Package sql.visitors.squall

Source Code of sql.visitors.squall.IndexJoinHashVisitor

package sql.visitors.squall;

import java.util.ArrayList;
import java.util.Collections;
import java.util.Iterator;
import java.util.List;
import java.util.Stack;

import net.sf.jsqlparser.expression.AllComparisonExpression;
import net.sf.jsqlparser.expression.AnyComparisonExpression;
import net.sf.jsqlparser.expression.BinaryExpression;
import net.sf.jsqlparser.expression.CaseExpression;
import net.sf.jsqlparser.expression.DateValue;
import net.sf.jsqlparser.expression.DoubleValue;
import net.sf.jsqlparser.expression.Expression;
import net.sf.jsqlparser.expression.ExpressionVisitor;
import net.sf.jsqlparser.expression.Function;
import net.sf.jsqlparser.expression.InverseExpression;
import net.sf.jsqlparser.expression.JdbcParameter;
import net.sf.jsqlparser.expression.LongValue;
import net.sf.jsqlparser.expression.NullValue;
import net.sf.jsqlparser.expression.Parenthesis;
import net.sf.jsqlparser.expression.StringValue;
import net.sf.jsqlparser.expression.TimeValue;
import net.sf.jsqlparser.expression.TimestampValue;
import net.sf.jsqlparser.expression.WhenClause;
import net.sf.jsqlparser.expression.operators.arithmetic.Addition;
import net.sf.jsqlparser.expression.operators.arithmetic.BitwiseAnd;
import net.sf.jsqlparser.expression.operators.arithmetic.BitwiseOr;
import net.sf.jsqlparser.expression.operators.arithmetic.BitwiseXor;
import net.sf.jsqlparser.expression.operators.arithmetic.Concat;
import net.sf.jsqlparser.expression.operators.arithmetic.Division;
import net.sf.jsqlparser.expression.operators.arithmetic.Multiplication;
import net.sf.jsqlparser.expression.operators.arithmetic.Subtraction;
import net.sf.jsqlparser.expression.operators.conditional.AndExpression;
import net.sf.jsqlparser.expression.operators.conditional.OrExpression;
import net.sf.jsqlparser.expression.operators.relational.Between;
import net.sf.jsqlparser.expression.operators.relational.EqualsTo;
import net.sf.jsqlparser.expression.operators.relational.ExistsExpression;
import net.sf.jsqlparser.expression.operators.relational.ExpressionList;
import net.sf.jsqlparser.expression.operators.relational.GreaterThan;
import net.sf.jsqlparser.expression.operators.relational.GreaterThanEquals;
import net.sf.jsqlparser.expression.operators.relational.InExpression;
import net.sf.jsqlparser.expression.operators.relational.IsNullExpression;
import net.sf.jsqlparser.expression.operators.relational.ItemsListVisitor;
import net.sf.jsqlparser.expression.operators.relational.LikeExpression;
import net.sf.jsqlparser.expression.operators.relational.Matches;
import net.sf.jsqlparser.expression.operators.relational.MinorThan;
import net.sf.jsqlparser.expression.operators.relational.MinorThanEquals;
import net.sf.jsqlparser.expression.operators.relational.NotEqualsTo;
import net.sf.jsqlparser.schema.Column;
import net.sf.jsqlparser.statement.select.SubSelect;
import plan_runner.components.Component;
import plan_runner.conversion.DateConversion;
import plan_runner.conversion.DoubleConversion;
import plan_runner.conversion.LongConversion;
import plan_runner.conversion.StringConversion;
import plan_runner.conversion.TypeConversion;
import plan_runner.expressions.ColumnReference;
import plan_runner.expressions.IntegerYearFromDate;
import plan_runner.expressions.ValueExpression;
import plan_runner.expressions.ValueSpecification;
import sql.optimizers.index.IndexTranslator;
import sql.schema.Schema;
import sql.util.NotFromMyBranchException;
import sql.util.ParserUtil;
import sql.util.TableAliasName;

