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[unix-history] / usr / src / sys / kern / subr_prf.c
CommitLineData
68503f9a 1/* subr_prf.c 4.21 82/01/16 */
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2
3#include "../h/param.h"
4#include "../h/systm.h"
5#include "../h/seg.h"
6#include "../h/buf.h"
7#include "../h/conf.h"
96d38f03 8#include "../h/mtpr.h"
0dc06be8 9#include "../h/reboot.h"
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10#include "../h/vm.h"
11#include "../h/msgbuf.h"
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12#include "../h/dir.h"
13#include "../h/user.h"
14#include "../h/tty.h"
96d38f03 15
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16/*
17 * In case console is off,
18 * panicstr contains argument to last
19 * call to panic.
20 */
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21char *panicstr;
22
23/*
24 * Scaled down version of C Library printf.
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25 * Used to print diagnostic information directly on console tty.
26 * Since it is not interrupt driven, all system activities are
27 * suspended. Printf should not be used for chit-chat.
28 *
29 * One additional format: %b is supported to decode error registers.
30 * Usage is:
31 * printf("reg=%b\n", regval, "<base><arg>*");
32 * Where <base> is the output base expressed as a control character,
33 * e.g. \10 gives octal; \20 gives hex. Each arg is a sequence of
34 * characters, the first of which gives the bit number to be inspected
35 * (origin 1), and the next characters (up to a control character, i.e.
36 * a character <= 32), give the name of the register. Thus
37 * printf("reg=%b\n", 3, "\10\2BITTWO\1BITONE\n");
38 * would produce output:
39 * reg=2<BITTWO,BITONE>
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40 */
41/*VARARGS1*/
42printf(fmt, x1)
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43 char *fmt;
44 unsigned x1;
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45{
46
47 prf(fmt, &x1, 0);
48}
49
843267b1 50/*
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51 * Uprintf prints to the current user's terminal,
52 * guarantees not to sleep (so can be called by interrupt routines)
53 * and does no watermark checking - (so no verbose messages).
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54 */
55/*VARARGS1*/
56uprintf(fmt, x1)
b725a0ca 57 char *fmt;
843267b1 58 unsigned x1;
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59{
60
843267b1 61 prf(fmt, &x1, 2);
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62}
63
843267b1 64prf(fmt, adx, touser)
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65 register char *fmt;
66 register u_int *adx;
8cbb423c 67{
d5726689 68 register int b, c, i;
8cbb423c 69 char *s;
3c79e4ff 70 int any;
8cbb423c 71
8cbb423c 72loop:
843267b1 73 while ((c = *fmt++) != '%') {
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74 if(c == '\0')
75 return;
843267b1 76 putchar(c, touser);
8cbb423c 77 }
843267b1 78again:
8cbb423c 79 c = *fmt++;
b725a0ca 80 /* THIS CODE IS VAX DEPENDENT IN HANDLING %l? AND %c */
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81 switch (c) {
82
83 case 'l':
84 goto again;
85 case 'x': case 'X':
86 b = 16;
87 goto number;
88 case 'd': case 'D':
89 case 'u': /* what a joke */
90 b = 10;
91 goto number;
92 case 'o': case 'O':
93 b = 8;
94number:
a0eab615 95 printn((u_long)*adx, b, touser);
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96 break;
97 case 'c':
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98 b = *adx;
99 for (i = 24; i >= 0; i -= 8)
100 if (c = (b >> i) & 0x7f)
101 putchar(c, touser);
843267b1 102 break;
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103 case 'b':
104 b = *adx++;
105 s = (char *)*adx;
a0eab615 106 printn((u_long)b, *s++, touser);
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107 any = 0;
108 if (b) {
109 putchar('<', touser);
110 while (i = *s++) {
111 if (b & (1 << (i-1))) {
112 if (any)
113 putchar(',', touser);
114 any = 1;
115 for (; (c = *s) > 32; s++)
116 putchar(c, touser);
117 } else
118 for (; *s > 32; s++)
119 ;
120 }
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121 if (any)
122 putchar('>', touser);
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123 }
124 break;
125
843267b1 126 case 's':
8cbb423c 127 s = (char *)*adx;
96d38f03 128 while (c = *s++)
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129 putchar(c, touser);
130 break;
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131
132 case '%':
133 putchar('%', touser);
134 break;
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135 }
136 adx++;
137 goto loop;
138}
139
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140/*
141 * Printn prints a number n in base b.
