2 * linux/drivers/pcmcia/sa1111_generic.c
4 * We implement the generic parts of a SA1111 PCMCIA driver. This
5 * basically means we handle everything except controlling the
6 * power. Power is machine specific...
8 #include <linux/module.h>
9 #include <linux/kernel.h>
10 #include <linux/ioport.h>
11 #include <linux/device.h>
12 #include <linux/interrupt.h>
13 #include <linux/init.h>
16 #include <pcmcia/ss.h>
18 #include <mach/hardware.h>
19 #include <asm/hardware/sa1111.h>
22 #include "sa1111_generic.h"
24 #define IDX_IRQ_S0_READY_NINT (0)
25 #define IDX_IRQ_S0_CD_VALID (1)
26 #define IDX_IRQ_S0_BVD1_STSCHG (2)
27 #define IDX_IRQ_S1_READY_NINT (3)
28 #define IDX_IRQ_S1_CD_VALID (4)
29 #define IDX_IRQ_S1_BVD1_STSCHG (5)
31 static struct pcmcia_irqs irqs
[] = {
32 { 0, NO_IRQ
, "SA1111 PCMCIA card detect" },
33 { 0, NO_IRQ
, "SA1111 PCMCIA BVD1" },
34 { 1, NO_IRQ
, "SA1111 CF card detect" },
35 { 1, NO_IRQ
, "SA1111 CF BVD1" },
38 static int sa1111_pcmcia_hw_init(struct soc_pcmcia_socket
*skt
)
40 return soc_pcmcia_request_irqs(skt
, irqs
, ARRAY_SIZE(irqs
));
43 static void sa1111_pcmcia_hw_shutdown(struct soc_pcmcia_socket
*skt
)
45 soc_pcmcia_free_irqs(skt
, irqs
, ARRAY_SIZE(irqs
));
48 void sa1111_pcmcia_socket_state(struct soc_pcmcia_socket
*skt
, struct pcmcia_state
*state
)
50 struct sa1111_pcmcia_socket
*s
= to_skt(skt
);
51 unsigned long status
= sa1111_readl(s
->dev
->mapbase
+ SA1111_PCSR
);
55 state
->detect
= status
& PCSR_S0_DETECT
? 0 : 1;
56 state
->ready
= status
& PCSR_S0_READY
? 1 : 0;
57 state
->bvd1
= status
& PCSR_S0_BVD1
? 1 : 0;
58 state
->bvd2
= status
& PCSR_S0_BVD2
? 1 : 0;
59 state
->wrprot
= status
& PCSR_S0_WP
? 1 : 0;
60 state
->vs_3v
= status
& PCSR_S0_VS1
? 0 : 1;
61 state
->vs_Xv
= status
& PCSR_S0_VS2
? 0 : 1;
65 state
->detect
= status
& PCSR_S1_DETECT
? 0 : 1;
66 state
->ready
= status
& PCSR_S1_READY
? 1 : 0;
67 state
->bvd1
= status
& PCSR_S1_BVD1
? 1 : 0;
68 state
->bvd2
= status
& PCSR_S1_BVD2
? 1 : 0;
69 state
->wrprot
= status
& PCSR_S1_WP
? 1 : 0;
70 state
->vs_3v
= status
& PCSR_S1_VS1
? 0 : 1;
71 state
->vs_Xv
= status
& PCSR_S1_VS2
? 0 : 1;
76 int sa1111_pcmcia_configure_socket(struct soc_pcmcia_socket
*skt
, const socket_state_t
*state
)
78 struct sa1111_pcmcia_socket
*s
= to_skt(skt
);
79 unsigned int pccr_skt_mask
, pccr_set_mask
, val
;
84 pccr_skt_mask
= PCCR_S0_RST
|PCCR_S0_FLT
|PCCR_S0_PWAITEN
|PCCR_S0_PSE
;
88 pccr_skt_mask
= PCCR_S1_RST
|PCCR_S1_FLT
|PCCR_S1_PWAITEN
|PCCR_S1_PSE
;
98 pccr_set_mask
|= PCCR_S0_PWAITEN
|PCCR_S1_PWAITEN
;
100 pccr_set_mask
|= PCCR_S0_PSE
|PCCR_S1_PSE
;
101 if (state
->flags
& SS_RESET
)
102 pccr_set_mask
|= PCCR_S0_RST
|PCCR_S1_RST
;
103 if (state
->flags
& SS_OUTPUT_ENA
)
104 pccr_set_mask
|= PCCR_S0_FLT
|PCCR_S1_FLT
;
106 local_irq_save(flags
);
107 val
= sa1111_readl(s
->dev
->mapbase
+ SA1111_PCCR
);
108 val
&= ~pccr_skt_mask
;
109 val
|= pccr_set_mask
& pccr_skt_mask
;
110 sa1111_writel(val
, s
->dev
->mapbase
+ SA1111_PCCR
);
111 local_irq_restore(flags
);
116 void sa1111_pcmcia_socket_init(struct soc_pcmcia_socket
*skt
)
118 soc_pcmcia_enable_irqs(skt
, irqs
, ARRAY_SIZE(irqs
));
121 static void sa1111_pcmcia_socket_suspend(struct soc_pcmcia_socket
*skt
)
123 soc_pcmcia_disable_irqs(skt
, irqs
, ARRAY_SIZE(irqs
));
126 int sa1111_pcmcia_add(struct sa1111_dev
*dev
, struct pcmcia_low_level
*ops
,
127 int (*add
)(struct soc_pcmcia_socket
*))
129 struct sa1111_pcmcia_socket
*s
;
132 ops
->hw_init
= sa1111_pcmcia_hw_init
;
133 ops
->hw_shutdown
= sa1111_pcmcia_hw_shutdown
;
134 ops
->socket_state
= sa1111_pcmcia_socket_state
;
135 ops
->socket_suspend
= sa1111_pcmcia_socket_suspend
;
137 for (i
= 0; i
< ops
->nr
; i
++) {
138 s
= kzalloc(sizeof(*s
), GFP_KERNEL
);
142 s
->soc
.nr
= ops
->first
+ i
;
144 s
->soc
.socket
.owner
= ops
->owner
;
145 s
->soc
.socket
.dev
.parent
= &dev
->dev
;
146 s
->soc
.socket
.pci_irq
= s
->soc
.nr
?
