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path: root/drivers/net/ethernet/intel/ice/ice_ptp.c
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Diffstat (limited to 'drivers/net/ethernet/intel/ice/ice_ptp.c')
-rw-r--r--drivers/net/ethernet/intel/ice/ice_ptp.c2019
1 files changed, 962 insertions, 1057 deletions
diff --git a/drivers/net/ethernet/intel/ice/ice_ptp.c b/drivers/net/ethernet/intel/ice/ice_ptp.c
index f6e26e1b5ab9..4c8d20f2d2c0 100644
--- a/drivers/net/ethernet/intel/ice/ice_ptp.c
+++ b/drivers/net/ethernet/intel/ice/ice_ptp.c
@@ -5,252 +5,88 @@
#include "ice_lib.h"
#include "ice_trace.h"
-#define E810_OUT_PROP_DELAY_NS 1
-
-static const struct ptp_pin_desc ice_pin_desc_e810t[] = {
- /* name idx func chan */
- { "GNSS", GNSS, PTP_PF_EXTTS, 0, { 0, } },
- { "SMA1", SMA1, PTP_PF_NONE, 1, { 0, } },
- { "U.FL1", UFL1, PTP_PF_NONE, 1, { 0, } },
- { "SMA2", SMA2, PTP_PF_NONE, 2, { 0, } },
- { "U.FL2", UFL2, PTP_PF_NONE, 2, { 0, } },
+static const char ice_pin_names[][64] = {
+ "SDP0",
+ "SDP1",
+ "SDP2",
+ "SDP3",
+ "TIME_SYNC",
+ "1PPS"
};
-/**
- * ice_get_sma_config_e810t
- * @hw: pointer to the hw struct
- * @ptp_pins: pointer to the ptp_pin_desc struture
- *
- * Read the configuration of the SMA control logic and put it into the
- * ptp_pin_desc structure
- */
-static int
-ice_get_sma_config_e810t(struct ice_hw *hw, struct ptp_pin_desc *ptp_pins)
-{
- u8 data, i;
- int status;
+static const struct ice_ptp_pin_desc ice_pin_desc_e82x[] = {
+ /* name, gpio, delay */
+ { TIME_SYNC, { 4, -1 }, { 0, 0 }},
+ { ONE_PPS, { -1, 5 }, { 0, 11 }},
+};
- /* Read initial pin state */
- status = ice_read_sma_ctrl_e810t(hw, &data);
- if (status)
- return status;
+static const struct ice_ptp_pin_desc ice_pin_desc_e825c[] = {
+ /* name, gpio, delay */
+ { SDP0, { 0, 0 }, { 15, 14 }},
+ { SDP1, { 1, 1 }, { 15, 14 }},
+ { SDP2, { 2, 2 }, { 15, 14 }},
+ { SDP3, { 3, 3 }, { 15, 14 }},
+ { TIME_SYNC, { 4, -1 }, { 11, 0 }},
+ { ONE_PPS, { -1, 5 }, { 0, 9 }},
+};
- /* initialize with defaults */
- for (i = 0; i < NUM_PTP_PINS_E810T; i++) {
- strscpy(ptp_pins[i].name, ice_pin_desc_e810t[i].name,
- sizeof(ptp_pins[i].name));
- ptp_pins[i].index = ice_pin_desc_e810t[i].index;
- ptp_pins[i].func = ice_pin_desc_e810t[i].func;
- ptp_pins[i].chan = ice_pin_desc_e810t[i].chan;
- }
+static const struct ice_ptp_pin_desc ice_pin_desc_e810[] = {
+ /* name, gpio, delay */
+ { SDP0, { 0, 0 }, { 0, 1 }},
+ { SDP1, { 1, 1 }, { 0, 1 }},
+ { SDP2, { 2, 2 }, { 0, 1 }},
+ { SDP3, { 3, 3 }, { 0, 1 }},
+ { ONE_PPS, { -1, 5 }, { 0, 1 }},
+};
- /* Parse SMA1/UFL1 */
- switch (data & ICE_SMA1_MASK_E810T) {
- case ICE_SMA1_MASK_E810T:
- default:
- ptp_pins[SMA1].func = PTP_PF_NONE;
- ptp_pins[UFL1].func = PTP_PF_NONE;
- break;
- case ICE_SMA1_DIR_EN_E810T:
- ptp_pins[SMA1].func = PTP_PF_PEROUT;
- ptp_pins[UFL1].func = PTP_PF_NONE;
- break;
- case ICE_SMA1_TX_EN_E810T:
- ptp_pins[SMA1].func = PTP_PF_EXTTS;
- ptp_pins[UFL1].func = PTP_PF_NONE;
- break;
- case 0:
- ptp_pins[SMA1].func = PTP_PF_EXTTS;
- ptp_pins[UFL1].func = PTP_PF_PEROUT;
- break;
- }
+static const char ice_pin_names_dpll[][64] = {
+ "SDP20",
+ "SDP21",
+ "SDP22",
+ "SDP23",
+};
- /* Parse SMA2/UFL2 */
- switch (data & ICE_SMA2_MASK_E810T) {
- case ICE_SMA2_MASK_E810T:
- default:
- ptp_pins[SMA2].func = PTP_PF_NONE;
- ptp_pins[UFL2].func = PTP_PF_NONE;
- break;
- case (ICE_SMA2_TX_EN_E810T | ICE_SMA2_UFL2_RX_DIS_E810T):
- ptp_pins[SMA2].func = PTP_PF_EXTTS;
- ptp_pins[UFL2].func = PTP_PF_NONE;
- break;
- case (ICE_SMA2_DIR_EN_E810T | ICE_SMA2_UFL2_RX_DIS_E810T):
- ptp_pins[SMA2].func = PTP_PF_PEROUT;
- ptp_pins[UFL2].func = PTP_PF_NONE;
- break;
- case (ICE_SMA2_DIR_EN_E810T | ICE_SMA2_TX_EN_E810T):
- ptp_pins[SMA2].func = PTP_PF_NONE;
- ptp_pins[UFL2].func = PTP_PF_EXTTS;
- break;
- case ICE_SMA2_DIR_EN_E810T:
- ptp_pins[SMA2].func = PTP_PF_PEROUT;
- ptp_pins[UFL2].func = PTP_PF_EXTTS;
- break;
- }
+static const struct ice_ptp_pin_desc ice_pin_desc_dpll[] = {
+ /* name, gpio, delay */
+ { SDP0, { -1, 0 }, { 0, 1 }},
+ { SDP1, { 1, -1 }, { 0, 0 }},
+ { SDP2, { -1, 2 }, { 0, 1 }},
+ { SDP3, { 3, -1 }, { 0, 0 }},
+};
- return 0;
+static struct ice_pf *ice_get_ctrl_pf(struct ice_pf *pf)
+{
+ return !pf->adapter ? NULL : pf->adapter->ctrl_pf;
}
-/**
- * ice_ptp_set_sma_config_e810t
- * @hw: pointer to the hw struct
- * @ptp_pins: pointer to the ptp_pin_desc struture
- *
- * Set the configuration of the SMA control logic based on the configuration in
- * num_pins parameter
- */
-static int
-ice_ptp_set_sma_config_e810t(struct ice_hw *hw,
- const struct ptp_pin_desc *ptp_pins)
+static struct ice_ptp *ice_get_ctrl_ptp(struct ice_pf *pf)
{
- int status;
- u8 data;
-
- /* SMA1 and UFL1 cannot be set to TX at the same time */
- if (ptp_pins[SMA1].func == PTP_PF_PEROUT &&
- ptp_pins[UFL1].func == PTP_PF_PEROUT)
- return -EINVAL;
-
- /* SMA2 and UFL2 cannot be set to RX at the same time */
- if (ptp_pins[SMA2].func == PTP_PF_EXTTS &&
- ptp_pins[UFL2].func == PTP_PF_EXTTS)
- return -EINVAL;
+ struct ice_pf *ctrl_pf = ice_get_ctrl_pf(pf);
- /* Read initial pin state value */
- status = ice_read_sma_ctrl_e810t(hw, &data);
- if (status)
- return status;
-
- /* Set the right sate based on the desired configuration */
- data &= ~ICE_SMA1_MASK_E810T;
- if (ptp_pins[SMA1].func == PTP_PF_NONE &&
- ptp_pins[UFL1].func == PTP_PF_NONE) {
- dev_info(ice_hw_to_dev(hw), "SMA1 + U.FL1 disabled");
- data |= ICE_SMA1_MASK_E810T;
- } else if (ptp_pins[SMA1].func == PTP_PF_EXTTS &&
- ptp_pins[UFL1].func == PTP_PF_NONE) {
- dev_info(ice_hw_to_dev(hw), "SMA1 RX");
- data |= ICE_SMA1_TX_EN_E810T;
- } else if (ptp_pins[SMA1].func == PTP_PF_NONE &&
- ptp_pins[UFL1].func == PTP_PF_PEROUT) {
- /* U.FL 1 TX will always enable SMA 1 RX */
- dev_info(ice_hw_to_dev(hw), "SMA1 RX + U.FL1 TX");
- } else if (ptp_pins[SMA1].func == PTP_PF_EXTTS &&
- ptp_pins[UFL1].func == PTP_PF_PEROUT) {
- dev_info(ice_hw_to_dev(hw), "SMA1 RX + U.FL1 TX");
- } else if (ptp_pins[SMA1].func == PTP_PF_PEROUT &&
- ptp_pins[UFL1].func == PTP_PF_NONE) {
- dev_info(ice_hw_to_dev(hw), "SMA1 TX");
- data |= ICE_SMA1_DIR_EN_E810T;
- }
-
- data &= ~ICE_SMA2_MASK_E810T;
- if (ptp_pins[SMA2].func == PTP_PF_NONE &&
- ptp_pins[UFL2].func == PTP_PF_NONE) {
- dev_info(ice_hw_to_dev(hw), "SMA2 + U.FL2 disabled");
- data |= ICE_SMA2_MASK_E810T;
- } else if (ptp_pins[SMA2].func == PTP_PF_EXTTS &&
- ptp_pins[UFL2].func == PTP_PF_NONE) {
- dev_info(ice_hw_to_dev(hw), "SMA2 RX");
- data |= (ICE_SMA2_TX_EN_E810T |
- ICE_SMA2_UFL2_RX_DIS_E810T);
- } else if (ptp_pins[SMA2].func == PTP_PF_NONE &&
- ptp_pins[UFL2].func == PTP_PF_EXTTS) {
- dev_info(ice_hw_to_dev(hw), "UFL2 RX");
- data |= (ICE_SMA2_DIR_EN_E810T | ICE_SMA2_TX_EN_E810T);
- } else if (ptp_pins[SMA2].func == PTP_PF_PEROUT &&
- ptp_pins[UFL2].func == PTP_PF_NONE) {
- dev_info(ice_hw_to_dev(hw), "SMA2 TX");
- data |= (ICE_SMA2_DIR_EN_E810T |
- ICE_SMA2_UFL2_RX_DIS_E810T);
- } else if (ptp_pins[SMA2].func == PTP_PF_PEROUT &&
- ptp_pins[UFL2].func == PTP_PF_EXTTS) {
- dev_info(ice_hw_to_dev(hw), "SMA2 TX + U.FL2 RX");
- data |= ICE_SMA2_DIR_EN_E810T;
- }
-
- return ice_write_sma_ctrl_e810t(hw, data);
-}
-
-/**
- * ice_ptp_set_sma_e810t
- * @info: the driver's PTP info structure
- * @pin: pin index in kernel structure
- * @func: Pin function to be set (PTP_PF_NONE, PTP_PF_EXTTS or PTP_PF_PEROUT)
- *
- * Set the configuration of a single SMA pin
- */
-static int
-ice_ptp_set_sma_e810t(struct ptp_clock_info *info, unsigned int pin,
- enum ptp_pin_function func)
-{
- struct ptp_pin_desc ptp_pins[NUM_PTP_PINS_E810T];
- struct ice_pf *pf = ptp_info_to_pf(info);
- struct ice_hw *hw = &pf->hw;
- int err;
-
- if (pin < SMA1 || func > PTP_PF_PEROUT)
- return -EOPNOTSUPP;
-
- err = ice_get_sma_config_e810t(hw, ptp_pins);
- if (err)
- return err;
-
- /* Disable the same function on the other pin sharing the channel */
- if (pin == SMA1 && ptp_pins[UFL1].func == func)
- ptp_pins[UFL1].func = PTP_PF_NONE;
- if (pin == UFL1 && ptp_pins[SMA1].func == func)
- ptp_pins[SMA1].func = PTP_PF_NONE;
-
- if (pin == SMA2 && ptp_pins[UFL2].func == func)
- ptp_pins[UFL2].func = PTP_PF_NONE;
- if (pin == UFL2 && ptp_pins[SMA2].func == func)
- ptp_pins[SMA2].func = PTP_PF_NONE;
-
- /* Set up new pin function in the temp table */
- ptp_pins[pin].func = func;
-
- return ice_ptp_set_sma_config_e810t(hw, ptp_pins);
+ return !ctrl_pf ? NULL : &ctrl_pf->ptp;
}
/**
- * ice_verify_pin_e810t
- * @info: the driver's PTP info structure
- * @pin: Pin index
- * @func: Assigned function
- * @chan: Assigned channel
+ * ice_ptp_find_pin_idx - Find pin index in ptp_pin_desc
+ * @pf: Board private structure
+ * @func: Pin function
+ * @chan: GPIO channel
*
- * Verify if pin supports requested pin function. If the Check pins consistency.
- * Reconfigure the SMA logic attached to the given pin to enable its
- * desired functionality
+ * Return: positive pin number when pin is present, -1 otherwise
*/
-static int
-ice_verify_pin_e810t(struct ptp_clock_info *info, unsigned int pin,
- enum ptp_pin_function func, unsigned int chan)
+static int ice_ptp_find_pin_idx(struct ice_pf *pf, enum ptp_pin_function func,
+ unsigned int chan)
{
- /* Don't allow channel reassignment */
- if (chan != ice_pin_desc_e810t[pin].chan)
- return -EOPNOTSUPP;
+ const struct ptp_clock_info *info = &pf->ptp.info;
+ int i;
- /* Check if functions are properly assigned */
- switch (func) {
- case PTP_PF_NONE:
- break;
- case PTP_PF_EXTTS:
- if (pin == UFL1)
- return -EOPNOTSUPP;
- break;
- case PTP_PF_PEROUT:
- if (pin == UFL2 || pin == GNSS)
- return -EOPNOTSUPP;
- break;
- case PTP_PF_PHYSYNC:
- return -EOPNOTSUPP;
+ for (i = 0; i < info->n_pins; i++) {
+ if (info->pin_config[i].func == func &&
+ info->pin_config[i].chan == chan)
+ return i;
}
- return ice_ptp_set_sma_e810t(info, pin, func);
+ return -1;
}
/**
@@ -364,18 +200,30 @@ void ice_ptp_restore_timestamp_mode(struct ice_pf *pf)
* @sts: Optional parameter for holding a pair of system timestamps from
* the system clock. Will be ignored if NULL is given.
