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/***** BEGIN LICENSE BLOCK *****
* Version: EPL 2.0/GPL 2.0/LGPL 2.1
*
* The contents of this file are subject to the Eclipse Public
* License Version 2.0 (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/epl-v20.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.
*
* 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 EPL, 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 EPL, the GPL or the LGPL.
***** END LICENSE BLOCK *****/
package
org
.
jruby
;
import
org
.
jruby
.
anno
.
JRubyClass
;
import
org
.
jruby
.
anno
.
JRubyMethod
;
import
org
.
jruby
.
runtime
.
Block
;
import
org
.
jruby
.
runtime
.
CallSite
;
import
org
.
jruby
.
runtime
.
Helpers
;
import
org
.
jruby
.
runtime
.
JavaSites
.
FiberSites
;
import
org
.
jruby
.
runtime
.
JavaSites
.
NumericSites
;
import
org
.
jruby
.
runtime
.
ThreadContext
;
import
org
.
jruby
.
runtime
.
builtin
.
IRubyObject
;
import
org
.
jruby
.
util
.
ByteList
;
import
org
.
jruby
.
util
.
Numeric
;
import
static
org
.
jruby
.
RubyEnumerator
.
ARGS
;
import
static
org
.
jruby
.
RubyEnumerator
.
FEEDVALUE
;
import
static
org
.
jruby
.
RubyEnumerator
.
GENERATOR
;
import
static
org
.
jruby
.
RubyEnumerator
.
LOOKAHEAD
;
import
static
org
.
jruby
.
RubyEnumerator
.
METHOD
;
import
static
org
.
jruby
.
RubyEnumerator
.
OBJECT
;
import
static
org
.
jruby
.
RubyEnumerator
.
enumeratorize
;
import
static
org
.
jruby
.
RubyEnumerator
.
enumeratorizeWithSize
;
import
static
org
.
jruby
.
RubyNumeric
.
fixable
;
import
static
org
.
jruby
.
RubyNumeric
.
floatStep
;
import
static
org
.
jruby
.
RubyNumeric
.
floatStepSize
;
import
static
org
.
jruby
.
api
.
Access
.
enumeratorClass
;
import
static
org
.
jruby
.
api
.
Convert
.
asFixnum
;
import
static
org
.
jruby
.
api
.
Convert
.
asFloat
;
import
static
org
.
jruby
.
api
.
Convert
.
toDouble
;
import
static
org
.
jruby
.
api
.
Convert
.
toInt
;
import
static
org
.
jruby
.
api
.
Convert
.
toInteger
;
import
static
org
.
jruby
.
api
.
Convert
.
toLong
;
import
static
org
.
jruby
.
api
.
Create
.
allocArray
;
import
static
org
.
jruby
.
api
.
Create
.
newArray
;
import
static
org
.
jruby
.
api
.
Create
.
newEmptyArray
;
import
static
org
.
jruby
.
api
.
Create
.
newString
;
import
static
org
.
jruby
.
api
.
Error
.
argumentError
;
import
static
org
.
jruby
.
api
.
Error
.
rangeError
;
import
static
org
.
jruby
.
runtime
.
Helpers
.
hashEnd
;
import
static
org
.
jruby
.
runtime
.
Helpers
.
hashStart
;
import
static
org
.
jruby
.
runtime
.
Helpers
.
murmurCombine
;
import
static
org
.
jruby
.
runtime
.
Helpers
.
safeHashLong
;
import
static
org
.
jruby
.
runtime
.
ObjectAllocator
.
