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machinery
laser-gcode-exporter-inkscape-plugin
Commits
ba27a8ba
Commit
ba27a8ba
authored
May 17, 2016
by
nextime
Browse files
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Plain Diff
Dither images based on laser power
parent
2103e7b7
Changes
1
Show whitespace changes
Inline
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Showing
1 changed file
with
48 additions
and
27 deletions
+48
-27
turnkeylaser.py
turnkeylaser.py
+48
-27
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turnkeylaser.py
View file @
ba27a8ba
...
...
@@ -951,7 +951,7 @@ class Gcode_tools(inkex.Effect):
self
.
skipped
=
0
def
compile_paths
(
parent
,
node
,
trans
):
def
compile_paths
(
parent
,
node
,
trans
,
laserPower
=
100
):
# Apply the object transform, along with the parent transformation
mat
=
node
.
get
(
'transform'
,
None
)
path
=
{}
...
...
@@ -986,7 +986,7 @@ class Gcode_tools(inkex.Effect):
# This node is a group of other nodes
pathsGroup
=
[]
for
child
in
node
.
iterchildren
():
data
=
compile_paths
(
parent
,
child
,
trans
)
data
=
compile_paths
(
parent
,
child
,
trans
,
laserPower
)
#inkex.errormsg(str(data))
if
type
(
data
)
is
not
list
:
pathsGroup
.
append
(
data
.
copy
())
...
...
@@ -1019,9 +1019,32 @@ class Gcode_tools(inkex.Effect):
#Get the image size
imageDataWidth
,
imageDataheight
=
img
.
size
# dithering image and compile the pixels
inkex
.
errormsg
(
"start dithering."
)
palette
=
list
(
set
(
img
.
convert
(
"P"
,
palette
=
Image
.
ADAPTIVE
,
colors
=
laserPower
-
1
)
.
getpalette
()))
inkex
.
errormsg
(
"dither for "
+
str
(
len
(
palette
))
+
" colors palette..."
)
pixel
=
img
.
load
()
pixels
=
[]
for
line
in
range
(
0
,
imageDataheight
):
r
=
[]
for
row
in
range
(
0
,
imageDataWidth
):
oldpix
=
pixel
[
row
,
line
]
newpix
=
min
(
palette
,
key
=
lambda
p
:
abs
(
p
-
oldpix
))
quant_error
=
oldpix
-
newpix
try
:
pixel
[
row
+
1
,
line
]
=
pixel
[
row
+
1
,
line
]
+
quant_error
*
7
/
16
pixel
[
row
-
1
,
line
+
1
]
=
pixel
[
row
-
1
,
line
+
1
]
+
quant_error
*
3
/
16
pixel
[
row
,
line
+
1
]
=
pixel
[
row
,
line
+
1
]
+
quant_error
*
5
/
16
pixel
[
row
+
1
,
line
+
1
]
=
pixel
[
row
+
1
,
line
+
1
]
+
quant_error
*
1
/
16
except
:
pass
pixels
=
[[
pixel
[
r
,
l
]
for
r
in
xrange
(
imageDataWidth
)]
for
l
in
xrange
(
imageDataheight
)]
#Compile the pixels.
pixels
=
list
(
img
.
getdata
())
pixels
=
[
pixels
[
i
*
(
imageDataWidth
):(
i
+
1
)
*
(
imageDataWidth
)]
for
i
in
xrange
(
imageDataheight
)]
#
pixels = list(img.getdata())
#
pixels = [pixels[i * (imageDataWidth):(i + 1) * (imageDataWidth)] for i in xrange(imageDataheight)]
path
[
'type'
]
=
"raster"
path
[
'width'
]
=
imageDataWidth
...
...
@@ -1177,6 +1200,22 @@ class Gcode_tools(inkex.Effect):
trans
=
layer
.
get
(
'transform'
,
None
)
trans
=
simpletransform
.
parseTransform
(
trans
)
#Determind the power of the laser that this layer should be cut at.
#If the layer is not named as an integer value then default to the laser intensity set at the export settings.
