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jruby/src/org/jruby/RubyFixnum.java at serializable_procs · MSNexploder/jruby · GitHub
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/*
***** BEGIN LICENSE BLOCK *****
* Version: CPL 1.0/GPL 2.0/LGPL 2.1
*
* The contents of this file are subject to the Common Public
* License Version 1.0 (the "License"); you may not use this file
* except in compliance with the License. You may obtain a copy of
* the License at http://www.eclipse.org/legal/cpl-v10.html
*
* Software distributed under the License is distributed on an "AS
* IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
* implied. See the License for the specific language governing
* rights and limitations under the License.
*
* Copyright (C) 2001 Alan Moore <alan_moore@gmx.net>
* Copyright (C) 2001-2004 Jan Arne Petersen <jpetersen@uni-bonn.de>
* Copyright (C) 2002 Benoit Cerrina <b.cerrina@wanadoo.fr>
* Copyright (C) 2002-2004 Anders Bengtsson <ndrsbngtssn@yahoo.se>
* Copyright (C) 2002-2006 Thomas E Enebo <enebo@acm.org>
* Copyright (C) 2004 Stefan Matthias Aust <sma@3plus4.de>
* Copyright (C) 2005 David Corbin <dcorbin@users.sourceforge.net>
* Copyright (C) 2006 Antti Karanta <antti.karanta@napa.fi>
* Copyright (C) 2007 Miguel Covarrubias <mlcovarrubias@gmail.com>
*
* Alternatively, the contents of this file may be used under the terms of
* either of the GNU General Public License Version 2 or later (the "GPL"),
* or the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
* in which case the provisions of the GPL or the LGPL are applicable instead
* of those above. If you wish to allow use of your version of this file only
* under the terms of either the GPL or the LGPL, and not to allow others to
* use your version of this file under the terms of the CPL, indicate your
* decision by deleting the provisions above and replace them with the notice
* and other provisions required by the GPL or the LGPL. If you do not delete
* the provisions above, a recipient may use your version of this file under
* the terms of any one of the CPL, the GPL or the LGPL.
***** END LICENSE BLOCK *****/
package
org
.
jruby
;
import
java
.
math
.
BigInteger
;
import
java
.
util
.
HashMap
;
import
java
.
util
.
Map
;
import
org
.
jruby
.
anno
.
JRubyClass
;
import
org
.
jruby
.
anno
.
JRubyMethod
;
import
org
.
jruby
.
common
.
IRubyWarnings
.
ID
;
import
org
.
jruby
.
runtime
.
Block
;
import
org
.
jruby
.
runtime
.
BlockBody
;
import
org
.
jruby
.
runtime
.
ClassIndex
;
import
org
.
jruby
.
runtime
.
ObjectAllocator
;
import
org
.
jruby
.
runtime
.
ThreadContext
;
import
org
.
jruby
.
runtime
.
builtin
.
IRubyObject
;
import
org
.
jruby
.
runtime
.
marshal
.
UnmarshalStream
;
import
org
.
jruby
.
util
.
ConvertBytes
;
import
org
.
jruby
.
util
.
Numeric
;
import
org
.
jruby
.
util
.
TypeCoercer
;
/**
* Implementation of the Fixnum class.
*/
@
JRubyClass
(
name
=
"Fixnum"
,
parent
=
"Integer"
,
include
=
"Precision"
)
public
class
RubyFixnum
extends
RubyInteger
{
public
static
RubyClass
createFixnumClass
(
Ruby
runtime
) {
RubyClass
fixnum
=
runtime
.
defineClass
(
"Fixnum"
,
runtime
.
getInteger
(),
ObjectAllocator
.
NOT_ALLOCATABLE_ALLOCATOR
);
runtime
.
setFixnum
(
fixnum
);
fixnum
.
index
=
ClassIndex
.
FIXNUM
;
fixnum
.
setReifiedClass
(
RubyFixnum
.
class
);
fixnum
.
kindOf
=
new
RubyModule
.
KindOf
() {
@
Override
public
boolean
isKindOf
(
IRubyObject
obj
,
RubyModule
type
) {
return
obj
instanceof
RubyFixnum
;
}
};
if
(!
runtime
.
is1_9
()) {
fixnum
.
includeModule
(
runtime
.
getPrecision
());
}
fixnum
.
defineAnnotatedMethods
(
RubyFixnum
.
class
);
for
(
int
i
=
0
;
i
<
runtime
.
fixnumCache
.
length
;
i
++) {
runtime
.
fixnumCache
[
i
] =
new
RubyFixnum
(
fixnum
,
i
-
CACHE_OFFSET
);
}
return
fixnum
;
}
private
final
long
value
;
private
static
final
int
BIT_SIZE
=
64
;
public
static
final
long
SIGN_BIT
= (
1L
<< (
BIT_SIZE
-
1
));
public
static
final
long
MAX
= (
1L
<<(
BIT_SIZE
-
1
)) -
1
;
public
static
final
long
MIN
= -
1
*
MAX
-
1
;
public
static
final
long
MAX_MARSHAL_FIXNUM
= (
1L
<<
30
) -
1
;
// 0x3fff_ffff
public
static
final
long
MIN_MARSHAL_FIXNUM
= - (
1L
<<
30
);
// -0x4000_0000
public
static
final
int
CACHE_OFFSET
=
128
;
private
static
IRubyObject
fixCoerce
(
IRubyObject
x
) {
do
{
x
=
x
.
