📄 syslib.c
字号:
** SEE ALSO: sysProcNumSet()*/int sysProcNumGet (void) { return (sysProcNum); }/******************************************************************************** sysProcNumSet - set the processor number** This routine sets the processor number for the CPU board. Processor numbers* should be unique on a single backplane.** Not applicable for the busless 860Ads.** RETURNS: N/A** SEE ALSO: sysProcNumGet()**/void sysProcNumSet ( int procNum /* processor number */ ) { sysProcNum = procNum; }/******************************************************************************** sysLocalToBusAdrs - convert a local address to a bus address** This routine gets the VMEbus address that accesses a specified local* memory address.** Not applicable for the 860Ads** RETURNS: ERROR, always.** SEE ALSO: sysBusToLocalAdrs()*/ STATUS sysLocalToBusAdrs ( int adrsSpace, /* bus address space where busAdrs resides */ char * localAdrs, /* local address to convert */ char ** pBusAdrs /* where to return bus address */ ) { return (ERROR); }/******************************************************************************** sysBusToLocalAdrs - convert a bus address to a local address** This routine gets the local address that accesses a specified VMEbus* physical memory address.** Not applicable for the 860Ads** RETURNS: ERROR, always.** SEE ALSO: sysLocalToBusAdrs()*/STATUS sysBusToLocalAdrs ( int adrsSpace, /* bus address space where busAdrs resides */ char * busAdrs, /* bus address to convert */ char ** pLocalAdrs /* where to return local address */ ) { return (ERROR); }/******************************************************************************** sysBusTas - test and set a location across the bus** This routine does an atomic test-and-set operation across the backplane.** Not applicable for the 860Ads.** RETURNS: FALSE, always.** SEE ALSO: vxTas()*/BOOL sysBusTas ( char * adrs /* address to be tested-and-set */ ) { return (FALSE); }/******************************************************************************** sysBusClearTas - test and clear ** This routine is a null function.** RETURNS: N/A*/void sysBusClearTas ( volatile char * address /* address to be tested-and-cleared */ ) { } /********************************************************************************* sysCpmEnetDisable - disable the Ethernet controller** This routine is expected to perform any target specific functions required* to disable the Ethernet controller. This usually involves disabling the* Transmit Enable (TENA) signal.** RETURNS: N/A*/void sysCpmEnetDisable ( int unit /* not used - only slave SCC1 is wired to port */ ){ *(GSMR_L1(vxImmrGet())) &= ~(SCC_GSMRL_ENR | SCC_GSMRL_ENT);}/********************************************************************************* sysCpmEnetIntDisable - disable the Ethernet interface interrupt** This routine disable the interrupt for the Ethernet interface specified* by <unit>.** RETURNS: N/A.*/void sysCpmEnetIntDisable ( int unit ){ *CIMR(vxImmrGet()) &= ~CIMR_SCC1;}#ifdef INCLUDE_CPM/********************************************************************************* sysCpmEnetEnable - enable the Ethernet controller** This routine is expected to perform any target specific functions required* to enable the Ethernet controller. These functions typically include* enabling the Transmit Enable signal (TENA) and connecting the transmit* and receive clocks to the SCC.** RETURNS: OK, or ERROR if the Ethernet controller cannot be enabled.*/STATUS sysCpmEnetEnable ( int unit /* not used - only slave SCC1 is wired to port */ ){ int immrVal = vxImmrGet(); *PAPAR(immrVal) |= (PA04| PA06| PA14 | PA15); *PADIR(immrVal) &= ~(PA04| PA06| PA14 | PA15); *PCPAR(immrVal) &= ~(PC10 | PC11); *PCDIR(immrVal) &= ~(PC10 | PC11); *PCSO(immrVal) |= (PC10 | PC11); *PCDIR(immrVal) |= (PC04 | PC05 | PC06 | PC07); *PCDAT(immrVal) |= (PC05 | PC06); *PCDAT(immrVal) &= ~(PC04 | PC07); *SICR(immrVal) |= 0x2F; /* connect SCC1 clocks */ *SICR(immrVal) &= ~(0x40); /* NMSI mode */ *GSMR_L1(immrVal) |= (SCC_GSMRL_ENR | SCC_GSMRL_ENT); *PBPAR(immrVal) |= PB19; /* set port B -> *RTS1 = TENA */ *PBDIR(immrVal) |= PB19; return (OK);}/********************************************************************************* sysCpmEnetAddrGet - get the hardware Ethernet address** This routine provides the six byte Ethernet hardware address that will be* used by each individual Ethernet device unit. This routine must copy* the six byte address to the space provided by <addr>.** RETURNS: OK, or ERROR if the Ethernet address cannot be returned.*/STATUS sysCpmEnetAddrGet ( int unit, /* not used - only slave SCC1 is wired to port */ UINT8 * addr ){ /*add by zhangyu*/ GetEtheralMacAddr(sysCpmEnetAddr); bcopy ((char *) sysCpmEnetAddr, (char *) addr, sizeof (sysCpmEnetAddr)); return (OK);}/********************************************************************************* sysCpmEnetCommand - issue a command to the Ethernet interface controller** RETURNS: OK, or ERROR if the Ethernet controller could not be restarted.