- 修复前端路由守卫:未登录时不显示提示,直接跳转登录页 - 修复API拦截器:401错误不显示提示,直接跳转 - 增强验证码显示:图片尺寸从120x40增加到200x80 - 增大验证码字体:从28号增加到48号 - 优化验证码字符:排除易混淆的0和1 - 减少干扰线:从5条减少到3条,添加背景色优化 - 增强登录API日志:添加详细的调试日志 - 增强验证码生成和验证日志 - 优化异常处理和错误追踪 影响文件: - src/router/index.ts - src/api/request.ts - app/services/auth_service.py - app/api/v1/auth.py - app/schemas/user.py 测试状态: - 前端构建通过 - 后端语法检查通过 - 验证码显示效果优化完成 Co-Authored-By: Claude Sonnet 4.5 <noreply@anthropic.com>
475 lines
16 KiB
Python
475 lines
16 KiB
Python
"""
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资产管理服务层测试
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测试内容:
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- 资产创建业务逻辑
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- 资产分配业务逻辑
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- 状态机转换
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- 权限验证
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- 异常处理
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"""
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import pytest
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from datetime import datetime
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# from app.services.asset_service import AssetService
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# from app.services.state_machine_service import StateMachineService
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# from app.core.exceptions import BusinessException, NotFoundException
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# class TestAssetService:
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# """测试资产管理服务"""
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#
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# @pytest.fixture
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# def asset_service(self):
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# """创建AssetService实例"""
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# return AssetService()
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#
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# def test_create_asset_generates_code(self, db, asset_service):
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# """测试创建资产时自动生成编码"""
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# asset_data = {
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# "asset_name": "测试资产",
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# "device_type_id": 1,
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# "organization_id": 1
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# }
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#
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# asset = asset_service.create_asset(
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# db=db,
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# asset_in=AssetCreate(**asset_data),
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# creator_id=1
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# )
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#
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# assert asset.asset_code is not None
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# assert asset.asset_code.startswith("ASSET-")
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# assert len(asset.asset_code) == 19 # ASSET-YYYYMMDD-XXXX
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#
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# def test_create_asset_records_status_history(self, db, asset_service):
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# """测试创建资产时记录状态历史"""
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# asset_data = AssetCreate(
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# asset_name="测试资产",
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# device_type_id=1,
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# organization_id=1
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# )
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#
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# asset = asset_service.create_asset(
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# db=db,
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# asset_in=asset_data,
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# creator_id=1
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# )
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#
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# # 验证状态历史
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# history = db.query(AssetStatusHistory).filter(
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# AssetStatusHistory.asset_id == asset.id
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# ).all()
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#
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# assert len(history) == 1
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# assert history[0].old_status is None
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# assert history[0].new_status == "pending"
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# assert history[0].operation_type == "create"
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#
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# def test_create_asset_with_invalid_device_type(self, db, asset_service):
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# """测试使用无效设备类型创建资产"""
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# asset_data = AssetCreate(
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# asset_name="测试资产",
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# device_type_id=999999, # 不存在的设备类型
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# organization_id=1
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# )
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#
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# with pytest.raises(NotFoundException):
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# asset_service.create_asset(
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# db=db,
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# asset_in=asset_data,
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# creator_id=1
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# )
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#
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# def test_create_asset_with_invalid_organization(self, db, asset_service):
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# """测试使用无效网点创建资产"""
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# asset_data = AssetCreate(
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# asset_name="测试资产",
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# device_type_id=1,
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# organization_id=999999 # 不存在的网点
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# )
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#
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# with pytest.raises(NotFoundException):
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# asset_service.create_asset(
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# db=db,
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# asset_in=asset_data,
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# creator_id=1
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# )
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#
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# def test_create_asset_validates_required_dynamic_fields(self, db, asset_service):
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# """测试验证必填的动态字段"""
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# # 假设计算机类型要求CPU和内存必填
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# asset_data = AssetCreate(
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# asset_name="测试计算机",
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# device_type_id=1, # 计算机类型
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# organization_id=1,
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# dynamic_attributes={
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# # 缺少必填的cpu和memory字段
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# }
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# )
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#
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# with pytest.raises(BusinessException):
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# asset_service.create_asset(
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# db=db,
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# asset_in=asset_data,
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# creator_id=1
