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Rev | Author | Line No. | Line |
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1670 | pj | 1 | #include "hlpdemo.h" |
2 | #include <drivers/shark_keyb26.h> |
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3 | #include "snapshot.h" |
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4 | |||
5 | //#define ESC 27 |
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6 | |||
7 | /* |
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8 | #define DEBUG |
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9 | */ |
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10 | |||
11 | /* tipologia di task e mutex */ |
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12 | HARD_TASK_MODEL m; |
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13 | |||
14 | /* scala temporale del sistema in us */ |
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15 | #define TIMESCALE (100 * 1000) |
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16 | |||
17 | /* buffer che contiene la configurazione letto in nrt mode */ |
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18 | extern char myfilebuf[1000]; |
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19 | |||
20 | extern int read_conf(char *, unsigned int); |
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21 | extern void print_taskconf(taskconf_list_t *); |
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22 | |||
23 | void trace_info_hlp(void); |
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24 | |||
25 | /* tempo dell'avvio */ |
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26 | TIME start; |
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27 | |||
28 | /* struttura dati contenente la configurazione */ |
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29 | taskconf_list_t *taskconf = NULL; |
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30 | |||
31 | /* lista dei mutex del sistema */ |
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32 | mutex_list_t *mutexes = NULL; |
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33 | |||
34 | #define YMENU 10 /* menu level */ |
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35 | #define XMIN 50 |
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36 | #define XMAX 600 |
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37 | #define YMIN 100 |
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38 | #define YMAX 450 |
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39 | #define YFLOOR(index) YMIN + (50 * (index + 1)) |
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40 | |||
41 | #define COLWHITE rgb16(255,255,255) |
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42 | #define COLLOAD rgb16(180,180,180) |
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43 | |||
44 | /*--------------------------------------------------------------*/ |
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45 | |||
46 | /* posizione lungo l'asse x dopo t sec. */ |
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47 | int xpost(unsigned int t) |
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48 | { |
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49 | int ret; |
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50 | |||
51 | ret = XMIN + 10 + (((sys_gettime(NULL) - start) / TIMESCALE) + t); |
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52 | if (ret > XMAX) |
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53 | ret = XMAX; |
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54 | if (ret < XMIN) |
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55 | ret = XMIN; |
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56 | |||
57 | return ret; |
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58 | } |
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59 | |||
60 | /* posizione lungo l'asse x al tempo t corrente */ |
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61 | int xpos(void) |
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62 | { |
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63 | return xpost(0); |
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64 | } |
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65 | |||
66 | typedef struct color_stack { |
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67 | int color; |
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68 | struct color_stack *next; |
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69 | } color_stack_t; |
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70 | |||
71 | void color_stack_push(int color, color_stack_t **head) |
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72 | { |
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73 | color_stack_t *new; |
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74 | |||
75 | new = (color_stack_t *)kern_alloc(sizeof(color_stack_t)); |
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76 | new->color = color; |
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77 | new->next = *head; |
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78 | |||
79 | *head = new; |
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80 | } |
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81 | |||
82 | int color_stack_pop(color_stack_t **head) |
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83 | { |
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84 | int ret = COLLOAD; |
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85 | color_stack_t *tmp = *head; |
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86 | |||
87 | if (*head != NULL) |
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88 | { |
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89 | ret = (*head)->color; |
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90 | *head = (*head)->next; |
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91 | kern_free(tmp, (sizeof(color_stack_t))); |
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92 | } |
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93 | |||
94 | return ret; |
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95 | } |
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96 | |||
97 | |||
98 | void load(int time, int i, int color, char *name) |
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99 | { |
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100 | int j; |
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101 | TIME last; |
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102 | char buf[50]; |
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103 | |||
104 | for (j = 0; j < time; j++) |
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105 | { |
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106 | last = sys_gettime(NULL); |
