// SPDX-License-Identifier: GPL-3.0-or-later #ifndef NETDATA_STORAGE_NUMBER_H #define NETDATA_STORAGE_NUMBER_H 1 #include "../libnetdata.h" #ifdef NETDATA_WITHOUT_LONG_DOUBLE #define powl pow #define modfl modf #define llrintl llrint #define roundl round #define sqrtl sqrt #define copysignl copysign #define strtold strtod typedef double calculated_number; #define CALCULATED_NUMBER_FORMAT "%0.7f" #define CALCULATED_NUMBER_FORMAT_ZERO "%0.0f" #define CALCULATED_NUMBER_FORMAT_AUTO "%f" #define LONG_DOUBLE_MODIFIER "f" typedef double LONG_DOUBLE; #else // NETDATA_WITHOUT_LONG_DOUBLE typedef long double calculated_number; #define CALCULATED_NUMBER_FORMAT "%0.7Lf" #define CALCULATED_NUMBER_FORMAT_ZERO "%0.0Lf" #define CALCULATED_NUMBER_FORMAT_AUTO "%Lf" #define LONG_DOUBLE_MODIFIER "Lf" typedef long double LONG_DOUBLE; #endif // NETDATA_WITHOUT_LONG_DOUBLE //typedef long long calculated_number; //#define CALCULATED_NUMBER_FORMAT "%lld" typedef long long collected_number; #define COLLECTED_NUMBER_FORMAT "%lld" /* typedef long double collected_number; #define COLLECTED_NUMBER_FORMAT "%0.7Lf" */ #define calculated_number_modf(x, y) modfl(x, y) #define calculated_number_llrint(x) llrintl(x) #define calculated_number_round(x) roundl(x) #define calculated_number_fabs(x) fabsl(x) #define calculated_number_pow(x, y) powl(x, y) #define calculated_number_epsilon (calculated_number)0.0000001 #define calculated_number_equal(a, b) (calculated_number_fabs((a) - (b)) < calculated_number_epsilon) #define calculated_number_isnumber(a) (!(fpclassify(a) & (FP_NAN|FP_INFINITE))) typedef uint32_t storage_number; #define STORAGE_NUMBER_FORMAT "%u" #define SN_EXISTS (1 << 24) // the value exists #define SN_EXISTS_RESET (1 << 25) // the value has been overflown #define SN_EXISTS_100 (1 << 26) // very large value (multipler is 100 instead of 10) // extract the flags #define get_storage_number_flags(value) ((((storage_number)(value)) & (1 << 24)) | (((storage_number)(value)) & (1 << 25)) | (((storage_number)(value)) & (1 << 26))) #define SN_EMPTY_SLOT 0x00000000 // checks #define does_storage_number_exist(value) ((get_storage_number_flags(value) != 0)?1:0) #define did_storage_number_reset(value) ((get_storage_number_flags(value) == SN_EXISTS_RESET)?1:0) storage_number pack_storage_number(calculated_number value, uint32_t flags); calculated_number unpack_storage_number(storage_number value); int print_calculated_number(char *str, calculated_number value); // sign div/mul <--- multiplier / divider ---> 10/100 RESET EXISTS VALUE #define STORAGE_NUMBER_POSITIVE_MAX_RAW (storage_number)( (0 << 31) | (1 << 30) | (1 << 29) | (1 << 28) | (1<<27) | (1 << 26) | (0 << 25) | (1 << 24) | 0x00ffffff ) #define STORAGE_NUMBER_POSITIVE_MIN_RAW (storage_number)( (0 << 31) | (0 << 30) | (1 << 29) | (1 << 28) | (1<<27) | (0 << 26) | (0 << 25) | (1 << 24) | 0x00000001 ) #define STORAGE_NUMBER_NEGATIVE_MAX_RAW (storage_number)( (1 << 31) | (0 << 30) | (1 << 29) | (1 << 28) | (1<<27) | (0 << 26) | (0 << 25) | (1 << 24) | 0x00000001 ) #define STORAGE_NUMBER_NEGATIVE_MIN_RAW (storage_number)( (1 << 31) | (1 << 30) | (1 << 29) | (1 << 28) | (1<<27) | (1 << 26) | (0 << 25) | (1 << 24) | 0x00ffffff ) // accepted accuracy loss #define ACCURACY_LOSS_ACCEPTED_PERCENT 0.0001 #define accuracy_loss(t1, t2) (((t1) == (t2) || (t1) == 0.0 || (t2) == 0.0) ? 0.0 : (100.0 - (((t1) > (t2)) ? ((t2) * 100.0 / (t1) ) : ((t1) * 100.0 / (t2))))) // Maximum acceptable rate of increase for counters. With a rate of 10% netdata can safely detect overflows with a // period of at least every other 10 samples. #define MAX_INCREMENTAL_PERCENT_RATE 10 #endif /* NETDATA_STORAGE_NUMBER_H */