4 #include <linux/device.h>
5 #include <linux/list.h>
6 #include <linux/types.h>
7 #include <linux/spinlock.h>
9 #include <linux/mod_devicetable.h>
11 #include <linux/ssb/ssb_regs.h>
20 u8 il0mac
[6]; /* MAC address for 802.11b/g */
21 u8 et0mac
[6]; /* MAC address for Ethernet */
22 u8 et1mac
[6]; /* MAC address for 802.11a */
23 u8 et0phyaddr
; /* MII address for enet0 */
24 u8 et1phyaddr
; /* MII address for enet1 */
25 u8 et0mdcport
; /* MDIO for enet0 */
26 u8 et1mdcport
; /* MDIO for enet1 */
27 u8 board_rev
; /* Board revision number from SPROM. */
28 u8 country_code
; /* Country Code */
29 u8 ant_available_a
; /* A-PHY antenna available bits (up to 4) */
30 u8 ant_available_bg
; /* B/G-PHY antenna available bits (up to 4) */
37 u8 gpio0
; /* GPIO pin 0 */
38 u8 gpio1
; /* GPIO pin 1 */
39 u8 gpio2
; /* GPIO pin 2 */
40 u8 gpio3
; /* GPIO pin 3 */
41 u16 maxpwr_a
; /* A-PHY Amplifier Max Power (in dBm Q5.2) */
42 u16 maxpwr_bg
; /* B/G-PHY Amplifier Max Power (in dBm Q5.2) */
43 u8 itssi_a
; /* Idle TSSI Target for A-PHY */
44 u8 itssi_bg
; /* Idle TSSI Target for B/G-PHY */
45 u16 boardflags_lo
; /* Boardflags (low 16 bits) */
46 u16 boardflags_hi
; /* Boardflags (high 16 bits) */
48 /* Antenna gain values for up to 4 antennas
49 * on each band. Values in dBm/4 (Q5.2). Negative gain means the
50 * loss in the connectors is bigger than the gain. */
54 } ghz24
; /* 2.4GHz band */
57 } ghz5
; /* 5GHz band */
60 /* TODO - add any parameters needed from rev 2, 3, or 4 SPROMs */
63 /* Information about the PCB the circuitry is soldered on. */
64 struct ssb_boardinfo
{
72 /* Lowlevel read/write operations on the device MMIO.
73 * Internal, don't use that outside of ssb. */
75 u8 (*read8
)(struct ssb_device
*dev
, u16 offset
);
76 u16 (*read16
)(struct ssb_device
*dev
, u16 offset
);
77 u32 (*read32
)(struct ssb_device
*dev
, u16 offset
);
78 void (*write8
)(struct ssb_device
*dev
, u16 offset
, u8 value
);
79 void (*write16
)(struct ssb_device
*dev
, u16 offset
, u16 value
);
80 void (*write32
)(struct ssb_device
*dev
, u16 offset
, u32 value
);
81 #ifdef CONFIG_SSB_BLOCKIO
82 void (*block_read
)(struct ssb_device
*dev
, void *buffer
,
83 size_t count
, u16 offset
, u8 reg_width
);
84 void (*block_write
)(struct ssb_device
*dev
, const void *buffer
,
85 size_t count
, u16 offset
, u8 reg_width
);
91 #define SSB_DEV_CHIPCOMMON 0x800
92 #define SSB_DEV_ILINE20 0x801
93 #define SSB_DEV_SDRAM 0x803
94 #define SSB_DEV_PCI 0x804
95 #define SSB_DEV_MIPS 0x805
96 #define SSB_DEV_ETHERNET 0x806
97 #define SSB_DEV_V90 0x807
98 #define SSB_DEV_USB11_HOSTDEV 0x808
99 #define SSB_DEV_ADSL 0x809
100 #define SSB_DEV_ILINE100 0x80A
101 #define SSB_DEV_IPSEC 0x80B
102 #define SSB_DEV_PCMCIA 0x80D
103 #define SSB_DEV_INTERNAL_MEM 0x80E
104 #define SSB_DEV_MEMC_SDRAM 0x80F
105 #define SSB_DEV_EXTIF 0x811
106 #define SSB_DEV_80211 0x812
107 #define SSB_DEV_MIPS_3302 0x816
108 #define SSB_DEV_USB11_HOST 0x817
109 #define SSB_DEV_USB11_DEV 0x818
110 #define SSB_DEV_USB20_HOST 0x819
111 #define SSB_DEV_USB20_DEV 0x81A
112 #define SSB_DEV_SDIO_HOST 0x81B
113 #define SSB_DEV_ROBOSWITCH 0x81C
114 #define SSB_DEV_PARA_ATA 0x81D
115 #define SSB_DEV_SATA_XORDMA 0x81E
116 #define SSB_DEV_ETHERNET_GBIT 0x81F
117 #define SSB_DEV_PCIE 0x820
118 #define SSB_DEV_MIMO_PHY 0x821
119 #define SSB_DEV_SRAM_CTRLR 0x822
