1*e7776783SApple OSS Distributions /*
2*e7776783SApple OSS Distributions * Copyright (c) 2008-2016, 2020 Apple Inc. All rights reserved.
3*e7776783SApple OSS Distributions *
4*e7776783SApple OSS Distributions * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5*e7776783SApple OSS Distributions *
6*e7776783SApple OSS Distributions * This file contains Original Code and/or Modifications of Original Code
7*e7776783SApple OSS Distributions * as defined in and that are subject to the Apple Public Source License
8*e7776783SApple OSS Distributions * Version 2.0 (the 'License'). You may not use this file except in
9*e7776783SApple OSS Distributions * compliance with the License. The rights granted to you under the License
10*e7776783SApple OSS Distributions * may not be used to create, or enable the creation or redistribution of,
11*e7776783SApple OSS Distributions * unlawful or unlicensed copies of an Apple operating system, or to
12*e7776783SApple OSS Distributions * circumvent, violate, or enable the circumvention or violation of, any
13*e7776783SApple OSS Distributions * terms of an Apple operating system software license agreement.
14*e7776783SApple OSS Distributions *
15*e7776783SApple OSS Distributions * Please obtain a copy of the License at
16*e7776783SApple OSS Distributions * http://www.opensource.apple.com/apsl/ and read it before using this file.
17*e7776783SApple OSS Distributions *
18*e7776783SApple OSS Distributions * The Original Code and all software distributed under the License are
19*e7776783SApple OSS Distributions * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20*e7776783SApple OSS Distributions * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21*e7776783SApple OSS Distributions * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22*e7776783SApple OSS Distributions * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23*e7776783SApple OSS Distributions * Please see the License for the specific language governing rights and
24*e7776783SApple OSS Distributions * limitations under the License.
25*e7776783SApple OSS Distributions *
26*e7776783SApple OSS Distributions * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27*e7776783SApple OSS Distributions */
28*e7776783SApple OSS Distributions /* inftrees.c -- generate Huffman trees for efficient decoding
29*e7776783SApple OSS Distributions * Copyright (C) 1995-2005 Mark Adler
30*e7776783SApple OSS Distributions * For conditions of distribution and use, see copyright notice in zlib.h
31*e7776783SApple OSS Distributions */
32*e7776783SApple OSS Distributions
33*e7776783SApple OSS Distributions #include "zutil.h"
34*e7776783SApple OSS Distributions #include "inftrees.h"
35*e7776783SApple OSS Distributions
36*e7776783SApple OSS Distributions #define MAXBITS 15
37*e7776783SApple OSS Distributions
38*e7776783SApple OSS Distributions const char inflate_copyright[] =
39*e7776783SApple OSS Distributions " inflate 1.2.3 Copyright 1995-2005 Mark Adler ";
40*e7776783SApple OSS Distributions /*
41*e7776783SApple OSS Distributions If you use the zlib library in a product, an acknowledgment is welcome
42*e7776783SApple OSS Distributions in the documentation of your product. If for some reason you cannot
43*e7776783SApple OSS Distributions include such an acknowledgment, I would appreciate that you keep this
44*e7776783SApple OSS Distributions copyright string in the executable of your product.
45*e7776783SApple OSS Distributions */
46*e7776783SApple OSS Distributions
47*e7776783SApple OSS Distributions /*
48*e7776783SApple OSS Distributions Build a set of tables to decode the provided canonical Huffman code.
49*e7776783SApple OSS Distributions The code lengths are lens[0..codes-1]. The result starts at *table,
50*e7776783SApple OSS Distributions whose indices are 0..2^bits-1. work is a writable array of at least
51*e7776783SApple OSS Distributions lens shorts, which is used as a work area. type is the type of code
52*e7776783SApple OSS Distributions to be generated, CODES, LENS, or DISTS. On return, zero is success,
53*e7776783SApple OSS Distributions -1 is an invalid code, and +1 means that ENOUGH isn't enough. table
54*e7776783SApple OSS Distributions on return points to the next available entry's address. bits is the
55*e7776783SApple OSS Distributions requested root table index bits, and on return it is the actual root
56*e7776783SApple OSS Distributions table index bits. It will differ if the request is greater than the
57*e7776783SApple OSS Distributions longest code or if it is less than the shortest code.
