Tue, 11 Mar 2003 20:01:42 +0100
trunk: changeset 51
minor glitch
0 | 1 | /* |
2 | * libtu/numparser2.h | |
3 | * | |
36 | 4 | * Copyright (c) Tuomo Valkonen 1999-2002. |
0 | 5 | * See the included file LICENSE for details. |
6 | */ | |
7 | ||
8 | #define MAX_MANTISSA 10 /* should be enough for our needs */ | |
9 | #define ULONG_SIZE (sizeof(ulong)*8) | |
10 | ||
11 | enum{ | |
12 | NPNUM_INT, | |
13 | NPNUM_FLOAT | |
14 | }; | |
15 | ||
3 | 16 | #ifdef NP_SIMPLE_IMPL |
17 | ||
18 | typedef struct _NPNum{ | |
19 | int type; | |
20 | int base; | |
21 | bool negative; | |
15 | 22 | double fval; |
3 | 23 | ulong ival; |
24 | } NPNum; | |
25 | ||
26 | #define NUM_INIT {0, 0, 0, 0.0, 0} | |
27 | ||
28 | static int npnum_mulbase_add(NPNum *num, long base, long v) | |
29 | { | |
15 | 30 | double iold=num->ival; |
3 | 31 | |
15 | 32 | num->fval=num->fval*base+(double)v; |
3 | 33 | |
34 | num->ival*=base; | |
35 | ||
36 | if(num->ival<iold) | |
37 | num->type=NPNUM_FLOAT; | |
38 | ||
39 | num->ival+=v; | |
40 | ||
41 | return 0; | |
42 | } | |
43 | ||
44 | #else /* NP_SIMPLE_IMPL */ | |
45 | ||
0 | 46 | typedef struct _NPNum{ |
47 | unsigned char nmantissa; | |
48 | int type; | |
49 | int base; | |
50 | bool negative; | |
51 | ulong mantissa[MAX_MANTISSA]; | |
52 | long exponent; | |
53 | } NPNum; | |
54 | ||
55 | #define NUM_INIT {0, 0, 0, 0, {0,}, 0} | |
56 | ||
57 | #define ADD_EXP(NUM, X) (NUM)->exponent+=(X); | |
58 | ||
3 | 59 | #if defined(__GNUG__) && defined(i386) && !defined(NP_NO_I386_ASM) |
60 | #define NP_I386_ASM | |
0 | 61 | #endif |
62 | ||
63 | static int npnum_mulbase_add(NPNum *num, long base, long v) | |
64 | { | |
65 | long i, j; | |
66 | ulong overflow; | |
3 | 67 | #ifndef NP_I386_ASM |
0 | 68 | ulong val; |
69 | #endif | |
70 | ||
71 | for(i=num->nmantissa;i>=0;i--){ | |
3 | 72 | #ifdef NP_I386_ASM |
0 | 73 | __asm__("mul %4\n" |
74 | : "=a" (num->mantissa[i]), "=d" (overflow) | |
75 | : "0" (num->mantissa[i]), "1" (0), "q" (base) | |
76 | : "eax", "edx"); | |
77 | #else | |
78 | overflow=0; | |
79 | val=num->mantissa[i]; | |
80 | ||
81 | if(val<ULONG_MAX/base){ | |
82 | val*=base; | |
83 | }else if(val){ | |
84 | ulong tmp=val; | |
85 | ulong old=val; | |
86 | for(j=0; j<base; j++){ | |
87 | val+=tmp; | |
88 | if(val<=old) | |
89 | overflow++; | |
90 | old=val; | |
91 | } | |
92 | } | |
93 | num->mantissa[i]=val; | |
94 | #endif | |
95 | if(overflow){ | |
96 | if(i==num->nmantissa){ | |
97 | if(num->nmantissa==MAX_MANTISSA) | |
98 | return E_TOKZ_TOOBIG; | |
99 | num->nmantissa++; | |
100 | } | |
101 | num->mantissa[i+1]+=overflow; | |
102 | } | |
103 | } | |
104 | num->mantissa[0]+=v; | |
105 | ||
106 | return 0; | |
107 | } | |
108 | ||
3 | 109 | #undef NP_I386_ASM |
110 | ||
111 | #endif /* NP_SIMPLE_IMPL */ | |
0 | 112 | |
113 | ||
114 | /* */ | |
115 | ||
116 | ||
117 | static bool is_end(int c) | |
118 | { | |
1 | 119 | /* oops... EOF was missing */ |
120 | return (c==EOF || (c!='.' && ispunct(c)) || isspace(c) || iscntrl(c)); | |
0 | 121 | } |
122 | ||
123 | ||
124 | /* */ | |
125 | ||
126 | ||
127 | static int parse_exponent(NPNum *num, Tokenizer *tokz, int c) | |
