mirror of
https://github.com/Relintai/pandemonium_engine.git
synced 2024-11-21 16:37:20 +01:00
239 lines
6.9 KiB
C++
239 lines
6.9 KiB
C++
void _debug_write_garbage() {
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// extremely slow, writes garbage over arrays to detect using
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// uninitialized in graphical output. Do not enable in normal use!!
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#ifdef RASTERIZER_EXTRA_CHECKS
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int num_verts = MIN(bdata.vertices.max_size(), 32);
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for (int n = 0; n < num_verts; n++) {
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bdata.vertices[n].pos.set(Math::random(-200.0f, 200.0f), Math::random(-200.0f, 200.0f));
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bdata.vertices[n].uv.set(Math::random(0.0f, 1.0f), Math::random(0.0f, 1.0f));
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}
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int num_colors = MIN(bdata.vertex_colors.max_size(), 32);
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for (int n = 0; n < num_colors; n++) {
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bdata.vertex_colors[n].set(Math::randf(), Math::randf(), Math::randf(), 1.0f);
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}
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int num_modulates = MIN(bdata.vertex_modulates.max_size(), 32);
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for (int n = 0; n < num_modulates; n++) {
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bdata.vertex_modulates[n].set(Math::randf(), Math::randf(), Math::randf(), 1.0f);
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}
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int num_light_angles = MIN(bdata.light_angles.max_size(), 32);
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for (int n = 0; n < num_light_angles; n++) {
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bdata.light_angles[n] = Math::random(-3.0f, +3.0f);
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}
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int num_transforms = MIN(bdata.vertex_transforms.max_size(), 32);
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for (int n = 0; n < num_transforms; n++) {
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bdata.vertex_transforms[n].translate.set(Math::random(-200.0f, 200.0f), Math::random(-200.0f, 200.0f));
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bdata.vertex_transforms[n].basis[0].set(Math::random(-2.0f, 2.0f), Math::random(-2.0f, 2.0f));
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bdata.vertex_transforms[n].basis[1].set(Math::random(-2.0f, 2.0f), Math::random(-2.0f, 2.0f));
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}
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int num_unit_verts = MIN(bdata.unit_vertices.max_size(), 32);
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for (int n = 0; n < num_unit_verts; n++) {
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uint8_t *data = bdata.unit_vertices.get_unit(n);
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for (int b = 0; b > bdata.unit_vertices.get_unit_size_bytes(); b++) {
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data[b] = Math::random(0, 255);
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}
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}
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#endif
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}
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String _diagnose_make_item_joined_string(const BItemJoined &p_bij) const {
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String sz;
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if (p_bij.use_attrib_transform()) {
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sz = "attrib_xform";
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}
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sz += _diagnose_batch_flags_to_string(p_bij.flags);
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String sz_long;
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sz_long = "\tjoined_item " + itos(p_bij.num_item_refs) + " refs, " + sz + "\n";
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if (p_bij.z_index != 0) {
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sz_long += "\t\t(z " + itos(p_bij.z_index) + ")\n";
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}
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return sz_long;
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}
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String _diagnose_batch_flags_to_string(uint32_t p_flags) const {
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String sz;
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if (p_flags) {
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sz += " ( ";
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}
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if (p_flags & RasterizerStorageCommon::PREVENT_COLOR_BAKING) {
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sz += "prevent_color_baking, ";
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}
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if (p_flags & RasterizerStorageCommon::PREVENT_VERTEX_BAKING) {
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sz += "prevent_vertex_baking, ";
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}
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if (p_flags & RasterizerStorageCommon::PREVENT_ITEM_JOINING) {
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sz += "prevent_item_joining, ";
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}
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if (p_flags & RasterizerStorageCommon::USE_MODULATE_FVF) {
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sz += "use_modulate_fvf, ";
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}
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if (p_flags & RasterizerStorageCommon::USE_LARGE_FVF) {
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sz += "use_large_fvf, ";
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}
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if (p_flags) {
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sz += " )";
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}
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return sz;
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}
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String get_command_type_string(const RasterizerCanvas::Item::Command &p_command) const {
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String sz = "";
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switch (p_command.type) {
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default:
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break;
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case RasterizerCanvas::Item::Command::TYPE_LINE: {
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sz = "l";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_POLYLINE: {
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sz = "PL";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_RECT: {
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sz = "r";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_NINEPATCH: {
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sz = "n";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_PRIMITIVE: {
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sz = "PR";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_POLYGON: {
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sz = "p";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_MESH: {
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sz = "m";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_MULTIMESH: {
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sz = "MM";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_PARTICLES: {
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sz = "PA";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_CIRCLE: {