120 #define SSB_DEV_MINI_MACPHY 0x823
121 #define SSB_DEV_ARM_1176 0x824
122 #define SSB_DEV_ARM_7TDMI 0x825
124 /* Vendor-ID values */
125 #define SSB_VENDOR_BROADCOM 0x4243
127 /* Some kernel subsystems poke with dev->drvdata, so we must use the
128 * following ugly workaround to get from struct device to struct ssb_device */
129 struct __ssb_dev_wrapper
{
131 struct ssb_device
*sdev
;
135 /* Having a copy of the ops pointer in each dev struct
136 * is an optimization. */
137 const struct ssb_bus_ops
*ops
;
140 /* Pointer to the device that has to be used for
141 * any DMA related operation. */
142 struct device
*dma_dev
;
145 struct ssb_device_id id
;
150 /* Internal-only stuff follows. */
151 void *drvdata
; /* Per-device data */
152 void *devtypedata
; /* Per-devicetype (eg 802.11) data */
155 /* Go from struct device to struct ssb_device. */
157 struct ssb_device
* dev_to_ssb_dev(struct device
*dev
)
159 struct __ssb_dev_wrapper
*wrap
;
160 wrap
= container_of(dev
, struct __ssb_dev_wrapper
, dev
);
164 /* Device specific user data */
166 void ssb_set_drvdata(struct ssb_device
*dev
, void *data
)
171 void * ssb_get_drvdata(struct ssb_device
*dev
)
176 /* Devicetype specific user data. This is per device-type (not per device) */
177 void ssb_set_devtypedata(struct ssb_device
*dev
, void *data
);
179 void * ssb_get_devtypedata(struct ssb_device
*dev
)
181 return dev
->devtypedata
;
187 const struct ssb_device_id
*id_table
;
189 int (*probe
)(struct ssb_device
*dev
, const struct ssb_device_id
*id
);
190 void (*remove
)(struct ssb_device
*dev
);
191 int (*suspend
)(struct ssb_device
*dev
, pm_message_t state
);
192 int (*resume
)(struct ssb_device
*dev
);
193 void (*shutdown
)(struct ssb_device
*dev
);
195 struct device_driver drv
;
197 #define drv_to_ssb_drv(_drv) container_of(_drv, struct ssb_driver, drv)
199 extern int __ssb_driver_register(struct ssb_driver
*drv
, struct module
*owner
);
200 static inline int ssb_driver_register(struct ssb_driver
*drv
)
202 return __ssb_driver_register(drv
, THIS_MODULE
);
204 extern void ssb_driver_unregister(struct ssb_driver
*drv
);
210 SSB_BUSTYPE_SSB
, /* This SSB bus is the system bus */
211 SSB_BUSTYPE_PCI
, /* SSB is connected to PCI bus */
212 SSB_BUSTYPE_PCMCIA
, /* SSB is connected to PCMCIA bus */
216 #define SSB_BOARDVENDOR_BCM 0x14E4 /* Broadcom */
217 #define SSB_BOARDVENDOR_DELL 0x1028 /* Dell */
218 #define SSB_BOARDVENDOR_HP 0x0E11 /* HP */
220 #define SSB_BOARD_BCM94306MP 0x0418
221 #define SSB_BOARD_BCM4309G 0x0421
222 #define SSB_BOARD_BCM4306CB 0x0417
223 #define SSB_BOARD_BCM4309MP 0x040C
224 #define SSB_BOARD_MP4318 0x044A
225 #define SSB_BOARD_BU4306 0x0416
226 #define SSB_BOARD_BU4309 0x040A
228 #define SSB_CHIPPACK_BCM4712S 1 /* Small 200pin 4712 */
229 #define SSB_CHIPPACK_BCM4712M 2 /* Medium 225pin 4712 */
230 #define SSB_CHIPPACK_BCM4712L 0 /* Large 340pin 4712 */
232 #include <linux/ssb/ssb_driver_chipcommon.h>
233 #include <linux/ssb/ssb_driver_mips.h>
234 #include <linux/ssb/ssb_driver_extif.h>
235 #include <linux/ssb/ssb_driver_pci.h>
241 const struct ssb_bus_ops
*ops
;
243 /* The core in the basic address register window. (PCI bus only) */
244 struct ssb_device
*mapped_device
;
245 /* Currently mapped PCMCIA segment. (bustype == SSB_BUSTYPE_PCMCIA only) */
246 u8 mapped_pcmcia_seg
;
247 /* Lock for core and segment switching.
