63 lines
1.9 KiB
C
63 lines
1.9 KiB
C
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#ifndef ASM_BPA_IIC_H
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#define ASM_BPA_IIC_H
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#ifdef __KERNEL__
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/*
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* Mapping of IIC pending bits into per-node
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* interrupt numbers.
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*
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* IRQ FF CC SS PP FF CC SS PP Description
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*
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* 00-3f 80 02 +0 00 - 80 02 +0 3f South Bridge
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* 00-3f 80 02 +b 00 - 80 02 +b 3f South Bridge
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* 41-4a 80 00 +1 ** - 80 00 +a ** SPU Class 0
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* 51-5a 80 01 +1 ** - 80 01 +a ** SPU Class 1
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* 61-6a 80 02 +1 ** - 80 02 +a ** SPU Class 2
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* 70-7f C0 ** ** 00 - C0 ** ** 0f IPI
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*
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* F flags
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* C class
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* S source
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* P Priority
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* + node number
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* * don't care
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*
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* A node consists of a Broadband Engine and an optional
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* south bridge device providing a maximum of 64 IRQs.
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* The south bridge may be connected to either IOIF0
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* or IOIF1.
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* Each SPE is represented as three IRQ lines, one per
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* interrupt class.
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* 16 IRQ numbers are reserved for inter processor
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* interruptions, although these are only used in the
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* range of the first node.
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*
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* This scheme needs 128 IRQ numbers per BIF node ID,
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* which means that with the total of 512 lines
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* available, we can have a maximum of four nodes.
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*/
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enum {
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IIC_EXT_OFFSET = 0x00, /* Start of south bridge IRQs */
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IIC_NUM_EXT = 0x40, /* Number of south bridge IRQs */
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IIC_SPE_OFFSET = 0x40, /* Start of SPE interrupts */
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IIC_CLASS_STRIDE = 0x10, /* SPE IRQs per class */
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IIC_IPI_OFFSET = 0x70, /* Start of IPI IRQs */
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IIC_NUM_IPIS = 0x10, /* IRQs reserved for IPI */
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IIC_NODE_STRIDE = 0x80, /* Total IRQs per node */
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};
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extern void iic_init_IRQ(void);
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extern int iic_get_irq(struct pt_regs *regs);
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extern void iic_cause_IPI(int cpu, int mesg);
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extern void iic_request_IPIs(void);
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extern void iic_setup_cpu(void);
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extern void iic_local_enable(void);
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extern void iic_local_disable(void);
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extern void spider_init_IRQ(void);
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extern int spider_get_irq(unsigned long int_pending);
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#endif
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#endif /* ASM_BPA_IIC_H */
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