convertToInteger
();
}
while
(!(
x
instanceof
RubyFixnum
) && !(
x
instanceof
RubyBignum
));
return
x
;
}
public
RubyFixnum
(
Ruby
runtime
) {
this
(
runtime
,
0
);
}
public
RubyFixnum
(
Ruby
runtime
,
long
value
) {
super
(
runtime
.
getFixnum
());
this
.
value
=
value
;
}
private
RubyFixnum
(
RubyClass
klazz
,
long
value
) {
super
(
klazz
);
this
.
value
=
value
;
}
@
Override
public
int
getNativeTypeIndex
() {
return
ClassIndex
.
FIXNUM
;
}
/**
* short circuit for Fixnum key comparison
*/
@
Override
public
final
boolean
eql
(
IRubyObject
other
) {
return
other
instanceof
RubyFixnum
&&
value
== ((
RubyFixnum
)
other
).
value
;
}
@
Override
public
IRubyObject
equal_p
(
ThreadContext
context
,
IRubyObject
obj
) {
return
context
.
getRuntime
().
newBoolean
(
this
==
obj
||
eql
(
obj
));
}
@
Override
public
boolean
isImmediate
() {
return
true
;
}
@
Override
public
RubyClass
getSingletonClass
() {
throw
getRuntime
().
newTypeError
(
"can't define singleton"
);
}
@
Override
public
Class
<?>
getJavaClass
() {
return
long
.
class
;
}
@
Override
public
double
getDoubleValue
() {
return
value
;
}
@
Override
public
long
getLongValue
() {
return
value
;
}
@
Override
public
BigInteger
getBigIntegerValue
() {
return
BigInteger
.
valueOf
(
value
);
}
public
static
RubyFixnum
newFixnum
(
Ruby
runtime
,
long
value
) {
if
(
isInCacheRange
(
value
)) {
return
runtime
.
fixnumCache
[(
int
)
value
+
CACHE_OFFSET
];
}
return
new
RubyFixnum
(
runtime
,
value
);
}
private
static
boolean
isInCacheRange
(
long
value
) {
return
value
<=
CACHE_OFFSET
-
1
&&
value
>= -
CACHE_OFFSET
;
}
public
RubyFixnum
newFixnum
(
long
newValue
) {
return
newFixnum
(
getRuntime
(),
newValue
);
}
public
static
RubyFixnum
zero
(
Ruby
runtime
) {
return
runtime
.
fixnumCache
[
CACHE_OFFSET
];
}
public
static
RubyFixnum
one
(
Ruby
runtime
) {
return
runtime
.
fixnumCache
[
CACHE_OFFSET
+
1
];
}
public
static
RubyFixnum
two
(
Ruby
runtime
) {
return
runtime
.
fixnumCache
[
CACHE_OFFSET
+
2
];
}
public
static
RubyFixnum
three
(
Ruby
runtime
) {
return
runtime
.
fixnumCache
[
CACHE_OFFSET
+
3
];
}
public
static
RubyFixnum
four
(
Ruby
runtime
) {
return
runtime
.
fixnumCache
[
CACHE_OFFSET
+
4
];
}
public
static
RubyFixnum
five
(
Ruby
runtime
) {
return
runtime
.
fixnumCache
[
CACHE_OFFSET
+
5
];
}
public
static
RubyFixnum
minus_one
(
Ruby
runtime
) {
return
runtime
.
fixnumCache
[
CACHE_OFFSET
-
1
];
}
@
Override
public
RubyFixnum
hash
() {
return
newFixnum
(
hashCode
());
}
@
Override
public
final
int
hashCode
() {
return
(
int
)(
value
^
value
>>>
32
);
}
@
Override
public
boolean
equals
(
Object
other
) {
if
(
other
==
this
) {
return
true
;
}
if
(
other
instanceof
RubyFixnum
) {
RubyFixnum
num
= (
RubyFixnum
)
other
;
if
(
num
.
value
==
value
) {
return
true
;
}
}
return
false
;
}
/* ================
* Instance Methods
* ================
*/
@
Override
public
IRubyObject
times
(
ThreadContext
context
,
Block
block
) {
if
(
block
.
isGiven
()) {
Ruby
runtime
=
context
.
getRuntime
();
long
lvalue
=
this
.
value
;
if
(
block
.
getBody
().
getArgumentType
() ==
BlockBody
.
