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svm_scale.java 8.9 kB

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  1. import libsvm.*;
  2. import java.io.*;
  3. import java.util.*;
  4. import java.text.DecimalFormat;
  5. class svm_scale
  6. {
  7. private String line = null;
  8. private double lower = -1.0;
  9. private double upper = 1.0;
  10. private double y_lower;
  11. private double y_upper;
  12. private boolean y_scaling = false;
  13. private double[] feature_max;
  14. private double[] feature_min;
  15. private double y_max = -Double.MAX_VALUE;
  16. private double y_min = Double.MAX_VALUE;
  17. private int max_index;
  18. private long num_nonzeros = 0;
  19. private long new_num_nonzeros = 0;
  20. private static void exit_with_help()
  21. {
  22. System.out.print(
  23. "Usage: svm-scale [options] data_filename\n"
  24. +"options:\n"
  25. +"-l lower : x scaling lower limit (default -1)\n"
  26. +"-u upper : x scaling upper limit (default +1)\n"
  27. +"-y y_lower y_upper : y scaling limits (default: no y scaling)\n"
  28. +"-s save_filename : save scaling parameters to save_filename\n"
  29. +"-r restore_filename : restore scaling parameters from restore_filename\n"
  30. );
  31. System.exit(1);
  32. }
  33. private BufferedReader rewind(BufferedReader fp, String filename) throws IOException
  34. {
  35. fp.close();
  36. return new BufferedReader(new FileReader(filename));
  37. }
  38. private void output_target(double value)
  39. {
  40. if(y_scaling)
  41. {
  42. if(value == y_min)
  43. value = y_lower;
  44. else if(value == y_max)
  45. value = y_upper;
  46. else
  47. value = y_lower + (y_upper-y_lower) *
  48. (value-y_min) / (y_max-y_min);
  49. }
  50. System.out.print(value + " ");
  51. }
  52. private void output(int index, double value)
  53. {
  54. /* skip single-valued attribute */
  55. if(feature_max[index] == feature_min[index])
  56. return;
  57. if(value == feature_min[index])
  58. value = lower;
  59. else if(value == feature_max[index])
  60. value = upper;
  61. else
  62. value = lower + (upper-lower) *
  63. (value-feature_min[index])/
  64. (feature_max[index]-feature_min[index]);
  65. if(value != 0)
  66. {
  67. System.out.print(index + ":" + value + " ");
  68. new_num_nonzeros++;
  69. }
  70. }
  71. private String readline(BufferedReader fp) throws IOException
  72. {
  73. line = fp.readLine();
  74. return line;
  75. }
  76. private void run(String []argv) throws IOException
  77. {
  78. int i,index;
  79. BufferedReader fp = null, fp_restore = null;
  80. String save_filename = null;
  81. String restore_filename = null;
  82. String data_filename = null;
  83. for(i=0;i<argv.length;i++)
  84. {
  85. if (argv[i].charAt(0) != '-') break;
  86. ++i;
  87. switch(argv[i-1].charAt(1))
  88. {
  89. case 'l': lower = Double.parseDouble(argv[i]); break;
  90. case 'u': upper = Double.parseDouble(argv[i]); break;
  91. case 'y':
  92. y_lower = Double.parseDouble(argv[i]);
  93. ++i;
  94. y_upper = Double.parseDouble(argv[i]);
  95. y_scaling = true;
  96. break;
  97. case 's': save_filename = argv[i]; break;
  98. case 'r': restore_filename = argv[i]; break;
  99. default:
  100. System.err.println("unknown option");
  101. exit_with_help();
  102. }
  103. }
  104. if(!(upper > lower) || (y_scaling && !(y_upper > y_lower)))
  105. {
  106. System.err.println("inconsistent lower/upper specification");