NOT_ALLOCATABLE_ALLOCATOR
;
/**
* Implements Enumerator::ArithmeticSequence
*/
@
JRubyClass
(
name
=
"Enumerator::ArithmeticSequence"
,
parent
=
"Enumerator"
)
public
class
RubyArithmeticSequence
extends
RubyObject
{
private
IRubyObject
begin
;
private
IRubyObject
end
;
private
IRubyObject
step
;
private
IRubyObject
excludeEnd
;
private
IRubyObject
generatedBy
;
private
String
method
;
private
IRubyObject
[]
args
;
public
static
RubyClass
createArithmeticSequenceClass
(
ThreadContext
context
,
RubyClass
Enumerator
,
RubyModule
Enumerable
) {
return
Enumerator
.
defineClassUnder
(
context
,
"ArithmeticSequence"
,
Enumerator
,
NOT_ALLOCATABLE_ALLOCATOR
).
include
(
context
,
Enumerable
).
defineMethods
(
context
,
RubyArithmeticSequence
.
class
).
tap
(
m
->
m
.
getMetaClass
().
undefMethods
(
context
,
"new"
));
}
public
RubyArithmeticSequence
(
Ruby
runtime
,
RubyClass
klass
) {
super
(
runtime
,
klass
);
}
public
RubyArithmeticSequence
(
Ruby
runtime
,
RubyClass
klass
,
IRubyObject
generatedBy
,
String
method
,
IRubyObject
[]
args
,
IRubyObject
begin
,
IRubyObject
end
,
IRubyObject
step
,
IRubyObject
excludeEnd
) {
super
(
runtime
,
klass
);
this
.
begin
=
begin
;
this
.
end
=
end
;
this
.
step
=
step
;
this
.
excludeEnd
=
excludeEnd
;
this
.
generatedBy
=
generatedBy
;
this
.
method
=
method
;
this
.
args
=
args
;
ThreadContext
context
=
runtime
.
getCurrentContext
();
setInstanceVariable
(
OBJECT
,
generatedBy
);
setInstanceVariable
(
METHOD
,
newString
(
context
,
method
));
setInstanceVariable
(
ARGS
,
args
!=
null
?
RubyArray
.
newArrayMayCopy
(
runtime
,
args
) :
newEmptyArray
(
context
));
setInstanceVariable
(
GENERATOR
,
context
.
nil
);
setInstanceVariable
(
LOOKAHEAD
,
allocArray
(
context
,
4
));
setInstanceVariable
(
FEEDVALUE
,
new
RubyEnumerator
.
FeedValue
(
context
));
}
public
static
RubyArithmeticSequence
newArithmeticSequence
(
ThreadContext
context
,
IRubyObject
generatedBy
,
String
method
,
IRubyObject
[]
args
,
IRubyObject
begin
,
IRubyObject
end
,
IRubyObject
step
,
IRubyObject
excludeEnd
) {
return
new
RubyArithmeticSequence
(
context
.
runtime
,
context
.
runtime
.
getArithmeticSequence
(),
generatedBy
,
method
,
args
,
begin
,
end
,
step
,
excludeEnd
);
}
private
static
NumericSites
sites
(
ThreadContext
context
) {
return
context
.
sites
.
Numeric
;
}
// arith_seq_each
@
JRubyMethod
public
IRubyObject
each
(
ThreadContext
context
,
Block
block
) {
IRubyObject
c
=
begin
;
IRubyObject
e
=
end
;
IRubyObject
s
=
step
;
IRubyObject
len_1
,
last
;
if
(!
block
.
isGiven
()) {
return
this
;
}
if
(!(
step
instanceof
RubyComplex
) &&
floatStep
(
context
,
c
,
e
,
s
,
excludeEnd
.
isTrue
(),
true
,
block
)) {
return
this
;
}
if
(
end
.
isNil
()) {
while
(
true
) {
block
.
yield
(
context
,
c
);
c
= ((
RubyNumeric
)
c
).
op_plus
(
context
,
s
);
}
}
if
(
Helpers
.
rbEqual
(
context
,
step
,
asFixnum
(
context
,
0
)).
isTrue
()) {
while
(
true
) {
block
.
yield
(
context
,
c
);
}
}
len_1
= ((
RubyNumeric
)((
RubyNumeric
)
e
).
