xdr_rec.c revision 1.9 1 1.9 lukem /* $NetBSD: xdr_rec.c,v 1.9 1998/02/10 04:55:02 lukem Exp $ */
2 1.5 cgd
3 1.1 cgd /*
4 1.1 cgd * Sun RPC is a product of Sun Microsystems, Inc. and is provided for
5 1.1 cgd * unrestricted use provided that this legend is included on all tape
6 1.1 cgd * media and as a part of the software program in whole or part. Users
7 1.1 cgd * may copy or modify Sun RPC without charge, but are not authorized
8 1.1 cgd * to license or distribute it to anyone else except as part of a product or
9 1.1 cgd * program developed by the user.
10 1.1 cgd *
11 1.1 cgd * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE
12 1.1 cgd * WARRANTIES OF DESIGN, MERCHANTIBILITY AND FITNESS FOR A PARTICULAR
13 1.1 cgd * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE.
14 1.1 cgd *
15 1.1 cgd * Sun RPC is provided with no support and without any obligation on the
16 1.1 cgd * part of Sun Microsystems, Inc. to assist in its use, correction,
17 1.1 cgd * modification or enhancement.
18 1.1 cgd *
19 1.1 cgd * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE
20 1.1 cgd * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC
21 1.1 cgd * OR ANY PART THEREOF.
22 1.1 cgd *
23 1.1 cgd * In no event will Sun Microsystems, Inc. be liable for any lost revenue
24 1.1 cgd * or profits or other special, indirect and consequential damages, even if
25 1.1 cgd * Sun has been advised of the possibility of such damages.
26 1.1 cgd *
27 1.1 cgd * Sun Microsystems, Inc.
28 1.1 cgd * 2550 Garcia Avenue
29 1.1 cgd * Mountain View, California 94043
30 1.1 cgd */
31 1.7 christos
32 1.7 christos #include <sys/cdefs.h>
33 1.1 cgd #if defined(LIBC_SCCS) && !defined(lint)
34 1.7 christos #if 0
35 1.7 christos static char *sccsid = "@(#)xdr_rec.c 1.21 87/08/11 Copyr 1984 Sun Micro";
36 1.7 christos static char *sccsid = "@(#)xdr_rec.c 2.2 88/08/01 4.0 RPCSRC";
37 1.7 christos #else
38 1.9 lukem __RCSID("$NetBSD: xdr_rec.c,v 1.9 1998/02/10 04:55:02 lukem Exp $");
39 1.7 christos #endif
40 1.1 cgd #endif
41 1.1 cgd
42 1.1 cgd /*
43 1.1 cgd * xdr_rec.c, Implements TCP/IP based XDR streams with a "record marking"
44 1.1 cgd * layer above tcp (for rpc's use).
45 1.1 cgd *
46 1.1 cgd * Copyright (C) 1984, Sun Microsystems, Inc.
47 1.1 cgd *
48 1.1 cgd * These routines interface XDRSTREAMS to a tcp/ip connection.
49 1.1 cgd * There is a record marking layer between the xdr stream
50 1.1 cgd * and the tcp transport level. A record is composed on one or more
51 1.1 cgd * record fragments. A record fragment is a thirty-two bit header followed
52 1.1 cgd * by n bytes of data, where n is contained in the header. The header
53 1.9 lukem * is represented as a htonl(u_int32_t). Thegh order bit encodes
54 1.1 cgd * whether or not the fragment is the last fragment of the record
55 1.1 cgd * (1 => fragment is last, 0 => more fragments to follow.
56 1.1 cgd * The other 31 bits encode the byte length of the fragment.