*/
-static u64
-ice_ptp_read_src_clk_reg(struct ice_pf *pf, struct ptp_system_timestamp *sts)
+u64 ice_ptp_read_src_clk_reg(struct ice_pf *pf,
+ struct ptp_system_timestamp *sts)
{
struct ice_hw *hw = &pf->hw;
u32 hi, lo, lo2;
u8 tmr_idx;
+ if (!ice_is_primary(hw))
+ hw = ice_get_primary_hw(pf);
+
tmr_idx = ice_get_ptp_src_clock_index(hw);
guard(spinlock)(&pf->adapter->ptp_gltsyn_time_lock);
/* Read the system timestamp pre PHC read */
ptp_read_system_prets(sts);
+ if (hw->mac_type == ICE_MAC_E830) {
+ u64 clk_time = rd64(hw, E830_GLTSYN_TIME_L(tmr_idx));
+
+ /* Read the system timestamp post PHC read */
+ ptp_read_system_postts(sts);
+
+ return clk_time;
+ }
+
lo = rd32(hw, GLTSYN_TIME_L(tmr_idx));
/* Read the system timestamp post PHC read */
@@ -530,7 +378,9 @@ ice_ptp_is_tx_tracker_up(struct ice_ptp_tx *tx)
*/
void ice_ptp_req_tx_single_tstamp(struct ice_ptp_tx *tx, u8 idx)
{
+ struct ice_e810_params *params;
struct ice_ptp_port *ptp_port;
+ unsigned long flags;
struct sk_buff *skb;
struct ice_pf *pf;
@@ -539,6 +389,7 @@ void ice_ptp_req_tx_single_tstamp(struct ice_ptp_tx *tx, u8 idx)
ptp_port = container_of(tx, struct ice_ptp_port, tx);
pf = ptp_port_to_pf(ptp_port);
+ params = &pf->hw.ptp.phy.e810;
/* Drop packets which have waited for more than 2 seconds */
if (time_is_before_jiffies(tx->tstamps[idx].start + 2 * HZ)) {
@@ -555,11 +406,17 @@ void ice_ptp_req_tx_single_tstamp(struct ice_ptp_tx *tx, u8 idx)
ice_trace(tx_tstamp_fw_req, tx->tstamps[idx].skb, idx);
+ spin_lock_irqsave(&params->atqbal_wq.lock, flags);
+
+ params->atqbal_flags |= ATQBAL_FLAGS_INTR_IN_PROGRESS;
+
/* Write TS index to read to the PF register so the FW can read it */
- wr32(&pf->hw, PF_SB_ATQBAL,
- TS_LL_READ_TS_INTR | FIELD_PREP(TS_LL_READ_TS_IDX, idx) |
- TS_LL_READ_TS);
+ wr32(&pf->hw, REG_LL_PROXY_H,
+ REG_LL_PROXY_H_TS_INTR_ENA | FIELD_PREP(REG_LL_PROXY_H_TS_IDX, idx) |
+ REG_LL_PROXY_H_EXEC);
tx->last_ll_ts_idx_read = idx;
+
+ spin_unlock_irqrestore(&params->atqbal_wq.lock, flags);
}
/**
@@ -570,35 +427,52 @@ void ice_ptp_complete_tx_single_tstamp(struct ice_ptp_tx *tx)
{
struct skb_shared_hwtstamps shhwtstamps = {};
u8 idx = tx->last_ll_ts_idx_read;
+ struct ice_e810_params *params;
struct ice_ptp_port *ptp_port;
u64 raw_tstamp, tstamp;
bool drop_ts = false;
struct sk_buff *skb;
+ unsigned long flags;
+ struct device *dev;
struct ice_pf *pf;
- u32 val;
+ u32 reg_ll_high;
if (!tx->init || tx->last_ll_ts_idx_read < 0)
return;
ptp_port = container_of(tx, struct ice_ptp_port, tx);
pf = ptp_port_to_pf(ptp_port);
+ dev = ice_pf_to_dev(pf);
+ params = &pf->hw.ptp.phy.e810;
ice_trace(tx_tstamp_fw_done, tx->tstamps[idx].skb, idx);
- val = rd32(&pf->hw, PF_SB_ATQBAL);
+ spin_lock_irqsave(&params->atqbal_wq.lock, flags);
+
+ if (!(params->atqbal_flags & ATQBAL_FLAGS_INTR_IN_PROGRESS))
+ dev_dbg(dev, "%s: low latency interrupt request not in progress?\n",
+ __func__);
+
+ /* Read the low 32 bit value */
+ raw_tstamp = rd32(&pf->hw, REG_LL_PROXY_L);
+ /* Read the status together with high TS part */
+ reg_ll_high = rd32(&pf->hw, REG_LL_PROXY_H);
+
+ /* Wake up threads waiting on low latency interface */
+ params->atqbal_flags &= ~ATQBAL_FLAGS_INTR_IN_PROGRESS;
+
+ wake_up_locked(&params->atqbal_wq);
+
+ spin_unlock_irqrestore(&params->atqbal_wq.lock, flags);
/* When the bit is cleared, the TS is ready in the register */
- if (val & TS_LL_READ_TS) {
+ if (reg_ll_high & REG_LL_PROXY_H_EXEC) {
dev_err(ice_pf_to_dev(pf), "Failed to get the Tx tstamp - FW not ready");
return;
}
/* High 8 bit value of the TS is on the bits 16:23 */
- raw_tstamp = FIELD_GET(TS_LL_READ_TS_HIGH, val);
- raw_tstamp <<= 32;
-
- /* Read the low 32 bit value */
- raw_tstamp |= (u64)rd32(&pf->hw, PF_SB_ATQBAH);
+ raw_tstamp |= ((u64)FIELD_GET(REG_LL_PROXY_H_TS_HIGH, reg_ll_high)) << 32;
/* Devices using this interface always verify the timestamp differs
* relative to the last cached timestamp value.
@@ -626,6 +500,9 @@ void ice_ptp_complete_tx_single_tstamp(struct ice_ptp_tx *tx)
if (tstamp) {
shhwtstamps.hwtstamp = ns_to_ktime(tstamp);
ice_trace(tx_tstamp_complete, skb, idx);
+
+ /* Count the number of Tx timestamps that succeeded */
+ pf->ptp.tx_hwtstamp_good++;
}
skb_tstamp_tx(skb, &shhwtstamps);
@@ -684,6 +561,7 @@ static void ice_ptp_process_tx_tstamp(struct ice_ptp_tx *tx)
{
struct ice_ptp_port *ptp_port;
unsigned long flags;
+ u32 tstamp_good = 0;
struct ice_pf *pf;
struct ice_hw *hw;
u64 tstamp_ready;
@@ -784,11 +662,16 @@ skip_ts_read:
if (tstamp) {
shhwtstamps.hwtstamp = ns_to_ktime(tstamp);
ice_trace(tx_tstamp_complete, skb, idx);
+
+ /* Count the number of Tx timestamps that succeeded */
+ tstamp_good++;
}
skb_tstamp_tx(skb, &shhwtstamps);
dev_kfree_skb_any(skb);
}
+
+ pf->ptp.tx_hwtstamp_good += tstamp_good;
}
/**
@@ -800,8 +683,8 @@ static enum ice_tx_tstamp_work ice_ptp_tx_tstamp_owner(struct ice_pf *pf)
struct ice_ptp_port *port;
unsigned int i;
- mutex_lock(&pf->ptp.ports_owner.lock);
- list_for_each_entry(port, &pf->ptp.ports_owner.ports, list_member) {
+ mutex_lock(&pf->adapter->ports.lock);
+ list_for_each_entry(port, &pf->adapter->ports.ports, list_node) {
struct ice_ptp_tx *tx = &port->tx;
if (!tx || !tx->init)
@@ -809,7 +692,7 @@ static enum ice_tx_tstamp_work ice_ptp_tx_tstamp_owner(struct ice_pf *pf)
ice_ptp_process_tx_tstamp(tx);
}
- mutex_unlock(&pf->ptp.ports_owner.lock);
+ mutex_unlock(&pf->adapter->ports.lock);
for (i = 0; i < ICE_GET_QUAD_NUM(pf->hw.ptp.num_lports); i++) {
u64 tstamp_ready;
@@ -974,7 +857,7 @@ ice_ptp_flush_all_tx_tracker(struct ice_pf *pf)
{
struct ice_ptp_port *port;
- list_for_each_entry(port, &pf->ptp.ports_owner.ports, list_member)
+ list_for_each_entry(port, &pf->adapter->ports.ports, list_node)
ice_ptp_flush_tx_tracker(ptp_port_to_pf(port), &port->tx);
}
@@ -1012,28 +895,6 @@ ice_ptp_release_tx_tracker(struct ice_pf *pf, struct ice_ptp_tx *tx)
}
/**
- * ice_ptp_init_tx_eth56g - Initialize tracking for Tx timestamps
- * @pf: Board private structure
- * @tx: the Tx tracking structure to initialize
- * @port: the port this structure tracks
- *
- * Initialize the Tx timestamp tracker for this port. ETH56G PHYs
- * have independent memory blocks for all ports.
- *
- * Return: 0 for success, -ENOMEM when failed to allocate Tx tracker
- */
-static int ice_ptp_init_tx_eth56g(struct ice_pf *pf, struct ice_ptp_tx *tx,
- u8 port)
-{
- tx->block = port;
- tx->offset = 0;
- tx->len = INDEX_PER_PORT_ETH56G;
- tx->has_ready_bitmap = 1;
-
- return ice_ptp_alloc_tx_tracker(tx);
-}
-
-/**
* ice_ptp_init_tx_e82x - Initialize tracking for Tx timestamps
* @pf: Board private structure
* @tx: the Tx tracking structure to initialize
@@ -1043,9 +904,11 @@ static int ice_ptp_init_tx_eth56g(struct ice_pf *pf, struct ice_ptp_tx *tx,
* the timestamp block is shared for all ports in the same quad. To avoid
* ports using the same timestamp index, logically break the block of
* registers into chunks based on the port number.
+ *
+ * Return: 0 on success, -ENOMEM when out of memory
*/
-static int
-ice_ptp_init_tx_e82x(struct ice_pf *pf, struct ice_ptp_tx *tx, u8 port)
+static int ice_ptp_init_tx_e82x(struct ice_pf *pf, struct ice_ptp_tx *tx,
+ u8 port)
{
tx->block = ICE_GET_QUAD_NUM(port);
tx->offset = (port % ICE_PORTS_PER_QUAD) * INDEX_PER_PORT_E82X;
@@ -1056,24 +919,27 @@ ice_ptp_init_tx_e82x(struct ice_pf *pf, struct ice_ptp_tx *tx, u8 port)
}
/**
- * ice_ptp_init_tx_e810 - Initialize tracking for Tx timestamps
+ * ice_ptp_init_tx - Initialize tracking for Tx timestamps
* @pf: Board private structure
* @tx: the Tx tracking structure to initialize
+ * @port: the port this structure tracks
+ *
+ * Initialize the Tx timestamp tracker for this PF. For all PHYs except E82X,
+ * each port has its own block of timestamps, independent of the other ports.
*
- * Initialize the Tx timestamp tracker for this PF. For E810 devices, each
- * port has its own block of timestamps, independent of the other ports.
+ * Return: 0 on success, -ENOMEM when out of memory
*/
-static int
-ice_ptp_init_tx_e810(struct ice_pf *pf, struct ice_ptp_tx *tx)
+static int ice_ptp_init_tx(struct ice_pf *pf, struct ice_ptp_tx *tx, u8 port)
{
- tx->block = pf->hw.port_info->lport;
+ tx->block = port;
tx->offset = 0;
- tx->len = INDEX_PER_PORT_E810;
+ tx->len = INDEX_PER_PORT;
+
/* The E810 PHY does not provide a timestamp ready bitmap. Instead,
* verify new timestamps against cached copy of the last read
* timestamp.