248 * On PCMCIA-host busses this is used to protect the whole MMIO access. */
251 /* The bus this backplane is running on. */
252 enum ssb_bustype bustype
;
253 /* Pointer to the PCI bus (only valid if bustype == SSB_BUSTYPE_PCI). */
254 struct pci_dev
*host_pci
;
255 /* Pointer to the PCMCIA device (only if bustype == SSB_BUSTYPE_PCMCIA). */
256 struct pcmcia_device
*host_pcmcia
;
258 #ifdef CONFIG_SSB_SPROM
259 /* Mutex to protect the SPROM writing. */
260 struct mutex sprom_mutex
;
263 /* ID information about the Chip. */
266 u16 sprom_size
; /* number of words in sprom */
269 /* List of devices (cores) on the backplane. */
270 struct ssb_device devices
[SSB_MAX_NR_CORES
];
273 /* Software ID number for this bus. */
274 unsigned int busnumber
;
276 /* The ChipCommon device (if available). */
277 struct ssb_chipcommon chipco
;
278 /* The PCI-core device (if available). */
279 struct ssb_pcicore pcicore
;
280 /* The MIPS-core device (if available). */
281 struct ssb_mipscore mipscore
;
282 /* The EXTif-core device (if available). */
283 struct ssb_extif extif
;
285 /* The following structure elements are not available in early
286 * SSB initialization. Though, they are available for regular
287 * registered drivers at any stage. So be careful when
288 * using them in the ssb core code. */
290 /* ID information about the PCB. */
291 struct ssb_boardinfo boardinfo
;
292 /* Contents of the SPROM. */
293 struct ssb_sprom sprom
;
294 /* If the board has a cardbus slot, this is set to true. */
295 bool has_cardbus_slot
;
297 #ifdef CONFIG_SSB_EMBEDDED
298 /* Lock for GPIO register access. */
299 spinlock_t gpio_lock
;
300 #endif /* EMBEDDED */
302 /* Internal-only stuff follows. Do not touch. */
303 struct list_head list
;
304 #ifdef CONFIG_SSB_DEBUG
305 /* Is the bus already powered up? */
307 int power_warn_count
;
311 /* The initialization-invariants. */
312 struct ssb_init_invariants
{
313 /* Versioning information about the PCB. */
314 struct ssb_boardinfo boardinfo
;
315 /* The SPROM information. That's either stored in an
316 * EEPROM or NVRAM on the board. */
317 struct ssb_sprom sprom
;
318 /* If the board has a cardbus slot, this is set to true. */
319 bool has_cardbus_slot
;
321 /* Type of function to fetch the invariants. */
322 typedef int (*ssb_invariants_func_t
)(struct ssb_bus
*bus
,
323 struct ssb_init_invariants
*iv
);
325 /* Register a SSB system bus. get_invariants() is called after the
326 * basic system devices are initialized.
327 * The invariants are usually fetched from some NVRAM.
328 * Put the invariants into the struct pointed to by iv. */
329 extern int ssb_bus_ssbbus_register(struct ssb_bus
*bus
,
330 unsigned long baseaddr
,
331 ssb_invariants_func_t get_invariants
);
332 #ifdef CONFIG_SSB_PCIHOST
333 extern int ssb_bus_pcibus_register(struct ssb_bus
*bus
,
334 struct pci_dev
*host_pci
);
335 #endif /* CONFIG_SSB_PCIHOST */
336 #ifdef CONFIG_SSB_PCMCIAHOST
337 extern int ssb_bus_pcmciabus_register(struct ssb_bus
*bus
,
338 struct pcmcia_device
*pcmcia_dev
,
339 unsigned long baseaddr
);
340 #endif /* CONFIG_SSB_PCMCIAHOST */
342 extern void ssb_bus_unregister(struct ssb_bus
*bus
);
344 /* Suspend a SSB bus.
345 * Call this from the parent bus suspend routine. */
346 extern int ssb_bus_suspend(struct ssb_bus
*bus
);
348 * Call this from the parent bus resume routine. */
349 extern int ssb_bus_resume(struct ssb_bus
*bus
);
351 extern u32
ssb_clockspeed(struct ssb_bus
*bus
);
353 /* Is the device enabled in hardware? */
354 int ssb_device_is_enabled(struct ssb_device
*dev
);
355 /* Enable a device and pass device-specific SSB_TMSLOW flags.