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107 | |||
108 | grx_line(xpos(), YFLOOR(i), xpos(), YFLOOR(i) - 10, color); |
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109 | sprintf(buf, |
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110 | "Time: %.4d, task active: %.5s(PID=%.2d, Shadow=%.2d)", |
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111 | (int)((sys_gettime(NULL) - start) / TIMESCALE) + 2, |
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112 | name, |
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113 | exec, |
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114 | exec_shadow); |
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115 | grx_text(buf, 100,100,COLWHITE,0); |
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116 | |||
117 | while (sys_gettime(NULL) - last + (TIMESCALE/100) < TIMESCALE); |
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118 | } |
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119 | } |
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120 | |||
121 | TASK Ji(void *arg) |
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122 | { |
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123 | taskconf_list_t *cur = (taskconf_list_t *)arg; |
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124 | action_list_t *act; |
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125 | color_stack_t *colorstack; |
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126 | |||
127 | color_stack_push(COLLOAD, &colorstack); |
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128 | |||
129 | while (1) |
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130 | { |
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131 | |||
132 | act = cur->actionlist; |
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133 | |||
134 | while (act) |
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135 | { |
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136 | switch (act->type) |
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137 | { |
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138 | case LOAD: |
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139 | load(act->time, cur->i, colorstack->color, cur->name); |
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140 | if (xpos() == XMAX) |
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141 | { |
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142 | task_kill(cur->pid); |
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143 | return 0; |
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144 | } |
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145 | break; |
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146 | |||
147 | case LOCK: /* task lock */ |
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148 | color_stack_push(act->mutex->color, &colorstack); |
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149 | grx_text(act->mutex->name, xpos() - 2, YFLOOR(cur->i) + 10, COLWHITE, 0); |
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150 | mutex_lock(&act->mutex->m); |
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151 | trace_info_hlp(); |
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152 | break; |
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153 | |||
154 | case UNLOCK: /* task unlock */ |
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155 | color_stack_pop(&colorstack); |
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156 | mutex_unlock(&act->mutex->m); |
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157 | trace_info_hlp(); |
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158 | break; |
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159 | } |
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160 | act = act->next; |
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161 | } |
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162 | task_endcycle(); |
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163 | } |
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164 | |||
165 | return 0; |
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166 | } |
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167 | |||
168 | void draw_scenario(void) |
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169 | { |
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170 | /* The scenario */ |
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171 | grx_rect(XMIN-1, YMIN-1, XMAX+1, YMAX+1, COLWHITE); |
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172 | grx_text("Simulation of HLP tasks", XMIN, YMENU+10, COLWHITE, 0); |
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173 | grx_text("SPACE Start demo" , XMIN, YMENU+20, COLWHITE, 0); |
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174 | grx_text("ESC exit to DOS" , XMIN, YMENU+30, COLWHITE, 0); |
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175 | } |
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176 | |||
177 | void trace_info_hlp() |
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178 | { |
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179 | HLP_mutex_resource_des *m; |
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180 | RLEVEL l; |
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181 | HLP_mutex_t *mutscan; |
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182 | HLP_tasklist_t *taskscan; |
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183 | int i = 0; |
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184 | char buf[60]; |
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185 | |||
186 | if (mutexes) |
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187 | { |
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188 | l = mutexes->m.mutexlevel; |
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189 | m = (HLP_mutex_resource_des *)(resource_table[l]); |
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190 | |||
191 | for (mutscan = m->mutexlist; mutscan; mutscan = mutscan->next) |
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192 | { |
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193 | if (mutscan->owner != NIL) |
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194 | sprintf(buf, "mutex: %p owner=%2d, used by", mutscan, mutscan->owner); |
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195 | else |
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196 | sprintf(buf, "mutex: %p no owner, used by", mutscan); |
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197 | |||
198 | grx_text(buf, 50, 320, COLWHITE, 0); |
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199 | |||
200 | for (i = 1, taskscan = mutscan->tasklist; taskscan; taskscan = taskscan->next, i++) |
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201 | { |
