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testgroup
pytensor
Commits
e89aee9d
提交
e89aee9d
authored
7月 31, 2017
作者:
notoraptor
提交者:
GitHub
7月 31, 2017
浏览文件
操作
浏览文件
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差异文件
Merge pull request #6204 from anirudh9119/anirudh_ccw
using op params for Reshape ops
上级
a9a105f6
08fd8ae3
隐藏空白字符变更
内嵌
并排
正在显示
2 个修改的文件
包含
19 行增加
和
19 行删除
+19
-19
basic_ops.py
theano/gpuarray/basic_ops.py
+8
-8
basic.py
theano/tensor/basic.py
+11
-11
没有找到文件。
theano/gpuarray/basic_ops.py
浏览文件 @
e89aee9d
...
@@ -1129,7 +1129,7 @@ class GpuReshape(HideC, tensor.Reshape):
...
@@ -1129,7 +1129,7 @@ class GpuReshape(HideC, tensor.Reshape):
context_name
=
ctx_name
)
context_name
=
ctx_name
)
return
Apply
(
self
,
[
x
,
shp
],
[
otype
()])
return
Apply
(
self
,
[
x
,
shp
],
[
otype
()])
def
perform
(
self
,
node
,
inp
,
out_
):
def
perform
(
self
,
node
,
inp
,
out_
,
params
):
x
,
shp
=
inp
x
,
shp
=
inp
out
,
=
out_
out
,
=
out_
if
(
len
(
shp
)
!=
self
.
ndim
):
if
(
len
(
shp
)
!=
self
.
ndim
):
...
@@ -1157,33 +1157,33 @@ class GpuReshape(HideC, tensor.Reshape):
...
@@ -1157,33 +1157,33 @@ class GpuReshape(HideC, tensor.Reshape):
out
[
0
]
=
x
.
reshape
(
tuple
(
shp
))
out
[
0
]
=
x
.
reshape
(
tuple
(
shp
))
def
c_code_cache_version
(
self
):
def
c_code_cache_version
(
self
):
return
(
1
,)
return
(
2
,)
def
c_code
(
self
,
node
,
name
,
inputs
,
outputs
,
sub
):
def
c_code
(
self
,
node
,
name
,
inputs
,
outputs
,
sub
):
x
,
shape
=
inputs
x
,
shape
=
inputs
output
,
=
outputs
output
,
=
outputs
new_ndim
=
self
.
ndim
sdtype
=
node
.
inputs
[
1
]
.
type
.
dtype_specs
()[
1
]
sdtype
=
node
.
inputs
[
1
]
.
type
.
dtype_specs
()[
1
]
fail
=
sub
[
'fail'
]
fail
=
sub
[
'fail'
]
params
=
sub
[
'params'
]
return
"""
return
"""
size_t old_size = 1, new_size = 1;
size_t old_size = 1, new_size = 1;
size_t new_dims[
%(
new_ndim)
s
];
size_t new_dims[
%(
params)
s->ndim
];
int compute_axis = -1;
int compute_axis = -1;
assert (PyArray_NDIM(
%(shape)
s) == 1);
assert (PyArray_NDIM(
%(shape)
s) == 1);
if (PyArray_DIM(
%(shape)
s, 0) !=
%(
new_ndim)
s
)
if (PyArray_DIM(
%(shape)
s, 0) !=
%(
params)
s->ndim
)
{
{
PyErr_Format(PyExc_ValueError,
PyErr_Format(PyExc_ValueError,
"GpuReshape: given shape is of incorrect "
"GpuReshape: given shape is of incorrect "
"length (
%%
d should be
%%
d).",
"length (
%%
d should be
%%
d).",
PyArray_DIM(
%(shape)
s, 0),
%(
new_ndim)
s
);
PyArray_DIM(
%(shape)
s, 0),
%(
params)
s->ndim
);
%(fail)
s;
%(fail)
s;
}
}
for (size_t i = 0; i <
%(x)
s->ga.nd; ++i)
for (size_t i = 0; i <
%(x)
s->ga.nd; ++i)
old_size *=
%(x)
s->ga.dimensions[i];
old_size *=
%(x)
s->ga.dimensions[i];
for (size_t i = 0; i <
%(
new_ndim)
s
; ++i)
for (size_t i = 0; i <
%(
params)
s->ndim
; ++i)
{
{
new_dims[i] = ((
%(sdtype)
s*)(
new_dims[i] = ((
%(sdtype)
s*)(
PyArray_BYTES(
%(shape)
s) +
PyArray_BYTES(
%(shape)
s) +
...
@@ -1224,7 +1224,7 @@ class GpuReshape(HideC, tensor.Reshape):
...
@@ -1224,7 +1224,7 @@ class GpuReshape(HideC, tensor.Reshape):
}
}
Py_XDECREF(
%(output)
s);
Py_XDECREF(
%(output)
s);
%(output)
s = pygpu_reshape(
%(x)
s,
%(
new_ndim)
s
, new_dims,
%(output)
s = pygpu_reshape(
%(x)
s,
%(
params)
s->ndim
, new_dims,
GA_C_ORDER, 0, compute_axis);
GA_C_ORDER, 0, compute_axis);
if (
%(output)
s == NULL)
if (
%(output)
s == NULL)
{
{
...
...
theano/tensor/basic.py
浏览文件 @
e89aee9d
...
@@ -29,6 +29,8 @@ from theano import compile, printing
...
@@ -29,6 +29,8 @@ from theano import compile, printing
from
theano.printing
import
pprint
,
min_informative_str
from
theano.printing
import
pprint
,
min_informative_str
# For history
# For history
from
theano.compile
import
Rebroadcast
,
Shape
,
shape
from
theano.compile
import
Rebroadcast
,
Shape
,
shape
from
theano.scalar
import
int32
# We use these exceptions as well.
# We use these exceptions as well.
import
theano.scalar.sharedvar
import
theano.scalar.sharedvar
...
