294 lines
7.4 KiB
C
294 lines
7.4 KiB
C
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/**\file
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* This file serves as the wrapper for the platform/OS dependent functions
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* It is needed to modify these functions accordingly based on the platform and the
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* OS. Whenever the synopsys GMAC driver ported on to different platform, this file
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* should be handled at most care.
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* The corresponding function definitions for non-inline functions are available in
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* synopGMAC_plat.c file.
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* \internal
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* -------------------------------------REVISION HISTORY---------------------------
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* Synopsys 01/Aug/2007 Created
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*/
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#ifndef SYNOP_GMAC_PLAT_H
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#define SYNOP_GMAC_PLAT_H 1
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/* sw
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#include <linux/kernel.h>
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#include <asm/io.h>
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#include <linux/gfp.h>
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#include <linux/slab.h>
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#include <linux/pci.h>
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*/
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#include "types.h"
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#include "debug.h"
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//#include "mii.h"
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//#include "GMAC_Pmon.h"
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//#include "synopGMAC_Host.h"
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#include <rtthread.h>
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//sw: copy the type define into here
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#define IOCTL_READ_REGISTER SIOCDEVPRIVATE+1
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#define IOCTL_WRITE_REGISTER SIOCDEVPRIVATE+2
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#define IOCTL_READ_IPSTRUCT SIOCDEVPRIVATE+3
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#define IOCTL_READ_RXDESC SIOCDEVPRIVATE+4
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#define IOCTL_READ_TXDESC SIOCDEVPRIVATE+5
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#define IOCTL_POWER_DOWN SIOCDEVPRIVATE+6
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#define SYNOP_GMAC0 1
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typedef int bool;
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//typedef unsigned long dma_addr_t;
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//sw
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/* write/read MMIO register */
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#define writeb(val, addr) (*(volatile u8*)(addr) = (val))
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#define writew(val, addr) (*(volatile u16*)(addr) = (val))
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#define writel(val, addr) (*(volatile u32*)(addr) = (val))
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#define readb(addr) (*(volatile u8*)(addr))
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#define readw(addr) (*(volatile u16*)(addr))
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#define readl(addr) (*(volatile u32*)(addr))
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#define KUSEG_ADDR 0x0
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#define CACHED_MEMORY_ADDR 0x80000000
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#define UNCACHED_MEMORY_ADDR 0xa0000000
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#define KSEG2_ADDR 0xc0000000
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#define MAX_MEM_ADDR 0xbe000000
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#define RESERVED_ADDR 0xbfc80000
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#define CACHED_TO_PHYS(x) ((unsigned)(x) & 0x7fffffff)
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#define PHYS_TO_CACHED(x) ((unsigned)(x) | CACHED_MEMORY_ADDR)
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#define UNCACHED_TO_PHYS(x) ((unsigned)(x) & 0x1fffffff)
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#define PHYS_TO_UNCACHED(x) ((unsigned)(x) | UNCACHED_MEMORY_ADDR)
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#define VA_TO_CINDEX(x) ((unsigned)(x) & 0xffffff | CACHED_MEMORY_ADDR)
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#define CACHED_TO_UNCACHED(x) (PHYS_TO_UNCACHED(CACHED_TO_PHYS(x)))
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#define VA_TO_PA(x) UNCACHED_TO_PHYS(x)
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/* sw
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#define TR0(fmt, args...) printk(KERN_CRIT "SynopGMAC: " fmt, ##args)
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#ifdef DEBUG
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#undef TR
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# define TR(fmt, args...) printk(KERN_CRIT "SynopGMAC: " fmt, ##args)
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#else
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# define TR(fmt, args...) // not debugging: nothing
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#endif
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*/
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/*
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#define TR0(fmt, args...) printf("SynopGMAC: " fmt, ##args)
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*/
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/*
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#ifdef DEBUG
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#undef TR
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# define TR(fmt, args...) printf("SynopGMAC: " fmt, ##args)
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#else
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//# define TR(fmt, args...) // not debugging: nothing
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#define TR(fmt, args...) printf("SynopGMAC: " fmt, ##args)
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#endif
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*/
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//sw: nothing to display
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#define TR0(fmt, args...) rt_kprintf(fmt, ##args)
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#define TR(fmt, args...) rt_kprintf(fmt, ##args)
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//#define TR rt_kprintf
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//typedef int bool;
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enum synopGMAC_boolean
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{
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false = 0,
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true = 1
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};
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#define DEFAULT_DELAY_VARIABLE 10
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#define DEFAULT_LOOP_VARIABLE 10000
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/* There are platform related endian conversions
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*
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*/
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#define LE32_TO_CPU __le32_to_cpu
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#define BE32_TO_CPU __be32_to_cpu
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#define CPU_TO_LE32 __cpu_to_le32
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/* Error Codes */
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#define ESYNOPGMACNOERR 0
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#define ESYNOPGMACNOMEM 1
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#define ESYNOPGMACPHYERR 2
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#define ESYNOPGMACBUSY 3
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struct Network_interface_data
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{
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u32 unit;
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u32 addr;
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u32 data;
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};
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/**
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* These are the wrapper function prototypes for OS/platform related routines
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*/
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void * plat_alloc_memory(u32 );
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void plat_free_memory(void *);
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//void * plat_alloc_consistent_dmaable_memory(struct pci_dev *, u32, u32 *);
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//void plat_free_consistent_dmaable_memory (struct pci_dev *, u32, void *, u32);
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void plat_delay(u32);
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/**
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* The Low level function to read register contents from Hardware.
