forked from M-Labs/artiq
libboard/sdram: add write/read leveling scan
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@ -31,6 +31,51 @@ mod ddr {
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ddrphy::wlevel_en_write(enabled as u8);
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ddrphy::wlevel_en_write(enabled as u8);
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}
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}
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#[cfg(kusddrphy)]
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unsafe fn write_level_scan(logger: &mut Option<&mut fmt::Write>) {
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log!(logger, "DQS initial delay: {} taps\n", ddrphy::wdly_dqs_taps_read());
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log!(logger, "Write leveling scan:\n");
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enable_write_leveling(true);
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spin_cycles(100);
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for n in 0..DQS_SIGNAL_COUNT {
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let dq_addr = dfii::PI0_RDDATA_ADDR
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.offset((DQS_SIGNAL_COUNT - 1 - n) as isize);
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log!(logger, "Module {}:\n", DQS_SIGNAL_COUNT - 1 - n);
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ddrphy::dly_sel_write(1 << n);
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ddrphy::wdly_dq_rst_write(1);
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ddrphy::wdly_dqs_rst_write(1);
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#[cfg(kusddrphy)]
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for _ in 0..ddrphy::wdly_dqs_taps_read() {
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ddrphy::wdly_dqs_inc_write(1);
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}
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let mut dq;
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for _ in 0..DDRPHY_MAX_DELAY {
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ddrphy::wlevel_strobe_write(1);
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spin_cycles(10);
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dq = ptr::read_volatile(dq_addr);
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if dq != 0 {
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log!(logger, "1");
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}
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else {
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log!(logger, "0");
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}
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ddrphy::wdly_dq_inc_write(1);
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ddrphy::wdly_dqs_inc_write(1);
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}
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log!(logger, "\n");
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}
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enable_write_leveling(false);
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}
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#[cfg(ddrphy_wlevel)]
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#[cfg(ddrphy_wlevel)]
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unsafe fn write_level(logger: &mut Option<&mut fmt::Write>,
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unsafe fn write_level(logger: &mut Option<&mut fmt::Write>,
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delay: &mut [u16; DQS_SIGNAL_COUNT],
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delay: &mut [u16; DQS_SIGNAL_COUNT],
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@ -142,7 +187,85 @@ mod ddr {
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}
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}
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}
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}
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unsafe fn read_leveling(logger: &mut Option<&mut fmt::Write>) {
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#[cfg(kusddrphy)]
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unsafe fn read_level_scan(logger: &mut Option<&mut fmt::Write>) {
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log!(logger, "Read leveling scan:\n");
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// Generate pseudo-random sequence
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let mut prs = [0; DFII_NPHASES * DFII_PIX_DATA_SIZE];
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let mut prv = 42;
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for b in prs.iter_mut() {
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prv = 1664525 * prv + 1013904223;
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*b = prv as u8;
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}
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// Activate
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dfii::pi0_address_write(0);
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dfii::pi0_baddress_write(0);
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sdram_phy::command_p0(DFII_COMMAND_RAS|DFII_COMMAND_CS);
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spin_cycles(15);
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// Write test pattern
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for p in 0..DFII_NPHASES {
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for offset in 0..DFII_PIX_DATA_SIZE {
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let addr = DFII_PIX_WRDATA_ADDR[p].offset(offset as isize);
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let data = prs[DFII_PIX_DATA_SIZE * p + offset];
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ptr::write_volatile(addr, data as u32);
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}
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}
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sdram_phy::dfii_piwr_address_write(0);
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sdram_phy::dfii_piwr_baddress_write(0);
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sdram_phy::command_pwr(DFII_COMMAND_CAS|DFII_COMMAND_WE|DFII_COMMAND_CS|
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DFII_COMMAND_WRDATA);
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// Calibrate each DQ in turn
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sdram_phy::dfii_pird_address_write(0);
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sdram_phy::dfii_pird_baddress_write(0);
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for n in 0..DQS_SIGNAL_COUNT {
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log!(logger, "Module {}:\n", DQS_SIGNAL_COUNT - n - 1);
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ddrphy::dly_sel_write(1 << (DQS_SIGNAL_COUNT - n - 1));
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ddrphy::rdly_dq_rst_write(1);
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for _ in 0..DDRPHY_MAX_DELAY {
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sdram_phy::command_prd(DFII_COMMAND_CAS|DFII_COMMAND_CS|
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DFII_COMMAND_RDDATA);
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spin_cycles(15);
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let mut working = true;
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for p in 0..DFII_NPHASES {
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for _ in 0..64 {
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for &offset in [n, n + DQS_SIGNAL_COUNT].iter() {
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let addr = DFII_PIX_RDDATA_ADDR[p].offset(offset as isize);
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let data = prs[DFII_PIX_DATA_SIZE * p + offset];
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if ptr::read_volatile(addr) as u8 != data {
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working = false;
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}
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}
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}
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}
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if working {
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log!(logger, "1");
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}
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else {
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log!(logger, "0");
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}
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ddrphy::rdly_dq_inc_write(1);
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}
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log!(logger, "\n");
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}
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// Precharge
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dfii::pi0_address_write(0);
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dfii::pi0_baddress_write(0);
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sdram_phy::command_p0(DFII_COMMAND_RAS|DFII_COMMAND_WE|DFII_COMMAND_CS);
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spin_cycles(15);
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}
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unsafe fn read_level(logger: &mut Option<&mut fmt::Write>) {
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log!(logger, "Read leveling: ");
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log!(logger, "Read leveling: ");
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// Generate pseudo-random sequence
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// Generate pseudo-random sequence
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@ -253,13 +376,17 @@ mod ddr {
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{
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{
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let mut delay = [0; DQS_SIGNAL_COUNT];
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let mut delay = [0; DQS_SIGNAL_COUNT];
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let mut high_skew = [false; DQS_SIGNAL_COUNT];
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let mut high_skew = [false; DQS_SIGNAL_COUNT];
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#[cfg(kusddrphy)]
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write_level_scan(logger);
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if !write_level(logger, &mut delay, &mut high_skew) {
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if !write_level(logger, &mut delay, &mut high_skew) {
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return false
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return false
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}
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}
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read_bitslip(logger, &delay, &high_skew);
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read_bitslip(logger, &delay, &high_skew);
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}
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}
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read_leveling(logger);
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#[cfg(kusddrphy)]
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read_level_scan(logger);
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read_level(logger);
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true
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true
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}
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}
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