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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u-boot/cpu/mcf5445x/pci.c

189 lines
5.5 KiB

/*
* Copyright (C) 2004-2007 Freescale Semiconductor, Inc.
* TsiChung Liew (Tsi-Chung.Liew@freescale.com)
*
* See file CREDITS for list of people who contributed to this
* project.
*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License as
* published by the Free Software Foundation; either version 2 of
* the License, or (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston,
* MA 02111-1307 USA
*/
/*
* PCI Configuration space access support
*/
#include <common.h>
#include <pci.h>
#include <asm/io.h>
#include <asm/immap.h>
#if defined(CONFIG_PCI)
/* System RAM mapped over PCI */
#define CFG_PCI_SYS_MEM_BUS CFG_SDRAM_BASE
#define CFG_PCI_SYS_MEM_PHYS CFG_SDRAM_BASE
#define CFG_PCI_SYS_MEM_SIZE (1024 * 1024 * 1024)
#define cfg_read(val, addr, type, op) *val = op((type)(addr));
#define cfg_write(val, addr, type, op) op((type *)(addr), (val));
#define PCI_OP(rw, size, type, op, mask) \
int pci_##rw##_cfg_##size(struct pci_controller *hose, \
pci_dev_t dev, int offset, type val) \
{ \
u32 addr = 0; \
u16 cfg_type = 0; \
addr = ((offset & 0xfc) | cfg_type | (dev) | 0x80000000); \
out_be32(hose->cfg_addr, addr); \
__asm__ __volatile__("nop"); \
cfg_##rw(val, hose->cfg_data + (offset & mask), type, op); \
out_be32(hose->cfg_addr, addr & 0x7fffffff); \
__asm__ __volatile__("nop"); \
return 0; \
}
PCI_OP(read, byte, u8 *, in_8, 3)
PCI_OP(read, word, u16 *, in_le16, 2)
PCI_OP(write, byte, u8, out_8, 3)
PCI_OP(write, word, u16, out_le16, 2)
PCI_OP(write, dword, u32, out_le32, 0)
int pci_read_cfg_dword(struct pci_controller *hose, pci_dev_t dev,
int offset, u32 * val)
{
u32 addr;
u32 tmpv;
u32 mask = 2; /* word access */
/* Read lower 16 bits */
addr = ((offset & 0xfc) | (dev) | 0x80000000);
out_be32(hose->cfg_addr, addr);
__asm__ __volatile__("nop");
*val = (u32) in_le16((u16 *) (hose->cfg_data + (offset & mask)));
out_be32(hose->cfg_addr, addr & 0x7fffffff);
__asm__ __volatile__("nop");
/* Read upper 16 bits */
offset += 2;
addr = ((offset & 0xfc) | 1 | (dev) | 0x80000000);
out_be32(hose->cfg_addr, addr);
__asm__ __volatile__("nop");
tmpv = (u32) in_le16((u16 *) (hose->cfg_data + (offset & mask)));
out_be32(hose->cfg_addr, addr & 0x7fffffff);
__asm__ __volatile__("nop");
/* combine results into dword value */
*val = (tmpv << 16) | *val;
return 0;
}
void pci_mcf5445x_init(struct pci_controller *hose)
{
volatile pci_t *pci = (volatile pci_t *)MMAP_PCI;
