nvmem: imx-ocotp: Change TIMING calculation to u-boot algorithm
The RELAX field of the OCOTP block is turning out as a zero on i.MX8MM.
This messes up the subsequent re-load of the fuse shadow registers.
After some discussion with people @ NXP its clear we have missed a trick
here in Linux.
The OCOTP fuse programming time has a physical minimum 'burn time' that is
not related to the ipg_clk.
We need to define the RELAX, STROBE_READ and STROBE_PROG fields in terms of
desired timings to allow for the burn-in to safely complete. Right now only
the RELAX field is calculated in terms of an absolute time and we are
ending up with a value of zero.
This patch inherits the u-boot timings for the OCOTP_TIMING calculation on
the i.MX6 and i.MX8. Those timings are known to work and critically specify
values such as STROBE_PROG as a minimum timing.
Fixes: 0642bac7da
("nvmem: imx-ocotp: add write support")
Signed-off-by: Bryan O'Donoghue <pure.logic@nexus-software.ie>
Suggested-by: Leonard Crestez <leonard.crestez@nxp.com>
Reviewed-by: Leonard Crestez <leonard.crestez@nxp.com>
Signed-off-by: Srinivas Kandagatla <srinivas.kandagatla@linaro.org>
Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
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@ -44,7 +44,9 @@
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#define IMX_OCOTP_BM_CTRL_ERROR 0x00000200
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#define IMX_OCOTP_BM_CTRL_REL_SHADOWS 0x00000400
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#define DEF_RELAX 20 /* > 16.5ns */
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#define TIMING_STROBE_PROG_US 10 /* Min time to blow a fuse */
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#define TIMING_STROBE_READ_NS 37 /* Min time before read */
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#define TIMING_RELAX_NS 17
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#define DEF_FSOURCE 1001 /* > 1000 ns */
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#define DEF_STROBE_PROG 10000 /* IPG clocks */
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#define IMX_OCOTP_WR_UNLOCK 0x3E770000
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@ -176,12 +178,38 @@ static void imx_ocotp_set_imx6_timing(struct ocotp_priv *priv)
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* fields with timing values to match the current frequency of the
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* ipg_clk. OTP writes will work at maximum bus frequencies as long
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* as the HW_OCOTP_TIMING parameters are set correctly.
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*
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* Note: there are minimum timings required to ensure an OTP fuse burns
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* correctly that are independent of the ipg_clk. Those values are not
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* formally documented anywhere however, working from the minimum
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* timings given in u-boot we can say:
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*
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* - Minimum STROBE_PROG time is 10 microseconds. Intuitively 10
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* microseconds feels about right as representative of a minimum time
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* to physically burn out a fuse.
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*
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* - Minimum STROBE_READ i.e. the time to wait post OTP fuse burn before
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* performing another read is 37 nanoseconds
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*
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* - Minimum RELAX timing is 17 nanoseconds. This final RELAX minimum
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* timing is not entirely clear the documentation says "This
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* count value specifies the time to add to all default timing
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* parameters other than the Tpgm and Trd. It is given in number
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* of ipg_clk periods." where Tpgm and Trd refer to STROBE_PROG
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* and STROBE_READ respectively. What the other timing parameters
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* are though, is not specified. Experience shows a zero RELAX
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* value will mess up a re-load of the shadow registers post OTP
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* burn.
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*/
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clk_rate = clk_get_rate(priv->clk);
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relax = clk_rate / (1000000000 / DEF_RELAX) - 1;
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strobe_prog = clk_rate / (1000000000 / 10000) + 2 * (DEF_RELAX + 1) - 1;
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strobe_read = clk_rate / (1000000000 / 40) + 2 * (DEF_RELAX + 1) - 1;
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relax = DIV_ROUND_UP(clk_rate * TIMING_RELAX_NS, 1000000000) - 1;
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strobe_read = DIV_ROUND_UP(clk_rate * TIMING_STROBE_READ_NS,
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1000000000);
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strobe_read += 2 * (relax + 1) - 1;
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strobe_prog = DIV_ROUND_CLOSEST(clk_rate * TIMING_STROBE_PROG_US,
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1000000);
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strobe_prog += 2 * (relax + 1) - 1;
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timing = readl(priv->base + IMX_OCOTP_ADDR_TIMING) & 0x0FC00000;
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timing |= strobe_prog & 0x00000FFF;
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