ZERO_ARGS
) {
IRubyObject
nil
=
runtime
.
getNil
();
for
(
long
i
=
0
;
i
<
lvalue
;
i
++) {
block
.
yield
(
context
,
nil
);
}
}
else
{
for
(
long
i
=
0
;
i
<
lvalue
;
i
++) {
block
.
yield
(
context
,
RubyFixnum
.
newFixnum
(
runtime
,
i
));
}
}
return
this
;
}
else
{
return
RubyEnumerator
.
enumeratorize
(
context
.
getRuntime
(),
this
,
"times"
);
}
}
/** fix_to_s
*
*/
public
RubyString
to_s
(
IRubyObject
[]
args
) {
switch
(
args
.
length
) {
case
0
:
return
to_s
();
case
1
:
return
to_s
(
args
[
0
]);
default
:
throw
getRuntime
().
newArgumentError
(
args
.
length
,
1
);
}
}
@
JRubyMethod
@
Override
public
RubyString
to_s
() {
int
base
=
10
;
return
getRuntime
().
newString
(
ConvertBytes
.
longToByteList
(
value
,
base
));
}
@
JRubyMethod
public
RubyString
to_s
(
IRubyObject
arg0
) {
int
base
=
num2int
(
arg0
);
if
(
base
<
2
||
base
>
36
) {
throw
getRuntime
().
newArgumentError
(
"illegal radix "
+
base
);
}
return
getRuntime
().
newString
(
ConvertBytes
.
longToByteList
(
value
,
base
));
}
/** fix_id2name
*
*/
@
JRubyMethod
public
IRubyObject
id2name
() {
RubySymbol
symbol
=
RubySymbol
.
getSymbolLong
(
getRuntime
(),
value
);
if
(
symbol
!=
null
)
return
getRuntime
().
newString
(
symbol
.
asJavaString
());
return
getRuntime
().
getNil
();
}
/** fix_to_sym
*
*/
@
JRubyMethod
public
IRubyObject
to_sym
() {
RubySymbol
symbol
=
RubySymbol
.
getSymbolLong
(
getRuntime
(),
value
);
return
symbol
!=
null
?
symbol
:
getRuntime
().
getNil
();
}
/** fix_uminus
*
*/
@
JRubyMethod
(
name
=
"-@"
)
public
IRubyObject
op_uminus
() {
if
(
value
==
MIN
) {
// a gotcha
return
RubyBignum
.
newBignum
(
getRuntime
(),
BigInteger
.
valueOf
(
value
).
negate
());
}
return
RubyFixnum
.
newFixnum
(
getRuntime
(), -
value
);
}
/** fix_plus
*
*/
@
JRubyMethod
(
name
=
"+"
)
public
IRubyObject
op_plus
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
) {
return
addFixnum
(
context
, (
RubyFixnum
)
other
);
}
return
addOther
(
context
,
other
);
}
public
IRubyObject
op_plus
(
ThreadContext
context
,
long
other
) {
return
addFixnum
(
context
,
other
);
}
private
IRubyObject
addFixnum
(
ThreadContext
context
,
long
otherValue
) {
long
result
=
value
+
otherValue
;
if
(
additionOverflowed
(
value
,
otherValue
,
result
)) {
return
addAsBignum
(
context
,
otherValue
);
}
return
newFixnum
(
context
.
getRuntime
(),
result
);
}
private
IRubyObject
addFixnum
(
ThreadContext
context
,
RubyFixnum
other
) {
long
otherValue
=
other
.
value
;
long
result
=
value
+
otherValue
;
if
(
additionOverflowed
(
value
,
otherValue
,
result
)) {
return
addAsBignum
(
context
,
other
);
}
return
newFixnum
(
context
.
getRuntime
(),
result
);
}
private
static
boolean
additionOverflowed
(
long
original
,
long
other
,
long
result
) {
return
(~(
original
^
other
) & (
original
^
result
) &
SIGN_BIT
) !=
0
;
}
private
static
boolean
subtractionOverflowed
(
long
original
,
long
other
,
long
result
) {
return
(~(
original
^ ~
other
) & (
original
^
result
) &
SIGN_BIT
) !=
0
;
}
private
IRubyObject
addAsBignum
(
ThreadContext
context
,
RubyFixnum
other
) {
return
RubyBignum
.
newBignum
(
context
.
getRuntime
(),
value
).
op_plus
(
context
,
other
);
}
private
IRubyObject
addAsBignum
(
ThreadContext
context
,
long
other
) {
return
RubyBignum
.
newBignum
(
context
.
getRuntime
(),
value
).
op_plus
(
context
,
other
);
}
private
IRubyObject
addOther
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyBignum
) {
return
((
RubyBignum
)
other
).
op_plus
(
context
,
this
);
}
if
(
other
instanceof
RubyFloat
) {
return
context
.
getRuntime
().
newFloat
((
double
)
value
+ ((
RubyFloat
)
other
).
getDoubleValue
());
}
return
coerceBin
(
context
,
"+"
,
other
);
}
/** fix_minus
*
*/
@
JRubyMethod
(
name
=
"-"
)
public
IRubyObject
op_minus
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
) {
return
subtractFixnum
(
context
, (
RubyFixnum
)
other
);
}
return
subtractOther
(
context
,
other
);
}
public
IRubyObject
op_minus
(
ThreadContext
context
,
long
other
) {
return
subtractFixnum
(
context
,
other
);
}
private
IRubyObject
subtractFixnum
(
ThreadContext
context
,
RubyFixnum
other
) {
long
otherValue
=
other
.
