board_pci_setup_hose(hose);
pci_setup_type1(hose);
hose->last_busno = pci_hose_scan(hose);
- gd->arch.hose = hose;
+ gd->hose = hose;
*hosep = hose;
return 0;
struct pci_controller *hose = &x86_hose;
/* Stop using the early hose */
- gd->arch.hose = NULL;
+ gd->hose = NULL;
board_pci_setup_hose(hose);
pci_setup_type1(hose);
static struct pci_controller *get_hose(void)
{
- if (gd->arch.hose)
- return gd->arch.hose;
+ if (gd->hose)
+ return gd->hose;
return pci_bus_to_hose(0);
}
uint32_t tsc_mhz; /* TSC frequency in MHz */
void *new_fdt; /* Relocated FDT */
uint32_t bist; /* Built-in self test value */
- struct pci_controller *hose; /* PCI hose for early use */
enum pei_boot_mode_t pei_boot_mode;
const struct pch_gpio_map *gpio_map; /* board GPIO map */
struct memory_info meminfo; /* Memory information */
* pci_early_init_hose() - Set up PCI host before relocation
*
* This allocates memory for, sets up and returns the PCI hose. It can be
- * called before relocation. The hose will be stored in gd->arch.hose for
+ * called before relocation. The hose will be stored in gd->hose for
* later use, but will become invalid one DRAM is available.
*/
int pci_early_init_hose(struct pci_controller **hosep);
#include <asm/io.h>
#include <pci.h>
+DECLARE_GLOBAL_DATA_PTR;
+
#define PCI_HOSE_OP(rw, size, type) \
int pci_hose_##rw##_config_##size(struct pci_controller *hose, \
pci_dev_t dev, \
static struct pci_controller* hose_head;
+struct pci_controller *pci_get_hose_head(void)
+{
+ if (gd->hose)
+ return gd->hose;
+
+ return hose_head;
+}
+
void pci_register_hose(struct pci_controller* hose)
{
struct pci_controller **phose = &hose_head;
{
struct pci_controller *hose;
- for (hose = hose_head; hose; hose = hose->next) {
+ for (hose = pci_get_hose_head(); hose; hose = hose->next) {
if (bus >= hose->first_busno && bus <= hose->last_busno)
return hose;
}
{
struct pci_controller *hose;
- for (hose = hose_head; hose; hose = hose->next) {
+ for (hose = pci_get_hose_head(); hose; hose = hose->next) {
if (hose->cfg_addr == cfg_addr)
return hose;
}
int pci_last_busno(void)
{
- struct pci_controller *hose = hose_head;
+ struct pci_controller *hose = pci_get_hose_head();
if (!hose)
return -1;
pci_dev_t bdf;
int i, bus, found_multi = 0;
- for (hose = hose_head; hose; hose = hose->next) {
+ for (hose = pci_get_hose_head(); hose; hose = hose->next) {
#ifdef CONFIG_SYS_SCSI_SCAN_BUS_REVERSE
for (bus = hose->last_busno; bus >= hose->first_busno; bus--)
#else
pci_dev_t pci_find_device(unsigned int vendor, unsigned int device, int index)
{
- static struct pci_device_id ids[2] = {{}, {0, 0}};
+ struct pci_device_id ids[2] = { {}, {0, 0} };
ids[0].vendor = vendor;
ids[0].device = device;
int pci_hose_scan(struct pci_controller *hose)
{
#if defined(CONFIG_PCI_BOOTDELAY)
- static int pcidelay_done;
char *s;
int i;
- if (!pcidelay_done) {
+ if (!gd->pcidelay_done) {
/* wait "pcidelay" ms (if defined)... */
s = getenv("pcidelay");
if (s) {
for (i = 0; i < val; i++)
udelay(1000);
}
- pcidelay_done = 1;
+ gd->pcidelay_done = 1;
}
#endif /* CONFIG_PCI_BOOTDELAY */