volatile pciarb_t *pciarb = (volatile pciarb_t *)MMAP_PCIARB;
volatile gpio_t *gpio = (gpio_t *) MMAP_GPIO;
u32 barEn = 0;
pciarb->acr = 0x001f001f;
/* Set PCIGNT1, PCIREQ1, PCIREQ0/PCIGNTIN, PCIGNT0/PCIREQOUT,
PCIREQ2, PCIGNT2 */
gpio->par_pci =
GPIO_PAR_PCI_GNT3_GNT3 | GPIO_PAR_PCI_GNT2 | GPIO_PAR_PCI_GNT1 |
GPIO_PAR_PCI_GNT0 | GPIO_PAR_PCI_REQ3_REQ3 | GPIO_PAR_PCI_REQ2 |
GPIO_PAR_PCI_REQ1 | GPIO_PAR_PCI_REQ0;
pci->tcr1 |= PCI_TCR1_P;
/* Initiator windows */
pci->iw0btar = CFG_PCI_MEM_PHYS;
pci->iw1btar = CFG_PCI_IO_PHYS;
pci->iw2btar = CFG_PCI_CFG_PHYS;
pci->iwcr =
PCI_IWCR_W0C_EN | PCI_IWCR_W1C_EN | PCI_IWCR_W1C_IO |
PCI_IWCR_W2C_EN | PCI_IWCR_W2C_IO;
/* Enable bus master and mem access */
pci->scr = PCI_SCR_MW | PCI_SCR_B | PCI_SCR_M;
/* Cache line size and master latency */
pci->cr1 = PCI_CR1_CLS(8) | PCI_CR1_LTMR(0xFF);
pci->cr2 = 0;
#ifdef CFG_PCI_BAR0
pci->bar0 = PCI_BAR_BAR0(CFG_PCI_BAR0);
pci->tbatr0 = CFG_PCI_TBATR0 | PCI_TBATR_EN;
barEn |= PCI_TCR1_B0E;
#endif
#ifdef CFG_PCI_BAR1
pci->bar1 = PCI_BAR_BAR1(CFG_PCI_BAR1);
pci->tbatr1 = CFG_PCI_TBATR1 | PCI_TBATR_EN;
barEn |= PCI_TCR1_B1E;
#endif
#ifdef CFG_PCI_BAR2
pci->bar2 = PCI_BAR_BAR2(CFG_PCI_BAR2);
pci->tbatr2 = CFG_PCI_TBATR2 | PCI_TBATR_EN;
barEn |= PCI_TCR1_B2E;
#endif
#ifdef CFG_PCI_BAR3
pci->bar3 = PCI_BAR_BAR3(CFG_PCI_BAR3);
pci->tbatr3 = CFG_PCI_TBATR3 | PCI_TBATR_EN;
barEn |= PCI_TCR1_B3E;
#endif
#ifdef CFG_PCI_BAR4
pci->bar4 = PCI_BAR_BAR4(CFG_PCI_BAR4);
pci->tbatr4 = CFG_PCI_TBATR4 | PCI_TBATR_EN;
barEn |= PCI_TCR1_B4E;
#endif
#ifdef CFG_PCI_BAR5
pci->bar5 = PCI_BAR_BAR5(CFG_PCI_BAR5);
pci->tbatr5 = CFG_PCI_TBATR5 | PCI_TBATR_EN;
barEn |= PCI_TCR1_B5E;
#endif
pci->tcr2 = barEn;
/* Deassert reset bit */
pci->gscr &= ~PCI_GSCR_PR;
udelay(1000);
/* Enable PCI bus master support */
hose->first_busno = 0;
hose->last_busno = 0xff;
pci_set_region(hose->regions + 0, CFG_PCI_MEM_BUS, CFG_PCI_MEM_PHYS,
CFG_PCI_MEM_SIZE, PCI_REGION_MEM);
pci_set_region(hose->regions + 1, CFG_PCI_IO_BUS, CFG_PCI_IO_PHYS,
CFG_PCI_IO_SIZE, PCI_REGION_IO);
pci_set_region(hose->regions + 2, CFG_PCI_SYS_MEM_BUS,
CFG_PCI_SYS_MEM_PHYS, CFG_PCI_SYS_MEM_SIZE,
PCI_REGION_MEM | PCI_REGION_MEMORY);
hose->region_count = 3;
hose->cfg_addr = &(pci->car);
hose->cfg_data = (volatile unsigned char *)CFG_PCI_CFG_BUS;
pci_set_ops(hose, pci_read_cfg_byte, pci_read_cfg_word,
pci_read_cfg_dword, pci_write_cfg_byte, pci_write_cfg_word,
pci_write_cfg_dword);
/* Hose scan */
pci_register_hose(hose);
hose->last_busno = pci_hose_scan(hose);
}
#endif /* CONFIG_PCI */