Commit b6cb7ebe authored by Linus Torvalds's avatar Linus Torvalds

Merge bk://ppc.bkbits.net/for-linus-ppc

into home.transmeta.com:/home/torvalds/v2.5/linux
parents 7f4b5468 3dd8bc0d
......@@ -1060,13 +1060,7 @@ config HIGHMEM_START_BOOL
Say N here unless you know what you are doing.
config HIGHMEM_START
hex "Virtual start address of high memory pool"
depends on HIGHMEM_START_BOOL
default "0xfe000000"
config HIGHMEM_START
hex
depends on !HIGHMEM_START_BOOL
hex "Virtual start address of high memory pool" if HIGHMEM_START_BOOL
default "0xfe000000"
config LOWMEM_SIZE_BOOL
......@@ -1082,13 +1076,7 @@ config LOWMEM_SIZE_BOOL
Say N here unless you know what you are doing.
config LOWMEM_SIZE
hex "Maximum low memory size (in bytes)"
depends on LOWMEM_SIZE_BOOL
default "0x20000000"
config LOWMEM_SIZE
hex
depends on !LOWMEM_SIZE_BOOL
hex "Maximum low memory size (in bytes)" if LOWMEM_SIZE_BOOL
default "0x20000000"
config KERNEL_START_BOOL
......@@ -1103,13 +1091,7 @@ config KERNEL_START_BOOL
Say N here unless you know what you are doing.
config KERNEL_START
hex "Virtual address of kernel base"
depends on KERNEL_START_BOOL
default "0xc0000000"
config KERNEL_START
hex
depends on !KERNEL_START_BOOL
hex "Virtual address of kernel base" if KERNEL_START_BOOL
default "0xc0000000"
config TASK_SIZE_BOOL
......@@ -1123,13 +1105,7 @@ config TASK_SIZE_BOOL
Say N here unless you know what you are doing.
config TASK_SIZE
hex "Size of user task space"
depends on TASK_SIZE_BOOL
default "0x80000000"
config TASK_SIZE
hex
depends on !TASK_SIZE_BOOL
hex "Size of user task space" if TASK_SIZE_BOOL
default "0x80000000"
config BOOT_LOAD_BOOL
......@@ -1143,19 +1119,8 @@ config BOOT_LOAD_BOOL
Say N here unless you know what you are doing.
config BOOT_LOAD
hex "Link/load address for booting"
depends on BOOT_LOAD_BOOL
default "0x00400000"
# If we don't have a custom load, we define one here depending.
config BOOT_LOAD
hex
depends on !BOOT_LOAD_BOOL && (40x || 8xx || 8260)
default "0x00400000"
config BOOT_LOAD
hex
depends on !BOOT_LOAD_BOOL
hex "Link/load address for booting" if BOOT_LOAD_BOOL
default "0x00400000" if 40x || 8xx || 8260
default "0x00800000"
config PIN_TLB
......
......@@ -316,9 +316,31 @@ decompress_kernel(unsigned long load_addr, int num_words, unsigned long cksum,
{
struct bi_record *rec;
rec = (struct bi_record *)_ALIGN((unsigned long)(zimage_size) +
unsigned long initrd_loc;
unsigned long rec_loc = _ALIGN((unsigned long)(zimage_size) +
(1 << 20) - 1, (1 << 20));
rec = (struct bi_record *)rec_loc;
/* We need to make sure that the initrd and bi_recs do not
* overlap. */
if ( initrd_size ) {
initrd_loc = (unsigned long)(&__ramdisk_begin);
/* If the bi_recs are in the middle of the current
* initrd, move the initrd to the next MB
* boundary. */
if ((rec_loc > initrd_loc) &&
((initrd_loc + initrd_size)
> rec_loc)) {
initrd_loc = _ALIGN((unsigned long)(zimage_size)
+ (2 << 20) - 1, (2 << 20));
memmove((void *)initrd_loc, &__ramdisk_begin,
initrd_size);
puts("initrd moved: "); puthex(initrd_loc);
puts(" "); puthex(initrd_loc + initrd_size);
puts("\n");
}
}
rec->tag = BI_FIRST;
rec->size = sizeof(struct bi_record);
......@@ -348,7 +370,7 @@ decompress_kernel(unsigned long load_addr, int num_words, unsigned long cksum,
if ( initrd_size ) {
rec->tag = BI_INITRD;
rec->data[0] = (unsigned long)(&__ramdisk_begin);
rec->data[0] = initrd_loc;
rec->data[1] = initrd_size;
rec->size = sizeof(struct bi_record) + 2 *
sizeof(unsigned long);
......