58*e7776783SApple OSS Distributions */
59*e7776783SApple OSS Distributions int
inflate_table(codetype type,unsigned short FAR * lens,unsigned codes,code FAR * FAR * table,unsigned FAR * bits,unsigned short FAR * work)60*e7776783SApple OSS Distributions inflate_table(codetype type, unsigned short FAR *lens, unsigned codes,
61*e7776783SApple OSS Distributions code FAR * FAR *table, unsigned FAR *bits,
62*e7776783SApple OSS Distributions unsigned short FAR *work)
63*e7776783SApple OSS Distributions {
64*e7776783SApple OSS Distributions unsigned len; /* a code's length in bits */
65*e7776783SApple OSS Distributions unsigned sym; /* index of code symbols */
66*e7776783SApple OSS Distributions unsigned min, max; /* minimum and maximum code lengths */
67*e7776783SApple OSS Distributions unsigned root; /* number of index bits for root table */
68*e7776783SApple OSS Distributions unsigned curr; /* number of index bits for current table */
69*e7776783SApple OSS Distributions unsigned drop; /* code bits to drop for sub-table */
70*e7776783SApple OSS Distributions int left; /* number of prefix codes available */
71*e7776783SApple OSS Distributions unsigned used; /* code entries in table used */
72*e7776783SApple OSS Distributions unsigned huff; /* Huffman code */
73*e7776783SApple OSS Distributions unsigned incr; /* for incrementing code, index */
74*e7776783SApple OSS Distributions unsigned fill; /* index for replicating entries */
75*e7776783SApple OSS Distributions unsigned low; /* low bits for current root entry */
76*e7776783SApple OSS Distributions unsigned mask; /* mask for low root bits */
77*e7776783SApple OSS Distributions code this; /* table entry for duplication */
78*e7776783SApple OSS Distributions code FAR *next; /* next available space in table */
79*e7776783SApple OSS Distributions const unsigned short FAR *base; /* base value table to use */
80*e7776783SApple OSS Distributions const unsigned short FAR *extra; /* extra bits table to use */
81*e7776783SApple OSS Distributions unsigned match; /* use base and extra for symbol >= match */
82*e7776783SApple OSS Distributions unsigned short count[MAXBITS+1]; /* number of codes of each length */
83*e7776783SApple OSS Distributions unsigned short offs[MAXBITS+1]; /* offsets in table for each length */
84*e7776783SApple OSS Distributions static const unsigned short lbase[31] = { /* Length codes 257..285 base */
85*e7776783SApple OSS Distributions 3, 4, 5, 6, 7, 8, 9, 10, 11, 13, 15, 17, 19, 23, 27, 31,
86*e7776783SApple OSS Distributions 35, 43, 51, 59, 67, 83, 99, 115, 131, 163, 195, 227, 258, 0, 0};
87*e7776783SApple OSS Distributions static const unsigned short lext[31] = { /* Length codes 257..285 extra */
88*e7776783SApple OSS Distributions 16, 16, 16, 16, 16, 16, 16, 16, 17, 17, 17, 17, 18, 18, 18, 18,
89*e7776783SApple OSS Distributions 19, 19, 19, 19, 20, 20, 20, 20, 21, 21, 21, 21, 16, 201, 196};
90*e7776783SApple OSS Distributions static const unsigned short dbase[32] = { /* Distance codes 0..29 base */
91*e7776783SApple OSS Distributions 1, 2, 3, 4, 5, 7, 9, 13, 17, 25, 33, 49, 65, 97, 129, 193,
92*e7776783SApple OSS Distributions 257, 385, 513, 769, 1025, 1537, 2049, 3073, 4097, 6145,
93*e7776783SApple OSS Distributions 8193, 12289, 16385, 24577, 0, 0};
94*e7776783SApple OSS Distributions static const unsigned short dext[32] = { /* Distance codes 0..29 extra */
95*e7776783SApple OSS Distributions 16, 16, 16, 16, 17, 17, 18, 18, 19, 19, 20, 20, 21, 21, 22, 22,
96*e7776783SApple OSS Distributions 23, 23, 24, 24, 25, 25, 26, 26, 27, 27,
97*e7776783SApple OSS Distributions 28, 28, 29, 29, 64, 64};
98*e7776783SApple OSS Distributions
99*e7776783SApple OSS Distributions /*
100*e7776783SApple OSS Distributions Process a set of code lengths to create a canonical Huffman code. The
101*e7776783SApple OSS Distributions code lengths are lens[0..codes-1]. Each length corresponds to the
102*e7776783SApple OSS Distributions symbols 0..codes-1. The Huffman code is generated by first sorting the
103*e7776783SApple OSS Distributions symbols by length from short to long, and retaining the symbol order
104*e7776783SApple OSS Distributions for codes with equal lengths. Then the code starts with all zero bits
105*e7776783SApple OSS Distributions for the first code of the shortest length, and the codes are integer
106*e7776783SApple OSS Distributions increments for the same length, and zeros are appended as the length
107*e7776783SApple OSS Distributions increases. For the deflate format, these bits are stored backwards
108*e7776783SApple OSS Distributions from their more natural integer increment ordering, and so when the
109*e7776783SApple OSS Distributions decoding tables are built in the large loop below, the integer codes
110*e7776783SApple OSS Distributions are incremented backwards.