op_minus
(
context
,
c
)).
idiv
(
context
,
s
);
last
= ((
RubyNumeric
)
c
).
op_plus
(
context
,
Numeric
.
f_mul
(
context
,
s
,
len_1
));
if
(
excludeEnd
.
isTrue
() &&
Helpers
.
rbEqual
(
context
,
last
,
e
).
isTrue
()) {
last
= ((
RubyNumeric
)
last
).
op_minus
(
context
,
s
);
}
CallSite
op_ge
=
sites
(
context
).
op_ge
;
if
(
Numeric
.
f_negative_p
(
context
,
s
)) {
while
(
RubyNumeric
.
numFuncall
(
context
,
c
,
op_ge
,
last
).
isTrue
()) {
block
.
yield
(
context
,
c
);
c
= ((
RubyNumeric
)
c
).
op_plus
(
context
,
s
);
}
}
else
{
while
(
RubyNumeric
.
numFuncall
(
context
,
last
,
op_ge
,
c
).
isTrue
()) {
block
.
yield
(
context
,
c
);
c
= ((
RubyNumeric
)
c
).
op_plus
(
context
,
s
);
}
}
return
this
;
}
// arith_seq_first
@
JRubyMethod
public
IRubyObject
first
(
ThreadContext
context
) {
return
first
(
context
,
null
);
}
// arith_seq_first
@
JRubyMethod
public
IRubyObject
first
(
ThreadContext
context
,
IRubyObject
num
) {
IRubyObject
b
=
begin
,
e
=
end
,
s
=
step
;
RubyArray
ary
;
if
(
num
==
null
)
return
firstNoNum
(
context
,
b
,
e
,
s
);
/* TODO: the following code should be extracted as arith_seq_take */
long
n
=
toLong
(
context
,
num
);
if
(
n
<
0
)
throw
argumentError
(
context
,
"attempt to take negative size"
);
if
(
n
==
0
)
return
newEmptyArray
(
context
);
boolean
x
=
excludeEnd
.
isTrue
();
if
(
b
instanceof
RubyFixnum
bb
&&
e
.
isNil
() &&
s
instanceof
RubyFixnum
ss
) {
long
i
=
bb
.
getValue
();
long
unit
=
ss
.
getValue
();
ary
=
allocArray
(
context
,
n
);
while
(
n
>
0
&&
fixable
(
context
.
runtime
,
i
)) {
ary
.
append
(
context
,
asFixnum
(
context
,
i
));
i
+=
unit
;
/* FIXABLE + FIXABLE never overflow; */
--
n
;
}
if
(
n
>
0
) {
b
=
asFixnum
(
context
,
i
);
while
(
n
>
0
) {
ary
.
append
(
context
,
b
);
b
= ((
RubyInteger
)
b
).
op_plus
(
context
,
s
);
--
n
;
}
}
return
ary
;
}
else
if
(
b
instanceof
RubyFixnum
bb
&&
e
instanceof
RubyFixnum
ee
&&
s
instanceof
RubyFixnum
ss
) {
long
i
=
bb
.
getValue
();
long
end
=
ee
.
getValue
();
long
unit
=
ss
.
getValue
();
long
len
;
if
(
unit
>=
0
) {
if
(!
x
)
end
+=
1
;
len
=
end
-
i
;
if
(
len
<
0
)
len
=
0
;
ary
=
allocArray
(
context
,
Math
.
min
(
n
,
len
));
while
(
n
>
0
&&
i
<
end
) {
ary
.
append
(
context
,
asFixnum
(
context
,
i
));
if
(
i
+
unit
<
i
)
break
;
i
+=
unit
;
--
n
;
}
}
else
{
if
(!
x
)
end
-=
1
;
len
=
i
-
end
;
if
(
len
<
0
)
len
=
0
;
ary
=
allocArray
(
context
,
Math
.
