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/*
* Copyright ( C ) 2004 , 2007 - 2010 , 2011 - 2012 Synopsys , Inc . ( www . synopsys . com )
*
* This program is free software ; you can redistribute it and / or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation .
*/
# include <linux/seq_file.h>
# include <linux/fs.h>
# include <linux/delay.h>
# include <linux/root_dev.h>
# include <linux/console.h>
# include <linux/module.h>
# include <linux/cpu.h>
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# include <linux/clk-provider.h>
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# include <linux/of_fdt.h>
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# include <linux/of_platform.h>
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# include <linux/cache.h>
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# include <asm/sections.h>
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# include <asm/arcregs.h>
# include <asm/tlb.h>
# include <asm/setup.h>
# include <asm/page.h>
# include <asm/irq.h>
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# include <asm/unwind.h>
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# include <asm/clk.h>
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# include <asm/mach_desc.h>
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# include <asm/smp.h>
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# define FIX_PTR(x) __asm__ __volatile__(";" : "+r"(x))
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/* Part of U-boot ABI: see head.S */
int __initdata uboot_tag ;
char __initdata * uboot_arg ;
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const struct machine_desc * machine_desc ;
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struct task_struct * _current_task [ NR_CPUS ] ; /* For stack switching */
struct cpuinfo_arc cpuinfo_arc700 [ NR_CPUS ] ;
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static void read_arc_build_cfg_regs ( void )
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{
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struct bcr_perip uncached_space ;
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struct bcr_generic bcr ;
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struct cpuinfo_arc * cpu = & cpuinfo_arc700 [ smp_processor_id ( ) ] ;
FIX_PTR ( cpu ) ;
READ_BCR ( AUX_IDENTITY , cpu - > core ) ;
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READ_BCR ( ARC_REG_ISA_CFG_BCR , cpu - > isa ) ;
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READ_BCR ( ARC_REG_TIMERS_BCR , cpu - > timers ) ;
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cpu - > vec_base = read_aux_reg ( AUX_INTR_VEC_BASE ) ;
READ_BCR ( ARC_REG_D_UNCACH_BCR , uncached_space ) ;
cpu - > uncached_base = uncached_space . start < < 24 ;
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READ_BCR ( ARC_REG_MUL_BCR , cpu - > extn_mpy ) ;
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cpu - > extn . norm = read_aux_reg ( ARC_REG_NORM_BCR ) > 1 ? 1 : 0 ; /* 2,3 */
cpu - > extn . barrel = read_aux_reg ( ARC_REG_BARREL_BCR ) > 1 ? 1 : 0 ; /* 2,3 */
cpu - > extn . swap = read_aux_reg ( ARC_REG_SWAP_BCR ) ? 1 : 0 ; /* 1,3 */
cpu - > extn . crc = read_aux_reg ( ARC_REG_CRC_BCR ) ? 1 : 0 ;
cpu - > extn . minmax = read_aux_reg ( ARC_REG_MIXMAX_BCR ) > 1 ? 1 : 0 ; /* 2 */
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/* Note that we read the CCM BCRs independent of kernel config
* This is to catch the cases where user doesn ' t know that
* CCMs are present in hardware build
*/
{
struct bcr_iccm iccm ;
struct bcr_dccm dccm ;
struct bcr_dccm_base dccm_base ;
unsigned int bcr_32bit_val ;
bcr_32bit_val = read_aux_reg ( ARC_REG_ICCM_BCR ) ;
if ( bcr_32bit_val ) {
