Package org.apache.phoenix.expression

Examples of org.apache.phoenix.expression.DecimalSubtractExpression.evaluate()


        op1 = LiteralExpression.newConstant(new BigDecimal("1234567890123456789012345678901"), PDataType.DECIMAL, 31, 0);
        op2 = LiteralExpression.newConstant(new BigDecimal("12345"), PDataType.DECIMAL, 5, 0);
        children = Arrays.<Expression>asList(op1, op2);
        e = new DecimalSubtractExpression(children);
        ptr = new ImmutableBytesWritable();
        evaluated = e.evaluate(null, ptr);
        assertTrue(evaluated);
        assertEqualValue(PDataType.DECIMAL, new BigDecimal("1234567890123456789012345666556"), ptr);

        op1 = LiteralExpression.newConstant(new BigDecimal("12345"), PDataType.DECIMAL, 5, 0);
        op2 = LiteralExpression.newConstant(new BigDecimal("123.45"), PDataType.DECIMAL, 5, 2);
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        op1 = LiteralExpression.newConstant(new BigDecimal("12345"), PDataType.DECIMAL, 5, 0);
        op2 = LiteralExpression.newConstant(new BigDecimal("123.45"), PDataType.DECIMAL, 5, 2);
        children = Arrays.<Expression>asList(op1, op2);
        e = new DecimalSubtractExpression(children);
        ptr = new ImmutableBytesWritable();
        evaluated = e.evaluate(null, ptr);
        assertTrue(evaluated);
        assertEqualValue(PDataType.DECIMAL, new BigDecimal("12221.55"), ptr);

        // Excceds precision
        op1 = LiteralExpression.newConstant(new BigDecimal("99999999999999999999999999999999999999"), PDataType.DECIMAL, 38, 0);
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        op2 = LiteralExpression.newConstant(new BigDecimal("-123"), PDataType.DECIMAL, 3, 0);
        children = Arrays.<Expression>asList(op1, op2);
        e = new DecimalSubtractExpression(children);
        ptr = new ImmutableBytesWritable();
        try {
            evaluated = e.evaluate(null, ptr);
            fail("Evaluation should have failed");
        } catch (ValueTypeIncompatibleException ex) {
        }

        // Pass since we roll up precision and scale imposing.
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        op2 = LiteralExpression.newConstant(new BigDecimal("-123"), PDataType.DECIMAL, 3, 0);
        op3 = LiteralExpression.newConstant(new BigDecimal("123"), PDataType.DECIMAL, 3, 0);
        children = Arrays.<Expression>asList(op1, op2, op3);
        e = new DecimalSubtractExpression(children);
        ptr = new ImmutableBytesWritable();
        evaluated = e.evaluate(null, ptr);
        assertTrue(evaluated);
        assertEqualValue(PDataType.DECIMAL, new BigDecimal("99999999999999999999999999999999999999"), ptr);

        // Exceeds scale.
        op1 = LiteralExpression.newConstant(new BigDecimal("12345678901234567890123456789012345678"), PDataType.DECIMAL, 38, 0);
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        op2 = LiteralExpression.newConstant(new BigDecimal("123.45"), PDataType.DECIMAL, 5, 2);
        children = Arrays.<Expression>asList(op1, op2);
        e = new DecimalSubtractExpression(children);
        ptr = new ImmutableBytesWritable();
        try {
            evaluated = e.evaluate(null, ptr);
            fail("Evaluation should have failed");
        } catch (ValueTypeIncompatibleException ex) {
        }
       
        // Decimal with no precision and scale.
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        op1 = LiteralExpression.newConstant(new BigDecimal("1111.1"), PDataType.DECIMAL);
        op2 = LiteralExpression.newConstant(new BigDecimal("1.1111"), PDataType.DECIMAL, 5, 4);
        children = Arrays.<Expression>asList(op1, op2);
        e = new DecimalSubtractExpression(children);
        ptr = new ImmutableBytesWritable();
        evaluated = e.evaluate(null, ptr);
        assertTrue(evaluated);
        assertEqualValue(PDataType.DECIMAL, new BigDecimal("1109.9889"), ptr);
    }

    // Multiplication
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        op1 = LiteralExpression.newConstant(new BigDecimal("1234567890123456789012345678901"), PDataType.DECIMAL, 31, 0);
        op2 = LiteralExpression.newConstant(new BigDecimal("12345"), PDataType.DECIMAL, 5, 0);
        children = Arrays.<Expression>asList(op1, op2);
        e = new DecimalSubtractExpression(children);
        ptr = new ImmutableBytesWritable();
        evaluated = e.evaluate(null, ptr);
        assertTrue(evaluated);
        assertEqualValue(PDataType.DECIMAL, new BigDecimal("1234567890123456789012345666556"), ptr);

        op1 = LiteralExpression.newConstant(new BigDecimal("12345"), PDataType.DECIMAL, 5, 0);
        op2 = LiteralExpression.newConstant(new BigDecimal("123.45"), PDataType.DECIMAL, 5, 2);
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        op1 = LiteralExpression.newConstant(new BigDecimal("12345"), PDataType.DECIMAL, 5, 0);
        op2 = LiteralExpression.newConstant(new BigDecimal("123.45"), PDataType.DECIMAL, 5, 2);
        children = Arrays.<Expression>asList(op1, op2);
        e = new DecimalSubtractExpression(children);
        ptr = new ImmutableBytesWritable();
        evaluated = e.evaluate(null, ptr);
        assertTrue(evaluated);
        assertEqualValue(PDataType.DECIMAL, new BigDecimal("12221.55"), ptr);

        // Excceds precision
        op1 = LiteralExpression.newConstant(new BigDecimal("99999999999999999999999999999999999999"), PDataType.DECIMAL, 38, 0);
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        op2 = LiteralExpression.newConstant(new BigDecimal("-123"), PDataType.DECIMAL, 3, 0);
        children = Arrays.<Expression>asList(op1, op2);
        e = new DecimalSubtractExpression(children);
        ptr = new ImmutableBytesWritable();
        try {
            evaluated = e.evaluate(null, ptr);
            fail("Evaluation should have failed");
        } catch (ValueTypeIncompatibleException ex) {
        }

        // Pass since we roll up precision and scale imposing.
View Full Code Here

        op2 = LiteralExpression.newConstant(new BigDecimal("-123"), PDataType.DECIMAL, 3, 0);
        op3 = LiteralExpression.newConstant(new BigDecimal("123"), PDataType.DECIMAL, 3, 0);
        children = Arrays.<Expression>asList(op1, op2, op3);
        e = new DecimalSubtractExpression(children);
        ptr = new ImmutableBytesWritable();
        evaluated = e.evaluate(null, ptr);
        assertTrue(evaluated);
        assertEqualValue(PDataType.DECIMAL, new BigDecimal("99999999999999999999999999999999999999"), ptr);

        // Exceeds scale.
        op1 = LiteralExpression.newConstant(new BigDecimal("12345678901234567890123456789012345678"), PDataType.DECIMAL, 38, 0);
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