*/
- tx->has_ready_bitmap = 0;
+ tx->has_ready_bitmap = pf->hw.mac_type != ICE_MAC_E810;
return ice_ptp_alloc_tx_tracker(tx);
}
@@ -1358,20 +1224,21 @@ ice_ptp_port_phy_stop(struct ice_ptp_port *ptp_port)
struct ice_hw *hw = &pf->hw;
int err;
- if (ice_is_e810(hw))
- return 0;
-
mutex_lock(&ptp_port->ps_lock);
- switch (hw->ptp.phy_model) {
- case ICE_PHY_ETH56G:
- err = ice_stop_phy_timer_eth56g(hw, port, true);
+ switch (hw->mac_type) {
+ case ICE_MAC_E810:
+ case ICE_MAC_E830:
+ err = 0;
break;
- case ICE_PHY_E82X:
+ case ICE_MAC_GENERIC:
kthread_cancel_delayed_work_sync(&ptp_port->ov_work);
err = ice_stop_phy_timer_e82x(hw, port, true);
break;
+ case ICE_MAC_GENERIC_3K_E825:
+ err = ice_stop_phy_timer_eth56g(hw, port, true);
+ break;
default:
err = -ENODEV;
}
@@ -1401,19 +1268,17 @@ ice_ptp_port_phy_restart(struct ice_ptp_port *ptp_port)
unsigned long flags;
int err;
- if (ice_is_e810(hw))
- return 0;
-
if (!ptp_port->link_up)
return ice_ptp_port_phy_stop(ptp_port);
mutex_lock(&ptp_port->ps_lock);
- switch (hw->ptp.phy_model) {
- case ICE_PHY_ETH56G:
- err = ice_start_phy_timer_eth56g(hw, port);
+ switch (hw->mac_type) {
+ case ICE_MAC_E810:
+ case ICE_MAC_E830:
+ err = 0;
break;
- case ICE_PHY_E82X:
+ case ICE_MAC_GENERIC:
/* Start the PHY timer in Vernier mode */
kthread_cancel_delayed_work_sync(&ptp_port->ov_work);
@@ -1438,6 +1303,9 @@ ice_ptp_port_phy_restart(struct ice_ptp_port *ptp_port)
kthread_queue_delayed_work(pf->ptp.kworker, &ptp_port->ov_work,
0);
break;
+ case ICE_MAC_GENERIC_3K_E825:
+ err = ice_start_phy_timer_eth56g(hw, port);
+ break;
default:
err = -ENODEV;
}
@@ -1454,10 +1322,9 @@ ice_ptp_port_phy_restart(struct ice_ptp_port *ptp_port)
/**
* ice_ptp_link_change - Reconfigure PTP after link status change
* @pf: Board private structure
- * @port: Port for which the PHY start is set
* @linkup: Link is up or down
*/
-void ice_ptp_link_change(struct ice_pf *pf, u8 port, bool linkup)
+void ice_ptp_link_change(struct ice_pf *pf, bool linkup)
{
struct ice_ptp_port *ptp_port;
struct ice_hw *hw = &pf->hw;
@@ -1465,24 +1332,22 @@ void ice_ptp_link_change(struct ice_pf *pf, u8 port, bool linkup)
if (pf->ptp.state != ICE_PTP_READY)
return;
- if (WARN_ON_ONCE(port >= hw->ptp.num_lports))
- return;
-
ptp_port = &pf->ptp.port;
- if (ice_is_e825c(hw) && hw->ptp.is_2x50g_muxed_topo)
- port *= 2;
- if (WARN_ON_ONCE(ptp_port->port_num != port))
- return;
/* Update cached link status for this port immediately */
ptp_port->link_up = linkup;
- switch (hw->ptp.phy_model) {
- case ICE_PHY_E810:
- /* Do not reconfigure E810 PHY */
+ /* Skip HW writes if reset is in progress */
+ if (pf->hw.reset_ongoing)
+ return;
+
+ switch (hw->mac_type) {
+ case ICE_MAC_E810:
+ case ICE_MAC_E830:
+ /* Do not reconfigure E810 or E830 PHY */
return;
- case ICE_PHY_ETH56G:
- case ICE_PHY_E82X:
+ case ICE_MAC_GENERIC:
+ case ICE_MAC_GENERIC_3K_E825:
ice_ptp_port_phy_restart(ptp_port);
return;
default:
@@ -1510,46 +1375,45 @@ static int ice_ptp_cfg_phy_interrupt(struct ice_pf *pf, bool ena, u32 threshold)
ice_ptp_reset_ts_memory(hw);
- switch (hw->ptp.phy_model) {
- case ICE_PHY_ETH56G: {
- int port;
+ switch (hw->mac_type) {
+ case ICE_MAC_E810:
+ case ICE_MAC_E830:
+ return 0;
+ case ICE_MAC_GENERIC: {
+ int quad;
- for (port = 0; port < hw->ptp.num_lports; port++) {
+ for (quad = 0; quad < ICE_GET_QUAD_NUM(hw->ptp.num_lports);
+ quad++) {
int err;
- err = ice_phy_cfg_intr_eth56g(hw, port, ena, threshold);
+ err = ice_phy_cfg_intr_e82x(hw, quad, ena, threshold);
if (err) {
- dev_err(dev, "Failed to configure PHY interrupt for port %d, err %d\n",
- port, err);
+ dev_err(dev, "Failed to configure PHY interrupt for quad %d, err %d\n",
+ quad, err);
return err;
}
}
return 0;
}
- case ICE_PHY_E82X: {
- int quad;
+ case ICE_MAC_GENERIC_3K_E825: {
+ int port;
- for (quad = 0; quad < ICE_GET_QUAD_NUM(hw->ptp.num_lports);
- quad++) {
+ for (port = 0; port < hw->ptp.num_lports; port++) {
int err;
- err = ice_phy_cfg_intr_e82x(hw, quad, ena, threshold);
+ err = ice_phy_cfg_intr_eth56g(hw, port, ena, threshold);
if (err) {
- dev_err(dev, "Failed to configure PHY interrupt for quad %d, err %d\n",
- quad, err);
+ dev_err(dev, "Failed to configure PHY interrupt for port %d, err %d\n",
+ port, err);
return err;
}
}
return 0;
}
- case ICE_PHY_E810:
- return 0;
- case ICE_PHY_UNSUP:
+ case ICE_MAC_UNKNOWN:
default:
- dev_warn(dev, "%s: Unexpected PHY model %d\n", __func__,
- hw->ptp.phy_model);
return -EOPNOTSUPP;
}
}
@@ -1571,10 +1435,10 @@ static void ice_ptp_restart_all_phy(struct ice_pf *pf)
{
struct list_head *entry;
- list_for_each(entry, &pf->ptp.ports_owner.ports) {
+ list_for_each(entry, &pf->adapter->ports.ports) {
struct ice_ptp_port *port = list_entry(entry,
struct ice_ptp_port,
- list_member);
+ list_node);
if (port->link_up)
ice_ptp_port_phy_restart(port);
@@ -1629,51 +1493,62 @@ void ice_ptp_extts_event(struct ice_pf *pf)
* Event is defined in GLTSYN_EVNT_0 register
*/
for (chan = 0; chan < GLTSYN_EVNT_H_IDX_MAX; chan++) {
+ int pin_desc_idx;
+
/* Check if channel is enabled */
- if (pf->ptp.ext_ts_irq & (1 << chan)) {
- lo = rd32(hw, GLTSYN_EVNT_L(chan, tmr_idx));
- hi = rd32(hw, GLTSYN_EVNT_H(chan, tmr_idx));
- event.timestamp = (((u64)hi) << 32) | lo;
- event.type = PTP_CLOCK_EXTTS;
- event.index = chan;
-
- /* Fire event */
- ptp_clock_event(pf->ptp.clock, &event);
- pf->ptp.ext_ts_irq &= ~(1 << chan);
+ if (!(pf->ptp.ext_ts_irq & (1 << chan)))
+ continue;
+
+ lo = rd32(hw, GLTSYN_EVNT_L(chan, tmr_idx));
+ hi = rd32(hw, GLTSYN_EVNT_H(chan, tmr_idx));
+ event.timestamp = (u64)hi << 32 | lo;
+
+ /* Add delay compensation */
+ pin_desc_idx = ice_ptp_find_pin_idx(pf, PTP_PF_EXTTS, chan);
+ if (pin_desc_idx >= 0) {
+ const struct ice_ptp_pin_desc *desc;
+
+ desc = &pf->ptp.ice_pin_desc[pin_desc_idx];
+ event.timestamp -= desc->delay[0];
}
+
+ event.type = PTP_CLOCK_EXTTS;
+ event.index = chan;
+ pf->ptp.ext_ts_irq &= ~(1 << chan);
+ ptp_clock_event(pf->ptp.clock, &event);
}
}
/**
* ice_ptp_cfg_extts - Configure EXTTS pin and channel
* @pf: Board private structure
- * @chan: GPIO channel (0-3)
- * @config: desired EXTTS configuration.
- * @store: If set to true, the values will be stored
+ * @rq: External timestamp request
+ * @on: Enable/disable flag
*
* Configure an external timestamp event on the requested channel.
*
- * Return: 0 on success, -EOPNOTUSPP on unsupported flags
+ * Return: 0 on success, negative error code otherwise
*/
-static int ice_ptp_cfg_extts(struct ice_pf *pf, unsigned int chan,
- struct ice_extts_channel *config, bool store)
+static int ice_ptp_cfg_extts(struct ice_pf *pf, struct ptp_extts_request *rq,
+ int on)
{
- u32 func, aux_reg, gpio_reg, irq_reg;
+ u32 aux_reg, gpio_reg, irq_reg;
struct ice_hw *hw = &pf->hw;
+ unsigned int chan, gpio_pin;
+ int pin_desc_idx;
u8 tmr_idx;
- /* Reject requests with unsupported flags */
- if (config->flags & ~(PTP_ENABLE_FEATURE |
- PTP_RISING_EDGE |
- PTP_FALLING_EDGE |
- PTP_STRICT_FLAGS))
- return -EOPNOTSUPP;
-
tmr_idx = hw->func_caps.ts_func_info.tmr_index_owned;
+ chan = rq->index;
+
+ pin_desc_idx = ice_ptp_find_pin_idx(pf, PTP_PF_EXTTS, chan);
+ if (pin_desc_idx < 0)
+ return -EIO;
+ gpio_pin = pf->ptp.ice_pin_desc[pin_desc_idx].gpio[0];
irq_reg = rd32(hw, PFINT_OICR_ENA);
- if (config->ena) {
+ if (on) {
/* Enable the interrupt */
irq_reg |= PFINT_OICR_TSYN_EVNT_M;
aux_reg = GLTSYN_AUX_IN_0_INT_ENA_M;
@@ -1682,33 +1557,38 @@ static int ice_ptp_cfg_extts(struct ice_pf *pf, unsigned int chan,
#define GLTSYN_AUX_IN_0_EVNTLVL_FALLING_EDGE BIT(1)
/* set event level to requested edge */
- if (config->flags & PTP_FALLING_EDGE)
+ if (rq->flags & PTP_FALLING_EDGE)
aux_reg |= GLTSYN_AUX_IN_0_EVNTLVL_FALLING_EDGE;
- if (config->flags & PTP_RISING_EDGE)
+ if (rq->flags & PTP_RISING_EDGE)
aux_reg |= GLTSYN_AUX_IN_0_EVNTLVL_RISING_EDGE;
/* Write GPIO CTL reg.
* 0x1 is input sampled by EVENT register(channel)
* + num_in_channels * tmr_idx
*/
- func = 1 + chan + (tmr_idx * 3);
- gpio_reg = FIELD_PREP(GLGEN_GPIO_CTL_PIN_FUNC_M, func);
- pf->ptp.ext_ts_chan |= (1 << chan);
+ gpio_reg = FIELD_PREP(GLGEN_GPIO_CTL_PIN_FUNC_M,
+ 1 + chan + (tmr_idx * 3));
} else {
+ bool last_enabled = true;
+
/* clear the values we set to reset defaults */
aux_reg = 0;
gpio_reg = 0;
- pf->ptp.ext_ts_chan &= ~(1 << chan);
- if (!pf->ptp.ext_ts_chan)
+
+ for (unsigned int i = 0; i < pf->ptp.info.n_ext_ts; i++)
+ if ((pf->ptp.extts_rqs[i].flags &
+ PTP_ENABLE_FEATURE) &&
+ i != chan) {
+ last_enabled = false;
+ }
+
+ if (last_enabled)
irq_reg &= ~PFINT_OICR_TSYN_EVNT_M;
}
wr32(hw, PFINT_OICR_ENA, irq_reg);
wr32(hw, GLTSYN_AUX_IN(chan, tmr_idx), aux_reg);
- wr32(hw, GLGEN_GPIO_CTL(config->gpio_pin), gpio_reg);
-
- if (store)
- memcpy(&pf->ptp.extts_channels[chan], config, sizeof(*config));
+ wr32(hw, GLGEN_GPIO_CTL(gpio_pin), gpio_reg);
return 0;
}
@@ -1719,16 +1599,10 @@ static int ice_ptp_cfg_extts(struct ice_pf *pf, unsigned int chan,
*/
static void ice_ptp_disable_all_extts(struct ice_pf *pf)
{
- struct ice_extts_channel extts_cfg = {};
- int i;
-
- for (i = 0; i < pf->ptp.info.n_ext_ts; i++) {
- if (pf->ptp.extts_channels[i].ena) {
- extts_cfg.gpio_pin = pf->ptp.extts_channels[i].gpio_pin;
- extts_cfg.ena = false;
- ice_ptp_cfg_extts(pf, i, &extts_cfg, false);
- }
- }
+ for (unsigned int i = 0; i < pf->ptp.info.n_ext_ts ; i++)
+ if (pf->ptp.extts_rqs[i].flags & PTP_ENABLE_FEATURE)
+ ice_ptp_cfg_extts(pf, &pf->ptp.extts_rqs[i],
+ false);
synchronize_irq(pf->oicr_irq.virq);
}
@@ -1741,273 +1615,257 @@ static void ice_ptp_disable_all_extts(struct ice_pf *pf)
*/
static void ice_ptp_enable_all_extts(struct ice_pf *pf)
{
- int i;
-
- for (i = 0; i < pf->ptp.info.n_ext_ts; i++) {
- if (pf->ptp.extts_channels[i].ena)
- ice_ptp_cfg_extts(pf, i, &pf->ptp.extts_channels[i],
- false);
- }
+ for (unsigned int i = 0; i < pf->ptp.info.n_ext_ts ; i++)
+ if (pf->ptp.extts_rqs[i].flags & PTP_ENABLE_FEATURE)
+ ice_ptp_cfg_extts(pf, &pf->ptp.extts_rqs[i],
+ true);
}
/**
- * ice_ptp_cfg_clkout - Configure clock to generate periodic wave
- * @pf: Board private structure
- * @chan: GPIO channel (0-3)
- * @config: desired periodic clk configuration. NULL will disable channel
- * @store: If set to true the values will be stored
+ * ice_ptp_write_perout - Write periodic wave parameters to HW
+ * @hw: pointer to the HW struct
+ * @chan: target channel
+ * @gpio_pin: target GPIO pin
+ * @start: target time to start periodic output
+ * @period: target period
*
- * Configure the internal clock generator modules to generate the clock wave of
- * specified period.
+ * Return: 0 on success, negative error code otherwise
*/
-static int ice_ptp_cfg_clkout(struct ice_pf *pf, unsigned int chan,
- struct ice_perout_channel *config, bool store)
+static int ice_ptp_write_perout(struct ice_hw *hw, unsigned int chan,
+ unsigned int gpio_pin, u64 start, u64 period)
{
- u64 current_time, period, start_time, phase;
- struct ice_hw *hw = &pf->hw;
- u32 func, val, gpio_pin;
- u8 tmr_idx;
- if (config && config->flags & ~PTP_PEROUT_PHASE)
- return -EOPNOTSUPP;
-
- tmr_idx = hw->func_caps.ts_func_info.tmr_index_owned;
+ u8 tmr_idx = hw->func_caps.ts_func_info.tmr_index_owned;
+ u32 val = 0;
/* 0. Reset mode & out_en in AUX_OUT */
wr32(hw, GLTSYN_AUX_OUT(chan, tmr_idx), 0);
- /* If we're disabling the output, clear out CLKO and TGT and keep
- * output level low
- */
- if (!config || !config->ena) {
- wr32(hw, GLTSYN_CLKO(chan, tmr_idx), 0);
- wr32(hw, GLTSYN_TGT_L(chan, tmr_idx), 0);
- wr32(hw, GLTSYN_TGT_H(chan, tmr_idx), 0);
-
- val = GLGEN_GPIO_CTL_PIN_DIR_M;
- gpio_pin = pf->ptp.perout_channels[chan].gpio_pin;
- wr32(hw, GLGEN_GPIO_CTL(gpio_pin), val);
-
- /* Store the value if requested */
- if (store)
- memset(&pf->ptp.perout_channels[chan], 0,
- sizeof(struct ice_perout_channel));
-
- return 0;
- }
- period = config->period;
- start_time = config->start_time;
- div64_u64_rem(start_time, period, &phase);
- gpio_pin = config->gpio_pin;
+ if (hw->mac_type == ICE_MAC_GENERIC_3K_E825) {
+ int err;
- /* 1. Write clkout with half of required period value */
- if (period & 0x1) {
- dev_err(ice_pf_to_dev(pf), "CLK Period must be an even value\n");
- goto err;
+ /* Enable/disable CGU 1PPS output for E825C */
+ err = ice_tspll_cfg_pps_out_e825c(hw, !!period);
+ if (err)
+ return err;
}
+ /* 1. Write perout with half of required period value.