value
;
long
result
=
value
-
otherValue
;
if
(
subtractionOverflowed
(
value
,
otherValue
,
result
)) {
return
subtractAsBignum
(
context
,
other
);
}
return
newFixnum
(
context
.
getRuntime
(),
result
);
}
private
IRubyObject
subtractFixnum
(
ThreadContext
context
,
long
otherValue
) {
long
result
=
value
-
otherValue
;
if
(
subtractionOverflowed
(
value
,
otherValue
,
result
)) {
return
subtractAsBignum
(
context
,
otherValue
);
}
return
newFixnum
(
context
.
getRuntime
(),
result
);
}
private
IRubyObject
subtractAsBignum
(
ThreadContext
context
,
RubyFixnum
other
) {
return
RubyBignum
.
newBignum
(
context
.
getRuntime
(),
value
).
op_minus
(
context
,
other
);
}
private
IRubyObject
subtractAsBignum
(
ThreadContext
context
,
long
other
) {
return
RubyBignum
.
newBignum
(
context
.
getRuntime
(),
value
).
op_minus
(
context
,
other
);
}
private
IRubyObject
subtractOther
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyBignum
) {
return
RubyBignum
.
newBignum
(
context
.
getRuntime
(),
value
).
op_minus
(
context
,
other
);
}
else
if
(
other
instanceof
RubyFloat
) {
return
context
.
getRuntime
().
newFloat
((
double
)
value
- ((
RubyFloat
)
other
).
getDoubleValue
());
}
return
coerceBin
(
context
,
"-"
,
other
);
}
/** fix_mul
*
*/
@
JRubyMethod
(
name
=
"*"
)
public
IRubyObject
op_mul
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
) {
return
multiplyFixnum
(
context
,
other
);
}
else
{
return
multiplyOther
(
context
,
other
);
}
}
private
IRubyObject
multiplyFixnum
(
ThreadContext
context
,
IRubyObject
other
) {
return
op_mul
(
context
, ((
RubyFixnum
)
other
).
value
);
}
private
IRubyObject
multiplyOther
(
ThreadContext
context
,
IRubyObject
other
) {
Ruby
runtime
=
context
.
getRuntime
();
if
(
other
instanceof
RubyBignum
) {
return
((
RubyBignum
)
other
).
op_mul
(
context
,
this
);
}
else
if
(
other
instanceof
RubyFloat
) {
return
runtime
.
newFloat
((
double
)
value
* ((
RubyFloat
)
other
).
getDoubleValue
());
}
return
coerceBin
(
context
,
"*"
,
other
);
}
public
IRubyObject
op_mul
(
ThreadContext
context
,
long
otherValue
) {
Ruby
runtime
=
context
.
getRuntime
();
long
result
=
value
*
otherValue
;
if
(
value
!=
0
&&
result
/
value
!=
otherValue
) {
return
RubyBignum
.
newBignum
(
runtime
,
value
).
op_mul
(
context
,
otherValue
);
}
return
newFixnum
(
runtime
,
result
);
}
/** fix_div
* here is terrible MRI gotcha:
* 1.div 3.0 -> 0
* 1 / 3.0 -> 0.3333333333333333
*
* MRI is also able to do it in one place by looking at current frame in rb_num_coerce_bin:
* rb_funcall(x, ruby_frame->orig_func, 1, y);
*
* also note that RubyFloat doesn't override Numeric.div
*/
@
JRubyMethod
(
name
=
"div"
,
compat
=
CompatVersion
.
RUBY1_8
)
public
IRubyObject
div_div
(
ThreadContext
context
,
IRubyObject
other
) {
return
idiv
(
context
,
other
,
"div"
);
}
@
JRubyMethod
(
name
=
"div"
,
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
div_div19
(
ThreadContext
context
,
IRubyObject
other
) {
checkZeroDivisionError
(
context
,
other
);
return
div_div
(
context
,
other
);
}
@
JRubyMethod
(
name
=
"/"
)
public
IRubyObject
op_div
(
ThreadContext
context
,
IRubyObject
other
) {
return
idiv
(
context
,
other
,
"/"
);
}
public
IRubyObject
op_div
(
ThreadContext
context
,
long
other
) {
return
idiv
(
context
,
other
,
"/"
);
}
@
JRubyMethod
(
name
= {
"odd?"
},
compat
=
CompatVersion
.
RUBY1_9
)
public
RubyBoolean
odd_p
() {
if
(
value
%
2
!=
0
) {
return
getRuntime
().
getTrue
();
}
return
getRuntime
().
getFalse
();
}
@
JRubyMethod
(
name
= {
"even?"
},
compat
=
CompatVersion
.