356 * If no device-specific flags are available, use 0. */
357 void ssb_device_enable(struct ssb_device
*dev
, u32 core_specific_flags
);
358 /* Disable a device in hardware and pass SSB_TMSLOW flags (if any). */
359 void ssb_device_disable(struct ssb_device
*dev
, u32 core_specific_flags
);
362 /* Device MMIO register read/write functions. */
363 static inline u8
ssb_read8(struct ssb_device
*dev
, u16 offset
)
365 return dev
->ops
->read8(dev
, offset
);
367 static inline u16
ssb_read16(struct ssb_device
*dev
, u16 offset
)
369 return dev
->ops
->read16(dev
, offset
);
371 static inline u32
ssb_read32(struct ssb_device
*dev
, u16 offset
)
373 return dev
->ops
->read32(dev
, offset
);
375 static inline void ssb_write8(struct ssb_device
*dev
, u16 offset
, u8 value
)
377 dev
->ops
->write8(dev
, offset
, value
);
379 static inline void ssb_write16(struct ssb_device
*dev
, u16 offset
, u16 value
)
381 dev
->ops
->write16(dev
, offset
, value
);
383 static inline void ssb_write32(struct ssb_device
*dev
, u16 offset
, u32 value
)
385 dev
->ops
->write32(dev
, offset
, value
);
387 #ifdef CONFIG_SSB_BLOCKIO
388 static inline void ssb_block_read(struct ssb_device
*dev
, void *buffer
,
389 size_t count
, u16 offset
, u8 reg_width
)
391 dev
->ops
->block_read(dev
, buffer
, count
, offset
, reg_width
);
394 static inline void ssb_block_write(struct ssb_device
*dev
, const void *buffer
,
395 size_t count
, u16 offset
, u8 reg_width
)
397 dev
->ops
->block_write(dev
, buffer
, count
, offset
, reg_width
);
399 #endif /* CONFIG_SSB_BLOCKIO */
402 /* Translation (routing) bits that need to be ORed to DMA
403 * addresses before they are given to a device. */
404 extern u32
ssb_dma_translation(struct ssb_device
*dev
);
405 #define SSB_DMA_TRANSLATION_MASK 0xC0000000
406 #define SSB_DMA_TRANSLATION_SHIFT 30
408 extern int ssb_dma_set_mask(struct ssb_device
*ssb_dev
, u64 mask
);
411 #ifdef CONFIG_SSB_PCIHOST
412 /* PCI-host wrapper driver */
413 extern int ssb_pcihost_register(struct pci_driver
*driver
);
414 static inline void ssb_pcihost_unregister(struct pci_driver
*driver
)
416 pci_unregister_driver(driver
);
420 void ssb_pcihost_set_power_state(struct ssb_device
*sdev
, pci_power_t state
)
422 if (sdev
->bus
->bustype
== SSB_BUSTYPE_PCI
)
423 pci_set_power_state(sdev
->bus
->host_pci
, state
);
426 static inline void ssb_pcihost_unregister(struct pci_driver
*driver
)
431 void ssb_pcihost_set_power_state(struct ssb_device
*sdev
, pci_power_t state
)
434 #endif /* CONFIG_SSB_PCIHOST */
437 /* If a driver is shutdown or suspended, call this to signal
438 * that the bus may be completely powered down. SSB will decide,
439 * if it's really time to power down the bus, based on if there
440 * are other devices that want to run. */
441 extern int ssb_bus_may_powerdown(struct ssb_bus
*bus
);
442 /* Before initializing and enabling a device, call this to power-up the bus.
443 * If you want to allow use of dynamic-power-control, pass the flag.
444 * Otherwise static always-on powercontrol will be used. */
445 extern int ssb_bus_powerup(struct ssb_bus
*bus
, bool dynamic_pctl
);
448 /* Various helper functions */
449 extern u32
ssb_admatch_base(u32 adm
);
450 extern u32
ssb_admatch_size(u32 adm
);
452 /* PCI device mapping and fixup routines.
453 * Called from the architecture pcibios init code.
454 * These are only available on SSB_EMBEDDED configurations. */
455 #ifdef CONFIG_SSB_EMBEDDED
456 int ssb_pcibios_plat_dev_init(struct pci_dev
*dev
);
457 int ssb_pcibios_map_irq(const struct pci_dev
*dev
, u8 slot
, u8 pin
);
458 #endif /* CONFIG_SSB_EMBEDDED */
460 #endif /* LINUX_SSB_H_ */