forked from M-Labs/artiq
firmware: implement si5324 skew calibration
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@ -278,7 +278,78 @@ pub fn select_recovered_clock(rc: bool) -> Result<()> {
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}
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#[cfg(has_si_phaser)]
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pub fn calibrate_skew() -> Result<()> {
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// TODO: implement
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fn phase_shift(direction: u8) {
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unsafe {
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csr::si_phaser::phase_shift_write(direction);
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while csr::si_phaser::phase_shift_done_read() == 0 {}
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}
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// wait for the Si5324 loop to stabilize
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clock::spin_us(500);
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}
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#[cfg(has_si_phaser)]
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fn get_phaser_sample() -> bool {
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let mut sample = true;
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for _ in 0..32 {
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if unsafe { csr::si_phaser::sample_result_read() } == 0 {
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sample = false;
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}
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}
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sample
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}
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#[cfg(has_si_phaser)]
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const PS_MARGIN: u32 = 28;
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#[cfg(has_si_phaser)]
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fn get_stable_phaser_sample() -> (bool, u32) {
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let mut nshifts: u32 = 0;
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loop {
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let s1 = get_phaser_sample();
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for _ in 0..PS_MARGIN {
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phase_shift(1);
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}
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let s2 = get_phaser_sample();
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for _ in 0..PS_MARGIN {
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phase_shift(1);
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}
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let s3 = get_phaser_sample();
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nshifts += 2*PS_MARGIN;
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if s1 == s2 && s2 == s3 {
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for _ in 0..PS_MARGIN {
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phase_shift(0);
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}
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nshifts -= PS_MARGIN;
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return (s2, nshifts);
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}
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}
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}
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#[cfg(has_si_phaser)]
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pub fn calibrate_skew(skew: u16) -> Result<()> {
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// Get into a 0 region
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let (s1, mut nshifts) = get_stable_phaser_sample();
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if s1 {
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while get_phaser_sample() {
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phase_shift(1);
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nshifts += 1;
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}
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for _ in 0..PS_MARGIN {
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phase_shift(1);
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}
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nshifts += PS_MARGIN;
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}
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// Get to the 0->1 transition
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while !get_phaser_sample() {
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phase_shift(1);
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nshifts += 1;
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}
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info!("nshifts to 0->1 siphaser transition: {} ({}deg)", nshifts, nshifts*360/(56*8));
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// Apply specified skew referenced to that transition
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for _ in 0..skew {
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phase_shift(1);
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}
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Ok(())
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}
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@ -236,7 +236,7 @@ fn startup() {
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}
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info!("link is up, switching to recovered clock");
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si5324::select_recovered_clock(true).expect("failed to switch clocks");
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si5324::calibrate_skew().expect("failed to calibrate skew");
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si5324::calibrate_skew(32).expect("failed to calibrate skew");
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drtio_reset(false);
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drtio_reset_phy(false);
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while drtio_link_rx_up() {
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