xref: /dflybsd-src/contrib/binutils-2.34/gold/int_encoding.cc (revision b52ef7118d1621abed722c5bbbd542210290ecef)
1*fae548d3Szrj // int_encoding.cc -- variable length and unaligned integer encoding support.
2*fae548d3Szrj 
3*fae548d3Szrj // Copyright (C) 2009-2020 Free Software Foundation, Inc.
4*fae548d3Szrj // Written by Doug Kwan <dougkwan@google.com> by refactoring scattered
5*fae548d3Szrj // contents from other files in gold.  Original code written by Ian
6*fae548d3Szrj // Lance Taylor <iant@google.com> and Caleb Howe <cshowe@google.com>.
7*fae548d3Szrj 
8*fae548d3Szrj // This file is part of gold.
9*fae548d3Szrj 
10*fae548d3Szrj // This program is free software; you can redistribute it and/or modify
11*fae548d3Szrj // it under the terms of the GNU General Public License as published by
12*fae548d3Szrj // the Free Software Foundation; either version 3 of the License, or
13*fae548d3Szrj // (at your option) any later version.
14*fae548d3Szrj 
15*fae548d3Szrj // This program is distributed in the hope that it will be useful,
16*fae548d3Szrj // but WITHOUT ANY WARRANTY; without even the implied warranty of
17*fae548d3Szrj // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
18*fae548d3Szrj // GNU General Public License for more details.
19*fae548d3Szrj 
20*fae548d3Szrj // You should have received a copy of the GNU General Public License
21*fae548d3Szrj // along with this program; if not, write to the Free Software
22*fae548d3Szrj // Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
23*fae548d3Szrj // MA 02110-1301, USA.
24*fae548d3Szrj 
25*fae548d3Szrj #include "gold.h"
26*fae548d3Szrj 
27*fae548d3Szrj #include <vector>
28*fae548d3Szrj 
29*fae548d3Szrj #include "int_encoding.h"
30*fae548d3Szrj 
31*fae548d3Szrj namespace gold {
32*fae548d3Szrj 
33*fae548d3Szrj // Read an unsigned LEB128 number.  Each byte contains 7 bits of
34*fae548d3Szrj // information, plus one bit saying whether the number continues or
35*fae548d3Szrj // not.  BYTE contains the first byte of the number, and is guaranteed
36*fae548d3Szrj // to have the continuation bit set.
37*fae548d3Szrj 
38*fae548d3Szrj uint64_t
read_unsigned_LEB_128_x(const unsigned char * buffer,size_t * len,unsigned char byte)39*fae548d3Szrj read_unsigned_LEB_128_x(const unsigned char* buffer, size_t* len,
40*fae548d3Szrj 			unsigned char byte)
41*fae548d3Szrj {
42*fae548d3Szrj   uint64_t result = static_cast<uint64_t>(byte & 0x7f);
43*fae548d3Szrj   size_t num_read = 1;
44*fae548d3Szrj   unsigned int shift = 7;
45*fae548d3Szrj 
46*fae548d3Szrj   do
47*fae548d3Szrj     {
48*fae548d3Szrj       if (num_read > 64 / 7 + 1)
49*fae548d3Szrj         {
50*fae548d3Szrj           gold_warning(_("Unusually large LEB128 decoded, "
51*fae548d3Szrj 			 "debug information may be corrupted"));
52*fae548d3Szrj           break;
53*fae548d3Szrj         }
54*fae548d3Szrj       byte = *buffer++;
55*fae548d3Szrj       num_read++;
56*fae548d3Szrj       result |= (static_cast<uint64_t>(byte & 0x7f)) << shift;
57*fae548d3Szrj       shift += 7;
58*fae548d3Szrj     }
59*fae548d3Szrj   while (byte & 0x80);
60*fae548d3Szrj 
61*fae548d3Szrj   *len = num_read;
62*fae548d3Szrj 
63*fae548d3Szrj   return result;
64*fae548d3Szrj }
65*fae548d3Szrj 
66*fae548d3Szrj // Read a signed LEB128 number.  These are like regular LEB128
67*fae548d3Szrj // numbers, except the last byte may have a sign bit set.
