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| 1 /* |
| 2 * Copyright (c) 2010 The WebM project authors. All Rights Reserved. |
| 3 * |
| 4 * Use of this source code is governed by a BSD-style license |
| 5 * that can be found in the LICENSE file in the root of the source |
| 6 * tree. An additional intellectual property rights grant can be found |
| 7 * in the file PATENTS. All contributing project authors may |
| 8 * be found in the AUTHORS file in the root of the source tree. |
| 9 */ |
| 10 |
| 11 |
| 12 #include <stdlib.h> |
| 13 #include <string.h> |
| 14 #include <limits.h> |
| 15 #include "args.h" |
| 16 |
| 17 #ifdef _MSC_VER |
| 18 #define snprintf _snprintf |
| 19 #endif |
| 20 |
| 21 #if defined(__GNUC__) && __GNUC__ |
| 22 extern void die(const char *fmt, ...) __attribute__((noreturn)); |
| 23 #else |
| 24 extern void die(const char *fmt, ...); |
| 25 #endif |
| 26 |
| 27 |
| 28 struct arg arg_init(char **argv) { |
| 29 struct arg a; |
| 30 |
| 31 a.argv = argv; |
| 32 a.argv_step = 1; |
| 33 a.name = NULL; |
| 34 a.val = NULL; |
| 35 a.def = NULL; |
| 36 return a; |
| 37 } |
| 38 |
| 39 int arg_match(struct arg *arg_, const struct arg_def *def, char **argv) { |
| 40 struct arg arg; |
| 41 |
| 42 if (!argv[0] || argv[0][0] != '-') |
| 43 return 0; |
| 44 |
| 45 arg = arg_init(argv); |
| 46 |
| 47 if (def->short_name |
| 48 && strlen(arg.argv[0]) == strlen(def->short_name) + 1 |
| 49 && !strcmp(arg.argv[0] + 1, def->short_name)) { |
| 50 |
| 51 arg.name = arg.argv[0] + 1; |
| 52 arg.val = def->has_val ? arg.argv[1] : NULL; |
| 53 arg.argv_step = def->has_val ? 2 : 1; |
| 54 } else if (def->long_name) { |
| 55 const size_t name_len = strlen(def->long_name); |
| 56 |
| 57 if (strlen(arg.argv[0]) >= name_len + 2 |
| 58 && arg.argv[0][1] == '-' |
| 59 && !strncmp(arg.argv[0] + 2, def->long_name, name_len) |
| 60 && (arg.argv[0][name_len + 2] == '=' |
| 61 || arg.argv[0][name_len + 2] == '\0')) { |
| 62 |
| 63 arg.name = arg.argv[0] + 2; |
| 64 arg.val = arg.name[name_len] == '=' ? arg.name + name_len + 1 : NULL; |
| 65 arg.argv_step = 1; |
| 66 } |
| 67 } |
| 68 |
| 69 if (arg.name && !arg.val && def->has_val) |
| 70 die("Error: option %s requires argument.\n", arg.name); |
| 71 |
| 72 if (arg.name && arg.val && !def->has_val) |
| 73 die("Error: option %s requires no argument.\n", arg.name); |
| 74 |
| 75 if (arg.name |
| 76 && (arg.val || !def->has_val)) { |
| 77 arg.def = def; |
| 78 *arg_ = arg; |
| 79 return 1; |
| 80 } |
| 81 |
| 82 return 0; |
| 83 } |
| 84 |
| 85 |
| 86 const char *arg_next(struct arg *arg) { |
| 87 if (arg->argv[0]) |
| 88 arg->argv += arg->argv_step; |
| 89 |
| 90 return *arg->argv; |
| 91 } |
| 92 |
| 93 |
| 94 char **argv_dup(int argc, const char **argv) { |
| 95 char **new_argv = malloc((argc + 1) * sizeof(*argv)); |
| 96 |
| 97 memcpy(new_argv, argv, argc * sizeof(*argv)); |
| 98 new_argv[argc] = NULL; |
| 99 return new_argv; |
| 100 } |
| 101 |
| 102 |
| 103 void arg_show_usage(FILE *fp, const struct arg_def *const *defs) { |
| 104 char option_text[40] = {0}; |
| 105 |
| 106 for (; *defs; defs++) { |
| 107 const struct arg_def *def = *defs; |
| 108 char *short_val = def->has_val ? " <arg>" : ""; |
| 109 char *long_val = def->has_val ? "=<arg>" : ""; |
| 110 |
| 111 if (def->short_name && def->long_name) { |
| 112 char *comma = def->has_val ? "," : ", "; |
| 113 |
| 114 snprintf(option_text, 37, "-%s%s%s --%s%6s", |
| 115 def->short_name, short_val, comma, |
| 116 def->long_name, long_val); |
| 117 } else if (def->short_name) |
| 118 snprintf(option_text, 37, "-%s%s", |
| 119 def->short_name, short_val); |
| 120 else if (def->long_name) |
| 121 snprintf(option_text, 37, " --%s%s", |