57 1.1 cgd */
58 1.1 cgd
59 1.8 jtc #include "namespace.h"
60 1.9 lukem
61 1.9 lukem #include <sys/types.h>
62 1.9 lukem
63 1.9 lukem #include <netinet/in.h>
64 1.9 lukem
65 1.9 lukem #include <err.h>
66 1.1 cgd #include <stdio.h>
67 1.1 cgd #include <stdlib.h>
68 1.6 cgd #include <string.h>
69 1.9 lukem
70 1.1 cgd #include <rpc/types.h>
71 1.1 cgd #include <rpc/xdr.h>
72 1.8 jtc
73 1.8 jtc #ifdef __weak_alias
74 1.8 jtc __weak_alias(xdrrec_create,_xdrrec_create);
75 1.8 jtc __weak_alias(xdrrec_endofrecord,_xdrrec_endofrecord);
76 1.8 jtc __weak_alias(xdrrec_eof,_xdrrec_eof);
77 1.8 jtc __weak_alias(xdrrec_skiprecord,_xdrrec_skiprecord);
78 1.8 jtc #endif
79 1.1 cgd
80 1.9 lukem static bool_t xdrrec_getlong __P((XDR *, int32_t *));
81 1.9 lukem static bool_t xdrrec_putlong __P((XDR *, int32_t *));
82 1.9 lukem static bool_t xdrrec_getbytes __P((XDR *, caddr_t, size_t));
83 1.9 lukem
84 1.9 lukem static bool_t xdrrec_putbytes __P((XDR *, caddr_t, size_t));
85 1.9 lukem static size_t xdrrec_getpos __P((XDR *));
86 1.9 lukem static bool_t xdrrec_setpos __P((XDR *, size_t));
87 1.9 lukem static int32_t *xdrrec_inline __P((XDR *, size_t));
88 1.6 cgd static void xdrrec_destroy __P((XDR *));
89 1.1 cgd
90 1.1 cgd static struct xdr_ops xdrrec_ops = {
91 1.1 cgd xdrrec_getlong,
92 1.1 cgd xdrrec_putlong,
93 1.1 cgd xdrrec_getbytes,
94 1.1 cgd xdrrec_putbytes,
95 1.1 cgd xdrrec_getpos,
96 1.1 cgd xdrrec_setpos,
97 1.1 cgd xdrrec_inline,
98 1.1 cgd xdrrec_destroy
99 1.1 cgd };
100 1.1 cgd
101 1.1 cgd /*
102 1.1 cgd * A record is composed of one or more record fragments.
103 1.1 cgd * A record fragment is a two-byte header followed by zero to
104 1.1 cgd * 2**32-1 bytes. The header is treated as a long unsigned and is
105 1.1 cgd * encode/decoded to the network via htonl/ntohl. The low order 31 bits
106 1.1 cgd * are a byte count of the fragment. The highest order bit is a boolean:
107 1.1 cgd * 1 => this fragment is the last fragment of the record,
108 1.1 cgd * 0 => this fragment is followed by more fragment(s).
109 1.1 cgd *
110 1.1 cgd * The fragment/record machinery is not general; it is constructed to
111 1.1 cgd * meet the needs of xdr and rpc based on tcp.
112 1.1 cgd */
113 1.1 cgd
114 1.4 cgd #define LAST_FRAG ((u_int32_t)(1 << 31))
115 1.1 cgd
116 1.1 cgd typedef struct rec_strm {
117 1.1 cgd caddr_t tcp_handle;
118 1.1 cgd caddr_t the_buffer;
119 1.1 cgd /*
120 1.1 cgd * out-goung bits
121 1.1 cgd */
122 1.9 lukem int (*writeit) __P((caddr_t, caddr_t, size_t));
123 1.1 cgd caddr_t out_base; /* output buffer (points to frag header) */
124 1.1 cgd caddr_t out_finger; /* next output position */
125 1.1 cgd caddr_t out_boundry; /* data cannot up to this address */
126 1.9 lukem u_int32_t *frag_header; /* beginning of current fragment */
127 1.1 cgd bool_t frag_sent; /* true if buffer sent in middle of record */
128 1.1 cgd /*
129 1.1 cgd * in-coming bits
130 1.1 cgd */
131 1.9 lukem int (*readit) __P((caddr_t , caddr_t , size_t));
132 1.9 lukem u_int32_t in_size; /* fixed size of the input buffer */
133 1.1 cgd caddr_t in_base;
134 1.1 cgd caddr_t in_finger; /* location of next byte to be had */
135 1.1 cgd caddr_t in_boundry; /* can read up to this location */
136 1.9 lukem u_int32_t fbtbc; /* fragment bytes to be consumed */
137 1.1 cgd bool_t last_frag;
138 1.9 lukem size_t sendsize;
139 1.9 lukem size_t recvsize;
140 1.1 cgd } RECSTREAM;
141 1.1 cgd
142 1.9 lukem static size_t fix_buf_size __P((size_t));
143 1.6 cgd static bool_t flush_out __P((RECSTREAM *, bool_t));
144 1.7 christos static bool_t fill_input_buf __P((RECSTREAM *));
145 1.6 cgd static bool_t get_input_bytes __P((RECSTREAM *, caddr_t, int));
146 1.6 cgd static bool_t set_input_fragment __P((RECSTREAM *));
147 1.9 lukem static bool_t skip_input_bytes __P((RECSTREAM *, int32_t));
148 1.6 cgd
149 1.1 cgd
150 1.1 cgd /*
151 1.1 cgd * Create an xdr handle for xdrrec
152 1.1 cgd * xdrrec_create fills in xdrs. Sendsize and recvsize are
153 1.1 cgd * send and recv buffer sizes (0 => use default).
