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The call printf ("%3d", 1234) outputs 1234 which is 4 characters long since that is the minimum width for that value even though the width specified is 3. If the width field is omitted, the output is the minimum number of characters for the value. If the field is specified as *, then the width value is read from the list of values in the call. [18]
C and C++ perform such promotion for objects of Boolean, character, wide character, enumeration, and short integer types which are promoted to int, and for objects of type float, which are promoted to double. Unlike some other type conversions, promotions never lose precision or modify the value stored in the object. In Java:
The <inttypes.h> header (cinttypes in C++) provides features that enhance the functionality of the types defined in the <stdint.h> header. It defines macros for printf format string and scanf format string specifiers corresponding to the types defined in <stdint.h> and several functions for working with the intmax_t and uintmax_t types.
C-like languages feature two versions (pre- and post-) of each operator with slightly different semantics. In languages syntactically derived from B (including C and its various derivatives), the increment operator is written as ++ and the decrement operator is written as --. Several other languages use inc(x) and dec(x) functions.
In the C programming language, an ellipsis is used to represent a variable number of parameters to a function. For example: int printf (const char * format,...); [4] The above function in C could then be called with different types and numbers of parameters such as: printf ("numbers %i %i %i", 5, 10, 15); and printf ("input string %s, %f ...
printf(string format, items-to-format) It can take one or more arguments, where the first argument is a string to be written. This string can contain special formatting codes which are replaced by items from the remainder of the arguments. For example, an integer can be printed using the "%d" formatting code, e.g.: printf("%d", 42);
Thus, calling f x, where f:: a-> b-> c, yields a new function f2:: b-> c that can be called f2 b to produce c. The actual type specifications can consist of an actual type, such as Integer, or a general type variable that is used in parametric polymorphic functions, such as a, or b, or anyType. So we can write something like: functionName:: a ...
Since the C99 standard, C supports escape sequences that denote Unicode code points, called universal character names. They have the form \u hhhh or \U hhhhhhhh , where h stands for a hex digit. Unlike other escape sequences, a universal character name may expand into more than one code unit.