@@ -4710,20 +4712,19 @@ def vertical_stack(*args):
...
@@ -4710,20 +4712,19 @@ def vertical_stack(*args):
class
Reshape
(
Op
):
class
Reshape
(
Op
):
"""Perform a reshape operation of the input x to the new shape shp.
"""Perform a reshape operation of the input x to the new shape shp.
The number of dimensions to which to reshape to (ndim) must be
The number of dimensions to which to reshape to (ndim) must be
known at graph build time.
known at graph build time.
"""
"""
view_map
=
{
0
:
[
0
]}
# output 0 is potentially aliased to inputs [0]
view_map
=
{
0
:
[
0
]}
# output 0 is potentially aliased to inputs [0]
_f16_ok
=
True
_f16_ok
=
True
check_input
=
False
check_input
=
False
__props__
=
(
"ndim"
,)
__props__
=
(
"ndim"
,)
params_type
=
ParamsType
(
ndim
=
int32
)
# name does not participate because it doesn't affect computations
# name does not participate because it doesn't affect computations
def
__init__
(
self
,
ndim
,
name
=
None
):
def
__init__
(
self
,
ndim
,
name
=
None
):
self
.
ndim
=
ndim
self
.
ndim
=
int
(
ndim
)
if
ndim
<
0
:
if
ndim
<
0
:
raise
ValueError
(
"The output dimensions after reshape must be 0 or greater"
)
raise
ValueError
(
"The output dimensions after reshape must be 0 or greater"
)
assert
name
is
None
,
'name attribute for Reshape has been deprecated'
assert
name
is
None
,
'name attribute for Reshape has been deprecated'
...
@@ -4763,7 +4764,7 @@ class Reshape(Op):
...
@@ -4763,7 +4764,7 @@ class Reshape(Op):
pass
pass
return
gof
.
Apply
(
self
,
[
x
,
shp
],
[
tensor
(
x
.
type
.
dtype
,
bcasts
)])
return
gof
.
Apply
(
self
,
[
x
,
shp
],
[
tensor
(
x
.
type
.
dtype
,
bcasts
)])
def
perform
(
self
,
node
,
inp
,
out_
):
def
perform
(
self
,
node
,
inp
,
out_
,
params
):
x
,
shp
=
inp
x
,
shp
=
inp
out
,
=
out_
out
,
=
out_
if
(
len
(
shp
)
!=
self
.
ndim
):
if
(
len
(
shp
)
!=
self
.
ndim
):
...
@@ -4860,22 +4861,22 @@ class Reshape(Op):
...
@@ -4860,22 +4861,22 @@ class Reshape(Op):
for
i
in
xrange
(
self
.
ndim
)])]
for
i
in
xrange
(
self
.
ndim
)])]
def
c_code_cache_version
(
self
):
def
c_code_cache_version
(
self
):
return
(
7
,)
return
(
8
,)
def
c_code
(
self
,
node
,
name
,
inputs
,
outputs
,
sub
):
def
c_code
(
self
,
node
,
name
,
inputs
,
outputs
,
sub
):
if
isinstance
(
node
.
inputs
[
0
],
TensorVariable
):
if
isinstance
(
node
.
inputs
[
0
],
TensorVariable
):
x
,
shp
=
inputs
x
,
shp
=
inputs
z
,
=
outputs
z
,
=
outputs
new_ndim
=
self
.
ndim
sdtype
=
node
.
inputs
[
1
]
.
type
.
dtype_specs
()[
1
]
sdtype
=
node
.
inputs
[
1
]
.
type
.
dtype_specs
()[
1
]
fail
=
sub
[
'fail'
]
fail
=
sub
[
'fail'
]
params
=
sub
[
'params'
]
return
"""
return
"""
assert (PyArray_NDIM(
%(shp)
s) == 1);
assert (PyArray_NDIM(
%(shp)
s) == 1);
npy_intp new_dims[
%(
new_ndim)
s
];
npy_intp new_dims[
%(
params)
s->ndim
];
PyArray_Dims newshape;
PyArray_Dims newshape;
newshape.ptr = new_dims;
newshape.ptr = new_dims;
newshape.len =
%(
new_ndim)
s
;
newshape.len =
%(
params)
s->ndim
;
for (int ii = 0; ii <
%(
new_ndim)
s
; ++ii)
for (int ii = 0; ii <
%(
params)
s->ndim
; ++ii)
{
{
// -- We do not want an explicit cast here. the shp can be any
// -- We do not want an explicit cast here. the shp can be any
// -- int* dtype. The compiler will explicitly upcast it, but
// -- int* dtype. The compiler will explicitly upcast it, but
...
@@ -4886,8 +4887,7 @@ class Reshape(Op):
...
@@ -4886,8 +4887,7 @@ class Reshape(Op):
ii * PyArray_STRIDES(
%(shp)
s)[0]))[0];
ii * PyArray_STRIDES(
%(shp)
s)[0]))[0];
}
}
Py_XDECREF(
%(z)
s);
Py_XDECREF(
%(z)
s);
%(z)
s = (PyArrayObject *) PyArray_Newshape(
%(x)
s, &newshape,
%(z)
s = (PyArrayObject *) PyArray_Newshape(
%(x)
s, &newshape, NPY_CORDER);
NPY_CORDER);
if (!
%(z)
s)
if (!
%(z)
s)
{
{
//The error message should have been set by PyArray_Newshape
//The error message should have been set by PyArray_Newshape
...
...
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