RUBY1_9
)
public
RubyBoolean
even_p
() {
if
(
value
%
2
==
0
) {
return
getRuntime
().
getTrue
();
}
return
getRuntime
().
getFalse
();
}
@
JRubyMethod
(
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
pred
() {
return
getRuntime
().
newFixnum
(
value
-
1
);
}
public
IRubyObject
idiv
(
ThreadContext
context
,
IRubyObject
other
,
String
method
) {
if
(
other
instanceof
RubyFixnum
) {
return
idivLong
(
context
,
value
, ((
RubyFixnum
)
other
).
value
);
}
return
coerceBin
(
context
,
method
,
other
);
}
public
IRubyObject
idiv
(
ThreadContext
context
,
long
y
,
String
method
) {
long
x
=
value
;
return
idivLong
(
context
,
x
,
y
);
}
private
IRubyObject
idivLong
(
ThreadContext
context
,
long
x
,
long
y
) {
if
(
y
==
0
) {
throw
context
.
getRuntime
().
newZeroDivisionError
();
}
long
div
=
x
/
y
;
long
mod
=
x
%
y
;
if
(
mod
<
0
&&
y
>
0
||
mod
>
0
&&
y
<
0
) {
div
-=
1
;
}
return
context
.
getRuntime
().
newFixnum
(
div
);
}
/** fix_mod
*
*/
@
JRubyMethod
(
name
= {
"%"
,
"modulo"
},
compat
=
CompatVersion
.
RUBY1_8
)
public
IRubyObject
op_mod
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
) {
return
moduloFixnum
(
context
, (
RubyFixnum
)
other
);
}
return
coerceBin
(
context
,
"%"
,
other
);
}
public
IRubyObject
op_mod
(
ThreadContext
context
,
long
other
) {
return
moduloFixnum
(
context
,
other
);
}
@
JRubyMethod
(
name
= {
"%"
,
"modulo"
},
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
op_mod19
(
ThreadContext
context
,
IRubyObject
other
) {
checkZeroDivisionError
(
context
,
other
);
return
op_mod
(
context
,
other
);
}
private
IRubyObject
moduloFixnum
(
ThreadContext
context
,
RubyFixnum
other
) {
return
moduloFixnum
(
context
,
other
.
value
);
}
private
IRubyObject
moduloFixnum
(
ThreadContext
context
,
long
other
) {
// Java / and % are not the same as ruby
long
x
=
value
;
long
y
=
other
;
if
(
y
==
0
) {
throw
context
.
getRuntime
().
newZeroDivisionError
();
}
long
mod
=
x
%
y
;
if
(
mod
<
0
&&
y
>
0
||
mod
>
0
&&
y
<
0
) {
mod
+=
y
;
}
return
context
.
getRuntime
().
newFixnum
(
mod
);
}
/** fix_divmod
*
*/
@
JRubyMethod
(
name
=
"divmod"
,
compat
=
CompatVersion
.
RUBY1_8
)
@
Override
public
IRubyObject
divmod
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
) {
return
divmodFixnum
(
context
,
other
);
}
return
coerceBin
(
context
,
"divmod"
,
other
);
}
@
JRubyMethod
(
name
=
"divmod"
,
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
divmod19
(
ThreadContext
context
,
IRubyObject
other
) {
checkZeroDivisionError
(
context
,
other
);
return
divmod
(
context
,
other
);
}
private
IRubyObject
divmodFixnum
(
ThreadContext
context
,
IRubyObject
other
) {
long
x
=
value
;
long
y
= ((
RubyFixnum
)
other
).
value
;
final
Ruby
runtime
=
context
.
getRuntime
();
if
(
y
==
0
) {
throw
runtime
.
newZeroDivisionError
();
}
long
div
=
x
/
y
;
long
mod
=
x
%
y
;
if
(
mod
<
0
&&
y
>
0
||
mod
>
0
&&
y
<
0
) {
div
-=
1
;
mod
+=
y
;
}
IRubyObject
fixDiv
=
RubyFixnum
.
newFixnum
(
runtime
,
div
);
IRubyObject
fixMod
=
RubyFixnum
.
newFixnum
(
runtime
,
mod
);
return
RubyArray
.
newArray
(
runtime
,
fixDiv
,
fixMod
);
}
/** fix_quo
*
*/
@
JRubyMethod
(
name
=
"quo"
,
compat
=
CompatVersion
.
RUBY1_8
)
@
Override
public
IRubyObject
quo
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
) {
return
RubyFloat
.
newFloat
(
context
.
getRuntime
(), (
double
)
value
/ (
double
) ((
RubyFixnum
)
other
).
value
);
}
return
coerceBin
(
context
,
"quo"
,
other
);
}
/** fix_pow
*
*/
@
JRubyMethod
(
name
=
"**"
)
public
IRubyObject
op_pow
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
) {
return
powerFixnum
(
context
, ((
RubyFixnum
)
other
).
value
);
}
else
{
return
powerOther
(
context
,
other
);
}
}
public
IRubyObject
op_pow
(
ThreadContext
context
,
long
other
) {
return
powerFixnum
(
context
,
other
);
}
private
IRubyObject
powerFixnum
(
ThreadContext
context
,
long
other
) {
Ruby
runtime
=
context
.
getRuntime
();
if
(
other
==
0
) {
return
RubyFixnum
.
one
(
runtime
);
}
if
(
other
==
1
) {
return
this
;
}
if
(
other
>
0
) {
return
RubyBignum
.
newBignum
(
runtime
,
value
).
op_pow
(
context
,
other
);
}
return
RubyFloat
.
newFloat
(
runtime
,
Math
.
pow
(
value
,
other
));
}
private
IRubyObject
powerOther
(
ThreadContext
context
,
IRubyObject
other
) {
Ruby
runtime
=
context
.
