forked from acco/chti23
dft réel fini
This commit is contained in:
parent
163f420c73
commit
5abc9d6052
16 changed files with 9986 additions and 106 deletions
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@ -4,10 +4,7 @@
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extern short int LeSignal[];
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extern int DFT_ModuleAuCarre( short int * Signal64ech, char k) ;
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int Dft_x[64];
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int compteur[6]={0,0,0,0,0,0};
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int score[6]={0,0,0,0,0,0};
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short int dma_buf[64];
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int seuil=65535;
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void callback_Systick(void){
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//démarrage de la DMA sur 64 échantillons :
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@ -16,39 +13,11 @@ void callback_Systick(void){
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Wait_On_End_Of_DMA1();
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//arrêter la DMA
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Stop_DMA1;
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for (char k=0;k<64;k++){
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Dft_x[k]=DFT_ModuleAuCarre(&dma_buf[0],k);
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for(char k=0 ; k<64 ; k++){
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Dft_x[k]=DFT_ModuleAuCarre(dma_buf,k);
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if (Dft_x[k]>seuil)
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{switch (k){
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case 17:
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compteur[0]++;
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break;
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case 18:
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compteur[1]++;
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break;
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case 19:
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compteur[2]++;
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break;
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case 20:
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compteur[3]++;
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break;
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case 23:
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compteur[4]++;
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break;
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case 24:
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compteur[5]++;
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break;
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}
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for (int i=0;i<6;i++){
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if(compteur[i]>10){
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score[i]++;
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}
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}
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}
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}
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}
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int main(void)
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{
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@ -58,15 +27,17 @@ int main(void)
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// ============= INIT PERIPH (faites qu'une seule fois) =====================
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// ===========================================================================
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// Après exécution : le coeur CPU est clocké à 72MHz ainsi que tous les timers
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CLOCK_Configure();
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/*initialisation du timer*/
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CLOCK_Configure();
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/*GBio*/
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//Periode_ticks = 5ms *72 périodes d'horloge à 72MHz donne 1µs=5ms*72Mhz
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Systick_Period_ff(36E4);
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//configurer le timer
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Systick_Prio_IT( 3,callback_Systick );
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//lancer le systick
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SysTick_On ;
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//lancer le systick
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SysTick_Enable_IT ;
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/*DFT*/
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//for (char k=0;k<64;k++){
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// Dft_x[k]=DFT_ModuleAuCarre(&LeSignal[0],k);
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//}
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/*ADC*/
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@ -75,22 +46,12 @@ Init_TimingADC_ActiveADC_ff( ADC1, 72 );
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//choisir la pin d'entrée PA2
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Single_Channel_ADC( ADC1, 2 );
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// configurer le timer 2
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Init_Conversion_On_Trig_Timer_ff( ADC1, TIM2_CC2, 225 );
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//configurer la DMA
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Init_ADC1_DMA1( 0, dma_buf );
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Init_Conversion_On_Trig_Timer_ff( ADC1, TIM2_CC2, 225 );
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//configurer la DMA
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Init_ADC1_DMA1( 0, dma_buf );
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/*configuration du timer*/
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//régler la périodicité du timer
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//Periode_ticks = 5ms *72 périodes d'horloge à 72MHz donne 1µs=5ms*72Mhz
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Systick_Period_ff(36E4);
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//configurer le timer
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Systick_Prio_IT( 3,callback_Systick );
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//lancer le systick
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SysTick_On ;
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//lancer le systick
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SysTick_Enable_IT ;
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@ -429,7 +429,7 @@
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<TargetName>CibleSondeKEIL</TargetName>
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<ToolsetNumber>0x4</ToolsetNumber>
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<ToolsetName>ARM-ADS</ToolsetName>
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<pCCUsed>5060750::V5.06 update 6 (build 750)::.\ARMCC</pCCUsed>
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<pCCUsed>5060960::V5.06 update 7 (build 960)::.\ARMCC</pCCUsed>
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<uAC6>0</uAC6>
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<TargetOption>
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<TargetCommonOption>
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@ -170,6 +170,22 @@
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<ExecCommand></ExecCommand>
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<Expression>\\StepDFT\Src/principal.c\25</Expression>
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</Bp>
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<Bp>
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<Number>1</Number>
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<Type>0</Type>
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<LineNumber>35</LineNumber>
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<EnabledFlag>1</EnabledFlag>
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<Address>134218418</Address>
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<ByteObject>0</ByteObject>
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<HtxType>0</HtxType>
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<ManyObjects>0</ManyObjects>
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<SizeOfObject>0</SizeOfObject>
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<BreakByAccess>0</BreakByAccess>
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<BreakIfRCount>1</BreakIfRCount>
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<Filename>.\Src\DFT.s</Filename>
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<ExecCommand></ExecCommand>
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<Expression>\\StepDFT\Src/DFT.s\35</Expression>
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</Bp>
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</Breakpoint>
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<WatchWindow1>
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<Ww>
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@ -191,8 +207,8 @@
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<MemoryWindow1>
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<Mm>
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<WinNumber>1</WinNumber>
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<SubType>1</SubType>
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<ItemText>lr</ItemText>
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<SubType>266</SubType>
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<ItemText>0x08000398</ItemText>
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<AccSizeX>0</AccSizeX>
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</Mm>
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</MemoryWindow1>
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@ -216,7 +232,7 @@
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<AscS3>0</AscS3>
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<aSer3>0</aSer3>
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<eProf>0</eProf>
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<aLa>0</aLa>
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<aLa>1</aLa>
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<aPa1>0</aPa1>
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<AscS4>0</AscS4>
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<aSer4>0</aSer4>
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@ -242,7 +258,7 @@
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<Wi>
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<IntNumber>0</IntNumber>
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<FirstString>((portb & 0x00000002) >> 1 & 0x2) >> 1</FirstString>
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<SecondString>FF000000000000000000000000000000E0FFEF400100000000000000000000000000000028706F7274622026203078303030303030303229203E3E2031000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000100000001000000000000000000F03F160000000000000000000000000000000000000096020008</SecondString>
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<SecondString>FF000000000000000000000000000000E0FFEF400100000000000000000000000000000028706F7274622026203078303030303030303229203E3E2031000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000100000001000000000000000000F03F100000000000000000000000000000000000000096020008</SecondString>
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</Wi>
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</LogicAnalyzers>
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<DebugDescription>
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@ -1,48 +0,0 @@
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#include "etat.h"
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#include "DriverJeuLaser.h"
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#define Periode_en_Tck PeriodeSonMicroSec*72 //4536 // T/T0 ici 63u
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#define Periode_PWM_en_Tck 720 // 10u // plus ou moins 6.3u
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extern short Son;
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extern int LongueurSon;
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extern int PeriodeSonMicroSec;
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void timer_callback(void);
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type_etat etat;
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int main(void)
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{
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// Initialisation de taille et son pour le variable etat
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etat.taille = LongueurSon;
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etat.son = &Son;
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etat.periode_ticks = PeriodeSonMicroSec;
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// Activation de la PLL qui multiplie la fréquence du quartz par 9
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CLOCK_Configure();
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// Config port PB1 pour être utilisé en sortie
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GPIO_Configure(GPIOB, 0, OUTPUT, ALT_PPULL);
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// Config TIM3-CH3 en mode PWM
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etat.resolution = PWM_Init_ff(TIM3, 3, Periode_PWM_en_Tck);
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// Initialisation du timer 4
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// Periode_en_Tck doit fournir la duréé interruptique;
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// exprimée en période Tck de l'horloge principale du STM32 (72Mhz)
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Timer_1234_Init_ff(TIM4, Periode_en_Tck);
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// enregistrement de la fonction de traitement de l'interruption timer
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// avec la priorité 2, timer_callback est l'adresse de cette fonction, a crée en asm,
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// cette fonction doit être conforme à l'AACPS
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Active_IT_Debordement_Timer(TIM4, 2, timer_callback);
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//Lancement du timer
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Run_Timer(TIM4);
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Run_Timer(TIM3);
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while (1)
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{
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}
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}
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345
soft/PjtKEIL_Stepdernier/Driver/DriverJeuLaser.h
Normal file
345
soft/PjtKEIL_Stepdernier/Driver/DriverJeuLaser.h
Normal file
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@ -0,0 +1,345 @@
