upstream u-boot with additional patches for our devices/boards:
https://lists.denx.de/pipermail/u-boot/2017-March/282789.html (AXP crashes) ;
Gbit ethernet patch for some LIME2 revisions ;
with SPI flash support
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222 lines
6.0 KiB
222 lines
6.0 KiB
/*
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* (C) Copyright 2001 Sysgo Real-Time Solutions, GmbH <www.elinos.com>
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* Andreas Heppel <aheppel@sysgo.de>
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*
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* See file CREDITS for list of people who contributed to this
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* project.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation; either version 2 of
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* the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston,
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* MA 02111-1307 USA
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*/
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/*
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* Initialisation of the PCI-to-ISA bridge and disabling the BIOS
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* write protection (for flash) in function 0 of the chip.
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* Enabling function 1 (IDE controller of the chip.
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*/
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#include <common.h>
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#include <config.h>
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#include <asm/io.h>
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#include <pci.h>
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#include <w83c553f.h>
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#define out8(addr,val) do { \
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out_8((u8*) (addr),(val)); udelay(1); \
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} while (0)
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#define out16(addr,val) do { \
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out_be16((u16*) (addr),(val)); udelay(1); \
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} while (0)
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extern uint ide_bus_offset[CONFIG_SYS_IDE_MAXBUS];
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void initialise_pic(void);
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void initialise_dma(void);
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void initialise_w83c553f(void)
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{
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pci_dev_t devbusfn;
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unsigned char reg8;
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unsigned short reg16;
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unsigned int reg32;
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devbusfn = pci_find_device(W83C553F_VID, W83C553F_DID, 0);
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if (devbusfn == -1)
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{
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printf("Error: Cannot find W83C553F controller on any PCI bus.");
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return;
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}
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pci_read_config_word(devbusfn, PCI_COMMAND, ®16);
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reg16 |= PCI_COMMAND_MASTER | PCI_COMMAND_IO | PCI_COMMAND_MEMORY;
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pci_write_config_word(devbusfn, PCI_COMMAND, reg16);
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pci_read_config_byte(devbusfn, WINBOND_IPADCR, ®8);
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/* 16 MB ISA memory space */
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reg8 |= (IPADCR_IPATOM4 | IPADCR_IPATOM5 | IPADCR_IPATOM6 | IPADCR_IPATOM7);
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reg8 &= ~IPADCR_MBE512;
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pci_write_config_byte(devbusfn, WINBOND_IPADCR, reg8);
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pci_read_config_byte(devbusfn, WINBOND_CSCR, ®8);
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/* switch off BIOS write protection */
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reg8 |= CSCR_UBIOSCSE;
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reg8 &= ~CSCR_BIOSWP;
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pci_write_config_byte(devbusfn, WINBOND_CSCR, reg8);
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/*
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* Interrupt routing:
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* - IDE -> IRQ 9/0
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* - INTA -> IRQ 10
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* - INTB -> IRQ 11
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* - INTC -> IRQ 14
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* - INTD -> IRQ 15
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*/
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pci_write_config_byte(devbusfn, WINBOND_IDEIRCR, 0x90);
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pci_write_config_word(devbusfn, WINBOND_PCIIRCR, 0xABEF);
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/*
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* Read IDE bus offsets from function 1 device.
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* We must unmask the LSB indicating that ist is an IO address.
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*/
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devbusfn |= PCI_BDF(0,0,1);
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/*
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* Switch off legacy IRQ for IDE and IDE port 1.