111*e7776783SApple OSS Distributions
112*e7776783SApple OSS Distributions This routine assumes, but does not check, that all of the entries in
113*e7776783SApple OSS Distributions lens[] are in the range 0..MAXBITS. The caller must assure this.
114*e7776783SApple OSS Distributions 1..MAXBITS is interpreted as that code length. zero means that that
115*e7776783SApple OSS Distributions symbol does not occur in this code.
116*e7776783SApple OSS Distributions
117*e7776783SApple OSS Distributions The codes are sorted by computing a count of codes for each length,
118*e7776783SApple OSS Distributions creating from that a table of starting indices for each length in the
119*e7776783SApple OSS Distributions sorted table, and then entering the symbols in order in the sorted
120*e7776783SApple OSS Distributions table. The sorted table is work[], with that space being provided by
121*e7776783SApple OSS Distributions the caller.
122*e7776783SApple OSS Distributions
123*e7776783SApple OSS Distributions The length counts are used for other purposes as well, i.e. finding
124*e7776783SApple OSS Distributions the minimum and maximum length codes, determining if there are any
125*e7776783SApple OSS Distributions codes at all, checking for a valid set of lengths, and looking ahead
126*e7776783SApple OSS Distributions at length counts to determine sub-table sizes when building the
127*e7776783SApple OSS Distributions decoding tables.
128*e7776783SApple OSS Distributions */
129*e7776783SApple OSS Distributions
130*e7776783SApple OSS Distributions /* accumulate lengths for codes (assumes lens[] all in 0..MAXBITS) */
131*e7776783SApple OSS Distributions for (len = 0; len <= MAXBITS; len++)
132*e7776783SApple OSS Distributions count[len] = 0;
133*e7776783SApple OSS Distributions for (sym = 0; sym < codes; sym++)
134*e7776783SApple OSS Distributions count[lens[sym]]++;
135*e7776783SApple OSS Distributions
136*e7776783SApple OSS Distributions /* bound code lengths, force root to be within code lengths */
137*e7776783SApple OSS Distributions root = *bits;
138*e7776783SApple OSS Distributions for (max = MAXBITS; max >= 1; max--)
139*e7776783SApple OSS Distributions if (count[max] != 0) break;
140*e7776783SApple OSS Distributions if (root > max) root = max;
141*e7776783SApple OSS Distributions if (max == 0) { /* no symbols to code at all */
142*e7776783SApple OSS Distributions this.op = (unsigned char)64; /* invalid code marker */
143*e7776783SApple OSS Distributions this.bits = (unsigned char)1;
144*e7776783SApple OSS Distributions this.val = (unsigned short)0;
145*e7776783SApple OSS Distributions *(*table)++ = this; /* make a table to force an error */
146*e7776783SApple OSS Distributions *(*table)++ = this;
147*e7776783SApple OSS Distributions *bits = 1;
148*e7776783SApple OSS Distributions return 0; /* no symbols, but wait for decoding to report error */
149*e7776783SApple OSS Distributions }
150*e7776783SApple OSS Distributions for (min = 1; min <= MAXBITS; min++)
151*e7776783SApple OSS Distributions if (count[min] != 0) break;
152*e7776783SApple OSS Distributions if (root < min) root = min;
153*e7776783SApple OSS Distributions
154*e7776783SApple OSS Distributions /* check for an over-subscribed or incomplete set of lengths */
155*e7776783SApple OSS Distributions left = 1;
156*e7776783SApple OSS Distributions for (len = 1; len <= MAXBITS; len++) {
157*e7776783SApple OSS Distributions left <<= 1;
158*e7776783SApple OSS Distributions left -= count[len];
159*e7776783SApple OSS Distributions if (left < 0) return -1; /* over-subscribed */
160*e7776783SApple OSS Distributions }
