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/*
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* arch / powerpc / oprofile / op_model_7450 . c
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*
* Freescale 745 x / 744 x oprofile support , based on fsl_booke support
* Copyright ( C ) 2004 Anton Blanchard < anton @ au . ibm . com > , IBM
*
* Copyright ( c ) 2004 Freescale Semiconductor , Inc
*
* Author : Andy Fleming
* Maintainer : Kumar Gala < galak @ kernel . crashing . org >
*
* 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 .
*/
# include <linux/oprofile.h>
# include <linux/smp.h>
# include <asm/ptrace.h>
# include <asm/processor.h>
# include <asm/cputable.h>
# include <asm/page.h>
# include <asm/pmc.h>
# include <asm/oprofile_impl.h>
static unsigned long reset_value [ OP_MAX_COUNTER ] ;
static int oprofile_running ;
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static u32 mmcr0_val , mmcr1_val , mmcr2_val , num_pmcs ;
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# define MMCR0_PMC1_SHIFT 6
# define MMCR0_PMC2_SHIFT 0
# define MMCR1_PMC3_SHIFT 27
# define MMCR1_PMC4_SHIFT 22
# define MMCR1_PMC5_SHIFT 17
# define MMCR1_PMC6_SHIFT 11
# define mmcr0_event1(event) \
( ( event < < MMCR0_PMC1_SHIFT ) & MMCR0_PMC1SEL )
# define mmcr0_event2(event) \
( ( event < < MMCR0_PMC2_SHIFT ) & MMCR0_PMC2SEL )
# define mmcr1_event3(event) \
( ( event < < MMCR1_PMC3_SHIFT ) & MMCR1_PMC3SEL )
# define mmcr1_event4(event) \
( ( event < < MMCR1_PMC4_SHIFT ) & MMCR1_PMC4SEL )
# define mmcr1_event5(event) \
( ( event < < MMCR1_PMC5_SHIFT ) & MMCR1_PMC5SEL )
# define mmcr1_event6(event) \
( ( event < < MMCR1_PMC6_SHIFT ) & MMCR1_PMC6SEL )
# define MMCR0_INIT (MMCR0_FC | MMCR0_FCS | MMCR0_FCP | MMCR0_FCM1 | MMCR0_FCM0)
/* Unfreezes the counters on this CPU, enables the interrupt,
* enables the counters to trigger the interrupt , and sets the
* counters to only count when the mark bit is not set .
*/
static void pmc_start_ctrs ( void )
{
u32 mmcr0 = mfspr ( SPRN_MMCR0 ) ;
mmcr0 & = ~ ( MMCR0_FC | MMCR0_FCM0 ) ;
mmcr0 | = ( MMCR0_FCECE | MMCR0_PMC1CE | MMCR0_PMCnCE | MMCR0_PMXE ) ;
mtspr ( SPRN_MMCR0 , mmcr0 ) ;
}
/* Disables the counters on this CPU, and freezes them */
static void pmc_stop_ctrs ( void )
{
u32 mmcr0 = mfspr ( SPRN_MMCR0 ) ;
mmcr0 | = MMCR0_FC ;
mmcr0 & = ~ ( MMCR0_FCECE | MMCR0_PMC1CE | MMCR0_PMCnCE | MMCR0_PMXE ) ;
mtspr ( SPRN_MMCR0 , mmcr0 ) ;
}
/* Configures the counters on this CPU based on the global
* settings */
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static int fsl7450_cpu_setup ( struct op_counter_config * ctr )
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{
/* freeze all counters */
pmc_stop_ctrs ( ) ;
mtspr ( SPRN_MMCR0 , mmcr0_val ) ;
mtspr ( SPRN_MMCR1 , mmcr1_val ) ;
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if ( num_pmcs > 4 )
mtspr ( SPRN_MMCR2 , mmcr2_val ) ;
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return 0 ;
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}
/* Configures the global settings for the countes on all CPUs. */
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static int fsl7450_reg_setup ( struct op_counter_config * ctr ,
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struct op_system_config * sys ,
int num_ctrs )
{
int i ;
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num_pmcs = num_ctrs ;
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/* Our counters count up, and "count" refers to
* how much before the next interrupt , and we interrupt
* on overflow . So we calculate the starting value
* which will give us " count " until overflow .
