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authorLinus Torvalds <torvalds@ppc970.osdl.org>2005-04-16 18:20:36 -0400
committerLinus Torvalds <torvalds@ppc970.osdl.org>2005-04-16 18:20:36 -0400
commit1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 (patch)
tree0bba044c4ce775e45a88a51686b5d9f90697ea9d /include/asm-m68knommu/mcfsmc.h
Linux-2.6.12-rc2v2.6.12-rc2
Initial git repository build. I'm not bothering with the full history, even though we have it. We can create a separate "historical" git archive of that later if we want to, and in the meantime it's about 3.2GB when imported into git - space that would just make the early git days unnecessarily complicated, when we don't have a lot of good infrastructure for it. Let it rip!
Diffstat (limited to 'include/asm-m68knommu/mcfsmc.h')
-rw-r--r--include/asm-m68knommu/mcfsmc.h188
1 files changed, 188 insertions, 0 deletions
diff --git a/include/asm-m68knommu/mcfsmc.h b/include/asm-m68knommu/mcfsmc.h
new file mode 100644
index 000000000000..2583900b9591
--- /dev/null
+++ b/include/asm-m68knommu/mcfsmc.h
@@ -0,0 +1,188 @@
1/****************************************************************************/
2
3/*
4 * mcfsmc.h -- SMC ethernet support for ColdFire environments.
5 *
6 * (C) Copyright 1999-2002, Greg Ungerer (gerg@snapgear.com)
7 * (C) Copyright 2000, Lineo Inc. (www.lineo.com)
8 */
9
10/****************************************************************************/
11#ifndef mcfsmc_h
12#define mcfsmc_h
13/****************************************************************************/
14
15/*
16 * None of the current ColdFire targets that use the SMC91x111
17 * allow 8 bit accesses. So this code is 16bit access only.
18 */
19
20#include <linux/config.h>
21
22#undef outb
23#undef inb
24#undef outw
25#undef outwd
26#undef inw
27#undef outl
28#undef inl
29
30#undef outsb
31#undef outsw
32#undef outsl
33#undef insb
34#undef insw
35#undef insl
36
37/*
38 * Re-defines for ColdFire environment... The SMC part is
39 * mapped into memory space, so remap the PC-style in/out
40 * routines to handle that.
41 */
42#define outb smc_outb
43#define inb smc_inb
44#define outw smc_outw
45#define outwd smc_outwd
46#define inw smc_inw
47#define outl smc_outl
48#define inl smc_inl
49
50#define outsb smc_outsb
51#define outsw smc_outsw
52#define outsl smc_outsl
53#define insb smc_insb
54#define insw smc_insw
55#define insl smc_insl
56
57
58static inline int smc_inb(unsigned int addr)
59{
60 register unsigned short w;
61 w = *((volatile unsigned short *) (addr & ~0x1));
62 return(((addr & 0x1) ? w : (w >> 8)) & 0xff);
63}
64
65static inline void smc_outw(unsigned int val, unsigned int addr)
66{
67 *((volatile unsigned short *) addr) = (val << 8) | (val >> 8);
68}
69
70static inline int smc_inw(unsigned int addr)
71{
72 register unsigned short w;
73 w = *((volatile unsigned short *) addr);
74 return(((w << 8) | (w >> 8)) & 0xffff);
75}
76
77static inline void smc_outl(unsigned long val, unsigned int addr)
78{
79 *((volatile unsigned long *) addr) =
80 ((val << 8) & 0xff000000) | ((val >> 8) & 0x00ff0000) |
81 ((val << 8) & 0x0000ff00) | ((val >> 8) & 0x000000ff);
82}
83
84static inline void smc_outwd(unsigned int val, unsigned int addr)
85{
86 *((volatile unsigned short *) addr) = val;
87}
88
89
90/*
91 * The rep* functions are used to feed the data port with
92 * raw data. So we do not byte swap them when copying.
93 */
94
95static inline void smc_insb(unsigned int addr, void *vbuf, int unsigned long len)
96{
97 volatile unsigned short *rp;
98 unsigned short *buf, *ebuf;
99
100 buf = (unsigned short *) vbuf;
101 rp = (volatile unsigned short *) addr;
102
103 /* Copy as words for as long as possible */
104 for (ebuf = buf + (len >> 1); (buf < ebuf); )
105 *buf++ = *rp;
106
107 /* Lastly, handle left over byte */
108 if (len & 0x1)
109 *((unsigned char *) buf) = (*rp >> 8) & 0xff;
110}
111
112static inline void smc_insw(unsigned int addr, void *vbuf, unsigned long len)
113{
114 volatile unsigned short *rp;
115 unsigned short *buf, *ebuf;
116
117 buf = (unsigned short *) vbuf;
118 rp = (volatile unsigned short *) addr;
119 for (ebuf = buf + len; (buf < ebuf); )
120 *buf++ = *rp;
121}
122
123static inline void smc_insl(unsigned int addr, void *vbuf, unsigned long len)
124{
125 volatile unsigned long *rp;
126 unsigned long *buf, *ebuf;
127
128 buf = (unsigned long *) vbuf;
129 rp = (volatile unsigned long *) addr;
130 for (ebuf = buf + len; (buf < ebuf); )
131 *buf++ = *rp;
132}
133
134static inline void smc_outsw(unsigned int addr, const void *vbuf, unsigned long len)
135{
136 volatile unsigned short *rp;
137 unsigned short *buf, *ebuf;
138
139 buf = (unsigned short *) vbuf;
140 rp = (volatile unsigned short *) addr;
141 for (ebuf = buf + len; (buf < ebuf); )
142 *rp = *buf++;
143}
144
145static inline void smc_outsl(unsigned int addr, void *vbuf, unsigned long len)
146{
147 volatile unsigned long *rp;
148 unsigned long *buf, *ebuf;
149
150 buf = (unsigned long *) vbuf;
151 rp = (volatile unsigned long *) addr;
152 for (ebuf = buf + len; (buf < ebuf); )
153 *rp = *buf++;
154}
155
156
157#ifdef CONFIG_NETtel
158/*
159 * Re-map the address space of at least one of the SMC ethernet
160 * parts. Both parts power up decoding the same address, so we
161 * need to move one of them first, before doing enything else.
162 *
163 * We also increase the number of wait states for this part by one.
164 */
165
166void smc_remap(unsigned int ioaddr)
167{
168 static int once = 0;
169 extern unsigned short ppdata;
170 if (once++ == 0) {
171 *((volatile unsigned short *)(MCF_MBAR+MCFSIM_PADDR)) = 0x00ec;
172 ppdata |= 0x0080;
173 *((volatile unsigned short *)(MCF_MBAR+MCFSIM_PADAT)) = ppdata;
174 outw(0x0001, ioaddr + BANK_SELECT);
175 outw(0x0001, ioaddr + BANK_SELECT);
176 outw(0x0067, ioaddr + BASE);
177
178 ppdata &= ~0x0080;
179 *((volatile unsigned short *)(MCF_MBAR+MCFSIM_PADAT)) = ppdata;
180 }
181
182 *((volatile unsigned short *)(MCF_MBAR+MCFSIM_CSCR3)) = 0x1180;
183}
184
185#endif
186
187/****************************************************************************/
188#endif /* mcfsmc_h */