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112 lines
5.2 KiB
C++
112 lines
5.2 KiB
C++
#include <Functions/FunctionsDecimalArithmetics.h>
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#include <Functions/FunctionFactory.h>
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namespace DB
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{
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namespace ErrorCodes
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{
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extern const int DECIMAL_OVERFLOW;
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extern const int ILLEGAL_DIVISION;
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}
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namespace
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{
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struct DivideDecimalsImpl
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{
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static constexpr auto name = "divideDecimal";
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template <typename FirstType, typename SecondType>
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static inline Decimal256
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execute(FirstType a, SecondType b, UInt16 scale_a, UInt16 scale_b, UInt16 result_scale)
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{
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if (b.value == 0)
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throw DB::Exception(ErrorCodes::ILLEGAL_DIVISION, "Division by zero");
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if (a.value == 0)
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return Decimal256(0);
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Int256 sign_a = a.value < 0 ? -1 : 1;
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Int256 sign_b = b.value < 0 ? -1 : 1;
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std::vector<UInt8> a_digits = DecimalOpHelpers::toDigits(a.value * sign_a);
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while (scale_a < scale_b + result_scale)
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{
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a_digits.push_back(0);
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++scale_a;
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}
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while (scale_a > scale_b + result_scale && !a_digits.empty())
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{
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a_digits.pop_back();
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--scale_a;
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}
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if (a_digits.empty())
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return Decimal256(0);
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std::vector<UInt8> divided = DecimalOpHelpers::divide(a_digits, b.value * sign_b);
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if (divided.size() > DecimalUtils::max_precision<Decimal256>)
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throw DB::Exception(ErrorCodes::DECIMAL_OVERFLOW, "Numeric overflow: result bigger that Decimal256");
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return Decimal256(sign_a * sign_b * DecimalOpHelpers::fromDigits(divided));
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}
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};
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}
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REGISTER_FUNCTION(DivideDecimals)
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{
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factory.registerFunction<FunctionsDecimalArithmetics<DivideDecimalsImpl>>(FunctionDocumentation{
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.description = R"(
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Performs division on two decimals. Result value will be of type [Decimal256](../../sql-reference/data-types/decimal.md).
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Result scale can be explicitly specified by `result_scale` argument (const Integer in range `[0, 76]`). If not specified, the result scale is the max scale of given arguments.
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:::note
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These function work significantly slower than usual `divide`.
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In case you don't really need controlled precision and/or need fast computation, consider using [divide](#divide).
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:::)",
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.syntax = "divideDecimal(a, b[, result_scale])",
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.arguments = {
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{"a", "First value: [Decimal](../../sql-reference/data-types/decimal.md)"},
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{"b", "Second value: [Decimal](../../sql-reference/data-types/decimal.md)."}
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},
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.returned_value = "The result of division with given scale. Type: [Decimal256](../../sql-reference/data-types/decimal.md).",
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.examples = {
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{"", "divideDecimal(toDecimal256(-12, 0), toDecimal32(2.1, 1), 10)",
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R"(
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┌─divideDecimal(toDecimal256(-12, 0), toDecimal32(2.1, 1), 10)─┐
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│ -5.7142857142 │
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└──────────────────────────────────────────────────────────────┘
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)"}, {"Difference to regular division",
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R"(
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SELECT toDecimal64(-12, 1) / toDecimal32(2.1, 1);
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SELECT toDecimal64(-12, 1) as a, toDecimal32(2.1, 1) as b, divideDecimal(a, b, 1), divideDecimal(a, b, 5);
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)",
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R"(
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┌─divide(toDecimal64(-12, 1), toDecimal32(2.1, 1))─┐
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│ -5.7 │
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└──────────────────────────────────────────────────┘
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┌───a─┬───b─┬─divideDecimal(toDecimal64(-12, 1), toDecimal32(2.1, 1), 1)─┬─divideDecimal(toDecimal64(-12, 1), toDecimal32(2.1, 1), 5)─┐
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│ -12 │ 2.1 │ -5.7 │ -5.71428 │
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└─────┴─────┴────────────────────────────────────────────────────────────┴────────────────────────────────────────────────────────────┘
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)"
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},
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{"",
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R"(
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SELECT toDecimal64(-12, 0) / toDecimal32(2.1, 1);
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SELECT toDecimal64(-12, 0) as a, toDecimal32(2.1, 1) as b, divideDecimal(a, b, 1), divideDecimal(a, b, 5);
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)",
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R"(
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DB::Exception: Decimal result's scale is less than argument's one: While processing toDecimal64(-12, 0) / toDecimal32(2.1, 1). (ARGUMENT_OUT_OF_BOUND)
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┌───a─┬───b─┬─divideDecimal(toDecimal64(-12, 0), toDecimal32(2.1, 1), 1)─┬─divideDecimal(toDecimal64(-12, 0), toDecimal32(2.1, 1), 5)─┐
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│ -12 │ 2.1 │ -5.7 │ -5.71428 │
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└─────┴─────┴────────────────────────────────────────────────────────────┴────────────────────────────────────────────────────────────┘
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)"}
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}});
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}
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}
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