[395] | 1 | // Copyright (C) 2012-2015 ChaosForge Ltd
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[293] | 2 | // http://chaosforge.org/
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| 3 | //
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[395] | 4 | // This file is part of Nova libraries.
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| 5 | // For conditions of distribution and use, see copying.txt file in root folder.
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[293] | 6 |
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| 7 | #include "nv/gfx/mesh_creator.hh"
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| 8 |
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[416] | 9 | #include "nv/interface/data_channel_access.hh"
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| 10 |
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[293] | 11 | struct nv_key_transform { nv::transform tform; };
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| 12 |
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| 13 | void nv::mesh_nodes_creator::pre_transform_keys()
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| 14 | {
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| 15 | if ( m_data->m_flat ) return;
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| 16 | merge_keys();
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| 17 | uint32 max_frames = 0;
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| 18 | for ( size_t i = 0; i < m_data->get_count(); ++i )
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| 19 | {
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[427] | 20 | data_channel_set* keys = m_data->m_data[i];
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| 21 | sint16 parent_id = keys->get_parent_id();
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| 22 | data_channel_set* pkeys = ( parent_id != -1 ? m_data->m_data[parent_id] : nullptr );
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[417] | 23 | size_t count = ( keys ? keys->get_channel_size(0) : 0 );
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| 24 | size_t pcount = ( pkeys ? pkeys->get_channel_size(0) : 0 );
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[398] | 25 | max_frames = nv::max<uint32>( count, max_frames );
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[416] | 26 | if ( pkeys && pkeys->size() > 0 && keys && keys->size() > 0 )
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[293] | 27 | {
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[417] | 28 | data_channel_access< nv_key_transform > channel_creator( keys, 0 );
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[413] | 29 | nv_key_transform* channel = channel_creator.data();
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| 30 | const nv_key_transform* pchannel = pkeys->get_channel(0)->data_cast< nv_key_transform >();
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[293] | 31 | for ( unsigned n = 0; n < count; ++n )
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| 32 | {
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[398] | 33 | channel[n].tform = pchannel[ nv::min( n, pcount-1 ) ].tform * channel[n].tform;
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[293] | 34 | }
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| 35 | }
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| 36 | }
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| 37 |
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| 38 | // DAE pre_transform hack
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| 39 | if ( m_data->m_frame_rate == 1 )
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| 40 | {
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| 41 | m_data->m_frame_rate = 32;
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[406] | 42 | m_data->m_duration = static_cast<float>( max_frames );
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[293] | 43 | }
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| 44 |
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| 45 | m_data->m_flat = true;
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| 46 | }
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| 47 |
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| 48 |
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| 49 | void nv::mesh_nodes_creator::merge_keys()
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| 50 | {
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| 51 | for ( size_t i = 0; i < m_data->get_count(); ++i )
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| 52 | {
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[427] | 53 | data_channel_set* old_keys = m_data->m_data[i];
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[416] | 54 | if ( old_keys && old_keys->size() > 0 )
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[293] | 55 | {
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[416] | 56 | size_t chan_count = old_keys->size();
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[293] | 57 | if ( chan_count == 1
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[415] | 58 | && old_keys->get_channel(0)->descriptor().size() == 1
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[412] | 59 | && old_keys->get_channel(0)->descriptor()[0].etype == TRANSFORM ) continue;
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[293] | 60 |
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| 61 | size_t max_keys = 0;
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| 62 | for ( size_t c = 0; c < chan_count; ++c )
