1 /* sercos3: UIO driver for the Automata Sercos III PCI card
3 Copyright (C) 2008 Linutronix GmbH
4 Author: John Ogness <john.ogness@linutronix.de>
6 This is a straight-forward UIO driver, where interrupts are disabled
7 by the interrupt handler and re-enabled via a write to the UIO device
10 The only part that may seem odd is the use of a logical OR when
11 storing and restoring enabled interrupts. This is done because the
12 userspace-part could directly modify the Interrupt Enable Register
13 at any time. To reduce possible conflicts, the kernel driver uses
14 a logical OR to make more controlled changes (rather than blindly
15 overwriting previous values).
17 Race conditions exist if the userspace-part directly modifies the
18 Interrupt Enable Register while in operation. The consequences are
19 that certain interrupts would fail to be enabled or disabled. For
20 this reason, the userspace-part should only directly modify the
21 Interrupt Enable Register at the beginning (to get things going).
22 The userspace-part can safely disable interrupts at any time using
23 a write to the UIO device.
26 #include <linux/device.h>
27 #include <linux/module.h>
28 #include <linux/pci.h>
29 #include <linux/uio_driver.h>
32 /* ID's for SERCOS III PCI card (PLX 9030) */
33 #define SERCOS_SUB_VENDOR_ID 0x1971
34 #define SERCOS_SUB_SYSID_3530 0x3530
35 #define SERCOS_SUB_SYSID_3535 0x3535
36 #define SERCOS_SUB_SYSID_3780 0x3780
38 /* Interrupt Enable Register */
39 #define IER0_OFFSET 0x08
41 /* Interrupt Status Register */
42 #define ISR0_OFFSET 0x18
46 spinlock_t ier0_cache_lock
;
49 /* this function assumes ier0_cache_lock is locked! */
50 static void sercos3_disable_interrupts(struct uio_info
*info
,
51 struct sercos3_priv
*priv
)
53 void __iomem
*ier0
= info
->mem
[3].internal_addr
+ IER0_OFFSET
;
55 /* add enabled interrupts to cache */
56 priv
->ier0_cache
|= ioread32(ier0
);
58 /* disable interrupts */
62 /* this function assumes ier0_cache_lock is locked! */
63 static void sercos3_enable_interrupts(struct uio_info
*info
,
64 struct sercos3_priv
*priv
)
66 void __iomem
*ier0
= info
->mem
[3].internal_addr
+ IER0_OFFSET
;
68 /* restore previously enabled interrupts */
69 iowrite32(ioread32(ier0
) | priv
->ier0_cache
, ier0
);
73 static irqreturn_t
sercos3_handler(int irq
, struct uio_info
*info
)
75 struct sercos3_priv
*priv
= info
->priv
;
76 void __iomem
*isr0
= info
->mem
[3].internal_addr
+ ISR0_OFFSET
;
77 void __iomem
*ier0
= info
->mem
[3].internal_addr
+ IER0_OFFSET
;
79 if (!(ioread32(isr0
) & ioread32(ier0
)))
82 spin_lock(&priv
->ier0_cache_lock
);
83 sercos3_disable_interrupts(info
, priv
);
84 spin_unlock(&priv
->ier0_cache_lock
);
89 static int sercos3_irqcontrol(struct uio_info
*info
, s32 irq_on
)
91 struct sercos3_priv
*priv
= info
->priv
;
93 spin_lock_irq(&priv
->ier0_cache_lock
);
95 sercos3_enable_interrupts(info
, priv
);
97 sercos3_disable_interrupts(info
, priv
);
98 spin_unlock_irq(&priv
->ier0_cache_lock
);
103 static int sercos3_setup_iomem(struct pci_dev
*dev
, struct uio_info
