annotate src/rotate.c @ 1461:31189b5d832a

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author Thinker K.F. Li <thinker@codemud.net>
date Sun, 17 Apr 2011 01:08:26 +0800
parents 586e50f82c1f
children
rev   line source
822
586e50f82c1f Unify coding style tag for emacs and vim.
Shih-Yuan Lee (FourDollars) <fourdollars@gmail.com>
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1 // -*- indent-tabs-mode: t; tab-width: 8; c-basic-offset: 4; -*-
586e50f82c1f Unify coding style tag for emacs and vim.
Shih-Yuan Lee (FourDollars) <fourdollars@gmail.com>
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2 // vim: sw=4:ts=8:sts=4
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Thinker K.F. Li <thinker@branda.to>
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3 #include <stdio.h>
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4 #include <stdlib.h>
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5 #include <string.h>
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6 #include <math.h>
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530bb7728546 Move header files to $(top_srcdir)/include/ and prefixed with 'mb_'.
Thinker K.F. Li <thinker@branda.to>
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7 #include "mb_animate.h"
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Thinker K.F. Li <thinker@branda.to>
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8
Thinker K.F. Li <thinker@branda.to>
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9 static float comp_mb_timeval_ratio(const mb_timeval_t *a,
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10 const mb_timeval_t *b) {
Thinker K.F. Li <thinker@branda.to>
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11 float ratio;
Thinker K.F. Li <thinker@branda.to>
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12
Thinker K.F. Li <thinker@branda.to>
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13 ratio = (float)MB_TIMEVAL_SEC(a) * 1000000.0 + (float)MB_TIMEVAL_USEC(a);
Thinker K.F. Li <thinker@branda.to>
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14 ratio /= (float)MB_TIMEVAL_SEC(b) * 1000000.0 + (float)MB_TIMEVAL_USEC(b);
Thinker K.F. Li <thinker@branda.to>
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15 return ratio;
Thinker K.F. Li <thinker@branda.to>
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16 }
Thinker K.F. Li <thinker@branda.to>
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17
Thinker K.F. Li <thinker@branda.to>
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18 /*! \brief Animation action to rotate a coordinate.
Thinker K.F. Li <thinker@branda.to>
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19 */
Thinker K.F. Li <thinker@branda.to>
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20 struct _mb_rotate {
Thinker K.F. Li <thinker@branda.to>
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21 mb_action_t action;
Thinker K.F. Li <thinker@branda.to>
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22
Thinker K.F. Li <thinker@branda.to>
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23 co_aix angle1, angle2;
Thinker K.F. Li <thinker@branda.to>
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24 coord_t *coord;
Thinker K.F. Li <thinker@branda.to>
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25
Thinker K.F. Li <thinker@branda.to>
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26 mb_timeval_t start_time;
Thinker K.F. Li <thinker@branda.to>
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27 const mb_timeval_t *playing_time;
Thinker K.F. Li <thinker@branda.to>
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28 };
Thinker K.F. Li <thinker@branda.to>
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29 typedef struct _mb_rotate mb_rotate_t;
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30
Thinker K.F. Li <thinker@branda.to>
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31 static void mb_rotate_start(mb_action_t *act,
Thinker K.F. Li <thinker@branda.to>
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32 const mb_timeval_t *now,
Thinker K.F. Li <thinker@branda.to>
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33 const mb_timeval_t *playing_time,
Thinker K.F. Li <thinker@branda.to>
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34 redraw_man_t *rdman) {
Thinker K.F. Li <thinker@branda.to>
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35 mb_rotate_t *rotate = (mb_rotate_t *)act;
Thinker K.F. Li <thinker@branda.to>
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36 co_aix *matrix;
Thinker K.F. Li <thinker@branda.to>
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37 float _sin, _cos;
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38
Thinker K.F. Li <thinker@branda.to>
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39 _sin = sinf(rotate->angle1);
Thinker K.F. Li <thinker@branda.to>
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40 _cos = cosf(rotate->angle1);
Thinker K.F. Li <thinker@branda.to>
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41
Thinker K.F. Li <thinker@branda.to>
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42 matrix = rotate->coord->matrix;
Thinker K.F. Li <thinker@branda.to>
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43 memset(matrix, 0, sizeof(co_aix) * 6);
Thinker K.F. Li <thinker@branda.to>
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44 matrix[0] = _cos;
Thinker K.F. Li <thinker@branda.to>
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45 matrix[1] = -_sin;
Thinker K.F. Li <thinker@branda.to>
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46 matrix[3] = _sin;
Thinker K.F. Li <thinker@branda.to>
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47 matrix[4] = _cos;
Thinker K.F. Li <thinker@branda.to>
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48 rdman_coord_changed(rdman, rotate->coord);
Thinker K.F. Li <thinker@branda.to>
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49
Thinker K.F. Li <thinker@branda.to>
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50 MB_TIMEVAL_CP(&rotate->start_time, now);
Thinker K.F. Li <thinker@branda.to>
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51 rotate->playing_time = playing_time;
Thinker K.F. Li <thinker@branda.to>
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52 }
Thinker K.F. Li <thinker@branda.to>
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53
Thinker K.F. Li <thinker@branda.to>
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54 static void mb_rotate_step(mb_action_t *act, const mb_timeval_t *now,
Thinker K.F. Li <thinker@branda.to>
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55 redraw_man_t *rdman) {
Thinker K.F. Li <thinker@branda.to>
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56 mb_rotate_t *rotate = (mb_rotate_t *)act;
