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authorN.N. <nimon@users.sourceforge.net>2010-09-10 09:58:09 +0000
committerN.N. <nimon@users.sourceforge.net>2010-09-10 09:58:09 +0000
commit298c6ee66791adc5948b9c9c7f03198437117f87 (patch)
treec07fb33111fa2c9561b627f2bcd4ecb3691028c4 /msd
parentfaaaf8b49969478400a385a12e9f1bbb6a9bf247 (diff)
svn path=/trunk/externals/nusmuk/; revision=14035
Diffstat (limited to 'msd')
-rw-r--r--msd/src/msd.h110
1 files changed, 58 insertions, 52 deletions
diff --git a/msd/src/msd.h b/msd/src/msd.h
index b1912a9..4555987 100644
--- a/msd/src/msd.h
+++ b/msd/src/msd.h
@@ -173,19 +173,21 @@ public:
t_float longueur, long_min, long_max;
t_float distance_old;
t_float puissance;
- t_int link_type; //0 : no, 1 : tangential, 2 : normal
+ t_int link_type; //0 : no, 1 : tangential, 2 : normal, 3 : table
t_float tdirection1[N], tdirection2[N];
const t_symbol *k_tabname, *d_tabname;
flext::buffer *k_tab, *d_tab;
t_float l_tab;
+ t_int buffer_tested;
Link(t_int n,const t_symbol *id,Mass<N> *m1,Mass<N> *m2,t_float k1,t_float d1, t_int o=0, t_float tangent[N]=NULL,t_float pow=1, t_float lmin = 0,t_float lmax = 1e10,const t_symbol *ktab=NULL,const t_symbol *dtab=NULL, t_float ltab=1)
- : nbr(n),Id(id)
- , mass1(m1),mass2(m2)
- , K1(k1),D1(d1),D2(0),link_type(o),puissance(pow)
- , long_min(lmin),long_max(lmax)
- , k_tabname(ktab), d_tabname(dtab), l_tab(ltab)
- , k_tab(NULL),d_tab(NULL)
+ : nbr(n),Id(id)
+ , mass1(m1),mass2(m2)
+ , K1(k1),D1(d1),D2(0),link_type(o),puissance(pow)
+ , long_min(lmin),long_max(lmax)
+ , k_tabname(ktab), d_tabname(dtab), l_tab(ltab)
+ , k_tab(NULL),d_tab(NULL)
+ , buffer_tested(1)
{
for (int i=0; i<N; i++) {
tdirection1[i] = 0;
@@ -195,12 +197,11 @@ public:
distance_old = longueur = Mass<N>::dist(*mass1,*mass2); // L[n-1]
else if (link_type == 1) { // TANGENTIAL LINK
t_float norme = 0;
- for(int i = 0; i < N; ++i) norme += sqr(tangent[i]);
+ for(int i = 0; i < N; ++i)
+ norme += sqr(tangent[i]);
norme = sqrt(norme);
- //t_float norme = sqrt(sqr(xa)+sqr(ya)+sqr(za));
- for(int i = 0; i < N; ++i)tdirection1[i] = tangent[i]/norme;
- //tdirection1[1] = ya/norme;
- //tdirection1[2] = za/norme;
+ for(int i = 0; i < N; ++i)
+ tdirection1[i] = tangent[i]/norme;
distance_old = 0;
for(int i = 0; i < N; ++i)
distance_old += sqr((m1->pos[i]-m2->pos[i])*tdirection1[i]);
@@ -213,58 +214,66 @@ public:
if(k_tab)
delete k_tab;
k_tab = new flext::buffer(k_tabname);
- if(!k_tab->Ok())
- post("warning: buffer is currently not valid!");
+ if(!k_tab->Ok()) {
+ post("error : buffer %s is currently not valid!", *k_tabname);
+ buffer_tested *= 0;
+ }
+ buffer_tested *= buffer_test(k_tab);
}
if (d_tabname) {