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/**
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* Bibliotheque DriverJeuLaser (ancienne gassp72 adaptée 2021 - TR)
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*
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* GPIO - ADC - Sequenceur - System Timer - PWM - 72 MHz
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* Modifs :
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* enlèvement de tout ce qui est inutile dans le .h
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* ajout de fonctions GPIO dans le .c pour utilisation en ASM ou en C :
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* - GPIOA_Set(char Broche), GPIOB_Set(char Broche), GPIOC_Set(char Broche)
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* - GPIOA_Clear(char Broche), GPIOB_Clear(char Broche), GPIOC_Clear(char Broche)
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*
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* ajout d'une fonction qui impose une valeur de PWM (TIM3_CCR3)
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* PWM_Set_Value_On_TIM3_C3( int Val)
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* permet en ASM ou en C de fixer la valeur de PWM
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* Ajout de commentaires
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*/
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#ifndef DRIVERJEULASER_H__
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#define DRIVERJEULASER_H__
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#include "stm32f10x.h"
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//**********************************************************************************************************
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//--------------------- CONFIGURATION CLOCK DU STM32 --------------------------------------
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//**********************************************************************************************************
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/**
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* @brief Configure l'ensemble des horloges du uC
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* @note horloge systeme (config statique a 72 MHz pour le STM32F103)
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* @param None
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* @retval None
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*/
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void CLOCK_Configure(void);
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//**********************************************************************************************************
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//--------------------- LES TIMERS GENERAL PURPOSE TIM1 à TIM 4 ------------------------------
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//**********************************************************************************************************
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/**
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* @brief Configure un Timer TIM1 à TIM4 avec une périodicité donnée
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* @note L' horloge des 4 timers a une fréquence de 72MHz
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* @param *Timer = TIM1 ou TIM2 ou TIM3 ou TIM4
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* @param Durée_ticks : nombre de pas (tick) comptés à 72 MHz pour faire déborder le timer
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* La période de débordement du Timer est donc T = Durée_ticks * Tck, avec Tck = 1/72 000 000
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* @retval None
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*/
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void Timer_1234_Init_ff( TIM_TypeDef *Timer, u32 Duree_ticks );
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/**
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* Macros de base pour utiliser les timers
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*/
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// bloque le timer
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#define Bloque_Timer(Timer) Timer->CR1=(Timer->CR1)&~(1<<0)
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// Lance timer
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#define Run_Timer(Timer) Timer->CR1=(Timer->CR1)|(1<<0)
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/**
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* @brief Associe une fonction d'interruption (callback) lors du débordement d'un timer
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* @note
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* @param *Timer = TIM1 ou TIM2 ou TIM3 ou TIM4
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* @param Prio : niveau de priorité de l'interruption (0 -> priorité max, 15 -> priorité min)
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* @param IT_function : le nom de la fonction Callback à appeler lors de l'interruption
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* @retval None
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*/
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void Active_IT_Debordement_Timer( TIM_TypeDef *Timer, char Prio, void (*IT_function)(void) );
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//*********************************************************************************************************
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//--------------------- PWM TIM1 to TIM 4 ------------------------------
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//*********************************************************************************************************
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/**
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* @brief Configure un timer en PWM
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* @note
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* @param *Timer = TIM1 ou TIM2 ou TIM3 ou TIM4
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* @param voie : un des 4 canaux possibles 1 à 4.
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* @param Periode_ticks : nombre de pas (tick) comptés à 72 MHz pour faire déborder le timer
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* La période de débordement du Timer est donc T = Durée_ticks * Tck, avec Tck = 1/72 000 000
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* @retval Retourne la période en tick (normalement la même que le param d'entrée sauf si PSC utilisé
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*/
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unsigned short int PWM_Init_ff( TIM_TypeDef *Timer, char Voie, u32 Periode_ticks );
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/**
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* @brief Fixe une valeur de PWM, Val, en tick horloge. La rapport cyclique effectif
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* est donc : rcy = Thaut_ticks / Periode_ticks
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* @note spécifique Jeu Laser, PWM liée exclusivement au TIM3, chan3
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* @param Thaut_ticks : durée de l'état haut d'une impulsion en Ticks
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* @retval None
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*/
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void PWM_Set_Value_TIM3_Ch3( unsigned short int Thaut_ticks);
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//**********************************************************************************************************
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//--------------------- LE SYSTICK TIMER, Part of Cortex M3 ------------------------------
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//**********************************************************************************************************
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/**
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* @brief Configure le timer Systick avec une périodicité donnée
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* @note Ce timer ne peut servir qu'à créer des temporisations ou générer des interruption
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* ce n'est pas à proprement parler un périphérique, il fait partie du Cortex M3
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* Ce timer est un 24 bits
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* @param Periode_ticks : nombre de pas (tick) comptés à 72 MHz pour établir la périodicité
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* La période de débordement du Timer est donc T = Durée_ticks * Tck, avec Tck = 1/72 000 000
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* @retval None
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*/
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void Systick_Period_ff( unsigned int Periode_ticks );
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/**
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* @brief Associe une fonction d'interruption (callback) lors du débordement du Systick
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* @note
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* @param Prio : niveau de priorité de l'interruption (0 -> priorité max, 15 -> priorité min)
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* @param IT_function : le nom de la fonction Callback à appeler lors de l'interruption
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* @retval None
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*/
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void Systick_Prio_IT( char Prio, void (*Systick_function)(void) );
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/**
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* Macros de base pour utiliser le Systick
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*/
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#define SysTick_On ((SysTick->CTRL)=(SysTick->CTRL)|1<<0)
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#define SysTick_Off ((SysTick->CTRL)=(SysTick->CTRL)& ~(1<<0))
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#define SysTick_Enable_IT ((SysTick->CTRL)=(SysTick->CTRL)|1<<1)
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#define SysTick_Disable_IT ((SysTick->CTRL)=(SysTick->CTRL)& ~(1<<1))
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//**********************************************************************************************************
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//--------------------- LE SYSTICK TIMER, Part of Cortex M3 ------------------------------
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//**********************************************************************************************************
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/**
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* @brief Active l'ADC du STM32, configure la durée de prélèvement de l'échantillon (temps
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* de fermeture du switch d'acquisition
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* @note
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* @param ADC : précise de quel ADC il s'agit, ADC1 ou ADC2
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* @param Duree_Ech_ticks : dirée de fermeture du switch d'échantillonnage en Tick d'horloge CPU
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* exemple pour 1µs on choisira 72.
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* @retval Nombre de Tick réellement pris en compte
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*/
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unsigned int Init_TimingADC_ActiveADC_ff( ADC_TypeDef * ADC, u32 Duree_Ech_ticks );
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/**
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* @brief Sélectionne la voie à convertir
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* @note Attention, la voie va de 0 à 15 et n'est pas directement lié au n°de GPIO
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* @param ADC : précise de quel ADC il s'agit, ADC1 ou ADC2
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* @param Voie_ADC : 1 à 15
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* @retval None
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||||
*/
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void Single_Channel_ADC( ADC_TypeDef * ADC, char Voie_ADC );
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||||
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||||
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/**
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* @brief Permet lier le déclenchement au débordement d'un timer, spécifie également
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* la période de débordement du timer
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* @note pas besoin de régler le timer avec une autre fonction dédiée timer
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* @param ADC : précise de quel ADC il s'agit, ADC1 ou ADC2
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* @param Source : indique le timer qui déclenche l'ADC choix dans les define ci-dessous
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* @param Periode_ticks : nombre de pas (tick) comptés à 72 MHz pour faire déborder le timer
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* La période de débordement du Timer est donc T = Durée_ticks * Tck, avec Tck = 1/72 000 000
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* @retval None
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*/
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// param pour Source :
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#define TIM1_CC1 0
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#define TIM1_CC2 1
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#define TIM1_CC3 2
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#define TIM2_CC2 3
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#define TIM4_CC4 5
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void Init_Conversion_On_Trig_Timer_ff( ADC_TypeDef * ADC, char Source, u32 Periode_ticks );
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|
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//**********************************************************************************************************
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//--------------------- ANALOG INPUT ADC & DMA ------------------------------
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//**********************************************************************************************************
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/**
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* @brief Permer de lier l'ADC à un tableau en RAM pour une DMA
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* @note
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* @param Circ : circular. Si '0', en fin de DMA le ptr d'@ reste inchangé
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* si '1' le ptr d'@ se recale à celle du début.
