SAMPL2/8); rb->lcd_putsxy(4, 20, stg); rb->lcd_update(); } /* encode one mp3 frame in this loop */ memset(CodedData.bbuf, 0, sizeof(CodedData.bbuf)); if((cfg.slot_lag += cfg.frac_per_frame) >= 64) { /* Padding for this frame */ cfg.slot_lag -= 64; cfg.mpg.padding = 1; } else cfg.mpg.padding = 0; cfg.mean_bits = (8 * cfg.byte_per_frame + 8 * cfg.mpg.padding - cfg.sideinfo_len) / cfg.granules / cfg.channels; /* shift out old samples */ memcpy(mfbuf, mfbuf + 2*cfg.granules*576, 4*512); /* read new samples to iram for further processing */ if(read_samples((uint32*)(mfbuf + 2*512), SAMP_PER_FRAME) == 0) break; /* swap bytes if neccessary */ if(cfg.byte_order == order_bigEndian) for(i=0; i<SAMP_PER_FRAME; i++) { uint32 t = ((uint32*)mfbuf)[512 + i]; t = ((t >> 8) & 0xff00ff) | ((t << 8) & 0xff00ff00); ((uint32*)mfbuf)[512 + i] = t; } if(cfg.resample) /* downsample to half of original */ for(i=2*512; i<2*512+2*SAMP_PER_FRAME; i+=4) { mfbuf[i/2+512] = (short)(((int)mfbuf[i+0] + mfbuf[i+2]) >> 1); mfbuf[i/2+513] = (short)(((int)mfbuf[i+1] + mfbuf[i+3]) >> 1); } if(cfg.channels == 1) /* mix left and right channels to mono */ for(i=2*512; i<2*512+2*SAMP_PER_FRAME; i+=2) mfbuf[i] = mfbuf[i+1] = (short)(((int)mfbuf[i] + mfbuf[i+1]) >> 1); cfg.ResvSize = 0; gr_cnt = cfg.granules * cfg.channels; CodedData.bitpos = cfg.sideinfo_len; /* leave space for mp3 header */ for(gr=0; gr<cfg.granules; gr++) { short *wk = mfbuf + 2*286 + gr*1152; /* 16bit packed wav data can be windowed efficiently on coldfire */ window_subband1(wk, sb_data[0][1-gr][0], sb_data[1][1-gr][0]); for(ch=0; ch<cfg.channels; ch++) { int band; int *mdct; wk = mfbuf + 2*286 + gr*1152 + ch; /* 36864=4*18*16*32 */ for(k=0; k<18; k++, wk+=64) { window_subband2(wk, sb_data[ch][1-gr][k]); /* Compensate for inversion in the analysis filter */ if(k & 1) for(band=1; band<32; band+=2) sb_data[ch][1-gr][k][band] *= -1; } /* Perform imdct of 18 previous + 18 current subband samples */ /* for integer precision do this loop twice (if neccessary) */ shift = k = 14; for(ii=0; ii<2 && k; ii++) { mdct = mdct_freq; cfg.cod_info[gr][ch].additStep = 4 * (14 - shift); for(band=0; band<cfg.mpg.num_bands; band++, mdct+=18) { int *band0 = sb_data[ch][ gr][0] + order[band]; int *band1 = sb_data[ch][1-gr][0] + order[band]; int work[18]; /* 9216=4*32*9*8 */ for(k=-9; k<0; k++) { int a = shft_n(band1[(k+9)*32], shift); int b = shft_n(band1[(8-k)*32], shift); int c = shft_n(band0[(k+9)*32], shift); int d = shft_n(band0[(8-k)*32], shift); work[k+ 9] = shft16(a * win[k+ 9][0] + b * win[k+ 9][1] + c * win[k+ 9][2] + d * win[k+ 9][3]); work[k+18] = shft16(c * win[k+18][0] + d * win[k+18][1] + a * win[k+18][2] + b * win[k+18][3]); } /* 7200=4*18*100 */ mdct_long(mdct, work); /* Perform aliasing reduction butterfly */ if(band != 0) for(k=7; k>=0; --k) { int bu, bd; bu = shft15(mdct[k]) * ca[k] + shft15(mdct[-1-k]) * cs[k]; bd = shft15(mdct[k]) * cs[k] - shft15(mdct[-1-k]) * ca[k]; mdct[-1-k] = bu; mdct[ k ] = bd; } } max = min = 0; for(k=0; k<576; k++) { mdct_freq[k] = shft13(mdct_freq[k]); if(max < mdct_freq[k]) max = mdct_freq[k]; if(min > mdct_freq[k]) min = mdct_freq[k]; } max = (max > -min) ? max : -min; cfg.cod_info[gr][ch].max_val = (long)max; /* calc new shift for higher integer precision */ for(k=0; max<(0x3c00>>k); k++); shift = 12 - k; } cfg.cod_info[gr][ch].quantStep += cfg.cod_info[gr][ch].additStep; /* bit and noise allocation */ iteration_loop(mdct_freq, &cfg.cod_info[gr][ch], gr_cnt--); /* write the frame to the bitstream */ Huffmancodebits(enc_data, mdct_freq, &cfg.cod_info[gr][ch]); cfg.cod_info[gr][ch].quantStep -= cfg.cod_info[gr][ch].additStep; if(cfg.granules == 1) memcpy(sb_data[ch][0], sb_data[ch][1], sizeof(sb_data[ch][0])); } } enc_size = (CodedData.bitpos + 7) >> 3; /* finish this chunk by adding sideinfo header data */ CodedData.bitpos = 0; encodeSideInfo( cfg.cod_info ); if(cfg.byte_order != order_bigEndian) for(i=0; i<(enc_size+3)/4; i++) CodedData.bbuf[i] = myswap32(CodedData.bbuf[i]); if(enc_chunk + enc_size > 65536) { /* copy iram mp3 buffer to sdram/file */ rb->write(mp3file, enc_buffer, enc_chunk & ~3); memcpy(enc_buffer, enc_buffer + (enc_chunk >> 2), enc_chunk & 3); enc_chunk &= 3; } memcpy((char*)enc_buffer + enc_chunk, CodedData.bbuf, enc_size); enc_chunk += enc_size; frames++; } /* write last chunks to disk */ rb->write(mp3file, enc_buffer, enc_chunk); } int num_file; char mp3_name[80]; void get_mp3_filename(char *wav_name) { int slen = rb->strlen(wav_name); rb->strncpy(mp3_name, wav_name, 79); rb->strncpy(mp3_name + slen - 4, ".mp3", 5); } #if CONFIG_KEYPAD == IRIVER_H100_PAD || CONFIG_KEYPAD == IRIVER_H300_PAD #define MP3ENC_PREV BUTTON_UP #define MP3ENC_NEXT BUTTON_DOWN #define MP3ENC_DONE BUTTON_OFF #define MP3ENC_SELECT BUTTON_SELECT #elif (CONFIG_KEYPAD == IPOD_4G_PAD) || (CONFIG_KEYPAD == IPOD_3G_PAD) || \ (CONFIG_KEYPAD == IPOD_1G2G_PAD) #define MP3ENC_PREV BUTTON_SCROLL_BACK #define MP3ENC_NEXT BUTTON_SCROLL_FWD #define MP3ENC_DONE BUTTON_MENU #define MP3ENC_SELECT BUTTON_SELECT #elif CONFIG_KEYPAD == IAUDIO_X5M5_PAD #define MP3ENC_PREV BUTTON_UP #define MP3ENC_NEXT BUTTON_DOWN #define MP3ENC_DONE BUTTON_POWER #define MP3ENC_SELECT BUTTON_SELECT #elif CONFIG_KEYPAD == GIGABEAT_PAD #define MP3ENC_PREV BUTTON_UP #define MP3ENC_NEXT BUTTON_DOWN #define MP3ENC_DONE BUTTON_POWER #define MP3ENC_SELECT BUTTON_SELECT #elif (CONFIG_KEYPAD == SANSA_E200_PAD) || \ (CONFIG_KEYPAD == SANSA_C200_PAD) #define MP3ENC_PREV BUTTON_UP #define MP3ENC_NEXT BUTTON_DOWN #define MP3ENC_DONE BUTTON_POWER #define MP3ENC_SELECT BUTTON_SELECT #elif CONFIG_KEYPAD == IRIVER_H10_PAD #define MP3ENC_PREV BUTTON_SCROLL_UP #define MP3ENC_NEXT BUTTON_SCROLL_DOWN #define MP3ENC_DONE BUTTON_POWER #define MP3ENC_SELECT BUTTON_PLAY #elif CONFIG_KEYPAD == GIGABEAT_S_PAD #define MP3ENC_PREV BUTTON_UP #define MP3ENC_NEXT BUTTON_DOWN #define MP3ENC_DONE BUTTON_BACK #define MP3ENC_SELECT BUTTON_SELECT #elif CONFIG_KEYPAD == MROBE100_PAD #define MP3ENC_PREV BUTTON_UP #define MP3ENC_NEXT BUTTON_DOWN #define MP3ENC_DONE BUTTON_POWER #define MP3ENC_SELECT BUTTON_SELECT #elif CONFIG_KEYPAD == IAUDIO_M3_PAD #define MP3ENC_PREV BUTTON_RC_VOL_UP #define MP3ENC_NEXT BUTTON_RC_VOL_DOWN #define MP3ENC_DONE BUTTON_RC_REC #define MP3ENC_SELECT BUTTON_RC_FF #elif CONFIG_KEYPAD == COWOND2_PAD #define MP3ENC_DONE BUTTON_POWER #else #error No keymap defined! #endif #ifdef HAVE_TOUCHPAD #ifndef MP3ENC_PREV #define MP3ENC_PREV BUTTON_MIDLEFT #endif #ifndef MP3ENC_NEXT #define MP3ENC_NEXT BUTTON_MIDRIGHT #endif #ifndef MP3ENC_DONE #define MP3ENC_DONE BUTTON_TOPLEFT #endif #ifndef MP3ENC_SELECT #define MP3ENC_SELECT BUTTON_CENTER #endif #endif enum plugin_status plugin_start(struct plugin_api* api, void* parameter) { int rat, srat, nrat; /* for rate selection */ int cont = 1, butt; long tim = 0; char stg[40]; static const char* bstrg[] = { "64", "80", "96", "112", "128", "160", "192", "224", "256", "320" }; static const int brate[] = { 64, 80, 96, 112, 128, 160, 192, 224, 256, 320 }; if (parameter == NULL) return PLUGIN_ERROR; PLUGIN_IRAM_INIT(api) #ifdef CPU_COLDFIRE coldfire_set_macsr(0); /* integer mode */ #endif rb = api; rb->lcd_setfont(FONT_SYSFIXED); #ifdef HAVE_ADJUSTABLE_CPU_FREQ rb->cpu_boost(true); #endif rb->button_clear_queue(); nrat = 9; srat = 4; /* set 128kBit as default */ while(cont && (butt = rb->button_get_w_tmo(HZ/10)) != MP3ENC_SELECT) { switch(butt) { case MP3ENC_DONE: cont = 0; break; case MP3ENC_PREV|BUTTON_REPEAT: case MP3ENC_PREV: if(srat > 0 ) srat--; break; case MP3ENC_NEXT|BUTTON_REPEAT: case MP3ENC_NEXT: if(srat < nrat) srat++; break; } rb->lcd_clear_display(); rb->lcd_putsxy(2, 2, "-- Select Bitrate --"); for(rat=0; rat<=nrat; rat++) rb->lcd_putsxy(2, 12 + rat*8, bstrg[rat]); rb->lcd_set_drawmode(DRMODE_COMPLEMENT); rb->lcd_fillrect(0, 12 + srat*8, 127, 8); rb->lcd_set_drawmode(DRMODE_SOLID); rb->lcd_update(); } wav_filename = parameter; if(cont) { if(wave_open() == 0) { init_mp3_encoder_engine(true, brate[srat], cfg.samplerate); get_mp3_filename(wav_filename); mp3file = rb->open(mp3_name , O_WRONLY|O_CREAT|O_TRUNC); frames = 0; tim = *rb->current_tick; compress(); tim = *rb->current_tick - tim; rb->close(wavfile); rb->close(mp3file); } else { rb->close(wavfile); rb->snprintf(stg, 20, "WaveOpen failed %d", wave_open()); rb->lcd_putsxy(0, 20, stg); rb->lcd_update(); rb->sleep(5*HZ); } rb->lcd_clear_display(); rb->snprintf(stg, 30, " Conversion: %ld.%02lds ", tim/100, tim%100); rb->lcd_putsxy(0, 30, stg); tim = frames * SAMP_PER_FRAME * 100 / 44100; /* unit=.01s */ rb->snprintf(stg, 30, " WAV-Length: %ld.%02lds ", tim/100, tim%100); rb->lcd_putsxy(0, 20, stg); rb->lcd_update(); rb->sleep(5*HZ); } rb->lcd_setfont(FONT_UI); #ifdef HAVE_ADJUSTABLE_CPU_FREQ rb->cpu_boost(false); #endif return PLUGIN_OK; }