+ * HW toggles output when source clock hits the TGT and then adds
+ * GLTSYN_CLKO value to the target, so it ends up with 50% duty cycle.
+ */
period >>= 1;
- /* For proper operation, the GLTSYN_CLKO must be larger than clock tick
+ /* For proper operation, GLTSYN_CLKO must be larger than clock tick and
+ * period has to fit in 32 bit register.
*/
#define MIN_PULSE 3
- if (period <= MIN_PULSE || period > U32_MAX) {
- dev_err(ice_pf_to_dev(pf), "CLK Period must be > %d && < 2^33",
- MIN_PULSE * 2);
- goto err;
+ if (!!period && (period <= MIN_PULSE || period > U32_MAX)) {
+ dev_err(ice_hw_to_dev(hw), "CLK period ticks must be >= %d && <= 2^32",
+ MIN_PULSE);
+ return -EIO;
}
wr32(hw, GLTSYN_CLKO(chan, tmr_idx), lower_32_bits(period));
- /* Allow time for programming before start_time is hit */
- current_time = ice_ptp_read_src_clk_reg(pf, NULL);
-
- /* if start time is in the past start the timer at the nearest second
- * maintaining phase
- */
- if (start_time < current_time)
- start_time = roundup_u64(current_time, NSEC_PER_SEC) + phase;
-
- if (ice_is_e810(hw))
- start_time -= E810_OUT_PROP_DELAY_NS;
- else
- start_time -= ice_e82x_pps_delay(ice_e82x_time_ref(hw));
-
/* 2. Write TARGET time */
- wr32(hw, GLTSYN_TGT_L(chan, tmr_idx), lower_32_bits(start_time));
- wr32(hw, GLTSYN_TGT_H(chan, tmr_idx), upper_32_bits(start_time));
+ wr32(hw, GLTSYN_TGT_L(chan, tmr_idx), lower_32_bits(start));
+ wr32(hw, GLTSYN_TGT_H(chan, tmr_idx), upper_32_bits(start));
/* 3. Write AUX_OUT register */
- val = GLTSYN_AUX_OUT_0_OUT_ENA_M | GLTSYN_AUX_OUT_0_OUTMOD_M;
+ if (!!period)
+ val = GLTSYN_AUX_OUT_0_OUT_ENA_M | GLTSYN_AUX_OUT_0_OUTMOD_M;
wr32(hw, GLTSYN_AUX_OUT(chan, tmr_idx), val);
/* 4. write GPIO CTL reg */
- func = 8 + chan + (tmr_idx * 4);
- val = GLGEN_GPIO_CTL_PIN_DIR_M |
- FIELD_PREP(GLGEN_GPIO_CTL_PIN_FUNC_M, func);
+ val = GLGEN_GPIO_CTL_PIN_DIR_M;
+ if (!!period)
+ val |= FIELD_PREP(GLGEN_GPIO_CTL_PIN_FUNC_M,
+ 8 + chan + (tmr_idx * 4));
+
wr32(hw, GLGEN_GPIO_CTL(gpio_pin), val);
+ ice_flush(hw);
+
+ return 0;
+}
+
+/**
+ * ice_ptp_cfg_perout - Configure clock to generate periodic wave
+ * @pf: Board private structure
+ * @rq: Periodic output request
+ * @on: Enable/disable flag
+ *
+ * Configure the internal clock generator modules to generate the clock wave of
+ * specified period.
+ *
+ * Return: 0 on success, negative error code otherwise
+ */
+static int ice_ptp_cfg_perout(struct ice_pf *pf, struct ptp_perout_request *rq,
+ int on)
+{
+ unsigned int gpio_pin, prop_delay_ns;
+ u64 clk, period, start, phase;
+ struct ice_hw *hw = &pf->hw;
+ int pin_desc_idx;
+
+ pin_desc_idx = ice_ptp_find_pin_idx(pf, PTP_PF_PEROUT, rq->index);
+ if (pin_desc_idx < 0)
+ return -EIO;
+
+ gpio_pin = pf->ptp.ice_pin_desc[pin_desc_idx].gpio[1];
+ prop_delay_ns = pf->ptp.ice_pin_desc[pin_desc_idx].delay[1];
+ period = rq->period.sec * NSEC_PER_SEC + rq->period.nsec;
+
+ /* If we're disabling the output or period is 0, clear out CLKO and TGT
+ * and keep output level low.
+ */
+ if (!on || !period)
+ return ice_ptp_write_perout(hw, rq->index, gpio_pin, 0, 0);
+
+ if (strncmp(pf->ptp.pin_desc[pin_desc_idx].name, "1PPS", 64) == 0 &&
+ period != NSEC_PER_SEC && hw->mac_type == ICE_MAC_GENERIC) {
+ dev_err(ice_pf_to_dev(pf), "1PPS pin supports only 1 s period\n");
+ return -EOPNOTSUPP;
+ }
- /* Store the value if requested */
- if (store) {
- memcpy(&pf->ptp.perout_channels[chan], config,
- sizeof(struct ice_perout_channel));
- pf->ptp.perout_channels[chan].start_time = phase;
+ if (period & 0x1) {
+ dev_err(ice_pf_to_dev(pf), "CLK Period must be an even value\n");
+ return -EIO;
}
- return 0;
-err:
- dev_err(ice_pf_to_dev(pf), "PTP failed to cfg per_clk\n");
- return -EFAULT;
+ start = rq->start.sec * NSEC_PER_SEC + rq->start.nsec;
+
+ /* If PTP_PEROUT_PHASE is set, rq has phase instead of start time */
+ if (rq->flags & PTP_PEROUT_PHASE)
+ phase = start;
+ else
+ div64_u64_rem(start, period, &phase);
+
+ /* If we have only phase or start time is in the past, start the timer
+ * at the next multiple of period, maintaining phase at least 0.5 second
+ * from now, so we have time to write it to HW.
+ */
+ clk = ice_ptp_read_src_clk_reg(pf, NULL) + NSEC_PER_MSEC * 500;
+ if (rq->flags & PTP_PEROUT_PHASE || start <= clk - prop_delay_ns)
+ start = div64_u64(clk + period - 1, period) * period + phase;
+
+ /* Compensate for propagation delay from the generator to the pin. */
+ start -= prop_delay_ns;
+
+ return ice_ptp_write_perout(hw, rq->index, gpio_pin, start, period);
}
/**
- * ice_ptp_disable_all_clkout - Disable all currently configured outputs
- * @pf: pointer to the PF structure
+ * ice_ptp_disable_all_perout - Disable all currently configured outputs
+ * @pf: Board private structure
*
* Disable all currently configured clock outputs. This is necessary before
- * certain changes to the PTP hardware clock. Use ice_ptp_enable_all_clkout to
+ * certain changes to the PTP hardware clock. Use ice_ptp_enable_all_perout to
* re-enable the clocks again.
*/
-static void ice_ptp_disable_all_clkout(struct ice_pf *pf)
+static void ice_ptp_disable_all_perout(struct ice_pf *pf)
{
- uint i;
-
- for (i = 0; i < pf->ptp.info.n_per_out; i++)
- if (pf->ptp.perout_channels[i].ena)
- ice_ptp_cfg_clkout(pf, i, NULL, false);
+ for (unsigned int i = 0; i < pf->ptp.info.n_per_out; i++)
+ if (pf->ptp.perout_rqs[i].period.sec ||
+ pf->ptp.perout_rqs[i].period.nsec)
+ ice_ptp_cfg_perout(pf, &pf->ptp.perout_rqs[i],
+ false);
}
/**
- * ice_ptp_enable_all_clkout - Enable all configured periodic clock outputs
- * @pf: pointer to the PF structure
+ * ice_ptp_enable_all_perout - Enable all configured periodic clock outputs
+ * @pf: Board private structure
*
* Enable all currently configured clock outputs. Use this after
- * ice_ptp_disable_all_clkout to reconfigure the output signals according to
+ * ice_ptp_disable_all_perout to reconfigure the output signals according to
* their configuration.
*/
-static void ice_ptp_enable_all_clkout(struct ice_pf *pf)
+static void ice_ptp_enable_all_perout(struct ice_pf *pf)
{
- uint i;
-
- for (i = 0; i < pf->ptp.info.n_per_out; i++)
- if (pf->ptp.perout_channels[i].ena)
- ice_ptp_cfg_clkout(pf, i, &pf->ptp.perout_channels[i],
- false);
+ for (unsigned int i = 0; i < pf->ptp.info.n_per_out; i++)
+ if (pf->ptp.perout_rqs[i].period.sec ||
+ pf->ptp.perout_rqs[i].period.nsec)
+ ice_ptp_cfg_perout(pf, &pf->ptp.perout_rqs[i],
+ true);
}
/**
- * ice_ptp_gpio_enable_e810 - Enable/disable ancillary features of PHC
+ * ice_verify_pin - verify if pin supports requested pin function
* @info: the driver's PTP info structure
- * @rq: The requested feature to change
- * @on: Enable/disable flag
+ * @pin: Pin index
+ * @func: Assigned function
+ * @chan: Assigned channel
+ *
+ * Return: 0 on success, -EOPNOTSUPP when function is not supported.
*/
-static int
-ice_ptp_gpio_enable_e810(struct ptp_clock_info *info,
- struct ptp_clock_request *rq, int on)
+static int ice_verify_pin(struct ptp_clock_info *info, unsigned int pin,
+ enum ptp_pin_function func, unsigned int chan)
{
struct ice_pf *pf = ptp_info_to_pf(info);
- bool sma_pres = false;
- unsigned int chan;
- u32 gpio_pin;
-
- if (ice_is_feature_supported(pf, ICE_F_SMA_CTRL))
- sma_pres = true;
-
- switch (rq->type) {
- case PTP_CLK_REQ_PEROUT:
- {
- struct ice_perout_channel clk_cfg = {};
-
- chan = rq->perout.index;
- if (sma_pres) {
- if (chan == ice_pin_desc_e810t[SMA1].chan)
- clk_cfg.gpio_pin = GPIO_20;
- else if (chan == ice_pin_desc_e810t[SMA2].chan)
- clk_cfg.gpio_pin = GPIO_22;
- else
- return -1;
- } else if (ice_is_e810t(&pf->hw)) {
- if (chan == 0)
- clk_cfg.gpio_pin = GPIO_20;
- else
- clk_cfg.gpio_pin = GPIO_22;
- } else if (chan == PPS_CLK_GEN_CHAN) {
- clk_cfg.gpio_pin = PPS_PIN_INDEX;
- } else {
- clk_cfg.gpio_pin = chan;
- }
-
- clk_cfg.flags = rq->perout.flags;
- clk_cfg.period = ((rq->perout.period.sec * NSEC_PER_SEC) +
- rq->perout.period.nsec);
- clk_cfg.start_time = ((rq->perout.start.sec * NSEC_PER_SEC) +
- rq->perout.start.nsec);
- clk_cfg.ena = !!on;
-
- return ice_ptp_cfg_clkout(pf, chan, &clk_cfg, true);
- }
- case PTP_CLK_REQ_EXTTS:
- {
- struct ice_extts_channel extts_cfg = {};
-
- chan = rq->extts.index;
- if (sma_pres) {
- if (chan < ice_pin_desc_e810t[SMA2].chan)
- gpio_pin = GPIO_21;
- else
- gpio_pin = GPIO_23;
- } else if (ice_is_e810t(&pf->hw)) {
- if (chan == 0)
- gpio_pin = GPIO_21;
- else
- gpio_pin = GPIO_23;
- } else {
- gpio_pin = chan;
- }
+ const struct ice_ptp_pin_desc *pin_desc;
- extts_cfg.flags = rq->extts.flags;
- extts_cfg.gpio_pin = gpio_pin;
- extts_cfg.ena = !!on;
+ pin_desc = &pf->ptp.ice_pin_desc[pin];
- return ice_ptp_cfg_extts(pf, chan, &extts_cfg, true);
- }
+ /* Is assigned function allowed? */
+ switch (func) {
+ case PTP_PF_EXTTS:
+ if (pin_desc->gpio[0] < 0)
+ return -EOPNOTSUPP;
+ break;
+ case PTP_PF_PEROUT:
+ if (pin_desc->gpio[1] < 0)
+ return -EOPNOTSUPP;
+ break;
+ case PTP_PF_NONE:
+ break;
+ case PTP_PF_PHYSYNC:
default:
return -EOPNOTSUPP;
}
+
+ return 0;
}
/**
- * ice_ptp_gpio_enable_e823 - Enable/disable ancillary features of PHC
- * @info: the driver's PTP info structure
+ * ice_ptp_gpio_enable - Enable/disable ancillary features of PHC
+ * @info: The driver's PTP info structure
* @rq: The requested feature to change
* @on: Enable/disable flag
+ *
+ * Return: 0 on success, negative error code otherwise
*/
-static int ice_ptp_gpio_enable_e823(struct ptp_clock_info *info,
- struct ptp_clock_request *rq, int on)
+static int ice_ptp_gpio_enable(struct ptp_clock_info *info,
+ struct ptp_clock_request *rq, int on)
{
struct ice_pf *pf = ptp_info_to_pf(info);
+ int err;
switch (rq->type) {
- case PTP_CLK_REQ_PPS:
+ case PTP_CLK_REQ_PEROUT:
{
- struct ice_perout_channel clk_cfg = {};
-
- clk_cfg.flags = rq->perout.flags;
- clk_cfg.gpio_pin = PPS_PIN_INDEX;
- clk_cfg.period = NSEC_PER_SEC;
- clk_cfg.ena = !!on;
+ struct ptp_perout_request *cached =
+ &pf->ptp.perout_rqs[rq->perout.index];
- return ice_ptp_cfg_clkout(pf, PPS_CLK_GEN_CHAN, &clk_cfg, true);
+ err = ice_ptp_cfg_perout(pf, &rq->perout, on);
+ if (!err) {
+ *cached = rq->perout;
+ } else {
+ cached->period.sec = 0;
+ cached->period.nsec = 0;
+ }
+ return err;
}
case PTP_CLK_REQ_EXTTS:
{
- struct ice_extts_channel extts_cfg = {};
+ struct ptp_extts_request *cached =
+ &pf->ptp.extts_rqs[rq->extts.index];
- extts_cfg.flags = rq->extts.flags;
- extts_cfg.gpio_pin = TIME_SYNC_PIN_INDEX;
- extts_cfg.ena = !!on;
-
- return ice_ptp_cfg_extts(pf, rq->extts.index, &extts_cfg, true);
+ err = ice_ptp_cfg_extts(pf, &rq->extts, on);
+ if (!err)
+ *cached = rq->extts;
+ else
+ cached->flags &= ~PTP_ENABLE_FEATURE;
+ return err;
}
default:
return -EOPNOTSUPP;
@@ -2055,7 +1913,7 @@ ice_ptp_settime64(struct ptp_clock_info *info, const struct timespec64 *ts)
/* For Vernier mode on E82X, we need to recalibrate after new settime.
