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tinyformat.h
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1// tinyformat.h
2// Copyright (C) 2011, Chris Foster [chris42f (at) gmail (d0t) com]
3//
4// Boost Software License - Version 1.0
5//
6// Permission is hereby granted, free of charge, to any person or organization
7// obtaining a copy of the software and accompanying documentation covered by
8// this license (the "Software") to use, reproduce, display, distribute,
9// execute, and transmit the Software, and to prepare derivative works of the
10// Software, and to permit third-parties to whom the Software is furnished to
11// do so, all subject to the following:
12//
13// The copyright notices in the Software and this entire statement, including
14// the above license grant, this restriction and the following disclaimer,
15// must be included in all copies of the Software, in whole or in part, and
16// all derivative works of the Software, unless such copies or derivative
17// works are solely in the form of machine-executable object code generated by
18// a source language processor.
19//
20// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
21// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
22// FITNESS FOR A PARTICULAR PURPOSE, TITLE AND NON-INFRINGEMENT. IN NO EVENT
23// SHALL THE COPYRIGHT HOLDERS OR ANYONE DISTRIBUTING THE SOFTWARE BE LIABLE
24// FOR ANY DAMAGES OR OTHER LIABILITY, WHETHER IN CONTRACT, TORT OR OTHERWISE,
25// ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
26// DEALINGS IN THE SOFTWARE.
27
28//------------------------------------------------------------------------------
29// Tinyformat: A minimal type safe printf replacement
30//
31// tinyformat.h is a type safe printf replacement library in a single C++
32// header file. Design goals include:
33//
34// * Type safety and extensibility for user defined types.
35// * C99 printf() compatibility, to the extent possible using std::ostream
36// * POSIX extension for positional arguments
37// * Simplicity and minimalism. A single header file to include and distribute
38// with your projects.
39// * Augment rather than replace the standard stream formatting mechanism
40// * C++98 support, with optional C++11 niceties
41//
42//
43// Main interface example usage
44// ----------------------------
45//
46// To print a date to std::cout for American usage:
47//
48// std::string weekday = "Wednesday";
49// const char* month = "July";
50// size_t day = 27;
51// long hour = 14;
52// int min = 44;
53//
54// tfm::printf("%s, %s %d, %.2d:%.2d\n", weekday, month, day, hour, min);
55//
56// POSIX extension for positional arguments is available.
57// The ability to rearrange formatting arguments is an important feature
58// for localization because the word order may vary in different languages.
59//
60// Previous example for German usage. Arguments are reordered:
61//
62// tfm::printf("%1$s, %3$d. %2$s, %4$d:%5$.2d\n", weekday, month, day, hour, min);
63//
64// The strange types here emphasize the type safety of the interface; it is
65// possible to print a std::string using the "%s" conversion, and a
66// size_t using the "%d" conversion. A similar result could be achieved
67// using either of the tfm::format() functions. One prints on a user provided
68// stream:
69//
70// tfm::format(std::cerr, "%s, %s %d, %.2d:%.2d\n",
71// weekday, month, day, hour, min);
72//
73// The other returns a std::string:
74//
75// std::string date = tfm::format("%s, %s %d, %.2d:%.2d\n",
76// weekday, month, day, hour, min);
77// std::cout << date;
78//
79// These are the three primary interface functions. There is also a
80// convenience function printfln() which appends a newline to the usual result
81// of printf() for super simple logging.
82//
83//
84// User defined format functions
85// -----------------------------
86//
87// Simulating variadic templates in C++98 is pretty painful since it requires
88// writing out the same function for each desired number of arguments. To make
89// this bearable tinyformat comes with a set of macros which are used
90// internally to generate the API, but which may also be used in user code.
91//
92// The three macros TINYFORMAT_ARGTYPES(n), TINYFORMAT_VARARGS(n) and
93// TINYFORMAT_PASSARGS(n) will generate a list of n argument types,
94// type/name pairs and argument names respectively when called with an integer
95// n between 1 and 16. We can use these to define a macro which generates the
96// desired user defined function with n arguments. To generate all 16 user
97// defined function bodies, use the macro TINYFORMAT_FOREACH_ARGNUM. For an
98// example, see the implementation of printf() at the end of the source file.
99//
100// Sometimes it's useful to be able to pass a list of format arguments through
101// to a non-template function. The FormatList class is provided as a way to do
102// this by storing the argument list in a type-opaque way. Continuing the
103// example from above, we construct a FormatList using makeFormatList():
104//
105// FormatListRef formatList = tfm::makeFormatList(weekday, month, day, hour, min);
106//
107// The format list can now be passed into any non-template function and used
108// via a call to the vformat() function:
109//
110// tfm::vformat(std::cout, "%s, %s %d, %.2d:%.2d\n", formatList);
111//
112//
113// Additional API information
114// --------------------------
115//
116// Error handling: Define TINYFORMAT_ERROR to customize the error handling for
117// format strings which are unsupported or have the wrong number of format
118// specifiers (calls assert() by default).
119//
120// User defined types: Uses operator<< for user defined types by default.
121// Overload formatValue() for more control.
122
123
124#ifndef TINYFORMAT_H_INCLUDED
125#define TINYFORMAT_H_INCLUDED
126
127namespace tinyformat {}
128//------------------------------------------------------------------------------
129// Config section. Customize to your liking!
130
131// Namespace alias to encourage brevity
132namespace tfm = tinyformat;
133
134// Error handling; calls assert() by default.
135#define TINYFORMAT_ERROR(reasonString) throw tinyformat::format_error(reasonString)
136
137// Define for C++11 variadic templates which make the code shorter & more
138// general. If you don't define this, C++11 support is autodetected below.
139#define TINYFORMAT_USE_VARIADIC_TEMPLATES
140
141
142//------------------------------------------------------------------------------
143// Implementation details.