154 1.1 cgd * tcp_handle is an opaque handle that is passed as the first parameter to
155 1.1 cgd * the procedures readit and writeit. Readit and writeit are read and
156 1.1 cgd * write respectively. They are like the system
157 1.1 cgd * calls expect that they take an opaque handle rather than an fd.
158 1.1 cgd */
159 1.1 cgd void
160 1.1 cgd xdrrec_create(xdrs, sendsize, recvsize, tcp_handle, readit, writeit)
161 1.9 lukem XDR *xdrs;
162 1.9 lukem size_t sendsize;
163 1.9 lukem size_t recvsize;
164 1.1 cgd caddr_t tcp_handle;
165 1.9 lukem /* like read, but pass it a tcp_handle, not sock */
166 1.9 lukem int (*readit) __P((caddr_t, caddr_t, size_t));
167 1.9 lukem /* like write, but pass it a tcp_handle, not sock */
168 1.9 lukem int (*writeit) __P((caddr_t, caddr_t, size_t));
169 1.1 cgd {
170 1.9 lukem RECSTREAM *rstrm =
171 1.1 cgd (RECSTREAM *)mem_alloc(sizeof(RECSTREAM));
172 1.1 cgd
173 1.1 cgd if (rstrm == NULL) {
174 1.9 lukem warnx("xdrrec_create: out of memory");
175 1.1 cgd /*
176 1.1 cgd * This is bad. Should rework xdrrec_create to
177 1.1 cgd * return a handle, and in this case return NULL
178 1.1 cgd */
179 1.1 cgd return;
180 1.1 cgd }
181 1.1 cgd /*
182 1.1 cgd * adjust sizes and allocate buffer quad byte aligned
183 1.1 cgd */
184 1.1 cgd rstrm->sendsize = sendsize = fix_buf_size(sendsize);
185 1.1 cgd rstrm->recvsize = recvsize = fix_buf_size(recvsize);
186 1.9 lukem rstrm->the_buffer =
187 1.9 lukem mem_alloc((size_t)(sendsize + recvsize + BYTES_PER_XDR_UNIT));
188 1.1 cgd if (rstrm->the_buffer == NULL) {
189 1.9 lukem warnx("xdrrec_create: out of memory");
190 1.1 cgd return;
191 1.1 cgd }
192 1.1 cgd for (rstrm->out_base = rstrm->the_buffer;
193 1.9 lukem (u_int32_t)rstrm->out_base % BYTES_PER_XDR_UNIT != 0;
194 1.1 cgd rstrm->out_base++);
195 1.1 cgd rstrm->in_base = rstrm->out_base + sendsize;
196 1.1 cgd /*
197 1.1 cgd * now the rest ...