* Start with marking timestamps as invalid.
*/
- if (hw->ptp.phy_model == ICE_PHY_E82X) {
+ if (hw->mac_type == ICE_MAC_GENERIC) {
err = ice_ptp_clear_phy_offset_ready_e82x(hw);
if (err)
dev_warn(ice_pf_to_dev(pf), "Failed to mark timestamps as invalid before settime\n");
@@ -2067,7 +1925,7 @@ ice_ptp_settime64(struct ptp_clock_info *info, const struct timespec64 *ts)
}
/* Disable periodic outputs */
- ice_ptp_disable_all_clkout(pf);
+ ice_ptp_disable_all_perout(pf);
err = ice_ptp_write_init(pf, &ts64);
ice_ptp_unlock(hw);
@@ -2076,10 +1934,10 @@ ice_ptp_settime64(struct ptp_clock_info *info, const struct timespec64 *ts)
ice_ptp_reset_cached_phctime(pf);
/* Reenable periodic outputs */
- ice_ptp_enable_all_clkout(pf);
+ ice_ptp_enable_all_perout(pf);
/* Recalibrate and re-enable timestamp blocks for E822/E823 */
- if (hw->ptp.phy_model == ICE_PHY_E82X)
+ if (hw->mac_type == ICE_MAC_GENERIC)
ice_ptp_restart_all_phy(pf);
exit:
if (err) {
@@ -2138,12 +1996,12 @@ static int ice_ptp_adjtime(struct ptp_clock_info *info, s64 delta)
}
/* Disable periodic outputs */
- ice_ptp_disable_all_clkout(pf);
+ ice_ptp_disable_all_perout(pf);
err = ice_ptp_write_adj(pf, delta);
/* Reenable periodic outputs */
- ice_ptp_enable_all_clkout(pf);
+ ice_ptp_enable_all_perout(pf);
ice_ptp_unlock(hw);
@@ -2157,92 +2015,158 @@ static int ice_ptp_adjtime(struct ptp_clock_info *info, s64 delta)
return 0;
}
+/**
+ * struct ice_crosststamp_cfg - Device cross timestamp configuration
+ * @lock_reg: The hardware semaphore lock to use
+ * @lock_busy: Bit in the semaphore lock indicating the lock is busy
+ * @ctl_reg: The hardware register to request cross timestamp
+ * @ctl_active: Bit in the control register to request cross timestamp
+ * @art_time_l: Lower 32-bits of ART system time
+ * @art_time_h: Upper 32-bits of ART system time
+ * @dev_time_l: Lower 32-bits of device time (per timer index)
+ * @dev_time_h: Upper 32-bits of device time (per timer index)
+ */
+struct ice_crosststamp_cfg {
+ /* HW semaphore lock register */
+ u32 lock_reg;
+ u32 lock_busy;
+
+ /* Capture control register */
+ u32 ctl_reg;
+ u32 ctl_active;
+
+ /* Time storage */
+ u32 art_time_l;
+ u32 art_time_h;
+ u32 dev_time_l[2];
+ u32 dev_time_h[2];
+};
+
+static const struct ice_crosststamp_cfg ice_crosststamp_cfg_e82x = {
+ .lock_reg = PFHH_SEM,
+ .lock_busy = PFHH_SEM_BUSY_M,
+ .ctl_reg = GLHH_ART_CTL,
+ .ctl_active = GLHH_ART_CTL_ACTIVE_M,
+ .art_time_l = GLHH_ART_TIME_L,
+ .art_time_h = GLHH_ART_TIME_H,
+ .dev_time_l[0] = GLTSYN_HHTIME_L(0),
+ .dev_time_h[0] = GLTSYN_HHTIME_H(0),
+ .dev_time_l[1] = GLTSYN_HHTIME_L(1),
+ .dev_time_h[1] = GLTSYN_HHTIME_H(1),
+};
+
#ifdef CONFIG_ICE_HWTS
+static const struct ice_crosststamp_cfg ice_crosststamp_cfg_e830 = {
+ .lock_reg = E830_PFPTM_SEM,
+ .lock_busy = E830_PFPTM_SEM_BUSY_M,
+ .ctl_reg = E830_GLPTM_ART_CTL,
+ .ctl_active = E830_GLPTM_ART_CTL_ACTIVE_M,
+ .art_time_l = E830_GLPTM_ART_TIME_L,
+ .art_time_h = E830_GLPTM_ART_TIME_H,
+ .dev_time_l[0] = E830_GLTSYN_PTMTIME_L(0),
+ .dev_time_h[0] = E830_GLTSYN_PTMTIME_H(0),
+ .dev_time_l[1] = E830_GLTSYN_PTMTIME_L(1),
+ .dev_time_h[1] = E830_GLTSYN_PTMTIME_H(1),
+};
+
+#endif /* CONFIG_ICE_HWTS */
+/**
+ * struct ice_crosststamp_ctx - Device cross timestamp context
+ * @snapshot: snapshot of system clocks for historic interpolation
+ * @pf: pointer to the PF private structure
+ * @cfg: pointer to hardware configuration for cross timestamp
+ */
+struct ice_crosststamp_ctx {
+ struct system_time_snapshot snapshot;
+ struct ice_pf *pf;
+ const struct ice_crosststamp_cfg *cfg;
+};
+
/**
- * ice_ptp_get_syncdevicetime - Get the cross time stamp info
+ * ice_capture_crosststamp - Capture a device/system cross timestamp
* @device: Current device time
* @system: System counter value read synchronously with device time
- * @ctx: Context provided by timekeeping code
+ * @__ctx: Context passed from ice_ptp_getcrosststamp
*
* Read device and system (ART) clock simultaneously and return the corrected
* clock values in ns.
+ *
+ * Return: zero on success, or a negative error code on failure.
*/
-static int
-ice_ptp_get_syncdevicetime(ktime_t *device,
- struct system_counterval_t *system,
- void *ctx)
+static int ice_capture_crosststamp(ktime_t *device,
+ struct system_counterval_t *system,
+ void *__ctx)
{
- struct ice_pf *pf = (struct ice_pf *)ctx;
- struct ice_hw *hw = &pf->hw;
- u32 hh_lock, hh_art_ctl;
- int i;
+ struct ice_crosststamp_ctx *ctx = __ctx;
+ const struct ice_crosststamp_cfg *cfg;
+ u32 lock, ctl, ts_lo, ts_hi, tmr_idx;
+ struct ice_pf *pf;
+ struct ice_hw *hw;
+ int err;
+ u64 ts;
-#define MAX_HH_HW_LOCK_TRIES 5
-#define MAX_HH_CTL_LOCK_TRIES 100
+ cfg = ctx->cfg;
+ pf = ctx->pf;
+ hw = &pf->hw;
- for (i = 0; i < MAX_HH_HW_LOCK_TRIES; i++) {
- /* Get the HW lock */
- hh_lock = rd32(hw, PFHH_SEM + (PFTSYN_SEM_BYTES * hw->pf_id));
- if (hh_lock & PFHH_SEM_BUSY_M) {
- usleep_range(10000, 15000);
- continue;
- }
- break;
- }
- if (hh_lock & PFHH_SEM_BUSY_M) {
- dev_err(ice_pf_to_dev(pf), "PTP failed to get hh lock\n");
+ tmr_idx = hw->func_caps.ts_func_info.tmr_index_assoc;
+ if (tmr_idx > 1)
+ return -EINVAL;
+
+ /* Poll until we obtain the cross-timestamp hardware semaphore */
+ err = rd32_poll_timeout(hw, cfg->lock_reg, lock,
+ !(lock & cfg->lock_busy),
+ 10 * USEC_PER_MSEC, 50 * USEC_PER_MSEC);
+ if (err) {
+ dev_err(ice_pf_to_dev(pf), "PTP failed to get cross timestamp lock\n");
return -EBUSY;
}
+ /* Snapshot system time for historic interpolation */
+ ktime_get_snapshot(&ctx->snapshot);
+
/* Program cmd to master timer */
ice_ptp_src_cmd(hw, ICE_PTP_READ_TIME);
/* Start the ART and device clock sync sequence */
- hh_art_ctl = rd32(hw, GLHH_ART_CTL);
- hh_art_ctl = hh_art_ctl | GLHH_ART_CTL_ACTIVE_M;
- wr32(hw, GLHH_ART_CTL, hh_art_ctl);
-
- for (i = 0; i < MAX_HH_CTL_LOCK_TRIES; i++) {
- /* Wait for sync to complete */
- hh_art_ctl = rd32(hw, GLHH_ART_CTL);
- if (hh_art_ctl & GLHH_ART_CTL_ACTIVE_M) {
- udelay(1);
- continue;
- } else {
- u32 hh_ts_lo, hh_ts_hi, tmr_idx;
- u64 hh_ts;
-
- tmr_idx = hw->func_caps.ts_func_info.tmr_index_assoc;
- /* Read ART time */
- hh_ts_lo = rd32(hw, GLHH_ART_TIME_L);
- hh_ts_hi = rd32(hw, GLHH_ART_TIME_H);
- hh_ts = ((u64)hh_ts_hi << 32) | hh_ts_lo;
- *system = convert_art_ns_to_tsc(hh_ts);
- /* Read Device source clock time */
- hh_ts_lo = rd32(hw, GLTSYN_HHTIME_L(tmr_idx));
- hh_ts_hi = rd32(hw, GLTSYN_HHTIME_H(tmr_idx));
- hh_ts = ((u64)hh_ts_hi << 32) | hh_ts_lo;
- *device = ns_to_ktime(hh_ts);
- break;
- }
- }
+ ctl = rd32(hw, cfg->ctl_reg);
+ ctl |= cfg->ctl_active;
+ wr32(hw, cfg->ctl_reg, ctl);
+ /* Poll until hardware completes the capture */
+ err = rd32_poll_timeout(hw, cfg->ctl_reg, ctl, !(ctl & cfg->ctl_active),
+ 5, 20 * USEC_PER_MSEC);
+ if (err)
+ goto err_timeout;
+
+ /* Read ART system time */
+ ts_lo = rd32(hw, cfg->art_time_l);
+ ts_hi = rd32(hw, cfg->art_time_h);
+ ts = ((u64)ts_hi << 32) | ts_lo;
+ system->cycles = ts;
+ system->cs_id = CSID_X86_ART;
+ system->use_nsecs = true;
+
+ /* Read Device source clock time */
+ ts_lo = rd32(hw, cfg->dev_time_l[tmr_idx]);
+ ts_hi = rd32(hw, cfg->dev_time_h[tmr_idx]);
+ ts = ((u64)ts_hi << 32) | ts_lo;
+ *device = ns_to_ktime(ts);
+
+err_timeout:
/* Clear the master timer */
ice_ptp_src_cmd(hw, ICE_PTP_NOP);
/* Release HW lock */
- hh_lock = rd32(hw, PFHH_SEM + (PFTSYN_SEM_BYTES * hw->pf_id));
- hh_lock = hh_lock & ~PFHH_SEM_BUSY_M;
- wr32(hw, PFHH_SEM + (PFTSYN_SEM_BYTES * hw->pf_id), hh_lock);
-
- if (i == MAX_HH_CTL_LOCK_TRIES)
- return -ETIMEDOUT;
+ lock = rd32(hw, cfg->lock_reg);
+ lock &= ~cfg->lock_busy;
+ wr32(hw, cfg->lock_reg, lock);
- return 0;
+ return err;
}
/**
- * ice_ptp_getcrosststamp_e82x - Capture a device cross timestamp
+ * ice_ptp_getcrosststamp - Capture a device cross timestamp
* @info: the driver's PTP info structure
* @cts: The memory to fill the cross timestamp info
*
@@ -2250,41 +2174,55 @@ ice_ptp_get_syncdevicetime(ktime_t *device,
* clock. Fill the cross timestamp information and report it back to the
* caller.
*
- * This is only valid for E822 and E823 devices which have support for
- * generating the cross timestamp via PCIe PTM.
- *
* In order to correctly correlate the ART timestamp back to the TSC time, the
* CPU must have X86_FEATURE_TSC_KNOWN_FREQ.
+ *
+ * Return: zero on success, or a negative error code on failure.
*/
-static int
-ice_ptp_getcrosststamp_e82x(struct ptp_clock_info *info,
- struct system_device_crosststamp *cts)
+static int ice_ptp_getcrosststamp(struct ptp_clock_info *info,
+ struct system_device_crosststamp *cts)
{
struct ice_pf *pf = ptp_info_to_pf(info);
+ struct ice_crosststamp_ctx ctx = {
+ .pf = pf,
+ };
+
+ switch (pf->hw.mac_type) {
+ case ICE_MAC_GENERIC:
+ case ICE_MAC_GENERIC_3K_E825:
+ ctx.cfg = &ice_crosststamp_cfg_e82x;
+ break;
+#ifdef CONFIG_ICE_HWTS
+ case ICE_MAC_E830:
+ ctx.cfg = &ice_crosststamp_cfg_e830;
+ break;
+#endif /* CONFIG_ICE_HWTS */
+ default:
+ return -EOPNOTSUPP;
+ }
- return get_device_system_crosststamp(ice_ptp_get_syncdevicetime,
- pf, NULL, cts);
+ return get_device_system_crosststamp(ice_capture_crosststamp, &ctx,
+ &ctx.snapshot, cts);
}
-#endif /* CONFIG_ICE_HWTS */
/**
- * ice_ptp_get_ts_config - ioctl interface to read the timestamping config
- * @pf: Board private structure
- * @ifr: ioctl data
+ * ice_ptp_hwtstamp_get - interface to read the timestamping config
+ * @netdev: Pointer to network interface device structure
+ * @config: Timestamping configuration structure
*
* Copy the timestamping config to user buffer
*/
-int ice_ptp_get_ts_config(struct ice_pf *pf, struct ifreq *ifr)
+int ice_ptp_hwtstamp_get(struct net_device *netdev,
+ struct kernel_hwtstamp_config *config)
{
- struct hwtstamp_config *config;
+ struct ice_pf *pf = ice_netdev_to_pf(netdev);
if (pf->ptp.state != ICE_PTP_READY)
return -EIO;
- config = &pf->ptp.tstamp_config;
+ *config = pf->ptp.tstamp_config;
- return copy_to_user(ifr->ifr_data, config, sizeof(*config)) ?