68*fae548d3Szrj // BYTE contains the first byte of the number, and is guaranteed
69*fae548d3Szrj // to have the continuation bit set.
70*fae548d3Szrj 
71*fae548d3Szrj int64_t
read_signed_LEB_128_x(const unsigned char * buffer,size_t * len,unsigned char byte)72*fae548d3Szrj read_signed_LEB_128_x(const unsigned char* buffer, size_t* len,
73*fae548d3Szrj 		      unsigned char byte)
74*fae548d3Szrj {
75*fae548d3Szrj   int64_t result = static_cast<uint64_t>(byte & 0x7f);
76*fae548d3Szrj   int shift = 7;
77*fae548d3Szrj   size_t num_read = 1;
78*fae548d3Szrj 
79*fae548d3Szrj   do
80*fae548d3Szrj     {
81*fae548d3Szrj       if (num_read > 64 / 7 + 1)
82*fae548d3Szrj         {
83*fae548d3Szrj           gold_warning(_("Unusually large LEB128 decoded, "
84*fae548d3Szrj 			 "debug information may be corrupted"));
85*fae548d3Szrj           break;
86*fae548d3Szrj         }
87*fae548d3Szrj       byte = *buffer++;
88*fae548d3Szrj       num_read++;
89*fae548d3Szrj       result |= (static_cast<uint64_t>(byte & 0x7f) << shift);
90*fae548d3Szrj       shift += 7;
91*fae548d3Szrj     }
92*fae548d3Szrj   while (byte & 0x80);
93*fae548d3Szrj 
94*fae548d3Szrj   if ((shift < 8 * static_cast<int>(sizeof(result))) && (byte & 0x40))
95*fae548d3Szrj     result |= -((static_cast<int64_t>(1)) << shift);
96*fae548d3Szrj   *len = num_read;
97*fae548d3Szrj   return result;
98*fae548d3Szrj }
99*fae548d3Szrj 
100*fae548d3Szrj void
write_unsigned_LEB_128(std::vector<unsigned char> * buffer,uint64_t value)101*fae548d3Szrj write_unsigned_LEB_128(std::vector<unsigned char>* buffer, uint64_t value)
102*fae548d3Szrj {
103*fae548d3Szrj   do
104*fae548d3Szrj     {
105*fae548d3Szrj       unsigned char current_byte = value & 0x7f;
106*fae548d3Szrj       value >>= 7;
107*fae548d3Szrj       if (value != 0)
108*fae548d3Szrj         {
109*fae548d3Szrj           current_byte |= 0x80;
110*fae548d3Szrj         }
111*fae548d3Szrj       buffer->push_back(current_byte);
112*fae548d3Szrj     }
113*fae548d3Szrj   while (value != 0);
114*fae548d3Szrj }
115*fae548d3Szrj 
116*fae548d3Szrj size_t
get_length_as_unsigned_LEB_128(uint64_t value)117*fae548d3Szrj get_length_as_unsigned_LEB_128(uint64_t value)
118*fae548d3Szrj {
119*fae548d3Szrj   size_t length = 0;
120*fae548d3Szrj   do
121*fae548d3Szrj     {
122*fae548d3Szrj       unsigned char current_byte = value & 0x7f;
123*fae548d3Szrj       value >>= 7;
124*fae548d3Szrj       if (value != 0)
125*fae548d3Szrj         {
126*fae548d3Szrj           current_byte |= 0x80;
127*fae548d3Szrj         }
128*fae548d3Szrj       length++;
129*fae548d3Szrj     }
130*fae548d3Szrj   while (value != 0);
131*fae548d3Szrj   return length;
132*fae548d3Szrj }
133*fae548d3Szrj 
134*fae548d3Szrj } // End namespace gold.
135