root / proj / libs / graph / src / font.c @ 355
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1 | 182 | up20180642 | #include <lcom/lcf.h> |
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2 | |||
3 | #include "font.h" |
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4 | |||
5 | 183 | up20180642 | #include "xpm_utils.h" |
6 | #include "graph.h" |
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7 | #include "utils.h" |
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8 | #include "errors.h" |
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9 | 188 | up20180642 | #include <assert.h> |
10 | 183 | up20180642 | |
11 | 319 | up20180642 | /**
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12 | * @brief Text glyph. Represents a letter that can be drawn.
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13 | */
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14 | 317 | up20180642 | typedef struct { |
15 | 182 | up20180642 | uint16_t w, h; |
16 | uint8_t *map; |
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17 | 317 | up20180642 | } glyph_t; |
18 | 319 | up20180642 | /**
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19 | * @brief Construct glyph.
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20 | * @param xpm XPM describing the glyph
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21 | * @return Pointer to created glyph
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22 | */
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23 | 323 | up20180642 | static glyph_t* (glyph_ctor)(const char *const *xpm){ |
24 | 183 | up20180642 | if(xpm == NULL) return NULL; |
25 | 182 | up20180642 | glyph_t *ret = malloc(sizeof(glyph_t));
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26 | if(ret == NULL) return NULL; |
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27 | enum xpm_image_type type = XPM_8_8_8_8;
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28 | xpm_image_t img; |
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29 | 213 | up20180642 | ret->map = NULL;
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30 | uint8_t *map = xpm_load((xpm_map_t)xpm, type, &img); |
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31 | if(map == NULL){ |
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32 | 182 | up20180642 | free(ret); |
33 | return NULL; |
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34 | } |
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35 | ret->w = img.width; |
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36 | ret->h = img.height; |
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37 | 213 | up20180642 | ret->map = malloc(ret->w*ret->h*sizeof(uint8_t));
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38 | if(ret->map == NULL){ |
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39 | free(ret); |
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40 | return NULL; |
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41 | } |
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42 | for(unsigned i = 0; i < ret->w*ret->h; ++i){ |
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43 | ret->map[i] = map[4*i+3]; |
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44 | } |
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45 | 182 | up20180642 | return ret;
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46 | } |
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47 | 319 | up20180642 | /**
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48 | * @brief Destruct glyph.
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49 | * @param p Pointer to glyph to be destroyed
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50 | */
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51 | 183 | up20180642 | static void (glyph_dtor)(glyph_t *p){ |
52 | 182 | up20180642 | if(p == NULL) return; |
53 | free(p->map); |
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54 | free(p); |
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55 | } |
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56 | 319 | up20180642 | /**
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57 | * @brief Draw glyph to an alpha-buffer.
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58 | *
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59 | * An alpha-buffer is an array of uint8_t that represents transparencies.
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60 | * It proves fit as a tool for drawing text.
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61 | * @param p Pointer to glyph to be drawn
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62 | * @param x X-position to draw the glyph
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63 | * @param y Y-position to draw the glyph
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64 | * @param alp_buf Alpha-buffer to which the glyph will be drawn
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65 | * @param W Width of the alpha-buffer
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66 | * @param H Height of the alpha-buffer
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67 | */
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68 | 183 | up20180642 | static int (glyph_draw_to_alpha_buffer)(const glyph_t *p, int16_t x, int16_t y, uint8_t *alp_buf, uint16_t W, uint16_t H){ |
69 | if(p == NULL) return NULL_PTR; |
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70 | for(int16_t h = 0; h < p->h; ++h){ |
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71 | for(int16_t w = 0; w < p->w; ++w){ |
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72 | 213 | up20180642 | uint8_t a = *(p->map + w + h*p->w); |
73 | 208 | up20180642 | int16_t x_ = x+w, y_ = y-p->h+h; |
74 | 323 | up20180642 | int32_t pos = x_ +y_*W; |
75 | if(0 <= pos && pos < W*H) alp_buf[pos] = a; |
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76 | 183 | up20180642 | } |
77 | } |
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78 | return SUCCESS;
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79 | } |
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80 | |||
81 | 314 | up20180642 | /// FONT
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82 | 183 | up20180642 | struct font{
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83 | size_t nchars; |
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84 | glyph_t **glyphs; |
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85 | }; |
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86 | font_t* (font_ctor)(const char *s){ |
