Files
SystemSimulationApp/native/runtime/json_numbers.c
T

89 lines
3.4 KiB
C

#include "json_numbers.h"
#include "ryu/ryu.h"
#include <float.h>
#include <stdint.h>
#include <string.h>
_Static_assert(sizeof(double)==8 && DBL_MANT_DIG==53 && DBL_MAX_EXP==1024,
"Native JSON numbers require IEEE-754 binary64");
int native_json_format_double(char output[NATIVE_JSON_DOUBLE_CAPACITY], double value) {
uint64_t bits;
memcpy(&bits,&value,sizeof(bits));
uint64_t magnitude=bits & UINT64_C(0x7fffffffffffffff);
if (magnitude>=UINT64_C(0x7ff0000000000000)) return 0;
if (magnitude==0) {
if (bits>>63) { memcpy(output,"-0.0",4); return 4; }
output[0]='0'; return 1;
}
int length=d2s_buffered_n(value,output);
/* Ryu returns shortest significant digits in scientific notation. Use
ordinary notation only when its JSON token is shorter. This moves an
exact decimal point; it never recomputes or rounds the floating value. */
char digits[17];
int negative=output[0]=='-', count=0, pos=negative;
while (output[pos]!='E') {
if (output[pos]!='.') digits[count++]=output[pos];
pos++;
}
pos++;
int exponent_negative=output[pos]=='-';
if (exponent_negative) pos++;
int exponent=0;
while (pos<length) exponent=exponent*10+(output[pos++]-'0');
if (exponent_negative) exponent=-exponent;
int point=exponent+1;
int fixed_length=negative+(point<=0 ? 2-point+count : point>=count ? point : count+1);
if (fixed_length>=length) return length;
pos=0;
if (negative) output[pos++]='-';
if (point<=0) {
output[pos++]='0'; output[pos++]='.';
for (int i=0;i<-point;i++) output[pos++]='0';
memcpy(output+pos,digits,(size_t)count); pos+=count;
} else {
for (int i=0;i<count;i++) {
if (i==point) output[pos++]='.';
output[pos++]=digits[i];
}
for (int i=count;i<point;i++) output[pos++]='0';
}
return pos;
}
static int write_bytes(FILE *file, const char *data, size_t length) {
return fwrite(data,1,length,file)==length && !ferror(file);
}
int native_json_write_number(FILE *file, double value) {
if (!file || ferror(file)) return 0;
char text[NATIVE_JSON_DOUBLE_CAPACITY];
int length=native_json_format_double(text,value);
return length>0 && write_bytes(file,text,(size_t)length);
}
int native_json_write_values(FILE *file, const double *values, size_t count, size_t stride, int leading_comma) {
if (!file || ferror(file) || (count && !values)) return 0;
if (count>1 && (!stride || stride>(size_t)PTRDIFF_MAX/sizeof(double)/(count-1))) return 0;
char buffer[65536];
size_t used=0;
for (size_t i=0;i<count;i++) {
if (used>sizeof(buffer)-NATIVE_JSON_DOUBLE_CAPACITY-2) {
if (!write_bytes(file,buffer,used)) return 0;
used=0;
}
if (i || leading_comma) buffer[used++]=',';
int length=native_json_format_double(buffer+used,values[i*stride]);
if (!length) return 0;
used+=(size_t)length;
}
return write_bytes(file,buffer,used);
}
int native_json_write_array(FILE *file, const double *values, size_t count, size_t stride) {
if (!file || ferror(file) || (count && !values)) return 0;
if (count>1 && (!stride || stride>(size_t)PTRDIFF_MAX/sizeof(double)/(count-1))) return 0;
if (fputc('[',file)==EOF) return 0;
return native_json_write_values(file,values,count,stride,0) && fputc(']',file)!=EOF;
}