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||||
* @param Ptr_Table_DMA : contient l'@ de début de zone RAM à écrire
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||||
* @retval None
|
||||
*/
|
||||
void Init_ADC1_DMA1(char Circ, short int *Ptr_Table_DMA);
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||||
|
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||||
|
||||
|
||||
|
||||
/**
|
||||
* @brief Lance une DMA sur le nombre de points spécifie. Les resultats seront stockes
|
||||
* dans la zone de RAM écrite est indiquée lors de l'appel de la fonction Init_ADC1_DMA1
|
||||
* @note
|
||||
* @param NbEchDMA est le nombre d'échantillons à stocker.
|
||||
* @retval None
|
||||
*/
|
||||
void Start_DMA1( u16 NbEchDMA );
|
||||
|
||||
// arret DMA
|
||||
#define Stop_DMA1 DMA1_Channel1->CCR =(DMA1_Channel1->CCR) &~0x1;
|
||||
|
||||
|
||||
/**
|
||||
* @brief Attend la fin d'un cycle de DMA. la duree depend de la periode d'acquisition
|
||||
* et du nombre d'echantillons
|
||||
* @note fonction d'attente (bloquante)
|
||||
* @param None
|
||||
* @retval None
|
||||
*/
|
||||
void Wait_On_End_Of_DMA1(void);
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
//**********************************************************************************************************
|
||||
//--------------------- GPIO ------------------------------
|
||||
//**********************************************************************************************************
|
||||
|
||||
/**
|
||||
* @brief Initialisation d'un GPIO (A à C), pin x.
|
||||
* peut être configuré :
|
||||
* -> Input ou output
|
||||
* -> architecture technologique (push-pull, open drain...)
|
||||
|
||||
* @note
|
||||
* @param Port : GPIOA, GPIOB, GPIOC
|
||||
* @param Broche : 0 à 15
|
||||
* @param Sens : INPUT ou OUTPUT
|
||||
* @param Techno : voir define ci dessous
|
||||
* @retval 1 erreur, 0 si OK
|
||||
*/
|
||||
|
||||
// Sens
|
||||
#define INPUT 'i'
|
||||
#define OUTPUT 'o'
|
||||
|
||||
// Techno pour pin en entrée (INPUT)
|
||||
#define ANALOG 0
|
||||
#define INPUT_FLOATING 1
|
||||
#define INPUT_PULL_DOWN_UP 2
|
||||
|
||||
// Techno pour pin en sortie (OUTPUT)
|
||||
#define OUTPUT_PPULL 0
|
||||
#define OUTPUT_OPDRAIN 1
|
||||
#define ALT_PPULL 2
|
||||
#define ALT_OPDRAIN 3
|
||||
|
||||
// Exemple :
|
||||
// Port_IO_Init(GPIOB, 8, OUTPUT, OUTPUT_PPULL);
|
||||
// Place le bit 8 du port B en sortie Push-pull
|
||||
char GPIO_Configure(GPIO_TypeDef * Port, int Broche, int Sens, int Techno);
|
||||
|
||||
|
||||
/**
|
||||
* @brief Mise à 1 d'une broche GPIO
|
||||
* @note Une fonction par GPIO
|
||||
* @param Broche : 0 à 15
|
||||
* @retval None
|
||||
*/
|
||||
|
||||
void GPIOA_Set(char Broche);
|
||||
void GPIOB_Set(char Broche);
|
||||
void GPIOC_Set(char Broche);
|
||||
|
||||
|
||||
|
||||
/**
|
||||
* @brief Mise à 0 d'une broche GPIO
|
||||
* @note Une fonction par GPIO
|
||||
* @param Broche : 0 à 15
|
||||
* @retval None
|
||||
*/
|
||||
|
||||
void GPIOA_Clear(char Broche);
|
||||
void GPIOB_Clear(char Broche);
|
||||
void GPIOC_Clear(char Broche);
|
||||
|
||||
|
||||
#endif
|
||||
|
||||
|
56
soft/PjtKEIL_Stepdernier/Driver/DriverJeuLaser.inc
Normal file
56
soft/PjtKEIL_Stepdernier/Driver/DriverJeuLaser.inc
Normal file
|
@ -0,0 +1,56 @@
|
|||
|
||||
; Bibliotheque DriverJeuLaser (ancienne gassp72 adaptée 2021 - TR)
|
||||
; Accès en aux fonctions suivantes :
|
||||
; GPIO :
|
||||
; GPIOA_Set(char Broche), GPIOB_Set(char Broche), GPIOC_Set(char Broche)
|
||||
; GPIOA_Clear(char Broche), GPIOB_Clear(char Broche), GPIOC_Clear(char Broche)
|
||||
|
||||
; PWM :
|
||||
;/**
|
||||
; * @brief Fixe une valeur de PWM, Val, en tick horloge. La rapport cyclique effectif
|
||||
; * est donc : rcy = Thaut_ticks / Periode_ticks
|
||||
; * @note spécifique Jeu Laser, PWM liée exclusivement au TIM3, chan3
|
||||
; * @param Thaut_ticks : durée de l'état haut d'une impulsion en Ticks
|
||||
; * @retval None
|
||||
; */
|
||||
|
||||
;void PWM_Set_Value_TIM3_Ch3( unsigned short int Thaut_ticks);
|
||||
import PWM_Set_Value_TIM3_Ch3
|
||||
|
||||
|
||||
|
||||
;/**
|
||||
; * @brief Mise à 1 d'une broche GPIO
|
||||
; * @note Une fonction par GPIO
|
||||
; * @param Broche : 0 à 15
|
||||
; * @retval None
|
||||
; */
|
||||
|
||||
;void GPIOA_Set(char Broche);
|
||||
import GPIOA_Set
|
||||
|
||||
;void GPIOB_Set(char Broche);
|
||||
import GPIOB_Set
|
||||
|
||||
;void GPIOC_Set(char Broche);
|
||||
import GPIOC_Set
|
||||
|
||||
|
||||
|
||||
;/**
|
||||
; * @brief Mise à 0 d'une broche GPIO
|
||||
; * @note Une fonction par GPIO
|
||||
; * @param Broche : 0 à 15
|
||||
; * @retval None
|
||||
; */
|
||||
|
||||
;void GPIOA_Clear(char Broche);
|
||||
import GPIOA_Clear
|
||||
|
||||
;void GPIOB_Clear(char Broche);
|
||||
import GPIOB_Clear
|
||||
|
||||
;void GPIOC_Clear(char Broche);
|
||||
import GPIOC_Clear
|
||||
|
||||
end
|
203
soft/PjtKEIL_Stepdernier/Src/DFT.s
Normal file
203
soft/PjtKEIL_Stepdernier/Src/DFT.s
Normal file
|
@ -0,0 +1,203 @@
|
|||
PRESERVE8
|
||||
THUMB
|
||||
|
||||
|
||||
; ====================== zone de réservation de données, ======================================
|
||||
;Section RAM (read only) :
|
||||
area mesdata,data,readonly
|
||||
|
||||
;Section RAM (read write):
|
||||
area maram,data,readwrite
|
||||
export DFT_ModuleAuCarre
|
||||
|
||||
; ===============================================================================================
|
||||
|
||||
|
||||
|
||||
|
||||
;Section ROM code (read only) :
|
||||
area moncode,code,readonly
|
||||
|
||||
|
||||
|
||||
; écrire le code ici
|
||||
;récuperer le tableau Signal
|
||||
;calculer de 0 à 63 :
|
||||
; pour format 2.14 ,asr#2 pour décaler 2bit vers poid faible et get valeur de .14 Mais pour 2 bit?