getRuntime
();
if
(
other
instanceof
RubyFloat
) {
return
RubyFloat
.
newFloat
(
runtime
,
Math
.
pow
(
value
, ((
RubyFloat
)
other
)
.
getDoubleValue
()));
}
return
coerceBin
(
context
,
"**"
,
other
);
}
@
JRubyMethod
(
name
=
"**"
,
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
op_pow_19
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyNumeric
) {
double
d_other
= ((
RubyNumeric
)
other
).
getDoubleValue
();
if
(
value
<
0
&& (
d_other
!=
Math
.
round
(
d_other
))) {
return
RubyComplex
.
newComplexRaw
(
getRuntime
(),
this
).
callMethod
(
context
,
"**"
,
other
);
}
if
(
other
instanceof
RubyFixnum
) {
return
powerFixnum19
(
context
,
other
);
}
}
return
powerOther19
(
context
,
other
);
}
private
IRubyObject
powerOther19
(
ThreadContext
context
,
IRubyObject
other
) {
Ruby
runtime
=
context
.
getRuntime
();
long
a
=
value
;
if
(
other
instanceof
RubyBignum
) {
if
(
other
.
callMethod
(
context
,
"<"
,
RubyFixnum
.
zero
(
runtime
)).
isTrue
()) {
return
RubyRational
.
newRationalRaw
(
runtime
,
this
).
callMethod
(
context
,
"**"
,
other
);
}
if
(
a
==
0
)
return
RubyFixnum
.
zero
(
runtime
);
if
(
a
==
1
)
return
RubyFixnum
.
one
(
runtime
);
if
(
a
== -
1
) {
return
((
RubyBignum
)
other
).
even_p
(
context
).
isTrue
() ?
RubyFixnum
.
one
(
runtime
) :
RubyFixnum
.
minus_one
(
runtime
);
}
RubyBignum
.
newBignum
(
runtime
,
RubyBignum
.
fix2big
(
this
)).
op_pow
(
context
,
other
);
}
else
if
(
other
instanceof
RubyFloat
) {
double
b
= ((
RubyFloat
)
other
).
getValue
();
if
(
b
==
0.0
||
a
==
1
)
return
runtime
.
newFloat
(
1.0
);
if
(
a
==
0
)
return
runtime
.
newFloat
(
b
<
0
?
1.0
/
0.0
:
0.0
);
return
RubyFloat
.
newFloat
(
runtime
,
Math
.
pow
(
a
,
b
));
}
return
coerceBin
(
context
,
"**"
,
other
);
}
private
IRubyObject
powerFixnum19
(
ThreadContext
context
,
IRubyObject
other
) {
Ruby
runtime
=
context
.
getRuntime
();
long
a
=
value
;
long
b
= ((
RubyFixnum
)
other
).
value
;
if
(
b
<
0
) {
return
RubyRational
.
newRationalRaw
(
runtime
,
this
).
callMethod
(
context
,
"**"
,
other
);
}
if
(
b
==
0
) {
return
RubyFixnum
.
one
(
runtime
);
}
if
(
b
==
1
) {
return
this
;
}
if
(
a
==
0
) {
return
b
>
0
?
RubyFixnum
.
zero
(
runtime
) :
RubyNumeric
.
dbl2num
(
runtime
,
1.0
/
0.0
);
}
if
(
a
==
1
) {
return
RubyFixnum
.
one
(
runtime
);
}
if
(
a
== -
1
) {
return
b
%
2
==
0
?
RubyFixnum
.
one
(
runtime
) :
RubyFixnum
.
minus_one
(
runtime
);
}
return
Numeric
.
int_pow
(
context
,
a
,
b
);
}
/** fix_abs
*
*/
@
JRubyMethod
@
Override
public
IRubyObject
abs
(
ThreadContext
context
) {
if
(
value
<
0
) {
// A gotcha for Long.MIN_VALUE: value = -value
if
(
value
==
Long
.
MIN_VALUE
) {
return
RubyBignum
.
newBignum
(
context
.
getRuntime
(),
BigInteger
.
valueOf
(
value
).
negate
());
}
return
RubyFixnum
.
newFixnum
(
context
.
getRuntime
(), -
value
);
}
return
this
;
}
/** fix_abs/1.9
*
*/
@
JRubyMethod
(
name
=
"magnitude"
,
compat
=
CompatVersion
.
RUBY1_9
)
@
Override
public
IRubyObject
magnitude
(
ThreadContext
context
) {
return
abs
(
context
);
}
/** fix_equal
*
*/
@
JRubyMethod
(
name
=
"=="
,
compat
=
CompatVersion
.