| 122 def->long_name, long_val); |
| 123 |
| 124 fprintf(fp, " %-37s\t%s\n", option_text, def->desc); |
| 125 |
| 126 if (def->enums) { |
| 127 const struct arg_enum_list *listptr; |
| 128 |
| 129 fprintf(fp, " %-37s\t ", ""); |
| 130 |
| 131 for (listptr = def->enums; listptr->name; listptr++) |
| 132 fprintf(fp, "%s%s", listptr->name, |
| 133 listptr[1].name ? ", " : "\n"); |
| 134 } |
| 135 } |
| 136 } |
| 137 |
| 138 |
| 139 unsigned int arg_parse_uint(const struct arg *arg) { |
| 140 long int rawval; |
| 141 char *endptr; |
| 142 |
| 143 rawval = strtol(arg->val, &endptr, 10); |
| 144 |
| 145 if (arg->val[0] != '\0' && endptr[0] == '\0') { |
| 146 if (rawval >= 0 && rawval <= UINT_MAX) |
| 147 return rawval; |
| 148 |
| 149 die("Option %s: Value %ld out of range for unsigned int\n", |
| 150 arg->name, rawval); |
| 151 } |
| 152 |
| 153 die("Option %s: Invalid character '%c'\n", arg->name, *endptr); |
| 154 return 0; |
| 155 } |
| 156 |
| 157 |
| 158 int arg_parse_int(const struct arg *arg) { |
| 159 long int rawval; |
| 160 char *endptr; |
| 161 |
| 162 rawval = strtol(arg->val, &endptr, 10); |
| 163 |
| 164 if (arg->val[0] != '\0' && endptr[0] == '\0') { |
| 165 if (rawval >= INT_MIN && rawval <= INT_MAX) |
| 166 return rawval; |
| 167 |
| 168 die("Option %s: Value %ld out of range for signed int\n", |
| 169 arg->name, rawval); |
| 170 } |
| 171 |
| 172 die("Option %s: Invalid character '%c'\n", arg->name, *endptr); |
| 173 return 0; |
| 174 } |
| 175 |
| 176 |
| 177 struct vpx_rational { |
| 178 int num; /**< fraction numerator */ |
| 179 int den; /**< fraction denominator */ |
| 180 }; |
| 181 struct vpx_rational arg_parse_rational(const struct arg *arg) { |
| 182 long int rawval; |
| 183 char *endptr; |
| 184 struct vpx_rational rat; |
| 185 |
| 186 /* parse numerator */ |
| 187 rawval = strtol(arg->val, &endptr, 10); |
| 188 |
| 189 if (arg->val[0] != '\0' && endptr[0] == '/') { |
| 190 if (rawval >= INT_MIN && rawval <= INT_MAX) |
| 191 rat.num = rawval; |
| 192 else die("Option %s: Value %ld out of range for signed int\n", |
| 193 arg->name, rawval); |
| 194 } else die("Option %s: Expected / at '%c'\n", arg->name, *endptr); |
| 195 |
| 196 /* parse denominator */ |
| 197 rawval = strtol(endptr + 1, &endptr, 10); |
| 198 |
| 199 if (arg->val[0] != '\0' && endptr[0] == '\0') { |
| 200 if (rawval >= INT_MIN && rawval <= INT_MAX) |
| 201 rat.den = rawval; |
| 202 else die("Option %s: Value %ld out of range for signed int\n", |
| 203 arg->name, rawval); |
| 204 } else die("Option %s: Invalid character '%c'\n", arg->name, *endptr); |
| 205 |
| 206 return rat; |
| 207 } |
| 208 |
| 209 |
| 210 int arg_parse_enum(const struct arg *arg) { |
| 211 const struct arg_enum_list *listptr; |
| 212 long int rawval; |
| 213 char *endptr; |
| 214 |
| 215 /* First see if the value can be parsed as a raw value */ |
| 216 rawval = strtol(arg->val, &endptr, 10); |
| 217 if (arg->val[0] != '\0' && endptr[0] == '\0') { |
| 218 /* Got a raw value, make sure it's valid */ |
| 219 for (listptr = arg->def->enums; listptr->name; listptr++) |
| 220 if (listptr->val == rawval) |
| 221 return rawval; |
| 222 } |
| 223 |
| 224 /* Next see if it can be parsed as a string */ |
| 225 for (listptr = arg->def->enums; listptr->name; listptr++) |
| 226 if (!strcmp(arg->val, listptr->name)) |
| 227 return listptr->val; |
| 228 |
| 229 die("Option %s: Invalid value '%s'\n", arg->name, arg->val); |
| 230 return 0; |
| 231 } |
| 232 |
| 233 |
| 234 int arg_parse_enum_or_int(const struct arg *arg) { |
| 235 if (arg->def->enums) |
| 236 return arg_parse_enum(arg); |
| 237 return arg_parse_int(arg); |
| 238 } |
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