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sz = "c";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_TRANSFORM: {
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sz = "t";
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// add a bit more info in debug build
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const RasterizerCanvas::Item::CommandTransform *transform = static_cast<const RasterizerCanvas::Item::CommandTransform *>(&p_command);
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const Transform2D &mat = transform->xform;
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sz += " ";
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sz += String(Variant(mat.columns[2]));
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sz += String(Variant(mat.columns[0]));
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sz += String(Variant(mat.columns[1]));
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sz += " ";
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} break;
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case RasterizerCanvas::Item::Command::TYPE_CLIP_IGNORE: {
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sz = "CI";
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} break;
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} // switch
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return sz;
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}
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void diagnose_batches(RasterizerCanvas::Item::Command *const *p_commands) {
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int num_batches = bdata.batches.size();
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BatchColor curr_color;
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curr_color.set(Color(-1, -1, -1, -1));
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bool first_color_change = true;
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for (int batch_num = 0; batch_num < num_batches; batch_num++) {
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const Batch &batch = bdata.batches[batch_num];
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bdata.frame_string += "\t\t\tbatch ";
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switch (batch.type) {
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case RasterizerStorageCommon::BT_POLY: {
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bdata.frame_string += "P ";
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bdata.frame_string += itos(batch.first_command) + "-";
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bdata.frame_string += itos(batch.num_commands);
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bdata.frame_string += " " + batch.color.to_string();
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if (batch.num_commands > 1) {
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bdata.frame_string += " MULTI";
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}
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if (curr_color != batch.color) {
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curr_color = batch.color;
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if (!first_color_change) {
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bdata.frame_string += " color";
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} else {
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first_color_change = false;
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}
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}
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bdata.frame_string += "\n";
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} break;
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case RasterizerStorageCommon::BT_LINE:
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case RasterizerStorageCommon::BT_LINE_AA: {
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bdata.frame_string += "L ";
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bdata.frame_string += itos(batch.first_command) + "-";
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bdata.frame_string += itos(batch.num_commands);
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bdata.frame_string += " " + batch.color.to_string();
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if (batch.num_commands > 1) {
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bdata.frame_string += " MULTI";
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}
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if (curr_color != batch.color) {
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curr_color = batch.color;
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if (!first_color_change) {
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bdata.frame_string += " color";
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} else {
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first_color_change = false;
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}
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}
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bdata.frame_string += "\n";
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} break;
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case RasterizerStorageCommon::BT_RECT: {
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bdata.frame_string += "R ";
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bdata.frame_string += itos(batch.first_command) + "-";
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bdata.frame_string += itos(batch.num_commands);
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int tex_id = (int)bdata.batch_textures[batch.batch_texture_id].RID_texture.get_id();
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bdata.frame_string += " [" + itos(batch.batch_texture_id) + " - " + itos(tex_id) + "]";
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bdata.frame_string += " " + batch.color.to_string();
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if (batch.num_commands > 1) {
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bdata.frame_string += " MULTI";
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}
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if (curr_color != batch.color) {
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curr_color = batch.color;
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if (!first_color_change) {
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bdata.frame_string += " color";
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} else {
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first_color_change = false;
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}
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}
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bdata.frame_string += "\n";
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} break;
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default: {
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bdata.frame_string += "D ";
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bdata.frame_string += itos(batch.first_command) + "-";
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bdata.frame_string += itos(batch.num_commands) + " ";
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int num_show = MIN(batch.num_commands, 16);
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for (int n = 0; n < num_show; n++) {
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const RasterizerCanvas::Item::Command &comm = *p_commands[batch.first_command + n];
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bdata.frame_string += get_command_type_string(comm) + " ";
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}
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bdata.frame_string += "\n";
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} break;
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}
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}
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}
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