mirror of
https://github.com/AsahiLinux/u-boot
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c83bf6a2d0
board-specific files to invoke that common implementation.
247 lines
5.6 KiB
C
247 lines
5.6 KiB
C
/*
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* GNU General Public License for more details.
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*
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* MATRIX Vision GmbH / June 2002-Nov 2003
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* Andre Schwarz
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*/
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#include <common.h>
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#include <mpc824x.h>
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#include <asm/io.h>
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#include <ns16550.h>
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#ifdef CONFIG_PCI
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#include <pci.h>
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#endif
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u32 get_BoardType (void);
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#define PCI_CONFIG(b,d,f,r) cpu_to_le32(0x80000000 | ((b&0xff)<<16) \
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| ((d&0x1f)<<11) \
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| ((f&0x7)<<7) \
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| (r&0xfc) )
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int mv_pci_read (int bus, int dev, int func, int reg)
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{
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*(u32 *) (0xfec00cf8) = PCI_CONFIG (bus, dev, func, reg);
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asm ("sync");
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return cpu_to_le32 (*(u32 *) (0xfee00cfc));
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}
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u32 get_BoardType ()
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{
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return (mv_pci_read (0, 0xe, 0, 0) == 0x06801095 ? 0 : 1);
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}
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void init_2nd_DUART (void)
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{
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NS16550_t console = (NS16550_t) CFG_NS16550_COM2;
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int clock_divisor = CFG_NS16550_CLK / 16 / CONFIG_BAUDRATE;
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*(u8 *) (0xfc004511) = 0x1;
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NS16550_init (console, clock_divisor);
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}
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void hw_watchdog_reset (void)
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{
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if (get_BoardType () == 0) {
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*(u32 *) (0xff000005) = 0;
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asm ("sync");
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}
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}
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int checkboard (void)
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{
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DECLARE_GLOBAL_DATA_PTR;
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ulong busfreq = get_bus_freq (0);
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char buf[32];
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u32 BoardType = get_BoardType ();
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char *BoardName[2] = { "mvBlueBOX", "mvBlueLYNX" };
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char *p;
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bd_t *bd = gd->bd;
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hw_watchdog_reset ();
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printf ("U-Boot (%s) running on mvBLUE device.\n", MV_VERSION);
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printf (" Found %s running at %s MHz memory clock.\n",
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BoardName[BoardType], strmhz (buf, busfreq));
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init_2nd_DUART ();
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if ((p = getenv ("console_nr")) != NULL) {
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unsigned long con_nr = simple_strtoul (p, NULL, 10) & 3;
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bd->bi_baudrate &= ~3;
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bd->bi_baudrate |= con_nr & 3;
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}
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return 0;
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}
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long int initdram (int board_type)
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{
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long size;
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long new_bank0_end;
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long mear1;
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long emear1;
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size = get_ram_size(CFG_SDRAM_BASE, CFG_MAX_RAM_SIZE);
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new_bank0_end = size - 1;
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mear1 = mpc824x_mpc107_getreg(MEAR1);
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emear1 = mpc824x_mpc107_getreg(EMEAR1);
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mear1 = (mear1 & 0xFFFFFF00) |
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((new_bank0_end & MICR_ADDR_MASK) >> MICR_ADDR_SHIFT);
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emear1 = (emear1 & 0xFFFFFF00) |
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((new_bank0_end & MICR_ADDR_MASK) >> MICR_EADDR_SHIFT);
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mpc824x_mpc107_setreg(MEAR1, mear1);
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mpc824x_mpc107_setreg(EMEAR1, emear1);
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return (size);
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}
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/* ------------------------------------------------------------------------- */
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u8 *dhcp_vendorex_prep (u8 * e)
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{
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char *ptr;
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/* DHCP vendor-class-identifier = 60 */
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if ((ptr = getenv ("dhcp_vendor-class-identifier"))) {
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*e++ = 60;
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*e++ = strlen (ptr);
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while (*ptr)
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*e++ = *ptr++;
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}
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/* my DHCP_CLIENT_IDENTIFIER = 61 */
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if ((ptr = getenv ("dhcp_client_id"))) {
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*e++ = 61;
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*e++ = strlen (ptr);
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while (*ptr)
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*e++ = *ptr++;
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}
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return e;
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}
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u8 *dhcp_vendorex_proc (u8 * popt)
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{
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return NULL;
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}
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/* ------------------------------------------------------------------------- */
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/*