Thinker K.F. Li <thinker@branda.to>
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57 mb_timeval_t diff;
Thinker K.F. Li <thinker@branda.to>
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58 co_aix *matrix;
Thinker K.F. Li <thinker@branda.to>
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59 float ratio;
Thinker K.F. Li <thinker@branda.to>
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60 float angle;
Thinker K.F. Li <thinker@branda.to>
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61 float _sin, _cos;
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62
Thinker K.F. Li <thinker@branda.to>
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63 MB_TIMEVAL_CP(&diff, now);
Thinker K.F. Li <thinker@branda.to>
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64 MB_TIMEVAL_DIFF(&diff, &rotate->start_time);
Thinker K.F. Li <thinker@branda.to>
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65 ratio = comp_mb_timeval_ratio(&diff, rotate->playing_time);
Thinker K.F. Li <thinker@branda.to>
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66
Thinker K.F. Li <thinker@branda.to>
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67 angle = rotate->angle1 * (1 - ratio) + rotate->angle2 * ratio;
Thinker K.F. Li <thinker@branda.to>
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68 _sin = sinf(angle);
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69 _cos = cosf(angle);
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70
Thinker K.F. Li <thinker@branda.to>
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71 matrix = rotate->coord->matrix;
Thinker K.F. Li <thinker@branda.to>
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72 matrix[0] = _cos;
Thinker K.F. Li <thinker@branda.to>
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73 matrix[1] = -_sin;
Thinker K.F. Li <thinker@branda.to>
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74 matrix[3] = _sin;
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75 matrix[4] = _cos;
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76 rdman_coord_changed(rdman, rotate->coord);
Thinker K.F. Li <thinker@branda.to>
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77 }
Thinker K.F. Li <thinker@branda.to>
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78
Thinker K.F. Li <thinker@branda.to>
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79 static void mb_rotate_stop(mb_action_t *act, const mb_timeval_t *now,
Thinker K.F. Li <thinker@branda.to>
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80 redraw_man_t *rdman) {
Thinker K.F. Li <thinker@branda.to>
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81 mb_rotate_t *rotate = (mb_rotate_t *)act;
Thinker K.F. Li <thinker@branda.to>
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82 co_aix *matrix;
Thinker K.F. Li <thinker@branda.to>
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83 float _sin, _cos;
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84
Thinker K.F. Li <thinker@branda.to>
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85 _sin = sinf(rotate->angle2);
Thinker K.F. Li <thinker@branda.to>
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86 _cos = cosf(rotate->angle2);
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87
Thinker K.F. Li <thinker@branda.to>
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88 matrix = rotate->coord->matrix;
Thinker K.F. Li <thinker@branda.to>
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89 matrix[0] = _cos;
Thinker K.F. Li <thinker@branda.to>
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90 matrix[1] = -_sin;
Thinker K.F. Li <thinker@branda.to>
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91 matrix[3] = _sin;
Thinker K.F. Li <thinker@branda.to>
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92 matrix[4] = _cos;
Thinker K.F. Li <thinker@branda.to>
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93 rdman_coord_changed(rdman, rotate->coord);
Thinker K.F. Li <thinker@branda.to>
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94 }
Thinker K.F. Li <thinker@branda.to>
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95
Thinker K.F. Li <thinker@branda.to>
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96 static void mb_rotate_free(mb_action_t *act) {
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97 free(act);
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98 }
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99
Thinker K.F. Li <thinker@branda.to>
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100 mb_action_t *mb_rotate_new(float angle1, float angle2,
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101 coord_t *coord,
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102 mb_word_t *word) {
Thinker K.F. Li <thinker@branda.to>
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103 mb_rotate_t *rotate;
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104
Thinker K.F. Li <thinker@branda.to>
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105 rotate = (mb_rotate_t *)malloc(sizeof(mb_rotate_t));
Thinker K.F. Li <thinker@branda.to>
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106 if(rotate == NULL)
Thinker K.F. Li <thinker@branda.to>
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107 return NULL;
Thinker K.F. Li <thinker@branda.to>
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108
Thinker K.F. Li <thinker@branda.to>
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109 rotate->angle1 = angle1;
Thinker K.F. Li <thinker@branda.to>
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110 rotate->angle2 = angle2;
Thinker K.F. Li <thinker@branda.to>
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111 rotate->coord = coord;
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112
Thinker K.F. Li <thinker@branda.to>
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113 rotate->action.start = mb_rotate_start;
Thinker K.F. Li <thinker@branda.to>
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114 rotate->action.step = mb_rotate_step;
Thinker K.F. Li <thinker@branda.to>
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115 rotate->action.stop = mb_rotate_stop;
Thinker K.F. Li <thinker@branda.to>
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116 rotate->action.free = mb_rotate_free;
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117
Thinker K.F. Li <thinker@branda.to>
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118 mb_word_add_action(word, (mb_action_t *)rotate);
Thinker K.F. Li <thinker@branda.to>
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119
Thinker K.F. Li <thinker@branda.to>
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120 return (mb_action_t *)rotate;
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121 }