|
||||
|
||||
DFT_ModuleAuCarre proc
|
||||
;r0 contient l'adresse de lesginal
|
||||
;r1 contient le valeur de k
|
||||
|
||||
push {r4-r10,lr}
|
||||
mov r12,#0 ;r12 =index
|
||||
ldr r3,=TabCos
|
||||
ldr r8,=TabSin
|
||||
mov r7,#0 ; somme réel
|
||||
mov r10,#0 ;somme imaginaire
|
||||
Loop
|
||||
mul r6, r12, r1 ; valeur de n*k
|
||||
and r6,#0x3F ; moduler :n*k/M
|
||||
ldrsh r4,[r3,r6,lsl #1] ;lire le valeur de tabcos:cos(nk/M)
|
||||
ldrsh r9,[r8,r6,lsl #1]; lire le valeur de tabsin:sin(nk/M) PARTIE IMAGINAIRE
|
||||
ldrsh r5,[r0,r12,lsl #1] ;lire le valeur de signal:x(i)
|
||||
mul r6, r4,r5 ; r6=cos(n*k/M) * x(i)
|
||||
add r7,r6;somme réel =somme réel +x(i)*cos(n*k/M)
|
||||
mul r6, r9,r5 ;r6=sin(n*k/M) * x(i)
|
||||
add r10,r6;somme imaginaire =somme imaginaire + x(i)*sin(n*K/M)
|
||||
add r12,#1
|
||||
|
||||
cmp r12,#64
|
||||
bne Loop
|
||||
|
||||
|
||||
mov r0,r7
|
||||
smull r7,r9,r0,r0
|
||||
mov r1,r10
|
||||
smull r0,r1 ,r1,r1
|
||||
add r0,r9,r1
|
||||
pop {r4-r10,lr}
|
||||
bx lr
|
||||
endp
|
||||
|
||||
|
||||
|
||||
;Section ROM code (read only) :
|
||||
AREA Trigo, DATA, READONLY
|
||||
; codage fractionnaire 1.15
|
||||
|
||||
TabCos
|
||||
DCW 32767 ; 0 0x7fff 0.99997
|
||||
DCW 32610 ; 1 0x7f62 0.99518
|
||||
DCW 32138 ; 2 0x7d8a 0.98077
|
||||
DCW 31357 ; 3 0x7a7d 0.95694
|
||||
DCW 30274 ; 4 0x7642 0.92389
|
||||
DCW 28899 ; 5 0x70e3 0.88193
|
||||
DCW 27246 ; 6 0x6a6e 0.83148
|
||||
DCW 25330 ; 7 0x62f2 0.77301
|
||||
DCW 23170 ; 8 0x5a82 0.70709
|
||||
DCW 20788 ; 9 0x5134 0.63440
|
||||
DCW 18205 ; 10 0x471d 0.55557
|
||||
DCW 15447 ; 11 0x3c57 0.47141
|
||||
DCW 12540 ; 12 0x30fc 0.38269
|
||||
DCW 9512 ; 13 0x2528 0.29028
|
||||
DCW 6393 ; 14 0x18f9 0.19510
|
||||
DCW 3212 ; 15 0x0c8c 0.09802
|
||||
DCW 0 ; 16 0x0000 0.00000
|
||||
DCW -3212 ; 17 0xf374 -0.09802
|
||||
DCW -6393 ; 18 0xe707 -0.19510
|
||||
DCW -9512 ; 19 0xdad8 -0.29028
|
||||
DCW -12540 ; 20 0xcf04 -0.38269
|
||||
DCW -15447 ; 21 0xc3a9 -0.47141
|
||||
DCW -18205 ; 22 0xb8e3 -0.55557
|
||||
DCW -20788 ; 23 0xaecc -0.63440
|
||||
DCW -23170 ; 24 0xa57e -0.70709
|
||||
DCW -25330 ; 25 0x9d0e -0.77301
|
||||
DCW -27246 ; 26 0x9592 -0.83148
|
||||
DCW -28899 ; 27 0x8f1d -0.88193
|
||||
DCW -30274 ; 28 0x89be -0.92389
|
||||
DCW -31357 ; 29 0x8583 -0.95694
|
||||
DCW -32138 ; 30 0x8276 -0.98077
|
||||
DCW -32610 ; 31 0x809e -0.99518
|
||||
DCW -32768 ; 32 0x8000 -1.00000
|
||||
DCW -32610 ; 33 0x809e -0.99518
|
||||
DCW -32138 ; 34 0x8276 -0.98077
|
||||
DCW -31357 ; 35 0x8583 -0.95694
|
||||
DCW -30274 ; 36 0x89be -0.92389
|
||||
DCW -28899 ; 37 0x8f1d -0.88193
|
||||
DCW -27246 ; 38 0x9592 -0.83148
|
||||
DCW -25330 ; 39 0x9d0e -0.77301
|
||||
DCW -23170 ; 40 0xa57e -0.70709
|
||||
DCW -20788 ; 41 0xaecc -0.63440
|
||||
DCW -18205 ; 42 0xb8e3 -0.55557
|
||||
DCW -15447 ; 43 0xc3a9 -0.47141
|
||||
DCW -12540 ; 44 0xcf04 -0.38269
|
||||
DCW -9512 ; 45 0xdad8 -0.29028
|
||||
DCW -6393 ; 46 0xe707 -0.19510
|
||||
DCW -3212 ; 47 0xf374 -0.09802
|
||||
DCW 0 ; 48 0x0000 0.00000
|
||||
DCW 3212 ; 49 0x0c8c 0.09802
|
||||
DCW 6393 ; 50 0x18f9 0.19510
|
||||
DCW 9512 ; 51 0x2528 0.29028
|
||||
DCW 12540 ; 52 0x30fc 0.38269
|
||||
DCW 15447 ; 53 0x3c57 0.47141
|
||||
DCW 18205 ; 54 0x471d 0.55557
|
||||
DCW 20788 ; 55 0x5134 0.63440
|
||||
DCW 23170 ; 56 0x5a82 0.70709
|
||||
DCW 25330 ; 57 0x62f2 0.77301
|
||||
DCW 27246 ; 58 0x6a6e 0.83148
|
||||
DCW 28899 ; 59 0x70e3 0.88193
|
||||
DCW 30274 ; 60 0x7642 0.92389
|
||||
DCW 31357 ; 61 0x7a7d 0.95694
|
||||
DCW 32138 ; 62 0x7d8a 0.98077
|
||||
DCW 32610 ; 63 0x7f62 0.99518
|
||||
TabSin
|
||||
DCW 0 ; 0 0x0000 0.00000
|
||||
DCW 3212 ; 1 0x0c8c 0.09802
|
||||
DCW 6393 ; 2 0x18f9 0.19510
|
||||
DCW 9512 ; 3 0x2528 0.29028
|
||||
DCW 12540 ; 4 0x30fc 0.38269
|
||||
DCW 15447 ; 5 0x3c57 0.47141
|
||||
DCW 18205 ; 6 0x471d 0.55557
|
||||
DCW 20788 ; 7 0x5134 0.63440
|
||||
DCW 23170 ; 8 0x5a82 0.70709
|
||||
DCW 25330 ; 9 0x62f2 0.77301
|
||||
DCW 27246 ; 10 0x6a6e 0.83148
|
||||
DCW 28899 ; 11 0x70e3 0.88193
|
||||
DCW 30274 ; 12 0x7642 0.92389
|
||||
DCW 31357 ; 13 0x7a7d 0.95694
|
||||
DCW 32138 ; 14 0x7d8a 0.98077
|
||||
DCW 32610 ; 15 0x7f62 0.99518
|
||||
DCW 32767 ; 16 0x7fff 0.99997
|
||||
DCW 32610 ; 17 0x7f62 0.99518
|
||||
DCW 32138 ; 18 0x7d8a 0.98077
|
||||
DCW 31357 ; 19 0x7a7d 0.95694
|
||||
DCW 30274 ; 20 0x7642 0.92389
|
||||
DCW 28899 ; 21 0x70e3 0.88193
|
||||
DCW 27246 ; 22 0x6a6e 0.83148
|
||||
DCW 25330 ; 23 0x62f2 0.77301
|
||||
DCW 23170 ; 24 0x5a82 0.70709
|
||||
DCW 20788 ; 25 0x5134 0.63440
|
||||
DCW 18205 ; 26 0x471d 0.55557
|
||||
DCW 15447 ; 27 0x3c57 0.47141
|
||||
DCW 12540 ; 28 0x30fc 0.38269
|
||||
DCW 9512 ; 29 0x2528 0.29028
|
||||
DCW 6393 ; 30 0x18f9 0.19510
|
||||
DCW 3212 ; 31 0x0c8c 0.09802
|
||||
DCW 0 ; 32 0x0000 0.00000
|
||||
DCW -3212 ; 33 0xf374 -0.09802
|
||||
DCW -6393 ; 34 0xe707 -0.19510
