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Rev 276 | Rev 323 | ||
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Line 70... | Line 70... | ||
70 | intval2=fmath_fint(fmath_get_decimal_exponent(num),&intval); |
70 | intval2=fmath_fint(fmath_get_decimal_exponent(num),&intval); |
71 | exponent=intval; |
71 | exponent=intval; |
72 | if ((intval2<0.0)) exponent--; |
72 | if ((intval2<0.0)) exponent--; |
73 | num = num / ((fmath_dpow(10.0,exponent))); |
73 | num = num / ((fmath_dpow(10.0,exponent))); |
74 | 74 | ||
75 | print_double(num,modifier+1,precision); //modifier+1 = E => F or e => f |
75 | print_double(num,modifier+1,precision); /* modifier+1 = E => F or e => f */ |
76 | putchar(modifier); |
76 | putchar(modifier); |
77 | if (exponent<0) { |
77 | if (exponent<0) { |
78 | putchar('-'); |
78 | putchar('-'); |
79 | exponent*=-1; |
79 | exponent*=-1; |
80 | } |
80 | } |
81 | print_number(exponent,10); |
81 | print_number(exponent,10); |
82 | return; |
82 | return; |
83 | } |
83 | } |
84 | 84 | ||
85 | //TODO: rounding constant - when we got fraction >= 0.5, we must increment last printed number |
85 | /* TODO: rounding constant - when we got fraction >= 0.5, we must increment last printed number */ |
86 | 86 | ||
- | 87 | /* |
|
87 | /* Here is problem with cumulative error while printing big double values -> we will divide |
88 | * Here is a problem with cumulative error while printing big double values -> we will divide |
88 | the number with a power of 10, print new number with better method for small numbers and then print decimal point at correct position */ |
89 | * the number with a power of 10, print new number with better method for small numbers and |
- | 90 | * then print decimal point at correct position. |
|
- | 91 | */ |
|
89 | 92 | ||
90 | fmath_fint(fmath_get_decimal_exponent(num),&intval); |
93 | fmath_fint(fmath_get_decimal_exponent(num),&intval); |
91 | 94 | ||
92 | exponent=(intval>0.0?intval:0); |
95 | exponent=(intval>0.0?intval:0); |
93 | 96 | ||
Line 133... | Line 136... | ||
133 | } |
136 | } |
134 | 137 | ||
135 | counter = (counter>=DEFAULT_DOUBLE_BUFFER_SIZE?DEFAULT_DOUBLE_BUFFER_SIZE:counter); |
138 | counter = (counter>=DEFAULT_DOUBLE_BUFFER_SIZE?DEFAULT_DOUBLE_BUFFER_SIZE:counter); |
136 | while (counter>0) { |
139 | while (counter>0) { |
137 | putchar(buf[--counter]); |
140 | putchar(buf[--counter]); |
138 | }; |
141 | } |
139 | return; |
142 | return; |
140 | } |
143 | } |
141 | 144 | ||
142 | /** Print NULL terminated string |
145 | /** Print NULL terminated string |
143 | * |
146 | * |
Line 234... | Line 237... | ||
234 | * digits). |
237 | * digits). |
235 | * x The next variant argument is treated as integer |
238 | * x The next variant argument is treated as integer |
236 | * and printed in standard hexadecimal format (only significant |
239 | * and printed in standard hexadecimal format (only significant |
237 | * digits). |
240 | * digits). |
238 | * X As with 'x', but '0x' is prefixed. |
241 | * X As with 'x', but '0x' is prefixed. |
- | 242 | * . The decimal number following period will be treated as precision |
|
- | 243 | * for printing floating point numbers. One of 'e', 'E', 'f' or 'F' |
|
- | 244 | * must follow. |
|
- | 245 | * e The next variant argument is treated as double precision float |
|
- | 246 | * and printed in exponent notation with only one digit before decimal point |
|
- | 247 | * in specified precision. The exponent sign is printed as 'e'. |
|
- | 248 | * E As with 'e', but the exponent sign is printed as 'E'. |
|
- | 249 | * f The next variant argument is treated as double precision float |
|
- | 250 | * and printed in decimal notation in specified precision. |
|
- | 251 | * F As with 'f'. |
|
239 | * |
252 | * |
240 | * All other characters from fmt except the formatting directives |
253 | * All other characters from fmt except the formatting directives |
241 | * are printed in verbatim. |
254 | * are printed in verbatim. |
242 | * |
255 | * |
243 | * @param fmt Formatting NULL terminated string. |
256 | * @param fmt Formatting NULL terminated string. |
Line 257... | Line 270... | ||
257 | spinlock_lock(&printflock); |
270 | spinlock_lock(&printflock); |
258 | 271 | ||
259 | while (c = fmt[i++]) { |
272 | while (c = fmt[i++]) { |
260 | switch (c) { |
273 | switch (c) { |
261 | 274 | ||
262 | - | ||
263 | - | ||
264 | /* control character */ |
275 | /* control character */ |
265 | case '%': |
276 | case '%': |
266 | - | ||
267 | precision = DEFAULT_DOUBLE_PRECISION; |
277 | precision = DEFAULT_DOUBLE_PRECISION; |
268 | if (fmt[i]=='.') { |
278 | if (fmt[i]=='.') { |
269 | precision=0; |
279 | precision=0; |
270 | c=fmt[++i]; |
280 | c=fmt[++i]; |
271 | while((c>='0')&&(c<='9')) { |
281 | while((c>='0')&&(c<='9')) { |
272 | precision = precision*10 + c - '0'; |
282 | precision = precision*10 + c - '0'; |
273 | c=fmt[++i]; |
283 | c=fmt[++i]; |
274 | } |
284 | } |
275 | - | ||
276 | } |
285 | } |
277 | 286 | ||
278 | switch (c = fmt[i++]) { |
287 | switch (c = fmt[i++]) { |
279 | 288 | ||
280 | /* percentile itself */ |
289 | /* percentile itself */ |
Line 326... | Line 335... | ||
326 | goto loop; |
335 | goto loop; |
327 | 336 | ||
328 | /* |
337 | /* |
329 | * Floating point conversions. |
338 | * Floating point conversions. |
330 | */ |
339 | */ |
331 | - | ||
332 | case 'F': |
340 | case 'F': |
333 | print_double(va_arg(ap, double),'F',precision); |
341 | print_double(va_arg(ap, double),'F',precision); |
334 | goto loop; |
342 | goto loop; |
335 | 343 | ||
336 | case 'f': |
344 | case 'f': |