RUBY1_8
)
@
Override
public
IRubyObject
op_equal
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
op_equal
(
context
, ((
RubyFixnum
)
other
).
value
);
return
super
.
op_num_equal
(
context
,
other
);
}
public
IRubyObject
op_equal
(
ThreadContext
context
,
long
other
) {
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
==
other
);
}
@
JRubyMethod
(
name
=
"=="
,
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
op_equal19
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
op_equal
(
context
, ((
RubyFixnum
)
other
).
value
);
return
op_equalOther
(
context
,
other
);
}
private
IRubyObject
op_equalOther
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyBignum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
BigInteger
.
valueOf
(
value
).
compareTo
(((
RubyBignum
)
other
).
getValue
()) ==
0
);
if
(
other
instanceof
RubyFloat
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(), (
double
)
value
== ((
RubyFloat
)
other
).
getDoubleValue
());
return
super
.
op_num_equal
(
context
,
other
);
}
@
Override
public
final
int
compareTo
(
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
) {
long
otherValue
= ((
RubyFixnum
)
other
).
value
;
return
value
==
otherValue
?
0
:
value
>
otherValue
?
1
: -
1
;
}
return
compareToOther
(
other
);
}
private
int
compareToOther
(
IRubyObject
other
) {
if
(
other
instanceof
RubyBignum
)
return
BigInteger
.
valueOf
(
value
).
compareTo
(((
RubyBignum
)
other
).
getValue
());
if
(
other
instanceof
RubyFloat
)
return
Double
.
compare
((
double
)
value
, ((
RubyFloat
)
other
).
getDoubleValue
());
return
(
int
)
coerceCmp
(
getRuntime
().
getCurrentContext
(),
"<=>"
,
other
).
convertToInteger
().
getLongValue
();
}
/** fix_cmp
*
*/
@
JRubyMethod
(
name
=
"<=>"
,
compat
=
CompatVersion
.
RUBY1_8
)
public
IRubyObject
op_cmp
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
compareFixnum
(
context
.
getRuntime
(), ((
RubyFixnum
)
other
).
value
);
return
coerceCmp
(
context
,
"<=>"
,
other
);
}
public
IRubyObject
op_cmp
(
ThreadContext
context
,
long
other
) {
return
compareFixnum
(
context
.
getRuntime
(),
other
);
}
private
IRubyObject
compareFixnum
(
Ruby
runtime
,
long
other
) {
return
value
==
other
?
RubyFixnum
.
zero
(
runtime
) :
value
>
other
?
RubyFixnum
.
one
(
runtime
) :
RubyFixnum
.
minus_one
(
runtime
);
}
@
JRubyMethod
(
name
=
"<=>"
,
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
op_cmp19
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
compareFixnum
(
context
.
getRuntime
(), ((
RubyFixnum
)
other
).
value
);
return
compareOther
(
context
,
other
);
}
private
IRubyObject
compareOther
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyBignum
)
return
newFixnum
(
context
.
getRuntime
(),
BigInteger
.
valueOf
(
value
).
compareTo
(((
RubyBignum
)
other
).
getValue
()));
if
(
other
instanceof
RubyFloat
)
return
dbl_cmp
(
context
.
getRuntime
(), (
double
)
value
, ((
RubyFloat
)
other
).
getDoubleValue
());
return
coerceCmp
(
context
,
"<=>"
,
other
);
}
/** fix_gt
*
*/
@
JRubyMethod
(
name
=
">"
,
compat
=
CompatVersion
.
RUBY1_8
)
public
IRubyObject
op_gt
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
> ((
RubyFixnum
)
other
).
value
);
return
coerceRelOp
(
context
,
">"
,
other
);
}
public
IRubyObject
op_gt
(
ThreadContext
context
,
long
other
) {
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
>
other
);
}
@
JRubyMethod
(
name
=
">"
,
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
op_gt19
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
> ((
RubyFixnum
)
other
).
value
);
return
op_gtOther
(
context
,
other
);
}
private
IRubyObject
op_gtOther
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyBignum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
BigInteger
.
valueOf
(
value
).
compareTo
(((
RubyBignum
)
other
).
getValue
()) >
0
);
if
(
other
instanceof
RubyFloat
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(), (
double
)
value
> ((
RubyFloat
)
other
).
getDoubleValue
());
return
coerceRelOp
(
context
,
">"
,
other
);
}
/** fix_ge
*
*/
@
JRubyMethod
(
name
=
">="
,
compat
=
CompatVersion
.
RUBY1_8
)
public
IRubyObject
op_ge
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
>= ((
RubyFixnum
)
other
).
value
);
return
coerceRelOp
(
context
,
">="
,
other
);
}
public
IRubyObject
op_ge
(
ThreadContext
context
,
long
other
) {
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
>=
other
);
}
@
JRubyMethod
(
name
=
">="
,
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
op_ge19
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
>= ((
RubyFixnum
)
other
).
value
);
return
op_geOther
(
context
,
other
);
}
private
IRubyObject
op_geOther
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyBignum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
BigInteger
.
valueOf
(
value
).
compareTo
(((
RubyBignum
)
other
).
getValue
()) >=
0
);
if
(
other
instanceof
RubyFloat
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(), (
double
)
value
>= ((
RubyFloat
)
other
).
getDoubleValue
());
return
coerceRelOp
(
context
,
">="
,
other
);
}
/** fix_lt
*
*/
@
JRubyMethod
(
name
=
"<"
,
compat
=
CompatVersion
.
