From: Sagi Maimon <maimon.sagi@gmail.com>
To: netdev@vger.kernel.org
Cc: vadim.fedorenko@linux.dev, richardcochran@gmail.com,
kuba@kernel.org, andrew+netdev@lunn.ch, davem@davemloft.net,
edumazet@google.com, pabeni@redhat.com,
linux-kernel@vger.kernel.org, Sagi Maimon <maimon.sagi@gmail.com>
Subject: [PATCH net-next v11 2/2] ptp: ocp: add TAP CPLD firmware upload for ADVA TimeCard X1
Date: Tue, 11 Aug 2026 16:57:20 +0300 [thread overview]
Message-ID: <20260811135720.109580-3-maimon.sagi@gmail.com> (raw)
In-Reply-To: <20260811135720.109580-1-maimon.sagi@gmail.com>
The Lattice MachXO3 CPLD on the ADVA TimeCard X1 is programmed over I2C
using in-system programming (ISP). Build on the TMC bus arbitration
added previously and expose the update path through the kernel
firmware-upload subsystem.
The framework acquires the bus, erases the configuration flash, programs
the image page-by-page and activates it with the MachXO3 REFRESH
command. The upload node is registered per card as adva-cpld.N, using
the same index as the owning ocpN device, so a host with more than one
X1 board gets one node each:
/sys/class/firmware/adva-cpld.N/
The whole prepare/write/poll_complete/cleanup sequence runs under
cpld_lock and the i2c adapter lock, so an EEPROM read blocks for as long
as programming takes; the alternative is reading the TMC bus instead.
The upload is unregistered first on detach, which cancels and flushes an
in-flight programming cycle while the I2C controller is still up.
Select FW_LOADER and FW_UPLOAD, as the documented update path does not
exist without them.
Signed-off-by: Sagi Maimon <maimon.sagi@gmail.com>
---
Documentation/ABI/testing/sysfs-timecard | 5 +
drivers/ptp/Kconfig | 2 +
drivers/ptp/ptp_ocp.c | 313 ++++++++++++++++++++++-
3 files changed, 319 insertions(+), 1 deletion(-)
diff --git a/Documentation/ABI/testing/sysfs-timecard b/Documentation/ABI/testing/sysfs-timecard
index 26a93cee0b89..41eeadd46330 100644
--- a/Documentation/ABI/testing/sysfs-timecard
+++ b/Documentation/ABI/testing/sysfs-timecard
@@ -30,6 +30,11 @@ Description: (RO, root only) The status register of the TAP CPLD, in
ID of the CPLD is reported as the fixed "cpld.id" version by
devlink dev info.
+ To program new CPLD firmware use the standard kernel
+ firmware-upload interface, registered per card at:
+ /sys/class/firmware/adva-cpld.N/
+ where N is the index of this ocpN device.
+
What: /sys/class/timecard/ocpN/available_clock_sources
Date: September 2021
Contact: Jonathan Lemon <jonathan.lemon@gmail.com>
diff --git a/drivers/ptp/Kconfig b/drivers/ptp/Kconfig
index b93640ca08b7..0c2c7dd32e7f 100644
--- a/drivers/ptp/Kconfig
+++ b/drivers/ptp/Kconfig
@@ -218,6 +218,8 @@ config PTP_1588_CLOCK_OCP
select NET_DEVLINK
select CRC16
select DPLL
+ select FW_LOADER
+ select FW_UPLOAD
help
This driver adds support for an OpenCompute time card.