*/STATUS sysCpmEnetCommand ( int unit, UINT16 command ){ int immrVal = vxImmrGet(); while (*CPCR(immrVal) & CPM_CR_FLG); *CPCR(immrVal) = (VUINT16)(CPM_CR_CHANNEL_SCC1 | command | CPM_CR_FLG); while (*CPCR(immrVal) & CPM_CR_FLG); return (OK);}/********************************************************************************* sysCpmEnetIntEnable - enable the Ethernet interface interrupt** This routine enable the interrupt for the Ethernet interface specified* by <unit>.** RETURNS: N/A.*/void sysCpmEnetIntEnable ( int unit ){ *CIMR(vxImmrGet()) |= CIMR_SCC1;}/********************************************************************************* sysCpmEnetIntClear - clear the Ethernet interface interrupt** This routine clears the interrupt for the Ethernet interface specified* by <unit>.** RETURNS: N/A.*/void sysCpmEnetIntClear ( int unit ){ *CISR(vxImmrGet()) = CISR_SCC1;}/********************************************************************************* sysCpmAttach - attach wrapper**/STATUS sysCpmAttach ( int unit, /* unit number */ SCC * pScc, /* address of SCC parameter RAM */ SCC_REG * pSccReg, /* address of SCC registers */ VOIDFUNCPTR * ivec, /* interrupt vector offset */ SCC_BUF * txBdBase, /* transmit buffer descriptor base address */ SCC_BUF * rxBdBase, /* receive buffer descriptor base address */ int txBdNum, /* number of transmit buffer descriptors */ int rxBdNum, /* number of receive buffer descriptors */ UINT8 * bufBase /* address of memory pool; NONE = malloc it */ ){ return (cpmattach(unit, pScc, pSccReg, ivec, txBdBase, rxBdBase, txBdNum, rxBdNum, bufBase));}#endif /* INCLUDE_CPM */#ifdef INCLUDE_MOT_FEC/********************************************************************************* sysFecEnetEnable - enable the MII interface of the Fast Ethernet controller** This routine is expected to perform any target specific functions required* to enable the Ethernet device and the MII interface of the Fast Ethernet * controller. These functions include setting the MII-compliant signals on * Port D and disabling the IRQ7 signal.** This routine does not enable the 7-wire serial interface.** RETURNS: OK, or ERROR if the Fast Ethernet controller cannot be enabled.*/STATUS sysFecEnetEnable ( UINT32 motCpmAddr /* base address of the on-chip RAM */ ) { int intLevel = intLock(); #ifdef HHPPC#else /* enable the Ethernet device for the FEC */ *BCSR4 |= (BCSR4_FETH_RST | BCSR4_FETH_CFG0 | BCSR4_FETH_FDE); *BCSR4 &= ~BCSR4_UUFDIS; #endif /* introduce a little delay */ taskDelay (sysClkRateGet ()); /* mask IRQ7 off, as it is shared with MII_TX_CLK */ *SIMASK (motCpmAddr) &= ~SIMASK_IRM7; /* also clear any pending interrupt */ *SIPEND (motCpmAddr) |= SIPEND_IRQ7; /* * set the arbitration level for the FEC. Do not enable * FEC aggressive mode. */ *SDCR (motCpmAddr) |= SDCR_FAID_BR6; /* set Port D to use MII signals */ *PDPAR (motCpmAddr) = 0x1fff; *PDDIR (motCpmAddr) = 0x1c58; intUnlock (intLevel); return (OK); }/********************************************************************************* sysFecEnetDisable - disable MII interface to the Fast Ethernet controller** This routine is expected to perform any target specific functions required* to disable the Ethernet device and the MII interface to the Fast Ethernet * controller. This involves restoring the default values for all the Port * D signals.** RETURNS: OK, always.*/STATUS sysFecEnetDisable ( UINT32 motCpmAddr /* base address of the on-chip RAM */ ) { int intLevel = intLock(); #ifdef HHPPC#else /* disable the Ethernet device for the FEC */ *BCSR4 |= BCSR4_UUFDIS;#endif /* configure all Port D pins as general purpose input pins */ *PDPAR (motCpmAddr) = 0x0; *PDDIR (motCpmAddr) = 0x0; intUnlock (intLevel); return (OK); }/********************************************************************************* sysFecEnetAddrGet - get the hardware Ethernet address** This routine provides the six byte Ethernet hardware address that will be* used by each individual Fast Ethernet device unit. This routine must copy* the six byte address to the space provided by <addr>.** RETURNS: OK, or ERROR if the Ethernet address cannot be returned.*/STATUS sysFecEnetAddrGet ( UINT32 motCpmAddr, /* base address of the on-chip RAM */ UCHAR * addr /* where to copy the Ethernet address */ ) { bcopy ((char *) sysFecEnetAddr, (char *) addr, sizeof (sysFecEnetAddr)); return (OK); }#endif /* INCLUDE_MOT_FEC */#if 1 /*add by zhangyu*/void GetEtheralMacAddr(unsigned char *mac){ unsigned short tmp[3]; int i; memset(mac,0,6); memset(tmp,0,sizeof(tmp)); for(i=0;i<3;i++) tmp[i] = *((volatile unsigned short *)(0x20000000+0x007F0000)+i); for(i=0;i<6;i++) mac[i]=*((unsigned char *)tmp+i);}#endif
⌨️ 快捷键说明
复制代码
Ctrl + C
搜索代码
Ctrl + F
全屏模式
F11
切换主题
Ctrl + Shift + D
显示快捷键
?
增大字号
Ctrl + =
减小字号
Ctrl + -