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*
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* @param[in] pointer to the base of register map
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* @param[in] Offset from the base
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* \return Returns the register contents
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*/
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static u32 synopGMACReadReg(u32 RegBase, u32 RegOffset)
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{
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u32 addr;
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u32 data;
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addr = RegBase + (u32)RegOffset;
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#if 0 //__mips >= 3 && __mips != 32
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__asm __volatile(
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".set\tnoreorder\n\t"
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".set\tmips3\n\t"
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"ld $8,%1\n\t"
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"lw $9,0x0($8)\n\t"
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"nop\n\t"
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"nop\n\t"
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"sw $9,%0\n\t"
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".set\tmips0\n\t"
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:"=m"(data)
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:"m"(addr)
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:"memory","$8","$9"
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);
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#else
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data = *(volatile u32 *)addr;
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#endif
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#if SYNOP_REG_DEBUG
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TR("%s RegBase = 0x%08x RegOffset = 0x%08x RegData = 0x%08x\n", __FUNCTION__, (u32)RegBase, RegOffset, data );
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#endif
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// rt_kprintf("%s RegBase = 0x%08x RegOffset = 0x%08x RegData = 0x%08x\n", __FUNCTION__, (u32)RegBase, RegOffset, data );
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return data;
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}
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/**
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* The Low level function to write to a register in Hardware.
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*
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* @param[in] pointer to the base of register map
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* @param[in] Offset from the base
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* @param[in] Data to be written
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* \return void
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*/
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static void synopGMACWriteReg(u32 RegBase, u32 RegOffset, u32 RegData )
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{
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u32 addr;
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addr = RegBase + (u32)RegOffset;
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// rt_kprintf("%s RegBase = 0x%08x RegOffset = 0x%08x RegData = 0x%08x\n", __FUNCTION__,(u32) RegBase, RegOffset, RegData );
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#if SYNOP_REG_DEBUG
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TR("%s RegBase = 0x%08x RegOffset = 0x%08x RegData = 0x%08x\n", __FUNCTION__,(u32) RegBase, RegOffset, RegData );
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#endif
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// writel(RegData,(void *)addr);
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//printf("GMAC addr = 0x%lx \n",addr);
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#if 0 //__mips >= 3 && __mips != 32
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__asm __volatile(
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".set\tnoreorder\n\t"
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".set\tmips3\n\t"
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"lw $9,%0\n\t"
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"ld $8,%1\n\t"
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"sw $9,0x0($8)\n\t"
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".set\tmips0\n\t"
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:
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:"m"(RegData),"m"(addr)
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:"memory","$8","$9"
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);
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#else
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*(volatile u32 *)addr = RegData;
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#endif
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if(addr == 0xbfe1100c)
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DEBUG_MES("regdata = %08x\n", RegData);
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return;
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}
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/**
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* The Low level function to set bits of a register in Hardware.
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*
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* @param[in] pointer to the base of register map
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* @param[in] Offset from the base
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* @param[in] Bit mask to set bits to logical 1
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* \return void
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*/
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static void synopGMACSetBits(u32 RegBase, u32 RegOffset, u32 BitPos)
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{
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//u64 addr = (u64)RegBase + (u64)RegOffset;
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u32 data;
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data = synopGMACReadReg(RegBase, RegOffset);
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data |= BitPos;
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synopGMACWriteReg(RegBase, RegOffset, data);
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// writel(data,(void *)addr);
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#if SYNOP_REG_DEBUG
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TR("%s !!!!!!!!!!!!! RegOffset = 0x%08x RegData = 0x%08x\n", __FUNCTION__, RegOffset, data );
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#endif
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return;
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}
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/**
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* The Low level function to clear bits of a register in Hardware.
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*
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* @param[in] pointer to the base of register map
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* @param[in] Offset from the base
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* @param[in] Bit mask to clear bits to logical 0
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* \return void
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*/
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static void synopGMACClearBits(u32 RegBase, u32 RegOffset, u32 BitPos)
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{
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u32 data;
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data = synopGMACReadReg(RegBase, RegOffset);
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data &= (~BitPos);
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synopGMACWriteReg(RegBase, RegOffset, data);
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#if SYNOP_REG_DEBUG
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TR("%s !!!!!!!!!!!!! RegOffset = 0x%08x RegData = 0x%08x\n", __FUNCTION__, RegOffset, data );
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#endif
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return;
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}
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/**
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* The Low level function to Check the setting of the bits.
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*
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* @param[in] pointer to the base of register map
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* @param[in] Offset from the base
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* @param[in] Bit mask to set bits to logical 1
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* \return returns TRUE if set to '1' returns FALSE if set to '0'. Result undefined there are no bit set in the BitPos argument.
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*
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*/
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static bool synopGMACCheckBits(u32 RegBase, u32 RegOffset, u32 BitPos)
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{
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u32 data;
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data = synopGMACReadReg(RegBase, RegOffset);
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data &= BitPos;
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if(data) return true;
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else return false;
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}
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#endif
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