【DSW Gallery】使用 Alink 结合 TFDV 进行数据探索和验证

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简介: Alink 提供了对大规模数据的高效统计,能提供数量、缺失值、最大最小值、分位数、分布直方图等各种统计指标,用户可以探索数据特征,并为特征工程提供辅助。Alink 还能无缝结合 TensorFlow Data Validation,提供数据 schema 推断、数据偏移检测等功能。

直接使用

请打开使用 Alink 结合 TFDV 进行数据探索和验证,并点击右上角 “ 在DSW中打开” 。

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使用 Alink 结合 TFDV 进行数据探索和验证

  通过 Alink 的统计功能可以实现数据探索和数据验证功能,对数据进行检查,并为特征工程提供辅助。

  这个功能与 TensorFlow Data Validation 类似,但通过 Alink 不需要自行配置大规模集群(包括 Apache Beam 以及 Spark/Flink 集群),就可以在 PAI 平台上对大规模数据进行统计分析。同时,Alink 的计算结果也能无缝接入 TensorFlow Data Validation 的数据可视化、数据 schema 推断、数据偏移检测等功能。

  在这个示例 Notebook 中,你将看到通过 Alink 的计算能力结合 TFDV 实现与 TFDV 官方示例 一致的功能。

运行环境要求

  1. PAI-DSW 官方镜像中默认已经安装了 PyAlink,内存要求 4G 及以上。
  2. 本 Notebook 的内容可以直接运行查看,不需要准备任何其他文件。
  3. 为了本 Notebook 内容中可视化内容的正确显示,需要您的网络能正常访问 Github、Google 等网站,否则数据探索的可视化交互图表将无法显示。
  4. 在 3 的基础上,为了更好的使用效果,请先把 Notebook 的主体样式调整为浅色:Settings -> Theme -> JupyterLab Light。

安装依赖包

  安装 tensorflow-metadata 和 tensorflow-data-validation,将基于 tensorflow-metadata 提供的数据结构实现和 tensorflow-data-validation 的无缝对接。

  注:安装中会安装或者更新 tensorflow 包,但这个 Notebook 中并不会使用 TensorFlow。

!pip3 install "tensorflow-data-validation==0.23.0" --use-deprecated=legacy-resolver
!pip3 install "tensorflow-metadata==1.2.0" --use-deprecated=legacy-resolver
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      Successfully uninstalled tensorflow-metadata-1.2.0
ERROR: pip's legacy dependency resolver does not consider dependency conflicts when selecting packages. This behaviour is the source of the following dependency conflicts.
tensorflow-serving-api 2.9.1 requires tensorflow<3,>=2.9.1, but you'll have tensorflow 2.3.1 which is incompatible.
Successfully installed absl-py-0.8.1 tensorflow-metadata-0.23.0
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Installing collected packages: absl-py, tensorflow-metadata
  Attempting uninstall: absl-py
    Found existing installation: absl-py 0.8.1
    Uninstalling absl-py-0.8.1:
      Successfully uninstalled absl-py-0.8.1
  Attempting uninstall: tensorflow-metadata
    Found existing installation: tensorflow-metadata 0.23.0
    Uninstalling tensorflow-metadata-0.23.0:
      Successfully uninstalled tensorflow-metadata-0.23.0
ERROR: pip's legacy dependency resolver does not consider dependency conflicts when selecting packages. This behaviour is the source of the following dependency conflicts.
tfx-bsl 0.23.0 requires absl-py<0.9,>=0.7, but you'll have absl-py 0.12.0 which is incompatible.
tfx-bsl 0.23.0 requires tensorflow-metadata<0.24,>=0.23, but you'll have tensorflow-metadata 1.2.0 which is incompatible.
tensorflow-transform 0.23.0 requires absl-py<0.9,>=0.7, but you'll have absl-py 0.12.0 which is incompatible.
tensorflow-transform 0.23.0 requires tensorflow-metadata<0.24,>=0.23, but you'll have tensorflow-metadata 1.2.0 which is incompatible.
tensorflow-serving-api 2.9.1 requires tensorflow<3,>=2.9.1, but you'll have tensorflow 2.3.1 which is incompatible.
tensorflow-data-validation 0.23.0 requires absl-py<0.9,>=0.7, but you'll have absl-py 0.12.0 which is incompatible.
tensorflow-data-validation 0.23.0 requires tensorflow-metadata<0.24,>=0.23, but you'll have tensorflow-metadata 1.2.0 which is incompatible.
Successfully installed absl-py-0.12.0 tensorflow-metadata-1.2.0