if(d_tab)
delete d_tab;
d_tab = new flext::buffer(d_tabname);
- if(!d_tab->Ok())
- post("warning: buffer is currently not valid!");
- }
- }
- /*else if (link_type == 2) { // NORMAL LINK 2D
- if (N >= 2) {
- const t_float norme = sqrt(sqr(xa)+sqr(ya));
- tdirection1[0]=ya/norme;
- tdirection1[1]=xa/norme;
- distance_old = 0;
- for(int i = 0; i < N; ++i)
- distance_old += sqr((m1->pos[i]-m2->pos[i])*tdirection1[i]);
- if (N == 3) { // NORMAL LINK 3D
- if (xa == 0 && ya==0 && za!= 0) { // Special case
- tdirection1[0]=1;
- tdirection1[1]=0;
- tdirection1[2]=0;
- tdirection2[0]=0;
- tdirection2[1]=1;
- tdirection2[2]=0;
- }
- else { // Normal case
- const t_float norme2 = sqrt(sqr(xa*ya +za*xa)+sqr(xa*ya+za*ya)+sqr(sqr(xa)+sqr(ya)));
- tdirection2[0] = (xa*za+xa*ya)/norme2;
- tdirection2[1] = (xa*ya+za*ya)/norme2;
- tdirection2[2] = (sqr(xa)+sqr(ya))/norme2;
- }
- distance_old = 0;
- for(int i = 0; i < N; ++i)
- distance_old += sqr((m1->pos[i]-m2->pos[i])*(tdirection1[i]+tdirection2[i]));
+ if(!d_tab->Ok()) {
+ post("error : buffer %s is currently not valid!", *d_tabname);
+ buffer_tested *= 0;
}
- distance_old = sqrt(distance_old);
- longueur = distance_old;
+ buffer_tested *= buffer_test(d_tab);
}
- }*/
+ }
mass1->links.insert(this);
mass2->links.insert(this);
}
~Link()
{
+ if(k_tab) {
+ delete k_tab;
+ k_tab = NULL;
+ k_tabname = NULL;
+ }
+ if(d_tab) {
+ delete d_tab;
+ d_tab = NULL;
+ d_tabname = NULL;
+ }
mass1->links.erase(this);
mass2->links.erase(this);
}
+ inline t_int buffer_test(flext::buffer *buf) {
+ if(!buf || !buf->Valid()) {
+ post("no valid buffer defined");
+ // return zero length
+ return 0;
+ }
+ else {
+ if(buf->Update()) {
+ // buffer parameters have been updated
+ if(buf->Valid()) {
+ post("updated buffer reference");
+ return 1;
+ }
+ else {
+ post("buffer has become invalid");
+ return 0;
+ }
+ }
+ else
+ return 1;
+ }
+ }
+
inline t_float interp_buf(t_float indexf, flext::buffer *buf, t_float factor) {
t_float size_buf=buf->Frames();
t_float index_factor = indexf*(size_buf-1)/factor;
@@ -303,14 +312,11 @@ public:
distance = Mass<N>::dist(*m1,*m2);
if (distance < long_min || distance > long_max || distance == 0) {
-// for(int i = 0; i < N; ++i) {
- // m1->force[i] -= D2 * m1->speed[i]; // Fx1[n] = -Fx, Fx1[n] = Fx1[n] - D2 * vx1[n-1]
- // m2->force[i] += D2 * m2->speed[i]; // Fx2[n] = Fx, Fx2[n] = Fx2[n] - D2 * vx2[n-1]
- // }
+ // pas de forces
}
else { // Lmin < L < Lmax
// F[n] = k1 (L[n] - L[0])/L[n] + D1 (L[n] - L[n-1])/L[n]
- if (link_type == 3) { // tabLink
+ if (link_type == 3 && buffer_tested) { // tabLink
t_float k_temp = distance-longueur;
if (k_tabname) {
k_temp = interp_buf(distance,k_tab,l_tab);