144#include <algorithm>
145#include <iostream>
146#include <sstream>
147#include <stdexcept> // Added for Bitcoin Core
148
149#ifndef TINYFORMAT_ASSERT
150# include <cassert>
151# define TINYFORMAT_ASSERT(cond) assert(cond)
152#endif
153
154#ifndef TINYFORMAT_ERROR
155# include <cassert>
156# define TINYFORMAT_ERROR(reason) assert(0 && reason)
157#endif
158
159#if !defined(TINYFORMAT_USE_VARIADIC_TEMPLATES) && !defined(TINYFORMAT_NO_VARIADIC_TEMPLATES)
160# ifdef __GXX_EXPERIMENTAL_CXX0X__
161# define TINYFORMAT_USE_VARIADIC_TEMPLATES
162# endif
163#endif
164
165#if defined(__GLIBCXX__) && __GLIBCXX__ < 20080201
166// std::showpos is broken on old libstdc++ as provided with macOS. See
167// http://gcc.gnu.org/ml/libstdc++/2007-11/msg00075.html
168# define TINYFORMAT_OLD_LIBSTDCPLUSPLUS_WORKAROUND
169#endif
170
171#ifdef __APPLE__
172// Workaround macOS linker warning: Xcode uses different default symbol
173// visibilities for static libs vs executables (see issue #25)
174# define TINYFORMAT_HIDDEN __attribute__((visibility("hidden")))
175#else
176# define TINYFORMAT_HIDDEN
177#endif
178
179namespace tinyformat {
180
181// Added for Bitcoin Core
182class format_error: public std::runtime_error
183{
184public:
185 explicit format_error(const std::string &what): std::runtime_error(what) {
186 }
187};
188
189//------------------------------------------------------------------------------
190namespace detail {
191
192// Test whether type T1 is convertible to type T2
193template <typename T1, typename T2>
195{
196 private:
197 // two types of different size
198 struct fail { char dummy[2]; };
199 struct succeed { char dummy; };
200 // Try to convert a T1 to a T2 by plugging into tryConvert
201 static fail tryConvert(...);
202 static succeed tryConvert(const T2&);
203 static const T1& makeT1();
204 public:
205# ifdef _MSC_VER
206 // Disable spurious loss of precision warnings in tryConvert(makeT1())
207# pragma warning(push)
208# pragma warning(disable:4244)
209# pragma warning(disable:4267)
210# endif
211 // Standard trick: the (...) version of tryConvert will be chosen from
212 // the overload set only if the version taking a T2 doesn't match.
213 // Then we compare the sizes of the return types to check which
214 // function matched. Very neat, in a disgusting kind of way :)
215 static const bool value =
216 sizeof(tryConvert(makeT1())) == sizeof(succeed);
217# ifdef _MSC_VER
218# pragma warning(pop)
219# endif
220};
221
222
223// Detect when a type is not a wchar_t string
224template<typename T> struct is_wchar { typedef int tinyformat_wchar_is_not_supported; };
225template<> struct is_wchar<wchar_t*> {};
226template<> struct is_wchar<const wchar_t*> {};
227template<int n> struct is_wchar<const wchar_t[n]> {};
228template<int n> struct is_wchar<wchar_t[n]> {};
229
230
231// Format the value by casting to type fmtT. This default implementation
232// should never be called.
233template<typename T, typename fmtT, bool convertible = is_convertible<T, fmtT>::value>
235{
236 static void invoke(std::ostream& /*out*/, const T& /*value*/) { TINYFORMAT_ASSERT(0); }
237};
238// Specialized version for types that can actually be converted to fmtT, as
239// indicated by the "convertible" template parameter.
240template<typename T, typename fmtT>
241struct formatValueAsType<T,fmtT,true>
242{
243 static void invoke(std::ostream& out, const T& value)
244 { out << static_cast<fmtT>(value); }
245};
246
247#ifdef TINYFORMAT_OLD_LIBSTDCPLUSPLUS_WORKAROUND
248template<typename T, bool convertible = is_convertible<T, int>::value>
249struct formatZeroIntegerWorkaround
250{
251 static bool invoke(std::ostream& , const T& ) { return false; }
252};
253template<typename T>
254struct formatZeroIntegerWorkaround<T,true>
255{
256 static bool invoke(std::ostream& out, const T& value)
257 {
258 if (static_cast<int>(value) == 0 && out.flags() & std::ios::showpos) {
259 out << "+0";
260 return true;
261 }
262 return false;
263 }
264};
265#endif // TINYFORMAT_OLD_LIBSTDCPLUSPLUS_WORKAROUND
266
267// Convert an arbitrary type to integer. The version with convertible=false
268// throws an error.
269template<typename T, bool convertible = is_convertible<T,int>::value>
271{
272 static int invoke(const T& /*value*/)
273 {
274 TINYFORMAT_ERROR("tinyformat: Cannot convert from argument type to "
275 "integer for use as variable width or precision");
276 return 0;
277 }
278};
279// Specialization for convertToInt when conversion is possible
280template<typename T>
281struct convertToInt<T,true>
282{
283 static int invoke(const T& value) { return static_cast<int>(value); }
284};
285
286// Format at most ntrunc characters to the given stream.
287template<typename T>
288inline void formatTruncated(std::ostream& out, const T& value, int ntrunc)
289{
290 std::ostringstream tmp;
291 tmp << value;
292 std::string result = tmp.str();
293 out.write(result.c_str(), (std::min)(ntrunc, static_cast<int>(result.size())));
294}
295#define TINYFORMAT_DEFINE_FORMAT_TRUNCATED_CSTR(type) \
296inline void formatTruncated(std::ostream& out, type* value, int ntrunc) \
297{ \
298 std::streamsize len = 0; \
299 while (len < ntrunc && value[len] != 0) \
300 ++len; \
301 out.write(value, len); \
302}
303// Overload for const char* and char*. Could overload for signed & unsigned
304// char too, but these are technically unneeded for printf compatibility.
307#undef TINYFORMAT_DEFINE_FORMAT_TRUNCATED_CSTR
308
309} // namespace detail
310
311
312//------------------------------------------------------------------------------
313// Variable formatting functions. May be overridden for user-defined types if
314// desired.
315
316
328template<typename T>
329inline void formatValue(std::ostream& out, const char* /*fmtBegin*/,
330 const char* fmtEnd, int ntrunc, const T& value)
331{
332#ifndef TINYFORMAT_ALLOW_WCHAR_STRINGS
333 // Since we don't support printing of wchar_t using "%ls", make it fail at
334 // compile time in preference to printing as a void* at runtime.
