2 * Copyright (C) 1996 Paul Mackerras.
4 #include <linux/string.h>
5 #include <asm/machdep.h>
8 #include <linux/kernel.h>
9 #include <linux/errno.h>
10 #include <linux/sysrq.h>
11 #include <linux/bitops.h>
13 #include <asm/errno.h>
14 #include <asm/processor.h>
15 #include <asm/delay.h>
16 #include <asm/btext.h>
17 #include <asm/ibm4xx.h>
19 static volatile unsigned char *sccc
, *sccd
;
20 unsigned int TXRDY
, RXRDY
, DLAB
;
21 static int xmon_expect(const char *str
, unsigned int timeout
);
25 #define TB_SPEED 25000000
27 static inline unsigned int readtb(void)
31 asm volatile("mftb %0" : "=r" (ret
) :);
38 sccd
[3] &= ~DLAB
; /* reset DLAB */
42 #ifdef CONFIG_MAGIC_SYSRQ
43 static void sysrq_handle_xmon(int key
, struct pt_regs
*regs
,
44 struct tty_struct
*tty
)
49 static struct sysrq_key_op sysrq_xmon_op
=
51 .handler
= sysrq_handle_xmon
,
53 .action_msg
= "Entering xmon",
60 #if defined(CONFIG_405GP)
61 sccd
= (volatile unsigned char *)0xef600300;
62 #elif defined(CONFIG_440EP)
63 sccd
= (volatile unsigned char *) ioremap(PPC440EP_UART0_ADDR
, 8);
64 #elif defined(CONFIG_440SP)
65 sccd
= (volatile unsigned char *) ioremap64(PPC440SP_UART0_ADDR
, 8);
66 #elif defined(CONFIG_440SPE)
67 sccd
= (volatile unsigned char *) ioremap64(PPC440SPE_UART0_ADDR
, 8);
68 #elif defined(CONFIG_44x)
69 /* This is the default for 44x platforms. Any boards that have a
70 different UART address need to be put in cases before this or the
71 port will be mapped incorrectly */
72 sccd
= (volatile unsigned char *) ioremap64(PPC440GP_UART0_ADDR
, 8);
75 #ifndef CONFIG_PPC_PREP
82 register_sysrq_key('x', &sysrq_xmon_op
);
85 static int scc_initialized
;
87 void xmon_init_scc(void);
90 xmon_write(void *handle
, void *ptr
, int nb
)
96 static unsigned long xmon_write_lock
;
97 int lock_wait
= 1000000;
100 while ((locked
= test_and_set_bit(0, &xmon_write_lock
)) != 0)
101 if (--lock_wait
== 0)
105 if (!scc_initialized
)
108 for (i
= 0; i
< nb
; ++i
) {
109 while ((*sccc
& TXRDY
) == 0)
112 if (c
== '\n' && !ct
) {
126 clear_bit(0, &xmon_write_lock
);
135 xmon_read(void *handle
, void *ptr
, int nb
)
140 if (!scc_initialized
)
142 for (i
= 0; i
< nb
; ++i
) {
143 while ((*sccc
& RXRDY
) == 0)
154 if ((*sccc
& RXRDY
) == 0) {
168 xmon_write(NULL
, "ATE1V1\r", 7);
169 if (xmon_expect("OK", 5)) {
170 xmon_write(NULL
, "ATA\r", 4);
171 if (xmon_expect("CONNECT", 40))
174 xmon_write(NULL
, "+++", 3);
175 xmon_expect("OK", 3);
192 xmon_putc(int c
, void *f
)
198 return xmon_write(f
, &ch
, 1) == 1? c
: -1;
204 return xmon_putc(c
, xmon_stdout
);
208 xmon_fputs(char *str
, void *f
)
212 return xmon_write(f
, str
, n
) == n
? 0: -1;
221 switch (xmon_read(xmon_stdin
, &ch
, 1)) {
225 xmon_printf("read(stdin) returned -1\r\n", 0, 0);
231 static char line
[256];
232 static char *lineptr
;
235 int xmon_expect(const char *str
, unsigned int timeout
)
245 c
= xmon_read_poll();
247 if (readtb() - t0
> timeout
)
253 if (c
!= '\r' && lineptr
< &line
[sizeof(line
) - 1])
257 } while (strstr(line
, str
) == NULL
);
270 if (c
== -1 || c
== 4)
272 if (c
== '\r' || c
== '\n') {
280 if (lineptr
> line
) {
288 while (lineptr
> line
) {
296 if (lineptr
>= &line
[sizeof(line
) - 1])
304 lineleft
= lineptr
- line
;
314 xmon_fgets(char *str
, int nb
, void *f
)
319 for (p
= str
; p
< str
+ nb
- 1; ) {