* Then we set the events on the enabled counters */
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for ( i = 0 ; i < num_ctrs ; + + i )
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reset_value [ i ] = 0x80000000UL - ctr [ i ] . count ;
/* Set events for Counters 1 & 2 */
mmcr0_val = MMCR0_INIT | mmcr0_event1 ( ctr [ 0 ] . event )
| mmcr0_event2 ( ctr [ 1 ] . event ) ;
/* Setup user/kernel bits */
if ( sys - > enable_kernel )
mmcr0_val & = ~ ( MMCR0_FCS ) ;
if ( sys - > enable_user )
mmcr0_val & = ~ ( MMCR0_FCP ) ;
/* Set events for Counters 3-6 */
mmcr1_val = mmcr1_event3 ( ctr [ 2 ] . event )
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| mmcr1_event4 ( ctr [ 3 ] . event ) ;
if ( num_ctrs > 4 )
mmcr1_val | = mmcr1_event5 ( ctr [ 4 ] . event )
| mmcr1_event6 ( ctr [ 5 ] . event ) ;
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mmcr2_val = 0 ;
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return 0 ;
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}
/* Sets the counters on this CPU to the chosen values, and starts them */
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static int fsl7450_start ( struct op_counter_config * ctr )
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{
int i ;
mtmsr ( mfmsr ( ) | MSR_PMM ) ;
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for ( i = 0 ; i < num_pmcs ; + + i ) {
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if ( ctr [ i ] . enabled )
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classic_ctr_write ( i , reset_value [ i ] ) ;
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else
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classic_ctr_write ( i , 0 ) ;
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}
/* Clear the freeze bit, and enable the interrupt.
* The counters won ' t actually start until the rfi clears
* the PMM bit */
pmc_start_ctrs ( ) ;
oprofile_running = 1 ;
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return 0 ;
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}
/* Stop the counters on this CPU */
static void fsl7450_stop ( void )
{
/* freeze counters */
pmc_stop_ctrs ( ) ;
oprofile_running = 0 ;
mb ( ) ;
}
/* Handle the interrupt on this CPU, and log a sample for each
* event that triggered the interrupt */
static void fsl7450_handle_interrupt ( struct pt_regs * regs ,
struct op_counter_config * ctr )
{
unsigned long pc ;
int is_kernel ;
int val ;
int i ;
/* set the PMM bit (see comment below) */
mtmsr ( mfmsr ( ) | MSR_PMM ) ;
pc = mfspr ( SPRN_SIAR ) ;
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is_kernel = is_kernel_addr ( pc ) ;
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for ( i = 0 ; i < num_pmcs ; + + i ) {
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val = classic_ctr_read ( i ) ;
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if ( val < 0 ) {
if ( oprofile_running & & ctr [ i ] . enabled ) {
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oprofile_add_ext_sample ( pc , regs , i , is_kernel ) ;
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classic_ctr_write ( i , reset_value [ i ] ) ;
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} else {
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classic_ctr_write ( i , 0 ) ;
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}
}
}
/* The freeze bit was set by the interrupt. */
/* Clear the freeze bit, and reenable the interrupt.
* The counters won ' t actually start until the rfi clears
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* the PM / M bit */
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pmc_start_ctrs ( ) ;
}
struct op_powerpc_model op_model_7450 = {
. reg_setup = fsl7450_reg_setup ,
. cpu_setup = fsl7450_cpu_setup ,
. start = fsl7450_start ,
. stop = fsl7450_stop ,
. handle_interrupt = fsl7450_handle_interrupt ,
} ;