  107. System.exit(1);
  108. }
  109. if(restore_filename != null && save_filename != null)
  110. {
  111. System.err.println("cannot use -r and -s simultaneously");
  112. System.exit(1);
  113. }
  114. if(argv.length != i+1)
  115. exit_with_help();
  116. data_filename = argv[i];
  117. try {
  118. fp = new BufferedReader(new FileReader(data_filename));
  119. } catch (Exception e) {
  120. System.err.println("can't open file " + data_filename);
  121. System.exit(1);
  122. }
  123. /* assumption: min index of attributes is 1 */
  124. /* pass 1: find out max index of attributes */
  125. max_index = 0;
  126. if(restore_filename != null)
  127. {
  128. int idx, c;
  129. try {
  130. fp_restore = new BufferedReader(new FileReader(restore_filename));
  131. }
  132. catch (Exception e) {
  133. System.err.println("can't open file " + restore_filename);
  134. System.exit(1);
  135. }
  136. if((c = fp_restore.read()) == 'y')
  137. {
  138. fp_restore.readLine();
  139. fp_restore.readLine();
  140. fp_restore.readLine();
  141. }
  142. fp_restore.readLine();
  143. fp_restore.readLine();
  144. String restore_line = null;
  145. while((restore_line = fp_restore.readLine())!=null)
  146. {
  147. StringTokenizer st2 = new StringTokenizer(restore_line);
  148. idx = Integer.parseInt(st2.nextToken());
  149. max_index = Math.max(max_index, idx);
  150. }
  151. fp_restore = rewind(fp_restore, restore_filename);
  152. }
  153. while (readline(fp) != null)
  154. {
  155. StringTokenizer st = new StringTokenizer(line," \t\n\r\f:");
  156. st.nextToken();
  157. while(st.hasMoreTokens())
  158. {
  159. index = Integer.parseInt(st.nextToken());
  160. max_index = Math.max(max_index, index);
  161. st.nextToken();
  162. num_nonzeros++;
  163. }
  164. }
  165. try {
  166. feature_max = new double[(max_index+1)];
  167. feature_min = new double[(max_index+1)];
  168. } catch(OutOfMemoryError e) {
  169. System.err.println("can't allocate enough memory");
  170. System.exit(1);
  171. }
  172. for(i=0;i<=max_index;i++)
  173. {
  174. feature_max[i] = -Double.MAX_VALUE;
  175. feature_min[i] = Double.MAX_VALUE;
  176. }
  177. fp = rewind(fp, data_filename);
  178. /* pass 2: find out min/max value */
  179. while(readline(fp) != null)
  180. {
  181. int next_index = 1;
  182. double target;
  183. double value;
  184. StringTokenizer st = new StringTokenizer(line," \t\n\r\f:");
  185. target = Double.parseDouble(st.nextToken());
  186. y_max = Math.max(y_max, target);
  187. y_min = Math.min(y_min, target);
  188. while (st.hasMoreTokens())
  189. {
  190. index = Integer.parseInt(st.nextToken());
  191. value = Double.parseDouble(st.nextToken());
  192. for (i = next_index; i<index; i++)
  193. {
  194. feature_max[i] = Math.max(feature_max[i], 0);
  195. feature_min[i] = Math.min(feature_min[i], 0);
  196. }
  197. feature_max[index] = Math.max(feature_max[index], value);
  198. feature_min[index] = Math.min(feature_min[index], value);
  199. next_index = index + 1;
  200. }
  201. for(i=next_index;i<=max_index;i++)
  202. {
  203. feature_max[i] = Math.max(feature_max[i], 0);
  204. feature_min[i] = Math.min(feature_min[i], 0);
  205. }
  206. }
  207. fp = rewind(fp, data_filename);
  208. /* pass 2.5: save/restore feature_min/feature_max */
  209. if(restore_filename != null)
  210. {
  211. // fp_restore rewinded in finding max_index