198 1.1 cgd */
199 1.1 cgd xdrs->x_ops = &xdrrec_ops;
200 1.1 cgd xdrs->x_private = (caddr_t)rstrm;
201 1.1 cgd rstrm->tcp_handle = tcp_handle;
202 1.1 cgd rstrm->readit = readit;
203 1.1 cgd rstrm->writeit = writeit;
204 1.1 cgd rstrm->out_finger = rstrm->out_boundry = rstrm->out_base;
205 1.4 cgd rstrm->frag_header = (u_int32_t *)rstrm->out_base;
206 1.4 cgd rstrm->out_finger += sizeof(u_int32_t);
207 1.1 cgd rstrm->out_boundry += sendsize;
208 1.1 cgd rstrm->frag_sent = FALSE;
209 1.1 cgd rstrm->in_size = recvsize;
210 1.1 cgd rstrm->in_boundry = rstrm->in_base;
211 1.1 cgd rstrm->in_finger = (rstrm->in_boundry += recvsize);
212 1.1 cgd rstrm->fbtbc = 0;
213 1.1 cgd rstrm->last_frag = TRUE;
214 1.1 cgd }
215 1.1 cgd
216 1.1 cgd
217 1.1 cgd /*
218 1.9 lukem * The routines defined below are the xdr ops which will go into the
219 1.1 cgd * xdr handle filled in by xdrrec_create.
220 1.1 cgd */
221 1.1 cgd
222 1.1 cgd static bool_t
223 1.1 cgd xdrrec_getlong(xdrs, lp)
224 1.1 cgd XDR *xdrs;
225 1.9 lukem int32_t *lp;
226 1.1 cgd {
227 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
228 1.9 lukem int32_t *buflp = (int32_t *)(rstrm->in_finger);
229 1.4 cgd int32_t mylong;
230 1.1 cgd
231 1.1 cgd /* first try the inline, fast case */
232 1.9 lukem if ((rstrm->fbtbc >= sizeof(int32_t))
233 1.9 lukem && (((int32_t)rstrm->in_boundry - (int32_t)buflp)
234 1.9 lukem >= sizeof(int32_t))) {
235 1.9 lukem *lp = (int32_t)ntohl((u_int32_t)(*buflp));
236 1.4 cgd rstrm->fbtbc -= sizeof(int32_t);
237 1.4 cgd rstrm->in_finger += sizeof(int32_t);
238 1.1 cgd } else {
239 1.4 cgd if (! xdrrec_getbytes(xdrs, (caddr_t)&mylong, sizeof(int32_t)))
240 1.1 cgd return (FALSE);
241 1.9 lukem *lp = (int32_t)ntohl((u_int32_t)mylong);
242 1.1 cgd }
243 1.1 cgd return (TRUE);
244 1.1 cgd }
245 1.1 cgd
246 1.1 cgd static bool_t
247 1.1 cgd xdrrec_putlong(xdrs, lp)
248 1.1 cgd XDR *xdrs;
249 1.9 lukem int32_t *lp;
250 1.1 cgd {
251 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
252 1.9 lukem int32_t *dest_lp = ((int32_t *)(rstrm->out_finger));
253 1.1 cgd
254 1.4 cgd if ((rstrm->out_finger += sizeof(int32_t)) > rstrm->out_boundry) {
255 1.1 cgd /*
256 1.1 cgd * this case should almost never happen so the code is
257 1.1 cgd * inefficient
258 1.1 cgd */
259 1.4 cgd rstrm->out_finger -= sizeof(int32_t);
260 1.1 cgd rstrm->frag_sent = TRUE;
261 1.1 cgd if (! flush_out(rstrm, FALSE))
262 1.1 cgd return (FALSE);
263 1.4 cgd dest_lp = ((int32_t *)(rstrm->out_finger));
264 1.4 cgd rstrm->out_finger += sizeof(int32_t);
265 1.1 cgd }
266 1.4 cgd *dest_lp = (int32_t)htonl((u_int32_t)(*lp));
267 1.1 cgd return (TRUE);
268 1.1 cgd }
269 1.1 cgd
270 1.1 cgd static bool_t /* must manage buffers, fragments, and records */
271 1.1 cgd xdrrec_getbytes(xdrs, addr, len)
272 1.1 cgd XDR *xdrs;
273 1.9 lukem caddr_t addr;
274 1.9 lukem size_t len;
275 1.1 cgd {
