forked from bartvdbraak/blender
Cleanup: whicespace
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6
extern/curve_fit_nd/curve_fit_nd.h
vendored
6
extern/curve_fit_nd/curve_fit_nd.h
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@ -25,8 +25,8 @@
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* SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#ifndef __SPLINE_FIT__
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#define __SPLINE_FIT__
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#ifndef __CURVE_FIT_ND_H__
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#define __CURVE_FIT_ND_H__
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/** \file curve_fit_nd.h
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* \ingroup curve_fit
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@ -159,4 +159,4 @@ int curve_fit_corners_detect_fl(
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unsigned int **r_corners,
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unsigned int *r_corners_len);
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#endif /* __SPLINE_FIT__ */
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#endif /* __CURVE_FIT_ND_H__ */
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@ -382,9 +382,9 @@ int curve_fit_corners_detect_db(
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uint i_best = i_span_start;
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while (i_next < points_len) {
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if ((points_angle[i_next] == 0.0) ||
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(len_squared_vnvn(
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&points[(i_next - 1) * dims],
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&points[i_next * dims], dims) > radius_min_sq))
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(len_squared_vnvn(
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&points[(i_next - 1) * dims],
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&points[i_next * dims], dims) > radius_min_sq))
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{
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break;
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}
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12
extern/curve_fit_nd/intern/curve_fit_cubic.c
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12
extern/curve_fit_nd/intern/curve_fit_cubic.c
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@ -46,7 +46,7 @@
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#define USE_LENGTH_CACHE
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/* store the indices in the cubic data so we can return the original indices,
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* useful when the caller has data assosiated with the curve. */
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* useful when the caller has data associated with the curve. */
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#define USE_ORIG_INDEX_DATA
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typedef unsigned int uint;
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@ -291,7 +291,7 @@ static void cubic_calc_acceleration(
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double r_v[])
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{
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CUBIC_VARS_CONST(cubic, dims, p0, p1, p2, p3);
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const double s = 1.0 - t;
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const double s = 1.0 - t;
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for (uint j = 0; j < dims; j++) {
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r_v[j] = 6.0 * ((p2[j] - 2.0 * p1[j] + p0[j]) * s +
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(p3[j] - 2.0 * p2[j] + p1[j]) * t);
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@ -735,10 +735,10 @@ static double points_calc_coord_length(
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* \note Return value may be `nan` caller must check for this.
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*/
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static double cubic_find_root(
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const Cubic *cubic,
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const double p[],
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const double u,
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const uint dims)
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const Cubic *cubic,
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const double p[],
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const double u,
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const uint dims)
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{
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/* Newton-Raphson Method. */
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/* all vectors */
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10
extern/curve_fit_nd/intern/curve_fit_inline.h
vendored
10
extern/curve_fit_nd/intern/curve_fit_inline.h
vendored
@ -57,7 +57,7 @@ MINLINE double max(const double a, const double b)
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#endif
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MINLINE void zero_vn(
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double v0[], const uint dims)
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double v0[], const uint dims)
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{
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for (uint j = 0; j < dims; j++) {
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v0[j] = 0.0;
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@ -65,7 +65,7 @@ MINLINE void zero_vn(
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}
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MINLINE void flip_vn_vnvn(
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double v_out[], const double v0[], const double v1[], const uint dims)
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double v_out[], const double v0[], const double v1[], const uint dims)
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{
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for (uint j = 0; j < dims; j++) {
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v_out[j] = v0[j] + (v0[j] - v1[j]);
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@ -194,7 +194,7 @@ MINLINE void imul_vn_fl(double v0[], const double f, const uint dims)
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MINLINE double len_squared_vnvn(
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const double v0[], const double v1[], const uint dims)
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const double v0[], const double v1[], const uint dims)
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{
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double d = 0.0;
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for (uint j = 0; j < dims; j++) {
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@ -220,14 +220,14 @@ MINLINE double len_vnvn(
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}
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MINLINE double len_vn(
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const double v0[], const uint dims)
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const double v0[], const uint dims)
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{
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return sqrt(len_squared_vn(v0, dims));
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}
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/* special case, save us negating a copy, then getting the length */
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MINLINE double len_squared_negated_vnvn(
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const double v0[], const double v1[], const uint dims)
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const double v0[], const double v1[], const uint dims)
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{
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double d = 0.0;
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for (uint j = 0; j < dims; j++) {
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