147 dev
->irq
[IDX_IRQ_S0_READY_NINT
] :
148 dev
->irq
[IDX_IRQ_S1_READY_NINT
];
153 s
->next
= dev_get_drvdata(&dev
->dev
);
154 dev_set_drvdata(&dev
->dev
, s
);
162 static int pcmcia_probe(struct sa1111_dev
*dev
)
166 dev_set_drvdata(&dev
->dev
, NULL
);
168 if (!request_mem_region(dev
->res
.start
, 512,
169 SA1111_DRIVER_NAME(dev
)))
174 /* Initialize PCMCIA IRQs */
175 irqs
[0].irq
= dev
->irq
[IDX_IRQ_S0_CD_VALID
];
176 irqs
[1].irq
= dev
->irq
[IDX_IRQ_S0_BVD1_STSCHG
];
177 irqs
[2].irq
= dev
->irq
[IDX_IRQ_S1_CD_VALID
];
178 irqs
[3].irq
= dev
->irq
[IDX_IRQ_S1_BVD1_STSCHG
];
181 * Initialise the suspend state.
183 sa1111_writel(PCSSR_S0_SLEEP
| PCSSR_S1_SLEEP
, base
+ SA1111_PCSSR
);
184 sa1111_writel(PCCR_S0_FLT
| PCCR_S1_FLT
, base
+ SA1111_PCCR
);
186 #ifdef CONFIG_SA1100_BADGE4
187 pcmcia_badge4_init(&dev
->dev
);
189 #ifdef CONFIG_SA1100_JORNADA720
190 pcmcia_jornada720_init(&dev
->dev
);
192 #ifdef CONFIG_ARCH_LUBBOCK
193 pcmcia_lubbock_init(dev
);
195 #ifdef CONFIG_ASSABET_NEPONSET
196 pcmcia_neponset_init(dev
);
201 static int __devexit
pcmcia_remove(struct sa1111_dev
*dev
)
203 struct sa1111_pcmcia_socket
*next
, *s
= dev_get_drvdata(&dev
->dev
);
205 dev_set_drvdata(&dev
->dev
, NULL
);
207 for (; next
= s
->next
, s
; s
= next
) {
208 soc_pcmcia_remove_one(&s
->soc
);
212 release_mem_region(dev
->res
.start
, 512);
216 static int pcmcia_suspend(struct sa1111_dev
*dev
, pm_message_t state
)
218 return pcmcia_socket_dev_suspend(&dev
->dev
);
221 static int pcmcia_resume(struct sa1111_dev
*dev
)
223 return pcmcia_socket_dev_resume(&dev
->dev
);
226 static struct sa1111_driver pcmcia_driver
= {
228 .name
= "sa1111-pcmcia",
230 .devid
= SA1111_DEVID_PCMCIA
,
231 .probe
= pcmcia_probe
,
232 .remove
= __devexit_p(pcmcia_remove
),
233 .suspend
= pcmcia_suspend
,
234 .resume
= pcmcia_resume
,
237 static int __init
sa1111_drv_pcmcia_init(void)
239 return sa1111_driver_register(&pcmcia_driver
);
242 static void __exit
sa1111_drv_pcmcia_exit(void)
244 sa1111_driver_unregister(&pcmcia_driver
);
247 fs_initcall(sa1111_drv_pcmcia_init
);
248 module_exit(sa1111_drv_pcmcia_exit
);
250 MODULE_DESCRIPTION("SA1111 PCMCIA card socket driver");
251 MODULE_LICENSE("GPL");