- -EFAULT : 0;
+ return 0;
}
/**
@@ -2292,8 +2230,8 @@ int ice_ptp_get_ts_config(struct ice_pf *pf, struct ifreq *ifr)
* @pf: Board private structure
* @config: hwtstamp settings requested or saved
*/
-static int
-ice_ptp_set_timestamp_mode(struct ice_pf *pf, struct hwtstamp_config *config)
+static int ice_ptp_set_timestamp_mode(struct ice_pf *pf,
+ struct kernel_hwtstamp_config *config)
{
switch (config->tx_type) {
case HWTSTAMP_TX_OFF:
@@ -2337,32 +2275,31 @@ ice_ptp_set_timestamp_mode(struct ice_pf *pf, struct hwtstamp_config *config)
}
/**
- * ice_ptp_set_ts_config - ioctl interface to control the timestamping
- * @pf: Board private structure
- * @ifr: ioctl data
+ * ice_ptp_hwtstamp_set - interface to control the timestamping
+ * @netdev: Pointer to network interface device structure
+ * @config: Timestamping configuration structure
+ * @extack: Netlink extended ack structure for error reporting
*
* Get the user config and store it
*/
-int ice_ptp_set_ts_config(struct ice_pf *pf, struct ifreq *ifr)
+int ice_ptp_hwtstamp_set(struct net_device *netdev,
+ struct kernel_hwtstamp_config *config,
+ struct netlink_ext_ack *extack)
{
- struct hwtstamp_config config;
+ struct ice_pf *pf = ice_netdev_to_pf(netdev);
int err;
if (pf->ptp.state != ICE_PTP_READY)
return -EAGAIN;
- if (copy_from_user(&config, ifr->ifr_data, sizeof(config)))
- return -EFAULT;
-
- err = ice_ptp_set_timestamp_mode(pf, &config);
+ err = ice_ptp_set_timestamp_mode(pf, config);
if (err)
return err;
/* Return the actual configuration set */
- config = pf->ptp.tstamp_config;
+ *config = pf->ptp.tstamp_config;
- return copy_to_user(ifr->ifr_data, &config, sizeof(config)) ?
- -EFAULT : 0;
+ return 0;
}
/**
@@ -2400,20 +2337,41 @@ u64 ice_ptp_get_rx_hwts(const union ice_32b_rx_flex_desc *rx_desc,
}
/**
- * ice_ptp_disable_sma_pins_e810t - Disable E810-T SMA pins
+ * ice_ptp_setup_pin_cfg - setup PTP pin_config structure
+ * @pf: Board private structure
+ */
+static void ice_ptp_setup_pin_cfg(struct ice_pf *pf)
+{
+ for (unsigned int i = 0; i < pf->ptp.info.n_pins; i++) {
+ const struct ice_ptp_pin_desc *desc = &pf->ptp.ice_pin_desc[i];
+ struct ptp_pin_desc *pin = &pf->ptp.pin_desc[i];
+ const char *name;
+
+ if (!ice_is_feature_supported(pf, ICE_F_SMA_CTRL))
+ name = ice_pin_names[desc->name_idx];
+ else
+ name = ice_pin_names_dpll[desc->name_idx];
+
+ strscpy(pin->name, name, sizeof(pin->name));
+
+ pin->index = i;
+ }
+
+ pf->ptp.info.pin_config = pf->ptp.pin_desc;
+}
+
+/**
+ * ice_ptp_disable_pins - Disable PTP pins
* @pf: pointer to the PF structure
- * @info: PTP clock info structure
*
- * Disable the OS access to the SMA pins. Called to clear out the OS
- * indications of pin support when we fail to setup the E810-T SMA control
- * register.
+ * Disable the OS access to the pins. Called to clear out the OS
+ * indications of pin support when we fail to setup pin array.
*/
-static void
-ice_ptp_disable_sma_pins_e810t(struct ice_pf *pf, struct ptp_clock_info *info)
+static void ice_ptp_disable_pins(struct ice_pf *pf)
{
- struct device *dev = ice_pf_to_dev(pf);
+ struct ptp_clock_info *info = &pf->ptp.info;
- dev_warn(dev, "Failed to configure E810-T SMA pin control\n");
+ dev_warn(ice_pf_to_dev(pf), "Failed to configure PTP pin control\n");
info->enable = NULL;
info->verify = NULL;
@@ -2423,126 +2381,162 @@ ice_ptp_disable_sma_pins_e810t(struct ice_pf *pf, struct ptp_clock_info *info)
}
/**
- * ice_ptp_setup_sma_pins_e810t - Setup the SMA pins
+ * ice_ptp_parse_sdp_entries - update ice_ptp_pin_desc structure from NVM
* @pf: pointer to the PF structure
- * @info: PTP clock info structure
+ * @entries: SDP connection section from NVM
+ * @num_entries: number of valid entries in sdp_entries
+ * @pins: PTP pins array to update
*
- * Finish setting up the SMA pins by allocating pin_config, and setting it up
- * according to the current status of the SMA. On failure, disable all of the
- * extended SMA pin support.
+ * Return: 0 on success, negative error code otherwise.
*/
-static void
-ice_ptp_setup_sma_pins_e810t(struct ice_pf *pf, struct ptp_clock_info *info)
+static int ice_ptp_parse_sdp_entries(struct ice_pf *pf, __le16 *entries,
+ unsigned int num_entries,
+ struct ice_ptp_pin_desc *pins)
{
- struct device *dev = ice_pf_to_dev(pf);
- int err;
+ unsigned int n_pins = 0;
+ unsigned int i;
- /* Allocate memory for kernel pins interface */
- info->pin_config = devm_kcalloc(dev, info->n_pins,
- sizeof(*info->pin_config), GFP_KERNEL);
- if (!info->pin_config) {
- ice_ptp_disable_sma_pins_e810t(pf, info);
- return;
+ /* Setup ice_pin_desc array */
+ for (i = 0; i < ICE_N_PINS_MAX; i++) {
+ pins[i].name_idx = -1;
+ pins[i].gpio[0] = -1;
+ pins[i].gpio[1] = -1;
}
- /* Read current SMA status */
- err = ice_get_sma_config_e810t(&pf->hw, info->pin_config);
- if (err)
- ice_ptp_disable_sma_pins_e810t(pf, info);
-}
+ for (i = 0; i < num_entries; i++) {
+ u16 entry = le16_to_cpu(entries[i]);
+ DECLARE_BITMAP(bitmap, GPIO_NA);
+ unsigned int idx;
+ bool dir;
+ u16 gpio;
-/**
- * ice_ptp_setup_pins_e810 - Setup PTP pins in sysfs
- * @pf: pointer to the PF instance
- * @info: PTP clock capabilities
- */
-static void
-ice_ptp_setup_pins_e810(struct ice_pf *pf, struct ptp_clock_info *info)
-{
- if (ice_is_feature_supported(pf, ICE_F_SMA_CTRL)) {
- info->n_ext_ts = N_EXT_TS_E810;
- info->n_per_out = N_PER_OUT_E810T;
- info->n_pins = NUM_PTP_PINS_E810T;
- info->verify = ice_verify_pin_e810t;
-
- /* Complete setup of the SMA pins */
- ice_ptp_setup_sma_pins_e810t(pf, info);
- } else if (ice_is_e810t(&pf->hw)) {
- info->n_ext_ts = N_EXT_TS_NO_SMA_E810T;
- info->n_per_out = N_PER_OUT_NO_SMA_E810T;
- } else {
- info->n_per_out = N_PER_OUT_E810;
- info->n_ext_ts = N_EXT_TS_E810;
+ *bitmap = FIELD_GET(ICE_AQC_NVM_SDP_AC_PIN_M, entry);
+
+ /* Check if entry's pin bitmap is valid. */
+ if (bitmap_empty(bitmap, GPIO_NA))
+ continue;
+
+ dir = !!FIELD_GET(ICE_AQC_NVM_SDP_AC_DIR_M, entry);
+ gpio = FIELD_GET(ICE_AQC_NVM_SDP_AC_SDP_NUM_M, entry);
+
+ for (idx = 0; idx < ICE_N_PINS_MAX; idx++) {
+ if (pins[idx].name_idx == gpio)
+ break;
+ }
+
+ if (idx == ICE_N_PINS_MAX) {
+ /* Pin not found, setup its entry and name */
+ idx = n_pins++;
+ pins[idx].name_idx = gpio;
+ }
+ pins[idx].gpio[dir] = gpio;
}
-}
-/**
- * ice_ptp_setup_pins_e823 - Setup PTP pins in sysfs
- * @pf: pointer to the PF instance
- * @info: PTP clock capabilities
- */
-static void
-ice_ptp_setup_pins_e823(struct ice_pf *pf, struct ptp_clock_info *info)
-{
- info->pps = 1;
- info->n_per_out = 0;
- info->n_ext_ts = 1;
+ for (i = 0; i < n_pins; i++) {
+ dev_dbg(ice_pf_to_dev(pf),
+ "NVM pin entry[%d] : name_idx %d gpio_out %d gpio_in %d\n",
+ i, pins[i].name_idx, pins[i].gpio[1], pins[i].gpio[0]);
+ }
+
+ pf->ptp.info.n_pins = n_pins;
+ return 0;
}
/**
- * ice_ptp_set_funcs_e82x - Set specialized functions for E82x support
+ * ice_ptp_set_funcs_e82x - Set specialized functions for E82X support
* @pf: Board private structure
- * @info: PTP info to fill
*
- * Assign functions to the PTP capabiltiies structure for E82x devices.
+ * Assign functions to the PTP capabilities structure for E82X devices.
* Functions which operate across all device families should be set directly
- * in ice_ptp_set_caps. Only add functions here which are distinct for E82x
+ * in ice_ptp_set_caps. Only add functions here which are distinct for E82X
* devices.
*/
-static void
-ice_ptp_set_funcs_e82x(struct ice_pf *pf, struct ptp_clock_info *info)
+static void ice_ptp_set_funcs_e82x(struct ice_pf *pf)
{
-#ifdef CONFIG_ICE_HWTS
- if (boot_cpu_has(X86_FEATURE_ART) &&
- boot_cpu_has(X86_FEATURE_TSC_KNOWN_FREQ))
- info->getcrosststamp = ice_ptp_getcrosststamp_e82x;
-#endif /* CONFIG_ICE_HWTS */
+ pf->ptp.info.getcrosststamp = ice_ptp_getcrosststamp;
+
+ if (pf->hw.mac_type == ICE_MAC_GENERIC_3K_E825) {
+ pf->ptp.ice_pin_desc = ice_pin_desc_e825c;
+ pf->ptp.info.n_pins = ARRAY_SIZE(ice_pin_desc_e825c);
+ } else {
+ pf->ptp.ice_pin_desc = ice_pin_desc_e82x;
+ pf->ptp.info.n_pins = ARRAY_SIZE(ice_pin_desc_e82x);
+ }
+ ice_ptp_setup_pin_cfg(pf);
}
/**
* ice_ptp_set_funcs_e810 - Set specialized functions for E810 support
* @pf: Board private structure
- * @info: PTP info to fill
*
* Assign functions to the PTP capabiltiies structure for E810 devices.
* Functions which operate across all device families should be set directly
- * in ice_ptp_set_caps. Only add functions here which are distinct for e810
+ * in ice_ptp_set_caps. Only add functions here which are distinct for E810
* devices.
*/
-static void
-ice_ptp_set_funcs_e810(struct ice_pf *pf, struct ptp_clock_info *info)
+static void ice_ptp_set_funcs_e810(struct ice_pf *pf)
{
- info->enable = ice_ptp_gpio_enable_e810;
- ice_ptp_setup_pins_e810(pf, info);
+ __le16 entries[ICE_AQC_NVM_SDP_AC_MAX_SIZE];
+ struct ice_ptp_pin_desc *desc = NULL;
+ struct ice_ptp *ptp = &pf->ptp;
+ unsigned int num_entries;
+ int err;
+
+ err = ice_ptp_read_sdp_ac(&pf->hw, entries, &num_entries);
+ if (err) {
+ /* SDP section does not exist in NVM or is corrupted */
+ if (ice_is_feature_supported(pf, ICE_F_SMA_CTRL)) {
+ ptp->ice_pin_desc = ice_pin_desc_dpll;
+ ptp->info.n_pins = ARRAY_SIZE(ice_pin_desc_dpll);
+ } else {
+ pf->ptp.ice_pin_desc = ice_pin_desc_e810;
+ pf->ptp.info.n_pins = ARRAY_SIZE(ice_pin_desc_e810);
+ }
+ err = 0;
+ } else {
+ desc = devm_kcalloc(ice_pf_to_dev(pf), ICE_N_PINS_MAX,
+ sizeof(struct ice_ptp_pin_desc),
+ GFP_KERNEL);
+ if (!desc)
+ goto err;
+
+ err = ice_ptp_parse_sdp_entries(pf, entries, num_entries, desc);
+ if (err)
+ goto err;
+
+ ptp->ice_pin_desc = (const struct ice_ptp_pin_desc *)desc;
+ }
+
+ ptp->info.pin_config = ptp->pin_desc;
+ ice_ptp_setup_pin_cfg(pf);
+
+err:
+ if (err) {
+ devm_kfree(ice_pf_to_dev(pf), desc);
+ ice_ptp_disable_pins(pf);
+ }
}
/**
- * ice_ptp_set_funcs_e823 - Set specialized functions for E823 support
+ * ice_ptp_set_funcs_e830 - Set specialized functions for E830 support
* @pf: Board private structure
- * @info: PTP info to fill
*
- * Assign functions to the PTP capabiltiies structure for E823 devices.
+ * Assign functions to the PTP capabiltiies structure for E830 devices.
* Functions which operate across all device families should be set directly
- * in ice_ptp_set_caps. Only add functions here which are distinct for e823
+ * in ice_ptp_set_caps. Only add functions here which are distinct for E830
* devices.
