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[PATCH] ibm_emac: fix graceful stop timeout handling
This patch fixes graceful stop timeout handling in PPC4xx EMAC driver. Currently, when we stop TX/RX channels we just do some number of loops without relying on actual spent time. This has finally bitten me on one of our systems (heavy network traffic during start up, RX channel is stopped several times to configure multicast list). Graceful channel stop can take up to 1 frame time, so I've added device specific timeout counter which depends on current link speed and calls to udelay() to really wait required amount of time before giving up. Signed-off-by: Eugene Surovegin <ebs@ebshome.net> Signed-off-by: Jeff Garzik <jgarzik@pobox.com>
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@ -65,7 +65,7 @@
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*/
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#define DRV_NAME "emac"
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#define DRV_VERSION "3.53"
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#define DRV_VERSION "3.54"
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#define DRV_DESC "PPC 4xx OCP EMAC driver"
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MODULE_DESCRIPTION(DRV_DESC);
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@ -158,6 +158,14 @@ static inline void emac_report_timeout_error(struct ocp_enet_private *dev,
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#define PHY_POLL_LINK_ON HZ
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#define PHY_POLL_LINK_OFF (HZ / 5)
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/* Graceful stop timeouts in us.
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* We should allow up to 1 frame time (full-duplex, ignoring collisions)
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*/
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#define STOP_TIMEOUT_10 1230
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#define STOP_TIMEOUT_100 124
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#define STOP_TIMEOUT_1000 13
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#define STOP_TIMEOUT_1000_JUMBO 73
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/* Please, keep in sync with struct ibm_emac_stats/ibm_emac_error_stats */
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static const char emac_stats_keys[EMAC_ETHTOOL_STATS_COUNT][ETH_GSTRING_LEN] = {
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"rx_packets", "rx_bytes", "tx_packets", "tx_bytes", "rx_packets_csum",
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@ -222,10 +230,12 @@ static void emac_tx_disable(struct ocp_enet_private *dev)
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r = in_be32(&p->mr0);
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if (r & EMAC_MR0_TXE) {
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int n = 300;
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int n = dev->stop_timeout;
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out_be32(&p->mr0, r & ~EMAC_MR0_TXE);
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while (!(in_be32(&p->mr0) & EMAC_MR0_TXI) && n)
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while (!(in_be32(&p->mr0) & EMAC_MR0_TXI) && n) {
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udelay(1);
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--n;
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}
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if (unlikely(!n))
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emac_report_timeout_error(dev, "TX disable timeout");
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}
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@ -248,9 +258,11 @@ static void emac_rx_enable(struct ocp_enet_private *dev)
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if (!(r & EMAC_MR0_RXE)) {
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if (unlikely(!(r & EMAC_MR0_RXI))) {
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/* Wait if previous async disable is still in progress */
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int n = 100;
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while (!(r = in_be32(&p->mr0) & EMAC_MR0_RXI) && n)
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int n = dev->stop_timeout;
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while (!(r = in_be32(&p->mr0) & EMAC_MR0_RXI) && n) {
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udelay(1);
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--n;
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}
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if (unlikely(!n))
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emac_report_timeout_error(dev,
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"RX disable timeout");
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@ -273,10 +285,12 @@ static void emac_rx_disable(struct ocp_enet_private *dev)
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r = in_be32(&p->mr0);
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if (r & EMAC_MR0_RXE) {
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int n = 300;
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int n = dev->stop_timeout;
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out_be32(&p->mr0, r & ~EMAC_MR0_RXE);
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while (!(in_be32(&p->mr0) & EMAC_MR0_RXI) && n)
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while (!(in_be32(&p->mr0) & EMAC_MR0_RXI) && n) {
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udelay(1);
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--n;
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}
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if (unlikely(!n))
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emac_report_timeout_error(dev, "RX disable timeout");
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}
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@ -395,6 +409,7 @@ static int emac_configure(struct ocp_enet_private *dev)
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r = EMAC_MR1_BASE(emac_opb_mhz()) | EMAC_MR1_VLE | EMAC_MR1_IST;
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if (dev->phy.duplex == DUPLEX_FULL)
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r |= EMAC_MR1_FDE;
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dev->stop_timeout = STOP_TIMEOUT_10;
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switch (dev->phy.speed) {
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case SPEED_1000:
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if (emac_phy_gpcs(dev->phy.mode)) {
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@ -410,11 +425,15 @@ static int emac_configure(struct ocp_enet_private *dev)
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r |= EMAC_MR1_RFS_16K;
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gige = 1;
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if (dev->ndev->mtu > ETH_DATA_LEN)
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if (dev->ndev->mtu > ETH_DATA_LEN) {
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r |= EMAC_MR1_JPSM;
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dev->stop_timeout = STOP_TIMEOUT_1000_JUMBO;
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} else
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dev->stop_timeout = STOP_TIMEOUT_1000;
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break;
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case SPEED_100:
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r |= EMAC_MR1_MF_100;
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dev->stop_timeout = STOP_TIMEOUT_100;
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/* Fall through */
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default:
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r |= EMAC_MR1_RFS_4K;
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@ -2048,6 +2067,7 @@ static int __init emac_probe(struct ocp_device *ocpdev)
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dev->phy.duplex = DUPLEX_FULL;
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dev->phy.autoneg = AUTONEG_DISABLE;
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dev->phy.pause = dev->phy.asym_pause = 0;
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dev->stop_timeout = STOP_TIMEOUT_100;
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init_timer(&dev->link_timer);
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dev->link_timer.function = emac_link_timer;
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dev->link_timer.data = (unsigned long)dev;
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@ -189,6 +189,8 @@ struct ocp_enet_private {
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struct timer_list link_timer;
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int reset_failed;
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int stop_timeout; /* in us */
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struct ibm_emac_error_stats estats;
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struct net_device_stats nstats;
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