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87 | font_t *ret = malloc(sizeof(font_t));
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88 | if(ret == NULL) return NULL; |
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89 | ret->nchars = 128;
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90 | ret->glyphs = malloc(ret->nchars*sizeof(glyph_t*));
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91 | if(ret->glyphs == NULL){ |
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92 | free(ret->glyphs); |
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93 | free(ret); |
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94 | return NULL; |
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95 | } |
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96 | 192 | up20180642 | int good = false; |
97 | 183 | up20180642 | char filepath[1024]; |
98 | for(size_t i = 0; i < ret->nchars; ++i){ |
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99 | sprintf(filepath, "%s/ascii%03d.xpm2", s, i);
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100 | char **xpm = xpm_load_xpm2(filepath);
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101 | 323 | up20180642 | ret->glyphs[i] = glyph_ctor((const char *const *)xpm); |
102 | 192 | up20180642 | if(ret->glyphs[i] != NULL) good = true; |
103 | 183 | up20180642 | } |
104 | 192 | up20180642 | if(good) return ret; |
105 | else{
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106 | //font_dtor(ret);
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107 | return NULL; |
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108 | } |
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109 | 183 | up20180642 | } |
110 | 319 | up20180642 | void (font_dtor)(font_t *p){
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111 | if(p == NULL) return; |
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112 | 183 | up20180642 | for(size_t i = 0; i < p->nchars; ++i) |
113 | glyph_dtor(p->glyphs[i]); |
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114 | free(p->glyphs); |
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115 | free(p); |
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116 | } |
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117 | |||
118 | 314 | up20180642 | static font_t *consolas = NULL; |
119 | static font_t *default_font = NULL; |
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120 | 313 | up20180642 | |
121 | int (font_init)(void){ |
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122 | consolas = font_ctor("/home/lcom/labs/proj/media/font/Consolas/xpm2");
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123 | if(consolas == NULL) return NULL_PTR; |
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124 | default_font = consolas; |
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125 | return SUCCESS;
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126 | } |
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127 | 314 | up20180642 | const font_t* font_get_default(void){ return default_font; } |
128 | const font_t* font_get_consolas(void){ return consolas; } |
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129 | 319 | up20180642 | void (font_free)(void){ |
130 | font_dtor(consolas); |
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131 | 313 | up20180642 | consolas = NULL;
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132 | default_font = NULL;
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133 | } |
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134 | |||
135 | 314 | up20180642 | /// TEXT
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136 | 333 | up20180642 | #include "text.h" |
137 | |||
138 | 183 | up20180642 | struct text{
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139 | const font_t *fnt;
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140 | char *txt;
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141 | int16_t x, y; |
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142 | 323 | up20180642 | uint16_t size; |
143 | 314 | up20180642 | text_valign valign; |
144 | text_halign halign; |
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145 | 323 | up20180642 | uint32_t color; |
146 | 183 | up20180642 | }; |
147 | text_t* (text_ctor)(const font_t *fnt, const char *txt){ |
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148 | if(fnt == NULL) return NULL; |
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149 | text_t *ret = malloc(sizeof(text_t));
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150 | if(ret == NULL) return NULL; |
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151 | ret->fnt = fnt; |
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152 | ret->txt = NULL;
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153 | 314 | up20180642 | text_set_string(ret, txt); |
154 | 183 | up20180642 | ret->x = 0;
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155 | ret->y = 0;
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156 | 188 | up20180642 | ret->size = 25;
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157 | 253 | up20180642 | ret->color = GRAPH_BLACK; |
158 | 188 | up20180642 | ret->valign = text_valign_top; |
159 | ret->halign = text_halign_left; |
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160 | 183 | up20180642 | return ret;
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161 | } |
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162 | void (text_dtor)(text_t *p){
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163 | if(p == NULL) return; |
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164 | free(p->txt); |
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165 | free(p); |
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166 | } |
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167 | 314 | up20180642 | void (text_set_string) (text_t *p, const char *txt){ |
168 | 183 | up20180642 | size_t sz = strlen(txt); |
169 | p->txt = realloc(p->txt, (sz+1)*sizeof(char)); |
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170 | if(p->txt == NULL) return; |
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171 | strcpy(p->txt, txt); |
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172 | } |
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173 | 319 | up20180642 | const char* (text_get_string)(const text_t *p){return p->txt; } |
174 | 314 | up20180642 | void (text_set_pos) (text_t *p, int16_t x, int16_t y){ p->x = x; p->y = y; }
