[PATCH net-next v12 2/2] ptp: ocp: add TAP CPLD firmware upload for ADVA TimeCard X1
From: Sagi Maimon <hidden>
Date: 2026-09-02 04:42:41
Also in:
lkml
Subsystem:
networking drivers, opencompute ptp clock driver, ptp hardware clock support, the rest · Maintainers:
Andrew Lunn, "David S. Miller", Eric Dumazet, Jakub Kicinski, Paolo Abeni, Vadim Fedorenko, Richard Cochran, Linus Torvalds
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 <redacted> --- Documentation/ABI/testing/sysfs-timecard | 4 + drivers/ptp/Kconfig | 2 + drivers/ptp/ptp_ocp.c | 335 ++++++++++++++++++++++- 3 files changed, 339 insertions(+), 2 deletions(-)
diff --git a/Documentation/ABI/testing/sysfs-timecard b/Documentation/ABI/testing/sysfs-timecard
index b384e837c5e6..41eeadd46330 100644
--- a/Documentation/ABI/testing/sysfs-timecard
+++ b/Documentation/ABI/testing/sysfs-timecard@@ -30,6 +30,10 @@ 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
diff --git a/drivers/ptp/Kconfig b/drivers/ptp/Kconfig
index feb50f8cc406..24f047c37e4c 100644
--- a/drivers/ptp/Kconfig
+++ b/drivers/ptp/Kconfig@@ -219,6 +219,8 @@ 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 0c5c3ec8de5f..86d1c1a311cc 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
@@ -427,6 +429,9 @@ struct ptp_ocp { u8 *cpld_buf; /* DMA-safe scratch; 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)
@@ -460,6 +465,8 @@ 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);
@@ -3226,6 +3233,29 @@ 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); }
@@ -4287,6 +4317,15 @@ 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)
@@ -4301,7 +4340,8 @@ static const struct ocp_attr_group art_timecard_groups[] = { * * The message is assembled in the scratch buffer taken by * adva_x1_bus_claim(), which the Xilinx controller needs for DMA safety: - * an opcode and its arguments are copied exactly once. + * an opcode and its arguments are copied exactly once, and a firmware + * upload costs one allocation rather than one per page. * * Caller must hold that claim, hence __i2c_transfer() over i2c_transfer(). */
@@ -4432,7 +4472,10 @@ static int adva_x1_bus_claim(struct ptp_ocp *bp) if (!adap) return -ENODEV; - /* One scratch buffer per claim, not per transfer. */ + /* One scratch buffer per claim rather than per transfer: a firmware + * upload holds the claim for the whole image, so this is a single + * allocation instead of one for each 16-byte page. + */ bp->cpld_buf = kzalloc(2 * ADVA_CPLD_XFER_MAX, GFP_KERNEL); if (!bp->cpld_buf) { i2c_put_adapter(adap);
@@ -4460,6 +4503,47 @@ static int adva_x1_mux_select(struct ptp_ocp *bp, int ch) return adva_x1_i2c_xfer(bp, ADVA_MUX_ADDR, val, NULL, 0, NULL, 0); } +/* + * Argument bytes that follow an ISC opcode. Returns NULL with @nargs set + * when the arguments are all zero: adva_x1_i2c_xfer() zeroes the buffer. + */ +static const u8 *adva_x1_cpld_args(u8 cmd, u8 *nargs) +{ + static const u8 en_cfg_tp[] = { 0x08, 0x00 }; + static const u8 erase_cfg[] = { 0x04, 0x00, 0x00 }; /* cfg sector only */ + + switch (cmd) { + case CPLD_CMD_EN_CFG_TP: + *nargs = sizeof(en_cfg_tp); + return en_cfg_tp; + case CPLD_CMD_ERASE: + *nargs = sizeof(erase_cfg); + return erase_cfg; + case CPLD_CMD_RESET_ADDR: + case CPLD_CMD_SET_DONE: + *nargs = 3; + return NULL; + case CPLD_CMD_DIS_CFG: + case CPLD_CMD_REFRESH: + *nargs = 2; + return NULL; + default: + *nargs = 0; + return NULL; + } +} + +/* Send an ISC command with the fixed arguments that belong to it. */ +static int adva_x1_cpld_write(struct ptp_ocp *bp, u8 cmd) +{ + const u8 *args; + u8 nargs; + + args = adva_x1_cpld_args(cmd, &nargs); + + return adva_x1_i2c_xfer(bp, ADVA_CPLD_ADDR, cmd, args, 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
@@ -4485,6 +4569,38 @@ 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
@@ -4562,6 +4678,212 @@ 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) +{ + 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) || + 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) || + 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)) { + 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); + 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 args[3 + CPLD_PAGE_SIZE] = { 0x00, 0x00, 0x01 }; + + 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; + + memcpy(&args[3], data + offset, CPLD_PAGE_SIZE); + + if (adva_x1_i2c_xfer(bp, ADVA_CPLD_ADDR, CPLD_CMD_WRITE_PAGE, + args, sizeof(args), NULL, 0) || + 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) +{ + 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) || + 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)) + 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) +{ + 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); + 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,
@@ -5204,6 +5526,15 @@ 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