Files
water-management-system/frontend/node_modules/meshoptimizer/meshopt_clusterizer.d.ts
T
bot_dev1 85df71fc28 feat: 实现供水运营专题大屏BI可视化
- 新增OperationDashboard.vue全屏大屏组件
- 添加6个核心KPI指标卡片: 进水总量/出水总量/产销差率/营收额/平均水质/报警次数
- 实现6个ECharts图表: 供水趋势/水质分布/报警统计/管网空间/设备状态/营收分析
- 创建静态HTML版本operation-dashboard.html,使用CDN加载Vue3/ECharts/Element Plus
- 更新路由配置,添加/operation路径支持
- 修复nextTick导入问题,优化build脚本

🚧 开发者: bot_dev1
📝 任务: #38 [BI] 运营仪表盘 + 供水专题大屏
2026-06-15 09:06:11 +08:00

70 lines
1.8 KiB
TypeScript

// This file is part of meshoptimizer library and is distributed under the terms of MIT License.
// Copyright (C) 2016-2026, by Arseny Kapoulkine (arseny.kapoulkine@gmail.com)
export class Bounds {
centerX: number;
centerY: number;
centerZ: number;
radius: number;
coneApexX: number;
coneApexY: number;
coneApexZ: number;
coneAxisX: number;
coneAxisY: number;
coneAxisZ: number;
coneCutoff: number;
}
export class MeshletBuffers {
meshlets: Uint32Array;
vertices: Uint32Array;
triangles: Uint8Array;
meshletCount: number;
}
export class Meshlet {
vertices: Uint32Array;
triangles: Uint8Array;
}
export const MeshoptClusterizer: {
supported: boolean;
ready: Promise<void>;
buildMeshlets: (
indices: Uint32Array,
vertex_positions: Float32Array,
vertex_positions_stride: number,
max_vertices: number,
max_triangles: number,
cone_weight?: number
) => MeshletBuffers;
buildMeshletsFlex: (
indices: Uint32Array,
vertex_positions: Float32Array,
vertex_positions_stride: number,
max_vertices: number,
min_triangles: number,
max_triangles: number,
cone_weight?: number,
split_factor?: number
) => MeshletBuffers;
buildMeshletsSpatial: (
indices: Uint32Array,
vertex_positions: Float32Array,
vertex_positions_stride: number,
max_vertices: number,
min_triangles: number,
max_triangles: number,
fill_weight?: number
) => MeshletBuffers;
extractMeshlet: (buffers: MeshletBuffers, index: number) => Meshlet;
computeClusterBounds: (indices: Uint32Array, vertex_positions: Float32Array, vertex_positions_stride: number) => Bounds;
computeMeshletBounds: (buffers: MeshletBuffers, vertex_positions: Float32Array, vertex_positions_stride: number) => Bounds[];
computeSphereBounds: (positions: Float32Array, positions_stride: number, radii?: Float32Array, radii_stride?: number) => Bounds;
};