85 lines
3.5 KiB
C
85 lines
3.5 KiB
C
#ifndef SCHEDULEDIO_H
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#define SCHEDULEDIO_H
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//If coil inverse is on, set the output low, else set it high
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//#define beginCoil1Charge() { configPage4.IgInv == 1 ? *ign1_pin_port &= ~(ign1_pin_mask); : *ign1_pin_port |= (ign1_pin_mask); } TACH_PULSE_LOW();
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inline void beginCoil1Charge();
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inline void endCoil1Charge();
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inline void beginCoil2Charge();
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inline void endCoil2Charge();
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inline void beginCoil3Charge();
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inline void endCoil3Charge();
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inline void beginCoil4Charge();
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inline void endCoil4Charge();
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inline void beginCoil5Charge();
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inline void endCoil5Charge();
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inline void beginCoil6Charge();
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inline void endCoil6Charge();
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inline void beginCoil7Charge();
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inline void endCoil7Charge();
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inline void beginCoil8Charge();
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inline void endCoil8Charge();
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//The following functions are used specifically for the trailing coil on rotary engines. They are separate as they also control the switching of the trailing select pin
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inline void beginTrailingCoilCharge();
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inline void endTrailingCoilCharge1();
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inline void endTrailingCoilCharge2();
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//And the combined versions of the above for simplicity
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void beginCoil1and3Charge();
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void endCoil1and3Charge();
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void beginCoil2and4Charge();
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void endCoil2and4Charge();
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#define openInjector1() *inj1_pin_port |= (inj1_pin_mask); BIT_SET(currentStatus.status1, BIT_STATUS1_INJ1)
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#define closeInjector1() *inj1_pin_port &= ~(inj1_pin_mask); BIT_CLEAR(currentStatus.status1, BIT_STATUS1_INJ1)
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#define openInjector2() *inj2_pin_port |= (inj2_pin_mask); BIT_SET(currentStatus.status1, BIT_STATUS1_INJ2)
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#define closeInjector2() *inj2_pin_port &= ~(inj2_pin_mask); BIT_CLEAR(currentStatus.status1, BIT_STATUS1_INJ2)
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#define openInjector3() *inj3_pin_port |= (inj3_pin_mask); BIT_SET(currentStatus.status1, BIT_STATUS1_INJ3)
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#define closeInjector3() *inj3_pin_port &= ~(inj3_pin_mask); BIT_CLEAR(currentStatus.status1, BIT_STATUS1_INJ3)
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#define openInjector4() *inj4_pin_port |= (inj4_pin_mask); BIT_SET(currentStatus.status1, BIT_STATUS1_INJ4)
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#define closeInjector4() *inj4_pin_port &= ~(inj4_pin_mask); BIT_CLEAR(currentStatus.status1, BIT_STATUS1_INJ4)
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#define openInjector5() *inj5_pin_port |= (inj5_pin_mask)
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#define closeInjector5() *inj5_pin_port &= ~(inj5_pin_mask)
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//Dynamic functions below
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#define openInjector6() *inj6_pin_port |= (inj6_pin_mask);
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#define closeInjector6() *inj6_pin_port &= ~(inj6_pin_mask);
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#define openInjector7() *inj7_pin_port |= (inj7_pin_mask);
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#define closeInjector7() *inj7_pin_port &= ~(inj7_pin_mask);
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#define openInjector8() *inj8_pin_port |= (inj8_pin_mask);
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#define closeInjector8() *inj8_pin_port &= ~(inj8_pin_mask);
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#define openInjector1and4() openInjector1(); openInjector4()
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#define closeInjector1and4() closeInjector1(); closeInjector4()
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#define openInjector2and3() openInjector2(); openInjector3()
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#define closeInjector2and3() closeInjector2(); closeInjector3()
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//5 cylinder support doubles up injector 3 as being closese to inj 5 (Crank angle)
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#define openInjector3and5() openInjector3(); openInjector5()
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#define closeInjector3and5() closeInjector3(); closeInjector5()
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#define coil1Low() (*ign1_pin_port &= ~(ign1_pin_mask))
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#define coil1High() (*ign1_pin_port |= (ign1_pin_mask))
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#define coil2Low() (*ign2_pin_port &= ~(ign2_pin_mask))
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#define coil2High() (*ign2_pin_port |= (ign2_pin_mask))
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#define coil3Low() (*ign3_pin_port &= ~(ign3_pin_mask))
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#define coil3High() (*ign3_pin_port |= (ign3_pin_mask))
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#define coil4Low() (*ign4_pin_port &= ~(ign4_pin_mask))
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#define coil4High() (*ign4_pin_port |= (ign4_pin_mask))
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void nullCallback();
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static byte coilHIGH = HIGH;
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static byte coilLOW = LOW;
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#endif
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