diff options
author | leyla_linden <none@none> | 2011-02-16 15:24:11 -0800 |
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committer | leyla_linden <none@none> | 2011-02-16 15:24:11 -0800 |
commit | f41f7cb607b57a2ba78412e75e754d96a60a06fc (patch) | |
tree | 244142ae86831836f438f3d5810104aa03860ccb /indra/newview/llmanipscale.cpp | |
parent | 79e8ef7f5133225cc77a751a0909c446a4e14605 (diff) |
SH-512 [REGRESSION] Linden trees scale up to 200m on Mesh regions
SH-943 10 meters maximum Prim/Mesh size in latest Mesh Viewers
Diffstat (limited to 'indra/newview/llmanipscale.cpp')
-rw-r--r-- | indra/newview/llmanipscale.cpp | 20 |
1 files changed, 11 insertions, 9 deletions
diff --git a/indra/newview/llmanipscale.cpp b/indra/newview/llmanipscale.cpp index d16c4c3bd0..683f455179 100644 --- a/indra/newview/llmanipscale.cpp +++ b/indra/newview/llmanipscale.cpp @@ -85,9 +85,11 @@ const LLManip::EManipPart MANIPULATOR_IDS[NUM_MANIPULATORS] = }; -F32 get_default_max_prim_scale() +F32 get_default_max_prim_scale(bool is_flora) { - if (gSavedSettings.getBOOL("MeshEnabled")) + // a bit of a hack, but if it's foilage, we don't want to use the + // new larger scale which would result in giant trees and grass + if (gSavedSettings.getBOOL("MeshEnabled") && !is_flora) { return DEFAULT_MAX_PRIM_SCALE; } @@ -960,9 +962,9 @@ void LLManipScale::dragCorner( S32 x, S32 y ) { mInSnapRegime = FALSE; } - - F32 max_scale_factor = DEFAULT_MAX_PRIM_SCALE_NO_MESH / MIN_PRIM_SCALE; - F32 min_scale_factor = MIN_PRIM_SCALE / DEFAULT_MAX_PRIM_SCALE_NO_MESH; + + F32 max_scale_factor = get_default_max_prim_scale() / MIN_PRIM_SCALE; + F32 min_scale_factor = MIN_PRIM_SCALE / get_default_max_prim_scale(); // find max and min scale factors that will make biggest object hit max absolute scale and smallest object hit min absolute scale for (LLObjectSelection::iterator iter = mObjectSelection->begin(); @@ -974,7 +976,7 @@ void LLManipScale::dragCorner( S32 x, S32 y ) { const LLVector3& scale = selectNode->mSavedScale; - F32 cur_max_scale_factor = llmin( DEFAULT_MAX_PRIM_SCALE_NO_MESH / scale.mV[VX], DEFAULT_MAX_PRIM_SCALE_NO_MESH / scale.mV[VY], DEFAULT_MAX_PRIM_SCALE_NO_MESH / scale.mV[VZ] ); + F32 cur_max_scale_factor = llmin( get_default_max_prim_scale(LLPickInfo::isFlora(cur)) / scale.mV[VX], get_default_max_prim_scale(LLPickInfo::isFlora(cur)) / scale.mV[VY], get_default_max_prim_scale(LLPickInfo::isFlora(cur)) / scale.mV[VZ] ); max_scale_factor = llmin( max_scale_factor, cur_max_scale_factor ); F32 cur_min_scale_factor = llmax( MIN_PRIM_SCALE / scale.mV[VX], MIN_PRIM_SCALE / scale.mV[VY], MIN_PRIM_SCALE / scale.mV[VZ] ); @@ -1271,7 +1273,7 @@ void LLManipScale::stretchFace( const LLVector3& drag_start_agent, const LLVecto F32 denom = axis * dir_local; F32 desired_delta_size = is_approx_zero(denom) ? 0.f : (delta_local_mag / denom); // in meters - F32 desired_scale = llclamp(selectNode->mSavedScale.mV[axis_index] + desired_delta_size, MIN_PRIM_SCALE, DEFAULT_MAX_PRIM_SCALE_NO_MESH); + F32 desired_scale = llclamp(selectNode->mSavedScale.mV[axis_index] + desired_delta_size, MIN_PRIM_SCALE, get_default_max_prim_scale(LLPickInfo::isFlora(cur))); // propagate scale constraint back to position offset desired_delta_size = desired_scale - selectNode->mSavedScale.mV[axis_index]; // propagate constraint back to position @@ -1971,7 +1973,7 @@ F32 LLManipScale::partToMaxScale( S32 part, const LLBBox &bbox ) const max_extent = bbox_extents.mV[i]; } } - max_scale_factor = bbox_extents.magVec() * DEFAULT_MAX_PRIM_SCALE_NO_MESH / max_extent; + max_scale_factor = bbox_extents.magVec() * get_default_max_prim_scale() / max_extent; if (getUniform()) { @@ -1986,7 +1988,7 @@ F32 LLManipScale::partToMinScale( S32 part, const LLBBox &bbox ) const { LLVector3 bbox_extents = unitVectorToLocalBBoxExtent( partToUnitVector( part ), bbox ); bbox_extents.abs(); - F32 min_extent = DEFAULT_MAX_PRIM_SCALE_NO_MESH; + F32 min_extent = get_default_max_prim_scale(); for (U32 i = VX; i <= VZ; i++) { if (bbox_extents.mV[i] > 0.f && bbox_extents.mV[i] < min_extent) |