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| 63 | {
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[415] | 64 | max_keys = nv::max( max_keys, old_keys->get_channel(c)->size() );
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[293] | 65 | }
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| 66 |
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[424] | 67 | data_channel_set* new_keys = data_channel_set_creator::create_set( 1 );
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[419] | 68 | data_channel_set_creator nk_access( new_keys );
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[424] | 69 | nk_access.set_name( old_keys->get_name() );
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| 70 | nk_access.set_parent_id( old_keys->get_parent_id() );
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| 71 | nk_access.set_transform( old_keys->get_transform() );
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[417] | 72 | data_channel_access< nv_key_transform > kt_channel( nk_access.add_channel<nv_key_transform>( max_keys ) );
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| 73 |
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[419] | 74 | raw_channel_interpolator interpolator( old_keys );
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| 75 | data_descriptor final_key = interpolator.get_interpolation_key();
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[293] | 76 |
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| 77 | for ( unsigned n = 0; n < max_keys; ++n )
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| 78 | {
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| 79 | float key[ 16 ];
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| 80 | float* pkey = key;
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| 81 |
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| 82 | for ( uint16 c = 0; c < chan_count; ++c )
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| 83 | {
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[418] | 84 | size_t idx = nv::min( old_keys->get_channel_size(c) - 1, n );
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[419] | 85 | pkey += raw_channel_interpolator::get_raw( *old_keys->get_channel(c), idx, pkey );
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[293] | 86 | }
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[419] | 87 | kt_channel.data()[n].tform = extract_key_raw< nv::transform >( final_key, key );
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[293] | 88 | }
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| 89 |
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| 90 | delete old_keys;
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[427] | 91 | m_data->m_data[i] = new_keys;
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[293] | 92 | }
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| 93 | }
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| 94 | }
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| 95 |
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| 96 | void nv::mesh_nodes_creator::transform( float scale, const mat3& r33 )
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| 97 | {
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| 98 | mat3 ri33 = glm::inverse( r33 );
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| 99 | mat4 pre_transform ( scale * r33 );
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| 100 | mat4 post_transform( 1.f/scale * ri33 );
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| 101 |
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| 102 | for ( size_t i = 0; i < m_data->get_count(); ++i )
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| 103 | {
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[427] | 104 | data_channel_set* node = m_data->m_data[i];
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| 105 | node->m_transform = pre_transform * node->m_transform * post_transform;
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| 106 |
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| 107 | for ( size_t c = 0; c < node->size(); ++c )
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[293] | 108 | {
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[427] | 109 | raw_data_channel_access channel( node, c );
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| 110 | size_t key_size = channel.element_size();
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| 111 | for ( size_t n = 0; n < channel.size(); ++n )
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[293] | 112 | {
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[427] | 113 | transform_key_raw( node->get_channel( c )->descriptor(), channel.raw_data() + n * key_size, scale, r33, ri33 );
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[293] | 114 | }
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| 115 | }
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| 116 | }
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| 117 | }
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| 118 |
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| 119 | void nv::mesh_data_creator::transform( float scale, const mat3& r33 )
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| 120 | {
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[398] | 121 | vec3 vertex_offset = vec3();
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[293] | 122 | mat3 vertex_transform = scale * r33;
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| 123 | mat3 normal_transform = r33;
