18cfa0ad2SJack F Vogel /****************************************************************************** 27282444bSPedro F. Giffuni SPDX-License-Identifier: BSD-3-Clause 38cfa0ad2SJack F Vogel 4*702cac6cSKevin Bowling Copyright (c) 2001-2020, Intel Corporation 58cfa0ad2SJack F Vogel All rights reserved. 68cfa0ad2SJack F Vogel 78cfa0ad2SJack F Vogel Redistribution and use in source and binary forms, with or without 88cfa0ad2SJack F Vogel modification, are permitted provided that the following conditions are met: 98cfa0ad2SJack F Vogel 108cfa0ad2SJack F Vogel 1. Redistributions of source code must retain the above copyright notice, 118cfa0ad2SJack F Vogel this list of conditions and the following disclaimer. 128cfa0ad2SJack F Vogel 138cfa0ad2SJack F Vogel 2. Redistributions in binary form must reproduce the above copyright 148cfa0ad2SJack F Vogel notice, this list of conditions and the following disclaimer in the 158cfa0ad2SJack F Vogel documentation and/or other materials provided with the distribution. 168cfa0ad2SJack F Vogel 178cfa0ad2SJack F Vogel 3. Neither the name of the Intel Corporation nor the names of its 188cfa0ad2SJack F Vogel contributors may be used to endorse or promote products derived from 198cfa0ad2SJack F Vogel this software without specific prior written permission. 208cfa0ad2SJack F Vogel 218cfa0ad2SJack F Vogel THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 228cfa0ad2SJack F Vogel AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 238cfa0ad2SJack F Vogel IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 248cfa0ad2SJack F Vogel ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE 258cfa0ad2SJack F Vogel LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 268cfa0ad2SJack F Vogel CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 278cfa0ad2SJack F Vogel SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 288cfa0ad2SJack F Vogel INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 298cfa0ad2SJack F Vogel CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 308cfa0ad2SJack F Vogel ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 318cfa0ad2SJack F Vogel POSSIBILITY OF SUCH DAMAGE. 328cfa0ad2SJack F Vogel 338cfa0ad2SJack F Vogel ******************************************************************************/ 348cfa0ad2SJack F Vogel /*$FreeBSD$*/ 358cfa0ad2SJack F Vogel 366ab6bfe3SJack F Vogel /* 82562G 10/100 Network Connection 37daf9197cSJack F Vogel * 82562G-2 10/100 Network Connection 38daf9197cSJack F Vogel * 82562GT 10/100 Network Connection 39daf9197cSJack F Vogel * 82562GT-2 10/100 Network Connection 40daf9197cSJack F Vogel * 82562V 10/100 Network Connection 41daf9197cSJack F Vogel * 82562V-2 10/100 Network Connection 42daf9197cSJack F Vogel * 82566DC-2 Gigabit Network Connection 43daf9197cSJack F Vogel * 82566DC Gigabit Network Connection 44daf9197cSJack F Vogel * 82566DM-2 Gigabit Network Connection 45daf9197cSJack F Vogel * 82566DM Gigabit Network Connection 46daf9197cSJack F Vogel * 82566MC Gigabit Network Connection 47daf9197cSJack F Vogel * 82566MM Gigabit Network Connection 48daf9197cSJack F Vogel * 82567LM Gigabit Network Connection 49daf9197cSJack F Vogel * 82567LF Gigabit Network Connection 50daf9197cSJack F Vogel * 82567V Gigabit Network Connection 51daf9197cSJack F Vogel * 82567LM-2 Gigabit Network Connection 52daf9197cSJack F Vogel * 82567LF-2 Gigabit Network Connection 53daf9197cSJack F Vogel * 82567V-2 Gigabit Network Connection 54daf9197cSJack F Vogel * 82567LF-3 Gigabit Network Connection 55daf9197cSJack F Vogel * 82567LM-3 Gigabit Network Connection 56daf9197cSJack F Vogel * 82567LM-4 Gigabit Network Connection 579d81738fSJack F Vogel * 82577LM Gigabit Network Connection 589d81738fSJack F Vogel * 82577LC Gigabit Network Connection 599d81738fSJack F Vogel * 82578DM Gigabit Network Connection 609d81738fSJack F Vogel * 82578DC Gigabit Network Connection 617d9119bdSJack F Vogel * 82579LM Gigabit Network Connection 627d9119bdSJack F Vogel * 82579V Gigabit Network Connection 637609433eSJack F Vogel * Ethernet Connection I217-LM 647609433eSJack F Vogel * Ethernet Connection I217-V 657609433eSJack F Vogel * Ethernet Connection I218-V 667609433eSJack F Vogel * Ethernet Connection I218-LM 678cc64f1eSJack F Vogel * Ethernet Connection (2) I218-LM 688cc64f1eSJack F Vogel * Ethernet Connection (2) I218-V 698cc64f1eSJack F Vogel * Ethernet Connection (3) I218-LM 708cc64f1eSJack F Vogel * Ethernet Connection (3) I218-V 718cfa0ad2SJack F Vogel */ 728cfa0ad2SJack F Vogel 738cfa0ad2SJack F Vogel #include "e1000_api.h" 748cfa0ad2SJack F Vogel 758cfa0ad2SJack F Vogel static s32 e1000_acquire_swflag_ich8lan(struct e1000_hw *hw); 768cfa0ad2SJack F Vogel static void e1000_release_swflag_ich8lan(struct e1000_hw *hw); 774edd8523SJack F Vogel static s32 e1000_acquire_nvm_ich8lan(struct e1000_hw *hw); 784edd8523SJack F Vogel static void e1000_release_nvm_ich8lan(struct e1000_hw *hw); 798cfa0ad2SJack F Vogel static bool e1000_check_mng_mode_ich8lan(struct e1000_hw *hw); 807d9119bdSJack F Vogel static bool e1000_check_mng_mode_pchlan(struct e1000_hw *hw); 818cc64f1eSJack F Vogel static int e1000_rar_set_pch2lan(struct e1000_hw *hw, u8 *addr, u32 index); 828cc64f1eSJack F Vogel static int e1000_rar_set_pch_lpt(struct e1000_hw *hw, u8 *addr, u32 index); 837609433eSJack F Vogel static s32 e1000_sw_lcd_config_ich8lan(struct e1000_hw *hw); 84730d3130SJack F Vogel static void e1000_update_mc_addr_list_pch2lan(struct e1000_hw *hw, 85730d3130SJack F Vogel u8 *mc_addr_list, 86730d3130SJack F Vogel u32 mc_addr_count); 878cfa0ad2SJack F Vogel static s32 e1000_check_reset_block_ich8lan(struct e1000_hw *hw); 888cfa0ad2SJack F Vogel static s32 e1000_phy_hw_reset_ich8lan(struct e1000_hw *hw); 894edd8523SJack F Vogel static s32 e1000_set_lplu_state_pchlan(struct e1000_hw *hw, bool active); 908cfa0ad2SJack F Vogel static s32 e1000_set_d0_lplu_state_ich8lan(struct e1000_hw *hw, 918cfa0ad2SJack F Vogel bool active); 928cfa0ad2SJack F Vogel static s32 e1000_set_d3_lplu_state_ich8lan(struct e1000_hw *hw, 938cfa0ad2SJack F Vogel bool active); 948cfa0ad2SJack F Vogel static s32 e1000_read_nvm_ich8lan(struct e1000_hw *hw, u16 offset, 958cfa0ad2SJack F Vogel u16 words, u16 *data); 96c80429ceSEric Joyner static s32 e1000_read_nvm_spt(struct e1000_hw *hw, u16 offset, u16 words, 97c80429ceSEric Joyner u16 *data); 988cfa0ad2SJack F Vogel static s32 e1000_write_nvm_ich8lan(struct e1000_hw *hw, u16 offset, 998cfa0ad2SJack F Vogel u16 words, u16 *data); 1008cfa0ad2SJack F Vogel static s32 e1000_validate_nvm_checksum_ich8lan(struct e1000_hw *hw); 1018cfa0ad2SJack F Vogel static s32 e1000_update_nvm_checksum_ich8lan(struct e1000_hw *hw); 102c80429ceSEric Joyner static s32 e1000_update_nvm_checksum_spt(struct e1000_hw *hw); 1038cfa0ad2SJack F Vogel static s32 e1000_valid_led_default_ich8lan(struct e1000_hw *hw, 1048cfa0ad2SJack F Vogel u16 *data); 1059d81738fSJack F Vogel static s32 e1000_id_led_init_pchlan(struct e1000_hw *hw); 1068cfa0ad2SJack F Vogel static s32 e1000_get_bus_info_ich8lan(struct e1000_hw *hw); 1078cfa0ad2SJack F Vogel static s32 e1000_reset_hw_ich8lan(struct e1000_hw *hw); 1088cfa0ad2SJack F Vogel static s32 e1000_init_hw_ich8lan(struct e1000_hw *hw); 1098cfa0ad2SJack F Vogel static s32 e1000_setup_link_ich8lan(struct e1000_hw *hw); 1108cfa0ad2SJack F Vogel static s32 e1000_setup_copper_link_ich8lan(struct e1000_hw *hw); 1116ab6bfe3SJack F Vogel static s32 e1000_setup_copper_link_pch_lpt(struct e1000_hw *hw); 1128cfa0ad2SJack F Vogel static s32 e1000_get_link_up_info_ich8lan(struct e1000_hw *hw, 1138cfa0ad2SJack F Vogel u16 *speed, u16 *duplex); 1148cfa0ad2SJack F Vogel static s32 e1000_cleanup_led_ich8lan(struct e1000_hw *hw); 1158cfa0ad2SJack F Vogel static s32 e1000_led_on_ich8lan(struct e1000_hw *hw); 1168cfa0ad2SJack F Vogel static s32 e1000_led_off_ich8lan(struct e1000_hw *hw); 1174edd8523SJack F Vogel static s32 e1000_k1_gig_workaround_hv(struct e1000_hw *hw, bool link); 1189d81738fSJack F Vogel static s32 e1000_setup_led_pchlan(struct e1000_hw *hw); 1199d81738fSJack F Vogel static s32 e1000_cleanup_led_pchlan(struct e1000_hw *hw); 1209d81738fSJack F Vogel static s32 e1000_led_on_pchlan(struct e1000_hw *hw); 1219d81738fSJack F Vogel static s32 e1000_led_off_pchlan(struct e1000_hw *hw); 1228cfa0ad2SJack F Vogel static void e1000_clear_hw_cntrs_ich8lan(struct e1000_hw *hw); 1238cfa0ad2SJack F Vogel static s32 e1000_erase_flash_bank_ich8lan(struct e1000_hw *hw, u32 bank); 1248cfa0ad2SJack F Vogel static void e1000_initialize_hw_bits_ich8lan(struct e1000_hw *hw); 1258cfa0ad2SJack F Vogel static s32 e1000_kmrn_lock_loss_workaround_ich8lan(struct e1000_hw *hw); 1268cfa0ad2SJack F Vogel static s32 e1000_read_flash_byte_ich8lan(struct e1000_hw *hw, 1278cfa0ad2SJack F Vogel u32 offset, u8 *data); 1288cfa0ad2SJack F Vogel static s32 e1000_read_flash_data_ich8lan(struct e1000_hw *hw, u32 offset, 1298cfa0ad2SJack F Vogel u8 size, u16 *data); 130c80429ceSEric Joyner static s32 e1000_read_flash_data32_ich8lan(struct e1000_hw *hw, u32 offset, 131c80429ceSEric Joyner u32 *data); 132c80429ceSEric Joyner static s32 e1000_read_flash_dword_ich8lan(struct e1000_hw *hw, 133c80429ceSEric Joyner u32 offset, u32 *data); 134c80429ceSEric Joyner static s32 e1000_write_flash_data32_ich8lan(struct e1000_hw *hw, 135c80429ceSEric Joyner u32 offset, u32 data); 136c80429ceSEric Joyner static s32 e1000_retry_write_flash_dword_ich8lan(struct e1000_hw *hw, 137c80429ceSEric Joyner u32 offset, u32 dword); 1388cfa0ad2SJack F Vogel static s32 e1000_read_flash_word_ich8lan(struct e1000_hw *hw, 1398cfa0ad2SJack F Vogel u32 offset, u16 *data); 1408cfa0ad2SJack F Vogel static s32 e1000_retry_write_flash_byte_ich8lan(struct e1000_hw *hw, 1418cfa0ad2SJack F Vogel u32 offset, u8 byte); 1428cfa0ad2SJack F Vogel static s32 e1000_get_cfg_done_ich8lan(struct e1000_hw *hw); 1438cfa0ad2SJack F Vogel static void e1000_power_down_phy_copper_ich8lan(struct e1000_hw *hw); 1444edd8523SJack F Vogel static s32 e1000_check_for_copper_link_ich8lan(struct e1000_hw *hw); 145a69ed8dfSJack F Vogel static s32 e1000_set_mdio_slow_mode_hv(struct e1000_hw *hw); 1467d9119bdSJack F Vogel static s32 e1000_k1_workaround_lv(struct e1000_hw *hw); 1477d9119bdSJack F Vogel static void e1000_gate_hw_phy_config_ich8lan(struct e1000_hw *hw, bool gate); 148e373323fSSean Bruno static s32 e1000_set_obff_timer_pch_lpt(struct e1000_hw *hw, u32 itr); 1498cfa0ad2SJack F Vogel 1508cfa0ad2SJack F Vogel /* ICH GbE Flash Hardware Sequencing Flash Status Register bit breakdown */ 1518cfa0ad2SJack F Vogel /* Offset 04h HSFSTS */ 1528cfa0ad2SJack F Vogel union ich8_hws_flash_status { 1538cfa0ad2SJack F Vogel struct ich8_hsfsts { 1548cfa0ad2SJack F Vogel u16 flcdone:1; /* bit 0 Flash Cycle Done */ 1558cfa0ad2SJack F Vogel u16 flcerr:1; /* bit 1 Flash Cycle Error */ 1568cfa0ad2SJack F Vogel u16 dael:1; /* bit 2 Direct Access error Log */ 1578cfa0ad2SJack F Vogel u16 berasesz:2; /* bit 4:3 Sector Erase Size */ 1588cfa0ad2SJack F Vogel u16 flcinprog:1; /* bit 5 flash cycle in Progress */ 1598cfa0ad2SJack F Vogel u16 reserved1:2; /* bit 13:6 Reserved */ 1608cfa0ad2SJack F Vogel u16 reserved2:6; /* bit 13:6 Reserved */ 1618cfa0ad2SJack F Vogel u16 fldesvalid:1; /* bit 14 Flash Descriptor Valid */ 1628cfa0ad2SJack F Vogel u16 flockdn:1; /* bit 15 Flash Config Lock-Down */ 1638cfa0ad2SJack F Vogel } hsf_status; 1648cfa0ad2SJack F Vogel u16 regval; 1658cfa0ad2SJack F Vogel }; 1668cfa0ad2SJack F Vogel 1678cfa0ad2SJack F Vogel /* ICH GbE Flash Hardware Sequencing Flash control Register bit breakdown */ 1688cfa0ad2SJack F Vogel /* Offset 06h FLCTL */ 1698cfa0ad2SJack F Vogel union ich8_hws_flash_ctrl { 1708cfa0ad2SJack F Vogel struct ich8_hsflctl { 1718cfa0ad2SJack F Vogel u16 flcgo:1; /* 0 Flash Cycle Go */ 1728cfa0ad2SJack F Vogel u16 flcycle:2; /* 2:1 Flash Cycle */ 1738cfa0ad2SJack F Vogel u16 reserved:5; /* 7:3 Reserved */ 1748cfa0ad2SJack F Vogel u16 fldbcount:2; /* 9:8 Flash Data Byte Count */ 1758cfa0ad2SJack F Vogel u16 flockdn:6; /* 15:10 Reserved */ 1768cfa0ad2SJack F Vogel } hsf_ctrl; 1778cfa0ad2SJack F Vogel u16 regval; 1788cfa0ad2SJack F Vogel }; 1798cfa0ad2SJack F Vogel 1808cfa0ad2SJack F Vogel /* ICH Flash Region Access Permissions */ 1818cfa0ad2SJack F Vogel union ich8_hws_flash_regacc { 1828cfa0ad2SJack F Vogel struct ich8_flracc { 1838cfa0ad2SJack F Vogel u32 grra:8; /* 0:7 GbE region Read Access */ 1848cfa0ad2SJack F Vogel u32 grwa:8; /* 8:15 GbE region Write Access */ 1858cfa0ad2SJack F Vogel u32 gmrag:8; /* 23:16 GbE Master Read Access Grant */ 1868cfa0ad2SJack F Vogel u32 gmwag:8; /* 31:24 GbE Master Write Access Grant */ 1878cfa0ad2SJack F Vogel } hsf_flregacc; 1888cfa0ad2SJack F Vogel u16 regval; 1898cfa0ad2SJack F Vogel }; 1908cfa0ad2SJack F Vogel 1916ab6bfe3SJack F Vogel /** 1926ab6bfe3SJack F Vogel * e1000_phy_is_accessible_pchlan - Check if able to access PHY registers 1936ab6bfe3SJack F Vogel * @hw: pointer to the HW structure 1946ab6bfe3SJack F Vogel * 1956ab6bfe3SJack F Vogel * Test access to the PHY registers by reading the PHY ID registers. If 1966ab6bfe3SJack F Vogel * the PHY ID is already known (e.g. resume path) compare it with known ID, 1976ab6bfe3SJack F Vogel * otherwise assume the read PHY ID is correct if it is valid. 1986ab6bfe3SJack F Vogel * 1996ab6bfe3SJack F Vogel * Assumes the sw/fw/hw semaphore is already acquired. 2006ab6bfe3SJack F Vogel **/ 2016ab6bfe3SJack F Vogel static bool e1000_phy_is_accessible_pchlan(struct e1000_hw *hw) 2024dab5c37SJack F Vogel { 2036ab6bfe3SJack F Vogel u16 phy_reg = 0; 2046ab6bfe3SJack F Vogel u32 phy_id = 0; 2057609433eSJack F Vogel s32 ret_val = 0; 2066ab6bfe3SJack F Vogel u16 retry_count; 2077609433eSJack F Vogel u32 mac_reg = 0; 2084dab5c37SJack F Vogel 2096ab6bfe3SJack F Vogel for (retry_count = 0; retry_count < 2; retry_count++) { 2106ab6bfe3SJack F Vogel ret_val = hw->phy.ops.read_reg_locked(hw, PHY_ID1, &phy_reg); 2116ab6bfe3SJack F Vogel if (ret_val || (phy_reg == 0xFFFF)) 2126ab6bfe3SJack F Vogel continue; 2136ab6bfe3SJack F Vogel phy_id = (u32)(phy_reg << 16); 2144dab5c37SJack F Vogel 2156ab6bfe3SJack F Vogel ret_val = hw->phy.ops.read_reg_locked(hw, PHY_ID2, &phy_reg); 2166ab6bfe3SJack F Vogel if (ret_val || (phy_reg == 0xFFFF)) { 2176ab6bfe3SJack F Vogel phy_id = 0; 2186ab6bfe3SJack F Vogel continue; 2196ab6bfe3SJack F Vogel } 2206ab6bfe3SJack F Vogel phy_id |= (u32)(phy_reg & PHY_REVISION_MASK); 2216ab6bfe3SJack F Vogel break; 2226ab6bfe3SJack F Vogel } 2236ab6bfe3SJack F Vogel 2246ab6bfe3SJack F Vogel if (hw->phy.id) { 2256ab6bfe3SJack F Vogel if (hw->phy.id == phy_id) 2267609433eSJack F Vogel goto out; 2276ab6bfe3SJack F Vogel } else if (phy_id) { 2286ab6bfe3SJack F Vogel hw->phy.id = phy_id; 2296ab6bfe3SJack F Vogel hw->phy.revision = (u32)(phy_reg & ~PHY_REVISION_MASK); 2307609433eSJack F Vogel goto out; 2316ab6bfe3SJack F Vogel } 2326ab6bfe3SJack F Vogel 2336ab6bfe3SJack F Vogel /* In case the PHY needs to be in mdio slow mode, 2346ab6bfe3SJack F Vogel * set slow mode and try to get the PHY id again. 2356ab6bfe3SJack F Vogel */ 2367609433eSJack F Vogel if (hw->mac.type < e1000_pch_lpt) { 2376ab6bfe3SJack F Vogel hw->phy.ops.release(hw); 2386ab6bfe3SJack F Vogel ret_val = e1000_set_mdio_slow_mode_hv(hw); 2396ab6bfe3SJack F Vogel if (!ret_val) 2406ab6bfe3SJack F Vogel ret_val = e1000_get_phy_id(hw); 2416ab6bfe3SJack F Vogel hw->phy.ops.acquire(hw); 2427609433eSJack F Vogel } 2436ab6bfe3SJack F Vogel 2447609433eSJack F Vogel if (ret_val) 2457609433eSJack F Vogel return FALSE; 2467609433eSJack F Vogel out: 247295df609SEric Joyner if (hw->mac.type >= e1000_pch_lpt) { 248c80429ceSEric Joyner /* Only unforce SMBus if ME is not active */ 249c80429ceSEric Joyner if (!(E1000_READ_REG(hw, E1000_FWSM) & 250c80429ceSEric Joyner E1000_ICH_FWSM_FW_VALID)) { 2517609433eSJack F Vogel /* Unforce SMBus mode in PHY */ 2527609433eSJack F Vogel hw->phy.ops.read_reg_locked(hw, CV_SMB_CTRL, &phy_reg); 2537609433eSJack F Vogel phy_reg &= ~CV_SMB_CTRL_FORCE_SMBUS; 2547609433eSJack F Vogel hw->phy.ops.write_reg_locked(hw, CV_SMB_CTRL, phy_reg); 2557609433eSJack F Vogel 2567609433eSJack F Vogel /* Unforce SMBus mode in MAC */ 2577609433eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_CTRL_EXT); 2587609433eSJack F Vogel mac_reg &= ~E1000_CTRL_EXT_FORCE_SMBUS; 2597609433eSJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL_EXT, mac_reg); 2607609433eSJack F Vogel } 261c80429ceSEric Joyner } 2627609433eSJack F Vogel 2637609433eSJack F Vogel return TRUE; 2647609433eSJack F Vogel } 2657609433eSJack F Vogel 2667609433eSJack F Vogel /** 2677609433eSJack F Vogel * e1000_toggle_lanphypc_pch_lpt - toggle the LANPHYPC pin value 2687609433eSJack F Vogel * @hw: pointer to the HW structure 2697609433eSJack F Vogel * 2707609433eSJack F Vogel * Toggling the LANPHYPC pin value fully power-cycles the PHY and is 2717609433eSJack F Vogel * used to reset the PHY to a quiescent state when necessary. 