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*/
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pci_write_config_byte(devbusfn, 0x09, 0x8F);
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pci_read_config_dword(devbusfn, WINDOND_IDECSR, ®32);
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reg32 &= ~(IDECSR_LEGIRQ | IDECSR_P1EN | IDECSR_P1F16);
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pci_write_config_dword(devbusfn, WINDOND_IDECSR, reg32);
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pci_read_config_dword(devbusfn, PCI_BASE_ADDRESS_0, &ide_bus_offset[0]);
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ide_bus_offset[0] &= ~1;
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#if CONFIG_SYS_IDE_MAXBUS > 1
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pci_read_config_dword(devbusfn, PCI_BASE_ADDRESS_2, &ide_bus_offset[1]);
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ide_bus_offset[1] &= ~1;
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#endif
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/*
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* Enable function 1, IDE -> busmastering and IO space access
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*/
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pci_read_config_word(devbusfn, PCI_COMMAND, ®16);
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reg16 |= PCI_COMMAND_MASTER | PCI_COMMAND_IO;
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pci_write_config_word(devbusfn, PCI_COMMAND, reg16);
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/*
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* Initialise ISA interrupt controller
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*/
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initialise_pic();
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/*
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* Initialise DMA controller
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*/
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initialise_dma();
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}
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void initialise_pic(void)
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{
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out8(W83C553F_PIC1_ICW1, 0x11);
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out8(W83C553F_PIC1_ICW2, 0x08);
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out8(W83C553F_PIC1_ICW3, 0x04);
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out8(W83C553F_PIC1_ICW4, 0x01);
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out8(W83C553F_PIC1_OCW1, 0xfb);
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out8(W83C553F_PIC1_ELC, 0x20);
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out8(W83C553F_PIC2_ICW1, 0x11);
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out8(W83C553F_PIC2_ICW2, 0x08);
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out8(W83C553F_PIC2_ICW3, 0x02);
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out8(W83C553F_PIC2_ICW4, 0x01);
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out8(W83C553F_PIC2_OCW1, 0xff);
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out8(W83C553F_PIC2_ELC, 0xce);
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out8(W83C553F_TMR1_CMOD, 0x74);
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out8(W83C553F_PIC2_OCW1, 0x20);
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out8(W83C553F_PIC1_OCW1, 0x20);
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out8(W83C553F_PIC2_OCW1, 0x2b);
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out8(W83C553F_PIC1_OCW1, 0x2b);
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}
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void initialise_dma(void)
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{
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unsigned int channel;
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unsigned int rvalue1, rvalue2;
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/* perform a H/W reset of the devices */
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out8(W83C553F_DMA1 + W83C553F_DMA1_MC, 0x00);
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out16(W83C553F_DMA2 + W83C553F_DMA2_MC, 0x0000);
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/* initialise all channels to a sane state */
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for (channel = 0; channel < 4; channel++) {
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/*
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* dependent upon the channel, setup the specifics:
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*
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* demand
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* address-increment
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* autoinitialize-disable
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* verify-transfer
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*/
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switch (channel) {
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case 0:
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rvalue1 = (W83C553F_MODE_TM_DEMAND|W83C553F_MODE_CH0SEL|W83C553F_MODE_TT_VERIFY);
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rvalue2 = (W83C553F_MODE_TM_CASCADE|W83C553F_MODE_CH0SEL);
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break;
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case 1:
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rvalue1 = (W83C553F_MODE_TM_DEMAND|W83C553F_MODE_CH1SEL|W83C553F_MODE_TT_VERIFY);
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rvalue2 = (W83C553F_MODE_TM_DEMAND|W83C553F_MODE_CH1SEL|W83C553F_MODE_TT_VERIFY);
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break;
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case 2:
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rvalue1 = (W83C553F_MODE_TM_DEMAND|W83C553F_MODE_CH2SEL|W83C553F_MODE_TT_VERIFY);
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rvalue2 = (W83C553F_MODE_TM_DEMAND|W83C553F_MODE_CH2SEL|W83C553F_MODE_TT_VERIFY);
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break;
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case 3:
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rvalue1 = (W83C553F_MODE_TM_DEMAND|W83C553F_MODE_CH3SEL|W83C553F_MODE_TT_VERIFY);
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rvalue2 = (W83C553F_MODE_TM_DEMAND|W83C553F_MODE_CH3SEL|W83C553F_MODE_TT_VERIFY);
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break;
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default:
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rvalue1 = 0x00;
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rvalue2 = 0x00;
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break;
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}
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/* write to write mode registers */
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out8(W83C553F_DMA1 + W83C553F_DMA1_WM, rvalue1 & 0xFF);
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out16(W83C553F_DMA2 + W83C553F_DMA2_WM, rvalue2 & 0x00FF);
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}
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/* enable all channels */
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out8(W83C553F_DMA1 + W83C553F_DMA1_CM, 0x00);
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out16(W83C553F_DMA2 + W83C553F_DMA2_CM, 0x0000);
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/*
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* initialize the global DMA configuration
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*
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* DACK# active low
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* DREQ active high
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* fixed priority
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* channel group enable
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*/
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out8(W83C553F_DMA1 + W83C553F_DMA1_CS, 0x00);
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out16(W83C553F_DMA2 + W83C553F_DMA2_CS, 0x0000);
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}
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