336 (void) DummyType(); // avoid unused type warning with gcc-4.8
337#endif
338 // The mess here is to support the %c and %p conversions: if these
339 // conversions are active we try to convert the type to a char or const
340 // void* respectively and format that instead of the value itself. For the
341 // %p conversion it's important to avoid dereferencing the pointer, which
342 // could otherwise lead to a crash when printing a dangling (const char*).
343 const bool canConvertToChar = detail::is_convertible<T,char>::value;
344 const bool canConvertToVoidPtr = detail::is_convertible<T, const void*>::value;
345 if (canConvertToChar && *(fmtEnd-1) == 'c')
347 else if (canConvertToVoidPtr && *(fmtEnd-1) == 'p')
349#ifdef TINYFORMAT_OLD_LIBSTDCPLUSPLUS_WORKAROUND
350 else if (detail::formatZeroIntegerWorkaround<T>::invoke(out, value)) ;
351#endif
352 else if (ntrunc >= 0) {
353 // Take care not to overread C strings in truncating conversions like
354 // "%.4s" where at most 4 characters may be read.
355 detail::formatTruncated(out, value, ntrunc);
356 }
357 else
358 out << value;
359}
360
361
362// Overloaded version for char types to support printing as an integer
363#define TINYFORMAT_DEFINE_FORMATVALUE_CHAR(charType) \
364inline void formatValue(std::ostream& out, const char* /*fmtBegin*/, \
365 const char* fmtEnd, int , charType value) \
366{ \
367 switch (*(fmtEnd-1)) { \
368 case 'u': case 'd': case 'i': case 'o': case 'X': case 'x': \
369 out << static_cast<int>(value); break; \
370 default: \
371 out << value; break; \
372 } \
373}
374// per 3.9.1: char, signed char and unsigned char are all distinct types
378#undef TINYFORMAT_DEFINE_FORMATVALUE_CHAR
379
380
381//------------------------------------------------------------------------------
382// Tools for emulating variadic templates in C++98. The basic idea here is
383// stolen from the boost preprocessor metaprogramming library and cut down to
384// be just general enough for what we need.
385
386#define TINYFORMAT_ARGTYPES(n) TINYFORMAT_ARGTYPES_ ## n
387#define TINYFORMAT_VARARGS(n) TINYFORMAT_VARARGS_ ## n
388#define TINYFORMAT_PASSARGS(n) TINYFORMAT_PASSARGS_ ## n
389#define TINYFORMAT_PASSARGS_TAIL(n) TINYFORMAT_PASSARGS_TAIL_ ## n
390
391// To keep it as transparent as possible, the macros below have been generated
392// using python via the excellent cog.py code generation script. This avoids
393// the need for a bunch of complex (but more general) preprocessor tricks as
394// used in boost.preprocessor.
395//
396// To rerun the code generation in place, use `cog.py -r tinyformat.h`
397// (see http://nedbatchelder.com/code/cog). Alternatively you can just create
398// extra versions by hand.
399
400/*[[[cog
401maxParams = 16
402
403def makeCommaSepLists(lineTemplate, elemTemplate, startInd=1):
404 for j in range(startInd,maxParams+1):
405 list = ', '.join([elemTemplate % {'i':i} for i in range(startInd,j+1)])
406 cog.outl(lineTemplate % {'j':j, 'list':list})
407
408makeCommaSepLists('#define TINYFORMAT_ARGTYPES_%(j)d %(list)s',
409 'class T%(i)d')
410
411cog.outl()
412makeCommaSepLists('#define TINYFORMAT_VARARGS_%(j)d %(list)s',
413 'const T%(i)d& v%(i)d')
414
415cog.outl()
416makeCommaSepLists('#define TINYFORMAT_PASSARGS_%(j)d %(list)s', 'v%(i)d')
417
418cog.outl()
419cog.outl('#define TINYFORMAT_PASSARGS_TAIL_1')
420makeCommaSepLists('#define TINYFORMAT_PASSARGS_TAIL_%(j)d , %(list)s',
421 'v%(i)d', startInd = 2)
422
423cog.outl()
424cog.outl('#define TINYFORMAT_FOREACH_ARGNUM(m) \\\n ' +
425 ' '.join(['m(%d)' % (j,) for j in range(1,maxParams+1)]))
426]]]*/
427#define TINYFORMAT_ARGTYPES_1 class T1
428#define TINYFORMAT_ARGTYPES_2 class T1, class T2
429#define TINYFORMAT_ARGTYPES_3 class T1, class T2, class T3
430#define TINYFORMAT_ARGTYPES_4 class T1, class T2, class T3, class T4
431#define TINYFORMAT_ARGTYPES_5 class T1, class T2, class T3, class T4, class T5
432#define TINYFORMAT_ARGTYPES_6 class T1, class T2, class T3, class T4, class T5, class T6
433#define TINYFORMAT_ARGTYPES_7 class T1, class T2, class T3, class T4, class T5, class T6, class T7
434#define TINYFORMAT_ARGTYPES_8 class T1, class T2, class T3, class T4, class T5, class T6, class T7, class T8
435#define TINYFORMAT_ARGTYPES_9 class T1, class T2, class T3, class T4, class T5, class T6, class T7, class T8, class T9
436#define TINYFORMAT_ARGTYPES_10 class T1, class T2, class T3, class T4, class T5, class T6, class T7, class T8, class T9, class T10
437#define TINYFORMAT_ARGTYPES_11 class T1, class T2, class T3, class T4, class T5, class T6, class T7, class T8, class T9, class T10, class T11
438#define TINYFORMAT_ARGTYPES_12 class T1, class T2, class T3, class T4, class T5, class T6, class T7, class T8, class T9, class T10, class T11, class T12
439#define TINYFORMAT_ARGTYPES_13 class T1, class T2, class T3, class T4, class T5, class T6, class T7, class T8, class T9, class T10, class T11, class T12, class T13
440#define TINYFORMAT_ARGTYPES_14 class T1, class T2, class T3, class T4, class T5, class T6, class T7, class T8, class T9, class T10, class T11, class T12, class T13, class T14
441#define TINYFORMAT_ARGTYPES_15 class T1, class T2, class T3, class T4, class T5, class T6, class T7, class T8, class T9, class T10, class T11, class T12, class T13, class T14, class T15