161*e7776783SApple OSS Distributions if (left > 0 && (type == CODES || max != 1))
162*e7776783SApple OSS Distributions return -1; /* incomplete set */
163*e7776783SApple OSS Distributions
164*e7776783SApple OSS Distributions /* generate offsets into symbol table for each length for sorting */
165*e7776783SApple OSS Distributions offs[1] = 0;
166*e7776783SApple OSS Distributions for (len = 1; len < MAXBITS; len++)
167*e7776783SApple OSS Distributions offs[len + 1] = offs[len] + count[len];
168*e7776783SApple OSS Distributions
169*e7776783SApple OSS Distributions /* sort symbols by length, by symbol order within each length */
170*e7776783SApple OSS Distributions for (sym = 0; sym < codes; sym++)
171*e7776783SApple OSS Distributions if (lens[sym] != 0) work[offs[lens[sym]]++] = (unsigned short)sym;
172*e7776783SApple OSS Distributions
173*e7776783SApple OSS Distributions /*
174*e7776783SApple OSS Distributions Create and fill in decoding tables. In this loop, the table being
175*e7776783SApple OSS Distributions filled is at next and has curr index bits. The code being used is huff
176*e7776783SApple OSS Distributions with length len. That code is converted to an index by dropping drop
177*e7776783SApple OSS Distributions bits off of the bottom. For codes where len is less than drop + curr,
178*e7776783SApple OSS Distributions those top drop + curr - len bits are incremented through all values to
179*e7776783SApple OSS Distributions fill the table with replicated entries.
180*e7776783SApple OSS Distributions
181*e7776783SApple OSS Distributions root is the number of index bits for the root table. When len exceeds
182*e7776783SApple OSS Distributions root, sub-tables are created pointed to by the root entry with an index
183*e7776783SApple OSS Distributions of the low root bits of huff. This is saved in low to check for when a
184*e7776783SApple OSS Distributions new sub-table should be started. drop is zero when the root table is
185*e7776783SApple OSS Distributions being filled, and drop is root when sub-tables are being filled.
186*e7776783SApple OSS Distributions
187*e7776783SApple OSS Distributions When a new sub-table is needed, it is necessary to look ahead in the
188*e7776783SApple OSS Distributions code lengths to determine what size sub-table is needed. The length
189*e7776783SApple OSS Distributions counts are used for this, and so count[] is decremented as codes are
190*e7776783SApple OSS Distributions entered in the tables.
191*e7776783SApple OSS Distributions
192*e7776783SApple OSS Distributions used keeps track of how many table entries have been allocated from the
193*e7776783SApple OSS Distributions provided *table space. It is checked when a LENS table is being made
194*e7776783SApple OSS Distributions against the space in *table, ENOUGH, minus the maximum space needed by
195*e7776783SApple OSS Distributions the worst case distance code, MAXD. This should never happen, but the
196*e7776783SApple OSS Distributions sufficiency of ENOUGH has not been proven exhaustively, hence the check.
197*e7776783SApple OSS Distributions This assumes that when type == LENS, bits == 9.
198*e7776783SApple OSS Distributions
199*e7776783SApple OSS Distributions sym increments through all symbols, and the loop terminates when
200*e7776783SApple OSS Distributions all codes of length max, i.e. all codes, have been processed. This
201*e7776783SApple OSS Distributions routine permits incomplete codes, so another loop after this one fills
202*e7776783SApple OSS Distributions in the rest of the decoding tables with invalid code markers.