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| 124 |
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[416] | 125 | for ( uint32 c = 0; c < m_data->size(); ++c )
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[293] | 126 | {
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[417] | 127 | raw_data_channel_access channel( m_data, c );
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[413] | 128 | const data_descriptor& desc = channel.descriptor();
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| 129 | uint8* raw_data = channel.raw_data();
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[410] | 130 | uint32 vtx_size = desc.element_size();
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[293] | 131 | int p_offset = -1;
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| 132 | int n_offset = -1;
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| 133 | int t_offset = -1;
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[410] | 134 | for ( const auto& cslot : desc )
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| 135 | switch ( cslot.vslot )
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[293] | 136 | {
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[410] | 137 | case slot::POSITION : if ( cslot.etype == FLOAT_VECTOR_3 ) p_offset = int( cslot.offset ); break;
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| 138 | case slot::NORMAL : if ( cslot.etype == FLOAT_VECTOR_3 ) n_offset = int( cslot.offset ); break;
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| 139 | case slot::TANGENT : if ( cslot.etype == FLOAT_VECTOR_4 ) t_offset = int( cslot.offset ); break;
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[293] | 140 | default : break;
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| 141 | }
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| 142 |
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| 143 | if ( p_offset != -1 )
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[413] | 144 | for ( uint32 i = 0; i < channel.size(); i++)
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[293] | 145 | {
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[406] | 146 | vec3& p = *reinterpret_cast<vec3*>( raw_data + vtx_size*i + p_offset );
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[293] | 147 | p = vertex_transform * p + vertex_offset;
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| 148 | }
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| 149 |
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| 150 | if ( n_offset != -1 )
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[413] | 151 | for ( uint32 i = 0; i < channel.size(); i++)
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[293] | 152 | {
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[406] | 153 | vec3& n = *reinterpret_cast<vec3*>( raw_data + vtx_size*i + n_offset );
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[293] | 154 | n = glm::normalize( normal_transform * n );
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| 155 | }
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| 156 | if ( t_offset != -1 )
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[413] | 157 | for ( uint32 i = 0; i < channel.size(); i++)
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[293] | 158 | {
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[406] | 159 | vec4& t = *reinterpret_cast<vec4*>(raw_data + vtx_size*i + t_offset );
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[293] | 160 | t = vec4( glm::normalize( normal_transform * vec3(t) ), t[3] );
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| 161 | }
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| 162 | }
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| 163 | }
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[294] | 164 |
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| 165 | struct vertex_g
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| 166 | {
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| 167 | nv::vec4 tangent;
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| 168 | };
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| 169 |
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[295] | 170 | void nv::mesh_data_creator::flip_normals()
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| 171 | {
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| 172 | int ch_n = m_data->get_channel_index( slot::NORMAL );
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| 173 | size_t n_offset = 0;
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| 174 | if ( ch_n == -1 ) return;
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[417] | 175 | raw_data_channel_access channel( m_data, unsigned( ch_n ) );
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[413] | 176 | for ( const auto& cslot : channel.descriptor() )
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[410] | 177 | if ( cslot.vslot == slot::NORMAL )
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[295] | 178 | {
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[410] | 179 | n_offset = cslot.offset;
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[295] | 180 | }
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| 181 |
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[413] | 182 | for ( uint32 i = 0; i < channel.size(); ++i )
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[295] | 183 | {
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[413] | 184 | vec3& normal = *reinterpret_cast<vec3*>( channel.raw_data() + channel.element_size() * i + n_offset );