......@@ -209,9 +209,30 @@ decompress_kernel(unsigned long load_addr, int num_words, unsigned long cksum, b
puts("done.\n");
{
struct bi_record *rec;
unsigned long initrd_loc;
unsigned long rec_loc = _ALIGN((unsigned long)(zimage_size) +
(1 << 20) - 1, (1 << 20));
rec = (struct bi_record *)rec_loc;
rec = (struct bi_record *)_ALIGN((unsigned long)zimage_size +
(1 << 20) - 1,(1 << 20));
/* We need to make sure that the initrd and bi_recs do not
* overlap. */
if ( initrd_size ) {
initrd_loc = (unsigned long)(&__ramdisk_begin);
/* If the bi_recs are in the middle of the current
* initrd, move the initrd to the next MB
* boundary. */
if ((rec_loc > initrd_loc) &&
((initrd_loc + initrd_size)
> rec_loc)) {
initrd_loc = _ALIGN((unsigned long)(zimage_size)
+ (2 << 20) - 1, (2 << 20));
memmove((void *)initrd_loc, &__ramdisk_begin,
initrd_size);
puts("initrd moved: "); puthex(initrd_loc);
puts(" "); puthex(initrd_loc + initrd_size);
puts("\n");
}
}
rec->tag = BI_FIRST;
rec->size = sizeof(struct bi_record);
......@@ -224,7 +245,7 @@ decompress_kernel(unsigned long load_addr, int num_words, unsigned long cksum, b
if ( initrd_size ) {
rec->tag = BI_INITRD;
rec->data[0] = (unsigned long)(&__ramdisk_begin);
rec->data[0] = initrd_loc;
rec->data[1] = initrd_size;
rec->size = sizeof(struct bi_record) + 2 *
sizeof(unsigned long);
......
......@@ -396,9 +396,30 @@ decompress_kernel(unsigned long load_addr, int num_words, unsigned long cksum)
{
struct bi_record *rec;
rec = (struct bi_record *)_ALIGN((ulong)zimage_size +
(1<<20)-1,(1<<20));
unsigned long initrd_loc;
unsigned long rec_loc = _ALIGN((unsigned long)(zimage_size) +
(1 << 20) - 1, (1 << 20));
rec = (struct bi_record *)rec_loc;
/* We need to make sure that the initrd and bi_recs do not
* overlap. */
if ( initrd_size ) {
initrd_loc = (unsigned long)(&__ramdisk_begin);
/* If the bi_recs are in the middle of the current
* initrd, move the initrd to the next MB
* boundary. */
if ((rec_loc > initrd_loc) &&
((initrd_loc + initrd_size)
> rec_loc)) {
initrd_loc = _ALIGN((unsigned long)(zimage_size)
+ (2 << 20) - 1, (2 << 20));
memmove((void *)initrd_loc, &__ramdisk_begin,
initrd_size);
puts("initrd moved: "); puthex(initrd_loc);
puts(" "); puthex(initrd_loc + initrd_size);
puts("\n");
}
}
rec->tag = BI_FIRST;
rec->size = sizeof(struct bi_record);
......@@ -421,7 +442,7 @@ decompress_kernel(unsigned long load_addr, int num_words, unsigned long cksum)
if ( initrd_size ) {
rec->tag = BI_INITRD;
rec->data[0] = (unsigned long)(&__ramdisk_begin);
rec->data[0] = initrd_loc;
rec->data[1] = initrd_size;
rec->size = sizeof(struct bi_record) + 2 *
sizeof(unsigned long);
......
