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choice of the magic sword graphics now depends on the scale; in shmup, the tip is now set automatically based on the graphics
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@ -25,6 +25,8 @@ transmatrix invheptmove[MAX_EDGE], invhexmove[MAX_EDGE];
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ld hexshift;
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ld sword_size = 0;
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// the results are:
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// hexf = 0.378077 hcrossf = 0.620672 tessf = 1.090550
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// hexhexdist = 0.566256
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1
hyper.h
1
hyper.h
@ -3434,6 +3434,7 @@ void queuereset(eModel m, PPR prio);
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extern ld tessf, crossf, hexf, hcrossf, hexhexdist, hexvdist, hepvdist, rhexf;
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extern ld sword_size;
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extern ld scalefactor, orbsize, floorrad0, floorrad1, zhexf;
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11
polygons.cpp
11
polygons.cpp
@ -2924,11 +2924,14 @@ void buildpolys() {
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for(int v=0; v<13; v++) for(int z=0; z<2; z++)
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copyshape(shTortoise[v][4+z], shTortoise[v][2+z], PPR(shTortoise[v][2+z].prio + (PPR::CARRIED-PPR::ITEM)));
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if(!BITRUNCATED) bshape(shMagicSword, PPR::MAGICSWORD, scalefactor, 243);
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else bshape(shMagicSword, PPR::MAGICSWORD, 1, 244);
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if(scalefactor > 1.5) bshape(shMagicSword, PPR::MAGICSWORD, scalefactor / 1.7570466583108084, 243);
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else bshape(shMagicSword, PPR::MAGICSWORD, scalefactor, 244);
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if(!BITRUNCATED) bshape(shMagicShovel, PPR::MAGICSWORD, scalefactor, 333);
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else bshape(shMagicShovel, PPR::MAGICSWORD, 1, 333);
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sword_size = 0;
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for(int i=shMagicSword.s; i<shMagicSword.e; i++)
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sword_size = max(sword_size, hdist0(hpc[i]));
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bshape(shMagicShovel, PPR::MAGICSWORD, scalefactor, 333);
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bshape(shBead0, PPR(20), 1, 250);
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bshape(shBead1, PPR(20), 1, 251);
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@ -1460,8 +1460,8 @@ hyperpoint keytarget(int i) {
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return 0;
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} */
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double getSwordSize() { return 0.7255; }
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double getHornsSize() { return 0.33; }
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double getSwordSize() { return sword_size; }
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double getHornsSize() { return scalefactor * 0.33; }
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hyperpoint swordpos(int id, bool rev, double frac) {
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return pc[id]->pat * xspinpush0(pc[id]->swordangle, (rev?-frac:frac) * getSwordSize());
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