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[295] | 185 | normal = -normal;
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| 186 | }
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| 187 | }
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| 188 |
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| 189 |
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[294] | 190 | void nv::mesh_data_creator::generate_tangents()
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| 191 | {
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| 192 | int p_offset = -1;
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| 193 | int n_offset = -1;
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| 194 | int t_offset = -1;
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| 195 | datatype i_type = NONE;
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| 196 | uint32 n_channel_index = 0;
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| 197 |
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[411] | 198 | const raw_data_channel* p_channel = nullptr;
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| 199 | raw_data_channel* n_channel = nullptr;
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| 200 | const raw_data_channel* t_channel = nullptr;
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| 201 | const raw_data_channel* i_channel = nullptr;
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[294] | 202 |
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[416] | 203 | for ( uint32 c = 0; c < m_data->size(); ++c )
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[294] | 204 | {
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[411] | 205 | const raw_data_channel* channel = m_data->get_channel(c);
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[410] | 206 |
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[412] | 207 | for ( const auto& cslot : channel->descriptor() )
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[410] | 208 | switch ( cslot.vslot )
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[294] | 209 | {
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| 210 | case slot::POSITION :
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[410] | 211 | if ( cslot.etype == FLOAT_VECTOR_3 )
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[294] | 212 | {
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[410] | 213 | p_offset = int( cslot.offset );
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[294] | 214 | p_channel = channel;
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| 215 | }
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| 216 | break;
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[410] | 217 | case slot::NORMAL :
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| 218 | if ( cslot.etype == FLOAT_VECTOR_3 )
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[294] | 219 | {
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[410] | 220 | n_offset = int( cslot.offset );
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[416] | 221 | n_channel = data_channel_set_creator( m_data )[ c ];
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[294] | 222 | n_channel_index = c;
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| 223 | }
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| 224 | break;
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[410] | 225 | case slot::TEXCOORD :
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| 226 | if ( cslot.etype == FLOAT_VECTOR_2 )
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[294] | 227 | {
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[410] | 228 | t_offset = int( cslot.offset );
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[294] | 229 | t_channel = channel;
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| 230 | }
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| 231 | break;
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| 232 | case slot::INDEX :
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| 233 | {
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[410] | 234 | i_type = cslot.etype;
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[294] | 235 | i_channel = channel;
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| 236 | }
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| 237 | break;
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| 238 | case slot::TANGENT : return;
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| 239 | default : break;
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| 240 | }
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| 241 | }
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| 242 | if ( !p_channel || !n_channel || !t_channel ) return;
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| 243 |
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[415] | 244 | if ( p_channel->size() != n_channel->size()
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| 245 | || p_channel->size() % t_channel->size() != 0
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[412] | 246 | || ( i_type != UINT && i_type != USHORT && i_type != NONE ) )
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[294] | 247 | {
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| 248 | return;
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| 249 | }
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| 250 |
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[418] | 251 | raw_data_channel g_channel = data_channel_creator::create< vertex_g >( p_channel->size() );