......@@ -76,8 +76,8 @@ decompress_kernel(unsigned long load_addr, int num_words, unsigned long cksum)
{
int timer = 0;
char *cp, ch;
struct bi_record *rec, *birecs;
unsigned long TotalMemory = 0;
struct bi_record *rec;
unsigned long TotalMemory = 0, rec_loc, initrd_loc;
serial_fixups();
com_port = serial_init(0, NULL);
......@@ -197,10 +197,29 @@ decompress_kernel(unsigned long load_addr, int num_words, unsigned long cksum)
/*
* Create bi_recs for cmd_line and initrds
*/
rec = (struct bi_record *)_ALIGN((unsigned long)(zimage_size) +
rec_loc = _ALIGN((unsigned long)(zimage_size) +
(1 << 20) - 1, (1 << 20));
birecs = rec;
rec = (struct bi_record *)rec_loc;
/* We need to make sure that the initrd and bi_recs do not
* overlap. */
if ( initrd_size ) {
initrd_loc = (unsigned long)(&__ramdisk_begin);
/* If the bi_recs are in the middle of the current
* initrd, move the initrd to the next MB
* boundary. */
if ((rec_loc > initrd_loc) &&
((initrd_loc + initrd_size) > rec_loc)) {
initrd_loc = _ALIGN((unsigned long)(zimage_size)
+ (2 << 20) - 1, (2 << 20));
memmove((void *)initrd_loc, &__ramdisk_begin,
initrd_size);
puts("initrd moved: "); puthex(initrd_loc);
puts(" "); puthex(initrd_loc + initrd_size);
puts("\n");
}
}
rec->tag = BI_FIRST;
rec->size = sizeof(struct bi_record);
rec = (struct bi_record *)((unsigned long)rec + rec->size);
......@@ -219,7 +238,7 @@ decompress_kernel(unsigned long load_addr, int num_words, unsigned long cksum)
if ( initrd_size ) {
rec->tag = BI_INITRD;
rec->data[0] = (unsigned long)(&__ramdisk_begin);
rec->data[0] = initrd_loc;
rec->data[1] = initrd_size;
rec->size = sizeof(struct bi_record) + 2 *
sizeof(unsigned long);
......@@ -233,5 +252,5 @@ decompress_kernel(unsigned long load_addr, int num_words, unsigned long cksum)
puts("Now booting the kernel\n");
serial_close(com_port);
return birecs;
return (struct bi_record *)rec_loc;
}
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......@@ -286,13 +286,11 @@ void do_settimeofday(struct timeval *tv)
write_unlock_irqrestore(&xtime_lock, flags);
}
/* This function is only called on the boot processor */
void __init time_init(void)
{
time_t sec, old_sec;
unsigned old_stamp, stamp, elapsed;
/* This function is only called on the boot processor */
unsigned long flags;
if (ppc_md.time_init != NULL)
time_offset = ppc_md.time_init();
......@@ -309,31 +307,31 @@ void __init time_init(void)
/* Now that the decrementer is calibrated, it can be used in case the
* clock is stuck, but the fact that we have to handle the 601
* makes things more complex. Repeatedly read the RTC until the
* next second boundary to try to achieve some precision...
* next second boundary to try to achieve some precision. If there
* is no RTC, we still need to set tb_last_stamp and
* last_jiffy_stamp(cpu 0) to the current stamp.