2727609433eSJack F Vogel **/ 2738cc64f1eSJack F Vogel static void e1000_toggle_lanphypc_pch_lpt(struct e1000_hw *hw) 2747609433eSJack F Vogel { 2757609433eSJack F Vogel u32 mac_reg; 2767609433eSJack F Vogel 2777609433eSJack F Vogel DEBUGFUNC("e1000_toggle_lanphypc_pch_lpt"); 2787609433eSJack F Vogel 2797609433eSJack F Vogel /* Set Phy Config Counter to 50msec */ 2807609433eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_FEXTNVM3); 2817609433eSJack F Vogel mac_reg &= ~E1000_FEXTNVM3_PHY_CFG_COUNTER_MASK; 2827609433eSJack F Vogel mac_reg |= E1000_FEXTNVM3_PHY_CFG_COUNTER_50MSEC; 2837609433eSJack F Vogel E1000_WRITE_REG(hw, E1000_FEXTNVM3, mac_reg); 2847609433eSJack F Vogel 2857609433eSJack F Vogel /* Toggle LANPHYPC Value bit */ 2867609433eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_CTRL); 2877609433eSJack F Vogel mac_reg |= E1000_CTRL_LANPHYPC_OVERRIDE; 2887609433eSJack F Vogel mac_reg &= ~E1000_CTRL_LANPHYPC_VALUE; 2897609433eSJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL, mac_reg); 2907609433eSJack F Vogel E1000_WRITE_FLUSH(hw); 291e760e292SSean Bruno msec_delay(1); 2927609433eSJack F Vogel mac_reg &= ~E1000_CTRL_LANPHYPC_OVERRIDE; 2937609433eSJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL, mac_reg); 2947609433eSJack F Vogel E1000_WRITE_FLUSH(hw); 2957609433eSJack F Vogel 2967609433eSJack F Vogel if (hw->mac.type < e1000_pch_lpt) { 2977609433eSJack F Vogel msec_delay(50); 2987609433eSJack F Vogel } else { 2997609433eSJack F Vogel u16 count = 20; 3007609433eSJack F Vogel 3017609433eSJack F Vogel do { 3027609433eSJack F Vogel msec_delay(5); 3037609433eSJack F Vogel } while (!(E1000_READ_REG(hw, E1000_CTRL_EXT) & 3047609433eSJack F Vogel E1000_CTRL_EXT_LPCD) && count--); 3057609433eSJack F Vogel 3067609433eSJack F Vogel msec_delay(30); 3077609433eSJack F Vogel } 3086ab6bfe3SJack F Vogel } 3096ab6bfe3SJack F Vogel 3106ab6bfe3SJack F Vogel /** 3116ab6bfe3SJack F Vogel * e1000_init_phy_workarounds_pchlan - PHY initialization workarounds 3126ab6bfe3SJack F Vogel * @hw: pointer to the HW structure 3136ab6bfe3SJack F Vogel * 3146ab6bfe3SJack F Vogel * Workarounds/flow necessary for PHY initialization during driver load 3156ab6bfe3SJack F Vogel * and resume paths. 3166ab6bfe3SJack F Vogel **/ 3176ab6bfe3SJack F Vogel static s32 e1000_init_phy_workarounds_pchlan(struct e1000_hw *hw) 3186ab6bfe3SJack F Vogel { 3196ab6bfe3SJack F Vogel u32 mac_reg, fwsm = E1000_READ_REG(hw, E1000_FWSM); 3206ab6bfe3SJack F Vogel s32 ret_val; 3216ab6bfe3SJack F Vogel 3226ab6bfe3SJack F Vogel DEBUGFUNC("e1000_init_phy_workarounds_pchlan"); 3236ab6bfe3SJack F Vogel 3246ab6bfe3SJack F Vogel /* Gate automatic PHY configuration by hardware on managed and 3256ab6bfe3SJack F Vogel * non-managed 82579 and newer adapters. 3266ab6bfe3SJack F Vogel */ 3276ab6bfe3SJack F Vogel e1000_gate_hw_phy_config_ich8lan(hw, TRUE); 3286ab6bfe3SJack F Vogel 3298cc64f1eSJack F Vogel /* It is not possible to be certain of the current state of ULP 3308cc64f1eSJack F Vogel * so forcibly disable it. 3318cc64f1eSJack F Vogel */ 3328cc64f1eSJack F Vogel hw->dev_spec.ich8lan.ulp_state = e1000_ulp_state_unknown; 3338cc64f1eSJack F Vogel e1000_disable_ulp_lpt_lp(hw, TRUE); 3348cc64f1eSJack F Vogel 3356ab6bfe3SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 3366ab6bfe3SJack F Vogel if (ret_val) { 3376ab6bfe3SJack F Vogel DEBUGOUT("Failed to initialize PHY flow\n"); 3386ab6bfe3SJack F Vogel goto out; 3396ab6bfe3SJack F Vogel } 3406ab6bfe3SJack F Vogel 3416ab6bfe3SJack F Vogel /* The MAC-PHY interconnect may be in SMBus mode. If the PHY is 3426ab6bfe3SJack F Vogel * inaccessible and resetting the PHY is not blocked, toggle the 3436ab6bfe3SJack F Vogel * LANPHYPC Value bit to force the interconnect to PCIe mode. 3446ab6bfe3SJack F Vogel */ 3456ab6bfe3SJack F Vogel switch (hw->mac.type) { 3466ab6bfe3SJack F Vogel case e1000_pch_lpt: 347c80429ceSEric Joyner case e1000_pch_spt: 3486fe4c0a0SSean Bruno case e1000_pch_cnp: 34959690eabSKevin Bowling case e1000_pch_tgp: 35059690eabSKevin Bowling case e1000_pch_adp: 35159690eabSKevin Bowling case e1000_pch_mtp: 3526ab6bfe3SJack F Vogel if (e1000_phy_is_accessible_pchlan(hw)) 3536ab6bfe3SJack F Vogel break; 3546ab6bfe3SJack F Vogel 3556ab6bfe3SJack F Vogel /* Before toggling LANPHYPC, see if PHY is accessible by 3566ab6bfe3SJack F Vogel * forcing MAC to SMBus mode first. 3576ab6bfe3SJack F Vogel */ 3586ab6bfe3SJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_CTRL_EXT); 3596ab6bfe3SJack F Vogel mac_reg |= E1000_CTRL_EXT_FORCE_SMBUS; 3606ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL_EXT, mac_reg); 3616ab6bfe3SJack F Vogel 3627609433eSJack F Vogel /* Wait 50 milliseconds for MAC to finish any retries 3637609433eSJack F Vogel * that it might be trying to perform from previous 3647609433eSJack F Vogel * attempts to acknowledge any phy read requests. 3657609433eSJack F Vogel */ 3667609433eSJack F Vogel msec_delay(50); 3677609433eSJack F Vogel 3686ab6bfe3SJack F Vogel /* fall-through */ 3696ab6bfe3SJack F Vogel case e1000_pch2lan: 3707609433eSJack F Vogel if (e1000_phy_is_accessible_pchlan(hw)) 3716ab6bfe3SJack F Vogel break; 3726ab6bfe3SJack F Vogel 3736ab6bfe3SJack F Vogel /* fall-through */ 3746ab6bfe3SJack F Vogel case e1000_pchlan: 3756ab6bfe3SJack F Vogel if ((hw->mac.type == e1000_pchlan) && 3766ab6bfe3SJack F Vogel (fwsm & E1000_ICH_FWSM_FW_VALID)) 3776ab6bfe3SJack F Vogel break; 3786ab6bfe3SJack F Vogel 3796ab6bfe3SJack F Vogel if (hw->phy.ops.check_reset_block(hw)) { 3806ab6bfe3SJack F Vogel DEBUGOUT("Required LANPHYPC toggle blocked by ME\n"); 3817609433eSJack F Vogel ret_val = -E1000_ERR_PHY; 3826ab6bfe3SJack F Vogel break; 3836ab6bfe3SJack F Vogel } 3846ab6bfe3SJack F Vogel 3857609433eSJack F Vogel /* Toggle LANPHYPC Value bit */ 3867609433eSJack F Vogel e1000_toggle_lanphypc_pch_lpt(hw); 3877609433eSJack F Vogel if (hw->mac.type >= e1000_pch_lpt) { 3887609433eSJack F Vogel if (e1000_phy_is_accessible_pchlan(hw)) 3897609433eSJack F Vogel break; 3906ab6bfe3SJack F Vogel 3916ab6bfe3SJack F Vogel /* Toggling LANPHYPC brings the PHY out of SMBus mode 3927609433eSJack F Vogel * so ensure that the MAC is also out of SMBus mode 3936ab6bfe3SJack F Vogel */ 3946ab6bfe3SJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_CTRL_EXT); 3956ab6bfe3SJack F Vogel mac_reg &= ~E1000_CTRL_EXT_FORCE_SMBUS; 3966ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL_EXT, mac_reg); 3976ab6bfe3SJack F Vogel 3987609433eSJack F Vogel if (e1000_phy_is_accessible_pchlan(hw)) 3997609433eSJack F Vogel break; 4007609433eSJack F Vogel 4017609433eSJack F Vogel ret_val = -E1000_ERR_PHY; 4026ab6bfe3SJack F Vogel } 4036ab6bfe3SJack F Vogel break; 4046ab6bfe3SJack F Vogel default: 4056ab6bfe3SJack F Vogel break; 4066ab6bfe3SJack F Vogel } 4076ab6bfe3SJack F Vogel 4086ab6bfe3SJack F Vogel hw->phy.ops.release(hw); 4097609433eSJack F Vogel if (!ret_val) { 4107609433eSJack F Vogel 4117609433eSJack F Vogel /* Check to see if able to reset PHY. Print error if not */ 4127609433eSJack F Vogel if (hw->phy.ops.check_reset_block(hw)) { 4137609433eSJack F Vogel ERROR_REPORT("Reset blocked by ME\n"); 4147609433eSJack F Vogel goto out; 4157609433eSJack F Vogel } 4166ab6bfe3SJack F Vogel 4176ab6bfe3SJack F Vogel /* Reset the PHY before any access to it. Doing so, ensures 4186ab6bfe3SJack F Vogel * that the PHY is in a known good state before we read/write 4196ab6bfe3SJack F Vogel * PHY registers. The generic reset is sufficient here, 4206ab6bfe3SJack F Vogel * because we haven't determined the PHY type yet. 4216ab6bfe3SJack F Vogel */ 4226ab6bfe3SJack F Vogel ret_val = e1000_phy_hw_reset_generic(hw); 4237609433eSJack F Vogel if (ret_val) 4247609433eSJack F Vogel goto out; 4257609433eSJack F Vogel 4267609433eSJack F Vogel /* On a successful reset, possibly need to wait for the PHY 4277609433eSJack F Vogel * to quiesce to an accessible state before returning control 4287609433eSJack F Vogel * to the calling function. If the PHY does not quiesce, then 4297609433eSJack F Vogel * return E1000E_BLK_PHY_RESET, as this is the condition that 4307609433eSJack F Vogel * the PHY is in. 4317609433eSJack F Vogel */ 4327609433eSJack F Vogel ret_val = hw->phy.ops.check_reset_block(hw); 4337609433eSJack F Vogel if (ret_val) 4347609433eSJack F Vogel ERROR_REPORT("ME blocked access to PHY after reset\n"); 4357609433eSJack F Vogel } 4366ab6bfe3SJack F Vogel 4376ab6bfe3SJack F Vogel out: 4386ab6bfe3SJack F Vogel /* Ungate automatic PHY configuration on non-managed 82579 */ 4396ab6bfe3SJack F Vogel if ((hw->mac.type == e1000_pch2lan) && 4406ab6bfe3SJack F Vogel !