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| 252 | vec4* tangents = &( data_channel_access< vertex_g >( &g_channel ).data()[0].tangent );
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[415] | 253 | vec3* tangents2 = new vec3[ p_channel->size() ];
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| 254 | uint32 tri_count = i_channel ? i_channel->size() / 3 : t_channel->size() / 3;
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| 255 | uint32 vtx_count = p_channel->size();
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| 256 | uint32 sets = p_channel->size() / t_channel->size();
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[294] | 257 |
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| 258 | for ( unsigned int i = 0; i < tri_count; ++i )
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| 259 | {
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| 260 | uint32 ti0 = 0;
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| 261 | uint32 ti1 = 0;
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| 262 | uint32 ti2 = 0;
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| 263 | if ( i_type == UINT )
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| 264 | {
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[413] | 265 | const uint32* idata = reinterpret_cast<const uint32*>( i_channel->raw_data() );
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[294] | 266 | ti0 = idata[ i * 3 ];
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| 267 | ti1 = idata[ i * 3 + 1 ];
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| 268 | ti2 = idata[ i * 3 + 2 ];
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| 269 | }
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| 270 | else if ( i_type == USHORT )
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| 271 | {
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[413] | 272 | const uint16* idata = reinterpret_cast<const uint16*>( i_channel->raw_data() );
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[294] | 273 | ti0 = idata[ i * 3 ];
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| 274 | ti1 = idata[ i * 3 + 1 ];
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| 275 | ti2 = idata[ i * 3 + 2 ];
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| 276 | }
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| 277 | else // if ( i_type == NONE )
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| 278 | {
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| 279 | ti0 = i * 3;
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| 280 | ti1 = i * 3 + 1;
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| 281 | ti2 = i * 3 + 2;
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| 282 | }
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| 283 |
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[413] | 284 | const vec2& w1 = *reinterpret_cast<const vec2*>(t_channel->raw_data() + t_channel->element_size()*ti0 + t_offset );
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| 285 | const vec2& w2 = *reinterpret_cast<const vec2*>(t_channel->raw_data() + t_channel->element_size()*ti1 + t_offset );
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| 286 | const vec2& w3 = *reinterpret_cast<const vec2*>(t_channel->raw_data() + t_channel->element_size()*ti2 + t_offset );
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[294] | 287 | vec2 st1 = w3 - w1;
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| 288 | vec2 st2 = w2 - w1;
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| 289 | float stst = (st1.x * st2.y - st2.x * st1.y);
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| 290 | float coef = ( stst != 0.0f ? 1.0f / stst : 0.0f );
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| 291 |
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| 292 | for ( uint32 set = 0; set < sets; ++set )
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| 293 | {
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[415] | 294 | uint32 nti0 = t_channel->size() * set + ti0;
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| 295 | uint32 nti1 = t_channel->size() * set + ti1;
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| 296 | uint32 nti2 = t_channel->size() * set + ti2;
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[413] | 297 | const vec3& v1 = *reinterpret_cast<const vec3*>(p_channel->raw_data() + p_channel->element_size()*nti0 + p_offset );
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| 298 | const vec3& v2 = *reinterpret_cast<const vec3*>(p_channel->raw_data() + p_channel->element_size()*nti1 + p_offset );
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| 299 | const vec3& v3 = *reinterpret_cast<const vec3*>(p_channel->raw_data() + p_channel->element_size()*nti2 + p_offset );
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[294] | 300 | vec3 xyz1 = v3 - v1;
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| 301 | vec3 xyz2 = v2 - v1;
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| 302 |
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[398] | 303 | //vec3 normal = glm::cross( xyz1, xyz2 );
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[294] | 304 | //
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| 305 | //vtcs[ ti0 ].normal += normal;
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| 306 | //vtcs[ ti1 ].normal += normal;
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| 307 | //vtcs[ ti2 ].normal += normal;