*/
stamp = get_native_tbl();
if (ppc_md.get_rtc_time) {
stamp = get_native_tbl();
sec = ppc_md.get_rtc_time();
elapsed = 0;
do {
old_stamp = stamp;
old_sec = sec;
stamp = get_native_tbl();
if (__USE_RTC() && stamp < old_stamp) old_stamp -= 1000000000;
if (__USE_RTC() && stamp < old_stamp)
old_stamp -= 1000000000;
elapsed += stamp - old_stamp;
sec = ppc_md.get_rtc_time();
} while ( sec == old_sec && elapsed < 2*HZ*tb_ticks_per_jiffy);
if (sec==old_sec) {
if (sec==old_sec)
printk("Warning: real time clock seems stuck!\n");
}
write_lock_irqsave(&xtime_lock, flags);
xtime.tv_sec = sec;
last_jiffy_stamp(0) = tb_last_stamp = stamp;
xtime.tv_nsec = 0;
/* No update now, we just read the time from the RTC ! */
last_rtc_update = xtime.tv_sec;
write_unlock_irqrestore(&xtime_lock, flags);
}
last_jiffy_stamp(0) = tb_last_stamp = stamp;
/* Not exact, but the timer interrupt takes care of this */
set_dec(tb_ticks_per_jiffy);
......
......@@ -13,6 +13,9 @@ choice
config ASH
bool "Ash"
config BEECH
bool "Beech"
config CEDAR
bool "Cedar"
......@@ -38,6 +41,9 @@ config REDWOOD_4
config REDWOOD_5
bool "Redwood-5"
config REDWOOD_6
bool "Redwood-6"
config TIVO
bool "Tivo"
......@@ -75,7 +81,7 @@ config IBM405_ERR51
config IBM_OCP
bool
depends on ASH || CEDAR || CPCI405 || EP405 || REDWOOD_4 || REDWOOD_5 || WALNUT
depends on ASH || BEECH || CEDAR || CPCI405 || EP405 || REDWOOD_4 || REDWOOD_5 || REDWOOD_6 || WALNUT
default y
config NP405L
......@@ -100,7 +106,7 @@ config 405GP
config STB03xxx
bool
depends on REDWOOD_5 || REDWOOD_4
depends on REDWOOD_5 || REDWOOD_4 || REDWOOD_6
default y
config EMBEDDEDBOOT
......@@ -110,7 +116,7 @@ config EMBEDDEDBOOT
config IBM_OPENBIOS
bool
depends on ASH || CEDAR || REDWOOD_4 || REDWOOD_5 || WALNUT
depends on ASH || BEECH || CEDAR || REDWOOD_4 || REDWOOD_5 || REDWOOD_6 || WALNUT
default y
config 405_DMA
......
#
# Makefile for the PowerPC 4xx linux kernel.
export-objs := ibm405lp.o
obj-$(CONFIG_ASH) += ash.o
obj-$(CONFIG_BEECH) += beech.o
obj-$(CONFIG_CEDAR) += cedar.o
obj-$(CONFIG_CPCI405) += cpci405.o
obj-$(CONFIG_EP405) += ep405.o
obj-$(CONFIG_OAK) += oak.o
obj-$(CONFIG_REDWOOD_4) += redwood.o
obj-$(CONFIG_REDWOOD_5) += redwood5.o
obj-$(CONFIG_REDWOOD_6) += redwood6.o
obj-$(CONFIG_WALNUT) += walnut.o
obj-$(CONFIG_NP405L) += ibmnp405l.o
......@@ -15,3 +19,7 @@ obj-$(CONFIG_405GP) += ibm405gp.o
obj-$(CONFIG_REDWOOD_4) += ibmstb3.o
obj-$(CONFIG_REDWOOD_5) += ibmstb4.o
obj-$(CONFIG_NP405H) += ibmnp405h.o
obj-$(CONFIG_REDWOOD_6) += ibmstbx25.o
obj-$(CONFIG_NP4GS3) += ibmnp4gs.o
obj-$(CONFIG_405LP) += ibm405lp.o
obj-$(CONFIG_405GPR) += ibm405gpr.o
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/*
*
*
* Copyright 2000 MontaVista Software Inc.
* Copyright 2000-2002 MontaVista Software Inc.
* Author: MontaVista Software, Inc.
