Mercurial > hg
annotate mercurial/bdiff.c @ 29925:1619efcde9a4
manifest: make one use of _mancache avoid manifestctxs
In a future patch we will change manifestctx and treemanifestctx to no longer
derive from manifestdict and treemanifest, respectively. This means that
consumers of the _mancache will now need to be aware of the different between
the two, until we get rid of the manifest entirely and the _mancache becomes
only filled with ctxs.
This fixes one case of it that can be fixed by using the other cache. Future
patches will address the others uses using the upcoming manifestctx.read()
function.
author | Durham Goode <durham@fb.com> |
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date | Mon, 12 Sep 2016 14:29:09 -0700 |
parents | 9631ff5ebbeb |
children | d500ddae7494 |
rev | line source |
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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 <stdlib.h> |
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13 #include <string.h> |
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14 #include <limits.h> |
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16 #include "compat.h" |
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17 #include "bitmanipulation.h" |
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18 #include "bdiff.h" |
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19 |
474 | 20 struct pos { |
21 int pos, len; | |
22 }; | |
23 | |
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24 int bdiff_splitlines(const char *a, ssize_t len, struct bdiff_line **lr) |
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25 { |
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26 unsigned hash; |
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27 int i; |
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28 const char *p, *b = a; |
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29 const char * const plast = a + len - 1; |
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30 struct bdiff_line *l; |
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31 |
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32 /* count the lines */ |
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33 i = 1; /* extra line for sentinel */ |
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34 for (p = a; p < a + len; p++) |
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35 if (*p == '\n' || p == plast) |
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36 i++; |
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37 |
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38 *lr = l = (struct bdiff_line *)malloc(sizeof(struct bdiff_line) * i); |
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39 if (!l) |
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40 return -1; |
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41 |
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42 /* build the line array and calculate hashes */ |
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43 hash = 0; |
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44 for (p = a; p < a + len; p++) { |
5342 | 45 /* Leonid Yuriev's hash */ |
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46 hash = (hash * 1664525) + (unsigned char)*p + 1013904223; |
5342 | 47 |
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48 if (*p == '\n' || p == plast) { |
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49 l->hash = hash; |
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50 hash = 0; |
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51 l->len = p - b + 1; |
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52 l->l = b; |
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53 l->n = INT_MAX; |
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54 l++; |
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55 b = p + 1; |
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56 } |
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57 } |
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58 |
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59 /* set up a sentinel */ |
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60 l->hash = 0; |
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61 l->len = 0; |
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62 l->l = a + len; |
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63 return i - 1; |
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64 } |
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65 |
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66 static inline int cmp(struct bdiff_line *a, struct bdiff_line *b) |
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67 { |
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68 return a->hash != b->hash || a->len != b->len || memcmp(a->l, b->l, a->len); |
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69 } |
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70 |
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71 static int equatelines(struct bdiff_line *a, int an, struct bdiff_line *b, |
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72 int bn) |
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73 { |
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74 int i, j, buckets = 1, t, scale; |
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75 struct pos *h = NULL; |
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76 |
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77 /* build a hash table of the next highest power of 2 */ |
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78 while (buckets < bn + 1) |
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79 buckets *= 2; |
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80 |
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81 /* try to allocate a large hash table to avoid collisions */ |
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82 for (scale = 4; scale; scale /= 2) { |
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83 h = (struct pos *)malloc(scale * buckets * sizeof(struct pos)); |
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84 if (h) |
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85 break; |
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86 } |
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87 |
474 | 88 if (!h) |
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89 return 0; |
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90 |
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91 buckets = buckets * scale - 1; |
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92 |
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93 /* clear the hash table */ |
474 | 94 for (i = 0; i <= buckets; i++) { |
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95 h[i].pos = -1; |
474 | 96 h[i].len = 0; |
97 } | |
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98 |
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99 /* add lines to the hash table chains */ |
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100 for (i = 0; i < bn; i++) { |
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101 /* find the equivalence class */ |
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102 for (j = b[i].hash & buckets; h[j].pos != -1; |
474 | 103 j = (j + 1) & buckets) |
104 if (!cmp(b + i, b + h[j].pos)) | |
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105 break; |
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106 |
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107 /* add to the head of the equivalence class */ |