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| 308 | vec3 tangent = (( xyz1 * st2.y ) - ( xyz2 * st1.y )) * coef;
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| 309 | vec3 tangent2 = (( xyz2 * st1.x ) - ( xyz1 * st2.x )) * coef;
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| 310 |
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| 311 | tangents[nti0] = vec4( vec3( tangents[nti0] ) + tangent, 0 );
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| 312 | tangents[nti1] = vec4( vec3( tangents[nti1] ) + tangent, 0 );
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| 313 | tangents[nti2] = vec4( vec3( tangents[nti2] ) + tangent, 0 );
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| 314 |
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| 315 | tangents2[nti0] += tangent2;
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| 316 | tangents2[nti1] += tangent2;
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| 317 | tangents2[nti2] += tangent2;
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| 318 | }
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| 319 | }
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| 320 |
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| 321 | for ( unsigned int i = 0; i < vtx_count; ++i )
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| 322 | {
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[413] | 323 | const vec3 n = *reinterpret_cast<const vec3*>( n_channel->raw_data() + n_channel->element_size()*i + n_offset );
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[294] | 324 | const vec3 t = vec3(tangents[i]);
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| 325 | if ( ! ( t.x == 0.0f && t.y == 0.0f && t.z == 0.0f ) )
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| 326 | {
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| 327 | tangents[i] = vec4( glm::normalize(t - n * glm::dot( n, t )), 0.0f );
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| 328 | tangents[i][3] = (glm::dot(glm::cross(n, t), tangents2[i]) < 0.0f) ? -1.0f : 1.0f;
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| 329 | }
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| 330 | }
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[419] | 331 | delete[] tangents2;
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[294] | 332 |
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[418] | 333 | data_channel_set_creator( m_data ).set_channel( n_channel_index, merge_channels( *n_channel, g_channel ) );
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[294] | 334 | }
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| 335 |
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[418] | 336 | nv::raw_data_channel nv::mesh_data_creator::merge_channels( const raw_data_channel& a, const raw_data_channel& b )
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[294] | 337 | {
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[418] | 338 | NV_ASSERT( a.size() == b.size(), "merge_channel - bad channels!" );
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| 339 | data_descriptor desc = a.descriptor();
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| 340 | desc.append( b.descriptor() );
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[294] | 341 |
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[418] | 342 | raw_data_channel result = data_channel_creator::create( desc, a.size() );
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| 343 | for ( uint32 i = 0; i < a.size(); ++i )
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[294] | 344 | {
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[418] | 345 | raw_copy_n( a.raw_data() + i * a.element_size(), a.element_size(), raw_data_channel_access( &result ).raw_data() + i*desc.element_size() );
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| 346 | raw_copy_n( b.raw_data() + i * b.element_size(), b.element_size(), raw_data_channel_access( &result ).raw_data() + i*desc.element_size() + a.element_size() );
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[294] | 347 | }
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[412] | 348 |
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[417] | 349 | return result;
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[294] | 350 | }
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[295] | 351 |
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[418] | 352 | nv::raw_data_channel nv::mesh_data_creator::append_channels( const raw_data_channel& a, const raw_data_channel& b, uint32 frame_count )
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[295] | 353 | {
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[418] | 354 | NV_ASSERT( a.descriptor() == b.descriptor(), "Merge - append not compatible format!" );
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| 355 | NV_ASSERT( a.size() % frame_count == 0, "Merge - append first mesh empty!" );
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| 356 | NV_ASSERT( b.size() % frame_count == 0, "Merge - append second mesh empty!" );
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| 357 | size_t vtx_size = a.element_size();
|
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[295] | 358 |
|
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[418] | 359 | raw_data_channel result = data_channel_creator::create( a.descriptor(), a.size() + b.size() );
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| 360 | uint8* rdata = raw_data_channel_access( &result ).raw_data();
|
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[295] | 361 |
|