* akuster@mvista.com or source@mvista.com
*
......@@ -17,7 +17,7 @@
#ifdef __KERNEL__
#ifndef __ASM_ASH_H__
#define __ASM_ASH_H__
#include <platforms/4xx/ibm_ocp.h>
#include <asm/ibm_ocp.h>
#include <platforms/4xx/ibmnp405h.h>
#ifndef __ASSEMBLY__
......@@ -32,7 +32,7 @@ typedef struct board_info {
unsigned char bi_s_version[4]; /* Version of this structure */
unsigned char bi_r_version[30]; /* Version of the IBM ROM */
unsigned int bi_memsize; /* DRAM installed, in bytes */
unsigned char bi_enetaddr[EMAC_NUMS][6]; /* Local Ethernet MAC address */
unsigned char bi_enetaddr[4][6]; /* Local Ethernet MAC address */
unsigned char bi_pci_enetaddr[6];
unsigned int bi_intfreq; /* Processor speed, in Hz */
unsigned int bi_busfreq; /* PLB Bus speed, in Hz */
......@@ -76,7 +76,7 @@ extern void *ash_rtc_base;
#define BASE_BAUD 691200
#endif
#define PPC4xx_MACHINE_NAME "IBM NP405H Ceder"
#define PPC4xx_MACHINE_NAME "IBM NP405H Ash"
extern char pci_irq_table[][4];
......
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......@@ -11,73 +11,75 @@
#include <asm/machdep.h>
#include <asm/io.h>
#ifdef CONFIG_PPC_RTC
#include <asm/todc.h>
#endif
void *ceder_rtc_base;
void *cedar_rtc_base;
void __init
board_setup_arch(void)
cedar_setup_arch(void)
{
bd_t *bip = &__res;
bd_t *bip = (bd_t *)__res;
/* RTC step for the walnut */
cedar_rtc_base = (void *) CEDAR_RTC_VADDR;
TODC_INIT(TODC_TYPE_DS1743, cedar_rtc_base, cedar_rtc_base,
cedar_rtc_base, 8);
#ifdef CONFIG_PPC_RTC
/* RTC step for the walnut */
ceder_rtc_base = (void *) CEDER_RTC_VADDR;
TODC_INIT(TODC_TYPE_DS1743, ceder_rtc_base, ceder_rtc_base,ceder_rtc_base, 8);
#endif /* CONFIG_PPC_RTC */
#define CONFIG_DEBUG_BRINGUP
#ifdef CONFIG_DEBUG_BRINGUP
printk("\n");
printk("machine\t: %s\n", PPC4xx_MACHINE_NAME);
printk("\n");
printk("bi_s_version\t %s\n", bip->bi_s_version);
printk("bi_r_version\t %s\n", bip->bi_r_version);
printk("bi_memsize\t 0x%8.8x\t %dMBytes\n", bip->bi_memsize,bip->bi_memsize/(1024*1000));
printk("bi_s_version\t %s\n", bip->bi_s_version);
printk("bi_r_version\t %s\n", bip->bi_r_version);
printk("bi_memsize\t 0x%8.8x\t %dMBytes\n", bip->bi_memsize,
bip->bi_memsize / (1024 * 1000));
printk("bi_enetaddr %d\t %2.2x%2.2x%2.2x-%2.2x%2.2x%2.2x\n", 0,
bip->bi_enetaddr[0][0], bip->bi_enetaddr[0][1],
bip->bi_enetaddr[0][2], bip->bi_enetaddr[0][3],
bip->bi_enetaddr[0][4], bip->bi_enetaddr[0][5]);
bip->bi_enetaddr[0][0], bip->bi_enetaddr[0][1],
bip->bi_enetaddr[0][2], bip->bi_enetaddr[0][3],
bip->bi_enetaddr[0][4], bip->bi_enetaddr[0][5]);
printk("bi_enetaddr %d\t %2.2x%2.2x%2.2x-%2.2x%2.2x%2.2x\n", 1,
bip->bi_enetaddr[1][0], bip->bi_enetaddr[1][1],
bip->bi_enetaddr[1][2], bip->bi_enetaddr[1][3],
bip->bi_enetaddr[1][4], bip->bi_enetaddr[1][5]);
bip->bi_enetaddr[1][0], bip->bi_enetaddr[1][1],
bip->bi_enetaddr[1][2], bip->bi_enetaddr[1][3],