diff --git a/drivers/ptp/ptp_ocp.c b/drivers/ptp/ptp_ocp.c
index 41a7fde1ae6a..4a0bd9b89452 100644
--- a/drivers/ptp/ptp_ocp.c
+++ b/drivers/ptp/ptp_ocp.c
@@ -20,12 +20,14 @@
#include <linux/spi/altera.h>
#include <net/devlink.h>
#include <linux/i2c.h>
+#include <linux/iopoll.h>
#include <linux/mtd/mtd.h>
#include <linux/nvmem-consumer.h>
#include <linux/crc16.h>
#include <linux/dpll.h>
#include <linux/unaligned.h>
#include <linux/delay.h>
+#include <linux/firmware.h>
#define PCI_DEVICE_ID_META_TIMECARD 0x0400
@@ -426,6 +428,9 @@ struct ptp_ocp {
struct i2c_adapter *cpld_adap; /* claimed adapter; valid under cpld_lock */
u32 cpld_id; /* cached Lattice device ID; 0 if unread */
bool has_cpld; /* x1 TAP CPLD present */
+ struct fw_upload *cpld_fw_upload; /* firmware upload handle; NULL if absent */
+ bool cpld_cancel; /* cancellation requested */
+ bool cpld_in_config_mode; /* EN_CFG_TP issued but not yet REFRESH'd */
};
#define OCP_REQ_TIMESTAMP BIT(0)
@@ -459,6 +464,8 @@ static int ptp_ocp_art_board_init(struct ptp_ocp *bp, struct ocp_resource *r);
static int ptp_ocp_adva_board_init(struct ptp_ocp *bp, struct ocp_resource *r);
+static const struct fw_upload_ops adva_cpld_upload_ops;
+
static const struct ocp_sma_op ocp_adva_sma_op;
static const struct ocp_sma_op ocp_adva_x1_sma_op;
static int adva_x1_cpld_device_id(struct ptp_ocp *bp, u32 *id);
@@ -3225,6 +3232,29 @@ ptp_ocp_adva_board_init(struct ptp_ocp *bp, struct ocp_resource *r)
ptp_ocp_sma_init(bp);
bp->has_cpld = info->has_cpld;
+ if (bp->has_cpld) {
+ struct fw_upload *fwl;
+ const char *name;
+
+ /* One instance per card, numbered like the ocpN device.
+ * firmware_upload_register() keeps the pointer rather than
+ * copying the string, so it has to outlive the registration.
+ */
+ name = devm_kasprintf(&bp->pdev->dev, GFP_KERNEL,
+ "adva-cpld.%d", bp->id);
+ if (!name)
+ return -ENOMEM;
+
+ fwl = firmware_upload_register(THIS_MODULE, &bp->pdev->dev,
+ name, &adva_cpld_upload_ops, bp);
+ if (IS_ERR(fwl))
+ dev_warn(&bp->pdev->dev,
+ "CPLD firmware upload unavailable: %pe\n",
+ fwl);
+ else
+ bp->cpld_fw_upload = fwl;
+ }
+
return ptp_ocp_init_clock(bp, &info->servo);
}
@@ -4283,6 +4313,15 @@ static const struct ocp_attr_group art_timecard_groups[] = {
/* Lattice LCMXO3LF ISC command codes */
#define CPLD_CMD_READ_ID 0xE0000000UL
#define CPLD_CMD_READ_STATUS 0x3C000000UL
+#define CPLD_CMD_EN_CFG_TP 0x74 /* enable config, transparent mode */
+#define CPLD_CMD_DIS_CFG 0x26
+#define CPLD_CMD_ERASE 0x0E
+#define CPLD_CMD_RESET_ADDR 0x46
+#define CPLD_CMD_WRITE_PAGE 0x70
+#define CPLD_CMD_SET_DONE 0x5E
+#define CPLD_CMD_REFRESH 0x79
+#define CPLD_PAGE_SIZE 16
+#define CPLD_POLL_US 10000 /* status poll interval while busy */
/* Status register bit positions (Lattice LCMXO3LF datasheet) */
#define CPLD_STATUS_DONE BIT(8)
@@ -4408,7 +4447,8 @@ static void adva_x1_bus_release(struct ptp_ocp *bp)
* Claim the TMC bus for a CPLD operation. Holding the adapter lock over
* the handshake keeps ptp_ocp_read_eeprom(), the nvmem attributes and the
* at24 sysfs files off the controller while it is routed away from the
- * EEPROMs.
+ * EEPROMs. A firmware upload holds it across the whole prepare/write/poll
+ * sequence, so an EEPROM read blocks for as long as programming takes.