203*e7776783SApple OSS Distributions */
204*e7776783SApple OSS Distributions
205*e7776783SApple OSS Distributions /* set up for code type */
206*e7776783SApple OSS Distributions switch (type) {
207*e7776783SApple OSS Distributions case CODES:
208*e7776783SApple OSS Distributions base = extra = work; /* dummy value--not used */
209*e7776783SApple OSS Distributions match = 20;
210*e7776783SApple OSS Distributions break;
211*e7776783SApple OSS Distributions case LENS:
212*e7776783SApple OSS Distributions base = lbase;
213*e7776783SApple OSS Distributions extra = lext;
214*e7776783SApple OSS Distributions match = 257;
215*e7776783SApple OSS Distributions break;
216*e7776783SApple OSS Distributions default: /* DISTS */
217*e7776783SApple OSS Distributions base = dbase;
218*e7776783SApple OSS Distributions extra = dext;
219*e7776783SApple OSS Distributions match = 0;
220*e7776783SApple OSS Distributions }
221*e7776783SApple OSS Distributions
222*e7776783SApple OSS Distributions /* initialize state for loop */
223*e7776783SApple OSS Distributions huff = 0; /* starting code */
224*e7776783SApple OSS Distributions sym = 0; /* starting code symbol */
225*e7776783SApple OSS Distributions len = min; /* starting code length */
226*e7776783SApple OSS Distributions next = *table; /* current table to fill in */
227*e7776783SApple OSS Distributions curr = root; /* current table index bits */
228*e7776783SApple OSS Distributions drop = 0; /* current bits to drop from code for index */
229*e7776783SApple OSS Distributions low = (unsigned)(-1); /* trigger new sub-table when len > root */
230*e7776783SApple OSS Distributions used = 1U << root; /* use root table entries */
231*e7776783SApple OSS Distributions mask = used - 1; /* mask for comparing low */
232*e7776783SApple OSS Distributions
233*e7776783SApple OSS Distributions /* check available table space */
234*e7776783SApple OSS Distributions if (type == LENS && used >= ENOUGH - MAXD)
235*e7776783SApple OSS Distributions return 1;
236*e7776783SApple OSS Distributions
237*e7776783SApple OSS Distributions /* process all codes and make table entries */
238*e7776783SApple OSS Distributions for (;;) {
239*e7776783SApple OSS Distributions /* create table entry */
240*e7776783SApple OSS Distributions this.bits = (unsigned char)(len - drop);
241*e7776783SApple OSS Distributions if (work[sym] + 1 < match) {
242*e7776783SApple OSS Distributions this.op = (unsigned char)0;
243*e7776783SApple OSS Distributions this.val = work[sym];
244*e7776783SApple OSS Distributions }
245*e7776783SApple OSS Distributions else if (work[sym] >= match) {
246*e7776783SApple OSS Distributions this.op = (unsigned char)(extra[work[sym] - match]);
247*e7776783SApple OSS Distributions this.val = base[work[sym] - match];
248*e7776783SApple OSS Distributions }
249*e7776783SApple OSS Distributions else {
250*e7776783SApple OSS Distributions this.op = (unsigned char)(32 + 64); /* end of block */
251*e7776783SApple OSS Distributions this.val = 0;
252*e7776783SApple OSS Distributions }
253*e7776783SApple OSS Distributions
254*e7776783SApple OSS Distributions /* replicate for those indices with low len bits equal to huff */
255*e7776783SApple OSS Distributions incr = 1U << (len - drop);
256*e7776783SApple OSS Distributions fill = 1U << curr;
257*e7776783SApple OSS Distributions min = fill; /* save offset to next table */
258*e7776783SApple OSS Distributions do {
259*e7776783SApple OSS Distributions fill -= incr;
260*e7776783SApple OSS Distributions next[(huff >> drop) + fill] = this;
261*e7776783SApple OSS Distributions } while (fill != 0);
262*e7776783SApple OSS Distributions
263*e7776783SApple OSS Distributions /* backwards increment the len-bit code huff */
264*e7776783SApple OSS Distributions incr = 1U << (len - 1);
265*e7776783SApple OSS Distributions while (huff & incr)
266*e7776783SApple OSS Distributions incr >>= 1;
267*e7776783SApple OSS Distributions if (incr != 0) {
268*e7776783SApple OSS Distributions huff &= incr - 1;
269*e7776783SApple OSS Distributions huff += incr;
270*e7776783SApple OSS Distributions }
271*e7776783SApple OSS Distributions else
272*e7776783SApple OSS Distributions huff = 0;
273*e7776783SApple OSS Distributions
274*e7776783SApple OSS Distributions /* go to next symbol, update count, len */
275*e7776783SApple OSS Distributions sym++;
276*e7776783SApple OSS Distributions if (--(count[len]) == 0) {
277*e7776783SApple OSS Distributions if (len == max) break;
