mirror of
https://github.com/panda3d/panda3d.git
synced 2025-10-03 10:22:45 -04:00
cerr -> nout
This commit is contained in:
parent
dcc8130031
commit
3be7a57292
@ -74,7 +74,7 @@ post_command_line() {
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void EggCrop::
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void EggCrop::
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run() {
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run() {
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int num_removed = strip_prims(&_data);
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int num_removed = strip_prims(&_data);
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cerr << "Removed " << num_removed << " primitives.\n";
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nout << "Removed " << num_removed << " primitives.\n";
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_data.remove_unused_vertices();
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_data.remove_unused_vertices();
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write_egg_file();
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write_egg_file();
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@ -263,14 +263,6 @@ extract_ancillary(FltRecordReader &reader) {
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}
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}
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_transform_steps.push_back(DCAST(FltTransformRecord, step));
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_transform_steps.push_back(DCAST(FltTransformRecord, step));
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/*
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cerr << "Added transform step: " << step->get_type() << "\n";
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cerr << "Net matrix is:\n";
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_transform.write(cerr, 2);
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cerr << "Step is:\n";
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step->get_matrix().write(cerr, 2);
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*/
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return true;
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return true;
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}
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}
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@ -24,24 +24,24 @@ int
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main(int argc, char *argv[]) {
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main(int argc, char *argv[]) {
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init_liblwo();
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init_liblwo();
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if (argc != 2) {
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if (argc != 2) {
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cerr << "test_lwo file.lwo\n";
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nout << "test_lwo file.lwo\n";
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exit(1);
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exit(1);
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}
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}
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LwoInputFile in;
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LwoInputFile in;
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if (!in.open_read(argv[1])) {
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if (!in.open_read(argv[1])) {
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cerr << "Unable to open " << argv[1] << "\n";
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nout << "Unable to open " << argv[1] << "\n";
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exit(1);
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exit(1);
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}
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}
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PT(IffChunk) chunk = in.get_chunk();
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PT(IffChunk) chunk = in.get_chunk();
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while (chunk != (IffChunk *)NULL) {
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while (chunk != (IffChunk *)NULL) {
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cerr << "Got chunk type " << chunk->get_type() << ":\n";
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nout << "Got chunk type " << chunk->get_type() << ":\n";
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chunk->write(cerr, 2);
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chunk->write(nout, 2);
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chunk = in.get_chunk();
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chunk = in.get_chunk();
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}
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}
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cerr << "EOF = " << in.is_eof() << "\n";
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nout << "EOF = " << in.is_eof() << "\n";
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return (0);
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return (0);
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}
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}
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@ -93,11 +93,11 @@ doIt(const MArgList &) {
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framework.get_models().instance_to(window->get_render());
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framework.get_models().instance_to(window->get_render());
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if (!convert(framework.get_models())) {
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if (!convert(framework.get_models())) {
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cerr << "failure in conversion.\n";
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nout << "failure in conversion.\n";
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return MS::kFailure;
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return MS::kFailure;
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}
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}
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cerr << "successfully converted.\n";
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nout << "successfully converted.\n";
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loading_np.remove_node();
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loading_np.remove_node();
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window->center_trackball(framework.get_models());
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window->center_trackball(framework.get_models());
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@ -263,7 +263,7 @@ read_material_data(const Datagram &raw_data) {
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_has_material = true;
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_has_material = true;
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if (di.get_remaining_size() != 0) {
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if (di.get_remaining_size() != 0) {
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cerr << "Ignoring " << di.get_remaining_size()
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nout << "Ignoring " << di.get_remaining_size()
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<< " trailing MeshMaterial.\n";
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<< " trailing MeshMaterial.\n";
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}
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}
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@ -287,7 +287,7 @@ read_texture_data(const Datagram &raw_data) {
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_has_texture = true;
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_has_texture = true;
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if (di.get_remaining_size() != 0) {
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if (di.get_remaining_size() != 0) {
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cerr << "Ignoring " << di.get_remaining_size()
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nout << "Ignoring " << di.get_remaining_size()
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<< " trailing MeshMaterial.\n";
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<< " trailing MeshMaterial.\n";
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}
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}
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return true;
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return true;
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@ -275,7 +275,7 @@ create_polygons(EggGroupNode *egg_parent, XFileToEggConverter *converter) {
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int vertex_index = (*vi)._vertex_index;
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int vertex_index = (*vi)._vertex_index;
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int normal_index = (*vi)._normal_index;
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int normal_index = (*vi)._normal_index;
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if (vertex_index < 0 || vertex_index >= (int)_vertices.size()) {
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if (vertex_index < 0 || vertex_index >= (int)_vertices.size()) {
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cerr << "Vertex index out of range in Mesh.\n";
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nout << "Vertex index out of range in Mesh.\n";
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return false;
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return false;
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}
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}