142 * We don't use recursion to avoid deep kernel stacks.
143 */
843267b1 144printn(n, b, touser)
a0eab615 145 u_long n;
8cbb423c 146{
d5726689 147 char prbuf[11];
843267b1 148 register char *cp;
8cbb423c 149
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150 if (b == 10 && (int)n < 0) {
151 putchar('-', touser);
152 n = (unsigned)(-(int)n);
8cbb423c 153 }
d5726689 154 cp = prbuf;
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155 do {
156 *cp++ = "0123456789abcdef"[n%b];
157 n /= b;
158 } while (n);
159 do
160 putchar(*--cp, touser);
d5726689 161 while (cp > prbuf);
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162}
163
164/*
0dc06be8 165 * Panic is called on unresolvable fatal errors.
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166 * It prints "panic: mesg", and then reboots.
167 * If we are called twice, then we avoid trying to
168 * sync the disks as this often leads to recursive panics.
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169 */
170panic(s)
b725a0ca 171 char *s;
8cbb423c 172{
68503f9a 173 int bootopt = RB_AUTOBOOT;
843267b1 174
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175 if (panicstr)
176 bootopt |= RB_NOSYNC;
8cbb423c 177 panicstr = s;
a9c526c1 178 printf("panic: %s\n", s);
b725a0ca 179 boot(RB_PANIC, bootopt);
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180}
181
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182/*
183 * Warn that a system table is full.
184 */
185tablefull(tab)
186 char *tab;
187{
188
189 printf("%s: table is full\n", tab);
190}
191
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192/*
193 * Hard error is the preface to plaintive error messages
fdd11a14 194 * about failing disk transfers.
b725a0ca 195 */
fdd11a14 196harderr(bp, cp)
3c79e4ff 197 struct buf *bp;
fdd11a14 198 char *cp;
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199{
200
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201 printf("%s%d%c: hard error sn%d ", cp,
202 dkunit(bp), 'a'+(minor(bp->b_dev)&07), bp->b_blkno);
8cbb423c 203}
b725a0ca 204
96d38f03 205/*
843267b1 206 * Print a character on console or users terminal.
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207 * If destination is console then the last MSGBUFS characters
208 * are saved in msgbuf for inspection later.
209 */
49c84d3f 210/*ARGSUSED*/
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211putchar(c, touser)
212 register int c;
96d38f03 213{
96d38f03 214
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215 if (touser) {
216 register struct tty *tp = u.u_ttyp;
d11b28dc 217
c30cd845 218 if (tp && (tp->t_state&TS_CARR_ON)) {
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219 register s = spl6();
220 if (c == '\n')
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221 (void) ttyoutput('\r', tp);
222 (void) ttyoutput(c, tp);
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223 ttstart(tp);
224 splx(s);
225 }
226 return;
227 }
cf19cacc 228 if (c != '\0' && c != '\r' && c != 0177 && mfpr(MAPEN)) {
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229 if (msgbuf.msg_magic != MSG_MAGIC) {
230 msgbuf.msg_bufx = 0;
231 msgbuf.msg_magic = MSG_MAGIC;
232 }
233 if (msgbuf.msg_bufx < 0 || msgbuf.msg_bufx >= MSG_BSIZE)
234 msgbuf.msg_bufx = 0;
235 msgbuf.msg_bufc[msgbuf.msg_bufx++] = c;
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236 }
237 if (c == 0)
238 return;
239 cnputc(c);
240}