*/
-static void
-ice_ptp_set_funcs_e823(struct ice_pf *pf, struct ptp_clock_info *info)
+static void ice_ptp_set_funcs_e830(struct ice_pf *pf)
{
- ice_ptp_set_funcs_e82x(pf, info);
+#ifdef CONFIG_ICE_HWTS
+ if (pcie_ptm_enabled(pf->pdev) && boot_cpu_has(X86_FEATURE_ART))
+ pf->ptp.info.getcrosststamp = ice_ptp_getcrosststamp;
- info->enable = ice_ptp_gpio_enable_e823;
- ice_ptp_setup_pins_e823(pf, info);
+#endif /* CONFIG_ICE_HWTS */
+ /* Rest of the config is the same as base E810 */
+ pf->ptp.ice_pin_desc = ice_pin_desc_e810;
+ pf->ptp.info.n_pins = ARRAY_SIZE(ice_pin_desc_e810);
+ ice_ptp_setup_pin_cfg(pf);
}
/**
@@ -2562,13 +2556,30 @@ static void ice_ptp_set_caps(struct ice_pf *pf)
info->adjfine = ice_ptp_adjfine;
info->gettimex64 = ice_ptp_gettimex64;
info->settime64 = ice_ptp_settime64;
-
- if (ice_is_e810(&pf->hw))
- ice_ptp_set_funcs_e810(pf, info);
- else if (ice_is_e823(&pf->hw))
- ice_ptp_set_funcs_e823(pf, info);
- else
- ice_ptp_set_funcs_e82x(pf, info);
+ info->n_per_out = GLTSYN_TGT_H_IDX_MAX;
+ info->n_ext_ts = GLTSYN_EVNT_H_IDX_MAX;
+ info->enable = ice_ptp_gpio_enable;
+ info->verify = ice_verify_pin;
+
+ info->supported_extts_flags = PTP_RISING_EDGE |
+ PTP_FALLING_EDGE |
+ PTP_STRICT_FLAGS;
+ info->supported_perout_flags = PTP_PEROUT_PHASE;
+
+ switch (pf->hw.mac_type) {
+ case ICE_MAC_E810:
+ ice_ptp_set_funcs_e810(pf);
+ return;
+ case ICE_MAC_E830:
+ ice_ptp_set_funcs_e830(pf);
+ return;
+ case ICE_MAC_GENERIC:
+ case ICE_MAC_GENERIC_3K_E825:
+ ice_ptp_set_funcs_e82x(pf);
+ return;
+ default:
+ return;
+ }
}
/**
@@ -2679,6 +2690,68 @@ enum ice_tx_tstamp_work ice_ptp_process_ts(struct ice_pf *pf)
}
/**
+ * ice_ptp_ts_irq - Process the PTP Tx timestamps in IRQ context
+ * @pf: Board private structure
+ *
+ * Return: IRQ_WAKE_THREAD if Tx timestamp read has to be handled in the bottom
+ * half of the interrupt and IRQ_HANDLED otherwise.
+ */
+irqreturn_t ice_ptp_ts_irq(struct ice_pf *pf)
+{
+ struct ice_hw *hw = &pf->hw;
+
+ switch (hw->mac_type) {
+ case ICE_MAC_E810:
+ /* E810 capable of low latency timestamping with interrupt can
+ * request a single timestamp in the top half and wait for
+ * a second LL TS interrupt from the FW when it's ready.
+ */
+ if (hw->dev_caps.ts_dev_info.ts_ll_int_read) {
+ struct ice_ptp_tx *tx = &pf->ptp.port.tx;
+ u8 idx, last;
+
+ if (!ice_pf_state_is_nominal(pf))
+ return IRQ_HANDLED;
+
+ spin_lock(&tx->lock);
+ if (tx->init) {
+ last = tx->last_ll_ts_idx_read + 1;
+ idx = find_next_bit_wrap(tx->in_use, tx->len,
+ last);
+ if (idx != tx->len)
+ ice_ptp_req_tx_single_tstamp(tx, idx);
+ }
+ spin_unlock(&tx->lock);
+
+ return IRQ_HANDLED;
+ }
+ fallthrough; /* non-LL_TS E810 */
+ case ICE_MAC_GENERIC:
+ case ICE_MAC_GENERIC_3K_E825:
+ /* All other devices process timestamps in the bottom half due
+ * to sleeping or polling.
+ */
+ if (!ice_ptp_pf_handles_tx_interrupt(pf))
+ return IRQ_HANDLED;
+
+ set_bit(ICE_MISC_THREAD_TX_TSTAMP, pf->misc_thread);
+ return IRQ_WAKE_THREAD;
+ case ICE_MAC_E830:
+ /* E830 can read timestamps in the top half using rd32() */
+ if (ice_ptp_process_ts(pf) == ICE_TX_TSTAMP_WORK_PENDING) {
+ /* Process outstanding Tx timestamps. If there
+ * is more work, re-arm the interrupt to trigger again.
+ */
+ wr32(hw, PFINT_OICR, PFINT_OICR_TSYN_TX_M);
+ ice_flush(hw);
+ }
+ return IRQ_HANDLED;
+ default:
+ return IRQ_HANDLED;
+ }
+}
+
+/**
* ice_ptp_maybe_trigger_tx_interrupt - Trigger Tx timstamp interrupt
* @pf: Board private structure
*
@@ -2698,7 +2771,7 @@ static void ice_ptp_maybe_trigger_tx_interrupt(struct ice_pf *pf)
bool trigger_oicr = false;
unsigned int i;
- if (ice_is_e810(hw))
+ if (!pf->ptp.port.tx.has_ready_bitmap)
return;
if (!ice_pf_src_tmr_owned(pf))
@@ -2745,6 +2818,32 @@ static void ice_ptp_periodic_work(struct kthread_work *work)
}
/**
+ * ice_ptp_prepare_rebuild_sec - Prepare second NAC for PTP reset or rebuild
+ * @pf: Board private structure
+ * @rebuild: rebuild if true, prepare if false
+ * @reset_type: the reset type being performed
+ */
+static void ice_ptp_prepare_rebuild_sec(struct ice_pf *pf, bool rebuild,
+ enum ice_reset_req reset_type)
+{
+ struct list_head *entry;
+
+ list_for_each(entry, &pf->adapter->ports.ports) {
+ struct ice_ptp_port *port = list_entry(entry,
+ struct ice_ptp_port,
+ list_node);
+ struct ice_pf *peer_pf = ptp_port_to_pf(port);
+
+ if (!ice_is_primary(&peer_pf->hw)) {
+ if (rebuild)
+ ice_ptp_rebuild(peer_pf, reset_type);
+ else
+ ice_ptp_prepare_for_reset(peer_pf, reset_type);
+ }
+ }
+}
+
+/**
* ice_ptp_prepare_for_reset - Prepare PTP for reset
* @pf: Board private structure
* @reset_type: the reset type being performed
@@ -2752,6 +2851,7 @@ static void ice_ptp_periodic_work(struct kthread_work *work)
void ice_ptp_prepare_for_reset(struct ice_pf *pf, enum ice_reset_req reset_type)
{
struct ice_ptp *ptp = &pf->ptp;
+ struct ice_hw *hw = &pf->hw;
u8 src_tmr;
if (ptp->state != ICE_PTP_READY)
@@ -2767,10 +2867,13 @@ void ice_ptp_prepare_for_reset(struct ice_pf *pf, enum ice_reset_req reset_type)
if (reset_type == ICE_RESET_PFR)
return;
+ if (ice_pf_src_tmr_owned(pf) && hw->mac_type == ICE_MAC_GENERIC_3K_E825)
+ ice_ptp_prepare_rebuild_sec(pf, false, reset_type);
+
ice_ptp_release_tx_tracker(pf, &pf->ptp.port.tx);
/* Disable periodic outputs */
- ice_ptp_disable_all_clkout(pf);
+ ice_ptp_disable_all_perout(pf);
src_tmr = ice_get_ptp_src_clock_index(&pf->hw);
@@ -2800,6 +2903,10 @@ static int ice_ptp_rebuild_owner(struct ice_pf *pf)
if (err)
return err;
+ err = ice_tspll_init(hw);
+ if (err)
+ return err;
+
/* Acquire the global hardware lock */
if (!ice_ptp_lock(hw)) {
err = -EBUSY;
@@ -2808,10 +2915,8 @@ static int ice_ptp_rebuild_owner(struct ice_pf *pf)
/* Write the increment time value to PHY and LAN */
err = ice_ptp_write_incval(hw, ice_base_incval(pf));
- if (err) {
- ice_ptp_unlock(hw);
- return err;
- }
+ if (err)
+ goto err_unlock;
/* Write the initial Time value to PHY and LAN using the cached PHC
* time before the reset and time difference between stopping and
@@ -2824,10 +2929,8 @@ static int ice_ptp_rebuild_owner(struct ice_pf *pf)
ts = ktime_to_timespec64(ktime_get_real());
}
err = ice_ptp_write_init(pf, &ts);
- if (err) {
- ice_ptp_unlock(hw);
- return err;
- }
+ if (err)
+ goto err_unlock;
/* Release the global hardware lock */
ice_ptp_unlock(hw);
@@ -2837,20 +2940,22 @@ static int ice_ptp_rebuild_owner(struct ice_pf *pf)
*/
ice_ptp_flush_all_tx_tracker(pf);
- if (!ice_is_e810(hw)) {
- /* Enable quad interrupts */
- err = ice_ptp_cfg_phy_interrupt(pf, true, 1);
- if (err)
- return err;
+ /* Enable quad interrupts */
+ err = ice_ptp_cfg_phy_interrupt(pf, true, 1);
+ if (err)
+ return err;
- ice_ptp_restart_all_phy(pf);
- }
+ ice_ptp_restart_all_phy(pf);
/* Re-enable all periodic outputs and external timestamp events */
- ice_ptp_enable_all_clkout(pf);
+ ice_ptp_enable_all_perout(pf);
ice_ptp_enable_all_extts(pf);
return 0;
+
+err_unlock:
+ ice_ptp_unlock(hw);
+ return err;
}
/**
@@ -2890,187 +2995,43 @@ err:
dev_err(ice_pf_to_dev(pf), "PTP reset failed %d\n", err);
}
-/**
- * ice_ptp_aux_dev_to_aux_pf - Get auxiliary PF handle for the auxiliary device
- * @aux_dev: auxiliary device to get the auxiliary PF for
- */
-static struct ice_pf *
-ice_ptp_aux_dev_to_aux_pf(struct auxiliary_device *aux_dev)
-{
- struct ice_ptp_port *aux_port;
- struct ice_ptp *aux_ptp;
-
- aux_port = container_of(aux_dev, struct ice_ptp_port, aux_dev);
- aux_ptp = container_of(aux_port, struct ice_ptp, port);
-
- return container_of(aux_ptp, struct ice_pf, ptp);
-}
-
-/**
- * ice_ptp_aux_dev_to_owner_pf - Get PF handle for the auxiliary device
- * @aux_dev: auxiliary device to get the PF for
- */
-static struct ice_pf *
-ice_ptp_aux_dev_to_owner_pf(struct auxiliary_device *aux_dev)
-{
- struct ice_ptp_port_owner *ports_owner;
- struct auxiliary_driver *aux_drv;
- struct ice_ptp *owner_ptp;
-
- if (!aux_dev->dev.driver)
- return NULL;
-
- aux_drv = to_auxiliary_drv(aux_dev->dev.driver);
- ports_owner = container_of(aux_drv, struct ice_ptp_port_owner,
- aux_driver);
- owner_ptp = container_of(ports_owner, struct ice_ptp, ports_owner);
- return container_of(owner_ptp, struct ice_pf, ptp);
-}
-
-/**
- * ice_ptp_auxbus_probe - Probe auxiliary devices
- * @aux_dev: PF's auxiliary device
- * @id: Auxiliary device ID
- */
-static int ice_ptp_auxbus_probe(struct auxiliary_device *aux_dev,
- const struct auxiliary_device_id *id)
+static int ice_ptp_setup_adapter(struct ice_pf *pf)
{
- struct ice_pf *owner_pf = ice_ptp_aux_dev_to_owner_pf(aux_dev);
- struct ice_pf *aux_pf = ice_ptp_aux_dev_to_aux_pf(aux_dev);
-
- if (WARN_ON(!owner_pf))
- return -ENODEV;
+ if (!ice_pf_src_tmr_owned(pf) || !ice_is_primary(&pf->hw))
+ return -EPERM;
- INIT_LIST_HEAD(&aux_pf->ptp.port.list_member);
- mutex_lock(&owner_pf->ptp.ports_owner.lock);
- list_add(&aux_pf->ptp.port.list_member,
- &owner_pf->ptp.ports_owner.ports);
- mutex_unlock(&owner_pf->ptp.ports_owner.lock);
+ pf->adapter->ctrl_pf = pf;
return 0;
}
-/**
- * ice_ptp_auxbus_remove - Remove auxiliary devices from the bus
- * @aux_dev: PF's auxiliary device
- */
-static void ice_ptp_auxbus_remove(struct auxiliary_device *aux_dev)
+static int ice_ptp_setup_pf(struct ice_pf *pf)
{
- struct ice_pf *owner_pf = ice_ptp_aux_dev_to_owner_pf(aux_dev);
- struct ice_pf *aux_pf = ice_ptp_aux_dev_to_aux_pf(aux_dev);
+ struct ice_ptp *ctrl_ptp = ice_get_ctrl_ptp(pf);
+ struct ice_ptp *ptp = &pf->ptp;
- mutex_lock(&owner_pf->ptp.ports_owner.lock);
- list_del(&aux_pf->ptp.port.list_member);
- mutex_unlock(&owner_pf->ptp.ports_owner.lock);
-}
+ if (WARN_ON(!ctrl_ptp) || pf->hw.mac_type == ICE_MAC_UNKNOWN)
+ return -ENODEV;
-/**
- * ice_ptp_auxbus_shutdown
- * @aux_dev: PF's auxiliary device
- */
-static void ice_ptp_auxbus_shutdown(struct auxiliary_device *aux_dev)
-{
- /* Doing nothing here, but handle to auxbus driver must be satisfied */
-}
+ INIT_LIST_HEAD(&ptp->port.list_node);
+ mutex_lock(&pf->adapter->ports.lock);
-/**
- * ice_ptp_auxbus_suspend
- * @aux_dev: PF's auxiliary device
- * @state: power management state indicator
- */
-static int
-ice_ptp_auxbus_suspend(struct auxiliary_device *aux_dev, pm_message_t state)
-{
- /* Doing nothing here, but handle to auxbus driver must be satisfied */
- return 0;
-}
+ list_add(&ptp->port.list_node,
+ &pf->adapter->ports.ports);
+ mutex_unlock(&pf->adapter->ports.lock);
-/**
- * ice_ptp_auxbus_resume
- * @aux_dev: PF's auxiliary device
- */
-static int ice_ptp_auxbus_resume(struct auxiliary_device *aux_dev)
-{
- /* Doing nothing here, but handle to auxbus driver must be satisfied */
return 0;
}
-/**