  212. int idx, c;
  213. double fmin, fmax;
  214. fp_restore.mark(2); // for reset
  215. if((c = fp_restore.read()) == 'y')
  216. {
  217. fp_restore.readLine(); // pass the '\n' after 'y'
  218. StringTokenizer st = new StringTokenizer(fp_restore.readLine());
  219. y_lower = Double.parseDouble(st.nextToken());
  220. y_upper = Double.parseDouble(st.nextToken());
  221. st = new StringTokenizer(fp_restore.readLine());
  222. y_min = Double.parseDouble(st.nextToken());
  223. y_max = Double.parseDouble(st.nextToken());
  224. y_scaling = true;
  225. }
  226. else
  227. fp_restore.reset();
  228. if(fp_restore.read() == 'x') {
  229. fp_restore.readLine(); // pass the '\n' after 'x'
  230. StringTokenizer st = new StringTokenizer(fp_restore.readLine());
  231. lower = Double.parseDouble(st.nextToken());
  232. upper = Double.parseDouble(st.nextToken());
  233. String restore_line = null;
  234. while((restore_line = fp_restore.readLine())!=null)
  235. {
  236. StringTokenizer st2 = new StringTokenizer(restore_line);
  237. idx = Integer.parseInt(st2.nextToken());
  238. fmin = Double.parseDouble(st2.nextToken());
  239. fmax = Double.parseDouble(st2.nextToken());
  240. if (idx <= max_index)
  241. {
  242. feature_min[idx] = fmin;
  243. feature_max[idx] = fmax;
  244. }
  245. }
  246. }
  247. fp_restore.close();
  248. }
  249. if(save_filename != null)
  250. {
  251. Formatter formatter = new Formatter(new StringBuilder());
  252. BufferedWriter fp_save = null;
  253. try {
  254. fp_save = new BufferedWriter(new FileWriter(save_filename));
  255. } catch(IOException e) {
  256. System.err.println("can't open file " + save_filename);
  257. System.exit(1);
  258. }
  259. if(y_scaling)
  260. {
  261. formatter.format("y\n");
  262. formatter.format("%.16g %.16g\n", y_lower, y_upper);
  263. formatter.format("%.16g %.16g\n", y_min, y_max);
  264. }
  265. formatter.format("x\n");
  266. formatter.format("%.16g %.16g\n", lower, upper);
  267. for(i=1;i<=max_index;i++)
  268. {
  269. if(feature_min[i] != feature_max[i])
  270. formatter.format("%d %.16g %.16g\n", i, feature_min[i], feature_max[i]);
  271. }
  272. fp_save.write(formatter.toString());
  273. fp_save.close();
  274. }
  275. /* pass 3: scale */
  276. while(readline(fp) != null)
  277. {
  278. int next_index = 1;
  279. double target;
  280. double value;
  281. StringTokenizer st = new StringTokenizer(line," \t\n\r\f:");
  282. target = Double.parseDouble(st.nextToken());
  283. output_target(target);
  284. while(st.hasMoreElements())
  285. {
  286. index = Integer.parseInt(st.nextToken());
  287. value = Double.parseDouble(st.nextToken());
  288. for (i = next_index; i<index; i++)
  289. output(i, 0);
  290. output(index, value);
  291. next_index = index + 1;
  292. }
  293. for(i=next_index;i<= max_index;i++)
  294. output(i, 0);
  295. System.out.print("\n");
  296. }
  297. if (new_num_nonzeros > num_nonzeros)
  298. System.err.print(
  299. "WARNING: original #nonzeros " + num_nonzeros+"\n"
  300. +" new #nonzeros " + new_num_nonzeros+"\n"
  301. +"Use -l 0 if many original feature values are zeros\n");
  302. fp.close();
  303. }
  304. public static void main(String argv[]) throws IOException
  305. {
  306. svm_scale s = new svm_scale();
  307. s.run(argv);
  308. }
  309. }

A Python package for graph kernels, graph edit distances and graph pre-image problem.