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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
synced 2024-12-05 08:16:49 +07:00
e1000e: EEE capability advertisement not set/disabled as required
Devices supported by the driver which support EEE (currently 82579, I217 and I218) are advertising EEE capabilities during auto-negotiation even when EEE has been disabled. In addition to not acting as expected, this also caused the EEE status reported by 'ethtool --show-eee' to be wrong when two of these devices are connected back-to-back and EEE is disabled on one. In addition to fixing this issue, the ability for the user to specify which speeds (100 or 1000 full-duplex) to advertise EEE support has been added. Signed-off-by: Bruce Allan <bruce.w.allan@intel.com> Tested-by: Jeff Pieper <jeffrey.e.pieper@intel.com> Signed-off-by: Jeff Kirsher <jeffrey.t.kirsher@intel.com>
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ea8179a728
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d495bcb84d
@ -46,6 +46,7 @@
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#include <linux/ptp_clock_kernel.h>
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#include <linux/ptp_classify.h>
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#include <linux/mii.h>
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#include <linux/mdio.h>
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#include "hw.h"
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struct e1000_info;
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@ -350,6 +351,8 @@ struct e1000_adapter {
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struct timecounter tc;
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struct ptp_clock *ptp_clock;
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struct ptp_clock_info ptp_clock_info;
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u16 eee_advert;
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};
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struct e1000_info {
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@ -35,7 +35,6 @@
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#include <linux/slab.h>
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#include <linux/delay.h>
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#include <linux/vmalloc.h>
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#include <linux/mdio.h>
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#include <linux/pm_runtime.h>
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#include "e1000.h"
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@ -2076,23 +2075,20 @@ static int e1000e_get_eee(struct net_device *netdev, struct ethtool_eee *edata)
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{
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struct e1000_adapter *adapter = netdev_priv(netdev);
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struct e1000_hw *hw = &adapter->hw;
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u16 cap_addr, adv_addr, lpa_addr, pcs_stat_addr, phy_data, lpi_ctrl;
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u32 status, ret_val;
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u16 cap_addr, lpa_addr, pcs_stat_addr, phy_data;
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u32 ret_val;
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if (!(adapter->flags & FLAG_IS_ICH) ||
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!(adapter->flags2 & FLAG2_HAS_EEE))
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if (!(adapter->flags2 & FLAG2_HAS_EEE))
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return -EOPNOTSUPP;
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switch (hw->phy.type) {
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case e1000_phy_82579:
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cap_addr = I82579_EEE_CAPABILITY;
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adv_addr = I82579_EEE_ADVERTISEMENT;
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lpa_addr = I82579_EEE_LP_ABILITY;
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pcs_stat_addr = I82579_EEE_PCS_STATUS;
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break;
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case e1000_phy_i217:
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cap_addr = I217_EEE_CAPABILITY;
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adv_addr = I217_EEE_ADVERTISEMENT;
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lpa_addr = I217_EEE_LP_ABILITY;
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pcs_stat_addr = I217_EEE_PCS_STATUS;
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break;
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@ -2111,10 +2107,7 @@ static int e1000e_get_eee(struct net_device *netdev, struct ethtool_eee *edata)
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edata->supported = mmd_eee_cap_to_ethtool_sup_t(phy_data);
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/* EEE Advertised */
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ret_val = e1000_read_emi_reg_locked(hw, adv_addr, &phy_data);
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if (ret_val)
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goto release;
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edata->advertised = mmd_eee_adv_to_ethtool_adv_t(phy_data);
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edata->advertised = mmd_eee_adv_to_ethtool_adv_t(adapter->eee_advert);
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/* EEE Link Partner Advertised */
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ret_val = e1000_read_emi_reg_locked(hw, lpa_addr, &phy_data);
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@ -2132,25 +2125,11 @@ static int e1000e_get_eee(struct net_device *netdev, struct ethtool_eee *edata)
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if (ret_val)
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return -ENODATA;
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e1e_rphy(hw, I82579_LPI_CTRL, &lpi_ctrl);
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status = er32(STATUS);
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/* Result of the EEE auto negotiation - there is no register that
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* has the status of the EEE negotiation so do a best-guess based
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* on whether both Tx and Rx LPI indications have been received or
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* base it on the link speed, the EEE advertised speeds on both ends
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* and the speeds on which EEE is enabled locally.
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* on whether Tx or Rx LPI indications have been received.