(fwsm & E1000_ICH_FWSM_FW_VALID)) { 4416ab6bfe3SJack F Vogel msec_delay(10); 4426ab6bfe3SJack F Vogel e1000_gate_hw_phy_config_ich8lan(hw, FALSE); 4436ab6bfe3SJack F Vogel } 4446ab6bfe3SJack F Vogel 4456ab6bfe3SJack F Vogel return ret_val; 4464dab5c37SJack F Vogel } 4474dab5c37SJack F Vogel 4488cfa0ad2SJack F Vogel /** 4499d81738fSJack F Vogel * e1000_init_phy_params_pchlan - Initialize PHY function pointers 4509d81738fSJack F Vogel * @hw: pointer to the HW structure 4519d81738fSJack F Vogel * 4529d81738fSJack F Vogel * Initialize family-specific PHY parameters and function pointers. 4539d81738fSJack F Vogel **/ 4549d81738fSJack F Vogel static s32 e1000_init_phy_params_pchlan(struct e1000_hw *hw) 4559d81738fSJack F Vogel { 4569d81738fSJack F Vogel struct e1000_phy_info *phy = &hw->phy; 4576ab6bfe3SJack F Vogel s32 ret_val; 4589d81738fSJack F Vogel 4599d81738fSJack F Vogel DEBUGFUNC("e1000_init_phy_params_pchlan"); 4609d81738fSJack F Vogel 4619d81738fSJack F Vogel phy->addr = 1; 4629d81738fSJack F Vogel phy->reset_delay_us = 100; 4639d81738fSJack F Vogel 4649d81738fSJack F Vogel phy->ops.acquire = e1000_acquire_swflag_ich8lan; 4659d81738fSJack F Vogel phy->ops.check_reset_block = e1000_check_reset_block_ich8lan; 4669d81738fSJack F Vogel phy->ops.get_cfg_done = e1000_get_cfg_done_ich8lan; 4674dab5c37SJack F Vogel phy->ops.set_page = e1000_set_page_igp; 4689d81738fSJack F Vogel phy->ops.read_reg = e1000_read_phy_reg_hv; 4694edd8523SJack F Vogel phy->ops.read_reg_locked = e1000_read_phy_reg_hv_locked; 4704dab5c37SJack F Vogel phy->ops.read_reg_page = e1000_read_phy_reg_page_hv; 4719d81738fSJack F Vogel phy->ops.release = e1000_release_swflag_ich8lan; 4729d81738fSJack F Vogel phy->ops.reset = e1000_phy_hw_reset_ich8lan; 4734edd8523SJack F Vogel phy->ops.set_d0_lplu_state = e1000_set_lplu_state_pchlan; 4744edd8523SJack F Vogel phy->ops.set_d3_lplu_state = e1000_set_lplu_state_pchlan; 4759d81738fSJack F Vogel phy->ops.write_reg = e1000_write_phy_reg_hv; 4764edd8523SJack F Vogel phy->ops.write_reg_locked = e1000_write_phy_reg_hv_locked; 4774dab5c37SJack F Vogel phy->ops.write_reg_page = e1000_write_phy_reg_page_hv; 4789d81738fSJack F Vogel phy->ops.power_up = e1000_power_up_phy_copper; 4799d81738fSJack F Vogel phy->ops.power_down = e1000_power_down_phy_copper_ich8lan; 4809d81738fSJack F Vogel phy->autoneg_mask = AUTONEG_ADVERTISE_SPEED_DEFAULT; 4819d81738fSJack F Vogel 4829d81738fSJack F Vogel phy->id = e1000_phy_unknown; 4836ab6bfe3SJack F Vogel 4846ab6bfe3SJack F Vogel ret_val = e1000_init_phy_workarounds_pchlan(hw); 4856ab6bfe3SJack F Vogel if (ret_val) 4866ab6bfe3SJack F Vogel return ret_val; 4876ab6bfe3SJack F Vogel 4886ab6bfe3SJack F Vogel if (phy->id == e1000_phy_unknown) 4897d9119bdSJack F Vogel switch (hw->mac.type) { 4907d9119bdSJack F Vogel default: 491a69ed8dfSJack F Vogel ret_val = e1000_get_phy_id(hw); 492a69ed8dfSJack F Vogel if (ret_val) 4936ab6bfe3SJack F Vogel return ret_val; 4947d9119bdSJack F Vogel if ((phy->id != 0) && (phy->id != PHY_REVISION_MASK)) 4957d9119bdSJack F Vogel break; 4967d9119bdSJack F Vogel /* fall-through */ 4977d9119bdSJack F Vogel case e1000_pch2lan: 4986ab6bfe3SJack F Vogel case e1000_pch_lpt: 499c80429ceSEric Joyner case e1000_pch_spt: 5006fe4c0a0SSean Bruno case e1000_pch_cnp: 50159690eabSKevin Bowling case e1000_pch_tgp: 50259690eabSKevin Bowling case e1000_pch_adp: 50359690eabSKevin Bowling case e1000_pch_mtp: 5046ab6bfe3SJack F Vogel /* In case the PHY needs to be in mdio slow mode, 505a69ed8dfSJack F Vogel * set slow mode and try to get the PHY id again. 506a69ed8dfSJack F Vogel */ 507a69ed8dfSJack F Vogel ret_val = e1000_set_mdio_slow_mode_hv(hw); 508a69ed8dfSJack F Vogel if (ret_val) 5096ab6bfe3SJack F Vogel return ret_val; 510a69ed8dfSJack F Vogel ret_val = e1000_get_phy_id(hw); 511a69ed8dfSJack F Vogel if (ret_val) 5126ab6bfe3SJack F Vogel return ret_val; 5137d9119bdSJack F Vogel break; 514a69ed8dfSJack F Vogel } 5159d81738fSJack F Vogel phy->type = e1000_get_phy_type_from_id(phy->id); 5169d81738fSJack F Vogel 5174edd8523SJack F Vogel switch (phy->type) { 5184edd8523SJack F Vogel case e1000_phy_82577: 5197d9119bdSJack F Vogel case e1000_phy_82579: 5206ab6bfe3SJack F Vogel case e1000_phy_i217: 5219d81738fSJack F Vogel phy->ops.check_polarity = e1000_check_polarity_82577; 5229d81738fSJack F Vogel phy->ops.force_speed_duplex = 5239d81738fSJack F Vogel e1000_phy_force_speed_duplex_82577; 5249d81738fSJack F Vogel phy->ops.get_cable_length = e1000_get_cable_length_82577; 5259d81738fSJack F Vogel phy->ops.get_info = e1000_get_phy_info_82577; 5269d81738fSJack F Vogel phy->ops.commit = e1000_phy_sw_reset_generic; 5278ec87fc5SJack F Vogel break; 5284edd8523SJack F Vogel case e1000_phy_82578: 5294edd8523SJack F Vogel phy->ops.check_polarity = e1000_check_polarity_m88; 5304edd8523SJack F Vogel phy->ops.force_speed_duplex = e1000_phy_force_speed_duplex_m88; 5314edd8523SJack F Vogel phy->ops.get_cable_length = e1000_get_cable_length_m88; 5324edd8523SJack F Vogel phy->ops.get_info = e1000_get_phy_info_m88; 5334edd8523SJack F Vogel break; 5344edd8523SJack F Vogel default: 5354edd8523SJack F Vogel ret_val = -E1000_ERR_PHY; 5364edd8523SJack F Vogel break; 5379d81738fSJack F Vogel } 5389d81738fSJack F Vogel 5399d81738fSJack F Vogel return ret_val; 5409d81738fSJack F Vogel } 5419d81738fSJack F Vogel 5429d81738fSJack F Vogel /** 5438cfa0ad2SJack F Vogel * e1000_init_phy_params_ich8lan - Initialize PHY function pointers 5448cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 5458cfa0ad2SJack F Vogel * 5468cfa0ad2SJack F Vogel * Initialize family-specific PHY parameters and function pointers. 5478cfa0ad2SJack F Vogel **/ 5488cfa0ad2SJack F Vogel static s32 e1000_init_phy_params_ich8lan(struct e1000_hw *hw) 5498cfa0ad2SJack F Vogel { 5508cfa0ad2SJack F Vogel struct e1000_phy_info *phy = &hw->phy; 5516ab6bfe3SJack F Vogel s32 ret_val; 5528cfa0ad2SJack F Vogel u16 i = 0; 5538cfa0ad2SJack F Vogel 5548cfa0ad2SJack F Vogel DEBUGFUNC("e1000_init_phy_params_ich8lan"); 5558cfa0ad2SJack F Vogel 5568cfa0ad2SJack F Vogel phy->addr = 1; 5578cfa0ad2SJack F Vogel phy->reset_delay_us = 100; 5588cfa0ad2SJack F Vogel 5598cfa0ad2SJack F Vogel phy->ops.acquire = e1000_acquire_swflag_ich8lan; 5608cfa0ad2SJack F Vogel phy->ops.check_reset_block = e1000_check_reset_block_ich8lan; 5618cfa0ad2SJack F Vogel phy->ops.get_cable_length = e1000_get_cable_length_igp_2; 5628cfa0ad2SJack F Vogel phy->ops.get_cfg_done = e1000_get_cfg_done_ich8lan; 5638cfa0ad2SJack F Vogel phy->ops.read_reg = e1000_read_phy_reg_igp; 5648cfa0ad2SJack F Vogel phy->ops.release = e1000_release_swflag_ich8lan; 5658cfa0ad2SJack F Vogel phy->ops.reset = e1000_phy_hw_reset_ich8lan; 5668cfa0ad2SJack F Vogel phy->ops.set_d0_lplu_state = e1000_set_d0_lplu_state_ich8lan; 5678cfa0ad2SJack F Vogel phy->ops.set_d3_lplu_state = e1000_set_d3_lplu_state_ich8lan; 5688cfa0ad2SJack F Vogel phy->ops.write_reg = e1000_write_phy_reg_igp; 5698cfa0ad2SJack F Vogel phy->ops.power_up = e1000_power_up_phy_copper; 5708cfa0ad2SJack F Vogel phy->ops.power_down = e1000_power_down_phy_copper_ich8lan; 5718cfa0ad2SJack F Vogel 5726ab6bfe3SJack F Vogel /* We may need to do this twice - once for IGP and if that fails, 5738cfa0ad2SJack F Vogel * we'll set BM func pointers and try again 5748cfa0ad2SJack F Vogel */ 5758cfa0ad2SJack F Vogel ret_val = e1000_determine_phy_address(hw); 5768cfa0ad2SJack F Vogel if (ret_val) { 5778cfa0ad2SJack F Vogel phy->ops.write_reg = e1000_write_phy_reg_bm; 5788cfa0ad2SJack F Vogel phy->ops.read_reg = e1000_read_phy_reg_bm; 5798cfa0ad2SJack F Vogel ret_val = e1000_determine_phy_address(hw); 5808cfa0ad2SJack F Vogel if (ret_val) { 581d035aa2dSJack F Vogel DEBUGOUT("Cannot determine PHY addr. Erroring out\n"); 5826ab6bfe3SJack F Vogel return ret_val; 5838cfa0ad2SJack F Vogel } 5848cfa0ad2SJack F Vogel } 5858cfa0ad2SJack F Vogel 5868cfa0ad2SJack F Vogel phy->id = 0; 5878cfa0ad2SJack F Vogel while ((e1000_phy_unknown == e1000_get_phy_type_from_id(phy->id)) && 5888cfa0ad2SJack F Vogel (i++ < 100)) { 5898cfa0ad2SJack F Vogel msec_delay(1); 5908cfa0ad2SJack F Vogel ret_val = e1000_get_phy_id(hw); 5918cfa0ad2SJack F Vogel if (ret_val) 5926ab6bfe3SJack F Vogel return ret_val; 5938cfa0ad2SJack F Vogel } 5948cfa0ad2SJack F Vogel 5958cfa0ad2SJack F Vogel /* Verify phy id */ 5968cfa0ad2SJack F Vogel switch (phy->id) { 5978cfa0ad2SJack F Vogel case IGP03E1000_E_PHY_ID: 5988cfa0ad2SJack F Vogel phy->type = e1000_phy_igp_3; 5998cfa0ad2SJack F Vogel phy->autoneg_mask = AUTONEG_ADVERTISE_SPEED_DEFAULT; 6004edd8523SJack F Vogel phy->ops.read_reg_locked = e1000_read_phy_reg_igp_locked; 6014edd8523SJack F Vogel phy->ops.write_reg_locked = e1000_write_phy_reg_igp_locked; 6024edd8523SJack F Vogel phy->ops.get_info = e1000_get_phy_info_igp; 6034edd8523SJack F Vogel phy->ops.check_polarity = e1000_check_polarity_igp; 6044edd8523SJack F Vogel phy->ops.force_speed_duplex = e1000_phy_force_speed_duplex_igp; 6058cfa0ad2SJack F Vogel break; 6068cfa0ad2SJack F Vogel case IFE_E_PHY_ID: 6078cfa0ad2SJack F Vogel case IFE_PLUS_E_PHY_ID: 6088cfa0ad2SJack F Vogel case IFE_C_E_PHY_ID: 6098cfa0ad2SJack F Vogel phy->type = e1000_phy_ife; 6108cfa0ad2SJack F Vogel phy->autoneg_mask = E1000_ALL_NOT_GIG; 6114edd8523SJack F Vogel phy->ops.get_info = e1000_get_phy_info_ife; 6124edd8523SJack F Vogel phy->ops.check_polarity = e1000_check_polarity_ife; 6134edd8523SJack F Vogel phy->ops.force_speed_duplex = e1000_phy_force_speed_duplex_ife; 6148cfa0ad2SJack F Vogel break; 6158cfa0ad2SJack F Vogel case BME1000_E_PHY_ID: 6168cfa0ad2SJack F Vogel phy->type = e1000_phy_bm; 6178cfa0ad2SJack F Vogel phy->autoneg_mask = AUTONEG_ADVERTISE_SPEED_DEFAULT; 6188cfa0ad2SJack F Vogel phy->ops.read_reg = e1000_read_phy_reg_bm; 6198cfa0ad2SJack F Vogel phy->ops.write_reg = e1000_write_phy_reg_bm; 6208cfa0ad2SJack F Vogel phy->ops.commit = e1000_phy_sw_reset_generic; 6214edd8523SJack F Vogel phy->ops.get_info = e1000_get_phy_info_m88; 6224edd8523SJack F Vogel phy->ops.check_polarity = e1000_check_polarity_m88; 6234edd8523SJack F Vogel phy->ops.force_speed_duplex = e1000_phy_force_speed_duplex_m88; 6248cfa0ad2SJack F Vogel break; 6258cfa0ad2SJack F Vogel default: 6266ab6bfe3SJack F Vogel return -E1000_ERR_PHY; 6276ab6bfe3SJack F Vogel break; 6288cfa0ad2SJack F Vogel } 6298cfa0ad2SJack F Vogel 6306ab6bfe3SJack F Vogel return E1000_SUCCESS; 6318cfa0ad2SJack F Vogel } 6328cfa0ad2SJack F Vogel 6338cfa0ad2SJack F Vogel /** 6348cfa0ad2SJack F Vogel * e1000_init_nvm_params_ich8lan - Initialize NVM function pointers 6358cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 6368cfa0ad2SJack F Vogel * 6378cfa0ad2SJack F Vogel * Initialize family-specific NVM parameters and function 6388cfa0ad2SJack F Vogel * pointers. 6398cfa0ad2SJack F Vogel **/ 6408cfa0ad2SJack F Vogel static s32 e1000_init_nvm_params_ich8lan(struct e1000_hw *hw) 6418cfa0ad2SJack F Vogel { 6428cfa0ad2SJack F Vogel struct e1000_nvm_info *nvm = &hw->nvm; 643daf9197cSJack F Vogel struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 6448cfa0ad2SJack F Vogel u32 gfpreg, sector_base_addr, sector_end_addr; 6458cfa0ad2SJack F Vogel u16 i; 646c80429ceSEric Joyner u32 nvm_size; 6478cfa0ad2SJack F Vogel 6488cfa0ad2SJack F Vogel DEBUGFUNC("e1000_init_nvm_params_ich8lan"); 6498cfa0ad2SJack F Vogel 6508cc64f1eSJack F Vogel nvm->type = e1000_nvm_flash_sw; 651c80429ceSEric Joyner 652295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) { 653c80429ceSEric Joyner /* in SPT, gfpreg doesn't exist. NVM size is taken from the 654c80429ceSEric Joyner * STRAP register. This is because in SPT the GbE Flash region 655c80429ceSEric Joyner * is no longer accessed through the flash registers. Instead, 656c80429ceSEric Joyner * the mechanism has changed, and the Flash region access 657c80429ceSEric Joyner * registers are now implemented in GbE memory space. 658c80429ceSEric Joyner */ 659c80429ceSEric Joyner nvm->flash_base_addr = 0; 660c80429ceSEric Joyner nvm_size = 661c80429ceSEric Joyner (((E1000_READ_REG(hw, E1000_STRAP) >> 1) & 0x1F) + 1) 662c80429ceSEric Joyner * NVM_SIZE_MULTIPLIER; 663c80429ceSEric Joyner nvm->flash_bank_size = nvm_size / 2; 664c80429ceSEric Joyner /* Adjust to word count */ 665c80429ceSEric Joyner nvm->flash_bank_size /= sizeof(u16); 666c80429ceSEric Joyner /* Set the base address for flash register access */ 667c80429ceSEric Joyner hw->flash_address = hw->hw_addr + E1000_FLASH_BASE_ADDR; 668c80429ceSEric Joyner } else { 669c80429ceSEric Joyner /* Can't read flash registers if register set isn't mapped. */ 6708cfa0ad2SJack F Vogel if (!hw->flash_address) { 6718cfa0ad2SJack F Vogel DEBUGOUT("ERROR: Flash registers not mapped\n"); 6726ab6bfe3SJack F Vogel return -E1000_ERR_CONFIG; 6738cfa0ad2SJack F Vogel } 6748cfa0ad2SJack F Vogel 6758cfa0ad2SJack F Vogel gfpreg = E1000_READ_FLASH_REG(hw, ICH_FLASH_GFPREG); 6768cfa0ad2SJack F Vogel 6776ab6bfe3SJack F Vogel /* sector_X_addr is a "sector"-aligned address (4096 bytes) 6788cfa0ad2SJack F Vogel * Add 1 to sector_end_addr since this sector is included in 6798cfa0ad2SJack F Vogel * the overall size. 6808cfa0ad2SJack F Vogel */ 6818cfa0ad2SJack F Vogel sector_base_addr = gfpreg & FLASH_GFPREG_BASE_MASK; 6828cfa0ad2SJack F Vogel sector_end_addr = ((gfpreg >> 16) & FLASH_GFPREG_BASE_MASK) + 1; 6838cfa0ad2SJack F Vogel 6848cfa0ad2SJack F Vogel /* flash_base_addr is byte-aligned */ 685c80429ceSEric Joyner nvm->flash_base_addr = sector_base_addr 686c80429ceSEric Joyner << FLASH_SECTOR_ADDR_SHIFT; 6878cfa0ad2SJack F Vogel 6886ab6bfe3SJack F Vogel /* find total size of the NVM, then cut in half since the total 6898cfa0ad2SJack F Vogel * size represents two separate NVM banks. 6908cfa0ad2SJack F Vogel */ 6917609433eSJack F Vogel nvm->flash_bank_size = ((sector_end_addr - sector_base_addr) 6927609433eSJack F Vogel << FLASH_SECTOR_ADDR_SHIFT); 6938cfa0ad2SJack F Vogel nvm->flash_bank_size /= 2; 6948cfa0ad2SJack F Vogel /* Adjust to word count */ 6958cfa0ad2SJack F Vogel nvm->flash_bank_size /= sizeof(u16); 696c80429ceSEric Joyner } 6978cfa0ad2SJack F Vogel 6988cfa0ad2SJack F Vogel nvm->word_size = E1000_SHADOW_RAM_WORDS; 6998cfa0ad2SJack F Vogel 7008cfa0ad2SJack F Vogel /* Clear shadow ram */ 7018cfa0ad2SJack F Vogel for (i = 0; i < nvm->word_size; i++) { 7028cfa0ad2SJack F Vogel dev_spec->shadow_ram[i].modified = FALSE; 7038cfa0ad2SJack F Vogel dev_spec->shadow_ram[i].value = 0xFFFF; 7048cfa0ad2SJack F Vogel } 7058cfa0ad2SJack F Vogel 7068cfa0ad2SJack F Vogel /* Function Pointers */ 7074edd8523SJack F Vogel nvm->ops.acquire = e1000_acquire_nvm_ich8lan; 7084edd8523SJack F Vogel nvm->ops.release = e1000_release_nvm_ich8lan; 709295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) { 710c80429ceSEric Joyner nvm->ops.read = e1000_read_nvm_spt; 711c80429ceSEric Joyner nvm->ops.update = e1000_update_nvm_checksum_spt; 712c80429ceSEric Joyner } else { 7138cfa0ad2SJack F Vogel nvm->ops.read = e1000_read_nvm_ich8lan; 7148cfa0ad2SJack F Vogel nvm->ops.update = e1000_update_nvm_checksum_ich8lan; 715c80429ceSEric Joyner } 7168cfa0ad2SJack F Vogel nvm->ops.valid_led_default = e1000_valid_led_default_ich8lan; 7178cfa0ad2SJack F Vogel nvm->ops.validate = e1000_validate_nvm_checksum_ich8lan; 7188cfa0ad2SJack F Vogel nvm->ops.write = e1000_write_nvm_ich8lan; 7198cfa0ad2SJack F Vogel 7206ab6bfe3SJack F Vogel return E1000_SUCCESS; 7218cfa0ad2SJack F Vogel } 7228cfa0ad2SJack F Vogel 7238cfa0ad2SJack F Vogel /** 7248cfa0ad2SJack F Vogel * e1000_init_mac_params_ich8lan - Initialize MAC function pointers 7258cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 7268cfa0ad2SJack F Vogel * 7278cfa0ad2SJack F Vogel * Initialize family-specific MAC parameters and function 7288cfa0ad2SJack F Vogel * pointers. 