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authorBruce Allan <bruce.w.allan@intel.com>2012-07-14 04:23:58 +0000
committerJeff Kirsher <jeffrey.t.kirsher@intel.com>2012-07-14 00:45:45 -0700
commita52359b56c29f55aaadf1dab80a0e1043b982676 (patch)
tree2bdd0e87270710fb8e200495fef8f04324620848 /drivers
parentd0efa8f23a644f7cb7d1f8e78dd9a223efa412a3 (diff)
downloadlwn-a52359b56c29f55aaadf1dab80a0e1043b982676.tar.gz
lwn-a52359b56c29f55aaadf1dab80a0e1043b982676.zip
e1000e: fix test for PHY being accessible on 82577/8/9 and I217
Occasionally, the PHY can be initially inaccessible when the first read of a PHY register, e.g. PHY_ID1, happens (signified by the returned value 0xFFFF) but subsequent accesses of the PHY work as expected. Add a retry counter similar to how it is done in the generic e1000_get_phy_id(). Also, when the PHY is completely inaccessible (i.e. when subsequent reads of the PHY_IDx registers returns all F's) and the MDIO access mode must be set to slow before attempting to read the PHY ID again, the functions that do these latter two actions expect the SW/FW/HW semaphore is not already set so the semaphore must be released before and re-acquired after calling them otherwise there is an unnecessarily inordinate amount of delay during device initialization. Reported-by: Heikki Krogerus <heikki.krogerus@linux.intel.com> Signed-off-by: Bruce Allan <bruce.w.allan@intel.com> Tested-by: Heikki Krogerus <heikki.krogerus@linux.intel.com> Tested-by: Aaron Brown <aaron.f.brown@intel.com> Signed-off-by: Jeff Kirsher <jeffrey.t.kirsher@intel.com>
Diffstat (limited to 'drivers')
-rw-r--r--drivers/net/ethernet/intel/e1000e/ich8lan.c42
1 files changed, 32 insertions, 10 deletions
diff --git a/drivers/net/ethernet/intel/e1000e/ich8lan.c b/drivers/net/ethernet/intel/e1000e/ich8lan.c
index 238ab2f8a5e7..e3a7b07df629 100644
--- a/drivers/net/ethernet/intel/e1000e/ich8lan.c
+++ b/drivers/net/ethernet/intel/e1000e/ich8lan.c
@@ -325,24 +325,46 @@ static inline void __ew32flash(struct e1000_hw *hw, unsigned long reg, u32 val)
**/
static bool e1000_phy_is_accessible_pchlan(struct e1000_hw *hw)
{
- u16 phy_reg;
- u32 phy_id;
+ u16 phy_reg = 0;
+ u32 phy_id = 0;
+ s32 ret_val;
+ u16 retry_count;
+
+ for (retry_count = 0; retry_count < 2; retry_count++) {
+ ret_val = e1e_rphy_locked(hw, PHY_ID1, &phy_reg);
+ if (ret_val || (phy_reg == 0xFFFF))
+ continue;
+ phy_id = (u32)(phy_reg << 16);
- e1e_rphy_locked(hw, PHY_ID1, &phy_reg);
- phy_id = (u32)(phy_reg << 16);
- e1e_rphy_locked(hw, PHY_ID2, &phy_reg);
- phy_id |= (u32)(phy_reg & PHY_REVISION_MASK);
+ ret_val = e1e_rphy_locked(hw, PHY_ID2, &phy_reg);
+ if (ret_val || (phy_reg == 0xFFFF)) {
+ phy_id = 0;
+ continue;
+ }
+ phy_id |= (u32)(phy_reg & PHY_REVISION_MASK);
+ break;
+ }
if (hw->phy.id) {
if (hw->phy.id == phy_id)
return true;
- } else {
- if ((phy_id != 0) && (phy_id != PHY_REVISION_MASK))
- hw->phy.id = phy_id;
+ } else if (phy_id) {
+ hw->phy.id = phy_id;
+ hw->phy.revision = (u32)(phy_reg & ~PHY_REVISION_MASK);
return true;
}
- return false;
+ /*
+ * In case the PHY needs to be in mdio slow mode,
+ * set slow mode and try to get the PHY id again.
+ */
+ hw->phy.ops.release(hw);
+ ret_val = e1000_set_mdio_slow_mode_hv(hw);
+ if (!ret_val)
+ ret_val = e1000e_get_phy_id(hw);
+ hw->phy.ops.acquire(hw);
+
+ return !ret_val;
}
/**