libs-gui/Source/NSAffineTransform.m
Fred Kiefer 340c7eb879 Change DPS/PS functions to CGFloat and NSInteger.
git-svn-id: svn+ssh://svn.gna.org/svn/gnustep/libs/gui/trunk@36063 72102866-910b-0410-8b05-ffd578937521
2013-02-05 19:18:49 +00:00

348 lines
7.9 KiB
Objective-C

/** <title>NSAffineTransform.m</title>
<abstract>
This class provides a way to perform affine transforms. It provides
a matrix for transforming from one coordinate system to another.
</abstract>
Copyright (C) 1996,1999 Free Software Foundation, Inc.
Author: Ovidiu Predescu <ovidiu@net-community.com>
Date: August 1997
Author: Richard Frith-Macdonald <richard@brainstorm.co.uk>
Date: March 1999
This file is part of the GNUstep GUI Library.
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; see the file COPYING.LIB.
If not, see <http://www.gnu.org/licenses/> or write to the
Free Software Foundation, 51 Franklin Street, Fifth Floor,
Boston, MA 02110-1301, USA.
*/
#import "config.h"
#include <math.h>
#import <Foundation/NSArray.h>
#import <Foundation/NSDebug.h>
#import <Foundation/NSException.h>
#import <Foundation/NSString.h>
#import "AppKit/NSAffineTransform.h"
#import "AppKit/NSBezierPath.h"
#import "AppKit/PSOperators.h"
/* Private definitions */
#define A matrix.m11
#define B matrix.m12
#define C matrix.m21
#define D matrix.m22
#define TX matrix.tX
#define TY matrix.tY
/* A Postscript matrix looks like this:
/ a b 0 \
| c d 0 |
\ tx ty 1 /
*/
static const CGFloat pi = 3.1415926535897932384626434;
@implementation NSAffineTransform (GUIAdditions)
/**
* Concatenates the receiver's matrix with the one in the current graphics
* context.
*/
- (void) concat
{
// FIXME Should use GSConcatCTM:
NSAffineTransformStruct ats = [self transformStruct];
CGFloat floatMatrix[6];
floatMatrix[0] = ats.m11;
floatMatrix[1] = ats.m12;
floatMatrix[2] = ats.m21;
floatMatrix[3] = ats.m22;
floatMatrix[4] = ats.tX;
floatMatrix[5] = ats.tY;
PSconcat(floatMatrix);
}
/**
* Get the currently active graphics context's transformation
* matrix and set it into the receiver.
*/
- (void) set
{
GSSetCTM(GSCurrentContext(), self);
}
/**
* <p>Applies the receiver's transformation matrix to each point in
* the bezier path, then returns the result. The original bezier
* path is not modified.
* </p>
*/
- (NSBezierPath*) transformBezierPath: (NSBezierPath*)aPath
{
NSBezierPath *path = [aPath copy];
[path transformUsingAffineTransform: self];
return AUTORELEASE(path);
}
@end /* NSAffineTransform (GUIAdditions) */
@implementation NSAffineTransform (GNUstep)
- (void) scaleTo: (CGFloat)sx : (CGFloat)sy
{
NSAffineTransformStruct matrix = [self transformStruct];
/* If it's rotated. */
if (B != 0 || C != 0)
{
// FIXME: This case does not handle shear.