474 | 108 b[i].n = h[j].pos; |
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109 b[i].e = j; |
474 | 110 h[j].pos = i; |
111 h[j].len++; /* keep track of popularity */ | |
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112 } |
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113 |
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114 /* compute popularity threshold */ |
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115 t = (bn >= 31000) ? bn / 1000 : 1000000 / (bn + 1); |
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116 |
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117 /* match items in a to their equivalence class in b */ |
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118 for (i = 0; i < an; i++) { |
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119 /* find the equivalence class */ |
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120 for (j = a[i].hash & buckets; h[j].pos != -1; |
474 | 121 j = (j + 1) & buckets) |
122 if (!cmp(a + i, b + h[j].pos)) | |
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123 break; |
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124 |
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125 a[i].e = j; /* use equivalence class for quick compare */ |
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126 if (h[j].len <= t) |
474 | 127 a[i].n = h[j].pos; /* point to head of match list */ |
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128 else |
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129 a[i].n = -1; /* too popular */ |
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130 } |
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131 |
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132 /* discard hash tables */ |
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133 free(h); |
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134 return 1; |
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135 } |
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136 |
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137 static int longest_match(struct bdiff_line *a, struct bdiff_line *b, |
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138 struct pos *pos, |
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139 int a1, int a2, int b1, int b2, int *omi, int *omj) |
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140 { |
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141 int mi = a1, mj = b1, mk = 0, i, j, k, half; |
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142 |
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143 /* window our search on large regions to better bound |
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144 worst-case performance. by choosing a window at the end, we |
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145 reduce skipping overhead on the b chains. */ |
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146 if (a2 - a1 > 30000) |
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147 a1 = a2 - 30000; |
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148 |
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149 half = (a1 + a2) / 2; |
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150 |
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151 for (i = a1; i < a2; i++) { |
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152 /* skip all lines in b after the current block */ |
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153 for (j = a[i].n; j >= b2; j = b[j].n) |
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154 ; |
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155 |
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156 /* loop through all lines match a[i] in b */ |
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157 for (; j >= b1; j = b[j].n) { |
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158 /* does this extend an earlier match? */ |
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159 for (k = 1; j - k >= b1 && i - k >= a1; k++) { |
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160 /* reached an earlier match? */ |
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161 if (pos[j - k].pos == i - k) { |
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162 k += pos[j - k].len; |
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163 break; |
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164 } |
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165 /* previous line mismatch? */ |
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166 if (a[i - k].e != b[j - k].e) |
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167 break; |
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168 } |
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169 |
474 | 170 pos[j].pos = i; |
171 pos[j].len = k; | |
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172 |
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173 /* best match so far? we prefer matches closer |
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174 to the middle to balance recursion */ |
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175 if (k > mk || (k == mk && (i <= mi || i < half))) { |
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176 mi = i; |
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177 mj = j; |
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178 mk = k; |
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179 } |
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180 } |
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181 } |
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182 |
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183 if (mk) { |
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184 mi = mi - mk + 1; |
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185 mj = mj - mk + 1; |
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186 } |
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187 |
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188 /* expand match to include subsequent popular lines */ |
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189 while (mi + mk < a2 && mj + mk < b2 && |
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190 a[mi + mk].e == b[mj + mk].e) |
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191 mk++; |
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192 |
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193 *omi = mi; |
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194 *omj = mj; |
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195 |
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196 return mk; |
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197 } |
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198 |
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199 static struct bdiff_hunk *recurse(struct bdiff_line *a, struct bdiff_line *b, |
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200 struct pos *pos, |
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201 int a1, int a2, int b1, int b2, struct bdiff_hunk *l) |
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202 { |
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203 int i, j, k; |
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204 |
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205 while (1) { |
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206 /* find the longest match in this chunk */ |
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207 k = longest_match(a, b, pos, a1, a2, b1, b2, &i, &j); |
