Mercurial > hg
annotate mercurial/bdiff.c @ 40988:03f7d0822ec1 stable
worker: do not swallow exception occurred in main process
Before, SystemExit(255) would be most likely raised since the worker processes
were terminated by the main process and the status would be set to 255 in
response. We should instead re-raise the exception occurred first. It's pretty
hard to debug problems like the issue 6035 with no traceback.
author | Yuya Nishihara <yuya@tcha.org> |
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date | Tue, 11 Dec 2018 22:34:07 +0900 |
parents | 068e774ae29e |
children | 763b45bc4483 |
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1 /* |
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2 bdiff.c - efficient binary diff extension for Mercurial |
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3 |
2859 | 4 Copyright 2005, 2006 Matt Mackall <mpm@selenic.com> |
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5 |
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6 This software may be used and distributed according to the terms of |
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7 the GNU General Public License, incorporated herein by reference. |
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8 |
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9 Based roughly on Python difflib |
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10 */ |
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11 |
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12 #include <limits.h> |
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13 #include <stdlib.h> |
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14 #include <string.h> |
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16 #include "bdiff.h" |
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17 #include "bitmanipulation.h" |
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18 #include "compat.h" |
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19 |
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20 /* Hash implementation from diffutils */ |
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21 #define ROL(v, n) ((v) << (n) | (v) >> (sizeof(v) * CHAR_BIT - (n))) |
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22 #define HASH(h, c) ((c) + ROL(h, 7)) |
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23 |
474 | 24 struct pos { |
25 int pos, len; | |
26 }; | |
27 | |
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28 int bdiff_splitlines(const char *a, ssize_t len, struct bdiff_line **lr) |
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29 { |
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30 unsigned hash; |
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31 int i; |
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32 const char *p, *b = a; |
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33 const char *const plast = a + len - 1; |
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34 struct bdiff_line *l; |
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35 |
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36 /* count the lines */ |
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37 i = 1; /* extra line for sentinel */ |
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38 for (p = a; p < plast; p++) |
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39 if (*p == '\n') |
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40 i++; |
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41 if (p == plast) |
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42 i++; |
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43 |
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44 *lr = l = (struct bdiff_line *)calloc(i, sizeof(struct bdiff_line)); |
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45 if (!l) |
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46 return -1; |
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47 |
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48 /* build the line array and calculate hashes */ |
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49 hash = 0; |
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50 for (p = a; p < plast; p++) { |
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51 hash = HASH(hash, *p); |
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53 if (*p == '\n') { |
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54 l->hash = hash; |
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55 hash = 0; |
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56 l->len = p - b + 1; |
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57 l->l = b; |
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58 l->n = INT_MAX; |
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59 l++; |
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60 b = p + 1; |
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61 } |
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62 } |
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63 |
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64 if (p == plast) { |
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65 hash = HASH(hash, *p); |
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66 l->hash = hash; |
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67 l->len = p - b + 1; |
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68 l->l = b; |
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69 l->n = INT_MAX; |
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70 l++; |
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71 } |
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72 |
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73 /* set up a sentinel */ |
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74 l->hash = 0; |
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75 l->len = 0; |
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76 l->l = a + len; |
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77 return i - 1; |
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78 } |
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79 |
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80 static inline int cmp(struct bdiff_line *a, struct bdiff_line *b) |
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81 { |
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82 return a->hash != b->hash || a->len != b->len || |
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83 memcmp(a->l, b->l, a->len); |
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84 } |
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85 |
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86 static int equatelines(struct bdiff_line *a, int an, struct bdiff_line *b, |
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87 int bn) |
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88 { |
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89 int i, j, buckets = 1, t, scale; |
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90 struct pos *h = NULL; |
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91 |
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92 /* build a hash table of the next highest power of 2 */ |
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93 while (buckets < bn + 1) |
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94 buckets *= 2; |
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95 |
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96 /* try to allocate a large hash table to avoid collisions */ |
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97 for (scale = 4; scale; scale /= 2) { |
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98 h = (struct pos *)calloc(buckets, scale * sizeof(struct pos)); |
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99 if (h) |
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100 break; |
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101 } |
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102 |
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104 return 0; |