#Fetch the laser power from the export dialog box.
laserPower
=
self
.
options
.
laser
try
:
if
(
int
(
layerName
)
>
0
and
int
(
layerName
)
<=
100
):
laserPower
=
int
(
layerName
)
else
:
laserPower
=
self
.
options
.
laser
except
ValueError
,
e
:
laserPower
=
self
.
options
.
laser
inkex
.
errormsg
(
"Unable to parse power level for layer name. Using default power level
%
d percent."
%
(
self
.
options
.
laser
))
for
node
in
layer
.
iterchildren
():
if
(
node
in
selected
):
#Vector path data, cut from x to y in a line or curve
...
...
@@ -1184,14 +1223,13 @@ class Gcode_tools(inkex.Effect):
logger
.
write
(
"node
%
s"
%
str
(
node
.
tag
))
selected
.
remove
(
node
)
try
:
newPath
=
compile_paths
(
self
,
node
,
trans
)
.
copy
();
newPath
=
compile_paths
(
self
,
node
,
trans
,
laserPower
)
.
copy
();
pathList
.
append
(
newPath
)
inkex
.
errormsg
(
"Built gcode for "
+
str
(
node
.
get
(
"id"
))
+
" - will be cut as
%
s."
%
(
newPath
[
'type'
])
)
except
:
messageOnce
=
True
for
objectData
in
compile_paths
(
self
,
node
,
trans
):
for
objectData
in
compile_paths
(
self
,
node
,
trans
,
laserPower
):
#if (messageOnce):
inkex
.
errormsg
(
"Built gcode for group "
+
str
(
node
.
get
(
"id"
))
+
", item
%
s - will be cut as
%
s."
%
(
objectData
[
'id'
],
objectData
[
'type'
])
)
#messageOnce = False
...
...
@@ -1205,21 +1243,6 @@ class Gcode_tools(inkex.Effect):
continue
#Determind the power of the laser that this layer should be cut at.
#If the layer is not named as an integer value then default to the laser intensity set at the export settings.
#Fetch the laser power from the export dialog box.
laserPower
=
self
.
options
.
laser
try
:
if
(
int
(
layerName
)
>
0
and
int
(
layerName
)
<=
100
):
laserPower
=
int
(
layerName
)
else
:
laserPower
=
self
.
options
.
laser
except
ValueError
,
e
:
laserPower
=
self
.
options
.
laser
inkex
.
errormsg
(
"Unable to parse power level for layer name. Using default power level
%
d percent."
%
(
self
.
options
.
laser
))
#Switch between smoothie power levels and ramps+marlin power levels
#ramps and marlin expect 0 to 100 while smoothie wants 0.0 to 1.0
...
...
@@ -1271,12 +1294,12 @@ class Gcode_tools(inkex.Effect):
trans
=
simpletransform
.
parseTransform
(
""
)
for
node
in
selected
:
try
:
newPath
=
compile_paths
(
self
,
node
,
trans
)
.
copy
();
newPath
=
compile_paths
(
self
,
node
,
trans
,
laserPower
)
.
copy
();
pathList
.
append
(
newPath
)
inkex
.
errormsg
(
"Built gcode for "
+
str
(
node
.
get
(
"id"
))
+
" - will be cut as
%
s."
%
(
newPath
[
'type'
])
)
except
:
messageOnce
=
True
for
objectData
in
compile_paths
(
self
,
node
,
trans
):
for
objectData
in
compile_paths
(
self
,
node
,
trans
,
laserPower
):
#if (messageOnce):
inkex
.
errormsg
(
"Built gcode for group "
+
str
(
node
.
get
(
"id"
))
+
", item
%
s - will be cut as
%
s."
%
(
objectData
[
'id'
],
objectData
[
'type'
])
)
#messageOnce = False
...
...
@@ -1284,8 +1307,6 @@ class Gcode_tools(inkex.Effect):
if
(
pathList
):
for
objectData
in
pathList
:
curve
=
self
.
parse_curve
(
objectData
)
...
...
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