442#define TINYFORMAT_ARGTYPES_16 class T1, class T2, class T3, class T4, class T5, class T6, class T7, class T8, class T9, class T10, class T11, class T12, class T13, class T14, class T15, class T16
443
444#define TINYFORMAT_VARARGS_1 const T1& v1
445#define TINYFORMAT_VARARGS_2 const T1& v1, const T2& v2
446#define TINYFORMAT_VARARGS_3 const T1& v1, const T2& v2, const T3& v3
447#define TINYFORMAT_VARARGS_4 const T1& v1, const T2& v2, const T3& v3, const T4& v4
448#define TINYFORMAT_VARARGS_5 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5
449#define TINYFORMAT_VARARGS_6 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6
450#define TINYFORMAT_VARARGS_7 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6, const T7& v7
451#define TINYFORMAT_VARARGS_8 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6, const T7& v7, const T8& v8
452#define TINYFORMAT_VARARGS_9 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6, const T7& v7, const T8& v8, const T9& v9
453#define TINYFORMAT_VARARGS_10 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6, const T7& v7, const T8& v8, const T9& v9, const T10& v10
454#define TINYFORMAT_VARARGS_11 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6, const T7& v7, const T8& v8, const T9& v9, const T10& v10, const T11& v11
455#define TINYFORMAT_VARARGS_12 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6, const T7& v7, const T8& v8, const T9& v9, const T10& v10, const T11& v11, const T12& v12
456#define TINYFORMAT_VARARGS_13 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6, const T7& v7, const T8& v8, const T9& v9, const T10& v10, const T11& v11, const T12& v12, const T13& v13
457#define TINYFORMAT_VARARGS_14 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6, const T7& v7, const T8& v8, const T9& v9, const T10& v10, const T11& v11, const T12& v12, const T13& v13, const T14& v14
458#define TINYFORMAT_VARARGS_15 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6, const T7& v7, const T8& v8, const T9& v9, const T10& v10, const T11& v11, const T12& v12, const T13& v13, const T14& v14, const T15& v15
459#define TINYFORMAT_VARARGS_16 const T1& v1, const T2& v2, const T3& v3, const T4& v4, const T5& v5, const T6& v6, const T7& v7, const T8& v8, const T9& v9, const T10& v10, const T11& v11, const T12& v12, const T13& v13, const T14& v14, const T15& v15, const T16& v16
460
461#define TINYFORMAT_PASSARGS_1 v1
462#define TINYFORMAT_PASSARGS_2 v1, v2
463#define TINYFORMAT_PASSARGS_3 v1, v2, v3
464#define TINYFORMAT_PASSARGS_4 v1, v2, v3, v4
465#define TINYFORMAT_PASSARGS_5 v1, v2, v3, v4, v5
466#define TINYFORMAT_PASSARGS_6 v1, v2, v3, v4, v5, v6
467#define TINYFORMAT_PASSARGS_7 v1, v2, v3, v4, v5, v6, v7
468#define TINYFORMAT_PASSARGS_8 v1, v2, v3, v4, v5, v6, v7, v8
469#define TINYFORMAT_PASSARGS_9 v1, v2, v3, v4, v5, v6, v7, v8, v9
470#define TINYFORMAT_PASSARGS_10 v1, v2, v3, v4, v5, v6, v7, v8, v9, v10
471#define TINYFORMAT_PASSARGS_11 v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11
472#define TINYFORMAT_PASSARGS_12 v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12
473#define TINYFORMAT_PASSARGS_13 v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13
474#define TINYFORMAT_PASSARGS_14 v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14
475#define TINYFORMAT_PASSARGS_15 v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15
476#define TINYFORMAT_PASSARGS_16 v1, v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16
477
478#define TINYFORMAT_PASSARGS_TAIL_1
479#define TINYFORMAT_PASSARGS_TAIL_2 , v2
480#define TINYFORMAT_PASSARGS_TAIL_3 , v2, v3
481#define TINYFORMAT_PASSARGS_TAIL_4 , v2, v3, v4
482#define TINYFORMAT_PASSARGS_TAIL_5 , v2, v3, v4, v5
483#define TINYFORMAT_PASSARGS_TAIL_6 , v2, v3, v4, v5, v6
484#define TINYFORMAT_PASSARGS_TAIL_7 , v2, v3, v4, v5, v6, v7
485#define TINYFORMAT_PASSARGS_TAIL_8 , v2, v3, v4, v5, v6, v7, v8
486#define TINYFORMAT_PASSARGS_TAIL_9 , v2, v3, v4, v5, v6, v7, v8, v9
487#define TINYFORMAT_PASSARGS_TAIL_10 , v2, v3, v4, v5, v6, v7, v8, v9, v10
488#define TINYFORMAT_PASSARGS_TAIL_11 , v2, v3, v4, v5, v6, v7, v8, v9, v10, v11
489#define TINYFORMAT_PASSARGS_TAIL_12 , v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12
490#define TINYFORMAT_PASSARGS_TAIL_13 , v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13
491#define TINYFORMAT_PASSARGS_TAIL_14 , v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14
492#define TINYFORMAT_PASSARGS_TAIL_15 , v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15
493#define TINYFORMAT_PASSARGS_TAIL_16 , v2, v3, v4, v5, v6, v7, v8, v9, v10, v11, v12, v13, v14, v15, v16
494
495#define TINYFORMAT_FOREACH_ARGNUM(m) \
496 m(1) m(2) m(3) m(4) m(5) m(6) m(7) m(8) m(9) m(10) m(11) m(12) m(13) m(14) m(15) m(16)
497//[[[end]]]
498
499
500
501namespace detail {
502
503// Type-opaque holder for an argument to format(), with associated actions on
504// the type held as explicit function pointers. This allows FormatArg's for
505// each argument to be allocated as a homogeneous array inside FormatList
506// whereas a naive implementation based on inheritance does not.
