VirtualBox

source: vbox/trunk/src/VBox/Devices/Network/slirp/sbuf.c@ 1050

最後變更 在這個檔案從1050是 1033,由 vboxsync 提交於 18 年 前

Big change to make slirp fully instantiatable (replace all global
variables with local ones, passing a reference to the state/config
structure to all places which are interested). You can now have as many
cards in the guest configured for NAT networking as you want.

  • 屬性 svn:eol-style 設為 native
檔案大小: 4.3 KB
 
1/*
2 * Copyright (c) 1995 Danny Gasparovski.
3 *
4 * Please read the file COPYRIGHT for the
5 * terms and conditions of the copyright.
6 */
7
8#include <slirp.h>
9
10/* Done as a macro in socket.h */
11/* int
12 * sbspace(struct sockbuff *sb)
13 * {
14 * return SB_DATALEN - sb->sb_cc;
15 * }
16 */
17
18void
19sbfree(sb)
20 struct sbuf *sb;
21{
22 free(sb->sb_data);
23}
24
25void
26sbdrop(sb, num)
27 struct sbuf *sb;
28 int num;
29{
30 /*
31 * We can only drop how much we have
32 * This should never succeed
33 */
34 if(num > sb->sb_cc)
35 num = sb->sb_cc;
36 sb->sb_cc -= num;
37 sb->sb_rptr += num;
38 if(sb->sb_rptr >= sb->sb_data + sb->sb_datalen)
39 sb->sb_rptr -= sb->sb_datalen;
40
41}
42
43void
44sbreserve(sb, size)
45 struct sbuf *sb;
46 int size;
47{
48 if (sb->sb_data) {
49 /* Already alloced, realloc if necessary */
50 if (sb->sb_datalen != size) {
51 sb->sb_wptr = sb->sb_rptr = sb->sb_data = (char *)realloc(sb->sb_data, size);
52 sb->sb_cc = 0;
53 if (sb->sb_wptr)
54 sb->sb_datalen = size;
55 else
56 sb->sb_datalen = 0;
57 }
58 } else {
59 sb->sb_wptr = sb->sb_rptr = sb->sb_data = (char *)malloc(size);
60 sb->sb_cc = 0;
61 if (sb->sb_wptr)
62 sb->sb_datalen = size;
63 else
64 sb->sb_datalen = 0;
65 }
66}
67
68/*
69 * Try and write() to the socket, whatever doesn't get written
70 * append to the buffer... for a host with a fast net connection,
71 * this prevents an unnecessary copy of the data
72 * (the socket is non-blocking, so we won't hang)
73 */
74void
75#ifdef VBOX
76sbappend(PNATState pData, struct socket *so, struct mbuf *m)
77#else /* !VBOX */
78sbappend(so, m)
79 struct socket *so;
80 struct mbuf *m;
81#endif /* !VBOX */
82{
83 int ret = 0;
84
85 DEBUG_CALL("sbappend");
86 DEBUG_ARG("so = %lx", (long)so);
87 DEBUG_ARG("m = %lx", (long)m);
88 DEBUG_ARG("m->m_len = %d", m->m_len);
89
90 /* Shouldn't happen, but... e.g. foreign host closes connection */
91 if (m->m_len <= 0) {
92#ifdef VBOX
93 m_free(pData, m);
94#else /* !VBOX */
95 m_free(m);
96#endif /* !VBOX */
97 return;
98 }
99
100 /*
101 * If there is urgent data, call sosendoob
102 * if not all was sent, sowrite will take care of the rest
103 * (The rest of this function is just an optimisation)
104 */
105 if (so->so_urgc) {
106 sbappendsb(&so->so_rcv, m);
107#ifdef VBOX
108 m_free(pData, m);
109#else /* !VBOX */
110 m_free(m);
111#endif /* !VBOX */
112 sosendoob(so);
113 return;
114 }
115
116 /*
117 * We only write if there's nothing in the buffer,
118 * ottherwise it'll arrive out of order, and hence corrupt
119 */
120 if (!so->so_rcv.sb_cc)
121 ret = send(so->s, m->m_data, m->m_len, 0);
122
123 if (ret <= 0) {
124 /*
125 * Nothing was written
126 * It's possible that the socket has closed, but
127 * we don't need to check because if it has closed,
128 * it will be detected in the normal way by soread()
129 */
130 sbappendsb(&so->so_rcv, m);
131 } else if (ret != m->m_len) {
132 /*
133 * Something was written, but not everything..
134 * sbappendsb the rest
135 */
136 m->m_len -= ret;
137 m->m_data += ret;
138 sbappendsb(&so->so_rcv, m);
139 } /* else */
140 /* Whatever happened, we free the mbuf */
141#ifdef VBOX
142 m_free(pData, m);
143#else /* !VBOX */
144 m_free(m);
145#endif /* !VBOX */
146}
147
148/*
149 * Copy the data from m into sb
150 * The caller is responsible to make sure there's enough room
151 */
152void
153sbappendsb(sb, m)
154 struct sbuf *sb;
155 struct mbuf *m;
156{
157 int len, n, nn;
158
159 len = m->m_len;
160
161 if (sb->sb_wptr < sb->sb_rptr) {
162 n = sb->sb_rptr - sb->sb_wptr;
163 if (n > len) n = len;
164 memcpy(sb->sb_wptr, m->m_data, n);
165 } else {
166 /* Do the right edge first */
167 n = sb->sb_data + sb->sb_datalen - sb->sb_wptr;
168 if (n > len) n = len;
169 memcpy(sb->sb_wptr, m->m_data, n);
170 len -= n;
171 if (len) {
172 /* Now the left edge */
173 nn = sb->sb_rptr - sb->sb_data;
174 if (nn > len) nn = len;
175 memcpy(sb->sb_data,m->m_data+n,nn);
176 n += nn;
177 }
178 }
179
180 sb->sb_cc += n;
181 sb->sb_wptr += n;
182 if (sb->sb_wptr >= sb->sb_data + sb->sb_datalen)
183 sb->sb_wptr -= sb->sb_datalen;
184}
185
186/*
187 * Copy data from sbuf to a normal, straight buffer
188 * Don't update the sbuf rptr, this will be
189 * done in sbdrop when the data is acked
190 */
191void
192sbcopy(sb, off, len, to)
193 struct sbuf *sb;
194 int off;
195 int len;
196 char *to;
197{
198 char *from;
199
200 from = sb->sb_rptr + off;
201 if (from >= sb->sb_data + sb->sb_datalen)
202 from -= sb->sb_datalen;
203
204 if (from < sb->sb_wptr) {
205 if (len > sb->sb_cc) len = sb->sb_cc;
206 memcpy(to,from,len);
207 } else {
208 /* re-use off */
209 off = (sb->sb_data + sb->sb_datalen) - from;
210 if (off > len) off = len;
211 memcpy(to,from,off);
212 len -= off;
213 if (len)
214 memcpy(to+off,sb->sb_data,len);
215 }
216}
217
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