mirror of
https://github.com/ivanizag/izapple2.git
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84 lines
2.3 KiB
Go
84 lines
2.3 KiB
Go
package izapple2
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/*
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Stepper motor to position the track.
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There are a number of group of four magnets. The stepper motor can be thought as a long
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line of groups of magnets, each group on the same configuration. We call phase each of those
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magnets. The cog is attracted to the enabled magnets, and can stay aligned to a magnet or
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between two.
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Phases (magnets): 3 2 1 0 3 2 1 0 3 2 1 0
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Cog direction (step within a group): 7 6 5 4 3 2 1 0 7 6 5 4 3 2 1 0 7 6 5 4 3 2 1 0
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We will consider that the cog would go to the prefferred position if there is one. Independently
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of the previous position. The previous position is only used to know if it goes up or down
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a full group.
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Phases are coded in 4 bits in an uint8. Q3, q2, q1 and q0 with q0 on the LSB.
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*/
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const (
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undefinedPosition = -1
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maxStep = 68 * 2 // What is the maximum quarter tracks a DiskII can go?
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stepsPerGroup = 8
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stepsPerTrack = 4
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)
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var cogPositions = []int{
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undefinedPosition, // 0000, phases active
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0, // 0001
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2, // 0010
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1, // 0011
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4, // 0100
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undefinedPosition, // 0101
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3, // 0110
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2, // 0111
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6, // 1000
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7, // 1001
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undefinedPosition, // 1010
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0, // 1011
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5, // 1100
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6, // 1101
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4, // 1110
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undefinedPosition, // 1111
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}
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func moveDriveStepper(phases uint8, prevStep int) int {
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//fmt.Printf("magnets: 0x%x\n", phases)
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cogPosition := cogPositions[phases]
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if cogPosition == undefinedPosition {
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// Don't move if magnets don't push on a defined direction.
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return prevStep
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}
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prevPosition := prevStep % stepsPerGroup // Direction, step in the current group of magnets.
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delta := cogPosition - prevPosition
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if delta < 0 {
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delta = delta + stepsPerGroup
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}
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var nextStep int
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if delta < 4 {
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// Steps up
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nextStep = prevStep + delta
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if nextStep > maxStep {
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nextStep = maxStep
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}
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} else if delta == 4 {
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// Don't move if magnets push on the opposite direction
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nextStep = prevStep
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} else { // delta > 4
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// Steps down
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nextStep = prevStep + delta - stepsPerGroup
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if nextStep < 0 {
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nextStep = 0
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}
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}
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//fmt.Printf("[DiskII] 1/4 track: %03d %vO\n", nextStep, strings.Repeat(" ", nextStep))
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return nextStep
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}
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