bip->bi_enetaddr[1][4], bip->bi_enetaddr[1][5]);
printk("bi_intfreq\t 0x%8.8x\t clock:\t %dMhz\n",
bip->bi_intfreq, bip->bi_intfreq/ 1000000);
bip->bi_intfreq, bip->bi_intfreq / 1000000);
printk("bi_busfreq\t 0x%8.8x\t plb bus clock:\t %dMHz\n",
bip->bi_busfreq, bip->bi_busfreq / 1000000 );
bip->bi_busfreq, bip->bi_busfreq / 1000000);
printk("bi_pci_busfreq\t 0x%8.8x\t pci bus clock:\t %dMHz\n",
bip->bi_pci_busfreq, bip->bi_pci_busfreq/1000000);
bip->bi_pci_busfreq, bip->bi_pci_busfreq / 1000000);
printk("\n");
#endif
}
void __init
board_io_mapping(void)
{
io_block_mapping(CEDER_RTC_VADDR,
CEDER_RTC_PADDR, CEDER_RTC_SIZE, _PAGE_IO);
/* Identify the system */
printk
("IBM Cedar port (C) 2002 MontaVista Software, Inc. (source@mvista.com)\n");
}
void __init
board_setup_irq(void)
cedar_map_io(void)
{
ppc4xx_map_io();
io_block_mapping(CEDAR_RTC_VADDR,
CEDAR_RTC_PADDR, CEDAR_RTC_SIZE, _PAGE_IO);
}
void __init
board_init(void)
platform_init(unsigned long r3, unsigned long r4, unsigned long r5,
unsigned long r6, unsigned long r7)
{
#ifdef CONFIG_PPC_RTC
ppc4xx_init(r3, r4, r5, r6, r7);
ppc_md.setup_arch = cedar_setup_arch;
ppc_md.setup_io_mappings = cedar_map_io;
ppc_md.time_init = todc_time_init;
ppc_md.set_rtc_time = todc_set_rtc_time;
ppc_md.get_rtc_time = todc_get_rtc_time;
ppc_md.nvram_read_val = todc_direct_read_val;
ppc_md.nvram_write_val = todc_direct_write_val;
#endif
}
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......@@ -13,9 +13,6 @@
* Free Software Foundation; either version 2 of the License, or (at your
* option) any later version.
*
* History: 11/09/2001 - armin
* added board_init to add in additional instuctions needed during platfrom_init
*
*/
#include <linux/config.h>
......@@ -26,6 +23,8 @@
#include <asm/machdep.h>
#include <asm/todc.h>
void *cpci405_nvram;
/*
* Some IRQs unique to CPCI-405.
*/
......@@ -51,28 +50,31 @@ ppc405_map_irq(struct pci_dev *dev, unsigned char idsel, unsigned char pin)
};
void __init
board_setup_arch(void)
cpci405_setup_arch(void)
{
ppc4xx_setup_arch();
TODC_INIT(TODC_TYPE_MK48T35, cpci405_nvram, cpci405_nvram, cpci405_nvram, 8);
}
void __init
board_io_mapping(void)
cpci405_map_io(void)
{
ppc4xx_map_io();
cpci405_nvram = ioremap(CPCI405_NVRAM_PADDR, CPCI405_NVRAM_SIZE);
}
void __init
board_setup_irq(void)
platform_init(unsigned long r3, unsigned long r4, unsigned long r5,
unsigned long r6, unsigned long r7)
{
}
ppc4xx_init(r3, r4, r5, r6, r7);
ppc_md.setup_arch = cpci405_setup_arch;
ppc_md.setup_io_mappings = cpci405_map_io;
void __init
board_init(void)
{
#ifdef CONFIG_PPC_RTC
ppc_md.time_init = todc_time_init;
ppc_md.set_rtc_time = todc_set_rtc_time;
ppc_md.get_rtc_time = todc_get_rtc_time;
ppc_md.nvram_read_val = todc_direct_read_val;
ppc_md.nvram_write_val = todc_direct_write_val;
#endif
}
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