CGFloat angle = [self rotationAngle];
// Keep the translation and add scaling
A = sx; B = 0;
C = 0; D = sy;
[self setTransformStruct: matrix];
// Prepend the rotation to the scaling and translation
[self rotateByDegrees: angle];
}
else
{
A = sx; B = 0;
C = 0; D = sy;
[self setTransformStruct: matrix];
}
}
- (void) translateToPoint: (NSPoint)point
{
[self translateXBy: point.x yBy: point.y];
}
- (void) makeIdentityMatrix
{
[self init];
}
- (void) setFrameOrigin: (NSPoint)point
{
NSAffineTransformStruct matrix = [self transformStruct];
CGFloat dx = point.x - TX;
CGFloat dy = point.y - TY;
[self translateXBy: dx yBy: dy];
}
- (void) setFrameRotation: (CGFloat)angle
{
[self rotateByDegrees: angle - [self rotationAngle]];
}
- (CGFloat) rotationAngle
{
NSAffineTransformStruct matrix = [self transformStruct];
CGFloat rotationAngle = atan2(-C, A);
rotationAngle *= 180.0 / pi;
if (rotationAngle < 0.0)
rotationAngle += 360.0;
return rotationAngle;
}
- (void) concatenateWith: (NSAffineTransform*)anotherMatrix
{
GSOnceMLog(@"deprecated ... use -prependTransform:");
[self prependTransform: anotherMatrix];
}
- (void) concatenateWithMatrix: (const float[6])anotherMatrix
{
NSAffineTransformStruct amat;
NSAffineTransform *other;
GSOnceMLog(@"deprecated ... use -prependTransform:");
amat.m11 = anotherMatrix[0];
amat.m12 = anotherMatrix[1];
amat.m21 = anotherMatrix[2];
amat.m22 = anotherMatrix[3];
amat.tX = anotherMatrix[4];
amat.tY = anotherMatrix[5];
other = [NSAffineTransform new];
[other setTransformStruct: amat];
[self prependTransform: other];
RELEASE(other);
}
- (void)inverse
{
GSOnceMLog(@"deprecated ... use -invert:");
[self invert];
}
- (BOOL) isRotated
{
NSAffineTransformStruct matrix = [self transformStruct];
if (B == 0 && C == 0)
{
return NO;
}
else
{
return YES;
}
}
- (void) boundingRectFor: (NSRect)rect result: (NSRect*)newRect
{
NSAffineTransformStruct matrix = [self transformStruct];
/* Shortcuts of the usual rect values */
CGFloat x = rect.origin.x;
CGFloat y = rect.origin.y;
CGFloat width = rect.size.width;
CGFloat height = rect.size.height;
CGFloat xc[3];
CGFloat yc[3];
CGFloat min_x;
CGFloat max_x;
CGFloat min_y;
CGFloat max_y;
int i;
max_x = A * x + C * y + TX;
max_y = B * x + D * y + TY;
xc[0] = max_x + A * width;
yc[0] = max_y + B * width;
xc[1] = max_x + C * height;
yc[1] = max_y + D * height;
xc[2] = max_x + A * width + C * height;
yc[2] = max_y + B * width + D * height;
min_x = max_x;
min_y = max_y;
for (i = 0; i < 3; i++)
{
if (xc[i] < min_x)
min_x = xc[i];
if (xc[i] > max_x)
max_x = xc[i];
if (yc[i] < min_y)
min_y = yc[i];
if (yc[i] > max_y)
max_y = yc[i];
}
newRect->origin.x = min_x;
newRect->origin.y = min_y;
newRect->size.width = max_x -min_x;
newRect->size.height = max_y -min_y;
}
- (NSPoint) pointInMatrixSpace: (NSPoint)point
{
GSOnceMLog(@"deprecated ... use -transformPoint:");
return [self transformPoint: point];
}
- (NSPoint) deltaPointInMatrixSpace: (NSPoint)point
{
NSAffineTransformStruct matrix = [self transformStruct];
NSPoint new;
new.x = A * point.x + C * point.y;
new.y = B * point.x + D * point.y;
return new;
}
- (NSSize) sizeInMatrixSpace: (NSSize)size
{
GSOnceMLog(@"deprecated ... use -transformSize:");
return [self transformSize: size];
}
- (NSRect) rectInMatrixSpace: (NSRect)rect
{
NSRect new;
new.origin = [self transformPoint: rect.origin];
new.size = [self transformSize: rect.size];
if (new.size.width < 0)
{
new.origin.x += new.size.width;
new.size.width *= -1;
}
if (new.size.height < 0)
{
new.origin.y += new.size.height;
new.size.height *= -1;
}
return new;
}
- (void) setMatrix: (const float[6])replace
{
NSAffineTransformStruct matrix;
GSOnceMLog(@"deprecated ... use -setTransformStruct:");
matrix.m11 = replace[0];
matrix.m12 = replace[1];
matrix.m21 = replace[2];
matrix.m22 = replace[3];
matrix.tX = replace[4];
matrix.tY = replace[5];
[self setTransformStruct: matrix];
}
- (void) getMatrix: (float[6])replace
{
NSAffineTransformStruct matrix = [self transformStruct];
GSOnceMLog(@"deprecated ... use -transformStruct");
replace[0] = matrix.m11;
replace[1] = matrix.m12;
replace[2] = matrix.m21;
replace[3] = matrix.m22;
replace[4] = matrix.tX;
replace[5] = matrix.tY;
}
- (void) takeMatrixFromTransform: (NSAffineTransform *)aTransform
{
NSAffineTransformStruct matrix;
GSOnceMLog(@"deprecated ... use -transformStruct and setTransformStruct:");
matrix = [aTransform transformStruct];
[self setTransformStruct: matrix];
}
@end /* NSAffineTransform (GNUstep) */