1 /* central.c: Central FHC driver for Sunfire/Starfire/Wildfire.
3 * Copyright (C) 1997, 1999, 2008 David S. Miller (davem@davemloft.net)
6 #include <linux/kernel.h>
7 #include <linux/types.h>
8 #include <linux/string.h>
9 #include <linux/init.h>
10 #include <linux/of_device.h>
11 #include <linux/platform_device.h>
17 void __iomem
*clock_freq_regs
;
18 void __iomem
*clock_regs
;
19 void __iomem
*clock_ver_reg
;
21 struct resource leds_resource
;
22 struct platform_device leds_pdev
;
30 struct resource leds_resource
;
31 struct platform_device leds_pdev
;
34 static int __devinit
clock_board_calc_nslots(struct clock_board
*p
)
36 u8 reg
= upa_readb(p
->clock_regs
+ CLOCK_STAT1
) & 0xc0;
48 reg
= upa_readb(p
->clock_ver_reg
);
61 static int __devinit
clock_board_probe(struct of_device
*op
,
62 const struct of_device_id
*match
)
64 struct clock_board
*p
= kzalloc(sizeof(*p
), GFP_KERNEL
);
68 printk(KERN_ERR
"clock_board: Cannot allocate struct clock_board\n");
72 p
->clock_freq_regs
= of_ioremap(&op
->resource
[0], 0,
73 resource_size(&op
->resource
[0]),
75 if (!p
->clock_freq_regs
) {
76 printk(KERN_ERR
"clock_board: Cannot map clock_freq_regs\n");
80 p
->clock_regs
= of_ioremap(&op
->resource
[1], 0,
81 resource_size(&op
->resource
[1]),
84 printk(KERN_ERR
"clock_board: Cannot map clock_regs\n");
85 goto out_unmap_clock_freq_regs
;
88 if (op
->resource
[2].flags
) {
89 p
->clock_ver_reg
= of_ioremap(&op
->resource
[2], 0,
90 resource_size(&op
->resource
[2]),
92 if (!p
->clock_ver_reg
) {
93 printk(KERN_ERR
"clock_board: Cannot map clock_ver_reg\n");
94 goto out_unmap_clock_regs
;
98 p
->num_slots
= clock_board_calc_nslots(p
);
100 p
->leds_resource
.start
= (unsigned long)
101 (p
->clock_regs
+ CLOCK_CTRL
);
102 p
->leds_resource
.end
= p
->leds_resource
.end
;
103 p
->leds_resource
.name
= "leds";
105 p
->leds_pdev
.name
= "sunfire-clockboard-leds";
106 p
->leds_pdev
.resource
= &p
->leds_resource
;
107 p
->leds_pdev
.num_resources
= 1;
108 p
->leds_pdev
.dev
.parent
= &op
->dev
;
110 err
= platform_device_register(&p
->leds_pdev
);
112 printk(KERN_ERR
"clock_board: Could not register LEDS "
113 "platform device\n");
114 goto out_unmap_clock_ver_reg
;
117 printk(KERN_INFO
"clock_board: Detected %d slot Enterprise system.\n",
124 out_unmap_clock_ver_reg
:
125 if (p
->clock_ver_reg
)
126 of_iounmap(&op
->resource
[2], p
->clock_ver_reg
,
127 resource_size(&op
->resource
[2]));
129 out_unmap_clock_regs
:
130 of_iounmap(&op
->resource
[1], p
->clock_regs
,
131 resource_size(&op
->resource
[1]));
133 out_unmap_clock_freq_regs
:
134 of_iounmap(&op
->resource
[0], p
->clock_freq_regs
,
135 resource_size(&op
->resource
[0]));
142 static struct of_device_id __initdata clock_board_match
[] = {
144 .name
= "clock-board",
149 static struct of_platform_driver clock_board_driver
= {
150 .match_table
= clock_board_match
,
151 .probe
= clock_board_probe
,
153 .name
= "clock_board",
157 static int __devinit
fhc_probe(struct of_device
*op
,
158 const struct of_device_id
*match
)
160 struct fhc
*p
= kzalloc(sizeof(*p
), GFP_KERNEL
);
165 printk(KERN_ERR
"fhc: Cannot allocate struct fhc\n");
169 if (!strcmp(op
->node
->parent
->name
, "central"))
172 p
->pregs
= of_ioremap(&op
->resource
[0], 0,
173 resource_size(&op
->resource
[0]),
176 printk(KERN_ERR
"fhc: Cannot map pregs\n");
181 reg
= upa_readl(p
->pregs
+ FHC_PREGS_BSR
);
182 p
->board_num
= ((reg
>> 16) & 1) | ((reg
>> 12) & 0x0e);
184 p
->board_num
= of_getintprop_default(op
->node
, "board#", -1);
185 if (p
->board_num
== -1) {
186 printk(KERN_ERR
"fhc: No board# property\n");
187 goto out_unmap_pregs
;
189 if (upa_readl(p
->pregs
+ FHC_PREGS_JCTRL
) & FHC_JTAG_CTRL_MENAB
)
190 p
->jtag_master
= true;
194 p
->leds_resource
.start
= (unsigned long)
195 (p
->pregs
+ FHC_PREGS_CTRL
);
196 p
->leds_resource
.end
= p
->leds_resource
.end
;
197 p
->leds_resource
.name
= "leds";
199 p
->leds_pdev
.name
= "sunfire-fhc-leds";
200 p
->leds_pdev
.resource
= &p
->leds_resource
;
201 p
->leds_pdev
.num_resources
= 1;
202 p
->leds_pdev
.dev
.parent
= &op
->dev
;
204 err
= platform_device_register(&p
->leds_pdev
);
206 printk(KERN_ERR
"fhc: Could not register LEDS "
207 "platform device\n");
208 goto out_unmap_pregs
;
211 reg
= upa_readl(p
->pregs
+ FHC_PREGS_CTRL
);
214 reg
|= FHC_CONTROL_IXIST
;
216 reg
&= ~(FHC_CONTROL_AOFF
|
220 upa_writel(reg
, p
->pregs
+ FHC_PREGS_CTRL
);
221 upa_readl(p
->pregs
+ FHC_PREGS_CTRL
);
223 reg
= upa_readl(p
->pregs
+ FHC_PREGS_ID
);
224 printk(KERN_INFO
"fhc: Board #%d, Version[%x] PartID[%x] Manuf[%x] %s\n",
226 (reg
& FHC_ID_VERS
) >> 28,
227 (reg
& FHC_ID_PARTID
) >> 12,
228 (reg
& FHC_ID_MANUF
) >> 1,
231 (p
->central
? "(Central)" : "")));
239 of_iounmap(&op
->resource
[0], p
->pregs
, resource_size(&op
->resource
[0]));
246 static struct of_device_id __initdata fhc_match
[] = {
253 static struct of_platform_driver fhc_driver
= {
254 .match_table
= fhc_match
,
261 static int __init
sunfire_init(void)
263 (void) of_register_driver(&fhc_driver
, &of_platform_bus_type
);
264 (void) of_register_driver(&clock_board_driver
, &of_platform_bus_type
);
268 subsys_initcall(sunfire_init
);