508{
509 public:
510 FormatArg() = default;
511
512 template<typename T>
513 explicit FormatArg(const T& value)
514 : m_value(static_cast<const void*>(&value)),
517 { }
518
519 void format(std::ostream& out, const char* fmtBegin,
520 const char* fmtEnd, int ntrunc) const
521 {
524 m_formatImpl(out, fmtBegin, fmtEnd, ntrunc, m_value);
525 }
526
527 int toInt() const
528 {
531 return m_toIntImpl(m_value);
532 }
533
534 private:
535 template<typename T>
536 TINYFORMAT_HIDDEN static void formatImpl(std::ostream& out, const char* fmtBegin,
537 const char* fmtEnd, int ntrunc, const void* value)
538 {
539 formatValue(out, fmtBegin, fmtEnd, ntrunc, *static_cast<const T*>(value));
540 }
541
542 template<typename T>
543 TINYFORMAT_HIDDEN static int toIntImpl(const void* value)
544 {
545 return convertToInt<T>::invoke(*static_cast<const T*>(value));
546 }
547
548 const void* m_value{nullptr};
549 void (*m_formatImpl)(std::ostream& out, const char* fmtBegin,
550 const char* fmtEnd, int ntrunc, const void* value){nullptr};
551 int (*m_toIntImpl)(const void* value){nullptr};
552};
553
554
555// Parse and return an integer from the string c, as atoi()
556// On return, c is set to one past the end of the integer.
557inline int parseIntAndAdvance(const char*& c)
558{
559 int i = 0;
560 for (;*c >= '0' && *c <= '9'; ++c)
561 i = 10*i + (*c - '0');
562 return i;
563}
564
565// Parse width or precision `n` from format string pointer `c`, and advance it
566// to the next character. If an indirection is requested with `*`, the argument
567// is read from `args[argIndex]` and `argIndex` is incremented (or read
568// from `args[n]` in positional mode). Returns true if one or more
569// characters were read.
570inline bool parseWidthOrPrecision(int& n, const char*& c, bool positionalMode,
571 const detail::FormatArg* args,
572 int& argIndex, int numArgs)
573{
574 if (*c >= '0' && *c <= '9') {
575 n = parseIntAndAdvance(c);
576 }
577 else if (*c == '*') {
578 ++c;
579 n = 0;
580 if (positionalMode) {
581 int pos = parseIntAndAdvance(c) - 1;
582 if (*c != '$')
583 TINYFORMAT_ERROR("tinyformat: Non-positional argument used after a positional one");
584 if (pos >= 0 && pos < numArgs)
585 n = args[pos].toInt();
586 else
587 TINYFORMAT_ERROR("tinyformat: Positional argument out of range");
588 ++c;
589 }
590 else {
591 if (argIndex < numArgs)
592 n = args[argIndex++].toInt();
593 else
594 TINYFORMAT_ERROR("tinyformat: Not enough arguments to read variable width or precision");
595 }
596 }
597 else {
598 return false;
599 }
600 return true;
601}
602
603// Print literal part of format string and return next format spec position.
604//
605// Skips over any occurrences of '%%', printing a literal '%' to the output.
606// The position of the first % character of the next nontrivial format spec is
607// returned, or the end of string.
608inline const char* printFormatStringLiteral(std::ostream& out, const char* fmt)
609{
610 const char* c = fmt;
611 for (;; ++c) {
612 if (*c == '\0') {
613 out.write(fmt, c - fmt);
614 return c;
615 }
616 else if (*c == '%') {
617 out.write(fmt, c - fmt);
618 if (*(c+1) != '%')
619 return c;
620 // for "%%", tack trailing % onto next literal section.
621 fmt = ++c;
622 }
623 }
624}
625
626
627// Parse a format string and set the stream state accordingly.
628//
629// The format mini-language recognized here is meant to be the one from C99,
630// with the form "%[flags][width][.precision][length]type" with POSIX
631// positional arguments extension.
632//
633// POSIX positional arguments extension:
634// Conversions can be applied to the nth argument after the format in
635// the argument list, rather than to the next unused argument. In this case,
636// the conversion specifier character % (see below) is replaced by the sequence
637// "%n$", where n is a decimal integer in the range [1,{NL_ARGMAX}],
638// giving the position of the argument in the argument list. This feature
639// provides for the definition of format strings that select arguments
640// in an order appropriate to specific languages.
641//
642// The format can contain either numbered argument conversion specifications
643// (that is, "%n$" and "*m$"), or unnumbered argument conversion specifications
644// (that is, % and * ), but not both. The only exception to this is that %%
645// can be mixed with the "%n$" form. The results of mixing numbered and
646// unnumbered argument specifications in a format string are undefined.
647// When numbered argument specifications are used, specifying the Nth argument
648// requires that all the leading arguments, from the first to the (N-1)th,
649// are specified in the format string.
650//
651// In format strings containing the "%n$" form of conversion specification,
652// numbered arguments in the argument list can be referenced from the format
653// string as many times as required.
654//
655// Formatting options which can't be natively represented using the ostream
656// state are returned in spacePadPositive (for space padded positive numbers)
657// and ntrunc (for truncating conversions). argIndex is incremented if
658// necessary to pull out variable width and precision. The function returns a
659// pointer to the character after the end of the current format spec.
660inline const char* streamStateFromFormat(std::ostream& out, bool& positionalMode,
661 bool& spacePadPositive,
662 int& ntrunc, const char* fmtStart,
663 const detail::FormatArg* args,
664 int& argIndex, int numArgs)
665{
666 TINYFORMAT_ASSERT(*fmtStart == '%');
667 // Reset stream state to defaults.
668 out.width(0);
669 out.precision(6);
670 out.fill(' ');
671 // Reset most flags; ignore irrelevant unitbuf & skipws.
672 out.unsetf(std::ios::adjustfield | std::ios::basefield |
673 std::ios::floatfield | std::ios::showbase | std::ios::boolalpha |
674 std::ios::showpoint | std::ios::showpos | std::ios::uppercase);
675 bool precisionSet = false;
676 bool widthSet = false;
677 int widthExtra = 0;
678 const char* c = fmtStart + 1;
679
680 // 1) Parse an argument index (if followed by '$') or a width possibly
681 // preceded with '0' flag.
682 if (*c >= '0' && *c <= '9') {
683 const char tmpc = *c;
684 int value = parseIntAndAdvance(c);
685 if (*c == '$') {
686 // value is an argument index
687 if (value > 0 && value <= numArgs)
688 argIndex = value - 1;
689 else
690 TINYFORMAT_ERROR("tinyformat: Positional argument out of range");
691 ++c;
692 positionalMode = true;
693 }
694 else if (positionalMode) {
695 TINYFORMAT_ERROR("tinyformat: Non-positional argument used after a positional one");
696 }
697 else {
698 if (tmpc == '0') {
699 // Use internal padding so that numeric values are
700 // formatted correctly, eg -00010 rather than 000-10
701 out.fill('0');
702 out.setf(std::ios::internal, std::ios::adjustfield);
703 }
704 if (value != 0) {
705 // Nonzero value means that we parsed width.