|
||||
DCW -9512 ; 35 0xdad8 -0.29028
|
||||
DCW -12540 ; 36 0xcf04 -0.38269
|
||||
DCW -15447 ; 37 0xc3a9 -0.47141
|
||||
DCW -18205 ; 38 0xb8e3 -0.55557
|
||||
DCW -20788 ; 39 0xaecc -0.63440
|
||||
DCW -23170 ; 40 0xa57e -0.70709
|
||||
DCW -25330 ; 41 0x9d0e -0.77301
|
||||
DCW -27246 ; 42 0x9592 -0.83148
|
||||
DCW -28899 ; 43 0x8f1d -0.88193
|
||||
DCW -30274 ; 44 0x89be -0.92389
|
||||
DCW -31357 ; 45 0x8583 -0.95694
|
||||
DCW -32138 ; 46 0x8276 -0.98077
|
||||
DCW -32610 ; 47 0x809e -0.99518
|
||||
DCW -32768 ; 48 0x8000 -1.00000
|
||||
DCW -32610 ; 49 0x809e -0.99518
|
||||
DCW -32138 ; 50 0x8276 -0.98077
|
||||
DCW -31357 ; 51 0x8583 -0.95694
|
||||
DCW -30274 ; 52 0x89be -0.92389
|
||||
DCW -28899 ; 53 0x8f1d -0.88193
|
||||
DCW -27246 ; 54 0x9592 -0.83148
|
||||
DCW -25330 ; 55 0x9d0e -0.77301
|
||||
DCW -23170 ; 56 0xa57e -0.70709
|
||||
DCW -20788 ; 57 0xaecc -0.63440
|
||||
DCW -18205 ; 58 0xb8e3 -0.55557
|
||||
DCW -15447 ; 59 0xc3a9 -0.47141
|
||||
DCW -12540 ; 60 0xcf04 -0.38269
|
||||
DCW -9512 ; 61 0xdad8 -0.29028
|
||||
DCW -6393 ; 62 0xe707 -0.19510
|
||||
DCW -3212 ; 63 0xf374 -0.09802
|
||||
|
||||
|
||||
|
||||
|
||||
END
|
6
soft/PjtKEIL_Stepdernier/Src/GestionSon.h
Normal file
6
soft/PjtKEIL_Stepdernier/Src/GestionSon.h
Normal file
|
@ -0,0 +1,6 @@
|
|||
#ifndef GESTION_SON_H_
|
||||
#define GESTION_SON_H_
|
||||
|
||||
short int CallbackSon(short int *son, int *index, int longueurSon);
|
||||
void StartSon(void);
|
||||
#endif
|
87
soft/PjtKEIL_Stepdernier/Src/GestionSon.s
Normal file
87
soft/PjtKEIL_Stepdernier/Src/GestionSon.s
Normal file
|
@ -0,0 +1,87 @@
|
|||
PRESERVE8
|
||||
THUMB
|
||||
|
||||
|
||||
; ====================== zone de réservation de données, ======================================
|
||||
;Section RAM (read only) :
|
||||
area mesdata,data,readonly
|
||||
|
||||
|
||||
;Section RAM (read write):
|
||||
area maram,data,readwrite
|
||||
|
||||
export SortieSon
|
||||
export CallbackSon
|
||||
export StartSon
|
||||
export Index
|
||||
|
||||
import Son
|
||||
import LongueurSon
|
||||
import PeriodeSonMicroSec
|
||||
import PWM_Set_Value_TIM3_Ch3
|
||||
|
||||
Index dcd 0
|
||||
SortieSon dcw 0
|
||||
|
||||
; ===============================================================================================
|
||||
|
||||
;static short int SortieSon;
|
||||
;static int i
|
||||
;if (i<LongueurSon){
|
||||
;SortieSon=(Son[i]+32768)*719/65535;
|
||||
;i+=1
|
||||
;}
|
||||
|
||||
;Section ROM code (read only) :
|
||||
area moncode,code,readonly
|
||||
|
||||
|
||||
; écrire le code ici
|
||||
|
||||
|
||||
CallbackSon proc
|
||||
push {lr,r3-r5}
|
||||
;r0=&son
|
||||
ldr r0,=Son
|
||||
;static int i,r1=&index,r2=index
|
||||
ldr r1,=Index
|
||||
ldr r2,[r1]
|
||||
;r3=LongueurSon
|
||||
ldr r3,=LongueurSon
|
||||
ldr r3,[r3]
|
||||
;if (i<LongueurSon)
|
||||
|
||||
cmp r2, r3
|
||||
beq arret
|
||||
;SortieSon=(Son[i]+32768)*719/65535;
|
||||
ldr r4,=SortieSon
|
||||
;Lire le valeur de son avec r5
|
||||
ldrsh r5, [r0, r2, lsl #1]
|
||||
mov r3, #0x8000
|
||||
add r5, r3
|
||||
mov r3, #0x2CF
|
||||
mul r5, r3
|
||||
;on résoud le problem de division par asr, on fait la décalage de 16 bit vers le fort
|
||||
mov r3, #16
|
||||
asr r5, r3
|
||||
|
||||
str r5,[r4]
|
||||
;i+=1
|
||||
add r2, #1
|
||||
str r2,[r1]
|
||||
|
||||
|
||||
bl PWM_Set_Value_TIM3_Ch3 ;mis de la sortie PWM
|
||||
|
||||
|
||||
arret
|
||||
pop {lr,r3-r5}
|
||||
bx lr
|
||||
endp
|
||||
|
||||
StartSon proc
|
||||
ldr r1,=Index
|
||||
mov r3,#0;
|
||||
str r3,[r1]
|
||||
bx lr
|
||||
END
|
68
soft/PjtKEIL_Stepdernier/Src/Signal.asm
Normal file
68
soft/PjtKEIL_Stepdernier/Src/Signal.asm
Normal file
|
@ -0,0 +1,68 @@
|
|||
AREA Signal, DATA, READONLY
|
||||
export LeSignal
|
||||
LeSignal
|
||||
DCW 0x0fff ; 0 4095 0.99976
|
||||
DCW 0x0ff6 ; 1 4086 0.99756
|
||||
DCW 0x0fd9 ; 2 4057 0.99048
|
||||
DCW 0x0fa8 ; 3 4008 0.97852
|
||||
DCW 0x0f64 ; 4 3940 0.96191
|
||||
DCW 0x0f0e ; 5 3854 0.94092
|
||||
DCW 0x0ea7 ; 6 3751 0.91577
|
||||
DCW 0x0e2f ; 7 3631 0.88647
|
||||
DCW 0x0da8 ; 8 3496 0.85352
|
||||
DCW 0x0d13 ; 9 3347 0.81714
|
||||
DCW 0x0c72 ; 10 3186 0.77783
|
||||
DCW 0x0bc5 ; 11 3013 0.73560
|
||||
DCW 0x0b10 ; 12 2832 0.69141
|
||||
DCW 0x0a53 ; 13 2643 0.64526
|
||||
DCW 0x0990 ; 14 2448 0.59766
|
||||
DCW 0x08c9 ; 15 2249 0.54907
|
||||
DCW 0x0800 ; 16 2048 0.50000
|
||||
DCW 0x0737 ; 17 1847 0.45093
|
||||
DCW 0x0670 ; 18 1648 0.40234
|
||||
DCW 0x05ad ; 19 1453 0.35474
|
||||
DCW 0x04f0 ; 20 1264 0.30859
|
||||
DCW 0x043b ; 21 1083 0.26440
|
||||
DCW 0x038e ; 22 910 0.22217
|
||||
DCW 0x02ed ; 23 749 0.18286
|
||||
DCW 0x0258 ; 24 600 0.14648
|
||||
DCW 0x01d1 ; 25 465 0.11353
|
||||
DCW 0x0159 ; 26 345 0.08423
|
||||
DCW 0x00f2 ; 27 242 0.05908
|
||||
DCW 0x009c ; 28 156 0.03809
|
||||
DCW 0x0058 ; 29 88 0.02148
|
||||
