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Kirill Smelkov
linux
Commits
25b160e3
Commit
25b160e3
authored
Feb 03, 2004
by
Yoshinori Sato
Committed by
Linus Torvalds
Feb 03, 2004
Browse files
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[PATCH] H8/300 support update (3/3): bitops
o Cleanup reduced and faster code
parent
8432cdd0
Changes
1
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Showing
1 changed file
with
126 additions
and
147 deletions
+126
-147
include/asm-h8300/bitops.h
include/asm-h8300/bitops.h
+126
-147
No files found.
include/asm-h8300/bitops.h
View file @
25b160e3
...
...
@@ -35,169 +35,148 @@ static __inline__ unsigned long ffz(unsigned long word)
return
result
;
}
static
__inline__
void
set_bit
(
int
nr
,
volatile
unsigned
long
*
addr
)
{
volatile
unsigned
char
*
b_addr
;
b_addr
=
(
volatile
unsigned
char
*
)
addr
+
((
nr
>>
3
)
^
3
);
__asm__
(
"mov.l %1,er0
\n\t
"
"bset r0l,%0"
:
"+m"
(
*
b_addr
)
:
"g"
(
nr
&
7
),
"m"
(
*
b_addr
)
:
"er0"
);
#define H8300_GEN_BITOP_CONST(OP,BIT) \
case BIT: \
__asm__(OP " #" #BIT ",@%0"::"r"(b_addr):"memory"); \
break;
#define H8300_GEN_BITOP(FNAME,OP) \
static __inline__ void FNAME(int nr, volatile unsigned long* addr) \
{ \
volatile unsigned char *b_addr; \
b_addr = (volatile unsigned char *)addr + ((nr >> 3) ^ 3); \
if (__builtin_constant_p(nr)) { \
switch(nr & 7) { \
H8300_GEN_BITOP_CONST(OP,0) \
H8300_GEN_BITOP_CONST(OP,1) \
H8300_GEN_BITOP_CONST(OP,2) \
H8300_GEN_BITOP_CONST(OP,3) \
H8300_GEN_BITOP_CONST(OP,4) \
H8300_GEN_BITOP_CONST(OP,5) \
H8300_GEN_BITOP_CONST(OP,6) \
H8300_GEN_BITOP_CONST(OP,7) \
} \
} else { \
__asm__(OP " %w0,@%1"::"r"(nr),"r"(b_addr):"memory"); \
} \
}
/* Bigendian is complexed... */
#define __set_bit(nr, addr) set_bit((nr), (addr))
/*
* clear_bit() doesn't provide any barrier for the compiler.
*/
#define smp_mb__before_clear_bit() barrier()
#define smp_mb__after_clear_bit() barrier()
static
__inline__
void
clear_bit
(
int
nr
,
volatile
unsigned
long
*
addr
)
{
volatile
unsigned
char
*
b_addr
;
b_addr
=
(
volatile
unsigned
char
*
)
addr
+
((
nr
>>
3
)
^
3
);
__asm__
(
"mov.l %1,er0
\n\t
"
"bclr r0l,%0"
:
"+m"
(
*
b_addr
)
:
"g"
(
nr
&
7
),
"m"
(
*
b_addr
)
:
"er0"
);
}
#define __clear_bit(nr, addr) clear_bit((nr), (addr))
static
__inline__
void
change_bit
(
int
nr
,
volatile
unsigned
long
*
addr
)
{
volatile
unsigned
char
*
b_addr
;
b_addr
=
(
volatile
unsigned
char
*
)
addr
+
((
nr
>>
3
)
^
3
);
__asm__
(
"mov.l %1,er0
\n\t
"
"bnot r0l,%0"
:
"+m"
(
*
b_addr
)
:
"g"
(
nr
&
7
),
"m"
(
*
b_addr
)
:
"er0"
);
}
H8300_GEN_BITOP
(
set_bit
,
"bset"
)
H8300_GEN_BITOP
(
clear_bit
,
"bclr"
)
H8300_GEN_BITOP
(
change_bit
,
"bnot"
)
#define __set_bit(nr,addr) set_bit((nr),(addr))
#define __clear_bit(nr,addr) clear_bit((nr),(addr))
#define __change_bit(nr,addr) change_bit((nr),(addr))