706 widthSet = true;
707 out.width(value);
708 }
709 }
710 }
711 else if (positionalMode) {
712 TINYFORMAT_ERROR("tinyformat: Non-positional argument used after a positional one");
713 }
714 // 2) Parse flags and width if we did not do it in previous step.
715 if (!widthSet) {
716 // Parse flags
717 for (;; ++c) {
718 switch (*c) {
719 case '#':
720 out.setf(std::ios::showpoint | std::ios::showbase);
721 continue;
722 case '0':
723 // overridden by left alignment ('-' flag)
724 if (!(out.flags() & std::ios::left)) {
725 // Use internal padding so that numeric values are
726 // formatted correctly, eg -00010 rather than 000-10
727 out.fill('0');
728 out.setf(std::ios::internal, std::ios::adjustfield);
729 }
730 continue;
731 case '-':
732 out.fill(' ');
733 out.setf(std::ios::left, std::ios::adjustfield);
734 continue;
735 case ' ':
736 // overridden by show positive sign, '+' flag.
737 if (!(out.flags() & std::ios::showpos))
738 spacePadPositive = true;
739 continue;
740 case '+':
741 out.setf(std::ios::showpos);
742 spacePadPositive = false;
743 widthExtra = 1;
744 continue;
745 default:
746 break;
747 }
748 break;
749 }
750 // Parse width
751 int width = 0;
752 widthSet = parseWidthOrPrecision(width, c, positionalMode,
753 args, argIndex, numArgs);
754 if (widthSet) {
755 if (width < 0) {
756 // negative widths correspond to '-' flag set
757 out.fill(' ');
758 out.setf(std::ios::left, std::ios::adjustfield);
759 width = -width;
760 }
761 out.width(width);
762 }
763 }
764 // 3) Parse precision
765 if (*c == '.') {
766 ++c;
767 int precision = 0;
768 parseWidthOrPrecision(precision, c, positionalMode,
769 args, argIndex, numArgs);
770 // Presence of `.` indicates precision set, unless the inferred value
771 // was negative in which case the default is used.
772 precisionSet = precision >= 0;
773 if (precisionSet)
774 out.precision(precision);
775 }
776 // 4) Ignore any C99 length modifier
777 while (*c == 'l' || *c == 'h' || *c == 'L' ||
778 *c == 'j' || *c == 'z' || *c == 't') {
779 ++c;
780 }
781 // 5) We're up to the conversion specifier character.
782 // Set stream flags based on conversion specifier (thanks to the
783 // boost::format class for forging the way here).
784 bool intConversion = false;
785 switch (*c) {
786 case 'u': case 'd': case 'i':
787 out.setf(std::ios::dec, std::ios::basefield);
788 intConversion = true;
789 break;
790 case 'o':
791 out.setf(std::ios::oct, std::ios::basefield);
792 intConversion = true;
793 break;
794 case 'X':
795 out.setf(std::ios::uppercase);
796 [[fallthrough]];
797 case 'x': case 'p':
798 out.setf(std::ios::hex, std::ios::basefield);
799 intConversion = true;
800 break;
801 case 'E':
802 out.setf(std::ios::uppercase);
803 [[fallthrough]];
804 case 'e':
805 out.setf(std::ios::scientific, std::ios::floatfield);
806 out.setf(std::ios::dec, std::ios::basefield);
807 break;
808 case 'F':
809 out.setf(std::ios::uppercase);
810 [[fallthrough]];
811 case 'f':
812 out.setf(std::ios::fixed, std::ios::floatfield);
813 break;
814 case 'A':
815 out.setf(std::ios::uppercase);
816 [[fallthrough]];
817 case 'a':
818# ifdef _MSC_VER
819 // Workaround https://developercommunity.visualstudio.com/content/problem/520472/hexfloat-stream-output-does-not-ignore-precision-a.html
820 // by always setting maximum precision on MSVC to avoid precision
821 // loss for doubles.
822 out.precision(13);
823# endif
824 out.setf(std::ios::fixed | std::ios::scientific, std::ios::floatfield);
825 break;
826 case 'G':
827 out.setf(std::ios::uppercase);
828 [[fallthrough]];
829 case 'g':
830 out.setf(std::ios::dec, std::ios::basefield);
831 // As in boost::format, let stream decide float format.
832 out.flags(out.flags() & ~std::ios::floatfield);
833 break;
834 case 'c':
835 // Handled as special case inside formatValue()
836 break;
837 case 's':
838 if (precisionSet)
839 ntrunc = static_cast<int>(out.precision());
840 // Make %s print Booleans as "true" and "false"
841 out.setf(std::ios::boolalpha);
842 break;
843 case 'n':
844 // Not supported - will cause problems!
845 TINYFORMAT_ERROR("tinyformat: %n conversion spec not supported");
846 break;
847 case '\0':
848 TINYFORMAT_ERROR("tinyformat: Conversion spec incorrectly "
849 "terminated by end of string");
850 return c;
851 default:
852 break;
853 }
854 if (intConversion && precisionSet && !widthSet) {
855 // "precision" for integers gives the minimum number of digits (to be
856 // padded with zeros on the left). This isn't really supported by the
857 // iostreams, but we can approximately simulate it with the width if
858 // the width isn't otherwise used.
859 out.width(out.precision() + widthExtra);
860 out.setf(std::ios::internal, std::ios::adjustfield);
861 out.fill('0');
862 }
863 return c+1;
864}
865
866
867//------------------------------------------------------------------------------
868inline void formatImpl(std::ostream& out, const char* fmt,
869 const detail::FormatArg* args,
870 int numArgs)
871{
872 // Saved stream state
873 std::streamsize origWidth = out.width();
874 std::streamsize origPrecision = out.precision();
875 std::ios::fmtflags origFlags = out.flags();
876 char origFill = out.fill();
877
878 // "Positional mode" means all format specs should be of the form "%n$..."
879 // with `n` an integer. We detect this in `streamStateFromFormat`.
