/* BAR 0 registers */
#define CP500_VERSION_REG 0x00
#define CP500_RECONFIG_REG 0x11 /* upper 8-bits of STARTUP register */
+#define CP500_PRESENT_REG 0x20
#define CP500_AXI_REG 0x40
/* Bits in BUILD_REG */
/* Bits in RECONFIG_REG */
#define CP500_RECFG_REQ 0x01 /* reconfigure FPGA on next reset */
+/* Bits in PRESENT_REG */
+#define CP500_PRESENT_FAN0 0x01
+
/* MSIX */
#define CP500_AXI_MSIX 3
#define CP500_NUM_MSIX 8
struct cp500_dev_info startup;
struct cp500_dev_info spi;
struct cp500_dev_info i2c;
+ struct cp500_dev_info fan;
};
/* list of devices within FPGA of CP035 family (CP035, CP056, CP057) */
static struct cp500_devs cp035_devices = {
- .startup = { 0x0000, SZ_4K },
- .spi = { 0x1000, SZ_4K },
- .i2c = { 0x4000, SZ_4K },
+ .startup = { 0x0000, SZ_4K },
+ .spi = { 0x1000, SZ_4K },
+ .i2c = { 0x4000, SZ_4K },
+ .fan = { 0x9000, SZ_4K },
};
/* list of devices within FPGA of CP505 family (CP503, CP505, CP507) */
static struct cp500_devs cp505_devices = {
- .startup = { 0x0000, SZ_4K },
- .spi = { 0x4000, SZ_4K },
- .i2c = { 0x5000, SZ_4K },
+ .startup = { 0x0000, SZ_4K },
+ .spi = { 0x4000, SZ_4K },
+ .i2c = { 0x5000, SZ_4K },
+ .fan = { 0x9000, SZ_4K },
};
/* list of devices within FPGA of CP520 family (CP520, CP530) */
static struct cp500_devs cp520_devices = {
- .startup = { 0x0000, SZ_4K },
- .spi = { 0x4000, SZ_4K },
- .i2c = { 0x5000, SZ_4K },
+ .startup = { 0x0000, SZ_4K },
+ .spi = { 0x4000, SZ_4K },
+ .i2c = { 0x5000, SZ_4K },
+ .fan = { 0x8000, SZ_4K },
};
struct cp500_nvmem {
resource_size_t sys_hwbase;
struct keba_spi_auxdev *spi;
struct keba_i2c_auxdev *i2c;
+ struct keba_fan_auxdev *fan;
/* ECM EtherCAT BAR */
resource_size_t ecm_hwbase;
return 0;
}
+static void cp500_fan_release(struct device *dev)
+{
+ struct keba_fan_auxdev *fan =
+ container_of(dev, struct keba_fan_auxdev, auxdev.dev);
+
+ kfree(fan);
+}
+
+static int cp500_register_fan(struct cp500 *cp500)
+{
+ int ret;
+
+ cp500->fan = kzalloc(sizeof(*cp500->fan), GFP_KERNEL);
+ if (!cp500->fan)
+ return -ENOMEM;
+
+ cp500->fan->auxdev.name = "fan";
+ cp500->fan->auxdev.id = 0;
+ cp500->fan->auxdev.dev.release = cp500_fan_release;
+ cp500->fan->auxdev.dev.parent = &cp500->pci_dev->dev;
+ cp500->fan->io = (struct resource) {
+ /* fan register area */
+ .start = (resource_size_t) cp500->sys_hwbase +
+ cp500->devs->fan.offset,
+ .end = (resource_size_t) cp500->sys_hwbase +
+ cp500->devs->fan.offset +
+ cp500->devs->fan.size - 1,
+ .flags = IORESOURCE_MEM,
+ };
+
+ ret = auxiliary_device_init(&cp500->fan->auxdev);
+ if (ret) {
+ kfree(cp500->fan);
+ cp500->fan = NULL;
+
+ return ret;
+ }
+ ret = __auxiliary_device_add(&cp500->fan->auxdev, "keba");
+ if (ret) {
+ auxiliary_device_uninit(&cp500->fan->auxdev);
+ cp500->fan = NULL;
+
+ return ret;
+ }
+
+ return 0;
+}
+
static int cp500_nvmem_read(void *priv, unsigned int offset, void *val,
size_t bytes)
{
static void cp500_register_auxiliary_devs(struct cp500 *cp500)
{
struct device *dev = &cp500->pci_dev->dev;
+ u8 present = ioread8(cp500->system_startup_addr + CP500_PRESENT_REG);
if (cp500_register_i2c(cp500))
dev_warn(dev, "Failed to register I2C!\n");
+ if (present & CP500_PRESENT_FAN0)
+ if (cp500_register_fan(cp500))
+ dev_warn(dev, "Failed to register fan!\n");
}
static void cp500_unregister_dev(struct auxiliary_device *auxdev)
cp500_unregister_dev(&cp500->i2c->auxdev);
cp500->i2c = NULL;
}
+ if (cp500->fan) {
+ cp500_unregister_dev(&cp500->fan->auxdev);
+ cp500->fan = NULL;
+ }
}
static irqreturn_t cp500_axi_handler(int irq, void *dev)