Editable retopology
Use retopo.setup_surface to create a real, editable mesh surface from a source object. The result is ordinary mesh data with no modifier stack dependency — vertex and face data can be edited directly in Blender's standard mesh tools.
Use retopo.project to snap retopo vertices onto the source mesh surface via nearest-point projection. The projection writes directly to vertex coordinates; no Shrinkwrap modifier is applied. Use retopo.transfer_layers to copy vertex groups and color attributes from source to target by nearest-vertex mapping.
Use retopo.validate to check topology quality against maxDeviation and maxPoleValence thresholds. When thresholds are exceeded, the result enters a 'handover' state with an explicit handover: true flag and descriptive issues — this means human editing is required, not that the automatic result is acceptable.
Honesty about automatic results. Voxel remesh and Quadriflow produce automatic topology. These are not professional hand-retopology and must not be described or presented as such. Any result from retopo.setup_surface + retopo.project is a starting point that requires human review and editing for production use.
Save/reopen preservation. Mesh data created by retopo commands is standard Blender mesh data. It survives save/reopen cycles including vertex groups, color attributes, and vertex positions. Validate after reopening to confirm data integrity.
什么时候使用(When to Use)
高密度源网格需要可编辑低模起点、表面投射、数据层传递与阈值验收时使用。
输入与前置条件(Prerequisites)
- 指定源网格、目标面数或密度、最大偏差、最大极点 valence 和需传递的数据层。
- 明确自动结果只是起点,生产角色拓扑仍需人工编辑与审核。
执行流程(Workflow)
Step 1. 检查源网格变换、法线与拓扑,创建独立可编辑目标表面。 Step 2. 投射目标顶点到源表面并记录实际偏差。 Step 3. 按最近顶点传递已声明顶点组和颜色属性。 Step 4. 运行阈值验证;超限时设置 handover,而不是伪造通过。 Step 5. 保存重开并复核顶点、面、数据层和位置完整性。
验证与交付证据(Validation)
报告源/目标对象、顶点面数、最大/平均偏差、极点统计、传递层、handover 状态和重开结果。
Rules 与能力边界(不适用场景)
Voxel Remesh 与 Quadriflow 不是专业手工 retopo;投射结果不自动满足变形流线、UV 或生产质量。
Gotchas(常见问题与恢复)
- 偏差超限:定位区域并交由人工编辑,不反复自动重拓扑碰运气。
- 数据层缺失:核对源层名称与映射范围。
- 重开不一致:停止交付并从保存前快照复查序列。