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XFileVertex *vertex = _vertices[vertex_index];
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XFileVertex *vertex = _vertices[vertex_index];
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@ -556,7 +556,7 @@ read_mesh_data(const Datagram &raw_data) {
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}
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}
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if (di.get_remaining_size() != 0) {
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if (di.get_remaining_size() != 0) {
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cerr << "Ignoring " << di.get_remaining_size() << " trailing Mesh.\n";
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nout << "Ignoring " << di.get_remaining_size() << " trailing Mesh.\n";
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}
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}
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return true;
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return true;
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@ -586,7 +586,7 @@ read_normal_data(const Datagram &raw_data) {
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int num_faces = di.get_int32();
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int num_faces = di.get_int32();
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if (num_faces != _faces.size()) {
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if (num_faces != _faces.size()) {
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cerr << "Incorrect number of faces in MeshNormals.\n";
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nout << "Incorrect number of faces in MeshNormals.\n";
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return false;
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return false;
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}
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}
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@ -594,7 +594,7 @@ read_normal_data(const Datagram &raw_data) {
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XFileFace *face = _faces[i];
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XFileFace *face = _faces[i];
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int num_vertices = di.get_int32();
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int num_vertices = di.get_int32();
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if (num_vertices != face->_vertices.size()) {
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if (num_vertices != face->_vertices.size()) {
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cerr << "Incorrect number of vertices for face in MeshNormals.\n";
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nout << "Incorrect number of vertices for face in MeshNormals.\n";
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return false;
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return false;
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}
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}
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for (int j = 0; j < num_vertices; j++) {
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for (int j = 0; j < num_vertices; j++) {
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@ -603,7 +603,7 @@ read_normal_data(const Datagram &raw_data) {
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}
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}
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if (di.get_remaining_size() != 0) {
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if (di.get_remaining_size() != 0) {
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cerr << "Ignoring " << di.get_remaining_size()
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nout << "Ignoring " << di.get_remaining_size()
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<< " trailing MeshNormals.\n";
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<< " trailing MeshNormals.\n";
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}
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}
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@ -625,7 +625,7 @@ read_color_data(const Datagram &raw_data) {
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for (i = 0; i < num_colors; i++) {
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for (i = 0; i < num_colors; i++) {
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unsigned int vertex_index = di.get_int32();
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unsigned int vertex_index = di.get_int32();
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if (vertex_index < 0 || vertex_index >= _vertices.size()) {
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if (vertex_index < 0 || vertex_index >= _vertices.size()) {
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cerr << "Vertex index out of range in MeshVertexColors.\n";
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nout << "Vertex index out of range in MeshVertexColors.\n";
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return false;
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return false;
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}
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}
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XFileVertex *vertex = _vertices[vertex_index];
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XFileVertex *vertex = _vertices[vertex_index];
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@ -637,7 +637,7 @@ read_color_data(const Datagram &raw_data) {
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}
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}
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if (di.get_remaining_size() != 0) {
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if (di.get_remaining_size() != 0) {
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cerr << "Ignoring " << di.get_remaining_size()
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nout << "Ignoring " << di.get_remaining_size()
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<< " trailing MeshVertexColors.\n";
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<< " trailing MeshVertexColors.\n";
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}
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}
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@ -656,7 +656,7 @@ read_uv_data(const Datagram &raw_data) {
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int num_vertices = di.get_int32();
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int num_vertices = di.get_int32();
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if (num_vertices != _vertices.size()) {
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if (num_vertices != _vertices.size()) {
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cerr << "Wrong number of vertices in MeshTextureCoords.\n";
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nout << "Wrong number of vertices in MeshTextureCoords.\n";
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return false;
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return false;
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}
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}
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@ -669,7 +669,7 @@ read_uv_data(const Datagram &raw_data) {
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}
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}
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if (di.get_remaining_size() != 0) {
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if (di.get_remaining_size() != 0) {
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cerr << "Ignoring " << di.get_remaining_size()
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nout << "Ignoring " << di.get_remaining_size()
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<< " trailing MeshTextureCoords.\n";
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<< " trailing MeshTextureCoords.\n";
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}
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}
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@ -690,7 +690,7 @@ read_material_list_data(const Datagram &raw_data) {
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unsigned int num_faces = di.get_int32();
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unsigned int num_faces = di.get_int32();
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if (num_faces > _faces.size()) {
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if (num_faces > _faces.size()) {
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cerr << "Too many faces in MaterialList.\n";
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nout << "Too many faces in MaterialList.\n";
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return false;
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return false;
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}
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}
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@ -712,7 +712,7 @@ read_material_list_data(const Datagram &raw_data) {
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}
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}
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if (di.get_remaining_size() != 0) {
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if (di.get_remaining_size() != 0) {
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cerr << "Ignoring " << di.get_remaining_size()
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nout << "Ignoring " << di.get_remaining_size()
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<< " trailing MeshMaterialList.\n";
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<< " trailing MeshMaterialList.\n";
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}
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}
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