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*/
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if (((phy_data & E1000_EEE_TX_LPI_RCVD) &&
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(phy_data & E1000_EEE_RX_LPI_RCVD)) ||
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((status & E1000_STATUS_SPEED_100) &&
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(edata->advertised & ADVERTISED_100baseT_Full) &&
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(edata->lp_advertised & ADVERTISED_100baseT_Full) &&
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(lpi_ctrl & I82579_LPI_CTRL_100_ENABLE)) ||
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((status & E1000_STATUS_SPEED_1000) &&
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(edata->advertised & ADVERTISED_1000baseT_Full) &&
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(edata->lp_advertised & ADVERTISED_1000baseT_Full) &&
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(lpi_ctrl & I82579_LPI_CTRL_1000_ENABLE)))
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if (phy_data & (E1000_EEE_TX_LPI_RCVD | E1000_EEE_RX_LPI_RCVD))
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edata->eee_active = true;
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edata->eee_enabled = !hw->dev_spec.ich8lan.eee_disable;
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@ -2167,19 +2146,10 @@ static int e1000e_set_eee(struct net_device *netdev, struct ethtool_eee *edata)
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struct ethtool_eee eee_curr;
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s32 ret_val;
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if (!(adapter->flags & FLAG_IS_ICH) ||
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!(adapter->flags2 & FLAG2_HAS_EEE))
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return -EOPNOTSUPP;
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ret_val = e1000e_get_eee(netdev, &eee_curr);
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if (ret_val)
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return ret_val;
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if (eee_curr.advertised != edata->advertised) {
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e_err("Setting EEE advertisement is not supported\n");
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return -EINVAL;
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}
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if (eee_curr.tx_lpi_enabled != edata->tx_lpi_enabled) {
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e_err("Setting EEE tx-lpi is not supported\n");
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return -EINVAL;
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@ -2190,16 +2160,21 @@ static int e1000e_set_eee(struct net_device *netdev, struct ethtool_eee *edata)
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return -EINVAL;
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}
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if (hw->dev_spec.ich8lan.eee_disable != !edata->eee_enabled) {
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hw->dev_spec.ich8lan.eee_disable = !edata->eee_enabled;
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/* reset the link */
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if (netif_running(netdev))
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e1000e_reinit_locked(adapter);
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else
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e1000e_reset(adapter);
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if (edata->advertised & ~(ADVERTISE_100_FULL | ADVERTISE_1000_FULL)) {
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e_err("EEE advertisement supports only 100TX and/or 1000T full-duplex\n");
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return -EINVAL;
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}
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adapter->eee_advert = ethtool_adv_to_mmd_eee_adv_t(edata->advertised);
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hw->dev_spec.ich8lan.eee_disable = !edata->eee_enabled;
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/* reset the link */
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if (netif_running(netdev))
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e1000e_reinit_locked(adapter);
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else
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e1000e_reset(adapter);
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return 0;
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}
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@ -695,7 +695,7 @@ s32 e1000_read_emi_reg_locked(struct e1000_hw *hw, u16 addr, u16 *data)
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*
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* Assumes the SW/FW/HW Semaphore is already acquired.
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**/
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static s32 e1000_write_emi_reg_locked(struct e1000_hw *hw, u16 addr, u16 data)
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s32 e1000_write_emi_reg_locked(struct e1000_hw *hw, u16 addr, u16 data)
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{
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return __e1000_access_emi_reg_locked(hw, addr, &data, false);
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}
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@ -712,11 +712,22 @@ static s32 e1000_set_eee_pchlan(struct e1000_hw *hw)
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{
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struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan;
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s32 ret_val;
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u16 lpi_ctrl;
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u16 lpa, pcs_status, adv, adv_addr, lpi_ctrl, data;
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if ((hw->phy.type != e1000_phy_82579) &&
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(hw->phy.type != e1000_phy_i217))
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switch (hw->phy.type) {
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case e1000_phy_82579:
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lpa = I82579_EEE_LP_ABILITY;
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pcs_status = I82579_EEE_PCS_STATUS;
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adv_addr = I82579_EEE_ADVERTISEMENT;
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break;
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case e1000_phy_i217:
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lpa = I217_EEE_LP_ABILITY;
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pcs_status = I217_EEE_PCS_STATUS;
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adv_addr = I217_EEE_ADVERTISEMENT;
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break;
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default:
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return 0;
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}
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ret_val = hw->phy.ops.acquire(hw);
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if (ret_val)
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@ -731,34 +742,24 @@ static s32 e1000_set_eee_pchlan(struct e1000_hw *hw)
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/* Enable EEE if not disabled by user */
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if (!dev_spec->eee_disable) {
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u16 lpa, pcs_status, data;
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/* Save off link partner's EEE ability */
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switch (hw->phy.type) {
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case e1000_phy_82579:
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lpa = I82579_EEE_LP_ABILITY;
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pcs_status = I82579_EEE_PCS_STATUS;
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break;
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case e1000_phy_i217:
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lpa = I217_EEE_LP_ABILITY;
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pcs_status = I217_EEE_PCS_STATUS;
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break;
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default:
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ret_val = -E1000_ERR_PHY;
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goto release;
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}
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ret_val = e1000_read_emi_reg_locked(hw, lpa,
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&dev_spec->eee_lp_ability);
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if (ret_val)
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goto release;
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/* Read EEE advertisement */
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ret_val = e1000_read_emi_reg_locked(hw, adv_addr, &adv);
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if (ret_val)
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goto release;
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/* Enable EEE only for speeds in which the link partner is
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* EEE capable.