DCW 0x0027 ; 30 39 0.00952
|
||||
DCW 0x000a ; 31 10 0.00244
|
||||
DCW 0x0000 ; 32 0 0.00000
|
||||
DCW 0x000a ; 33 10 0.00244
|
||||
DCW 0x0027 ; 34 39 0.00952
|
||||
DCW 0x0058 ; 35 88 0.02148
|
||||
DCW 0x009c ; 36 156 0.03809
|
||||
DCW 0x00f2 ; 37 242 0.05908
|
||||
DCW 0x0159 ; 38 345 0.08423
|
||||
DCW 0x01d1 ; 39 465 0.11353
|
||||
DCW 0x0258 ; 40 600 0.14648
|
||||
DCW 0x02ed ; 41 749 0.18286
|
||||
DCW 0x038e ; 42 910 0.22217
|
||||
DCW 0x043b ; 43 1083 0.26440
|
||||
DCW 0x04f0 ; 44 1264 0.30859
|
||||
DCW 0x05ad ; 45 1453 0.35474
|
||||
DCW 0x0670 ; 46 1648 0.40234
|
||||
DCW 0x0737 ; 47 1847 0.45093
|
||||
DCW 0x0800 ; 48 2048 0.50000
|
||||
DCW 0x08c9 ; 49 2249 0.54907
|
||||
DCW 0x0990 ; 50 2448 0.59766
|
||||
DCW 0x0a53 ; 51 2643 0.64526
|
||||
DCW 0x0b10 ; 52 2832 0.69141
|
||||
DCW 0x0bc5 ; 53 3013 0.73560
|
||||
DCW 0x0c72 ; 54 3186 0.77783
|
||||
DCW 0x0d13 ; 55 3347 0.81714
|
||||
DCW 0x0da8 ; 56 3496 0.85352
|
||||
DCW 0x0e2f ; 57 3631 0.88647
|
||||
DCW 0x0ea7 ; 58 3751 0.91577
|
||||
DCW 0x0f0e ; 59 3854 0.94092
|
||||
DCW 0x0f64 ; 60 3940 0.96191
|
||||
DCW 0x0fa8 ; 61 4008 0.97852
|
||||
DCW 0x0fd9 ; 62 4057 0.99048
|
||||
DCW 0x0ff6 ; 63 4086 0.99756
|
||||
END
|
5527
soft/PjtKEIL_Stepdernier/Src/bruitverre.asm
Normal file
5527
soft/PjtKEIL_Stepdernier/Src/bruitverre.asm
Normal file
File diff suppressed because it is too large
Load diff
66
soft/PjtKEIL_Stepdernier/Src/principal.c
Normal file
66
soft/PjtKEIL_Stepdernier/Src/principal.c
Normal file
|
@ -0,0 +1,66 @@
|
|||
|
||||
|
||||
#include "DriverJeuLaser.h"
|
||||
extern short int LeSignal[];
|
||||
extern int DFT_ModuleAuCarre( short int * Signal64ech, char k) ;
|
||||
int Dft_x[64];
|
||||
short int dma_buf[64];
|
||||
|
||||
void callback_Systick(void){
|
||||
//démarrage de la DMA sur 64 échantillons :
|
||||
Start_DMA1(64);
|
||||
//attente de la fin de DMA :
|
||||
Wait_On_End_Of_DMA1();
|
||||
//arrêter la DMA
|
||||
Stop_DMA1;
|
||||
for (char k=0;k<64;k++){
|
||||
Dft_x[k]=DFT_ModuleAuCarre(&dma_buf[0],k);
|
||||
|
||||
}
|
||||
}
|
||||
|
||||
int main(void)
|
||||
{
|
||||
|
||||
|
||||
// ===========================================================================
|
||||
// ============= INIT PERIPH (faites qu'une seule fois) =====================
|
||||
// ===========================================================================
|
||||
// Après exécution : le coeur CPU est clocké à 72MHz ainsi que tous les timers
|
||||
CLOCK_Configure();
|
||||
|
||||
//Periode_ticks = 5ms *72 périodes d'horloge à 72MHz donne 1µs=5ms*72Mhz
|
||||
Systick_Period_ff(36E4);
|
||||
//configurer le timer
|
||||
Systick_Prio_IT( 3,callback_Systick );
|
||||
//lancer le systick
|
||||
SysTick_On ;
|
||||
//lancer le systick
|
||||
SysTick_Enable_IT ;
|
||||
|
||||
|
||||
/*ADC*/
|
||||
|
||||
//'activer l'ADC1 en indiquant la durée de capture du signal
|
||||
Init_TimingADC_ActiveADC_ff( ADC1, 72 );
|
||||
//choisir la pin d'entrée PA2
|
||||
Single_Channel_ADC( ADC1, 2 );
|
||||
// configurer le timer 2
|
||||
Init_Conversion_On_Trig_Timer_ff( ADC1, TIM2_CC2, 225 );
|
||||
//configurer la DMA
|
||||
Init_ADC1_DMA1( 0, dma_buf );
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
//============================================================================
|
||||
|
||||
|
||||
while (1)
|
||||
{
|
||||
}
|
||||
}
|
||||
|
335
soft/PjtKEIL_Stepdernier/Src/startup-rvds.s
Normal file
335
soft/PjtKEIL_Stepdernier/Src/startup-rvds.s
Normal file
|
@ -0,0 +1,335 @@
|
|||
;******************** (C) COPYRIGHT 2011 STMicroelectronics ********************
|
||||
;* File Name : startup_stm32f10x_md.s
|
||||
;* Author : MCD Application Team
|
||||
;* Version : V3.5.0
|
||||
;* Date : 11-March-2011
|
||||
;* Description : STM32F10x Medium Density Devices vector table for MDK-ARM
|
||||
;* toolchain.
|
||||
;* This module performs:
|
||||
;* - Set the initial SP
|
||||
;* - Set the initial PC == Reset_Handler
|
||||
;* - Set the vector table entries with the exceptions ISR address
|
||||
;* - Configure the clock system
|
||||
;* - Branches to __main in the C library (which eventually
|
||||
;* calls main()).
|
||||
;* After Reset the CortexM3 processor is in Thread mode,
|
||||
;* priority is Privileged, and the Stack is set to Main.
|
||||
;* <<< Use Configuration Wizard in Context Menu >>>
|
||||
;*******************************************************************************
|
||||
; THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS
|
||||
; WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE TIME.
|
||||
; AS A RESULT, STMICROELECTRONICS SHALL NOT BE HELD LIABLE FOR ANY DIRECT,
|
||||
; INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING FROM THE
|
||||
; CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE CODING
|
||||
; INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS.
