166 lines
4.7 KiB
C++
166 lines
4.7 KiB
C++
#include "solvespace.h"
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const hRequest Request::HREQUEST_REFERENCE_XY = { 1 };
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const hRequest Request::HREQUEST_REFERENCE_YZ = { 2 };
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const hRequest Request::HREQUEST_REFERENCE_ZX = { 3 };
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void Request::Generate(IdList<Entity,hEntity> *entity,
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IdList<Param,hParam> *param)
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{
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int points = 0;
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int params = 0;
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int et = 0;
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bool hasNormal = false;
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bool hasDistance = false;
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int i;
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Entity e;
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memset(&e, 0, sizeof(e));
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switch(type) {
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case Request::WORKPLANE:
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et = Entity::WORKPLANE;
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points = 1;
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hasNormal = true;
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break;
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case Request::DATUM_POINT:
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et = 0;
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points = 1;
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break;
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case Request::LINE_SEGMENT:
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et = Entity::LINE_SEGMENT;
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points = 2;
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break;
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case Request::CIRCLE:
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et = Entity::CIRCLE;
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points = 1;
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params = 1;
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hasNormal = true;
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hasDistance = true;
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break;
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case Request::ARC_OF_CIRCLE:
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et = Entity::ARC_OF_CIRCLE;
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points = 3;
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hasNormal = true;
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break;
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case Request::CUBIC:
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et = Entity::CUBIC;
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points = 4;
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break;
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default: oops();
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}
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// Generate the entity that's specific to this request.
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e.type = et;
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e.group = group;
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e.workplane = workplane;
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e.construction = construction;
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e.h = h.entity(0);
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// And generate entities for the points
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for(i = 0; i < points; i++) {
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Entity p;
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memset(&p, 0, sizeof(p));
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p.workplane = workplane;
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// points start from entity 1, except for datum point case
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p.h = h.entity(i+(et ? 1 : 0));
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p.group = group;
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if(workplane.v == Entity::FREE_IN_3D.v) {
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p.type = Entity::POINT_IN_3D;
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// params for x y z
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p.param[0] = AddParam(param, h.param(16 + 3*i + 0));
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p.param[1] = AddParam(param, h.param(16 + 3*i + 1));
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p.param[2] = AddParam(param, h.param(16 + 3*i + 2));
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} else {
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p.type = Entity::POINT_IN_2D;
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// params for u v
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p.param[0] = AddParam(param, h.param(16 + 3*i + 0));
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p.param[1] = AddParam(param, h.param(16 + 3*i + 1));
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}
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entity->Add(&p);
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e.point[i] = p.h;
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}
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if(hasNormal) {
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Entity n;
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memset(&n, 0, sizeof(n));
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n.workplane = workplane;
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n.h = h.entity(32);
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n.group = group;
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if(workplane.v == Entity::FREE_IN_3D.v) {
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n.type = Entity::NORMAL_IN_3D;
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n.param[0] = AddParam(param, h.param(32+0));
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n.param[1] = AddParam(param, h.param(32+1));
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n.param[2] = AddParam(param, h.param(32+2));
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n.param[3] = AddParam(param, h.param(32+3));
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} else {
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n.type = Entity::NORMAL_IN_2D;
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// and this is just a copy of the workplane quaternion,
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// so no params required
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}
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if(points < 1) oops();
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// The point determines where the normal gets displayed on-screen;
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// it's entirely cosmetic.
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n.point[0] = e.point[0];
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entity->Add(&n);
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e.normal = n.h;
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}
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if(hasDistance) {
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Entity d;
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memset(&d, 0, sizeof(d));
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d.workplane = workplane;
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d.h = h.entity(64);
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d.group = group;
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d.type = Entity::DISTANCE;
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d.param[0] = AddParam(param, h.param(64));
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entity->Add(&d);
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e.distance = d.h;
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}
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// And generate any params not associated with the point that
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// we happen to need.
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for(i = 0; i < params; i++) {
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e.param[i] = AddParam(param, h.param(i));
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}
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if(et) entity->Add(&e);
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}
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char *Request::DescriptionString(void) {
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char *s;
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if(h.v == Request::HREQUEST_REFERENCE_XY.v) {
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s = "#XY";
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} else if(h.v == Request::HREQUEST_REFERENCE_YZ.v) {
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s = "#YZ";
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} else if(h.v == Request::HREQUEST_REFERENCE_ZX.v) {
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s = "#ZX";
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} else {
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switch(type) {
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case WORKPLANE: s = "workplane"; break;
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case DATUM_POINT: s = "datum-point"; break;
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case LINE_SEGMENT: s = "line-segment"; break;
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case CUBIC: s = "cubic-bezier"; break;
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case CIRCLE: s = "circle"; break;
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case ARC_OF_CIRCLE: s = "arc-of-circle"; break;
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default: s = "???"; break;
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}
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}
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static char ret[100];
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sprintf(ret, "r%03x-%s", h.v, s);
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return ret;
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}
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hParam Request::AddParam(IdList<Param,hParam> *param, hParam hp) {
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Param pa;
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memset(&pa, 0, sizeof(pa));
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pa.h = hp;
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param->Add(&pa);
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return hp;
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}
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