7298cfa0ad2SJack F Vogel **/ 7308cfa0ad2SJack F Vogel static s32 e1000_init_mac_params_ich8lan(struct e1000_hw *hw) 7318cfa0ad2SJack F Vogel { 7328cfa0ad2SJack F Vogel struct e1000_mac_info *mac = &hw->mac; 7338cfa0ad2SJack F Vogel 7348cfa0ad2SJack F Vogel DEBUGFUNC("e1000_init_mac_params_ich8lan"); 7358cfa0ad2SJack F Vogel 7368cfa0ad2SJack F Vogel /* Set media type function pointer */ 7378cfa0ad2SJack F Vogel hw->phy.media_type = e1000_media_type_copper; 7388cfa0ad2SJack F Vogel 7398cfa0ad2SJack F Vogel /* Set mta register count */ 7408cfa0ad2SJack F Vogel mac->mta_reg_count = 32; 7418cfa0ad2SJack F Vogel /* Set rar entry count */ 7428cfa0ad2SJack F Vogel mac->rar_entry_count = E1000_ICH_RAR_ENTRIES; 7438cfa0ad2SJack F Vogel if (mac->type == e1000_ich8lan) 7448cfa0ad2SJack F Vogel mac->rar_entry_count--; 7458cfa0ad2SJack F Vogel /* Set if part includes ASF firmware */ 7468cfa0ad2SJack F Vogel mac->asf_firmware_present = TRUE; 7478ec87fc5SJack F Vogel /* FWSM register */ 7488ec87fc5SJack F Vogel mac->has_fwsm = TRUE; 7498ec87fc5SJack F Vogel /* ARC subsystem not supported */ 7508ec87fc5SJack F Vogel mac->arc_subsystem_valid = FALSE; 7514edd8523SJack F Vogel /* Adaptive IFS supported */ 7524edd8523SJack F Vogel mac->adaptive_ifs = TRUE; 7538cfa0ad2SJack F Vogel 7548cfa0ad2SJack F Vogel /* Function pointers */ 7558cfa0ad2SJack F Vogel 7568cfa0ad2SJack F Vogel /* bus type/speed/width */ 7578cfa0ad2SJack F Vogel mac->ops.get_bus_info = e1000_get_bus_info_ich8lan; 758daf9197cSJack F Vogel /* function id */ 759daf9197cSJack F Vogel mac->ops.set_lan_id = e1000_set_lan_id_single_port; 7608cfa0ad2SJack F Vogel /* reset */ 7618cfa0ad2SJack F Vogel mac->ops.reset_hw = e1000_reset_hw_ich8lan; 7628cfa0ad2SJack F Vogel /* hw initialization */ 7638cfa0ad2SJack F Vogel mac->ops.init_hw = e1000_init_hw_ich8lan; 7648cfa0ad2SJack F Vogel /* link setup */ 7658cfa0ad2SJack F Vogel mac->ops.setup_link = e1000_setup_link_ich8lan; 7668cfa0ad2SJack F Vogel /* physical interface setup */ 7678cfa0ad2SJack F Vogel mac->ops.setup_physical_interface = e1000_setup_copper_link_ich8lan; 7688cfa0ad2SJack F Vogel /* check for link */ 7694edd8523SJack F Vogel mac->ops.check_for_link = e1000_check_for_copper_link_ich8lan; 7708cfa0ad2SJack F Vogel /* link info */ 7718cfa0ad2SJack F Vogel mac->ops.get_link_up_info = e1000_get_link_up_info_ich8lan; 7728cfa0ad2SJack F Vogel /* multicast address update */ 7738cfa0ad2SJack F Vogel mac->ops.update_mc_addr_list = e1000_update_mc_addr_list_generic; 774d035aa2dSJack F Vogel /* clear hardware counters */ 775d035aa2dSJack F Vogel mac->ops.clear_hw_cntrs = e1000_clear_hw_cntrs_ich8lan; 776d035aa2dSJack F Vogel 7776ab6bfe3SJack F Vogel /* LED and other operations */ 778d035aa2dSJack F Vogel switch (mac->type) { 779d035aa2dSJack F Vogel case e1000_ich8lan: 780d035aa2dSJack F Vogel case e1000_ich9lan: 781d035aa2dSJack F Vogel case e1000_ich10lan: 7827d9119bdSJack F Vogel /* check management mode */ 7837d9119bdSJack F Vogel mac->ops.check_mng_mode = e1000_check_mng_mode_ich8lan; 784d035aa2dSJack F Vogel /* ID LED init */ 785d035aa2dSJack F Vogel mac->ops.id_led_init = e1000_id_led_init_generic; 7868cfa0ad2SJack F Vogel /* blink LED */ 7878cfa0ad2SJack F Vogel mac->ops.blink_led = e1000_blink_led_generic; 7888cfa0ad2SJack F Vogel /* setup LED */ 7898cfa0ad2SJack F Vogel mac->ops.setup_led = e1000_setup_led_generic; 7908cfa0ad2SJack F Vogel /* cleanup LED */ 7918cfa0ad2SJack F Vogel mac->ops.cleanup_led = e1000_cleanup_led_ich8lan; 7928cfa0ad2SJack F Vogel /* turn on/off LED */ 7938cfa0ad2SJack F Vogel mac->ops.led_on = e1000_led_on_ich8lan; 7948cfa0ad2SJack F Vogel mac->ops.led_off = e1000_led_off_ich8lan; 795d035aa2dSJack F Vogel break; 7967d9119bdSJack F Vogel case e1000_pch2lan: 7977d9119bdSJack F Vogel mac->rar_entry_count = E1000_PCH2_RAR_ENTRIES; 7987d9119bdSJack F Vogel mac->ops.rar_set = e1000_rar_set_pch2lan; 7996ab6bfe3SJack F Vogel /* fall-through */ 8006ab6bfe3SJack F Vogel case e1000_pch_lpt: 801c80429ceSEric Joyner case e1000_pch_spt: 8026fe4c0a0SSean Bruno case e1000_pch_cnp: 80359690eabSKevin Bowling case e1000_pch_tgp: 80459690eabSKevin Bowling case e1000_pch_adp: 80559690eabSKevin Bowling case e1000_pch_mtp: 806730d3130SJack F Vogel /* multicast address update for pch2 */ 807730d3130SJack F Vogel mac->ops.update_mc_addr_list = 808730d3130SJack F Vogel e1000_update_mc_addr_list_pch2lan; 809c80429ceSEric Joyner /* fall-through */ 8109d81738fSJack F Vogel case e1000_pchlan: 8117d9119bdSJack F Vogel /* check management mode */ 8127d9119bdSJack F Vogel mac->ops.check_mng_mode = e1000_check_mng_mode_pchlan; 8139d81738fSJack F Vogel /* ID LED init */ 8149d81738fSJack F Vogel mac->ops.id_led_init = e1000_id_led_init_pchlan; 8159d81738fSJack F Vogel /* setup LED */ 8169d81738fSJack F Vogel mac->ops.setup_led = e1000_setup_led_pchlan; 8179d81738fSJack F Vogel /* cleanup LED */ 8189d81738fSJack F Vogel mac->ops.cleanup_led = e1000_cleanup_led_pchlan; 8199d81738fSJack F Vogel /* turn on/off LED */ 8209d81738fSJack F Vogel mac->ops.led_on = e1000_led_on_pchlan; 8219d81738fSJack F Vogel mac->ops.led_off = e1000_led_off_pchlan; 8229d81738fSJack F Vogel break; 823d035aa2dSJack F Vogel default: 824d035aa2dSJack F Vogel break; 825d035aa2dSJack F Vogel } 8268cfa0ad2SJack F Vogel 827295df609SEric Joyner if (mac->type >= e1000_pch_lpt) { 8286ab6bfe3SJack F Vogel mac->rar_entry_count = E1000_PCH_LPT_RAR_ENTRIES; 8296ab6bfe3SJack F Vogel mac->ops.rar_set = e1000_rar_set_pch_lpt; 8306ab6bfe3SJack F Vogel mac->ops.setup_physical_interface = e1000_setup_copper_link_pch_lpt; 831e373323fSSean Bruno mac->ops.set_obff_timer = e1000_set_obff_timer_pch_lpt; 8324dab5c37SJack F Vogel } 8334dab5c37SJack F Vogel 8348cfa0ad2SJack F Vogel /* Enable PCS Lock-loss workaround for ICH8 */ 8358cfa0ad2SJack F Vogel if (mac->type == e1000_ich8lan) 8368cfa0ad2SJack F Vogel e1000_set_kmrn_lock_loss_workaround_ich8lan(hw, TRUE); 8378cfa0ad2SJack F Vogel 838daf9197cSJack F Vogel return E1000_SUCCESS; 8398cfa0ad2SJack F Vogel } 8408cfa0ad2SJack F Vogel 8418cfa0ad2SJack F Vogel /** 8426ab6bfe3SJack F Vogel * __e1000_access_emi_reg_locked - Read/write EMI register 8436ab6bfe3SJack F Vogel * @hw: pointer to the HW structure 844a4378873SKevin Bowling * @addr: EMI address to program 8456ab6bfe3SJack F Vogel * @data: pointer to value to read/write from/to the EMI address 8466ab6bfe3SJack F Vogel * @read: boolean flag to indicate read or write 8476ab6bfe3SJack F Vogel * 8486ab6bfe3SJack F Vogel * This helper function assumes the SW/FW/HW Semaphore is already acquired. 8496ab6bfe3SJack F Vogel **/ 8506ab6bfe3SJack F Vogel static s32 __e1000_access_emi_reg_locked(struct e1000_hw *hw, u16 address, 8516ab6bfe3SJack F Vogel u16 *data, bool read) 8526ab6bfe3SJack F Vogel { 8536ab6bfe3SJack F Vogel s32 ret_val; 8546ab6bfe3SJack F Vogel 8556ab6bfe3SJack F Vogel DEBUGFUNC("__e1000_access_emi_reg_locked"); 8566ab6bfe3SJack F Vogel 8576ab6bfe3SJack F Vogel ret_val = hw->phy.ops.write_reg_locked(hw, I82579_EMI_ADDR, address); 8586ab6bfe3SJack F Vogel if (ret_val) 8596ab6bfe3SJack F Vogel return ret_val; 8606ab6bfe3SJack F Vogel 8616ab6bfe3SJack F Vogel if (read) 8626ab6bfe3SJack F Vogel ret_val = hw->phy.ops.read_reg_locked(hw, I82579_EMI_DATA, 8636ab6bfe3SJack F Vogel data); 8646ab6bfe3SJack F Vogel else 8656ab6bfe3SJack F Vogel ret_val = hw->phy.ops.write_reg_locked(hw, I82579_EMI_DATA, 8666ab6bfe3SJack F Vogel *data); 8676ab6bfe3SJack F Vogel 8686ab6bfe3SJack F Vogel return ret_val; 8696ab6bfe3SJack F Vogel } 8706ab6bfe3SJack F Vogel 8716ab6bfe3SJack F Vogel /** 8726ab6bfe3SJack F Vogel * e1000_read_emi_reg_locked - Read Extended Management Interface register 8736ab6bfe3SJack F Vogel * @hw: pointer to the HW structure 8746ab6bfe3SJack F Vogel * @addr: EMI address to program 8756ab6bfe3SJack F Vogel * @data: value to be read from the EMI address 8766ab6bfe3SJack F Vogel * 8776ab6bfe3SJack F Vogel * Assumes the SW/FW/HW Semaphore is already acquired. 8786ab6bfe3SJack F Vogel **/ 8796ab6bfe3SJack F Vogel s32 e1000_read_emi_reg_locked(struct e1000_hw *hw, u16 addr, u16 *data) 8806ab6bfe3SJack F Vogel { 8816ab6bfe3SJack F Vogel DEBUGFUNC("e1000_read_emi_reg_locked"); 8826ab6bfe3SJack F Vogel 8836ab6bfe3SJack F Vogel return __e1000_access_emi_reg_locked(hw, addr, data, TRUE); 8846ab6bfe3SJack F Vogel } 8856ab6bfe3SJack F Vogel 8866ab6bfe3SJack F Vogel /** 8876ab6bfe3SJack F Vogel * e1000_write_emi_reg_locked - Write Extended Management Interface register 8886ab6bfe3SJack F Vogel * @hw: pointer to the HW structure 8896ab6bfe3SJack F Vogel * @addr: EMI address to program 8906ab6bfe3SJack F Vogel * @data: value to be written to the EMI address 8916ab6bfe3SJack F Vogel * 8926ab6bfe3SJack F Vogel * Assumes the SW/FW/HW Semaphore is already acquired. 