|
||||
;*******************************************************************************
|
||||
|
||||
; Amount of memory (in bytes) allocated for Stack
|
||||
; Tailor this value to your application needs
|
||||
; <h> Stack Configuration
|
||||
; <o> Stack Size (in Bytes) <0x0-0xFFFFFFFF:8>
|
||||
; </h>
|
||||
|
||||
Stack_Size EQU 0x00000400
|
||||
|
||||
AREA STACK, NOINIT, READWRITE, ALIGN=3
|
||||
Stack_Mem SPACE Stack_Size
|
||||
__initial_sp
|
||||
|
||||
|
||||
; <h> Heap Configuration
|
||||
; <o> Heap Size (in Bytes) <0x0-0xFFFFFFFF:8>
|
||||
; </h>
|
||||
|
||||
Heap_Size EQU 0x00000200
|
||||
|
||||
AREA HEAP, NOINIT, READWRITE, ALIGN=3
|
||||
__heap_base
|
||||
Heap_Mem SPACE Heap_Size
|
||||
__heap_limit
|
||||
|
||||
PRESERVE8
|
||||
THUMB
|
||||
|
||||
|
||||
; Vector Table Mapped to Address 0 at Reset
|
||||
AREA RESET, DATA, READONLY
|
||||
EXPORT __Vectors
|
||||
EXPORT __Vectors_End
|
||||
EXPORT __Vectors_Size
|
||||
|
||||
__Vectors DCD __initial_sp ; Top of Stack
|
||||
DCD Reset_Handler ; Reset Handler
|
||||
DCD NMI_Handler ; NMI Handler
|
||||
DCD HardFault_Handler ; Hard Fault Handler
|
||||
DCD MemManage_Handler ; MPU Fault Handler
|
||||
DCD BusFault_Handler ; Bus Fault Handler
|
||||
DCD UsageFault_Handler ; Usage Fault Handler
|
||||
DCD 0 ; Reserved
|
||||
DCD 0 ; Reserved
|
||||
DCD 0 ; Reserved
|
||||
DCD 0 ; Reserved
|
||||
DCD SVC_Handler ; SVCall Handler
|
||||
DCD DebugMon_Handler ; Debug Monitor Handler
|
||||
DCD 0 ; Reserved
|
||||
DCD PendSV_Handler ; PendSV Handler
|
||||
DCD SysTick_Handler ; SysTick Handler
|
||||
|
||||
; External Interrupts
|
||||
DCD WWDG_IRQHandler ; Window Watchdog
|
||||
DCD PVD_IRQHandler ; PVD through EXTI Line detect
|
||||
DCD TAMPER_IRQHandler ; Tamper
|
||||
DCD RTC_IRQHandler ; RTC
|
||||
DCD FLASH_IRQHandler ; Flash
|
||||
DCD RCC_IRQHandler ; RCC
|
||||
DCD EXTI0_IRQHandler ; EXTI Line 0
|
||||
DCD EXTI1_IRQHandler ; EXTI Line 1
|
||||
DCD EXTI2_IRQHandler ; EXTI Line 2
|
||||
DCD EXTI3_IRQHandler ; EXTI Line 3
|
||||
DCD EXTI4_IRQHandler ; EXTI Line 4
|
||||
DCD DMA1_Channel1_IRQHandler ; DMA1 Channel 1
|
||||
DCD DMA1_Channel2_IRQHandler ; DMA1 Channel 2
|
||||
DCD DMA1_Channel3_IRQHandler ; DMA1 Channel 3
|
||||
DCD DMA1_Channel4_IRQHandler ; DMA1 Channel 4
|
||||
DCD DMA1_Channel5_IRQHandler ; DMA1 Channel 5
|
||||
DCD DMA1_Channel6_IRQHandler ; DMA1 Channel 6
|
||||
DCD DMA1_Channel7_IRQHandler ; DMA1 Channel 7
|
||||
DCD ADC1_2_IRQHandler ; ADC1_2
|
||||
DCD USB_HP_CAN1_TX_IRQHandler ; USB High Priority or CAN1 TX
|
||||
DCD USB_LP_CAN1_RX0_IRQHandler ; USB Low Priority or CAN1 RX0
|
||||
DCD CAN1_RX1_IRQHandler ; CAN1 RX1
|
||||
DCD CAN1_SCE_IRQHandler ; CAN1 SCE
|
||||
DCD EXTI9_5_IRQHandler ; EXTI Line 9..5
|
||||
DCD TIM1_BRK_IRQHandler ; TIM1 Break
|
||||
DCD TIM1_UP_IRQHandler ; TIM1 Update
|
||||
DCD TIM1_TRG_COM_IRQHandler ; TIM1 Trigger and Commutation
|
||||
DCD TIM1_CC_IRQHandler ; TIM1 Capture Compare
|
||||
DCD TIM2_IRQHandler ; TIM2
|
||||
DCD TIM3_IRQHandler ; TIM3
|
||||
DCD TIM4_IRQHandler ; TIM4
|
||||
DCD I2C1_EV_IRQHandler ; I2C1 Event
|
||||
DCD I2C1_ER_IRQHandler ; I2C1 Error
|
||||
DCD I2C2_EV_IRQHandler ; I2C2 Event
|
||||
DCD I2C2_ER_IRQHandler ; I2C2 Error
|
||||
DCD SPI1_IRQHandler ; SPI1
|
||||
DCD SPI2_IRQHandler ; SPI2
|
||||
DCD USART1_IRQHandler ; USART1
|
||||
DCD USART2_IRQHandler ; USART2
|
||||
DCD USART3_IRQHandler ; USART3
|
||||
DCD EXTI15_10_IRQHandler ; EXTI Line 15..10
|
||||
DCD RTCAlarm_IRQHandler ; RTC Alarm through EXTI Line
|
||||
DCD USBWakeUp_IRQHandler ; USB Wakeup from suspend
|
||||
__Vectors_End
|
||||
|
||||
__Vectors_Size EQU __Vectors_End - __Vectors
|
||||
|
||||
AREA |.text|, CODE, READONLY
|
||||
|
||||
; Reset handler
|
||||
Reset_Handler PROC
|
||||
EXPORT Reset_Handler [WEAK]
|
||||
IMPORT __main
|
||||
|
||||
LDR R0, =SystemInit
|
||||
BLX R0
|
||||
|
||||
;
|
||||
; Enable UsageFault, MemFault and Busfault interrupts
|
||||
;
|
||||
_SHCSR EQU 0xE000ED24 ; SHCSR is located at address 0xE000ED24
|
||||
LDR.W R0, =_SHCSR
|
||||
LDR R1, [R0] ; Read CPACR
|
||||
ORR R1, R1, #(0x7 << 16) ; Set bits 16,17,18 to enable usagefault, busfault, memfault interrupts
|
||||
STR R1, [R0] ; Write back the modified value to the CPACR
|
||||
DSB ; Wait for store to complete
|
||||
|
||||
;
|
||||
; Set priority grouping (PRIGROUP) in AIRCR to 3 (16 levels for group priority and 0 for subpriority)
|
||||
;
|
||||
_AIRCR EQU 0xE000ED0C
|
||||
_AIRCR_VAL EQU 0x05FA0300
|
||||
LDR.W R0, =_AIRCR
|
||||
LDR.W R1, =_AIRCR_VAL
|
||||
STR R1,[R0]
|
||||
|
||||
;
|
||||
; Finaly, jump to main function (void main (void))
|
||||
;
|
||||
LDR R0, =__main
|
||||
BX R0
|
||||
ENDP
|
||||
|
||||
SystemInit PROC
|
||||
EXPORT SystemInit [WEAK]
|
||||
BX LR
|
||||
ENDP
|
||||
|
||||
; Dummy Exception Handlers (infinite loops which can be modified)
|
||||
|
||||
NMI_Handler PROC
|
||||
EXPORT NMI_Handler [WEAK]
|
||||
B .
|
||||
ENDP
|
||||
HardFault_Handler\
|
||||
PROC
|
||||
EXPORT HardFault_Handler [WEAK]
|
||||
B .
|
||||
ENDP
|
||||
MemManage_Handler\
|
||||
PROC
|
||||
EXPORT MemManage_Handler [WEAK]
|
||||
B .