- * ice_ptp_auxbus_create_id_table - Create auxiliary device ID table
- * @pf: Board private structure
- * @name: auxiliary bus driver name
- */
-static struct auxiliary_device_id *
-ice_ptp_auxbus_create_id_table(struct ice_pf *pf, const char *name)
-{
- struct auxiliary_device_id *ids;
-
- /* Second id left empty to terminate the array */
- ids = devm_kcalloc(ice_pf_to_dev(pf), 2,
- sizeof(struct auxiliary_device_id), GFP_KERNEL);
- if (!ids)
- return NULL;
-
- snprintf(ids[0].name, sizeof(ids[0].name), "ice.%s", name);
-
- return ids;
-}
-
-/**
- * ice_ptp_register_auxbus_driver - Register PTP auxiliary bus driver
- * @pf: Board private structure
- */
-static int ice_ptp_register_auxbus_driver(struct ice_pf *pf)
+static void ice_ptp_cleanup_pf(struct ice_pf *pf)
{
- struct auxiliary_driver *aux_driver;
- struct ice_ptp *ptp;
- struct device *dev;
- char *name;
- int err;
-
- ptp = &pf->ptp;
- dev = ice_pf_to_dev(pf);
- aux_driver = &ptp->ports_owner.aux_driver;
- INIT_LIST_HEAD(&ptp->ports_owner.ports);
- mutex_init(&ptp->ports_owner.lock);
- name = devm_kasprintf(dev, GFP_KERNEL, "ptp_aux_dev_%u_%u_clk%u",
- pf->pdev->bus->number, PCI_SLOT(pf->pdev->devfn),
- ice_get_ptp_src_clock_index(&pf->hw));
- if (!name)
- return -ENOMEM;
-
- aux_driver->name = name;
- aux_driver->shutdown = ice_ptp_auxbus_shutdown;
- aux_driver->suspend = ice_ptp_auxbus_suspend;
- aux_driver->remove = ice_ptp_auxbus_remove;
- aux_driver->resume = ice_ptp_auxbus_resume;
- aux_driver->probe = ice_ptp_auxbus_probe;
- aux_driver->id_table = ice_ptp_auxbus_create_id_table(pf, name);
- if (!aux_driver->id_table)
- return -ENOMEM;
+ struct ice_ptp *ptp = &pf->ptp;
- err = auxiliary_driver_register(aux_driver);
- if (err) {
- devm_kfree(dev, aux_driver->id_table);
- dev_err(dev, "Failed registering aux_driver, name <%s>\n",
- name);
+ if (pf->hw.mac_type != ICE_MAC_UNKNOWN) {
+ mutex_lock(&pf->adapter->ports.lock);
+ list_del(&ptp->port.list_node);
+ mutex_unlock(&pf->adapter->ports.lock);
}
-
- return err;
-}
-
-/**
- * ice_ptp_unregister_auxbus_driver - Unregister PTP auxiliary bus driver
- * @pf: Board private structure
- */
-static void ice_ptp_unregister_auxbus_driver(struct ice_pf *pf)
-{
- struct auxiliary_driver *aux_driver = &pf->ptp.ports_owner.aux_driver;
-
- auxiliary_driver_unregister(aux_driver);
- devm_kfree(ice_pf_to_dev(pf), aux_driver->id_table);
-
- mutex_destroy(&pf->ptp.ports_owner.lock);
}
/**
@@ -3082,15 +3043,12 @@ static void ice_ptp_unregister_auxbus_driver(struct ice_pf *pf)
*/
int ice_ptp_clock_index(struct ice_pf *pf)
{
- struct auxiliary_device *aux_dev;
- struct ice_pf *owner_pf;
+ struct ice_ptp *ctrl_ptp = ice_get_ctrl_ptp(pf);
struct ptp_clock *clock;
- aux_dev = &pf->ptp.port.aux_dev;
- owner_pf = ice_ptp_aux_dev_to_owner_pf(aux_dev);
- if (!owner_pf)
+ if (!ctrl_ptp)
return -1;
- clock = owner_pf->ptp.clock;
+ clock = ctrl_ptp->clock;
return clock ? ptp_clock_index(clock) : -1;
}
@@ -3116,6 +3074,13 @@ static int ice_ptp_init_owner(struct ice_pf *pf)
return err;
}
+ err = ice_tspll_init(hw);
+ if (err) {
+ dev_err(ice_pf_to_dev(pf), "Failed to initialize CGU, status %d\n",
+ err);
+ return err;
+ }
+
/* Acquire the global hardware lock */
if (!ice_ptp_lock(hw)) {
err = -EBUSY;
@@ -3124,18 +3089,14 @@ static int ice_ptp_init_owner(struct ice_pf *pf)
/* Write the increment time value to PHY and LAN */
err = ice_ptp_write_incval(hw, ice_base_incval(pf));
- if (err) {
- ice_ptp_unlock(hw);
- goto err_exit;
- }
+ if (err)
+ goto err_unlock;
ts = ktime_to_timespec64(ktime_get_real());
/* Write the initial Time value to PHY and LAN */
err = ice_ptp_write_init(pf, &ts);
- if (err) {
- ice_ptp_unlock(hw);
- goto err_exit;
- }
+ if (err)
+ goto err_unlock;
/* Release the global hardware lock */
ice_ptp_unlock(hw);
@@ -3150,19 +3111,15 @@ static int ice_ptp_init_owner(struct ice_pf *pf)
if (err)
goto err_clk;
- err = ice_ptp_register_auxbus_driver(pf);
- if (err) {
- dev_err(ice_pf_to_dev(pf), "Failed to register PTP auxbus driver");
- goto err_aux;
- }
-
return 0;
-err_aux:
- ptp_clock_unregister(pf->ptp.clock);
err_clk:
pf->ptp.clock = NULL;
err_exit:
return err;
+
+err_unlock:
+ ice_ptp_unlock(hw);
+ return err;
}
/**
@@ -3180,7 +3137,7 @@ static int ice_ptp_init_work(struct ice_pf *pf, struct ice_ptp *ptp)
/* Allocate a kworker for handling work required for the ports
* connected to the PTP hardware clock.
*/
- kworker = kthread_create_worker(0, "ice-ptp-%s",
+ kworker = kthread_run_worker(0, "ice-ptp-%s",
dev_name(ice_pf_to_dev(pf)));
if (IS_ERR(kworker))
return PTR_ERR(kworker);
@@ -3197,6 +3154,8 @@ static int ice_ptp_init_work(struct ice_pf *pf, struct ice_ptp *ptp)
* ice_ptp_init_port - Initialize PTP port structure
* @pf: Board private structure
* @ptp_port: PTP port structure
+ *
+ * Return: 0 on success, -ENODEV on invalid MAC type, -ENOMEM on failed alloc.
*/
static int ice_ptp_init_port(struct ice_pf *pf, struct ice_ptp_port *ptp_port)
{
@@ -3204,16 +3163,14 @@ static int ice_ptp_init_port(struct ice_pf *pf, struct ice_ptp_port *ptp_port)
mutex_init(&ptp_port->ps_lock);
- switch (hw->ptp.phy_model) {
- case ICE_PHY_ETH56G:
- return ice_ptp_init_tx_eth56g(pf, &ptp_port->tx,
- ptp_port->port_num);
- case ICE_PHY_E810:
- return ice_ptp_init_tx_e810(pf, &ptp_port->tx);
- case ICE_PHY_E82X:
+ switch (hw->mac_type) {
+ case ICE_MAC_E810:
+ case ICE_MAC_E830:
+ case ICE_MAC_GENERIC_3K_E825:
+ return ice_ptp_init_tx(pf, &ptp_port->tx, ptp_port->port_num);
+ case ICE_MAC_GENERIC:
kthread_init_delayed_work(&ptp_port->ov_work,
ice_ptp_wait_for_offsets);
-
return ice_ptp_init_tx_e82x(pf, &ptp_port->tx,
ptp_port->port_num);
default:
@@ -3222,76 +3179,6 @@ static int ice_ptp_init_port(struct ice_pf *pf, struct ice_ptp_port *ptp_port)
}
/**
- * ice_ptp_release_auxbus_device
- * @dev: device that utilizes the auxbus
- */
-static void ice_ptp_release_auxbus_device(struct device *dev)
-{
- /* Doing nothing here, but handle to auxbux device must be satisfied */
-}
-
-/**
- * ice_ptp_create_auxbus_device - Create PTP auxiliary bus device
- * @pf: Board private structure
- */
-static int ice_ptp_create_auxbus_device(struct ice_pf *pf)
-{
- struct auxiliary_device *aux_dev;
- struct ice_ptp *ptp;
- struct device *dev;
- char *name;
- int err;
- u32 id;
-
- ptp = &pf->ptp;
- id = ptp->port.port_num;
- dev = ice_pf_to_dev(pf);
-
- aux_dev = &ptp->port.aux_dev;
-
- name = devm_kasprintf(dev, GFP_KERNEL, "ptp_aux_dev_%u_%u_clk%u",
- pf->pdev->bus->number, PCI_SLOT(pf->pdev->devfn),
- ice_get_ptp_src_clock_index(&pf->hw));
- if (!name)
- return -ENOMEM;
-
- aux_dev->name = name;
- aux_dev->id = id;
- aux_dev->dev.release = ice_ptp_release_auxbus_device;
- aux_dev->dev.parent = dev;
-
- err = auxiliary_device_init(aux_dev);
- if (err)
- goto aux_err;
-
- err = auxiliary_device_add(aux_dev);
- if (err) {
- auxiliary_device_uninit(aux_dev);
- goto aux_err;
- }
-
- return 0;
-aux_err:
- dev_err(dev, "Failed to create PTP auxiliary bus device <%s>\n", name);
- devm_kfree(dev, name);
- return err;
-}
-
-/**
- * ice_ptp_remove_auxbus_device - Remove PTP auxiliary bus device
- * @pf: Board private structure
- */
-static void ice_ptp_remove_auxbus_device(struct ice_pf *pf)
-{
- struct auxiliary_device *aux_dev = &pf->ptp.port.aux_dev;
-
- auxiliary_device_delete(aux_dev);
- auxiliary_device_uninit(aux_dev);
-
- memset(aux_dev, 0, sizeof(*aux_dev));
-}
-
-/**
* ice_ptp_init_tx_interrupt_mode - Initialize device Tx interrupt mode
* @pf: Board private structure
*
@@ -3302,8 +3189,8 @@ static void ice_ptp_remove_auxbus_device(struct ice_pf *pf)
*/
static void ice_ptp_init_tx_interrupt_mode(struct ice_pf *pf)
{
- switch (pf->hw.ptp.phy_model) {
- case ICE_PHY_E82X:
+ switch (pf->hw.mac_type) {
+ case ICE_MAC_GENERIC:
/* E822 based PHY has the clock owner process the interrupt
* for all ports.
*/
@@ -3338,6 +3225,12 @@ void ice_ptp_init(struct ice_pf *pf)
ptp->state = ICE_PTP_INITIALIZING;
+ if (hw->lane_num < 0) {
+ err = hw->lane_num;
+ goto err_exit;
+ }
+ ptp->port.port_num = hw->lane_num;
+
ice_ptp_init_hw(hw);
ice_ptp_init_tx_interrupt_mode(pf);
@@ -3345,19 +3238,22 @@ void ice_ptp_init(struct ice_pf *pf)
/* If this function owns the clock hardware, it must allocate and
* configure the PTP clock device to represent it.
*/
- if (ice_pf_src_tmr_owned(pf)) {
+ if (ice_pf_src_tmr_owned(pf) && ice_is_primary(hw)) {
+ err = ice_ptp_setup_adapter(pf);
+ if (err)
+ goto err_exit;
err = ice_ptp_init_owner(pf);
if (err)
- goto err;
+ goto err_exit;
}
- ptp->port.port_num = hw->pf_id;
- if (ice_is_e825c(hw) && hw->ptp.is_2x50g_muxed_topo)
- ptp->port.port_num = hw->pf_id * 2;
+ err = ice_ptp_setup_pf(pf);
+ if (err)
+ goto err_exit;
err = ice_ptp_init_port(pf, &ptp->port);
if (err)
- goto err;
+ goto err_clean_pf;
/* Start the PHY timestamping block */
ice_ptp_reset_phy_timestamping(pf);
@@ -3365,26 +3261,28 @@ void ice_ptp_init(struct ice_pf *pf)
/* Configure initial Tx interrupt settings */
ice_ptp_cfg_tx_interrupt(pf);
- err = ice_ptp_create_auxbus_device(pf);
- if (err)
- goto err;
-
ptp->state = ICE_PTP_READY;
err = ice_ptp_init_work(pf, ptp);
if (err)
- goto err;
+ goto err_exit;
dev_info(ice_pf_to_dev(pf), "PTP init successful\n");
return;
-err:
+err_clean_pf:
+ mutex_destroy(&ptp->port.ps_lock);
+ ice_ptp_cleanup_pf(pf);
+err_exit:
/* If we registered a PTP clock, release it */
if (pf->ptp.clock) {
ptp_clock_unregister(ptp->clock);
pf->ptp.clock = NULL;
}
- ptp->state = ICE_PTP_ERROR;
+ /* Keep ICE_PTP_UNINIT state to avoid ambiguity at driver unload
+ * and to avoid duplicated resources release.
+ */
+ ptp->state = ICE_PTP_UNINIT;
dev_err(ice_pf_to_dev(pf), "PTP failed %d\n", err);
}
@@ -3397,15 +3295,25 @@ err:
*/
void ice_ptp_release(struct ice_pf *pf)
{
- if (pf->ptp.state != ICE_PTP_READY)
+ if (pf->ptp.state == ICE_PTP_UNINIT)
return;
+ if (pf->ptp.state != ICE_PTP_READY) {
+ mutex_destroy(&pf->ptp.port.ps_lock);
+ ice_ptp_cleanup_pf(pf);
+ if (pf->ptp.clock) {
+ ptp_clock_unregister(pf->ptp.clock);
+ pf->ptp.clock = NULL;
+ }
+ return;
+ }
+
pf->ptp.state = ICE_PTP_UNINIT;
/* Disable timestamping for both Tx and Rx */
ice_ptp_disable_timestamp_mode(pf);
- ice_ptp_remove_auxbus_device(pf);
+ ice_ptp_cleanup_pf(pf);
ice_ptp_release_tx_tracker(pf, &pf->ptp.port.tx);
@@ -3420,14 +3328,11 @@ void ice_ptp_release(struct ice_pf *pf)
pf->ptp.kworker = NULL;
}
- if (ice_pf_src_tmr_owned(pf))
- ice_ptp_unregister_auxbus_driver(pf);
-
if (!pf->ptp.clock)
return;
/* Disable periodic outputs */
- ice_ptp_disable_all_clkout(pf);
+ ice_ptp_disable_all_perout(pf);
ptp_clock_unregister(pf->ptp.clock);
pf->ptp.clock = NULL;