128 | { | |
129 | long exp=0; | |
130 | bool neg=FALSE; | |
131 | int err=0; | |
132 | ||
133 | c=GETCH(); | |
134 | ||
135 | if(c=='-' || c=='+'){ | |
136 | if(c=='-') | |
137 | neg=TRUE; | |
138 | c=GETCH(); | |
139 | } | |
140 | ||
141 | for(; 1; c=GETCH()){ | |
142 | if(isdigit(c)){ | |
143 | exp*=10; | |
144 | exp+=c-'0'; | |
145 | }else if(is_end(c)){ | |
146 | UNGETCH(c); | |
147 | break; | |
148 | }else{ | |
149 | err=E_TOKZ_NUMFMT; | |
150 | } | |
151 | } | |
152 | ||
153 | if(neg) | |
154 | exp*=-1; | |
3 | 155 | |
156 | #ifndef NP_SIMPLE_IMPL | |
0 | 157 | ADD_EXP(num, exp); |
3 | 158 | #else |
159 | num->fval*=pow(num->base, exp); | |
160 | #endif | |
0 | 161 | return err; |
162 | } | |
163 | ||
164 | ||
165 | static int parse_number(NPNum *num, Tokenizer *tokz, int c) | |
166 | { | |
167 | int base=10; | |
168 | int dm=1; | |
169 | int err=0; | |
170 | int tmp; | |
3 | 171 | #ifdef NP_SIMPLE_IMPL |
15 | 172 | double divisor=base; |
3 | 173 | #endif |
174 | ||
0 | 175 | if(c=='-' || c=='+'){ |
176 | if(c=='-') | |
177 | num->negative=TRUE; | |
178 | c=GETCH(); | |
179 | if(!isdigit(c)) | |
180 | err=E_TOKZ_NUMFMT; | |
3 | 181 | } |
182 | ||
183 | if(c=='0'){ | |
0 | 184 | dm=0; |
185 | c=GETCH(); | |
186 | if(c=='x' || c=='X'){ | |
187 | base=16; | |
188 | c=GETCH(); | |
189 | }else if(c=='b' || c=='B'){ | |
190 | base=2; | |
191 | c=GETCH(); | |
192 | }else if('0'<=c && c<='7'){ | |
3 | 193 | base=8; |
0 | 194 | }else{ |
195 | dm=2; | |
196 | } | |
197 | } | |
198 | ||
199 | num->base=base; | |
200 | ||
201 | for(; 1; c=GETCH()){ | |
202 | if((c=='e' || c=='E') && dm!=0){ | |
203 | if(dm<2){ | |
204 | err=E_TOKZ_NUMFMT; | |
205 | continue; | |
206 | } | |
207 | tmp=parse_exponent(num, tokz, c); | |
208 | if(err==0) | |
209 | err=tmp; | |
210 | break; | |
211 | } | |
212 | ||
213 | if(isxdigit(c)){ | |
214 | if('0'<=c && c<='9') | |
215 | c-='0'; | |
216 | else if(isupper(c)) | |
217 | c-='A'-10; | |
218 | else | |
219 | c-='a'-10; | |
220 | ||
221 | if(c>=base) | |
222 | err=E_TOKZ_NUMFMT; | |
3 | 223 | |
224 | #ifdef NP_SIMPLE_IMPL | |
225 | if(dm==3){ | |
15 | 226 | num->fval+=(double)c/divisor; |
3 | 227 | divisor*=base; |
228 | }else | |
229 | #endif | |
230 | { | |
231 | tmp=npnum_mulbase_add(num, base, c); | |
232 | if(err==0) | |
233 | err=tmp; | |
234 | } | |
0 | 235 | |
236 | if(dm==1) | |
237 | dm=2; | |
3 | 238 | #ifndef NP_SIMPLE_IMPL |
0 | 239 | else if(dm==3) |
240 | ADD_EXP(num, -1); | |
3 | 241 | #endif |
0 | 242 | continue; |
243 | } | |
244 | ||
245 | if(c=='.'){ | |
3 | 246 | if(dm!=2){ |
0 | 247 | err=E_TOKZ_NUMFMT; |
3 | 248 | } |
249 | dm=3; | |
250 | #ifdef NP_SIMPLE_IMPL | |
251 | num->type=NPNUM_FLOAT; | |
252 | divisor=base; | |
253 | #endif | |
0 | 254 | continue; |
255 | } | |
256 | ||
257 | if(is_end(c)){ | |
258 | UNGETCH(c); | |
259 | break; | |
260 | } | |
261 | ||
262 | err=E_TOKZ_NUMFMT; | |
263 | } | |
264 | ||
3 | 265 | #ifndef NP_SIMPLE_IMPL |
0 | 266 | num->type=(num->exponent==0 ? NPNUM_INT : NPNUM_FLOAT); |
3 | 267 | #endif |
268 | ||
0 | 269 | return err; |
270 | } |