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105 |
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106 buckets = buckets * scale - 1; |
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107 |
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108 /* clear the hash table */ |
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110 h[i].pos = -1; |
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112 } | |
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113 |
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114 /* add lines to the hash table chains */ |
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115 for (i = 0; i < bn; i++) { |
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116 /* find the equivalence class */ |
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117 for (j = b[i].hash & buckets; h[j].pos != -1; |
474 | 118 j = (j + 1) & buckets) |
119 if (!cmp(b + i, b + h[j].pos)) | |
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120 break; |
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121 |
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122 /* add to the head of the equivalence class */ |
474 | 123 b[i].n = h[j].pos; |
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124 b[i].e = j; |
474 | 125 h[j].pos = i; |
126 h[j].len++; /* keep track of popularity */ | |
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127 } |
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128 |
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129 /* compute popularity threshold */ |
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130 t = (bn >= 31000) ? bn / 1000 : 1000000 / (bn + 1); |
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131 |
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132 /* match items in a to their equivalence class in b */ |
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133 for (i = 0; i < an; i++) { |
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134 /* find the equivalence class */ |
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135 for (j = a[i].hash & buckets; h[j].pos != -1; |
474 | 136 j = (j + 1) & buckets) |
137 if (!cmp(a + i, b + h[j].pos)) | |
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138 break; |
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139 |
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140 a[i].e = j; /* use equivalence class for quick compare */ |
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141 if (h[j].len <= t) |
474 | 142 a[i].n = h[j].pos; /* point to head of match list */ |
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143 else |
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144 a[i].n = -1; /* too popular */ |
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145 } |
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146 |
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147 /* discard hash tables */ |
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148 free(h); |
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149 return 1; |
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150 } |
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151 |
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152 static int longest_match(struct bdiff_line *a, struct bdiff_line *b, |
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153 struct pos *pos, int a1, int a2, int b1, int b2, |
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154 int *omi, int *omj) |
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155 { |
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156 int mi = a1, mj = b1, mk = 0, i, j, k, half, bhalf; |
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157 |
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158 /* window our search on large regions to better bound |
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159 worst-case performance. by choosing a window at the end, we |
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160 reduce skipping overhead on the b chains. */ |
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161 if (a2 - a1 > 30000) |
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162 a1 = a2 - 30000; |
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163 |
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164 half = (a1 + a2 - 1) / 2; |
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165 bhalf = (b1 + b2 - 1) / 2; |
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166 |
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167 for (i = a1; i < a2; i++) { |
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168 /* skip all lines in b after the current block */ |
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169 for (j = a[i].n; j >= b2; j = b[j].n) |
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170 ; |
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171 |
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172 /* loop through all lines match a[i] in b */ |
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173 for (; j >= b1; j = b[j].n) { |
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174 /* does this extend an earlier match? */ |
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175 for (k = 1; j - k >= b1 && i - k >= a1; k++) { |
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176 /* reached an earlier match? */ |
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177 if (pos[j - k].pos == i - k) { |
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178 k += pos[j - k].len; |
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179 break; |
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180 } |
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181 /* previous line mismatch? */ |
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182 if (a[i - k].e != b[j - k].e) |
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183 break; |
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184 } |
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185 |
474 | 186 pos[j].pos = i; |
187 pos[j].len = k; | |
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188 |
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189 /* best match so far? we prefer matches closer |
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190 to the middle to balance recursion */ |
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191 if (k > mk) { |
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192 /* a longer match */ |
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193 mi = i; |
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194 mj = j; |
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195 mk = k; |
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196 } else if (k == mk) { |
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197 if (i > mi && i <= half && j > b1) { |
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198 /* same match but closer to half */ |
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199 mi = i; |
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200 mj = j; |
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201 } else if (i == mi && (mj > bhalf || i == a1)) { |
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202 /* same i but best earlier j */ |
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203 mj = j; |
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204 } |
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205 } |
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206 } |
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207 } |
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208 |
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209 if (mk) { |
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210 mi = mi - mk + 1; |
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211 mj = mj - mk + 1; |
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212 } |
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213 |
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214 /* expand match to include subsequent popular lines */ |