iccm = * ( ( struct bcr_iccm * ) & bcr_32bit_val ) ;
cpu - > iccm . base_addr = iccm . base < < 16 ;
cpu - > iccm . sz = 0x2000 < < ( iccm . sz - 1 ) ;
}
bcr_32bit_val = read_aux_reg ( ARC_REG_DCCM_BCR ) ;
if ( bcr_32bit_val ) {
dccm = * ( ( struct bcr_dccm * ) & bcr_32bit_val ) ;
cpu - > dccm . sz = 0x800 < < ( dccm . sz ) ;
READ_BCR ( ARC_REG_DCCMBASE_BCR , dccm_base ) ;
cpu - > dccm . base_addr = dccm_base . addr < < 8 ;
}
}
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READ_BCR ( ARC_REG_XY_MEM_BCR , cpu - > extn_xymem ) ;
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read_decode_mmu_bcr ( ) ;
read_decode_cache_bcr ( ) ;
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{
struct bcr_fp_arcompact sp , dp ;
struct bcr_bpu_arcompact bpu ;
READ_BCR ( ARC_REG_FP_BCR , sp ) ;
READ_BCR ( ARC_REG_DPFP_BCR , dp ) ;
cpu - > extn . fpu_sp = sp . ver ? 1 : 0 ;
cpu - > extn . fpu_dp = dp . ver ? 1 : 0 ;
READ_BCR ( ARC_REG_BPU_BCR , bpu ) ;
cpu - > bpu . ver = bpu . ver ;
cpu - > bpu . full = bpu . fam ? 1 : 0 ;
if ( bpu . ent ) {
cpu - > bpu . num_cache = 256 < < ( bpu . ent - 1 ) ;
cpu - > bpu . num_pred = 256 < < ( bpu . ent - 1 ) ;
}
}
READ_BCR ( ARC_REG_AP_BCR , bcr ) ;
cpu - > extn . ap = bcr . ver ? 1 : 0 ;
READ_BCR ( ARC_REG_SMART_BCR , bcr ) ;
cpu - > extn . smart = bcr . ver ? 1 : 0 ;
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READ_BCR ( ARC_REG_RTT_BCR , bcr ) ;
cpu - > extn . rtt = bcr . ver ? 1 : 0 ;
cpu - > extn . debug = cpu - > extn . ap | cpu - > extn . smart | cpu - > extn . rtt ;
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}
static const struct cpuinfo_data arc_cpu_tbl [ ] = {
{ { 0x20 , " ARC 600 " } , 0x2F } ,
{ { 0x30 , " ARC 700 " } , 0x33 } ,
{ { 0x34 , " ARC 700 R4.10 " } , 0x34 } ,
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{ { 0x35 , " ARC 700 R4.11 " } , 0x35 } ,
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{ { 0x00 , NULL } }
} ;
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# define IS_AVAIL1(v, str) ((v) ? str : "")
# define IS_USED(cfg) (IS_ENABLED(cfg) ? "" : "(not used) ")
# define IS_AVAIL2(v, str, cfg) IS_AVAIL1(v, str), IS_AVAIL1(v, IS_USED(cfg))
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static char * arc_cpu_mumbojumbo ( int cpu_id , char * buf , int len )
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{
struct cpuinfo_arc * cpu = & cpuinfo_arc700 [ cpu_id ] ;
struct bcr_identity * core = & cpu - > core ;
const struct cpuinfo_data * tbl ;
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char * isa_nm ;
int i , be , atomic ;
int n = 0 ;
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FIX_PTR ( cpu ) ;
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{
isa_nm = " ARCompact " ;
be = IS_ENABLED ( CONFIG_CPU_BIG_ENDIAN ) ;
atomic = cpu - > isa . atomic1 ;
if ( ! cpu - > isa . ver ) /* ISA BCR absent, use Kconfig info */
atomic = IS_ENABLED ( CONFIG_ARC_HAS_LLSC ) ;
}
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n + = scnprintf ( buf + n , len - n ,
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" \n IDENTITY \t : ARCVER [%#02x] ARCNUM [%#02x] CHIPID [%#4x] \n " ,
core - > family , core - > cpu_id , core - > chip_id ) ;
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for ( tbl = & arc_cpu_tbl [ 0 ] ; tbl - > info . id ! = 0 ; tbl + + ) {
if ( ( core - > family > = tbl - > info . id ) & &
( core - > family < = tbl - > up_range ) ) {
n + = scnprintf ( buf + n , len - n ,
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" processor [%d] \t : %s (%s ISA) %s \n " ,
cpu_id , tbl - > info . str , isa_nm ,
IS_AVAIL1 ( be , " [Big-Endian] " ) ) ;
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break ;
}
}
if ( tbl - > info . id = = 0 )
n + = scnprintf ( buf + n , len - n , " UNKNOWN ARC Processor \n " ) ;