276 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
277 1.9 lukem int current;
278 1.1 cgd
279 1.1 cgd while (len > 0) {
280 1.1 cgd current = rstrm->fbtbc;
281 1.1 cgd if (current == 0) {
282 1.1 cgd if (rstrm->last_frag)
283 1.1 cgd return (FALSE);
284 1.1 cgd if (! set_input_fragment(rstrm))
285 1.1 cgd return (FALSE);
286 1.1 cgd continue;
287 1.1 cgd }
288 1.1 cgd current = (len < current) ? len : current;
289 1.1 cgd if (! get_input_bytes(rstrm, addr, current))
290 1.1 cgd return (FALSE);
291 1.1 cgd addr += current;
292 1.1 cgd rstrm->fbtbc -= current;
293 1.1 cgd len -= current;
294 1.1 cgd }
295 1.1 cgd return (TRUE);
296 1.1 cgd }
297 1.1 cgd
298 1.1 cgd static bool_t
299 1.1 cgd xdrrec_putbytes(xdrs, addr, len)
300 1.1 cgd XDR *xdrs;
301 1.9 lukem caddr_t addr;
302 1.9 lukem size_t len;
303 1.1 cgd {
304 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
305 1.9 lukem int32_t current;
306 1.1 cgd
307 1.1 cgd while (len > 0) {
308 1.9 lukem current = (u_int32_t)rstrm->out_boundry -
309 1.9 lukem (u_int32_t)rstrm->out_finger;
310 1.1 cgd current = (len < current) ? len : current;
311 1.9 lukem memmove(rstrm->out_finger, addr, current);
312 1.1 cgd rstrm->out_finger += current;
313 1.1 cgd addr += current;
314 1.1 cgd len -= current;
315 1.1 cgd if (rstrm->out_finger == rstrm->out_boundry) {
316 1.1 cgd rstrm->frag_sent = TRUE;
317 1.1 cgd if (! flush_out(rstrm, FALSE))
318 1.1 cgd return (FALSE);
319 1.1 cgd }
320 1.1 cgd }
321 1.1 cgd return (TRUE);
322 1.1 cgd }
323 1.1 cgd
324 1.9 lukem static size_t
325 1.1 cgd xdrrec_getpos(xdrs)
326 1.9 lukem XDR *xdrs;
327 1.1 cgd {
328 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)xdrs->x_private;
329 1.9 lukem int32_t pos;
330 1.1 cgd
331 1.9 lukem pos = lseek((off_t)(int32_t)rstrm->tcp_handle, 0, 1);
332 1.1 cgd if (pos != -1)
333 1.1 cgd switch (xdrs->x_op) {
334 1.1 cgd
335 1.1 cgd case XDR_ENCODE:
336 1.1 cgd pos += rstrm->out_finger - rstrm->out_base;
337 1.1 cgd break;
338 1.1 cgd
339 1.1 cgd case XDR_DECODE:
340 1.1 cgd pos -= rstrm->in_boundry - rstrm->in_finger;
341 1.1 cgd break;
342 1.1 cgd
343 1.1 cgd default:
344 1.9 lukem pos = (size_t) -1;
345 1.1 cgd break;
346 1.1 cgd }
347 1.9 lukem return ((size_t) pos);
348 1.1 cgd }
349 1.1 cgd
350 1.1 cgd static bool_t
351 1.1 cgd xdrrec_setpos(xdrs, pos)
352 1.9 lukem XDR *xdrs;
353 1.9 lukem size_t pos;
354 1.1 cgd {
355 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)xdrs->x_private;
356 1.9 lukem size_t currpos = xdrrec_getpos(xdrs);
357 1.1 cgd int delta = currpos - pos;
358 1.1 cgd caddr_t newpos;
359 1.1 cgd
360 1.1 cgd if ((int)currpos != -1)
361 1.1 cgd switch (xdrs->x_op) {
362 1.1 cgd
363 1.1 cgd case XDR_ENCODE:
364 1.1 cgd newpos = rstrm->out_finger - delta;
365 1.1 cgd if ((newpos > (caddr_t)(rstrm->frag_header)) &&
366 1.1 cgd (newpos < rstrm->out_boundry)) {
367 1.1 cgd rstrm->out_finger = newpos;