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215 while (mi + mk < a2 && mj + mk < b2 && a[mi + mk].e == b[mj + mk].e) |
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216 mk++; |
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217 |
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218 *omi = mi; |
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219 *omj = mj; |
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220 |
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221 return mk; |
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222 } |
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223 |
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224 static struct bdiff_hunk *recurse(struct bdiff_line *a, struct bdiff_line *b, |
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225 struct pos *pos, int a1, int a2, int b1, |
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226 int b2, struct bdiff_hunk *l) |
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227 { |
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228 int i, j, k; |
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229 |
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230 while (1) { |
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231 /* find the longest match in this chunk */ |
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232 k = longest_match(a, b, pos, a1, a2, b1, b2, &i, &j); |
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233 if (!k) |
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234 return l; |
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235 |
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236 /* and recurse on the remaining chunks on either side */ |
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237 l = recurse(a, b, pos, a1, i, b1, j, l); |
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238 if (!l) |
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239 return NULL; |
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240 |
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241 l->next = |
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242 (struct bdiff_hunk *)malloc(sizeof(struct bdiff_hunk)); |
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243 if (!l->next) |
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244 return NULL; |
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245 |
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246 l = l->next; |
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247 l->a1 = i; |
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248 l->a2 = i + k; |
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249 l->b1 = j; |
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250 l->b2 = j + k; |
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251 l->next = NULL; |
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252 |
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253 /* tail-recursion didn't happen, so do equivalent iteration */ |
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254 a1 = i + k; |
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255 b1 = j + k; |
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256 } |
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257 } |
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258 |
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259 int bdiff_diff(struct bdiff_line *a, int an, struct bdiff_line *b, int bn, |
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260 struct bdiff_hunk *base) |
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261 { |
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262 struct bdiff_hunk *curr; |
474 | 263 struct pos *pos; |
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264 int t, count = 0; |
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265 |
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266 /* allocate and fill arrays */ |
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267 t = equatelines(a, an, b, bn); |
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269 |
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270 if (pos && t) { |
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271 /* generate the matching block list */ |
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272 |
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273 curr = recurse(a, b, pos, 0, an, 0, bn, base); |
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274 if (!curr) |
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275 return -1; |
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276 |
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277 /* sentinel end hunk */ |
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278 curr->next = |
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279 (struct bdiff_hunk *)malloc(sizeof(struct bdiff_hunk)); |
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280 if (!curr->next) |
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281 return -1; |
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282 curr = curr->next; |
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283 curr->a1 = curr->a2 = an; |
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284 curr->b1 = curr->b2 = bn; |
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285 curr->next = NULL; |
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286 } |
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287 |
474 | 288 free(pos); |
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289 |
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290 /* normalize the hunk list, try to push each hunk towards the end */ |
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291 for (curr = base->next; curr; curr = curr->next) { |
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292 struct bdiff_hunk *next = curr->next; |
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293 |
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294 if (!next) |
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295 break; |
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296 |
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297 if (curr->a2 == next->a1 || curr->b2 == next->b1) |
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298 while (curr->a2 < an && curr->b2 < bn && |
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299 next->a1 < next->a2 && next->b1 < next->b2 && |
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300 !cmp(a + curr->a2, b + curr->b2)) { |
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301 curr->a2++; |
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302 next->a1++; |
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303 curr->b2++; |
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304 next->b1++; |
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305 } |
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306 } |
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307 |
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308 for (curr = base->next; curr; curr = curr->next) |
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309 count++; |
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310 return count; |
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311 } |
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312 |
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313 /* deallocate list of hunks; l may be NULL */ |
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314 void bdiff_freehunks(struct bdiff_hunk *l) |
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315 { |
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316 struct bdiff_hunk *n; |
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317 for (; l; l = n) { |
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318 n = l->next; |
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319 free(l); |
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320 } |
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321 } |