*/
static int adva_x1_bus_claim(struct ptp_ocp *bp)
{
@@ -4442,6 +4482,20 @@ static int adva_x1_mux_select(struct ptp_ocp *bp, int ch)
return adva_x1_i2c_xfer(bp, ADVA_MUX_ADDR, &val, 1, NULL, 0);
}
+/* Send 1-byte ISC command + optional arguments. */
+static int adva_x1_cpld_write(struct ptp_ocp *bp,
+ u8 cmd, const u8 *args, u8 nargs)
+{
+ u8 buf[1 + 64];
+
+ if (nargs > 64)
+ return -EINVAL;
+ buf[0] = cmd;
+ if (nargs)
+ memcpy(&buf[1], args, nargs);
+ return adva_x1_i2c_xfer(bp, ADVA_CPLD_ADDR, buf, 1 + nargs, NULL, 0);
+}
+
/*
* Send a 4-byte command then read data back without an intermediate STOP
* (Lattice combined write->repeated-START->read). Two messages in one
@@ -4467,6 +4521,38 @@ static int adva_x1_cpld_read_status(struct ptp_ocp *bp, u32 *status)
return 0;
}
+/* Poll the status register until the CPLD goes idle, or @max_ms elapses.
+ * The deadline is on wall time, so the I2C transactions count against it,
+ * and the status is read once more after it expires before giving up.
+ */
+static int adva_x1_cpld_wait_ready(struct ptp_ocp *bp, unsigned int max_ms)
+{
+ u32 status = 0;
+ int err, ret;
+
+ ret = read_poll_timeout(adva_x1_cpld_read_status, err,
+ err || READ_ONCE(bp->cpld_cancel) ||
+ (status & CPLD_STATUS_FAILED) ||
+ !(status & CPLD_STATUS_BUSY),
+ CPLD_POLL_US, max_ms * USEC_PER_MSEC, false,
+ bp, &status);
+ if (ret)
+ return ret;
+ if (READ_ONCE(bp->cpld_cancel))
+ return -ECANCELED;
+ if (err || (status & CPLD_STATUS_FAILED))
+ return -EIO;
+
+ return 0;
+}
+
+/* A step aborted by cancel() must be reported as such, not as a HW error. */
+static enum fw_upload_err adva_cpld_err(struct ptp_ocp *bp)
+{
+ return READ_ONCE(bp->cpld_cancel) ? FW_UPLOAD_ERR_CANCELED
+ : FW_UPLOAD_ERR_HW_ERROR;
+}
+
/*
* Read the Lattice device ID of the TAP CPLD. It is a fixed property of
* the part, so cache it and pay the bus arbitration only once. The
@@ -4544,6 +4630,222 @@ cpld_status_show(struct device *dev, struct device_attribute *attr,
}
static DEVICE_ATTR_ADMIN_RO(cpld_status);
+/*
+ * adva_x1 CPLD firmware-upload callbacks.
+ *
+ * The kernel firmware-upload subsystem (CONFIG_FW_UPLOAD) exposes:
+ * /sys/class/firmware/adva-cpld.N/{data,loading,status,error,...}
+ * where N is the index of the owning ocpN device.
+ * Userspace writes the raw binary page data directly — no /lib/firmware/
+ * staging file is needed.
+ *
+ * Callback sequence driven by the framework:
+ * prepare() - validate size, acquire bus, enable config, erase flash
+ * write() - program one 16-byte page per call
+ * poll_complete()- set DONE, REFRESH, wait for CPLD to reboot
+ * cancel() - set flag; checked at the start of each callback
+ * cleanup() - release bus resources (called on success or failure)
+ */
+static enum fw_upload_err
+adva_cpld_prepare(struct fw_upload *fwl, const u8 *data, u32 size)
+{
+ static const u8 era_args[3] = { 0x04, 0x00, 0x00 }; /* cfg sector only */
+ static const u8 en_args[2] = { 0x08, 0x00 };
+ static const u8 dis_args[2] = { 0x00, 0x00 };
+ static const u8 zero3[3] = { 0 };
+ enum fw_upload_err ret = FW_UPLOAD_ERR_NONE;
+ struct ptp_ocp *bp = fwl->dd_handle;
+
+ /* Do not clear cpld_cancel here: fw_upload_start() queues the work
+ * before this runs, so a cancel may already have arrived. It is
+ * cleared once the upload is over, on every exit below and in
+ * cleanup().