368 1.1 cgd return (TRUE);
369 1.1 cgd }
370 1.1 cgd break;
371 1.1 cgd
372 1.1 cgd case XDR_DECODE:
373 1.1 cgd newpos = rstrm->in_finger - delta;
374 1.1 cgd if ((delta < (int)(rstrm->fbtbc)) &&
375 1.1 cgd (newpos <= rstrm->in_boundry) &&
376 1.1 cgd (newpos >= rstrm->in_base)) {
377 1.1 cgd rstrm->in_finger = newpos;
378 1.1 cgd rstrm->fbtbc -= delta;
379 1.1 cgd return (TRUE);
380 1.1 cgd }
381 1.1 cgd break;
382 1.7 christos
383 1.7 christos case XDR_FREE:
384 1.7 christos break;
385 1.1 cgd }
386 1.1 cgd return (FALSE);
387 1.1 cgd }
388 1.1 cgd
389 1.4 cgd static int32_t *
390 1.1 cgd xdrrec_inline(xdrs, len)
391 1.9 lukem XDR *xdrs;
392 1.9 lukem size_t len;
393 1.1 cgd {
394 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)xdrs->x_private;
395 1.4 cgd int32_t *buf = NULL;
396 1.1 cgd
397 1.1 cgd switch (xdrs->x_op) {
398 1.1 cgd
399 1.1 cgd case XDR_ENCODE:
400 1.1 cgd if ((rstrm->out_finger + len) <= rstrm->out_boundry) {
401 1.4 cgd buf = (int32_t *) rstrm->out_finger;
402 1.1 cgd rstrm->out_finger += len;
403 1.1 cgd }
404 1.1 cgd break;
405 1.1 cgd
406 1.1 cgd case XDR_DECODE:
407 1.1 cgd if ((len <= rstrm->fbtbc) &&
408 1.1 cgd ((rstrm->in_finger + len) <= rstrm->in_boundry)) {
409 1.4 cgd buf = (int32_t *) rstrm->in_finger;
410 1.1 cgd rstrm->fbtbc -= len;
411 1.1 cgd rstrm->in_finger += len;
412 1.1 cgd }
413 1.7 christos break;
414 1.7 christos
415 1.7 christos case XDR_FREE:
416 1.1 cgd break;
417 1.1 cgd }
418 1.1 cgd return (buf);
419 1.1 cgd }
420 1.1 cgd
421 1.1 cgd static void
422 1.1 cgd xdrrec_destroy(xdrs)
423 1.9 lukem XDR *xdrs;
424 1.1 cgd {
425 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)xdrs->x_private;
426 1.1 cgd
427 1.1 cgd mem_free(rstrm->the_buffer,
428 1.1 cgd rstrm->sendsize + rstrm->recvsize + BYTES_PER_XDR_UNIT);
429 1.9 lukem mem_free(rstrm, sizeof(RECSTREAM));
430 1.1 cgd }
431 1.1 cgd
432 1.1 cgd
433 1.1 cgd /*
434 1.1 cgd * Exported routines to manage xdr records
435 1.1 cgd */
436 1.1 cgd
437 1.1 cgd /*
438 1.1 cgd * Before reading (deserializing from the stream, one should always call
439 1.1 cgd * this procedure to guarantee proper record alignment.
440 1.1 cgd */
441 1.1 cgd bool_t
442 1.1 cgd xdrrec_skiprecord(xdrs)
443 1.1 cgd XDR *xdrs;
444 1.1 cgd {
445 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
446 1.1 cgd
447 1.1 cgd while (rstrm->fbtbc > 0 || (! rstrm->last_frag)) {
448 1.1 cgd if (! skip_input_bytes(rstrm, rstrm->fbtbc))
449 1.1 cgd return (FALSE);
450 1.1 cgd rstrm->fbtbc = 0;
451 1.1 cgd if ((! rstrm->last_frag) && (! set_input_fragment(rstrm)))
452 1.1 cgd return (FALSE);
453 1.1 cgd }
454 1.1 cgd rstrm->last_frag = FALSE;
455 1.1 cgd return (TRUE);
456 1.1 cgd }
457 1.1 cgd
458 1.1 cgd /*
459 1.1 cgd * Look ahead fuction.
460 1.1 cgd * Returns TRUE iff there is no more input in the buffer
461 1.1 cgd * after consuming the rest of the current record.