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202 | sprintf(buf, "task: %p, pid=%d, preempt=%ld", |
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203 | taskscan, |
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204 | taskscan->pid, |
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205 | taskscan->preempt); |
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206 | grx_text(buf, 100, 320+i*8, COLWHITE, 0); |
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207 | } |
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208 | } |
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209 | |||
210 | grx_text("All tasks:", 100, 320 + i++ * 8, COLWHITE, 0); |
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211 | |||
212 | if (taskconf) |
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213 | for (taskscan = m->tasklist; taskscan; taskscan = taskscan->next, i++) |
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214 | { |
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215 | sprintf(buf, |
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216 | "task: %p, pid=%d, preempt=%ld", |
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217 | taskscan, |
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218 | taskscan->pid, |
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219 | taskscan->preempt); |
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220 | |||
221 | grx_text(buf, 100, 320+i*8, COLWHITE, 0); |
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222 | } |
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223 | } |
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224 | else |
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225 | { |
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226 | grx_text("No mutexes", 200, 200, COLWHITE, 0); |
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227 | } |
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228 | |||
229 | } |
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230 | |||
231 | /* get preemption level inverse proportional to period and starting by 1 */ |
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232 | int get_preemption_level(taskconf_list_t *task) |
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233 | { |
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234 | taskconf_list_t *scan; |
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235 | int ret = 1; |
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236 | |||
237 | for (scan = taskconf; scan; scan = scan->next) |
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238 | if (scan != task && scan->period < task->period) |
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239 | ret++; |
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240 | |||
241 | return ret; |
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242 | } |
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243 | |||
244 | /****************************** MAIN ******************************/ |
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245 | |||
246 | int main(int argc, char **argv) |
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247 | { |
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248 | char c; /* character from keyboard */ |
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249 | int i = 0, j = 0, started = 0, numtask = 0, nummutex = 0; |
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250 | taskconf_list_t *curtask = NULL; |
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251 | mutex_list_t *mutexlist = NULL, *curmut = NULL; |
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252 | PID pid = NIL; |
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253 | HLP_mutexattr_t a; |
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254 | HLP_RES_MODEL r; |
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255 | |||
256 | if (read_conf(myfilebuf, 1000) == -1) |
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257 | { |
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258 | sys_shutdown_message("Error reading configuration file"); |
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259 | sys_end(); |
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260 | } |
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261 | |||
262 | for (curtask = taskconf; curtask != NULL; curtask = curtask->next) |
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263 | numtask++; |
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264 | |||
265 | draw_scenario(); |
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266 | curtask = taskconf; |
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267 | |||
268 | for (curmut = mutexes; curmut; curmut = curmut->next) |
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269 | { |
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270 | HLP_mutexattr_default(a); |
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271 | mutex_init(&(curmut->m), &a); |
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272 | } |
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273 | |||
274 | snapshot_freeslot(0); |
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275 | |||
276 | c = keyb_getch(BLOCK); |
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277 | i = started = 0; |
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278 | do { |
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279 | |||
280 | if ((c == ' ') && !started) { |
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281 | started = 1; |
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282 | start = sys_gettime(NULL); |
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283 | |||
284 | while (curtask) { |
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285 | |||
286 | /* traccio gli assi temporali per ogni task */ |
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287 | grx_line(XMIN + 10, YFLOOR(i), XMAX - 10, YFLOOR(i), COLWHITE); |
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288 | grx_text(curtask->name, XMIN - 20, YFLOOR(i) - 10, COLWHITE, 0); |
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289 | |||
290 | /* disegna frecce di attivazione */ |
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291 | for (j = 0; xpost(j) < XMAX; j += curtask->period) |
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292 | { |
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293 | grx_line(xpost(j), YFLOOR(i), xpost(j), YFLOOR(i) - 20, COLWHITE); |
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294 | grx_line(xpost(j), YFLOOR(i) - 20, xpost(j) - 5, YFLOOR(i) - 15, COLWHITE); |
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295 | grx_line(xpost(j), YFLOOR(i) - 20, xpost(j) + 5, YFLOOR(i) - 15, COLWHITE); |