/*
* Returns a list of hashExpressions for a given component in a given query plan.
* If we do not have complexCondition,
*   outside this class hashIndexes are extracted from hashExpressions.
*
* For example, on join condition R.B = S.B, from component R,
*   we need to find the index of B. This is not so easy if
*    a) R is not a DataSourceComponent)
*    b) many operators down the path
*/
public class IndexJoinHashVisitor implements ExpressionVisitor, ItemsListVisitor {
  // these are only used within visit(Column) method
  private Schema _schema;
  private Component _affectedComponent;
  private TableAliasName _tan;

  private IndexTranslator _it;

  // this will not break any contracts,
  // even with new DateConversion() on all the places,
  // we will have a single object per (possibly) multiple spout/bolt threads.
  // generating plans is done from a single thread, static additionally saves
  // space
  private static LongConversion _lc = new LongConversion();
  private static DoubleConversion _dblConv = new DoubleConversion();
  private static DateConversion _dateConv = new DateConversion();
  private static StringConversion _sc = new StringConversion();

  private Stack<ValueExpression> _exprStack = new Stack<ValueExpression>();

  private final List<ValueExpression> _hashExpressions = new ArrayList<ValueExpression>();

  protected IndexJoinHashVisitor() {
  }

  /*
   * affectedComponent is one of the parents of the join component
   */
  public IndexJoinHashVisitor(Schema schema, Component affectedComponent, TableAliasName tan) {
    _schema = schema;
    _affectedComponent = affectedComponent;
    _tan = tan;

    _it = new IndexTranslator(_schema, _tan);
  }

  public List<ValueExpression> getExpressions() {
    return _hashExpressions;
  }

  protected void pushToExprStack(ValueExpression ve) {
    _exprStack.push(ve);
  }

  /*
   * Each of these operations create a Squall type, that's why so much similar
   * code
   */
  @Override
  public void visit(Addition adtn) {
    visitBinaryOperation(adtn);

    final ValueExpression right = _exprStack.pop();
    final ValueExpression left = _exprStack.pop();

    final ValueExpression add = new plan_runner.expressions.Addition(left, right);
    _exprStack.push(add);
  }

  @Override
  public void visit(AllComparisonExpression ace) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(AndExpression ae) {
    visitBinaryOperation(ae);
  }

  @Override
  public void visit(AnyComparisonExpression ace) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(Between btwn) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(BitwiseAnd ba) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(BitwiseOr bo) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(BitwiseXor bx) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(CaseExpression ce) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(Column column) {
    final String tableCompName = ParserUtil.getComponentName(column);
    final List<String> ancestorNames = ParserUtil.getSourceNameList(_affectedComponent);

    if (ancestorNames.contains(tableCompName)) {
      // extract type for the column
      final TypeConversion tc = _schema.getType(ParserUtil.getFullSchemaColumnName(column,
          _tan));

      // extract the position (index) of the required column
      final int position = _it.getColumnIndex(column, _affectedComponent);

      final ValueExpression ve = new ColumnReference(tc, position);
      _exprStack.push(ve);
    } else
      throw new NotFromMyBranchException();
  }

  @Override
  public void visit(Concat concat) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(DateValue dv) {
    final ValueExpression ve = new ValueSpecification(_dateConv, dv.getValue());
    _exprStack.push(ve);
  }

  @Override
  public void visit(Division dvsn) {
    visitBinaryOperation(dvsn);

    final ValueExpression right = _exprStack.pop();
    final ValueExpression left = _exprStack.pop();

    final ValueExpression division = new plan_runner.expressions.Division(left, right);
    _exprStack.push(division);
  }

  // all of ValueSpecifications (constants) guarantee we have some expressions
  // in join conditions
  @Override
  public void visit(DoubleValue dv) {
    final ValueExpression ve = new ValueSpecification(_dblConv, dv.getValue());
    _exprStack.push(ve);
  }

  @Override
  public void visit(EqualsTo et) {
    visitSideEquals(et.getLeftExpression());
    visitSideEquals(et.getRightExpression());
  }

