Mercurial > hg
annotate mercurial/bdiff.c @ 33267:dba9f88659a3
phabricator: rework phabread to reduce memory usage and round-trips
This patch reworked phabread a bit so it fetches the lightweight
"Differential Revision" metadata for a stack first. Then read other data.
This allows the code to:
a) send 1 request to get all `hg:meta` data instead of N requests
b) patches are read in desired order, no need to buffer the output
"b)" reduces the memory usage from O(N^2) to O(N) since we no longer keep
old patch contents in memory.
The above `N` means the number of patches in the stack.
author | Jun Wu <quark@fb.com> |
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date | Tue, 04 Jul 2017 16:36:48 -0700 |
parents | d195fa651b51 |
children | ff4c9c6263de |
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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 |
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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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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 *)malloc(sizeof(struct bdiff_line) * i); |
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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 || memcmp(a->l, b->l, a->len); |
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83 } |
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84 |
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85 static int equatelines(struct bdiff_line *a, int an, struct bdiff_line *b, |
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86 int bn) |
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87 { |
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88 int i, j, buckets = 1, t, scale; |
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89 struct pos *h = NULL; |
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90 |
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91 /* build a hash table of the next highest power of 2 */ |
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92 while (buckets < bn + 1) |
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93 buckets *= 2; |
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94 |
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95 /* try to allocate a large hash table to avoid collisions */ |
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96 for (scale = 4; scale; scale /= 2) { |
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97 h = (struct pos *)malloc(scale * buckets * sizeof(struct pos)); |
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98 if (h) |
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99 break; |
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100 } |
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474 | 102 if (!h) |
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103 return 0; |
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104 |
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105 buckets = buckets * scale - 1; |
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106 |
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107 /* clear the hash table */ |
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109 h[i].pos = -1; |
474 | 110 h[i].len = 0; |
111 } | |
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112 |
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113 /* add lines to the hash table chains */ |
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114 for (i = 0; i < bn; i++) { |
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115 /* find the equivalence class */ |
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116 for (j = b[i].hash & buckets; h[j].pos != -1; |
474 | 117 j = (j + 1) & buckets) |
118 if (!cmp(b + i, b + h[j].pos)) | |
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119 break; |
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120 |
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121 /* add to the head of the equivalence class */ |
474 | 122 b[i].n = h[j].pos; |
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123 b[i].e = j; |
474 | 124 h[j].pos = i; |
125 h[j].len++; /* keep track of popularity */ | |
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126 } |
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127 |
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128 /* compute popularity threshold */ |
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129 t = (bn >= 31000) ? bn / 1000 : 1000000 / (bn + 1); |
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130 |
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131 /* match items in a to their equivalence class in b */ |
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132 for (i = 0; i < an; i++) { |
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133 /* find the equivalence class */ |
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134 for (j = a[i].hash & buckets; h[j].pos != -1; |
474 | 135 j = (j + 1) & buckets) |
136 if (!cmp(a + i, b + h[j].pos)) | |
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137 break; |
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138 |
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139 a[i].e = j; /* use equivalence class for quick compare */ |
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140 if (h[j].len <= t) |
474 | 141 a[i].n = h[j].pos; /* point to head of match list */ |
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142 else |
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143 a[i].n = -1; /* too popular */ |
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144 } |
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145 |
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146 /* discard hash tables */ |
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147 free(h); |
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148 return 1; |
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149 } |
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150 |
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151 static int longest_match(struct bdiff_line *a, struct bdiff_line *b, |
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152 struct pos *pos, |
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153 int a1, int a2, int b1, int b2, int *omi, int *omj) |
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154 { |
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155 int mi = a1, mj = b1, mk = 0, i, j, k, half, bhalf; |
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156 |
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157 /* window our search on large regions to better bound |
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158 worst-case performance. by choosing a window at the end, we |
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159 reduce skipping overhead on the b chains. */ |
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160 if (a2 - a1 > 30000) |
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161 a1 = a2 - 30000; |
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162 |
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163 half = (a1 + a2 - 1) / 2; |
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164 bhalf = (b1 + b2 - 1) / 2; |
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165 |
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166 for (i = a1; i < a2; i++) { |
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167 /* skip all lines in b after the current block */ |
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168 for (j = a[i].n; j >= b2; j = b[j].n) |
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169 ; |
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170 |
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171 /* loop through all lines match a[i] in b */ |
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172 for (; j >= b1; j = b[j].n) { |
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173 /* does this extend an earlier match? */ |
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174 for (k = 1; j - k >= b1 && i - k >= a1; k++) { |
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175 /* reached an earlier match? */ |
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176 if (pos[j - k].pos == i - k) { |
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177 k += pos[j - k].len; |
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178 break; |
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179 } |