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* Initialize PCI Devices
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*/
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#ifdef CONFIG_PCI
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void pci_mvblue_clear_base (struct pci_controller *hose, pci_dev_t dev)
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{
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u32 cnt;
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printf ("clear base @ dev/func 0x%02x/0x%02x ... ", PCI_DEV (dev),
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PCI_FUNC (dev));
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for (cnt = 0; cnt < 6; cnt++)
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pci_hose_write_config_dword (hose, dev, 0x10 + (4 * cnt),
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0x0);
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printf ("done\n");
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}
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void duart_setup (u32 base, u16 divisor)
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{
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printf ("duart setup ...");
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out_8 ((u8 *) (CFG_ISA_IO + base + 3), 0x80);
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out_8 ((u8 *) (CFG_ISA_IO + base + 0), divisor & 0xff);
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out_8 ((u8 *) (CFG_ISA_IO + base + 1), divisor >> 8);
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out_8 ((u8 *) (CFG_ISA_IO + base + 3), 0x03);
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out_8 ((u8 *) (CFG_ISA_IO + base + 4), 0x03);
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out_8 ((u8 *) (CFG_ISA_IO + base + 2), 0x07);
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printf ("done\n");
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}
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void pci_mvblue_fixup_irq_behind_bridge (struct pci_controller *hose,
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pci_dev_t bridge, unsigned char irq)
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{
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pci_dev_t d;
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unsigned char bus;
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unsigned short vendor, class;
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pci_hose_read_config_byte (hose, bridge, PCI_SECONDARY_BUS, &bus);
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for (d = PCI_BDF (bus, 0, 0);
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d < PCI_BDF (bus, PCI_MAX_PCI_DEVICES - 1,
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PCI_MAX_PCI_FUNCTIONS - 1);
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d += PCI_BDF (0, 0, 1)) {
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pci_hose_read_config_word (hose, d, PCI_VENDOR_ID, &vendor);
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if (vendor != 0xffff && vendor != 0x0000) {
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pci_hose_read_config_word (hose, d, PCI_CLASS_DEVICE,
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&class);
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if (class == PCI_CLASS_BRIDGE_PCI)
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pci_mvblue_fixup_irq_behind_bridge (hose, d,
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irq);
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else
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pci_hose_write_config_byte (hose, d,
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PCI_INTERRUPT_LINE,
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irq);
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}
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}
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}
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#define MV_MAX_PCI_BUSSES 3
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#define SLOT0_IRQ 3
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#define SLOT1_IRQ 4
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void pci_mvblue_fixup_irq (struct pci_controller *hose, pci_dev_t dev)
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{
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unsigned char line = 0xff;
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unsigned short class;
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if (PCI_BUS (dev) == 0) {
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switch (PCI_DEV (dev)) {
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case 0xd:
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if (get_BoardType () == 0) {
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line = 1;
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} else
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/* mvBL */
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line = 2;
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break;
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case 0xe:
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/* mvBB: IDE */
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line = 2;
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pci_hose_write_config_byte (hose, dev, 0x8a, 0x20);
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break;
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case 0xf:
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/* mvBB: Slot0 (Grabber) */
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pci_hose_read_config_word (hose, dev,
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PCI_CLASS_DEVICE, &class);
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if (class == PCI_CLASS_BRIDGE_PCI) {
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pci_mvblue_fixup_irq_behind_bridge (hose, dev,
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SLOT0_IRQ);
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line = 0xff;
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} else
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line = SLOT0_IRQ;
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break;
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case 0x10:
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/* mvBB: Slot1 */
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pci_hose_read_config_word (hose, dev,
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PCI_CLASS_DEVICE, &class);
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if (class == PCI_CLASS_BRIDGE_PCI) {
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pci_mvblue_fixup_irq_behind_bridge (hose, dev,
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SLOT1_IRQ);
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line = 0xff;
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} else
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line = SLOT1_IRQ;
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break;
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default:
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printf ("***pci_scan: illegal dev = 0x%08x\n",
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PCI_DEV (dev));
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line = 0xff;
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break;
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}
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pci_hose_write_config_byte (hose, dev, PCI_INTERRUPT_LINE,
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line);
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}
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}
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struct pci_controller hose = {
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fixup_irq:pci_mvblue_fixup_irq
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};
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void pci_init_board (void)
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{
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pci_mpc824x_init (&hose);
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}
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#endif
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