min
(
n
,
len
));
while
(
n
>
0
&&
i
>
end
) {
ary
.
append
(
context
,
asFixnum
(
context
,
i
));
if
(
i
+
unit
>
i
)
break
;
i
+=
unit
;
--
n
;
}
}
return
ary
;
}
else
if
(
b
instanceof
RubyFloat
||
e
instanceof
RubyFloat
||
s
instanceof
RubyFloat
) {
/* generate values like ruby_float_step */
double
unit
=
toDouble
(
context
,
s
);
double
beg
=
toDouble
(
context
,
b
);
double
end
=
e
.
isNil
() ? (
unit
<
0
?
Double
.
NEGATIVE_INFINITY
:
Double
.
POSITIVE_INFINITY
) :
toDouble
(
context
,
e
);
double
len
=
floatStepSize
(
beg
,
end
,
unit
,
x
);
long
i
;
if
(
n
>
len
)
n
= (
long
)
len
;
if
(
Double
.
isInfinite
(
unit
)) {
return
len
>
0
?
newArray
(
context
,
asFloat
(
context
,
beg
)) :
newEmptyArray
(
context
);
}
else
if
(
unit
==
0
) {
IRubyObject
val
=
asFloat
(
context
,
beg
);
ary
=
allocArray
(
context
,
n
);
for
(
i
=
0
;
i
<
len
; ++
i
) {
ary
.
append
(
context
,
val
);
}
}
else
{
ary
=
allocArray
(
context
,
n
);
for
(
i
=
0
;
i
<
n
; ++
i
) {
double
d
=
i
*
unit
+
beg
;
if
(
unit
>=
0
?
end
<
d
:
d
<
end
)
d
=
end
;
ary
.
append
(
context
,
asFloat
(
context
,
d
));
}
}
return
ary
;
}
return
Helpers
.
invokeSuper
(
context
,
this
,
enumeratorClass
(
context
),
"first"
,
num
,
Block
.
NULL_BLOCK
);
}
private
IRubyObject
firstNoNum
(
ThreadContext
context
,
IRubyObject
b
,
IRubyObject
e
,
IRubyObject
s
) {
if
(
b
.
isNil
())
return
context
.
nil
;
if
(!
e
.
isNil
()) {
IRubyObject
zero
=
asFixnum
(
context
,
0
);
CallSite
op_cmp
=
sites
(
context
).
op_cmp
;
CallSite
op_gt
=
sites
(
context
).
op_gt
;
CallSite
op_lt
=
sites
(
context
).
op_lt
;
int
r
=
RubyComparable
.
cmpint
(
context
, ((
RubyNumeric
)
step
).
coerceCmp
(
context
,
op_cmp
,
zero
),
s
,
zero
);
if
(
r
>
0
&&
RubyNumeric
.
numFuncall
(
context
,
b
,
op_gt
,
e
).
isTrue
())
return
context
.
nil
;
if
(
r
<
0
&&
RubyNumeric
.
numFuncall
(
context
,
b
,
op_lt
,
e
).
isTrue
())
return
context
.
nil
;
}
return
b
;
}
// arith_seq_eq
@
JRubyMethod
(
name
= {
"=="
,
"eql?"
})
@
Override
public
IRubyObject
op_equal
(
ThreadContext
context
,
IRubyObject
other
) {
if
(!(
other
instanceof
RubyArithmeticSequence
aseqOther
))
return
context
.
fals
;
if
(!
Helpers
.
rbEqual
(
context
,
this
.
begin
,
aseqOther
.
begin
).
isTrue
())
return
context
.
fals
;
if
(!
Helpers
.
rbEqual
(
context
,
this
.
end
,
aseqOther
.
end
).
isTrue
())
return
context
.
fals
;
if
(!
Helpers
.
rbEqual
(
context
,
this
.
step
,
aseqOther
.
step
).
isTrue
())
return
context
.
fals
;
if
(!