|
||||
ENDP
|
||||
BusFault_Handler\
|
||||
PROC
|
||||
EXPORT BusFault_Handler [WEAK]
|
||||
B .
|
||||
ENDP
|
||||
UsageFault_Handler\
|
||||
PROC
|
||||
EXPORT UsageFault_Handler [WEAK]
|
||||
B .
|
||||
ENDP
|
||||
SVC_Handler PROC
|
||||
EXPORT SVC_Handler [WEAK]
|
||||
B .
|
||||
ENDP
|
||||
DebugMon_Handler\
|
||||
PROC
|
||||
EXPORT DebugMon_Handler [WEAK]
|
||||
B .
|
||||
ENDP
|
||||
PendSV_Handler PROC
|
||||
EXPORT PendSV_Handler [WEAK]
|
||||
B .
|
||||
ENDP
|
||||
SysTick_Handler PROC
|
||||
EXPORT SysTick_Handler [WEAK]
|
||||
B .
|
||||
ENDP
|
||||
|
||||
Default_Handler PROC
|
||||
|
||||
EXPORT WWDG_IRQHandler [WEAK]
|
||||
EXPORT PVD_IRQHandler [WEAK]
|
||||
EXPORT TAMPER_IRQHandler [WEAK]
|
||||
EXPORT RTC_IRQHandler [WEAK]
|
||||
EXPORT FLASH_IRQHandler [WEAK]
|
||||
EXPORT RCC_IRQHandler [WEAK]
|
||||
EXPORT EXTI0_IRQHandler [WEAK]
|
||||
EXPORT EXTI1_IRQHandler [WEAK]
|
||||
EXPORT EXTI2_IRQHandler [WEAK]
|
||||
EXPORT EXTI3_IRQHandler [WEAK]
|
||||
EXPORT EXTI4_IRQHandler [WEAK]
|
||||
EXPORT DMA1_Channel1_IRQHandler [WEAK]
|
||||
EXPORT DMA1_Channel2_IRQHandler [WEAK]
|
||||
EXPORT DMA1_Channel3_IRQHandler [WEAK]
|
||||
EXPORT DMA1_Channel4_IRQHandler [WEAK]
|
||||
EXPORT DMA1_Channel5_IRQHandler [WEAK]
|
||||
EXPORT DMA1_Channel6_IRQHandler [WEAK]
|
||||
EXPORT DMA1_Channel7_IRQHandler [WEAK]
|
||||
EXPORT ADC1_2_IRQHandler [WEAK]
|
||||
EXPORT USB_HP_CAN1_TX_IRQHandler [WEAK]
|
||||
EXPORT USB_LP_CAN1_RX0_IRQHandler [WEAK]
|
||||
EXPORT CAN1_RX1_IRQHandler [WEAK]
|
||||
EXPORT CAN1_SCE_IRQHandler [WEAK]
|
||||
EXPORT EXTI9_5_IRQHandler [WEAK]
|
||||
EXPORT TIM1_BRK_IRQHandler [WEAK]
|
||||
EXPORT TIM1_UP_IRQHandler [WEAK]
|
||||
EXPORT TIM1_TRG_COM_IRQHandler [WEAK]
|
||||
EXPORT TIM1_CC_IRQHandler [WEAK]
|
||||
EXPORT TIM2_IRQHandler [WEAK]
|
||||
EXPORT TIM3_IRQHandler [WEAK]
|
||||
EXPORT TIM4_IRQHandler [WEAK]
|
||||
EXPORT I2C1_EV_IRQHandler [WEAK]
|
||||
EXPORT I2C1_ER_IRQHandler [WEAK]
|
||||
EXPORT I2C2_EV_IRQHandler [WEAK]
|
||||
EXPORT I2C2_ER_IRQHandler [WEAK]
|
||||
EXPORT SPI1_IRQHandler [WEAK]
|
||||
EXPORT SPI2_IRQHandler [WEAK]
|
||||
EXPORT USART1_IRQHandler [WEAK]
|
||||
EXPORT USART2_IRQHandler [WEAK]
|
||||
EXPORT USART3_IRQHandler [WEAK]
|
||||
EXPORT EXTI15_10_IRQHandler [WEAK]
|
||||
EXPORT RTCAlarm_IRQHandler [WEAK]
|
||||
EXPORT USBWakeUp_IRQHandler [WEAK]
|
||||
|
||||
WWDG_IRQHandler
|
||||
PVD_IRQHandler
|
||||
TAMPER_IRQHandler
|
||||
RTC_IRQHandler
|
||||
FLASH_IRQHandler
|
||||
RCC_IRQHandler
|
||||
EXTI0_IRQHandler
|
||||
EXTI1_IRQHandler
|
||||
EXTI2_IRQHandler
|
||||
EXTI3_IRQHandler
|
||||
EXTI4_IRQHandler
|
||||
DMA1_Channel1_IRQHandler
|
||||
DMA1_Channel2_IRQHandler
|
||||
DMA1_Channel3_IRQHandler
|
||||
DMA1_Channel4_IRQHandler
|
||||
DMA1_Channel5_IRQHandler
|
||||
DMA1_Channel6_IRQHandler
|
||||
DMA1_Channel7_IRQHandler
|
||||
ADC1_2_IRQHandler
|
||||
USB_HP_CAN1_TX_IRQHandler
|
||||
USB_LP_CAN1_RX0_IRQHandler
|
||||
CAN1_RX1_IRQHandler
|
||||
CAN1_SCE_IRQHandler
|
||||
EXTI9_5_IRQHandler
|
||||
TIM1_BRK_IRQHandler
|
||||
TIM1_UP_IRQHandler
|
||||
TIM1_TRG_COM_IRQHandler
|
||||
TIM1_CC_IRQHandler
|
||||
TIM2_IRQHandler
|
||||
TIM3_IRQHandler
|
||||
TIM4_IRQHandler
|
||||
I2C1_EV_IRQHandler
|
||||
I2C1_ER_IRQHandler
|
||||
I2C2_EV_IRQHandler
|
||||
I2C2_ER_IRQHandler
|
||||
SPI1_IRQHandler
|
||||
SPI2_IRQHandler
|
||||
USART1_IRQHandler
|
||||
USART2_IRQHandler
|
||||
USART3_IRQHandler
|
||||
EXTI15_10_IRQHandler
|
||||
RTCAlarm_IRQHandler
|
||||
USBWakeUp_IRQHandler
|
||||
|
||||
B .
|
||||
|
||||
ENDP
|
||||
|
||||
ALIGN
|
||||
|
||||
;*******************************************************************************
|
||||
; User Stack and Heap initialization
|
||||
;*******************************************************************************
|
||||
IF :DEF:__MICROLIB
|
||||
|
||||
EXPORT __initial_sp
|
||||
EXPORT __heap_base
|
||||
EXPORT __heap_limit
|
||||
|
||||
ELSE
|
||||
|
||||
IMPORT __use_two_region_memory
|
||||
EXPORT __user_initial_stackheap
|
||||
|
||||
__user_initial_stackheap
|
||||
|
||||
LDR R0, = Heap_Mem
|
||||
LDR R1, =(Stack_Mem + Stack_Size)
|
||||
LDR R2, = (Heap_Mem + Heap_Size)
|
||||
LDR R3, = Stack_Mem
|
||||
BX LR
|
||||
|
||||
ALIGN
|
||||
|
||||
ENDIF
|
||||
|
||||
END
|
||||
|
||||
;******************* (C) COPYRIGHT 2011 STMicroelectronics *****END OF FILE*****
|
1896
soft/PjtKEIL_Stepdernier/StepDFT.uvguix
Normal file
1896
soft/PjtKEIL_Stepdernier/StepDFT.uvguix
Normal file
File diff suppressed because one or more lines are too long
1362
soft/PjtKEIL_Stepdernier/StepDFT.uvprojx
Normal file
1362
soft/PjtKEIL_Stepdernier/StepDFT.uvprojx
Normal file
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Load diff
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Reference in a new issue