n + = scnprintf ( buf + n , len - n , " CPU speed \t : %u.%02u Mhz \n " ,
( unsigned int ) ( arc_get_core_freq ( ) / 1000000 ) ,
( unsigned int ) ( arc_get_core_freq ( ) / 10000 ) % 100 ) ;
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n + = scnprintf ( buf + n , len - n , " Timers \t \t : %s%s \n ISA Extn \t : " ,
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IS_AVAIL1 ( cpu - > timers . t0 , " Timer0 " ) ,
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IS_AVAIL1 ( cpu - > timers . t1 , " Timer1 " ) ) ;
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n + = i = scnprintf ( buf + n , len - n , " %s%s " ,
IS_AVAIL2 ( atomic , " atomic " , CONFIG_ARC_HAS_LLSC ) ) ;
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if ( i )
n + = scnprintf ( buf + n , len - n , " \n \t \t : " ) ;
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n + = scnprintf ( buf + n , len - n , " %s%s%s%s%s%s%s%s \n " ,
IS_AVAIL1 ( cpu - > extn_mpy . ver , " mpy " ) ,
IS_AVAIL1 ( cpu - > extn . norm , " norm " ) ,
IS_AVAIL1 ( cpu - > extn . barrel , " barrel-shift " ) ,
IS_AVAIL1 ( cpu - > extn . swap , " swap " ) ,
IS_AVAIL1 ( cpu - > extn . minmax , " minmax " ) ,
IS_AVAIL1 ( cpu - > extn . crc , " crc " ) ,
IS_AVAIL2 ( 1 , " swape " , CONFIG_ARC_HAS_SWAPE ) ) ;
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if ( cpu - > bpu . ver )
n + = scnprintf ( buf + n , len - n ,
" BPU \t \t : %s%s match, cache:%d, Predict Table:%d \n " ,
IS_AVAIL1 ( cpu - > bpu . full , " full " ) ,
IS_AVAIL1 ( ! cpu - > bpu . full , " partial " ) ,
cpu - > bpu . num_cache , cpu - > bpu . num_pred ) ;
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return buf ;
}
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static char * arc_extn_mumbojumbo ( int cpu_id , char * buf , int len )
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{
int n = 0 ;
struct cpuinfo_arc * cpu = & cpuinfo_arc700 [ cpu_id ] ;
FIX_PTR ( cpu ) ;
n + = scnprintf ( buf + n , len - n ,
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" Vector Table \t : %#x \n Uncached Base \t : %#x \n " ,
cpu - > vec_base , cpu - > uncached_base ) ;
if ( cpu - > extn . fpu_sp | | cpu - > extn . fpu_dp )
n + = scnprintf ( buf + n , len - n , " FPU \t \t : %s%s \n " ,
IS_AVAIL1 ( cpu - > extn . fpu_sp , " SP " ) ,
IS_AVAIL1 ( cpu - > extn . fpu_dp , " DP " ) ) ;
if ( cpu - > extn . debug )
n + = scnprintf ( buf + n , len - n , " DEBUG \t \t : %s%s%s \n " ,
IS_AVAIL1 ( cpu - > extn . ap , " ActionPoint " ) ,
IS_AVAIL1 ( cpu - > extn . smart , " smaRT " ) ,
IS_AVAIL1 ( cpu - > extn . rtt , " RTT " ) ) ;
if ( cpu - > dccm . sz | | cpu - > iccm . sz )
n + = scnprintf ( buf + n , len - n , " Extn [CCM] \t : DCCM @ %x, %d KB / ICCM: @ %x, %d KB \n " ,
cpu - > dccm . base_addr , TO_KB ( cpu - > dccm . sz ) ,
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cpu - > iccm . base_addr , TO_KB ( cpu - > iccm . sz ) ) ;
n + = scnprintf ( buf + n , len - n ,
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" OS ABI [v3] \t : no-legacy-syscalls \n " ) ;
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return buf ;
}
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static void arc_chk_core_config ( void )
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{
struct cpuinfo_arc * cpu = & cpuinfo_arc700 [ smp_processor_id ( ) ] ;
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int fpu_enabled ;
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if ( ! cpu - > timers . t0 )
panic ( " Timer0 is not present! \n " ) ;
if ( ! cpu - > timers . t1 )
panic ( " Timer1 is not present! \n " ) ;
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# ifdef CONFIG_ARC_HAS_DCCM
/*
* DCCM can be arbit placed in hardware .