数据准备

  我们使用芝加哥出租车行程数据集,这个数据集也是 TFDV Demo 所使用的数据集。数据已经传到 OSS 上,在 Alink 中可以直接使用下面的链接,所以不需要额外的准备:

通过 Alink 进行数据探索

导入 pyalink 包,并启用本地运行环境。

  在这个示例中,我们使用 useLocalEnv 在本地(也就是 DSW 的 container 内)运行 Alink 作业,使用多线程的方式模拟分布式计算。

from pyalink.alink import *
useLocalEnv(2)

探索训练数据集:计算训练集统计信息,并对数据各特征的统计结果进行可视化探索。

  在 Alink 中,读取数据通过数据源组件完成,通过 CsvSourceBatchOp 可以读取 CSV 数据源。其中文件路径可以是本地路径,也可以是 HTTP/HTTPS 链接,还可以是 OSS、HDFS 等路径。由于执行引擎对数据类型有较强的要求,因此还需要指定数据的列名和基本数据类型(schemaStr)。

  与 TFDV 一样地,Alink 中的可视化同样使用了 Facets 来进行展示。从可视化中可以看到数据各个特征的基础统计、分布等信息,交互进行探索。

  注:为了可视化页面的正确显示,需要您的网络能正常访问 github 的内容。

# 数据的列名和基本数据类型
schemaStr = "pickup_community_area bigint,fare double,trip_start_month int,trip_start_hour int,trip_start_day int,trip_start_timestamp long,pickup_latitude double,pickup_longitude double,dropoff_latitude double,dropoff_longitude double,trip_miles double,pickup_census_tract string,dropoff_census_tract string,payment_type string,company string,trip_seconds double,dropoff_community_area bigint,tips double"
# 指定数据源
source = CsvSourceBatchOp()\
    .setFilePath("https://alink-release.oss-cn-beijing.aliyuncs.com/data-files/chicago_train_data.csv")\
    .setSchemaStr(schemaStr)\
    .setIgnoreFirstLine(True)
# 告诉 Alink 需要展示数据统计信息的可视化
source.lazyVizStatistics()
# 执行作业
BatchOperator.execute()