880 bool positionalMode = false;
881 int argIndex = 0;
882 while (true) {
883 fmt = printFormatStringLiteral(out, fmt);
884 if (*fmt == '\0') {
885 if (!positionalMode && argIndex < numArgs) {
886 TINYFORMAT_ERROR("tinyformat: Not enough conversion specifiers in format string");
887 }
888 break;
889 }
890 bool spacePadPositive = false;
891 int ntrunc = -1;
892 const char* fmtEnd = streamStateFromFormat(out, positionalMode, spacePadPositive, ntrunc, fmt,
893 args, argIndex, numArgs);
894 // NB: argIndex may be incremented by reading variable width/precision
895 // in `streamStateFromFormat`, so do the bounds check here.
896 if (argIndex >= numArgs) {
897 TINYFORMAT_ERROR("tinyformat: Too many conversion specifiers in format string");
898 return;
899 }
900 const FormatArg& arg = args[argIndex];
901 // Format the arg into the stream.
902 if (!spacePadPositive) {
903 arg.format(out, fmt, fmtEnd, ntrunc);
904 }
905 else {
906 // The following is a special case with no direct correspondence
907 // between stream formatting and the printf() behaviour. Simulate
908 // it crudely by formatting into a temporary string stream and
909 // munging the resulting string.
910 std::ostringstream tmpStream;
911 tmpStream.copyfmt(out);
912 tmpStream.setf(std::ios::showpos);
913 arg.format(tmpStream, fmt, fmtEnd, ntrunc);
914 std::string result = tmpStream.str(); // allocates... yuck.
915 for (size_t i = 0, iend = result.size(); i < iend; ++i) {
916 if (result[i] == '+')
917 result[i] = ' ';
918 }
919 out << result;
920 }
921 if (!positionalMode)
922 ++argIndex;
923 fmt = fmtEnd;
924 }
925
926 // Restore stream state
927 out.width(origWidth);
928 out.precision(origPrecision);
929 out.flags(origFlags);
930 out.fill(origFill);
931}
932
933} // namespace detail
934
935
943{
944 public:
947
948 friend void vformat(std::ostream& out, const char* fmt,
949 const FormatList& list);
950
951 private:
953 int m_N;
954};
955
958
959
960namespace detail {
961
962// Format list subclass with fixed storage to avoid dynamic allocation
963template<int N>
965{
966 public:
967#ifdef TINYFORMAT_USE_VARIADIC_TEMPLATES
968 template<typename... Args>
969 explicit FormatListN(const Args&... args)
972 { static_assert(sizeof...(args) == N, "Number of args must be N"); }
973#else // C++98 version
974 void init(int) {}
975# define TINYFORMAT_MAKE_FORMATLIST_CONSTRUCTOR(n) \
976 \
977 template<TINYFORMAT_ARGTYPES(n)> \
978 FormatListN(TINYFORMAT_VARARGS(n)) \
979 : FormatList(&m_formatterStore[0], n) \
980 { TINYFORMAT_ASSERT(n == N); init(0, TINYFORMAT_PASSARGS(n)); } \
981 \
982 template<TINYFORMAT_ARGTYPES(n)> \
983 void init(int i, TINYFORMAT_VARARGS(n)) \
984 { \
985 m_formatterStore[i] = FormatArg(v1); \
986 init(i+1 TINYFORMAT_PASSARGS_TAIL(n)); \
987 }
988
989 TINYFORMAT_FOREACH_ARGNUM(TINYFORMAT_MAKE_FORMATLIST_CONSTRUCTOR)
990# undef TINYFORMAT_MAKE_FORMATLIST_CONSTRUCTOR
991#endif
994 { std::copy(&other.m_formatterStore[0], &other.m_formatterStore[N],
995 &m_formatterStore[0]); }
996
997 private:
999};
1000
1001// Special 0-arg version - MSVC says zero-sized C array in struct is nonstandard
1002template<> class FormatListN<0> : public FormatList
1003{
1004public:
1005 FormatListN() : FormatList(nullptr, 0) {}
1006};
1007
1008} // namespace detail
1009
1010
1011//------------------------------------------------------------------------------
1012// Primary API functions
1013
1014#ifdef TINYFORMAT_USE_VARIADIC_TEMPLATES
1015
1022template<typename... Args>
1023detail::FormatListN<sizeof...(Args)> makeFormatList(const Args&... args)
1024{
1025 return detail::FormatListN<sizeof...(args)>(args...);
1026}
1027
1028#else // C++98 version
1029
1030inline detail::FormatListN<0> makeFormatList()
1031{
1032 return detail::FormatListN<0>();
1033}
1034#define TINYFORMAT_MAKE_MAKEFORMATLIST(n) \
1035template<TINYFORMAT_ARGTYPES(n)> \
1036detail::FormatListN<n> makeFormatList(TINYFORMAT_VARARGS(n)) \
1037{ \
1038 return detail::FormatListN<n>(TINYFORMAT_PASSARGS(n)); \
1039}
1040TINYFORMAT_FOREACH_ARGNUM(TINYFORMAT_MAKE_MAKEFORMATLIST)
1041#undef TINYFORMAT_MAKE_MAKEFORMATLIST
1042
1043#endif
1044
1049inline void vformat(std::ostream& out, const char* fmt, FormatListRef list)
1050{
1051 detail::formatImpl(out, fmt, list.m_args, list.m_N);
1052}
1053
1054
1055#ifdef TINYFORMAT_USE_VARIADIC_TEMPLATES
1056
1058template<typename... Args>
1059void format(std::ostream& out, const char* fmt, const Args&... args)
1060{
1061 vformat(out, fmt, makeFormatList(args...));
1062}
1063
1066template<typename... Args>
1067std::string format(const char* fmt, const Args&... args)
1068{
1069 std::ostringstream oss;
1070 format(oss, fmt, args...);
1071 return oss.str();
1072}
1073
1075template<typename... Args>
1076void printf(const char* fmt, const Args&... args)
1077{
1078 format(std::cout, fmt, args...);
1079}
1080
1081template<typename... Args>
1082void printfln(const char* fmt, const Args&... args)
1083{
1084 format(std::cout, fmt, args...);
1085 std::cout << '\n';
1086}
1087
1088
1089#else // C++98 version
1090
1091inline void format(std::ostream& out, const char* fmt)
1092{
1093 vformat(out, fmt, makeFormatList());
1094}
1095
1096inline std::string format(const char* fmt)