* Make sure it ' s placement / sz matches what Linux is built with
*/
if ( ( unsigned int ) __arc_dccm_base ! = cpu - > dccm . base_addr )
panic ( " Linux built with incorrect DCCM Base address \n " ) ;
if ( CONFIG_ARC_DCCM_SZ ! = cpu - > dccm . sz )
panic ( " Linux built with incorrect DCCM Size \n " ) ;
# endif
# ifdef CONFIG_ARC_HAS_ICCM
if ( CONFIG_ARC_ICCM_SZ ! = cpu - > iccm . sz )
panic ( " Linux built with incorrect ICCM Size \n " ) ;
# endif
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/*
* FP hardware / software config sanity
* - If hardware contains DPFP , kernel needs to save / restore FPU state
* - If not , it will crash trying to save / restore the non - existant regs
*
* ( only DPDP checked since SP has no arch visible regs )
*/
fpu_enabled = IS_ENABLED ( CONFIG_ARC_FPU_SAVE_RESTORE ) ;
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if ( cpu - > extn . fpu_dp & & ! fpu_enabled )
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pr_warn ( " CONFIG_ARC_FPU_SAVE_RESTORE needed for working apps \n " ) ;
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else if ( ! cpu - > extn . fpu_dp & & fpu_enabled )
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panic ( " FPU non-existent, disable CONFIG_ARC_FPU_SAVE_RESTORE \n " ) ;
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}
/*
* Initialize and setup the processor core
* This is called by all the CPUs thus should not do special case stuff
* such as only for boot CPU etc
*/
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void setup_processor ( void )
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{
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char str [ 512 ] ;
int cpu_id = smp_processor_id ( ) ;
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read_arc_build_cfg_regs ( ) ;
arc_init_IRQ ( ) ;
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printk ( arc_cpu_mumbojumbo ( cpu_id , str , sizeof ( str ) ) ) ;
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arc_mmu_init ( ) ;
arc_cache_init ( ) ;
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printk ( arc_extn_mumbojumbo ( cpu_id , str , sizeof ( str ) ) ) ;
printk ( arc_platform_smp_cpuinfo ( ) ) ;
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arc_chk_core_config ( ) ;
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}
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static inline int is_kernel ( unsigned long addr )
{
if ( addr > = ( unsigned long ) _stext & & addr < = ( unsigned long ) _end )
return 1 ;
return 0 ;
}
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void __init setup_arch ( char * * cmdline_p )
{
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/* make sure that uboot passed pointer to cmdline/dtb is valid */
if ( uboot_tag & & is_kernel ( ( unsigned long ) uboot_arg ) )
panic ( " Invalid uboot arg \n " ) ;
/* See if u-boot passed an external Device Tree blob */
machine_desc = setup_machine_fdt ( uboot_arg ) ; /* uboot_tag == 2 */
if ( ! machine_desc ) {
/* No, so try the embedded one */
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machine_desc = setup_machine_fdt ( __dtb_start ) ;
if ( ! machine_desc )
panic ( " Embedded DT invalid \n " ) ;
/*
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* If we are here , it is established that @ uboot_arg didn ' t
* point to DT blob . Instead if u - boot says it is cmdline ,
* Appent to embedded DT cmdline .