Helpers
.
rbEqual
(
context
,
this
.
excludeEnd
,
aseqOther
.
excludeEnd
).
isTrue
())
return
context
.
fals
;
return
context
.
tru
;
}
@
JRubyMethod
(
name
=
"hash"
)
public
RubyFixnum
hash
(
ThreadContext
context
) {
long
hash
=
hashStart
(
context
.
runtime
,
safeHashLong
(
context
,
excludeEnd
));
hash
=
murmurCombine
(
hash
,
safeHashLong
(
context
,
begin
));
hash
=
murmurCombine
(
hash
,
safeHashLong
(
context
,
end
));
hash
=
murmurCombine
(
hash
,
safeHashLong
(
context
,
step
));
hash
=
hashEnd
(
hash
);
return
asFixnum
(
context
,
hash
);
}
@
JRubyMethod
public
RubyString
inspect
(
ThreadContext
context
) {
ByteList
str
=
new
ByteList
();
boolean
isRange
=
generatedBy
instanceof
RubyRange
;
str
.
append
(
'('
);
if
(
isRange
) {
str
.
append
(
'('
);
}
str
.
append
(
RubyObject
.
inspect
(
context
,
generatedBy
).
getByteList
());
if
(
isRange
) {
str
.
append
(
')'
);
}
str
.
append
(
'.'
).
append
(
method
.
getBytes
());
if
(
args
!=
null
) {
int
argc
=
args
.
length
;
if
(
argc
>
0
) {
IRubyObject
kwds
=
context
.
nil
;
str
.
append
(
'('
);
if
(
args
[
argc
-
1
]
instanceof
RubyHash
) {
boolean
allKey
=
true
;
IRubyObject
[]
keys
= ((
RubyHash
)
args
[
argc
-
1
]).
keys
().
toJavaArray
(
context
);
for
(
IRubyObject
key
:
keys
) {
if
(!(
key
instanceof
RubySymbol
)) {
allKey
=
false
;
break
;
}
}
if
(
allKey
) {
kwds
=
args
[--
argc
];
}
}
int
counter
=
0
;
while
(
argc
>
0
) {
str
.
append
(
RubyObject
.
inspect
(
context
,
args
[
counter
]).
getByteList
());
str
.
append
(
','
).
append
(
' '
);
argc
--;
counter
++;
}
if
(!
kwds
.
isNil
()) {
IRubyObject
[]
keys
= ((
RubyHash
)
kwds
).
keys
().
toJavaArray
(
context
);
for
(
IRubyObject
key
:
keys
) {
IRubyObject
value
= ((
RubyHash
)
kwds
).
fastARef
(
key
);
str
.
append
(((
RubySymbol
)
key
).
getBytes
());
str
.
append
(
':'
).
append
(
' '
);
str
.
append
(
RubyObject
.
inspect
(
context
,
value
).
getByteList
());
str
.
append
(
','
).
append
(
' '
);
}
}
str
=
new
ByteList
(
str
,
0
,
str
.
length
() -
2
);
/* drop the last ", " */
str
.
append
(
')'
);
}
}
str
.
append
(
')'
);
return
RubyString
.
newStringLight
(
context
.
runtime
,
str
);
}
@
JRubyMethod
public
IRubyObject
begin
(
ThreadContext
context
) {
return
begin
;
}
@
JRubyMethod
public
IRubyObject
end
(
ThreadContext
context
) {
return
end
;
}
@
JRubyMethod
public
IRubyObject
step
(
ThreadContext
context
) {
return
step
;
}
@
JRubyMethod
(
name
=
"exclude_end?"