#define __change_bit(nr, addr) change_bit((nr), (addr))
#undef H8300_GEN_BITOP
#undef H8300_GEN_BITOP_CONST
static
__inline__
int
test_bit
(
int
nr
,
const
unsigned
long
*
addr
)
{
return
(
*
((
volatile
unsigned
char
*
)
addr
+
((
nr
>>
3
)
^
3
))
&
(
1UL
<<
(
nr
&
7
)))
!=
0
;
return
(
*
((
volatile
unsigned
char
*
)
addr
+
((
nr
>>
3
)
^
3
))
&
(
1UL
<<
(
nr
&
7
)))
!=
0
;
}
#define __test_bit(nr, addr) test_bit(nr, addr)
static
__inline__
int
test_and_set_bit
(
int
nr
,
volatile
unsigned
long
*
addr
)
{
int
retval
=
0
;
volatile
unsigned
char
*
a
;
a
=
(
volatile
unsigned
char
*
)
addr
+=
((
nr
>>
3
)
^
3
);
\
__asm__
(
"mov.l %4,er3
\n\t
"
"stc ccr,r3h
\n\t
"
"orc #0x80,ccr
\n\t
"
"btst r3l,%1
\n\t
"
"bset r3l,%1
\n\t
"
"beq 1f
\n\t
"
"inc.l #1,%0
\n\t
"
"1:"
"ldc r3h,ccr"
:
"=r"
(
retval
),
"+m"
(
*
a
)
:
"0"
(
retval
),
"m"
(
*
a
),
"g"
(
nr
&
7
)
:
"er3"
,
"memory"
);
return
retval
;
#define H8300_GEN_TEST_BITOP_CONST_INT(OP,BIT) \
case BIT: \
__asm__("stc ccr,%w1\n\t" \
"orc #0x80,ccr\n\t" \
"bld #" #BIT ",@%3\n\t" \
OP " #" #BIT ",@%3\n\t" \
"rotxl.l %0\n\t" \
"ldc %w1,ccr" \
: "=r"(retval),"=&r"(ccrsave) \
: "0" (retval),"r" (b_addr) \
: "memory"); \
break;
#define H8300_GEN_TEST_BITOP_CONST(OP,BIT) \
case BIT: \
__asm__("bld #" #BIT ",@%2\n\t" \
OP " #" #BIT ",@%2\n\t" \
"rotxl.l %0\n\t" \
: "=r"(retval) \
: "0" (retval),"r" (b_addr) \
: "memory"); \
break;
#define H8300_GEN_TEST_BITOP(FNNAME,OP) \
static __inline__ int FNNAME(int nr, volatile void * addr) \
{ \
int retval = 0; \
char ccrsave; \
volatile unsigned char *b_addr; \
b_addr = (volatile unsigned char *)addr + ((nr >> 3) ^ 3); \
if (__builtin_constant_p(nr)) { \
switch(nr & 7) { \
H8300_GEN_TEST_BITOP_CONST_INT(OP,0) \
H8300_GEN_TEST_BITOP_CONST_INT(OP,1) \
H8300_GEN_TEST_BITOP_CONST_INT(OP,2) \
H8300_GEN_TEST_BITOP_CONST_INT(OP,3) \
H8300_GEN_TEST_BITOP_CONST_INT(OP,4) \
H8300_GEN_TEST_BITOP_CONST_INT(OP,5) \
H8300_GEN_TEST_BITOP_CONST_INT(OP,6) \
H8300_GEN_TEST_BITOP_CONST_INT(OP,7) \
} \
} else { \
__asm__("stc ccr,%w1\n\t" \
"orc #0x80,ccr\n\t" \
"btst %w4,@%3\n\t" \
OP " %w4,@%3\n\t" \
"beq 1f\n\t" \
"inc.l #1,%0\n" \
"1:\n\t" \
"ldc %w1,ccr" \
: "=r"(retval),"=&r"(ccrsave) \
: "0" (retval),"r" (b_addr),"r"(nr) \
: "memory"); \
} \
return retval; \
} \
\
static __inline__ int __ ## FNNAME(int nr, volatile void * addr) \
{ \
int retval = 0; \
volatile unsigned char *b_addr; \
b_addr = (volatile unsigned char *)addr + ((nr >> 3) ^ 3); \
if (__builtin_constant_p(nr)) { \
switch(nr & 7) { \
H8300_GEN_TEST_BITOP_CONST(OP,0) \
H8300_GEN_TEST_BITOP_CONST(OP,1) \
H8300_GEN_TEST_BITOP_CONST(OP,2) \
H8300_GEN_TEST_BITOP_CONST(OP,3) \
H8300_GEN_TEST_BITOP_CONST(OP,4) \
H8300_GEN_TEST_BITOP_CONST(OP,5) \
H8300_GEN_TEST_BITOP_CONST(OP,6) \
H8300_GEN_TEST_BITOP_CONST(OP,7) \
} \
} else { \