8936ab6bfe3SJack F Vogel **/ 8947609433eSJack F Vogel s32 e1000_write_emi_reg_locked(struct e1000_hw *hw, u16 addr, u16 data) 8956ab6bfe3SJack F Vogel { 8966ab6bfe3SJack F Vogel DEBUGFUNC("e1000_read_emi_reg_locked"); 8976ab6bfe3SJack F Vogel 8986ab6bfe3SJack F Vogel return __e1000_access_emi_reg_locked(hw, addr, &data, FALSE); 8996ab6bfe3SJack F Vogel } 9006ab6bfe3SJack F Vogel 9016ab6bfe3SJack F Vogel /** 9027d9119bdSJack F Vogel * e1000_set_eee_pchlan - Enable/disable EEE support 9037d9119bdSJack F Vogel * @hw: pointer to the HW structure 9047d9119bdSJack F Vogel * 9056ab6bfe3SJack F Vogel * Enable/disable EEE based on setting in dev_spec structure, the duplex of 9066ab6bfe3SJack F Vogel * the link and the EEE capabilities of the link partner. The LPI Control 9076ab6bfe3SJack F Vogel * register bits will remain set only if/when link is up. 9087609433eSJack F Vogel * 9097609433eSJack F Vogel * EEE LPI must not be asserted earlier than one second after link is up. 9107609433eSJack F Vogel * On 82579, EEE LPI should not be enabled until such time otherwise there 9117609433eSJack F Vogel * can be link issues with some switches. Other devices can have EEE LPI 9127609433eSJack F Vogel * enabled immediately upon link up since they have a timer in hardware which 9137609433eSJack F Vogel * prevents LPI from being asserted too early. 9147d9119bdSJack F Vogel **/ 9157609433eSJack F Vogel s32 e1000_set_eee_pchlan(struct e1000_hw *hw) 9167d9119bdSJack F Vogel { 9174dab5c37SJack F Vogel struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 9186ab6bfe3SJack F Vogel s32 ret_val; 9197609433eSJack F Vogel u16 lpa, pcs_status, adv, adv_addr, lpi_ctrl, data; 9207d9119bdSJack F Vogel 9217d9119bdSJack F Vogel DEBUGFUNC("e1000_set_eee_pchlan"); 9227d9119bdSJack F Vogel 9237609433eSJack F Vogel switch (hw->phy.type) { 9247609433eSJack F Vogel case e1000_phy_82579: 9257609433eSJack F Vogel lpa = I82579_EEE_LP_ABILITY; 9267609433eSJack F Vogel pcs_status = I82579_EEE_PCS_STATUS; 9277609433eSJack F Vogel adv_addr = I82579_EEE_ADVERTISEMENT; 9287609433eSJack F Vogel break; 9297609433eSJack F Vogel case e1000_phy_i217: 9307609433eSJack F Vogel lpa = I217_EEE_LP_ABILITY; 9317609433eSJack F Vogel pcs_status = I217_EEE_PCS_STATUS; 9327609433eSJack F Vogel adv_addr = I217_EEE_ADVERTISEMENT; 9337609433eSJack F Vogel break; 9347609433eSJack F Vogel default: 9356ab6bfe3SJack F Vogel return E1000_SUCCESS; 9367609433eSJack F Vogel } 9377d9119bdSJack F Vogel 9386ab6bfe3SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 9397d9119bdSJack F Vogel if (ret_val) 9407d9119bdSJack F Vogel return ret_val; 9416ab6bfe3SJack F Vogel 9426ab6bfe3SJack F Vogel ret_val = hw->phy.ops.read_reg_locked(hw, I82579_LPI_CTRL, &lpi_ctrl); 9436ab6bfe3SJack F Vogel if (ret_val) 9446ab6bfe3SJack F Vogel goto release; 9456ab6bfe3SJack F Vogel 9466ab6bfe3SJack F Vogel /* Clear bits that enable EEE in various speeds */ 9476ab6bfe3SJack F Vogel lpi_ctrl &= ~I82579_LPI_CTRL_ENABLE_MASK; 9486ab6bfe3SJack F Vogel 9496ab6bfe3SJack F Vogel /* Enable EEE if not disabled by user */ 9506ab6bfe3SJack F Vogel if (!dev_spec->eee_disable) { 9516ab6bfe3SJack F Vogel /* Save off link partner's EEE ability */ 9526ab6bfe3SJack F Vogel ret_val = e1000_read_emi_reg_locked(hw, lpa, 9536ab6bfe3SJack F Vogel &dev_spec->eee_lp_ability); 9546ab6bfe3SJack F Vogel if (ret_val) 9556ab6bfe3SJack F Vogel goto release; 9566ab6bfe3SJack F Vogel 9577609433eSJack F Vogel /* Read EEE advertisement */ 9587609433eSJack F Vogel ret_val = e1000_read_emi_reg_locked(hw, adv_addr, &adv); 9597609433eSJack F Vogel if (ret_val) 9607609433eSJack F Vogel goto release; 9617609433eSJack F Vogel 9626ab6bfe3SJack F Vogel /* Enable EEE only for speeds in which the link partner is 9637609433eSJack F Vogel * EEE capable and for which we advertise EEE. 9646ab6bfe3SJack F Vogel */ 9657609433eSJack F Vogel if (adv & dev_spec->eee_lp_ability & I82579_EEE_1000_SUPPORTED) 9666ab6bfe3SJack F Vogel lpi_ctrl |= I82579_LPI_CTRL_1000_ENABLE; 9676ab6bfe3SJack F Vogel 9687609433eSJack F Vogel if (adv & dev_spec->eee_lp_ability & I82579_EEE_100_SUPPORTED) { 9696ab6bfe3SJack F Vogel hw->phy.ops.read_reg_locked(hw, PHY_LP_ABILITY, &data); 9706ab6bfe3SJack F Vogel if (data & NWAY_LPAR_100TX_FD_CAPS) 9716ab6bfe3SJack F Vogel lpi_ctrl |= I82579_LPI_CTRL_100_ENABLE; 9726ab6bfe3SJack F Vogel else 9736ab6bfe3SJack F Vogel /* EEE is not supported in 100Half, so ignore 9746ab6bfe3SJack F Vogel * partner's EEE in 100 ability if full-duplex 9756ab6bfe3SJack F Vogel * is not advertised. 9766ab6bfe3SJack F Vogel */ 9776ab6bfe3SJack F Vogel dev_spec->eee_lp_ability &= 9786ab6bfe3SJack F Vogel ~I82579_EEE_100_SUPPORTED; 9796ab6bfe3SJack F Vogel } 9807609433eSJack F Vogel } 9816ab6bfe3SJack F Vogel 9828cc64f1eSJack F Vogel if (hw->phy.type == e1000_phy_82579) { 9838cc64f1eSJack F Vogel ret_val = e1000_read_emi_reg_locked(hw, I82579_LPI_PLL_SHUT, 9848cc64f1eSJack F Vogel &data); 9858cc64f1eSJack F Vogel if (ret_val) 9868cc64f1eSJack F Vogel goto release; 9878cc64f1eSJack F Vogel 9888cc64f1eSJack F Vogel data &= ~I82579_LPI_100_PLL_SHUT; 9898cc64f1eSJack F Vogel ret_val = e1000_write_emi_reg_locked(hw, I82579_LPI_PLL_SHUT, 9908cc64f1eSJack F Vogel data); 9918cc64f1eSJack F Vogel } 9928cc64f1eSJack F Vogel 9936ab6bfe3SJack F Vogel /* R/Clr IEEE MMD 3.1 bits 11:10 - Tx/Rx LPI Received */ 9946ab6bfe3SJack F Vogel ret_val = e1000_read_emi_reg_locked(hw, pcs_status, &data); 9956ab6bfe3SJack F Vogel if (ret_val) 9966ab6bfe3SJack F Vogel goto release; 9976ab6bfe3SJack F Vogel 9986ab6bfe3SJack F Vogel ret_val = hw->phy.ops.write_reg_locked(hw, I82579_LPI_CTRL, lpi_ctrl); 9996ab6bfe3SJack F Vogel release: 10006ab6bfe3SJack F Vogel hw->phy.ops.release(hw); 10016ab6bfe3SJack F Vogel 10026ab6bfe3SJack F Vogel return ret_val; 10036ab6bfe3SJack F Vogel } 10046ab6bfe3SJack F Vogel 10056ab6bfe3SJack F Vogel /** 10066ab6bfe3SJack F Vogel * e1000_k1_workaround_lpt_lp - K1 workaround on Lynxpoint-LP 10076ab6bfe3SJack F Vogel * @hw: pointer to the HW structure 10086ab6bfe3SJack F Vogel * @link: link up bool flag 10096ab6bfe3SJack F Vogel * 10106ab6bfe3SJack F Vogel * When K1 is enabled for 1Gbps, the MAC can miss 2 DMA completion indications 10116ab6bfe3SJack F Vogel * preventing further DMA write requests. Workaround the issue by disabling 10126ab6bfe3SJack F Vogel * the de-assertion of the clock request when in 1Gpbs mode. 10137609433eSJack F Vogel * Also, set appropriate Tx re-transmission timeouts for 10 and 100Half link 10147609433eSJack F Vogel * speeds in order to avoid Tx hangs. 10156ab6bfe3SJack F Vogel **/ 10166ab6bfe3SJack F Vogel static s32 e1000_k1_workaround_lpt_lp(struct e1000_hw *hw, bool link) 10176ab6bfe3SJack F Vogel { 10186ab6bfe3SJack F Vogel u32 fextnvm6 = E1000_READ_REG(hw, E1000_FEXTNVM6); 10197609433eSJack F Vogel u32 status = E1000_READ_REG(hw, E1000_STATUS); 10206ab6bfe3SJack F Vogel s32 ret_val = E1000_SUCCESS; 10217609433eSJack F Vogel u16 reg; 10226ab6bfe3SJack F Vogel 10237609433eSJack F Vogel if (link && (status & E1000_STATUS_SPEED_1000)) { 10246ab6bfe3SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 10256ab6bfe3SJack F Vogel if (ret_val) 10266ab6bfe3SJack F Vogel return ret_val; 10276ab6bfe3SJack F Vogel 10286ab6bfe3SJack F Vogel ret_val = 10296ab6bfe3SJack F Vogel e1000_read_kmrn_reg_locked(hw, E1000_KMRNCTRLSTA_K1_CONFIG, 10307609433eSJack F Vogel ®); 10316ab6bfe3SJack F Vogel if (ret_val) 10326ab6bfe3SJack F Vogel goto release; 10336ab6bfe3SJack F Vogel 10346ab6bfe3SJack F Vogel ret_val = 10356ab6bfe3SJack F Vogel e1000_write_kmrn_reg_locked(hw, 10366ab6bfe3SJack F Vogel E1000_KMRNCTRLSTA_K1_CONFIG, 10377609433eSJack F Vogel reg & 10386ab6bfe3SJack F Vogel ~E1000_KMRNCTRLSTA_K1_ENABLE); 10396ab6bfe3SJack F Vogel if (ret_val) 10406ab6bfe3SJack F Vogel goto release; 10416ab6bfe3SJack F Vogel 10426ab6bfe3SJack F Vogel usec_delay(10); 10436ab6bfe3SJack F Vogel 10446ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_FEXTNVM6, 10456ab6bfe3SJack F Vogel fextnvm6 | E1000_FEXTNVM6_REQ_PLL_CLK); 10466ab6bfe3SJack F Vogel 10476ab6bfe3SJack F Vogel ret_val = 10486ab6bfe3SJack F Vogel e1000_write_kmrn_reg_locked(hw, 10496ab6bfe3SJack F Vogel E1000_KMRNCTRLSTA_K1_CONFIG, 10507609433eSJack F Vogel reg); 10516ab6bfe3SJack F Vogel release: 10526ab6bfe3SJack F Vogel hw->phy.ops.release(hw); 10536ab6bfe3SJack F Vogel } else { 10546ab6bfe3SJack F Vogel /* clear FEXTNVM6 bit 8 on link down or 10/100 */ 10557609433eSJack F Vogel fextnvm6 &= ~E1000_FEXTNVM6_REQ_PLL_CLK; 10567609433eSJack F Vogel 1057c80429ceSEric Joyner if ((hw->phy.revision > 5) || !link || 