1097{
1098 std::ostringstream oss;
1099 format(oss, fmt);
1100 return oss.str();
1101}
1102
1103inline void printf(const char* fmt)
1104{
1105 format(std::cout, fmt);
1106}
1107
1108inline void printfln(const char* fmt)
1109{
1110 format(std::cout, fmt);
1111 std::cout << '\n';
1112}
1113
1114#define TINYFORMAT_MAKE_FORMAT_FUNCS(n) \
1115 \
1116template<TINYFORMAT_ARGTYPES(n)> \
1117void format(std::ostream& out, const char* fmt, TINYFORMAT_VARARGS(n)) \
1118{ \
1119 vformat(out, fmt, makeFormatList(TINYFORMAT_PASSARGS(n))); \
1120} \
1121 \
1122template<TINYFORMAT_ARGTYPES(n)> \
1123std::string format(const char* fmt, TINYFORMAT_VARARGS(n)) \
1124{ \
1125 std::ostringstream oss; \
1126 format(oss, fmt, TINYFORMAT_PASSARGS(n)); \
1127 return oss.str(); \
1128} \
1129 \
1130template<TINYFORMAT_ARGTYPES(n)> \
1131void printf(const char* fmt, TINYFORMAT_VARARGS(n)) \
1132{ \
1133 format(std::cout, fmt, TINYFORMAT_PASSARGS(n)); \
1134} \
1135 \
1136template<TINYFORMAT_ARGTYPES(n)> \
1137void printfln(const char* fmt, TINYFORMAT_VARARGS(n)) \
1138{ \
1139 format(std::cout, fmt, TINYFORMAT_PASSARGS(n)); \
1140 std::cout << '\n'; \
1141}
1142
1143TINYFORMAT_FOREACH_ARGNUM(TINYFORMAT_MAKE_FORMAT_FUNCS)
1144#undef TINYFORMAT_MAKE_FORMAT_FUNCS
1145
1146#endif
1147
1148// Added for Bitcoin Core
1149template<typename... Args>
1150std::string format(const std::string &fmt, const Args&... args)
1151{
1152 std::ostringstream oss;
1153 format(oss, fmt.c_str(), args...);
1154 return oss.str();
1155}
1156
1157} // namespace tinyformat
1158
1159// Added for Bitcoin Core:
1161#define strprintf tfm::format
1162
1163#endif // TINYFORMAT_H_INCLUDED
ArgsManager & args
Definition bitcoind.cpp:270
List of template arguments format(), held in a type-opaque way.
Definition tinyformat.h:943
friend void vformat(std::ostream &out, const char *fmt, const FormatList &list)
FormatList(detail::FormatArg *args, int N)
Definition tinyformat.h:945
const detail::FormatArg * m_args
Definition tinyformat.h:952
static TINYFORMAT_HIDDEN void formatImpl(std::ostream &out, const char *fmtBegin, const char *fmtEnd, int ntrunc, const void *value)
Definition tinyformat.h:536
void(* m_formatImpl)(std::ostream &out, const char *fmtBegin, const char *fmtEnd, int ntrunc, const void *value)
Definition tinyformat.h:549
static TINYFORMAT_HIDDEN int toIntImpl(const void *value)
Definition tinyformat.h:543
int(* m_toIntImpl)(const void *value)
Definition tinyformat.h:551
void format(std::ostream &out, const char *fmtBegin, const char *fmtEnd, int ntrunc) const
Definition tinyformat.h:519
FormatListN(const Args &... args)
Definition tinyformat.h:969
FormatListN(const FormatListN &other)
Definition tinyformat.h:992
format_error(const std::string &what)
Definition tinyformat.h:185
#define T(expected, seed, data)
void formatTruncated(std::ostream &out, const T &value, int ntrunc)
Definition tinyformat.h:288
const char * printFormatStringLiteral(std::ostream &out, const char *fmt)
Definition tinyformat.h:608
int parseIntAndAdvance(const char *&c)
Definition tinyformat.h:557
void formatImpl(std::ostream &out, const char *fmt, const detail::FormatArg *args, int numArgs)
Definition tinyformat.h:868
const char * streamStateFromFormat(std::ostream &out, bool &positionalMode, bool &spacePadPositive, int &ntrunc, const char *fmtStart, const detail::FormatArg *args, int &argIndex, int numArgs)
Definition tinyformat.h:660
bool parseWidthOrPrecision(int &n, const char *&c, bool positionalMode, const detail::FormatArg *args, int &argIndex, int numArgs)
Definition tinyformat.h:570
void format(std::ostream &out, const char *fmt, const Args &... args)
Format list of arguments to the stream according to given format string.
void printfln(const char *fmt, const Args &... args)
void printf(const char *fmt, const Args &... args)
Format list of arguments to std::cout, according to the given format string.
void vformat(std::ostream &out, const char *fmt, FormatListRef list)
Format list of arguments to the stream according to the given format string.
void formatValue(std::ostream &out, const char *, const char *fmtEnd, int ntrunc, const T &value)
Format a value into a stream, delegating to operator<< by default.
Definition tinyformat.h:329
detail::FormatListN< sizeof...(Args)> makeFormatList(const Args &... args)
Make type-agnostic format list from list of template arguments.
const FormatList & FormatListRef
Reference to type-opaque format list for passing to vformat()
Definition tinyformat.h:957
static int invoke(const T &)
Definition tinyformat.h:272
static void invoke(std::ostream &out, const T &value)
Definition tinyformat.h:243
static void invoke(std::ostream &, const T &)
Definition tinyformat.h:236
static succeed tryConvert(const T2 &)
#define TINYFORMAT_HIDDEN
Definition tinyformat.h:176
#define TINYFORMAT_DEFINE_FORMAT_TRUNCATED_CSTR(type)
Definition tinyformat.h:295
#define TINYFORMAT_ASSERT(cond)
Definition tinyformat.h:151
#define TINYFORMAT_ERROR(reasonString)
Definition tinyformat.h:135
#define TINYFORMAT_DEFINE_FORMATVALUE_CHAR(charType)
Definition tinyformat.h:363
#define TINYFORMAT_FOREACH_ARGNUM(m)
Definition tinyformat.h:495