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* setup_machine_fdt ( ) would have populated @ boot_command_line
*/
if ( uboot_tag = = 1 ) {
/* Ensure a whitespace between the 2 cmdlines */
strlcat ( boot_command_line , " " , COMMAND_LINE_SIZE ) ;
strlcat ( boot_command_line , uboot_arg ,
COMMAND_LINE_SIZE ) ;
}
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}
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/* Save unparsed command line copy for /proc/cmdline */
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* cmdline_p = boot_command_line ;
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/* To force early parsing of things like mem=xxx */
parse_early_param ( ) ;
/* Platform/board specific: e.g. early console registration */
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if ( machine_desc - > init_early )
machine_desc - > init_early ( ) ;
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setup_processor ( ) ;
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smp_init_cpus ( ) ;
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setup_arch_memory ( ) ;
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/* copy flat DT out of .init and then unflatten it */
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unflatten_and_copy_device_tree ( ) ;
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/* Can be issue if someone passes cmd line arg "ro"
* But that is unlikely so keeping it as it is
*/
root_mountflags & = ~ MS_RDONLY ;
# if defined(CONFIG_VT) && defined(CONFIG_DUMMY_CONSOLE)
conswitchp = & dummy_con ;
# endif
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arc_unwind_init ( ) ;
arc_unwind_setup ( ) ;
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}
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static int __init customize_machine ( void )
{
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of_clk_init ( NULL ) ;
/*
* Traverses flattened DeviceTree - registering platform devices
* ( if any ) complete with their resources
*/
of_platform_populate ( NULL , of_default_bus_match_table , NULL , NULL ) ;
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if ( machine_desc - > init_machine )
machine_desc - > init_machine ( ) ;
return 0 ;
}
arch_initcall ( customize_machine ) ;
static int __init init_late_machine ( void )
{
if ( machine_desc - > init_late )
machine_desc - > init_late ( ) ;
return 0 ;
}
late_initcall ( init_late_machine ) ;
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/*
* Get CPU information for use by the procfs .
*/
# define cpu_to_ptr(c) ((void *)(0xFFFF0000 | (unsigned int)(c)))
# define ptr_to_cpu(p) (~0xFFFF0000UL & (unsigned int)(p))
static int show_cpuinfo ( struct seq_file * m , void * v )
{
char * str ;
int cpu_id = ptr_to_cpu ( v ) ;
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if ( ! cpu_online ( cpu_id ) ) {
seq_printf ( m , " processor [%d] \t : Offline \n " , cpu_id ) ;
goto done ;
}
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str = ( char * ) __get_free_page ( GFP_TEMPORARY ) ;
if ( ! str )
goto done ;
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seq_printf ( m , arc_cpu_mumbojumbo ( cpu_id , str , PAGE_SIZE ) ) ;
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seq_printf ( m , " Bogo MIPS \t : %lu.%02lu \n " ,
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loops_per_jiffy / ( 500000 / HZ ) ,
( loops_per_jiffy / ( 5000 / HZ ) ) % 100 ) ;
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seq_printf ( m , arc_mmu_mumbojumbo ( cpu_id , str , PAGE_SIZE ) ) ;
seq_printf ( m , arc_cache_mumbojumbo ( cpu_id , str , PAGE_SIZE ) ) ;
seq_printf ( m , arc_extn_mumbojumbo ( cpu_id , str , PAGE_SIZE ) ) ;
seq_printf ( m , arc_platform_smp_cpuinfo ( ) ) ;
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free_page ( ( unsigned long ) str ) ;
done :
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seq_printf ( m , " \n " ) ;
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return 0 ;
}
static void * c_start ( struct seq_file * m , loff_t * pos )
{
/*
* Callback returns cpu - id to iterator for show routine , NULL to stop .
* However since NULL is also a valid cpu - id ( 0 ) , we use a round - about
* way to pass it w / o having to kmalloc / free a 2 byte string .
* Encode cpu - id as 0xFFcccc , which is decoded by show routine .
*/
return * pos < num_possible_cpus ( ) ? cpu_to_ptr ( * pos ) : NULL ;
}
static void * c_next ( struct seq_file * m , void * v , loff_t * pos )
{
+ + * pos ;
return c_start ( m , pos ) ;
}
static void c_stop ( struct seq_file * m , void * v )
{
}
const struct seq_operations cpuinfo_op = {
. start = c_start ,
. next = c_next ,
. stop = c_stop ,
. show = show_cpuinfo
} ;
static DEFINE_PER_CPU ( struct cpu , cpu_topology ) ;
static int __init topology_init ( void )
{
int cpu ;
for_each_present_cpu ( cpu )
register_cpu ( & per_cpu ( cpu_topology , cpu ) , cpu ) ;
return 0 ;
}
subsys_initcall ( topology_init ) ;