)
public
IRubyObject
exclude_end
(
ThreadContext
context
) {
return
excludeEnd
;
}
// arith_seq_last
@
JRubyMethod
public
IRubyObject
last
(
ThreadContext
context
) {
return
last
(
context
,
null
);
}
// arith_seq_last
@
JRubyMethod
public
IRubyObject
last
(
ThreadContext
context
,
IRubyObject
num
) {
var
b
= (
RubyNumeric
)
begin
;
if
(
end
.
isNil
())
throw
rangeError
(
context
,
"cannot get the last element of endless arithmetic sequence"
);
var
e
= (
RubyNumeric
)
end
;
IRubyObject
s
=
step
;
var
len_1
= (
RubyNumeric
) ((
RubyNumeric
)
e
.
op_minus
(
context
,
b
)).
idiv
(
context
,
s
);
if
(
Numeric
.
f_negative_p
(
context
,
len_1
))
return
num
==
null
?
context
.
nil
:
newEmptyArray
(
context
);
var
last
= (
RubyNumeric
)
b
.
op_plus
(
context
,
Numeric
.
f_mul
(
context
,
s
,
len_1
));
boolean
last_is_adjusted
=
excludeEnd
.
isTrue
();
if
(
last_is_adjusted
&&
Helpers
.
rbEqual
(
context
,
last
,
e
).
isTrue
()) {
last
= (
RubyNumeric
)
last
.
op_minus
(
context
,
s
);
}
if
(
num
==
null
)
return
last
;
var
len
=
last_is_adjusted
?
len_1
: (
RubyNumeric
)
len_1
.
op_plus
(
context
,
asFixnum
(
context
,
1
));
RubyNumeric
nv
= !(
num
instanceof
RubyInteger
numm
) ?
toInteger
(
context
,
num
) :
numm
;
if
(
RubyNumeric
.
numFuncall
(
context
,
nv
,
sites
(
context
).
op_gt
,
len
).
isTrue
())
nv
=
len
;
long
n
=
toLong
(
context
,
nv
);
if
(
n
<
0
)
throw
argumentError
(
context
,
"negative array size"
);
var
ary
=
allocArray
(
context
,
n
);
var
i
= (
RubyNumeric
)
last
.
op_minus
(
context
,
Numeric
.
f_mul
(
context
,
s
,
nv
));
while
(
n
>
0
) {
i
= (
RubyNumeric
)
i
.
op_plus
(
context
,
s
);
ary
.
append
(
context
,
i
);
--
n
;
}
return
ary
;
}
@
JRubyMethod
public
IRubyObject
size
(
ThreadContext
context
) {
if
(
begin
instanceof
RubyFloat
||
end
instanceof
RubyFloat
||
step
instanceof
RubyFloat
) {
double
ee
=
end
.
isNil
() ?
(
Numeric
.
f_negative_p
(
context
,
step
) ?
Double
.
NEGATIVE_INFINITY
:
Double
.
POSITIVE_INFINITY
) :
toDouble
(
context
,
end
);
double
n
=
floatStepSize
(
toDouble
(
context
,
begin
),
ee
,
toDouble
(
context
,
step
),
excludeEnd
.
isTrue
());
if
(
Double
.
isInfinite
(
n
))
return
asFloat
(
context
,
n
);
if
(
RubyNumeric
.
posFixable
(
n
))
return
asFixnum
(
context
, (
long
)
n
);
return
RubyBignum
.
newBignorm
(
context
.
runtime
,
n
);
}
if
(
end
.
isNil
())
return
asFloat
(
context
,
Double
.
POSITIVE_INFINITY
);
if
(!(
step
instanceof
RubyNumeric
))
step
=
toInteger
(
context
,
step
);
if
(
Helpers
.
rbEqual
(
context
,
step
,
asFixnum
(
context
,
0
)).
isTrue
()) {
return
asFloat
(
context
,
Double
.