278*e7776783SApple OSS Distributions len = lens[work[sym]];
279*e7776783SApple OSS Distributions }
280*e7776783SApple OSS Distributions
281*e7776783SApple OSS Distributions /* create new sub-table if needed */
282*e7776783SApple OSS Distributions if (len > root && (huff & mask) != low) {
283*e7776783SApple OSS Distributions /* if first time, transition to sub-tables */
284*e7776783SApple OSS Distributions if (drop == 0)
285*e7776783SApple OSS Distributions drop = root;
286*e7776783SApple OSS Distributions
287*e7776783SApple OSS Distributions /* increment past last table */
288*e7776783SApple OSS Distributions next += min; /* here min is 1 << curr */
289*e7776783SApple OSS Distributions
290*e7776783SApple OSS Distributions /* determine length of next table */
291*e7776783SApple OSS Distributions curr = len - drop;
292*e7776783SApple OSS Distributions left = (int)(1 << curr);
293*e7776783SApple OSS Distributions while (curr + drop < max) {
294*e7776783SApple OSS Distributions left -= count[curr + drop];
295*e7776783SApple OSS Distributions if (left <= 0) break;
296*e7776783SApple OSS Distributions curr++;
297*e7776783SApple OSS Distributions left <<= 1;
298*e7776783SApple OSS Distributions }
299*e7776783SApple OSS Distributions
300*e7776783SApple OSS Distributions /* check for enough space */
301*e7776783SApple OSS Distributions used += 1U << curr;
302*e7776783SApple OSS Distributions if (type == LENS && used >= ENOUGH - MAXD)
303*e7776783SApple OSS Distributions return 1;
304*e7776783SApple OSS Distributions
305*e7776783SApple OSS Distributions /* point entry in root table to sub-table */
306*e7776783SApple OSS Distributions low = huff & mask;
307*e7776783SApple OSS Distributions (*table)[low].op = (unsigned char)curr;
308*e7776783SApple OSS Distributions (*table)[low].bits = (unsigned char)root;
309*e7776783SApple OSS Distributions (*table)[low].val = (unsigned short)(next - *table);
310*e7776783SApple OSS Distributions }
311*e7776783SApple OSS Distributions }
312*e7776783SApple OSS Distributions
313*e7776783SApple OSS Distributions /*
314*e7776783SApple OSS Distributions Fill in rest of table for incomplete codes. This loop is similar to the
315*e7776783SApple OSS Distributions loop above in incrementing huff for table indices. It is assumed that
316*e7776783SApple OSS Distributions len is equal to curr + drop, so there is no loop needed to increment
317*e7776783SApple OSS Distributions through high index bits. When the current sub-table is filled, the loop
318*e7776783SApple OSS Distributions drops back to the root table to fill in any remaining entries there.
319*e7776783SApple OSS Distributions */
320*e7776783SApple OSS Distributions this.op = (unsigned char)64; /* invalid code marker */
321*e7776783SApple OSS Distributions this.bits = (unsigned char)(len - drop);
322*e7776783SApple OSS Distributions this.val = (unsigned short)0;
323*e7776783SApple OSS Distributions while (huff != 0) {
324*e7776783SApple OSS Distributions /* when done with sub-table, drop back to root table */
325*e7776783SApple OSS Distributions if (drop != 0 && (huff & mask) != low) {
326*e7776783SApple OSS Distributions drop = 0;
327*e7776783SApple OSS Distributions len = root;
328*e7776783SApple OSS Distributions next = *table;
329*e7776783SApple OSS Distributions this.bits = (unsigned char)len;
330*e7776783SApple OSS Distributions }
331*e7776783SApple OSS Distributions
332*e7776783SApple OSS Distributions /* put invalid code marker in table */
333*e7776783SApple OSS Distributions next[huff >> drop] = this;
334*e7776783SApple OSS Distributions
335*e7776783SApple OSS Distributions /* backwards increment the len-bit code huff */
336*e7776783SApple OSS Distributions incr = 1U << (len - 1);
337*e7776783SApple OSS Distributions while (huff & incr)
338*e7776783SApple OSS Distributions incr >>= 1;
339*e7776783SApple OSS Distributions if (incr != 0) {
340*e7776783SApple OSS Distributions huff &= incr - 1;
341*e7776783SApple OSS Distributions huff += incr;
342*e7776783SApple OSS Distributions }
343*e7776783SApple OSS Distributions else
344*e7776783SApple OSS Distributions huff = 0;
345*e7776783SApple OSS Distributions }
346*e7776783SApple OSS Distributions
347*e7776783SApple OSS Distributions /* set return parameters */
348*e7776783SApple OSS Distributions *table += used;
349*e7776783SApple OSS Distributions *bits = root;
350*e7776783SApple OSS Distributions return 0;
351*e7776783SApple OSS Distributions }
352