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* EEE capable and for which we advertise EEE.
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*/
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if (dev_spec->eee_lp_ability & I82579_EEE_1000_SUPPORTED)
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if (adv & dev_spec->eee_lp_ability & I82579_EEE_1000_SUPPORTED)
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lpi_ctrl |= I82579_LPI_CTRL_1000_ENABLE;
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if (dev_spec->eee_lp_ability & I82579_EEE_100_SUPPORTED) {
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if (adv & dev_spec->eee_lp_ability & I82579_EEE_100_SUPPORTED) {
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e1e_rphy_locked(hw, MII_LPA, &data);
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if (data & LPA_100FULL)
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lpi_ctrl |= I82579_LPI_CTRL_100_ENABLE;
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@ -770,13 +771,13 @@ static s32 e1000_set_eee_pchlan(struct e1000_hw *hw)
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dev_spec->eee_lp_ability &=
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~I82579_EEE_100_SUPPORTED;
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}
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/* R/Clr IEEE MMD 3.1 bits 11:10 - Tx/Rx LPI Received */
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ret_val = e1000_read_emi_reg_locked(hw, pcs_status, &data);
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if (ret_val)
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goto release;
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}
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/* R/Clr IEEE MMD 3.1 bits 11:10 - Tx/Rx LPI Received */
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ret_val = e1000_read_emi_reg_locked(hw, pcs_status, &data);
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if (ret_val)
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goto release;
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ret_val = e1e_wphy_locked(hw, I82579_LPI_CTRL, lpi_ctrl);
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release:
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hw->phy.ops.release(hw);
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@ -212,7 +212,7 @@
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#define I82577_MSE_THRESHOLD 0x0887 /* 82577 Mean Square Error Threshold */
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#define I82579_MSE_LINK_DOWN 0x2411 /* MSE count before dropping link */
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#define I82579_RX_CONFIG 0x3412 /* Receive configuration */
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#define I82579_EEE_PCS_STATUS 0x182D /* IEEE MMD Register 3.1 >> 8 */
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#define I82579_EEE_PCS_STATUS 0x182E /* IEEE MMD Register 3.1 >> 8 */
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#define I82579_EEE_CAPABILITY 0x0410 /* IEEE MMD Register 3.20 */
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#define I82579_EEE_ADVERTISEMENT 0x040E /* IEEE MMD Register 7.60 */
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#define I82579_EEE_LP_ABILITY 0x040F /* IEEE MMD Register 7.61 */
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@ -268,4 +268,5 @@ s32 e1000_configure_k1_ich8lan(struct e1000_hw *hw, bool k1_enable);
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void e1000_copy_rx_addrs_to_phy_ich8lan(struct e1000_hw *hw);
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s32 e1000_lv_jumbo_workaround_ich8lan(struct e1000_hw *hw, bool enable);
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s32 e1000_read_emi_reg_locked(struct e1000_hw *hw, u16 addr, u16 *data);
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s32 e1000_write_emi_reg_locked(struct e1000_hw *hw, u16 addr, u16 data);
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#endif /* _E1000E_ICH8LAN_H_ */
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@ -3875,6 +3875,38 @@ void e1000e_reset(struct e1000_adapter *adapter)
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/* initialize systim and reset the ns time counter */
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e1000e_config_hwtstamp(adapter);
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/* Set EEE advertisement as appropriate */
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if (adapter->flags2 & FLAG2_HAS_EEE) {
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s32 ret_val;
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u16 adv_addr;
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switch (hw->phy.type) {
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case e1000_phy_82579:
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adv_addr = I82579_EEE_ADVERTISEMENT;
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break;
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case e1000_phy_i217:
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adv_addr = I217_EEE_ADVERTISEMENT;
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break;
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default:
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dev_err(&adapter->pdev->dev,
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"Invalid PHY type setting EEE advertisement\n");
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return;
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}
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ret_val = hw->phy.ops.acquire(hw);
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if (ret_val) {
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dev_err(&adapter->pdev->dev,
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"EEE advertisement - unable to acquire PHY\n");
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return;
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}
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e1000_write_emi_reg_locked(hw, adv_addr,
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hw->dev_spec.ich8lan.eee_disable ?
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0 : adapter->eee_advert);
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hw->phy.ops.release(hw);
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}
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if (!netif_running(adapter->netdev) &&
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!test_bit(__E1000_TESTING, &adapter->state)) {
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e1000_power_down_phy(adapter);
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@ -6540,6 +6572,10 @@ static int e1000_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
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goto err_flashmap;
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}
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/* Set default EEE advertisement */
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if (adapter->flags2 & FLAG2_HAS_EEE)
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adapter->eee_advert = MDIO_EEE_100TX | MDIO_EEE_1000T;
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/* construct the net_device struct */
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netdev->netdev_ops = &e1000e_netdev_ops;
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e1000e_set_ethtool_ops(netdev);
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