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296 | } |
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297 | |||
298 | hard_task_default_model(m); |
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299 | hard_task_def_level(m,0); |
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300 | hard_task_def_ctrl_jet(m); |
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301 | hard_task_def_periodic(m); |
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302 | hard_task_def_wcet(m, (curtask->wcet + 2) * TIMESCALE); |
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303 | hard_task_def_mit(m, curtask->period * TIMESCALE); |
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304 | hard_task_def_arg(m,(void *)curtask); |
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305 | hard_task_def_group(m, 1); |
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306 | |||
307 | /* registro i mutex per il pid */ |
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308 | nummutex = 0; |
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309 | mutexlist = curtask->mutexlist; |
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310 | while(mutexlist) { |
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311 | mutexlist = mutexlist->next; |
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312 | nummutex++; |
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313 | } |
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314 | |||
315 | // HLP_res_default_model(r, get_preemption_level(curtask)); |
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316 | HLP_res_default_model(r, 1000 - curtask->period); |
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317 | |||
318 | switch (nummutex) { |
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319 | case 0: |
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320 | pid = task_create(curtask->name, Ji, &m, &r); |
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321 | break; |
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322 | |||
323 | case 1: |
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324 | pid = task_createn(curtask->name, Ji, (TASK_MODEL *)&m, &r, |
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325 | HLP_usemutex(&(curtask->mutexlist->m)), NULL); |
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326 | break; |
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327 | |||
328 | case 2: |
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329 | pid = task_createn(curtask->name, Ji, (TASK_MODEL *)&m, &r, |
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330 | HLP_usemutex(&(curtask->mutexlist->m)), |
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331 | HLP_usemutex(&(curtask->mutexlist->next->m)), NULL); |
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332 | break; |
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333 | case 3: |
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334 | pid = task_createn(curtask->name, Ji, (TASK_MODEL *)&m, &r, |
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335 | HLP_usemutex(&(curtask->mutexlist->m)), |
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336 | HLP_usemutex(&(curtask->mutexlist->next->m)), |
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337 | HLP_usemutex(&(curtask->mutexlist->next->next->m)), NULL); |
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338 | break; |
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339 | case 4: |
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340 | pid = task_createn(curtask->name, Ji, (TASK_MODEL *)&m, &r, |
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341 | HLP_usemutex(&(curtask->mutexlist->m)), |
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342 | HLP_usemutex(&(curtask->mutexlist->next->m)), |
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343 | HLP_usemutex(&(curtask->mutexlist->next->next->m)), |
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344 | HLP_usemutex(&(curtask->mutexlist->next->next->next->m)), NULL); |
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345 | break; |
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346 | |||
347 | default: |
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348 | sys_shutdown_message("Too many mutexes! I am stupid!"); |
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349 | sys_end(); |
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350 | } |
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351 | |||
352 | if (pid == NIL) |
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353 | { |
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354 | sys_shutdown_message("Could not create task %s", curtask->name); |
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355 | sys_end(); |
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356 | print_taskconf(curtask); |
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357 | return 0; |
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358 | } |
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359 | curtask->pid = pid; |
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360 | curtask->i = i++; |
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361 | |||
362 | curtask = curtask->next; |
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363 | } |
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364 | |||
365 | trace_info_hlp(); |
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366 | |||
367 | start = sys_gettime(NULL); |
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368 | group_activate(1); |
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369 | } |
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370 | |||
371 | |||
372 | c = keyb_getch(BLOCK); |
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373 | |||
374 | if (xpos() > XMAX) |
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375 | { |
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376 | group_kill(1); |
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377 | } |
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378 | |||
379 | } while (c != ESC); |
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380 | |||
381 | snapshot_getslot(0, 640, 480, 2); |
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382 | snapshot_grab(0); |
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383 | |||
384 | sys_end(); |
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385 | |||
386 | snapshot_save_ppm(0, "snapshot.ppm"); |
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387 | |||
388 | return 0; |
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389 | |||
390 | } |
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391 | |||
392 | /*--------------------------------------------------------------*/ |