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| 362 | if ( frame_count == 1 )
|
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| 363 | {
|
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[418] | 364 | size_t a_size = vtx_size * a.size();
|
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| 365 | raw_copy_n( a.raw_data(), a_size, rdata );
|
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| 366 | raw_copy_n( b.raw_data(), vtx_size * b.size(), rdata + a_size );
|
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[295] | 367 | }
|
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| 368 | else
|
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| 369 | {
|
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[418] | 370 | size_t frame_size_a = ( a.size() / frame_count ) * vtx_size;
|
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| 371 | size_t frame_size_b = ( b.size() / frame_count ) * vtx_size;
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[295] | 372 | size_t pos_a = 0;
|
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| 373 | size_t pos_b = 0;
|
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| 374 | size_t pos = 0;
|
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| 375 | for ( size_t i = 0; i < frame_count; ++i )
|
---|
| 376 | {
|
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[418] | 377 | raw_copy_n( a.raw_data() + pos_a, frame_size_a, rdata + pos );
|
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| 378 | raw_copy_n( b.raw_data() + pos_b, frame_size_b, rdata + pos + frame_size_a ); pos_a += frame_size_a;
|
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[295] | 379 | pos_b += frame_size_b;
|
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| 380 | pos += frame_size_a + frame_size_b;
|
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| 381 | }
|
---|
| 382 | }
|
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| 383 |
|
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[417] | 384 | return result;
|
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[295] | 385 | }
|
---|
| 386 |
|
---|
| 387 |
|
---|
| 388 |
|
---|
| 389 | bool nv::mesh_data_creator::is_same_format( mesh_data* other )
|
---|
| 390 | {
|
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[416] | 391 | if ( m_data->size() != other->size() ) return false;
|
---|
| 392 | for ( uint32 c = 0; c < m_data->size(); ++c )
|
---|
[295] | 393 | {
|
---|
[411] | 394 | if ( m_data->get_channel(c)->descriptor() != other->get_channel(c)->descriptor() )
|
---|
[295] | 395 | return false;
|
---|
| 396 | }
|
---|
| 397 | return true;
|
---|
| 398 | }
|
---|
| 399 |
|
---|
| 400 | void nv::mesh_data_creator::merge( mesh_data* other )
|
---|
| 401 | {
|
---|
| 402 | if ( !is_same_format( other ) ) return;
|
---|
| 403 | int ch_pi = m_data->get_channel_index( slot::POSITION );
|
---|
| 404 | int ch_ti = m_data->get_channel_index( slot::TEXCOORD );
|
---|
| 405 | int och_pi = other->get_channel_index( slot::POSITION );
|
---|
| 406 | int och_ti = other->get_channel_index( slot::TEXCOORD );
|
---|
| 407 | if ( ch_pi == -1 || ch_ti == -1 ) return;
|
---|
[416] | 408 | size_t size = m_data->get_channel_size( unsigned(ch_ti) );
|
---|
| 409 | size_t osize = other->get_channel_size( unsigned(och_ti) );
|
---|
| 410 | size_t count = m_data->get_channel_size( unsigned(ch_pi) );
|
---|
| 411 | size_t ocount = other->get_channel_size( unsigned(och_pi) );
|
---|
[295] | 412 | if ( count % size != 0 || ocount % osize != 0 ) return;
|
---|
| 413 | if ( count / size != ocount / osize ) return;
|
---|
| 414 |
|
---|
[416] | 415 | data_channel_set_creator data( m_data );
|
---|
| 416 |
|
---|
| 417 | for ( uint32 c = 0; c < m_data->size(); ++c )
|
---|
[295] | 418 | {
|
---|
[416] | 419 | const raw_data_channel* old = m_data->get_channel( c );
|
---|
[418] | 420 | uint32 old_size = old->size();
|
---|
| 421 | data_descriptor old_desc = old->descriptor();
|
---|
| 422 | bool old_is_index = old_size > 0 && old_desc[0].vslot == slot::INDEX;
|
---|
| 423 | size_t frame_count = ( old_is_index ? 1 : old_size / size );
|
---|
| 424 | data.set_channel( c, append_channels( *old, *other->get_channel(c), frame_count ) );
|
---|
[412] | 425 | if ( old_is_index )
|
---|
[295] | 426 | {
|
---|
[418] | 427 | switch ( old_desc[0].etype )
|
---|
[295] | 428 | {
|
---|
| 429 | case USHORT :
|
---|
| 430 | {
|
---|
| 431 | NV_ASSERT( size + osize < uint16(-1), "Index out of range!" );
|
---|
[417] | 432 | raw_data_channel_access ic( data[c] );
|
---|
[413] | 433 | uint16* indexes = reinterpret_cast<uint16*>( ic.raw_data() );
|
---|
[418] | 434 | for ( uint16 i = uint16( old_size ); i < ic.size(); ++i )
|
---|
[406] | 435 | indexes[i] += uint16( size );
|
---|
[295] | 436 |
|
---|
| 437 | }
|
---|
| 438 | break;
|
---|
| 439 | case UINT :
|
---|
| 440 | {
|
---|
[417] | 441 | raw_data_channel_access ic( data[c] );
|
---|
[413] | 442 | uint32* indexes = reinterpret_cast<uint32*>( ic.raw_data() );
|
---|
[418] | 443 | for ( uint32 i = old_size; i < ic.size(); ++i )
|
---|
[295] | 444 | indexes[i] += size;
|
---|
| 445 | }
|
---|
| 446 | break;
|
---|
| 447 | default : NV_ASSERT( false, "Unsupported index type!" ); break;
|
---|
| 448 | }
|
---|
| 449 | }
|
---|
| 450 | }
|
---|
| 451 | }
|
---|
[416] | 452 |
|
---|
| 453 | void nv::mesh_creator::delete_mesh( uint32 index )
|
---|
| 454 | {
|
---|
| 455 | if ( index < m_pack->get_count() )
|
---|
| 456 | {
|
---|
[427] | 457 |
|
---|
| 458 | m_pack->m_meshes[index] = move( m_pack->m_meshes[m_pack->m_count - 1] );
|
---|
[416] | 459 | m_pack->m_count--;
|
---|
| 460 | }
|
---|
| 461 | }
|
---|