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175 | 323 | up20180642 | void (text_set_size) (text_t *p, uint16_t size ){ p->size = size ; }
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176 | 314 | up20180642 | void (text_set_color) (text_t *p, uint32_t color ){ p->color = color ; }
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177 | void (text_set_valign)(text_t *p, text_valign valign ){ p->valign = valign; }
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178 | void (text_set_halign)(text_t *p, text_halign halign ){ p->halign = halign; }
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179 | 297 | up20180642 | int16_t (text_get_x) (const text_t *p){ return p->x; } |
180 | int16_t (text_get_y) (const text_t *p){ return p->y; } |
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181 | 188 | up20180642 | int (text_draw)(const text_t *p){ |
182 | if(p == NULL) return NULL_PTR; |
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183 | int ret = SUCCESS;
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184 | // Get buffer with rescaled text
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185 | uint8_t *alp_new_buf = NULL;
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186 | uint16_t newH, newW;{ |
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187 | const size_t len = strlen(p->txt);
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188 | uint16_t W = 0, H = 0; { |
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189 | for(size_t i = 0; i < len; ++i){ |
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190 | const glyph_t *g = p->fnt->glyphs[(size_t)p->txt[i]];
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191 | 335 | up20180642 | if(g != NULL){ W += g->w; H = max_u16(H, g->h); } |
192 | 188 | up20180642 | } |
193 | } |
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194 | uint8_t *alp_buf = malloc(W*H); |
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195 | if(alp_buf == NULL) return ALLOC_ERROR;{ |
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196 | 323 | up20180642 | int16_t y = (int16_t)H; |
197 | 188 | up20180642 | int16_t x = 0;
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198 | for(size_t i = 0; i < len; ++i){ |
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199 | const glyph_t *g = p->fnt->glyphs[(size_t)p->txt[i]];
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200 | if(g != NULL){ |
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201 | if((ret = glyph_draw_to_alpha_buffer(g, x, y, alp_buf, W, H))) return ret; |
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202 | x += g->w; |
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203 | } |
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204 | } |
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205 | } |
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206 | 183 | up20180642 | |
207 | 188 | up20180642 | double factor = (double)p->size/(double)H; |
208 | |||
209 | 323 | up20180642 | newH = (uint16_t)(H*factor); |
210 | newW = (uint16_t)(W*factor); |
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211 | 188 | up20180642 | alp_new_buf = malloc(newW*newH); |
212 | if(alp_new_buf == NULL) return ALLOC_ERROR; |
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213 | |||
214 | 323 | up20180642 | for(uint16_t newy = 0; newy < newH; ++newy){ |
215 | uint16_t y = (uint16_t)(newy/factor); |
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216 | for(uint16_t newx = 0; newx < newW; ++newx){ |
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217 | uint16_t x = (uint16_t)(newx/factor); |
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218 | 188 | up20180642 | *(alp_new_buf+newx+newy*newW) = *(alp_buf+x+y*W); |
219 | 183 | up20180642 | } |
220 | } |
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221 | 188 | up20180642 | free(alp_buf); |
222 | } |
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223 | // Get initial value of x
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224 | int16_t initx;{ |
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225 | switch(p->halign){
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226 | case text_halign_left : initx = p->x ; break; |
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227 | case text_halign_center: initx = p->x - newW/2; break; |
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228 | case text_halign_right : initx = p->x - newW ; break; |
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229 | 323 | up20180642 | //default: return LOGIC_ERROR;
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230 | 183 | up20180642 | } |
231 | } |
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232 | 188 | up20180642 | // Get initial value of y
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233 | int16_t inity;{ |
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234 | switch(p->valign){
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235 | case text_valign_top : inity = p->y ; break; |
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236 | case text_valign_center: inity = p->y - newH/2; break; |
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237 | case text_valign_bottom: inity = p->y - newH ; break; |
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238 | 323 | up20180642 | //default: return LOGIC_ERROR;
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239 | 183 | up20180642 | } |
240 | } |
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241 | 188 | up20180642 | // Draw text
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242 | 307 | up20180642 | for(int16_t x, y, newy = 0; newy < newH; ++newy){ |
243 | y = inity+newy; |
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244 | 188 | up20180642 | for(int16_t newx = 0; newx < newW; ++newx){ |
245 | 307 | up20180642 | x = initx+newx; |
246 | if(!(0 <= x && x < graph_get_XRes() && |
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247 | 0 <= y && y < graph_get_YRes())) continue; |
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248 | 188 | up20180642 | uint8_t a = *(alp_new_buf+newx+newy*newW); |
249 | 323 | up20180642 | if(a < ALPHA_THRESHOLD) graph_set_pixel((uint16_t)x,(uint16_t)y,p->color);
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250 | 188 | up20180642 | } |
251 | } |
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252 | free(alp_new_buf); |
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253 | return SUCCESS;
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254 | 183 | up20180642 | } |