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208 if (!k) |
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209 return l; |
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210 |
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211 /* and recurse on the remaining chunks on either side */ |
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212 l = recurse(a, b, pos, a1, i, b1, j, l); |
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213 if (!l) |
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214 return NULL; |
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215 |
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216 l->next = (struct bdiff_hunk *)malloc(sizeof(struct bdiff_hunk)); |
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217 if (!l->next) |
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218 return NULL; |
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219 |
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220 l = l->next; |
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221 l->a1 = i; |
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222 l->a2 = i + k; |
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223 l->b1 = j; |
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224 l->b2 = j + k; |
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225 l->next = NULL; |
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226 |
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227 /* tail-recursion didn't happen, so do equivalent iteration */ |
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228 a1 = i + k; |
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229 b1 = j + k; |
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230 } |
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231 } |
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232 |
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233 int bdiff_diff(struct bdiff_line *a, int an, struct bdiff_line *b, |
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234 int bn, struct bdiff_hunk *base) |
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235 { |
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236 struct bdiff_hunk *curr; |
474 | 237 struct pos *pos; |
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238 int t, count = 0; |
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239 |
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240 /* allocate and fill arrays */ |
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241 t = equatelines(a, an, b, bn); |
5571 | 242 pos = (struct pos *)calloc(bn ? bn : 1, sizeof(struct pos)); |
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243 |
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244 if (pos && t) { |
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245 /* generate the matching block list */ |
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246 |
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247 curr = recurse(a, b, pos, 0, an, 0, bn, base); |
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248 if (!curr) |
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249 return -1; |
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250 |
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251 /* sentinel end hunk */ |
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252 curr->next = (struct bdiff_hunk *)malloc(sizeof(struct bdiff_hunk)); |
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253 if (!curr->next) |
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254 return -1; |
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255 curr = curr->next; |
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256 curr->a1 = curr->a2 = an; |
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257 curr->b1 = curr->b2 = bn; |
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258 curr->next = NULL; |
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259 } |
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260 |
474 | 261 free(pos); |
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262 |
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263 /* normalize the hunk list, try to push each hunk towards the end */ |
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264 for (curr = base->next; curr; curr = curr->next) { |
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265 struct bdiff_hunk *next = curr->next; |
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266 |
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267 if (!next) |
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268 break; |
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269 |
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270 if (curr->a2 == next->a1 || curr->b2 == next->b1) |
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271 while (curr->a2 < an && curr->b2 < bn |
29012
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bdiff: fix latent normalization bug
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272 && next->a1 < next->a2 |
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273 && next->b1 < next->b2 |
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8bcda4c76820
bdiff: fold in shift calculation in normalize
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274 && !cmp(a + curr->a2, b + curr->b2)) { |
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275 curr->a2++; |
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276 next->a1++; |
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277 curr->b2++; |
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278 next->b1++; |
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279 } |
7104
9514cbb6e4f6
bdiff: normalize the diff (issue1295)
Benoit Boissinot <benoit.boissinot@ens-lyon.org>
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280 } |
9514cbb6e4f6
bdiff: normalize the diff (issue1295)
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281 |
13089
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bdiff: dynamically allocate hunks
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282 for (curr = base->next; curr; curr = curr->next) |
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283 count++; |
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284 return count; |
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285 } |
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286 |
29541
9631ff5ebbeb
bdiff: split bdiff into cpy-aware and cpy-agnostic part
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287 void bdiff_freehunks(struct bdiff_hunk *l) |
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288 { |
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4ce1fc91e30a
bdiff: rename functions and structs to be amenable for later exporting
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289 struct bdiff_hunk *n; |
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290 for (; l; l = n) { |
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291 n = l->next; |
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292 free(l); |
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293 } |
433
79c694462294
Add bdiff.blocks / minor performance tweaks
mpm@selenic.com
parents:
411
diff
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294 } |
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Add bdiff.blocks / minor performance tweaks
mpm@selenic.com
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295 |
400
8b067bde6679
Add a fast binary diff extension (not yet used)
mpm@selenic.com
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296 |