*info
,
106 info
->mem
[n
].addr
= pci_resource_start(dev
, pci_bar
);
107 if (!info
->mem
[n
].addr
)
109 info
->mem
[n
].internal_addr
= ioremap(pci_resource_start(dev
, pci_bar
),
110 pci_resource_len(dev
, pci_bar
));
111 if (!info
->mem
[n
].internal_addr
)
113 info
->mem
[n
].size
= pci_resource_len(dev
, pci_bar
);
114 info
->mem
[n
].memtype
= UIO_MEM_PHYS
;
118 static int __devinit
sercos3_pci_probe(struct pci_dev
*dev
,
119 const struct pci_device_id
*id
)
121 struct uio_info
*info
;
122 struct sercos3_priv
*priv
;
125 info
= kzalloc(sizeof(struct uio_info
), GFP_KERNEL
);
129 priv
= kzalloc(sizeof(struct sercos3_priv
), GFP_KERNEL
);
133 if (pci_enable_device(dev
))
136 if (pci_request_regions(dev
, "sercos3"))
139 /* we only need PCI BAR's 0, 2, 3, 4, 5 */
140 if (sercos3_setup_iomem(dev
, info
, 0, 0))
142 if (sercos3_setup_iomem(dev
, info
, 1, 2))
144 if (sercos3_setup_iomem(dev
, info
, 2, 3))
146 if (sercos3_setup_iomem(dev
, info
, 3, 4))
148 if (sercos3_setup_iomem(dev
, info
, 4, 5))
151 spin_lock_init(&priv
->ier0_cache_lock
);
153 info
->name
= "Sercos_III_PCI";
154 info
->version
= "0.0.1";
155 info
->irq
= dev
->irq
;
156 info
->irq_flags
= IRQF_DISABLED
| IRQF_SHARED
;
157 info
->handler
= sercos3_handler
;
158 info
->irqcontrol
= sercos3_irqcontrol
;
160 pci_set_drvdata(dev
, info
);
162 if (uio_register_device(&dev
->dev
, info
))
168 for (i
= 0; i
< 5; i
++) {
169 if (info
->mem
[i
].internal_addr
)
170 iounmap(info
->mem
[i
].internal_addr
);
172 pci_release_regions(dev
);
174 pci_disable_device(dev
);
182 static void sercos3_pci_remove(struct pci_dev
*dev
)
184 struct uio_info
*info
= pci_get_drvdata(dev
);
187 uio_unregister_device(info
);
188 pci_release_regions(dev
);
189 pci_disable_device(dev
);
190 pci_set_drvdata(dev
, NULL
);
191 for (i
= 0; i
< 5; i
++) {
192 if (info
->mem
[i
].internal_addr
)
193 iounmap(info
->mem
[i
].internal_addr
);
199 static struct pci_device_id sercos3_pci_ids
[] __devinitdata
= {
201 .vendor
= PCI_VENDOR_ID_PLX
,
202 .device
= PCI_DEVICE_ID_PLX_9030
,
203 .subvendor
= SERCOS_SUB_VENDOR_ID
,
204 .subdevice
= SERCOS_SUB_SYSID_3530
,
207 .vendor
= PCI_VENDOR_ID_PLX
,
208 .device
= PCI_DEVICE_ID_PLX_9030
,
209 .subvendor
= SERCOS_SUB_VENDOR_ID
,
210 .subdevice
= SERCOS_SUB_SYSID_3535
,
213 .vendor
= PCI_VENDOR_ID_PLX
,
214 .device
= PCI_DEVICE_ID_PLX_9030
,
215 .subvendor
= SERCOS_SUB_VENDOR_ID
,
216 .subdevice
= SERCOS_SUB_SYSID_3780
,
221 static struct pci_driver sercos3_pci_driver
= {
223 .id_table
= sercos3_pci_ids
,
224 .probe
= sercos3_pci_probe
,
225 .remove
= sercos3_pci_remove
,
228 static int __init
sercos3_init_module(void)
230 return pci_register_driver(&sercos3_pci_driver
);
233 static void __exit
sercos3_exit_module(void)
235 pci_unregister_driver(&sercos3_pci_driver
);
238 module_init(sercos3_init_module
);
239 module_exit(sercos3_exit_module
);
241 MODULE_DESCRIPTION("UIO driver for the Automata Sercos III PCI card");
242 MODULE_AUTHOR("John Ogness <john.ogness@linutronix.de>");
243 MODULE_LICENSE("GPL v2");