462 1.1 cgd */
463 1.1 cgd bool_t
464 1.1 cgd xdrrec_eof(xdrs)
465 1.1 cgd XDR *xdrs;
466 1.1 cgd {
467 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
468 1.1 cgd
469 1.1 cgd while (rstrm->fbtbc > 0 || (! rstrm->last_frag)) {
470 1.1 cgd if (! skip_input_bytes(rstrm, rstrm->fbtbc))
471 1.1 cgd return (TRUE);
472 1.1 cgd rstrm->fbtbc = 0;
473 1.1 cgd if ((! rstrm->last_frag) && (! set_input_fragment(rstrm)))
474 1.1 cgd return (TRUE);
475 1.1 cgd }
476 1.1 cgd if (rstrm->in_finger == rstrm->in_boundry)
477 1.1 cgd return (TRUE);
478 1.1 cgd return (FALSE);
479 1.1 cgd }
480 1.1 cgd
481 1.1 cgd /*
482 1.1 cgd * The client must tell the package when an end-of-record has occurred.
483 1.1 cgd * The second paraemters tells whether the record should be flushed to the
484 1.1 cgd * (output) tcp stream. (This let's the package support batched or
485 1.1 cgd * pipelined procedure calls.) TRUE => immmediate flush to tcp connection.
486 1.1 cgd */
487 1.1 cgd bool_t
488 1.1 cgd xdrrec_endofrecord(xdrs, sendnow)
489 1.1 cgd XDR *xdrs;
490 1.1 cgd bool_t sendnow;
491 1.1 cgd {
492 1.9 lukem RECSTREAM *rstrm = (RECSTREAM *)(xdrs->x_private);
493 1.9 lukem u_int32_t len; /* fragment length */
494 1.1 cgd
495 1.1 cgd if (sendnow || rstrm->frag_sent ||
496 1.9 lukem ((u_int32_t)rstrm->out_finger + sizeof(u_int32_t) >=
497 1.9 lukem (u_int32_t)rstrm->out_boundry)) {
498 1.1 cgd rstrm->frag_sent = FALSE;
499 1.1 cgd return (flush_out(rstrm, TRUE));
500 1.1 cgd }
501 1.9 lukem len = (u_int32_t)(rstrm->out_finger) - (u_long)(rstrm->frag_header) -
502 1.4 cgd sizeof(u_int32_t);
503 1.9 lukem *(rstrm->frag_header) = htonl((u_int32_t)len | LAST_FRAG);
504 1.4 cgd rstrm->frag_header = (u_int32_t *)rstrm->out_finger;
505 1.4 cgd rstrm->out_finger += sizeof(u_int32_t);
506 1.1 cgd return (TRUE);
507 1.1 cgd }
508 1.1 cgd
509 1.1 cgd
510 1.1 cgd /*
511 1.1 cgd * Internal useful routines
512 1.1 cgd */
513 1.1 cgd static bool_t
514 1.1 cgd flush_out(rstrm, eor)
515 1.9 lukem RECSTREAM *rstrm;
516 1.1 cgd bool_t eor;
517 1.1 cgd {
518 1.9 lukem u_int32_t eormask = (eor == TRUE) ? LAST_FRAG : 0;
519 1.9 lukem u_int32_t len = (u_long)(rstrm->out_finger) -
520 1.4 cgd (u_long)(rstrm->frag_header) - sizeof(u_int32_t);
521 1.1 cgd
522 1.1 cgd *(rstrm->frag_header) = htonl(len | eormask);
523 1.1 cgd len = (u_long)(rstrm->out_finger) - (u_long)(rstrm->out_base);
524 1.1 cgd if ((*(rstrm->writeit))(rstrm->tcp_handle, rstrm->out_base, (int)len)
525 1.1 cgd != (int)len)
526 1.1 cgd return (FALSE);
527 1.4 cgd rstrm->frag_header = (u_int32_t *)rstrm->out_base;
528 1.4 cgd rstrm->out_finger = (caddr_t)rstrm->out_base + sizeof(u_int32_t);
529 1.1 cgd return (TRUE);
530 1.1 cgd }
531 1.1 cgd
532 1.1 cgd static bool_t /* knows nothing about records! Only about input buffers */
