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Add array_slice and array_unshift function expr (#7950)
* add array_slice and array_unshift function expr * feedback address
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@ -258,7 +258,7 @@ interface Function
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public void validateArguments(List<Expr> args)
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{
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if (args.size() != 2) {
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throw new IAE("Function[%s] needs 2 argument", name());
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throw new IAE("Function[%s] needs 2 arguments", name());
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}
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}
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@ -2062,4 +2062,139 @@ interface Function
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return ExprEval.bestEffortOf(any);
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}
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}
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class ArraySliceFunction implements Function
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{
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@Override
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public String name()
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{
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return "array_slice";
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}
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@Override
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public void validateArguments(List<Expr> args)
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{
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if (args.size() != 2 && args.size() != 3) {
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throw new IAE("Function[%s] needs 2 or 3 arguments", name());
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}
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}
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@Override
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public ExprEval apply(List<Expr> args, Expr.ObjectBinding bindings)
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{
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final ExprEval expr = args.get(0).eval(bindings);
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final Object[] array = expr.asArray();
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if (array == null) {
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return ExprEval.of(null);
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}
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final int start = args.get(1).eval(bindings).asInt();
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int end = array.length;
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if (args.size() == 3) {
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end = args.get(2).eval(bindings).asInt();
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}
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if (start < 0 || start > array.length || start > end) {
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// Arrays.copyOfRange will throw exception in these cases
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return ExprEval.of(null);
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}
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switch (expr.type()) {
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case STRING:
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case STRING_ARRAY:
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return ExprEval.ofStringArray(Arrays.copyOfRange(expr.asStringArray(), start, end));
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case LONG:
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case LONG_ARRAY:
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return ExprEval.ofLongArray(Arrays.copyOfRange(expr.asLongArray(), start, end));
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case DOUBLE:
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case DOUBLE_ARRAY:
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return ExprEval.ofDoubleArray(Arrays.copyOfRange(expr.asDoubleArray(), start, end));
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}
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throw new RE("Unable to slice to unknown type %s", expr.type());
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}
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@Override
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public Set<Expr> getScalarInputs(List<Expr> args)
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{
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if (args.size() == 3) {
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return ImmutableSet.of(args.get(1), args.get(2));
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} else {
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return ImmutableSet.of(args.get(1));
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}
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}
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@Override
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public Set<Expr> getArrayInputs(List<Expr> args)
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{
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return ImmutableSet.of(args.get(0));
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}
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}
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class ArrayPrependFunction implements Function
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{
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@Override
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public String name()
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{
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return "array_prepend";
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}
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@Override
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public void validateArguments(List<Expr> args)
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{
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if (args.size() != 2) {
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throw new IAE("Function[%s] needs 2 arguments", name());
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}
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}
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@Override
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public ExprEval apply(List<Expr> args, Expr.ObjectBinding bindings)
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{
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final ExprEval scalarExpr = args.get(0).eval(bindings);
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final ExprEval arrayExpr = args.get(1).eval(bindings);
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if (arrayExpr.asArray() == null) {
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return ExprEval.of(null);
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}
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switch (arrayExpr.type()) {
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case STRING:
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case STRING_ARRAY:
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return ExprEval.ofStringArray(this.prepend(scalarExpr.asString(), arrayExpr.asStringArray()).toArray(String[]::new));
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case LONG:
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case LONG_ARRAY:
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return ExprEval.ofLongArray(
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this.prepend(
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scalarExpr.isNumericNull() ? null : scalarExpr.asLong(),
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arrayExpr.asLongArray()).toArray(Long[]::new
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)
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);
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case DOUBLE:
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case DOUBLE_ARRAY:
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return ExprEval.ofDoubleArray(
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this.prepend(
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scalarExpr.isNumericNull() ? null : scalarExpr.asDouble(),
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arrayExpr.asDoubleArray()).toArray(Double[]::new
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)
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);
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}
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throw new RE("Unable to prepend to unknown type %s", arrayExpr.type());
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}
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private <T> Stream<T> prepend(T val, T[] array)
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{
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List<T> l = new ArrayList<>(Arrays.asList(array));
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l.add(0, val);
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return l.stream();
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}
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@Override
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public Set<Expr> getScalarInputs(List<Expr> args)
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{
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return ImmutableSet.of(args.get(0));
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}
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@Override
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public Set<Expr> getArrayInputs(List<Expr> args)
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{
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return ImmutableSet.of(args.get(1));
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}
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}
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}
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@ -260,6 +260,26 @@ public class FunctionTest
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assertExpr("cast(['1.0', '2.0', '3.0'], 'LONG_ARRAY')", new Long[]{1L, 2L, 3L});
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}
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@Test
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public void testArraySlice()
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{
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assertExpr("array_slice([1, 2, 3, 4], 1, 3)", new Long[] {2L, 3L});
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assertExpr("array_slice([1.0, 2.1, 3.2, 4.3], 2)", new Double[] {3.2, 4.3});
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assertExpr("array_slice(['a', 'b', 'c', 'd'], 4, 6)", new String[] {null, null});
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assertExpr("array_slice([1, 2, 3, 4], 2, 2)", new Long[] {});
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assertExpr("array_slice([1, 2, 3, 4], 5, 7)", null);
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assertExpr("array_slice([1, 2, 3, 4], 2, 1)", null);
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}
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@Test
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public void testArrayPrepend()
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{
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assertExpr("array_prepend(4, [1, 2, 3])", new Long[]{4L, 1L, 2L, 3L});
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assertExpr("array_prepend('bar', [1, 2, 3])", new Long[]{null, 1L, 2L, 3L});
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assertExpr("array_prepend(1, [])", new String[]{"1"});
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assertExpr("array_prepend(1, cast([], 'LONG_ARRAY'))", new Long[]{1L});
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}
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private void assertExpr(final String expression, final Object expectedResult)
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{
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final Expr expr = Parser.parse(expression, ExprMacroTable.nil());
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@ -179,6 +179,8 @@ See javadoc of java.lang.Math for detailed explanation for each function.
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| `array_concat(arr1,arr2)` | concatenates 2 arrays, the resulting array type determined by the type of the first array |
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| `array_to_string(arr,str)` | joins all elements of arr by the delimiter specified by str |
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| `string_to_array(str1,str2)` | splits str1 into an array on the delimiter specified by str2 |
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| `array_slice(arr,start,end)` | return the subarray of arr from the 0 based index start(inclusive) to end(exclusive), or `null`, if start is less than 0, greater than length of arr or less than end|
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| `array_prepend(expr,arr)` | adds expr to arr at the beginning, the resulting array type determined by the type of the array |
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## Apply Functions
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