+ */
+ if (!size || size % CPLD_PAGE_SIZE) {
+ WRITE_ONCE(bp->cpld_cancel, false);
+ return FW_UPLOAD_ERR_INVALID_SIZE;
+ }
+
+ bp->cpld_in_config_mode = false;
+
+ mutex_lock(&bp->cpld_lock);
+
+ if (adva_x1_bus_claim(bp)) {
+ ret = FW_UPLOAD_ERR_TIMEOUT;
+ goto err_unlock;
+ }
+
+ if (adva_x1_mux_select(bp, ADVA_MUX_CHANNEL)) {
+ ret = FW_UPLOAD_ERR_HW_ERROR;
+ goto err_release;
+ }
+
+ /* Set before issuing EN_CFG_TP, not after it completes: the CPLD may
+ * have entered configuration mode even if the write reports an error
+ * or the wait below times out, and err_deselect only sends DIS_CFG
+ * when this is set. A DIS_CFG to a device that never entered the
+ * mode is harmless; leaving it enabled is not.
+ */
+ bp->cpld_in_config_mode = true;
+
+ if (adva_x1_cpld_write(bp, CPLD_CMD_EN_CFG_TP, en_args, 2) ||
+ adva_x1_cpld_wait_ready(bp, 5000)) {
+ ret = adva_cpld_err(bp);
+ goto err_deselect;
+ }
+
+ if (READ_ONCE(bp->cpld_cancel)) {
+ ret = FW_UPLOAD_ERR_CANCELED;
+ goto err_deselect;
+ }
+
+ if (adva_x1_cpld_write(bp, CPLD_CMD_ERASE, era_args, 3) ||
+ adva_x1_cpld_wait_ready(bp, 15000)) {
+ ret = adva_cpld_err(bp);
+ goto err_deselect;
+ }
+
+ if (READ_ONCE(bp->cpld_cancel)) {
+ ret = FW_UPLOAD_ERR_CANCELED;
+ goto err_deselect;
+ }
+
+ if (adva_x1_cpld_write(bp, CPLD_CMD_RESET_ADDR, zero3, 3)) {
+ ret = FW_UPLOAD_ERR_HW_ERROR;
+ goto err_deselect;
+ }
+
+ /* cleanup() unlocks everything. fw_upload_main() only pairs it with
+ * a prepare() that succeeded, so the error paths below unlock here
+ * instead; hand the context to cleanup() for sparse's benefit.
+ */
+ __release(&bp->cpld_lock);
+ return FW_UPLOAD_ERR_NONE;
+
+err_deselect:
+ if (bp->cpld_in_config_mode) {
+ adva_x1_cpld_write(bp, CPLD_CMD_DIS_CFG, dis_args, 2);
+ bp->cpld_in_config_mode = false;
+ }
+ adva_x1_mux_select(bp, -1);
+err_release:
+ adva_x1_bus_release(bp);
+err_unlock:
+ WRITE_ONCE(bp->cpld_cancel, false);
+ mutex_unlock(&bp->cpld_lock);
+ return ret;
+}
+
+static enum fw_upload_err
+adva_cpld_write(struct fw_upload *fwl, const u8 *data,
+ u32 offset, u32 size, u32 *written)
+{
+ struct ptp_ocp *bp = fwl->dd_handle;
+ u8 page_args[3 + CPLD_PAGE_SIZE];
+
+ lockdep_assert_held(&bp->cpld_lock);
+
+ if (READ_ONCE(bp->cpld_cancel))
+ return FW_UPLOAD_ERR_CANCELED;
+
+ if (size < CPLD_PAGE_SIZE)
+ return FW_UPLOAD_ERR_INVALID_SIZE;
+
+ page_args[0] = 0x00;
+ page_args[1] = 0x00;
+ page_args[2] = 0x01;
+ memcpy(&page_args[3], data + offset, CPLD_PAGE_SIZE);
+
+ if (adva_x1_cpld_write(bp, CPLD_CMD_WRITE_PAGE,
+ page_args, 3 + CPLD_PAGE_SIZE) ||
+ adva_x1_cpld_wait_ready(bp, 100))
+ return adva_cpld_err(bp);
+
+ *written = CPLD_PAGE_SIZE;
+ return FW_UPLOAD_ERR_NONE;
+}
+
+static enum fw_upload_err
+adva_cpld_poll_complete(struct fw_upload *fwl)
+{
+ static const u8 ref_args[2] = { 0x00, 0x00 };
+ static const u8 zero3[3] = { 0 };
+ struct ptp_ocp *bp = fwl->dd_handle;
+ int err;
+ u32 st;
+
+ lockdep_assert_held(&bp->cpld_lock);
+
+ if (READ_ONCE(bp->cpld_cancel))
+ return FW_UPLOAD_ERR_CANCELED;
+
+ if (adva_x1_cpld_write(bp, CPLD_CMD_SET_DONE, zero3, 3) ||
+ adva_x1_cpld_wait_ready(bp, 1000))
+ return adva_cpld_err(bp);
+
+ if (adva_x1_cpld_read_status(bp, &st) || !(st & CPLD_STATUS_DONE))
+ return FW_UPLOAD_ERR_HW_ERROR;
+
+ if (adva_x1_cpld_write(bp, CPLD_CMD_REFRESH, ref_args, 2))
+ return FW_UPLOAD_ERR_HW_ERROR;
+
+ /* REFRESH reboots the CPLD out of configuration mode, so cleanup()
+ * must not send DIS_CFG afterwards even if the checks below fail.