  @Override
  public void visit(ExistsExpression ee) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(ExpressionList el) {
    for (final Iterator iter = el.getExpressions().iterator(); iter.hasNext();) {
      final Expression expression = (Expression) iter.next();
      expression.accept(this);
    }
  }

  @Override
  public void visit(Function function) {
    // all aggregate functions (SUM, AVG, COUNT, MAX, MIN) have only one
    // parameter (Expression)
    // although COUNT(*) has no parameters
    // EXTRACT_YEAR has one parameter
    final ExpressionList params = function.getParameters();
    int numParams = 0;
    if (params != null) {
      visit(params);

      // only for size
      final List<Expression> listParams = params.getExpressions();
      numParams = listParams.size();
    }
    final List<ValueExpression> expressions = new ArrayList<ValueExpression>();
    for (int i = 0; i < numParams; i++)
      expressions.add(_exprStack.pop());
    Collections.reverse(expressions); // at the stack top is the lastly
    // added VE

    final String fnName = function.getName();
    if (fnName.equalsIgnoreCase("EXTRACT_YEAR")) {
      if (numParams != 1)
        throw new RuntimeException("EXTRACT_YEAR function has exactly one parameter!");
      final ValueExpression expr = expressions.get(0);
      final ValueExpression ve = new IntegerYearFromDate(expr);
      _exprStack.push(ve);
    }
  }

  @Override
  public void visit(GreaterThan gt) {
    visitUnsupportedOp();
  }

  @Override
  public void visit(GreaterThanEquals gte) {
    visitUnsupportedOp();
  }

  @Override
  public void visit(InExpression ie) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(InverseExpression ie) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(IsNullExpression ine) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(JdbcParameter jp) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(LikeExpression le) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(LongValue lv) {
    final ValueExpression ve = new ValueSpecification(_lc, lv.getValue());
    _exprStack.push(ve);
  }

  @Override
  public void visit(Matches mtchs) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(MinorThan mt) {
    visitUnsupportedOp();
  }

  @Override
  public void visit(MinorThanEquals mte) {
    visitUnsupportedOp();
  }

  @Override
  public void visit(Multiplication m) {
    visitBinaryOperation(m);

    final ValueExpression right = _exprStack.pop();
    final ValueExpression left = _exprStack.pop();

    final ValueExpression mult = new plan_runner.expressions.Multiplication(left, right);
    _exprStack.push(mult);
  }

  @Override
  public void visit(NotEqualsTo net) {
    visitUnsupportedOp();
  }

  // VISITOR DESIGN PATTERN
  @Override
  public void visit(NullValue nv) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  // UNSUPPORTED
  @Override
  public void visit(OrExpression oe) {
    throw new RuntimeException("OR in join condition is not yet supported!");
  }

  @Override
  public void visit(Parenthesis prnths) {
    prnths.getExpression().accept(this);
  }

  @Override
  public void visit(StringValue sv) {
    final ValueExpression ve = new ValueSpecification(_sc, sv.getValue());
    _exprStack.push(ve);
  }

  @Override
  public void visit(SubSelect ss) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(Subtraction s) {
    visitBinaryOperation(s);

    final ValueExpression right = _exprStack.pop();
    final ValueExpression left = _exprStack.pop();

    final ValueExpression sub = new plan_runner.expressions.Subtraction(left, right);
    _exprStack.push(sub);
  }

  @Override
  public void visit(TimestampValue tv) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(TimeValue tv) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  @Override
  public void visit(WhenClause wc) {
    throw new UnsupportedOperationException("Not supported yet.");
  }

  private void visitBinaryOperation(BinaryExpression be) {
    be.getLeftExpression().accept(this);
    be.getRightExpression().accept(this);
  }

  private void visitSideEquals(Expression ex) {
    try {
      _exprStack = new Stack<ValueExpression>();
      ex.accept(this);
      final ValueExpression ve = _exprStack.pop();
      _hashExpressions.add(ve);
    } catch (final NotFromMyBranchException exc) {
      // expression would not be added in the list
    }
  }

  private void visitUnsupportedOp() {
    throw new RuntimeException("Only EQUALS operator can appear in join condition!");
  }
}
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