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# )
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# class TestAssetAllocation:
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# """测试资产分配"""
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#
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# @pytest.fixture
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# def asset_service(self):
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# return AssetService()
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#
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# def test_allocate_assets_success(self, db, asset_service, test_asset):
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# """测试成功分配资产"""
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# allocation_order = asset_service.allocate_assets(
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# db=db,
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# asset_ids=[test_asset.id],
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# organization_id=2,
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# operator_id=1
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# )
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#
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# assert allocation_order is not None
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# assert allocation_order.order_type == "allocation"
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# assert allocation_order.asset_count == 1
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#
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# # 验证资产状态未改变(等待审批)
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# db.refresh(test_asset)
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# assert test_asset.status == "in_stock"
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#
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# def test_allocate_assets_invalid_status(self, db, asset_service):
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# """测试分配状态不正确的资产"""
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# # 创建一个使用中的资产
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# in_use_asset = Asset(
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# asset_code="ASSET-20250124-0002",
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# asset_name="使用中的资产",
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# device_type_id=1,
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# organization_id=1,
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# status="in_use"
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# )
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# db.add(in_use_asset)
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# db.commit()
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#
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# with pytest.raises(BusinessException) as exc:
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# asset_service.allocate_assets(
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# db=db,
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# asset_ids=[in_use_asset.id],
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# organization_id=2,
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# operator_id=1
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# )
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#
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# assert "当前状态不允许分配" in str(exc.value)
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#
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# def test_allocate_assets_batch(self, db, asset_service):
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# """测试批量分配资产"""
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# # 创建多个资产
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# assets = []
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# for i in range(5):
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# asset = Asset(
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# asset_code=f"ASSET-20250124-{i:04d}",
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# asset_name=f"测试资产{i}",
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# device_type_id=1,
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# organization_id=1,
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# status="in_stock"
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# )
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# db.add(asset)
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# assets.append(asset)
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# db.commit()
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#
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# asset_ids = [a.id for a in assets]
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#
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# allocation_order = asset_service.allocate_assets(
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# db=db,
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# asset_ids=asset_ids,
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# organization_id=2,
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# operator_id=1
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# )
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#
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# assert allocation_order.asset_count == 5
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#
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# def test_allocate_assets_to_same_organization(self, db, asset_service, test_asset):
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# """测试分配到当前所在网点"""
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# with pytest.raises(BusinessException):
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# asset_service.allocate_assets(
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# db=db,
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# asset_ids=[test_asset.id],
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# organization_id=test_asset.organization_id, # 相同网点
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# operator_id=1
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# )
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#
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# def test_allocate_duplicate_assets(self, db, asset_service):
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# """测试分配时包含重复资产"""
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# with pytest.raises(BusinessException):
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# asset_service.allocate_assets(
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# db=db,
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# asset_ids=[1, 1, 2], # 资产ID重复
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# organization_id=2,
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# operator_id=1
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# )
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#
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# def test_approve_allocation_order(self, db, asset_service):
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# """测试审批分配单"""
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# # 创建分配单
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# allocation_order = asset_service.allocate_assets(
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# db=db,
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# asset_ids=[1],
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# organization_id=2,
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# operator_id=1
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# )
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#
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# # 审批通过
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# asset_service.approve_allocation_order(
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# db=db,
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# order_id=allocation_order.id,
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# approval_status="approved",
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# approver_id=2,
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# remark="同意"
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# )
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#
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# # 验证资产状态已更新
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# asset = db.query(Asset).filter(Asset.id == 1).first()
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# assert asset.status == "in_use"