+ */
+ bp->cpld_in_config_mode = false;
+
+ /* The new image is already running at this point, so a segment that
+ * is not back yet must not be reported as a failed update: retry the
+ * reselect instead of sampling the mux once at a fixed delay.
+ */
+ msleep(1500);
+ if (read_poll_timeout(adva_x1_mux_select, err, !err, CPLD_POLL_US,
+ 3000 * USEC_PER_MSEC, false,
+ bp, ADVA_MUX_CHANNEL))
+ return FW_UPLOAD_ERR_TIMEOUT;
+
+ if (adva_x1_cpld_wait_ready(bp, 3000))
+ return READ_ONCE(bp->cpld_cancel) ? FW_UPLOAD_ERR_CANCELED
+ : FW_UPLOAD_ERR_TIMEOUT;
+
+ return FW_UPLOAD_ERR_NONE;
+}
+
+static void
+adva_cpld_cancel(struct fw_upload *fwl)
+{
+ struct ptp_ocp *bp = fwl->dd_handle;
+
+ WRITE_ONCE(bp->cpld_cancel, true);
+}
+
+static void
+adva_cpld_cleanup(struct fw_upload *fwl)
+{
+ static const u8 dis_args[2] = { 0x00, 0x00 };
+ struct ptp_ocp *bp = fwl->dd_handle;
+
+ __acquire(&bp->cpld_lock); /* held since prepare() returned ok */
+ lockdep_assert_held(&bp->cpld_lock);
+
+ if (bp->cpld_in_config_mode) {
+ adva_x1_cpld_write(bp, CPLD_CMD_DIS_CFG, dis_args, 2);
+ bp->cpld_in_config_mode = false;
+ }
+ adva_x1_mux_select(bp, -1);
+ adva_x1_bus_release(bp);
+ WRITE_ONCE(bp->cpld_cancel, false);
+ mutex_unlock(&bp->cpld_lock);
+}
+
+static const struct fw_upload_ops adva_cpld_upload_ops = {
+ .prepare = adva_cpld_prepare,
+ .write = adva_cpld_write,
+ .poll_complete = adva_cpld_poll_complete,
+ .cancel = adva_cpld_cancel,
+ .cleanup = adva_cpld_cleanup,
+};
+
static struct attribute *adva_timecard_attrs[] = {
&dev_attr_serialnum.attr,
&dev_attr_gnss_sync.attr,
@@ -5186,6 +5488,15 @@ ptp_ocp_detach(struct ptp_ocp *bp)
{
int i;
+ /* Must come first: cancels and flushes an in-flight upload while the
+ * I2C controller is still up, and drops cpld_lock so a cpld_status
+ * reader cannot stall ptp_ocp_attr_group_del() below.
+ */
+ if (bp->cpld_fw_upload) {
+ firmware_upload_unregister(bp->cpld_fw_upload);
+ bp->cpld_fw_upload = NULL;
+ }
+
ptp_ocp_debugfs_remove_device(bp);
ptp_ocp_detach_sysfs(bp);
ptp_ocp_attr_group_del(bp);
--
2.47.0
prev parent reply other threads:[~2026-08-11 13:57 UTC|newest]
Thread overview: 3+ messages / expand[flat|nested] mbox.gz Atom feed top
2026-08-11 13:57 [PATCH net-next v11 0/2] ptp: ocp: add TAP CPLD support for ADVA TimeCard X1 Sagi Maimon
2026-08-11 13:57 ` [PATCH net-next v11 1/2] ptp: ocp: add TAP CPLD access " Sagi Maimon
2026-08-11 13:57 ` Sagi Maimon [this message]
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