image.png

image.png

image.png

image.png

image.png

image.png

扩展到更大规模的数据。

  对于更大规模的数据,可以使用 usePAIEnv 向大规模集群提交作业,详细使用可以通过 help(usePAIEnv) 查看。

help(usePAIEnv)
Help on function usePAIEnv in module pyalink.alink.env:
usePAIEnv(workers=2, memory_per_worker=4096, cpu_per_worker=1, region_id=None, access_key_id=None, access_key_secret=None, workspace_id=None, workspace_name=None, config=None)
    Submit job to PAIFlow
    :param workers           (int)     optional, the default value is 2,
                                       when workers<=0, PyAlink will automatically estimate its value.
    :param memory_per_worker (int)     optional, the default value is 4096
    :param cpu_per_worker    (int)     optional, the default value is 1
    :param region_id         (string)  
    :param access_key_id     (string)  
    :param access_key_secret (string)
    :param workspace_id      (string)  optional, the id of workspace
    :param workspace_name    (string)  optional, the name of workspace
                                       attention: workspace_id and workspace_name must not be None together.
    :param config            (dict)  custom configuration for PyAlink
        - pop_extra_config (dict)     the extra configuration for pop client
        - paiflow_endpoint (str)      the pop endpoint of PAIFlow
        - workspace_endpoint (str)    the pop endpoint of AIWorkspace
        - compute_resource_type (str) options: MaxCompute, Flink, default is MaxCompute
        - compute_resource_env (str)  options: dev, prod, default is dev
        - compute_resource_name (str) the name of computeResource
        - oss_rolearn (str)           the roleArn of oss
        =============================================
        # customize flink-configuration
        # example:
        #   'FLINK_CONFIG_restart-strategy': 'none'
        - FLINK_CONFIG_[key]: value
        # customize the vvp job labels
        - VVP_LABEL_[key]: value
        - jvm_system_properties: dict
        - jvm_startup_options: list[str] the extra commandline options for jvm
        =============================================
        - storage_type: options 'oss', 'MaxCompute'
        ---------------------------------------------
        # when storage_type='oss'
        - oss_endpoint (str)          required, specify the endpoint of OSS
        - oss_base_uri (str)          required, in format of oss://[bucket]/[path]
        - # when the credentials to access OSS is same with global credentials,
          # the following parameters can be ommited.
          # PyAlink will look in several locations when searching for OSS credentials.
          # the order in which PyAlink searches for credentials is:
          # 1. the following credentials parameters in the usePAIEnv() method
          # 2. System Environment: 'OSS_ACCESS_KEY_ID', 'OSS_ACCESS_KEY_SECRET', 'OSS_SECURITY_TOKEN'
          # 3. the parameters of (access_key_id, access_key_secret) in the usePAIEnv() method
          # 4. System Environment: 'ALINK_PAIFLOW_ACCESS_KEY_ID', 'ALINK_PAIFLOW_ACCESS_KEY_SECRET'
          # 5. System Environment: 'ALIBABA_CLOUD_ACCESS_KEY_ID', 'ALIBABA_CLOUD_ACCESS_KEY_SECRET'
        - oss_access_key_id (str)     optional, the AccessKeyId for your Aliyun Account to access OSS
        - oss_access_key_secret (str) optional, the AccessKeySecret for your Aliyun Account to access OSS
        - oss_security_token (str)    optional, the SecurityToken for your Aliyun Account to access OSS
        ---------------------------------------------
        # when storage_type='MaxCompute'
        - maxcompute_endpoint (str)          required
        - maxcompute_project  (str)          required
        - maxcompute_table_name_prefix (str) optional, the default value is 'pyalink_tmp_'

Alink 结合 TFDV 进行数据验证

  Alink 的统计功能可以与 TFDV 统计之外的其他功能进行无缝集成,包括数据可视化、数据 schema 推断、数据偏移检测等功能。

train_stats = InternalFullStatsBatchOp().linkFrom(source).collectFullStats().getDatasetFeatureStatisticsList()
import tensorflow_data_validation as tfdv
tfdv.visualize_statistics(train_stats)

  通过 TFDV 接口,从统计结果中推断数据的 schema(注意避免和 Alink 中的 schemaStr 混淆)。

schema = tfdv.infer_schema(statistics=train_stats)
tfdv.display_schema(schema=schema)

image.png

image.png

 计算验证集的统计信息,并和训练集对比查看。

 通过对比数据的 schema 和验证集的统计信息,得到数据中的异常信息。

eval_source = CsvSourceBatchOp()\
    .setFilePath("https://alink-release.oss-cn-beijing.aliyuncs.com/data-files/chicago_eval_data.csv")\
    .setSchemaStr(schemaStr)\
    .setIgnoreFirstLine(True)
eval_stats = InternalFullStatsBatchOp().linkFrom(eval_source).collectFullStats().getDatasetFeatureStatisticsList()
anomalies = tfdv.validate_statistics(statistics=eval_stats, schema=schema)
tfdv.display_anomalies(anomalies)

image.png

  通过 Alink 与 TFDV 无缝对接实现更多基于统计信息的功能,可以参考原 TFDV 官方示例

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