RUBY1_8
)
public
IRubyObject
op_lt
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
< ((
RubyFixnum
)
other
).
value
);
return
coerceRelOp
(
context
,
"<"
,
other
);
}
public
IRubyObject
op_lt
(
ThreadContext
context
,
long
other
) {
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
<
other
);
}
@
JRubyMethod
(
name
=
"<"
,
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
op_lt19
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
< ((
RubyFixnum
)
other
).
value
);
return
op_ltOther
(
context
,
other
);
}
private
IRubyObject
op_ltOther
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyBignum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
BigInteger
.
valueOf
(
value
).
compareTo
(((
RubyBignum
)
other
).
getValue
()) <
0
);
if
(
other
instanceof
RubyFloat
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(), (
double
)
value
< ((
RubyFloat
)
other
).
getDoubleValue
());
return
coerceRelOp
(
context
,
"<"
,
other
);
}
/** fix_le
*
*/
@
JRubyMethod
(
name
=
"<="
,
compat
=
CompatVersion
.
RUBY1_8
)
public
IRubyObject
op_le
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
<= ((
RubyFixnum
)
other
).
value
);
return
coerceRelOp
(
context
,
"<="
,
other
);
}
public
IRubyObject
op_le
(
ThreadContext
context
,
long
other
) {
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
<=
other
);
}
@
JRubyMethod
(
name
=
"<="
,
compat
=
CompatVersion
.
RUBY1_9
)
public
IRubyObject
op_le19
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
value
<= ((
RubyFixnum
)
other
).
value
);
return
op_leOther
(
context
,
other
);
}
private
IRubyObject
op_leOther
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyBignum
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(),
BigInteger
.
valueOf
(
value
).
compareTo
(((
RubyBignum
)
other
).
getValue
()) <=
0
);
if
(
other
instanceof
RubyFloat
)
return
RubyBoolean
.
newBoolean
(
context
.
getRuntime
(), (
double
)
value
<= ((
RubyFloat
)
other
).
getDoubleValue
());
return
coerceRelOp
(
context
,
"<="
,
other
);
}
/** fix_rev
*
*/
@
JRubyMethod
(
name
=
"~"
)
public
IRubyObject
op_neg
() {
return
newFixnum
(~
value
);
}
/** fix_and
*
*/
@
JRubyMethod
(
name
=
"&"
)
public
IRubyObject
op_and
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
|| (
other
=
fixCoerce
(
other
))
instanceof
RubyFixnum
) {
return
newFixnum
(
context
.
getRuntime
(),
value
& ((
RubyFixnum
)
other
).
value
);
}
return
((
RubyBignum
)
other
).
op_and
(
context
,
this
);
}
/** fix_or
*
*/
@
JRubyMethod
(
name
=
"|"
)
public
IRubyObject
op_or
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
|| (
other
=
fixCoerce
(
other
))
instanceof
RubyFixnum
) {
return
newFixnum
(
context
.
getRuntime
(),
value
| ((
RubyFixnum
)
other
).
value
);
}
return
((
RubyBignum
)
other
).
op_or
(
context
,
this
);
}
/** fix_xor
*
*/
@
JRubyMethod
(
name
=
"^"
)
public
IRubyObject
op_xor
(
ThreadContext
context
,
IRubyObject
other
) {
if
(
other
instanceof
RubyFixnum
|| (
other
=
fixCoerce
(
other
))
instanceof
RubyFixnum
) {
return
newFixnum
(
context
.
getRuntime
(),
value
^ ((
RubyFixnum
)
other
).
value
);
}
return
((
RubyBignum
)
other
).
op_xor
(
context
,
this
);
}
/** fix_aref
*
*/
@
JRubyMethod
(
name
=
"[]"
)
public
IRubyObject
op_aref
(
IRubyObject
other
) {
if
(!(
other
instanceof
RubyFixnum
) && !((
other
=
fixCoerce
(
other
))
instanceof
RubyFixnum
)) {
RubyBignum
big
= (
RubyBignum
)
other
;
RubyObject
tryFix
=
RubyBignum
.
bignorm
(
getRuntime
(),
big
.
getValue
());
if
(!(
tryFix
instanceof
RubyFixnum
)) {
return
big
.
getValue
().
signum
() ==
0
||
value
>=
0
?
RubyFixnum
.
zero
(
getRuntime
()) :
RubyFixnum
.
one
(
getRuntime
());
}
}
long
otherValue
=
fix2long
(
other
);
if
(
otherValue
<
0
)
return
RubyFixnum
.
zero
(
getRuntime
());
if
(
BIT_SIZE
-
1
<
otherValue
) {
return
value
<
0
?
RubyFixnum
.
one
(
getRuntime
()) :
RubyFixnum
.
zero
(
getRuntime
());
}
return
(
value
& (
1L
<<
otherValue
)) ==
0
?
RubyFixnum
.
zero
(
getRuntime
()) :
RubyFixnum
.
one
(
getRuntime
());
}
/** fix_lshift
*
*/
@
JRubyMethod
(
name
=
"<<"
)
public
IRubyObject
op_lshift
(
IRubyObject
other
) {
if
(!(
other
instanceof
RubyFixnum
))
return
RubyBignum
.
newBignum
(
getRuntime
(),
value
).
op_lshift
(
other
);
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