#define LLVM_SUPPORT_CHRONO_H
#include "llvm/Support/Compiler.h"
+#include "llvm/Support/FormatProviders.h"
#include <chrono>
#include <ctime>
raw_ostream &operator<<(raw_ostream &OS, sys::TimePoint<> TP);
+/// Implementation of format_provider<T> for duration types.
+///
+/// The options string of a duration type has the grammar:
+///
+/// duration_options ::= [unit][show_unit [number_options]]
+/// unit ::= `h`|`m`|`s`|`ms|`us`|`ns`
+/// show_unit ::= `+` | `-`
+/// number_options ::= options string for a integral or floating point type
+///
+/// Examples
+/// =================================
+/// | options | Input | Output |
+/// =================================
+/// | "" | 1s | 1 s |
+/// | "ms" | 1s | 1000 ms |
+/// | "ms-" | 1s | 1000 |
+/// | "ms-n" | 1s | 1,000 |
+/// | "" | 1.0s | 1.00 s |
+/// =================================
+///
+/// If the unit of the duration type is not one of the units specified above,
+/// it is still possible to format it, provided you explicitly request a
+/// display unit or you request that the unit is not displayed.
+
+namespace detail {
+template <typename Period> struct unit { static constexpr char value[] = ""; };
+template <typename Period> constexpr char unit<Period>::value[];
+
+template <> struct unit<std::ratio<3600>> {
+ static constexpr char value[] = "h";
+};
+
+template <> struct unit<std::ratio<60>> {
+ static constexpr char value[] = "m";
+};
+
+template <> struct unit<std::ratio<1>> { static constexpr char value[] = "s"; };
+template <> struct unit<std::milli> { static constexpr char value[] = "ms"; };
+template <> struct unit<std::micro> { static constexpr char value[] = "us"; };
+template <> struct unit<std::nano> { static constexpr char value[] = "ns"; };
+} // namespace detail
+
+template <typename Rep, typename Period>
+struct format_provider<std::chrono::duration<Rep, Period>> {
+private:
+ typedef std::chrono::duration<Rep, Period> Dur;
+ typedef typename std::conditional<
+ std::chrono::treat_as_floating_point<Rep>::value, double, intmax_t>::type
+ InternalRep;
+
+ template <typename AsPeriod> static InternalRep getAs(const Dur &D) {
+ using namespace std::chrono;
+ return duration_cast<duration<InternalRep, AsPeriod>>(D).count();
+ }
+
+ static std::pair<InternalRep, StringRef> consumeUnit(StringRef &Style,
+ const Dur &D) {
+ using namespace std::chrono;
+ if (Style.consume_front("ns"))
+ return {getAs<std::nano>(D), "ns"};
+ if (Style.consume_front("us"))
+ return {getAs<std::micro>(D), "us"};
+ if (Style.consume_front("ms"))
+ return {getAs<std::milli>(D), "ms"};
+ if (Style.consume_front("s"))
+ return {getAs<std::ratio<1>>(D), "s"};
+ if (Style.consume_front("m"))
+ return {getAs<std::ratio<60>>(D), "m"};
+ if (Style.consume_front("h"))
+ return {getAs<std::ratio<3600>>(D), "h"};
+ return {D.count(), detail::unit<Period>::value};
+ }
+
+ static bool consumeShowUnit(StringRef &Style) {
+ if (Style.empty())
+ return true;
+ if (Style.consume_front("-"))
+ return false;
+ if (Style.consume_front("+"))
+ return true;
+ assert(0 && "Unrecognised duration format");
+ return true;
+ }
+
+public:
+ static void format(const Dur &D, llvm::raw_ostream &Stream, StringRef Style) {
+ InternalRep count;
+ StringRef unit;
+ std::tie(count, unit) = consumeUnit(Style, D);
+ bool show_unit = consumeShowUnit(Style);
+
+ format_provider<InternalRep>::format(count, Stream, Style);
+
+ if (show_unit) {
+ assert(!unit.empty());
+ Stream << " " << unit;
+ }
+ }
+};
+
} // namespace llvm
#endif // LLVM_SUPPORT_CHRONO_H
#include "llvm/Support/Chrono.h"
#include "llvm/ADT/SmallVector.h"
+#include "llvm/Support/FormatVariadic.h"
#include "gtest/gtest.h"
using namespace llvm;
EXPECT_EQ(TimeT, toTimeT(Nano));
}
+TEST(Chrono, DurationFormat) {
+ EXPECT_EQ("1 h", formatv("{0}", hours(1)).str());
+ EXPECT_EQ("1 m", formatv("{0}", minutes(1)).str());
+ EXPECT_EQ("1 s", formatv("{0}", seconds(1)).str());
+ EXPECT_EQ("1 ms", formatv("{0}", milliseconds(1)).str());
+ EXPECT_EQ("1 us", formatv("{0}", microseconds(1)).str());
+ EXPECT_EQ("1 ns", formatv("{0}", nanoseconds(1)).str());
+
+ EXPECT_EQ("1 s", formatv("{0:+}", seconds(1)).str());
+ EXPECT_EQ("1", formatv("{0:-}", seconds(1)).str());
+
+ EXPECT_EQ("1000 ms", formatv("{0:ms}", seconds(1)).str());
+ EXPECT_EQ("1000000 us", formatv("{0:us}", seconds(1)).str());
+ EXPECT_EQ("1000", formatv("{0:ms-}", seconds(1)).str());
+
+ EXPECT_EQ("1,000 ms", formatv("{0:+n}", milliseconds(1000)).str());
+ EXPECT_EQ("0x3e8", formatv("{0:-x}", milliseconds(1000)).str());
+ EXPECT_EQ("010", formatv("{0:-3}", milliseconds(10)).str());
+ EXPECT_EQ("10,000", formatv("{0:ms-n}", seconds(10)).str());
+
+ EXPECT_EQ("1.00 s", formatv("{0}", duration<float>(1)).str());
+ EXPECT_EQ("0.123 s", formatv("{0:+3}", duration<float>(0.123f)).str());
+ EXPECT_EQ("1.230e-01 s", formatv("{0:+e3}", duration<float>(0.123f)).str());
+
+ typedef duration<float, std::ratio<60 * 60 * 24 * 14, 1000000>>
+ microfortnights;
+ EXPECT_EQ("1.00", formatv("{0:-}", microfortnights(1)).str());
+ EXPECT_EQ("1209.60 ms", formatv("{0:ms}", microfortnights(1)).str());
+}
+
} // anonymous namespace