__asm__("btst %w3,@%2\n\t" \
OP " %w3,@%2\n\t" \
"beq 1f\n\t" \
"inc.l #1,%0\n" \
"1:" \
: "=r"(retval) \
: "0" (retval),"r" (b_addr),"r"(nr) \
: "memory"); \
} \
return retval; \
}
static
__inline__
int
__test_and_set_bit
(
int
nr
,
volatile
unsigned
long
*
addr
)
{
int
retval
=
0
;
volatile
unsigned
char
*
a
;
a
=
(
volatile
unsigned
char
*
)
addr
+=
((
nr
>>
3
)
^
3
);
\
__asm__
(
"mov.l %4,er3
\n\t
"
"btst r3l,%1
\n\t
"
"bset r3l,%1
\n\t
"
"beq 1f
\n\t
"
"inc.l #1,%0
\n\t
"
"1:"
:
"=r"
(
retval
),
"+m"
(
*
a
)
:
"0"
(
retval
),
"m"
(
*
a
),
"g"
(
nr
&
7
)
:
"er3"
,
"memory"
);
return
retval
;
}
static
__inline__
int
test_and_clear_bit
(
int
nr
,
volatile
unsigned
long
*
addr
)
{
int
retval
=
0
;
volatile
unsigned
char
*
a
;
a
=
(
volatile
unsigned
char
*
)
addr
+=
((
nr
>>
3
)
^
3
);
\
__asm__
(
"mov.l %4,er3
\n\t
"
"stc ccr,r3h
\n\t
"
"orc #0x80,ccr
\n\t
"
"btst r3l,%1
\n\t
"
"bclr r3l,%1
\n\t
"
"beq 1f
\n\t
"
"inc.l #1,%0
\n\t
"
"1:"
"ldc r3h,ccr"
:
"=r"
(
retval
),
"+m"
(
*
a
)
:
"0"
(
retval
),
"m"
(
*
a
),
"g"
(
nr
&
7
)
:
"er3"
,
"memory"
);
return
retval
;
}
static
__inline__
int
__test_and_clear_bit
(
int
nr
,
volatile
unsigned
long
*
addr
)
{
int
retval
=
0
;
volatile
unsigned
char
*
a
;
a
=
(
volatile
unsigned
char
*
)
addr
+=
((
nr
>>
3
)
^
3
);
\
__asm__
(
"mov.l %4,er3
\n\t
"
"btst r3l,%1
\n\t
"
"bclr r3l,%1
\n\t
"
"beq 1f
\n\t
"
"inc.l #1,%0
\n\t
"
"1:"
:
"=r"
(
retval
),
"+m"
(
*
a
)
:
"0"
(
retval
),
"m"
(
*
a
),
"g"
(
nr
&
7
)
:
"er3"
,
"memory"
);
return
retval
;
}
static
__inline__
int
test_and_change_bit
(
int
nr
,
volatile
unsigned
long
*
addr
)
{
int
retval
=
0
;
volatile
unsigned
char
*
a
;
a
=
(
volatile
unsigned
char
*
)
addr
+=
((
nr
>>
3
)
^
3
);
\
__asm__
(
"mov.l %4,er3
\n\t
"
"stc ccr,r3h
\n\t
"
"orc #0x80,ccr
\n\t
"
"btst r3l,%1
\n\t
"
"bnot r3l,%1
\n\t
"
"beq 1f
\n\t
"
"inc.l #1,%0
\n\t
"
"1:"
"ldc r3h,ccr"
:
"=r"
(
retval
),
"+m"
(
*
a
)
:
"0"
(
retval
),
"m"
(
*
a
),
"g"
(
nr
&
7
)
:
"er3"
,
"memory"
);
return
retval
;
}
static
__inline__
int
__test_and_change_bit
(
int
nr
,
volatile
unsigned
long
*
addr
)
{
int
retval
=
0
;
volatile
unsigned
char
*
a
;
a
=
(
volatile
unsigned
char
*
)
addr
+=
((
nr
>>
3
)
^
3
);
\
__asm__
(
"mov.l %4,er3
\n\t
"
"btst r3l,%1
\n\t
"
"bnot r3l,%1
\n\t
"
"beq 1f
\n\t
"
"inc.l #1,%0
\n\t
"
"1:"
:
"=r"
(
retval
),
"+m"
(
*
a
)
:
"0"
(
retval
),
"m"
(
*
a
),
"g"
(
nr
&
7
)
:
"er3"
,
"memory"
);
return
retval
;
}
H8300_GEN_TEST_BITOP
(
test_and_set_bit
,
"bset"
)
H8300_GEN_TEST_BITOP
(
test_and_clear_bit
,
"bclr"
)
H8300_GEN_TEST_BITOP
(
test_and_change_bit
,
"bnot"
)
#undef H8300_GEN_TEST_BITOP_CONST
#undef H8300_GEN_TEST_BITOP_CONST_INT
#undef H8300_GEN_TEST_BITOP
#define find_first_zero_bit(addr, size) \
find_next_zero_bit((addr), (size), 0)
...
...
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