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#
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# # 验证分配单执行状态
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# db.refresh(allocation_order)
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# assert allocation_order.approval_status == "approved"
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# assert allocation_order.execute_status == "completed"
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#
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# def test_reject_allocation_order(self, db, asset_service):
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# """测试拒绝分配单"""
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# allocation_order = asset_service.allocate_assets(
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# db=db,
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# asset_ids=[1],
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# organization_id=2,
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# operator_id=1
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# )
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#
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# # 审批拒绝
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# asset_service.approve_allocation_order(
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# db=db,
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# order_id=allocation_order.id,
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# approval_status="rejected",
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# approver_id=2,
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# remark="不符合条件"
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# )
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#
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# # 验证资产状态未改变
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# asset = db.query(Asset).filter(Asset.id == 1).first()
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# assert asset.status == "in_stock"
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#
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# db.refresh(allocation_order)
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# assert allocation_order.approval_status == "rejected"
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# assert allocation_order.execute_status == "cancelled"
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# class TestStateMachine:
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# """测试状态机"""
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#
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# @pytest.fixture
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# def state_machine(self):
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# return StateMachineService()
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#
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# def test_valid_state_transitions(self, state_machine):
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# """测试有效的状态转换"""
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# valid_transitions = [
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# ("pending", "in_stock"),
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# ("in_stock", "in_use"),
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# ("in_stock", "maintenance"),
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# ("in_use", "transferring"),
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# ("in_use", "maintenance"),
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# ("maintenance", "in_stock"),
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# ("transferring", "in_use"),
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# ("in_use", "pending_scrap"),
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# ("pending_scrap", "scrapped"),
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# ]
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#
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# for old_status, new_status in valid_transitions:
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# assert state_machine.can_transition(old_status, new_status) is True
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#
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# def test_invalid_state_transitions(self, state_machine):
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# """测试无效的状态转换"""
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# invalid_transitions = [
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# ("pending", "in_use"), # pending不能直接到in_use
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# ("in_stock", "pending"), # 不能回退到pending
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# ("scrapped", "in_stock"), # 报废后不能恢复
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# ("in_use", "pending_scrap"), # 应该先transferring
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# ]
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#
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# for old_status, new_status in invalid_transitions:
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# assert state_machine.can_transition(old_status, new_status) is False
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#
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# def test_record_state_change(self, db, state_machine, test_asset):
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# """测试记录状态变更"""
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# state_machine.record_state_change(
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# db=db,
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# asset_id=test_asset.id,
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# old_status="in_stock",
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# new_status="in_use",
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# operator_id=1,
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# operation_type="allocate",
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# remark="资产分配"
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# )
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#
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# history = db.query(AssetStatusHistory).filter(
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# AssetStatusHistory.asset_id == test_asset.id
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# ).first()
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#
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# assert history is not None
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# assert history.old_status == "in_stock"
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# assert history.new_status == "in_use"
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# assert history.operation_type == "allocate"
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# assert history.remark == "资产分配"
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#
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# def test_get_available_transitions(self, state_machine):
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# """测试获取可用的状态转换"""
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# transitions = state_machine.get_available_transitions("in_stock")
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#
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# assert "in_use" in transitions
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# assert "maintenance" in transitions
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# assert "pending_scrap" not in transitions
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#
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# def test_state_transition_with_invalid_permission(self, db, state_machine, test_asset):
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# """测试无权限的状态转换"""
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# # 普通用户不能直接报废资产
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# with pytest.raises(PermissionDeniedException):
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# state_machine.transition_state(
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# db=db,
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# asset_id=test_asset.id,
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# new_status="scrapped",
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# operator_id=999, # 无权限的用户
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# operation_type="scrap"
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# )
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# class TestAssetStatistics:
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# """测试资产统计"""
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#
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# @pytest.fixture
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# def asset_service(self):
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# return AssetService()
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#
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# def test_get_asset_overview(self, db, asset_service):
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# """测试获取资产概览统计"""
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# # 创建测试数据
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# # ... 创建不同状态的资产
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#
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# stats = asset_service.get_asset_overview(db)
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#
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# assert stats["total_assets"] > 0
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# assert stats["total_value"] > 0
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# assert "assets_in_stock" in stats
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# assert "assets_in_use" in stats
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# assert "assets_maintenance" in stats
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# assert "assets_scrapped" in stats
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#
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# def test_get_organization_distribution(self, db, asset_service):
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# """测试获取网点分布统计"""
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# distribution = asset_service.get_organization_distribution(db)
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#
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# assert isinstance(distribution, list)
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# if len(distribution) > 0:
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# assert "org_name" in distribution[0]
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# assert "count" in distribution[0]
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# assert "value" in distribution[0]
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#
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# def test_get_device_type_distribution(self, db, asset_service):
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# """测试获取设备类型分布统计"""
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# distribution = asset_service.get_device_type_distribution(db)
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#
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# assert isinstance(distribution, list)
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# if len(distribution) > 0:
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# assert "type_name" in distribution[0]
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# assert "count" in distribution[0]
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#
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# def test_get_value_trend(self, db, asset_service):
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# """测试获取价值趋势"""
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# trend = asset_service.get_value_trend(
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# db=db,
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# start_date="2024-01-01",
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# end_date="2024-12-31",
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# group_by="month"
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# )
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#
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# assert isinstance(trend, list)
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# if len(trend) > 0:
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# assert "date" in trend[0]
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# assert "count" in trend[0]
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# assert "value" in trend[0]
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# 性能测试
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# class TestAssetServicePerformance:
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# """测试资产管理服务性能"""
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#
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# @pytest.fixture
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# def asset_service(self):
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# return AssetService()
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#
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# @pytest.mark.slow
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# def test_large_asset_list_query_performance(self, db, asset_service):
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# """测试大量资产查询性能"""
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# # 创建1000个资产
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# assets = []
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# for i in range(1000):
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# asset = Asset(
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# asset_code=f"ASSET-20250124-{i:04d}",
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# asset_name=f"测试资产{i}",
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# device_type_id=1,
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# organization_id=1,
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# status="in_stock"
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# )
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# assets.append(asset)
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# db.bulk_save_objects(assets)
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# db.commit()
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#
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# import time
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# start_time = time.time()
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#
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# items, total = asset_service.get_assets(
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# db=db,
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# skip=0,
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# limit=20
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# )
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#
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# elapsed_time = time.time() - start_time
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#
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# assert len(items) == 20
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# assert total == 1000
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# assert elapsed_time < 0.5 # 查询应该在500ms内完成
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#
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# @pytest.mark.slow
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# def test_batch_allocation_performance(self, db, asset_service):
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# """测试批量分配性能"""
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# # 创建100个资产
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# asset_ids = []
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# for i in range(100):
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# asset = Asset(
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# asset_code=f"ASSET-20250124-{i:04d}",
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# asset_name=f"测试资产{i}",
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# device_type_id=1,
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# organization_id=1,
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# status="in_stock"
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# )
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# db.add(asset)
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# db.flush()
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# asset_ids.append(asset.id)
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|
# db.commit()
|
|
#
|
|
# import time
|
|
# start_time = time.time()
|
|
#
|
|
# allocation_order = asset_service.allocate_assets(
|
|
# db=db,
|
|
# asset_ids=asset_ids,
|
|
# organization_id=2,
|
|
# operator_id=1
|
|
# )
|
|
#
|
|
# elapsed_time = time.time() - start_time
|
|
#
|
|
# assert allocation_order.asset_count == 100
|
|
# assert elapsed_time < 2.0 # 批量分配应该在2秒内完成
|