POSITIVE_INFINITY
);
}
IRubyObject
len_1
= ((
RubyNumeric
)((
RubyNumeric
)
end
).
op_minus
(
context
,
begin
)).
idiv
(
context
,
step
);
if
(
Numeric
.
f_negative_p
(
context
,
len_1
))
return
asFixnum
(
context
,
0
);
IRubyObject
last
= ((
RubyNumeric
)
begin
).
op_plus
(
context
,
Numeric
.
f_mul
(
context
,
step
,
len_1
));
IRubyObject
len
=
excludeEnd
.
isTrue
() &&
Helpers
.
rbEqual
(
context
,
last
,
end
).
isTrue
() ?
len_1
: ((
RubyNumeric
)
len_1
).
op_plus
(
context
,
asFixnum
(
context
,
1
));
return
len
;
}
/**
* A size method suitable for lambda method reference implementation of
* {@link RubyEnumerator.SizeFn#size(ThreadContext, IRubyObject, IRubyObject[])}
*
* @see RubyEnumerator.SizeFn#size(ThreadContext, IRubyObject, IRubyObject[])
*/
private
static
IRubyObject
size
(
ThreadContext
context
,
RubyArithmeticSequence
self
,
IRubyObject
[]
args
) {
return
self
.
size
(
context
);
}
private
static
FiberSites
fiberSites
(
ThreadContext
context
) {
return
context
.
sites
.
Fiber
;
}
@
JRubyMethod
(
name
=
"each_cons"
)
public
IRubyObject
each_cons
(
ThreadContext
context
,
IRubyObject
arg
,
final
Block
block
) {
int
size
= (
int
)
toLong
(
context
,
arg
);
if
(
size
<=
0
)
throw
argumentError
(
context
,
"invalid size"
);
return
block
.
isGiven
() ?
RubyEnumerable
.
each_consCommon
(
context
,
this
,
size
,
block
) :
enumeratorize
(
context
.
runtime
,
this
,
"each_cons"
,
arg
);
}
@
JRubyMethod
(
name
=
"each_slice"
)
public
IRubyObject
each_slice
(
ThreadContext
context
,
IRubyObject
arg
,
final
Block
block
) {
int
size
= (
int
)
toLong
(
context
,
arg
);
if
(
size
<=
0
)
throw
argumentError
(
context
,
"invalid size"
);
return
block
.
isGiven
() ?
RubyEnumerable
.
each_sliceCommon
(
context
,
this
,
size
,
block
) :
enumeratorizeWithSize
(
context
,
this
,
"each_slice"
,
new
IRubyObject
[]{
arg
},
RubyArithmeticSequence
::
size
);
}
@
JRubyMethod
public
IRubyObject
each_with_object
(
final
ThreadContext
context
,
IRubyObject
arg
,
Block
block
) {
return
block
.
isGiven
() ?
RubyEnumerable
.
each_with_objectCommon
(
context
,
this
,
block
,
arg
) :
enumeratorizeWithSize
(
context
,
this
,
"each_with_object"
,
new
IRubyObject
[]{
arg
},
RubyArithmeticSequence
::
size
);
}
@
JRubyMethod
(
name
=
"with_index"
)
public
IRubyObject
with_index
(
ThreadContext
context
,
final
Block
block
) {
return
with_index
(
context
,
context
.
nil
,
block
);
}
@
JRubyMethod
(
name
=
"with_index"
)
public
IRubyObject
with_index
(
ThreadContext
context
,
IRubyObject
arg
,
final
Block
block
) {
final
int
index
=
arg
.
isNil
() ?
0
:
toInt
(
context
,
arg
);
if
(!
block
.
isGiven
()) {
return
arg
.
isNil
() ?
enumeratorizeWithSize
(
context
,
this
,
"with_index"
,
RubyArithmeticSequence
::
size
) :
enumeratorizeWithSize
(
context
,
this
,
"with_index"
,
new
IRubyObject
[]{
asFixnum
(
context
,
index
)},
RubyArithmeticSequence
::
size
);
}
return
RubyEnumerable
.
callEach
(
context
,
fiberSites
(
context
).
each
,
this
,
new
RubyEnumerable
.
EachWithIndex
(
block
,
index
));
}
}
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