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180 /* previous line mismatch? */ |
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181 if (a[i - k].e != b[j - k].e) |
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182 break; |
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183 } |
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184 |
474 | 185 pos[j].pos = i; |
186 pos[j].len = k; | |
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187 |
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188 /* best match so far? we prefer matches closer |
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189 to the middle to balance recursion */ |
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190 if (k > mk) { |
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191 /* a longer match */ |
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192 mi = i; |
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193 mj = j; |
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194 mk = k; |
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195 } else if (k == mk) { |
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196 if (i > mi && i <= half && j > b1) { |
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197 /* same match but closer to half */ |
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198 mi = i; |
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199 mj = j; |
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200 } else if (i == mi && (mj > bhalf || i == a1)) { |
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201 /* same i but best earlier j */ |
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202 mj = j; |
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203 } |
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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 if (mk) { |
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209 mi = mi - mk + 1; |
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210 mj = mj - mk + 1; |
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211 } |
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212 |
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213 /* expand match to include subsequent popular lines */ |
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214 while (mi + mk < a2 && mj + mk < b2 && |
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215 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, |
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226 int a1, int a2, int b1, 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 = (struct bdiff_hunk *)malloc(sizeof(struct bdiff_hunk)); |
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242 if (!l->next) |
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243 return NULL; |
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244 |
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245 l = l->next; |
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246 l->a1 = i; |
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247 l->a2 = i + k; |
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248 l->b1 = j; |
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249 l->b2 = j + k; |
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250 l->next = NULL; |
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251 |
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252 /* tail-recursion didn't happen, so do equivalent iteration */ |
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253 a1 = i + k; |
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254 b1 = j + k; |
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255 } |
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256 } |
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257 |
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258 int bdiff_diff(struct bdiff_line *a, int an, struct bdiff_line *b, |
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259 int bn, struct bdiff_hunk *base) |
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260 { |
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261 struct bdiff_hunk *curr; |
474 | 262 struct pos *pos; |
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263 int t, count = 0; |
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264 |
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265 /* allocate and fill arrays */ |
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266 t = equatelines(a, an, b, bn); |
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268 |
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269 if (pos && t) { |
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270 /* generate the matching block list */ |
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271 |
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272 curr = recurse(a, b, pos, 0, an, 0, bn, base); |
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273 if (!curr) |
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274 return -1; |
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275 |
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276 /* sentinel end hunk */ |
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277 curr->next = (struct bdiff_hunk *)malloc(sizeof(struct bdiff_hunk)); |
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278 if (!curr->next) |
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279 return -1; |
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280 curr = curr->next; |
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281 curr->a1 = curr->a2 = an; |
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282 curr->b1 = curr->b2 = bn; |
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283 curr->next = NULL; |
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284 } |
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285 |
474 | 286 free(pos); |
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287 |
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288 /* normalize the hunk list, try to push each hunk towards the end */ |
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289 for (curr = base->next; curr; curr = curr->next) { |
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290 struct bdiff_hunk *next = curr->next; |
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291 |
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292 if (!next) |
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293 break; |
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294 |
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295 if (curr->a2 == next->a1 || curr->b2 == next->b1) |
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296 while (curr->a2 < an && curr->b2 < bn |
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297 && next->a1 < next->a2 |
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298 && next->b1 < next->b2 |
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299 && !cmp(a + curr->a2, b + curr->b2)) { |
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300 curr->a2++; |
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301 next->a1++; |
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302 curr->b2++; |
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303 next->b1++; |
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304 } |
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305 } |
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306 |
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307 for (curr = base->next; curr; curr = curr->next) |
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308 count++; |
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309 return count; |
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310 } |
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311 |
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312 void bdiff_freehunks(struct bdiff_hunk *l) |
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313 { |
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314 struct bdiff_hunk *n; |
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315 for (; l; l = n) { |
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316 n = l->next; |
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317 free(l); |
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318 } |
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319 } |
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320 |
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321 |