533 1.1 cgd fill_input_buf(rstrm)
534 1.9 lukem RECSTREAM *rstrm;
535 1.1 cgd {
536 1.9 lukem caddr_t where;
537 1.9 lukem u_int32_t i;
538 1.9 lukem long len;
539 1.1 cgd
540 1.1 cgd where = rstrm->in_base;
541 1.9 lukem i = (u_int32_t)rstrm->in_boundry % BYTES_PER_XDR_UNIT;
542 1.1 cgd where += i;
543 1.1 cgd len = rstrm->in_size - i;
544 1.1 cgd if ((len = (*(rstrm->readit))(rstrm->tcp_handle, where, len)) == -1)
545 1.1 cgd return (FALSE);
546 1.1 cgd rstrm->in_finger = where;
547 1.1 cgd where += len;
548 1.1 cgd rstrm->in_boundry = where;
549 1.1 cgd return (TRUE);
550 1.1 cgd }
551 1.1 cgd
552 1.1 cgd static bool_t /* knows nothing about records! Only about input buffers */
553 1.1 cgd get_input_bytes(rstrm, addr, len)
554 1.9 lukem RECSTREAM *rstrm;
555 1.9 lukem caddr_t addr;
556 1.9 lukem int len;
557 1.1 cgd {
558 1.9 lukem long current;
559 1.1 cgd
560 1.1 cgd while (len > 0) {
561 1.4 cgd current = (long)rstrm->in_boundry - (long)rstrm->in_finger;
562 1.1 cgd if (current == 0) {
563 1.1 cgd if (! fill_input_buf(rstrm))
564 1.1 cgd return (FALSE);
565 1.1 cgd continue;
566 1.1 cgd }
567 1.1 cgd current = (len < current) ? len : current;
568 1.9 lukem memmove(addr, rstrm->in_finger, current);
569 1.1 cgd rstrm->in_finger += current;
570 1.1 cgd addr += current;
571 1.1 cgd len -= current;
572 1.1 cgd }
573 1.1 cgd return (TRUE);
574 1.1 cgd }
575 1.1 cgd
576 1.1 cgd static bool_t /* next two bytes of the input stream are treated as a header */
577 1.1 cgd set_input_fragment(rstrm)
578 1.9 lukem RECSTREAM *rstrm;
579 1.1 cgd {
580 1.4 cgd u_int32_t header;
581 1.1 cgd
582 1.1 cgd if (! get_input_bytes(rstrm, (caddr_t)&header, sizeof(header)))
583 1.1 cgd return (FALSE);
584 1.1 cgd header = (long)ntohl(header);
585 1.1 cgd rstrm->last_frag = ((header & LAST_FRAG) == 0) ? FALSE : TRUE;
586 1.1 cgd rstrm->fbtbc = header & (~LAST_FRAG);
587 1.1 cgd return (TRUE);
588 1.1 cgd }
589 1.1 cgd
590 1.1 cgd static bool_t /* consumes input bytes; knows nothing about records! */
591 1.1 cgd skip_input_bytes(rstrm, cnt)
592 1.9 lukem RECSTREAM *rstrm;
593 1.9 lukem int32_t cnt;
594 1.1 cgd {
595 1.9 lukem int32_t current;
596 1.1 cgd
597 1.1 cgd while (cnt > 0) {
598 1.9 lukem current = (size_t)rstrm->in_boundry - (size_t)rstrm->in_finger;
599 1.1 cgd if (current == 0) {
600 1.1 cgd if (! fill_input_buf(rstrm))
601 1.1 cgd return (FALSE);
602 1.1 cgd continue;
603 1.1 cgd }
604 1.1 cgd current = (cnt < current) ? cnt : current;
605 1.1 cgd rstrm->in_finger += current;
606 1.1 cgd cnt -= current;
607 1.1 cgd }
608 1.1 cgd return (TRUE);
609 1.1 cgd }
610 1.1 cgd
611 1.9 lukem static size_t
612 1.1 cgd fix_buf_size(s)
613 1.9 lukem size_t s;
614 1.1 cgd {
615 1.1 cgd
616 1.1 cgd if (s < 100)
617 1.1 cgd s = 4000;
618 1.1 cgd return (RNDUP(s));
619 1.1 cgd }
620