1058c80429ceSEric Joyner ((status & E1000_STATUS_SPEED_100) && 10597609433eSJack F Vogel (status & E1000_STATUS_FD))) 10607609433eSJack F Vogel goto update_fextnvm6; 10617609433eSJack F Vogel 10627609433eSJack F Vogel ret_val = hw->phy.ops.read_reg(hw, I217_INBAND_CTRL, ®); 10637609433eSJack F Vogel if (ret_val) 10647609433eSJack F Vogel return ret_val; 10657609433eSJack F Vogel 10667609433eSJack F Vogel /* Clear link status transmit timeout */ 10677609433eSJack F Vogel reg &= ~I217_INBAND_CTRL_LINK_STAT_TX_TIMEOUT_MASK; 10687609433eSJack F Vogel 10697609433eSJack F Vogel if (status & E1000_STATUS_SPEED_100) { 10707609433eSJack F Vogel /* Set inband Tx timeout to 5x10us for 100Half */ 10717609433eSJack F Vogel reg |= 5 << I217_INBAND_CTRL_LINK_STAT_TX_TIMEOUT_SHIFT; 10727609433eSJack F Vogel 10737609433eSJack F Vogel /* Do not extend the K1 entry latency for 100Half */ 10747609433eSJack F Vogel fextnvm6 &= ~E1000_FEXTNVM6_ENABLE_K1_ENTRY_CONDITION; 10757609433eSJack F Vogel } else { 10767609433eSJack F Vogel /* Set inband Tx timeout to 50x10us for 10Full/Half */ 10777609433eSJack F Vogel reg |= 50 << 10787609433eSJack F Vogel I217_INBAND_CTRL_LINK_STAT_TX_TIMEOUT_SHIFT; 10797609433eSJack F Vogel 10807609433eSJack F Vogel /* Extend the K1 entry latency for 10 Mbps */ 10817609433eSJack F Vogel fextnvm6 |= E1000_FEXTNVM6_ENABLE_K1_ENTRY_CONDITION; 10827609433eSJack F Vogel } 10837609433eSJack F Vogel 10847609433eSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, I217_INBAND_CTRL, reg); 10857609433eSJack F Vogel if (ret_val) 10867609433eSJack F Vogel return ret_val; 10877609433eSJack F Vogel 10887609433eSJack F Vogel update_fextnvm6: 10897609433eSJack F Vogel E1000_WRITE_REG(hw, E1000_FEXTNVM6, fextnvm6); 10906ab6bfe3SJack F Vogel } 10916ab6bfe3SJack F Vogel 10926ab6bfe3SJack F Vogel return ret_val; 10936ab6bfe3SJack F Vogel } 10946ab6bfe3SJack F Vogel 1095e373323fSSean Bruno static u64 e1000_ltr2ns(u16 ltr) 1096e373323fSSean Bruno { 1097e373323fSSean Bruno u32 value, scale; 1098e373323fSSean Bruno 1099e373323fSSean Bruno /* Determine the latency in nsec based on the LTR value & scale */ 1100e373323fSSean Bruno value = ltr & E1000_LTRV_VALUE_MASK; 1101e373323fSSean Bruno scale = (ltr & E1000_LTRV_SCALE_MASK) >> E1000_LTRV_SCALE_SHIFT; 1102e373323fSSean Bruno 110351569bd7SEric Joyner return value * (1ULL << (scale * E1000_LTRV_SCALE_FACTOR)); 1104e373323fSSean Bruno } 1105e373323fSSean Bruno 1106e373323fSSean Bruno /** 1107e373323fSSean Bruno * e1000_platform_pm_pch_lpt - Set platform power management values 1108e373323fSSean Bruno * @hw: pointer to the HW structure 1109e373323fSSean Bruno * @link: bool indicating link status 1110e373323fSSean Bruno * 1111e373323fSSean Bruno * Set the Latency Tolerance Reporting (LTR) values for the "PCIe-like" 1112e373323fSSean Bruno * GbE MAC in the Lynx Point PCH based on Rx buffer size and link speed 1113e373323fSSean Bruno * when link is up (which must not exceed the maximum latency supported 1114e373323fSSean Bruno * by the platform), otherwise specify there is no LTR requirement. 1115e373323fSSean Bruno * Unlike TRUE-PCIe devices which set the LTR maximum snoop/no-snoop 1116e373323fSSean Bruno * latencies in the LTR Extended Capability Structure in the PCIe Extended 1117e373323fSSean Bruno * Capability register set, on this device LTR is set by writing the 1118e373323fSSean Bruno * equivalent snoop/no-snoop latencies in the LTRV register in the MAC and 1119e373323fSSean Bruno * set the SEND bit to send an Intel On-chip System Fabric sideband (IOSF-SB) 1120e373323fSSean Bruno * message to the PMC. 1121e373323fSSean Bruno * 1122e373323fSSean Bruno * Use the LTR value to calculate the Optimized Buffer Flush/Fill (OBFF) 1123e373323fSSean Bruno * high-water mark. 1124e373323fSSean Bruno **/ 1125e373323fSSean Bruno static s32 e1000_platform_pm_pch_lpt(struct e1000_hw *hw, bool link) 1126e373323fSSean Bruno { 1127e373323fSSean Bruno u32 reg = link << (E1000_LTRV_REQ_SHIFT + E1000_LTRV_NOSNOOP_SHIFT) | 1128e373323fSSean Bruno link << E1000_LTRV_REQ_SHIFT | E1000_LTRV_SEND; 1129e373323fSSean Bruno u16 lat_enc = 0; /* latency encoded */ 1130e373323fSSean Bruno s32 obff_hwm = 0; 1131e373323fSSean Bruno 1132e373323fSSean Bruno DEBUGFUNC("e1000_platform_pm_pch_lpt"); 1133e373323fSSean Bruno 1134e373323fSSean Bruno if (link) { 1135e373323fSSean Bruno u16 speed, duplex, scale = 0; 1136e373323fSSean Bruno u16 max_snoop, max_nosnoop; 1137e373323fSSean Bruno u16 max_ltr_enc; /* max LTR latency encoded */ 1138e373323fSSean Bruno s64 lat_ns; 1139e373323fSSean Bruno s64 value; 1140e373323fSSean Bruno u32 rxa; 1141e373323fSSean Bruno 1142e373323fSSean Bruno if (!hw->mac.max_frame_size) { 1143e373323fSSean Bruno DEBUGOUT("max_frame_size not set.\n"); 1144e373323fSSean Bruno return -E1000_ERR_CONFIG; 1145e373323fSSean Bruno } 1146e373323fSSean Bruno 1147e373323fSSean Bruno hw->mac.ops.get_link_up_info(hw, &speed, &duplex); 1148e373323fSSean Bruno if (!speed) { 1149e373323fSSean Bruno DEBUGOUT("Speed not set.\n"); 1150e373323fSSean Bruno return -E1000_ERR_CONFIG; 1151e373323fSSean Bruno } 1152e373323fSSean Bruno 1153e373323fSSean Bruno /* Rx Packet Buffer Allocation size (KB) */ 1154e373323fSSean Bruno rxa = E1000_READ_REG(hw, E1000_PBA) & E1000_PBA_RXA_MASK; 1155e373323fSSean Bruno 1156e373323fSSean Bruno /* Determine the maximum latency tolerated by the device. 1157e373323fSSean Bruno * 1158e373323fSSean Bruno * Per the PCIe spec, the tolerated latencies are encoded as 1159e373323fSSean Bruno * a 3-bit encoded scale (only 0-5 are valid) multiplied by 1160e373323fSSean Bruno * a 10-bit value (0-1023) to provide a range from 1 ns to 1161e373323fSSean Bruno * 2^25*(2^10-1) ns. The scale is encoded as 0=2^0ns, 1162e373323fSSean Bruno * 1=2^5ns, 2=2^10ns,...5=2^25ns. 1163e373323fSSean Bruno */ 1164e373323fSSean Bruno lat_ns = ((s64)rxa * 1024 - 1165e373323fSSean Bruno (2 * (s64)hw->mac.max_frame_size)) * 8 * 1000; 1166e373323fSSean Bruno if (lat_ns < 0) 1167e373323fSSean Bruno lat_ns = 0; 1168e373323fSSean Bruno else 1169e373323fSSean Bruno lat_ns /= speed; 1170e373323fSSean Bruno value = lat_ns; 1171e373323fSSean Bruno 1172e373323fSSean Bruno while (value > E1000_LTRV_VALUE_MASK) { 1173e373323fSSean Bruno scale++; 1174e373323fSSean Bruno value = E1000_DIVIDE_ROUND_UP(value, (1 << 5)); 1175e373323fSSean Bruno } 1176e373323fSSean Bruno if (scale > E1000_LTRV_SCALE_MAX) { 1177e373323fSSean Bruno DEBUGOUT1("Invalid LTR latency scale %d\n", scale); 1178e373323fSSean Bruno return -E1000_ERR_CONFIG; 1179e373323fSSean Bruno } 1180e373323fSSean Bruno lat_enc = (u16)((scale << E1000_LTRV_SCALE_SHIFT) | value); 1181e373323fSSean Bruno 1182e373323fSSean Bruno /* Determine the maximum latency tolerated by the platform */ 1183e373323fSSean Bruno e1000_read_pci_cfg(hw, E1000_PCI_LTR_CAP_LPT, &max_snoop); 1184e373323fSSean Bruno e1000_read_pci_cfg(hw, E1000_PCI_LTR_CAP_LPT + 2, &max_nosnoop); 1185e373323fSSean Bruno max_ltr_enc = E1000_MAX(max_snoop, max_nosnoop); 1186e373323fSSean Bruno 1187e373323fSSean Bruno if (lat_enc > max_ltr_enc) { 1188e373323fSSean Bruno lat_enc = max_ltr_enc; 1189e373323fSSean Bruno lat_ns = e1000_ltr2ns(max_ltr_enc); 1190e373323fSSean Bruno } 1191e373323fSSean Bruno 1192e373323fSSean Bruno if (lat_ns) { 1193e373323fSSean Bruno lat_ns *= speed * 1000; 1194e373323fSSean Bruno lat_ns /= 8; 1195e373323fSSean Bruno lat_ns /= 1000000000; 1196e373323fSSean Bruno obff_hwm = (s32)(rxa - lat_ns); 1197e373323fSSean Bruno } 1198e373323fSSean Bruno if ((obff_hwm < 0) || (obff_hwm > E1000_SVT_OFF_HWM_MASK)) { 1199e373323fSSean Bruno DEBUGOUT1("Invalid high water mark %d\n", obff_hwm); 1200e373323fSSean Bruno return -E1000_ERR_CONFIG; 1201e373323fSSean Bruno } 1202e373323fSSean Bruno } 1203e373323fSSean Bruno 1204e373323fSSean Bruno /* Set Snoop and No-Snoop latencies the same */ 1205e373323fSSean Bruno reg |= lat_enc | (lat_enc << E1000_LTRV_NOSNOOP_SHIFT); 1206e373323fSSean Bruno E1000_WRITE_REG(hw, E1000_LTRV, reg); 1207e373323fSSean Bruno 1208e373323fSSean Bruno /* Set OBFF high water mark */ 1209e373323fSSean Bruno reg = E1000_READ_REG(hw, E1000_SVT) & ~E1000_SVT_OFF_HWM_MASK; 1210e373323fSSean Bruno reg |= obff_hwm; 1211e373323fSSean Bruno E1000_WRITE_REG(hw, E1000_SVT, reg); 1212e373323fSSean Bruno 1213e373323fSSean Bruno /* Enable OBFF */ 1214e373323fSSean Bruno reg = E1000_READ_REG(hw, E1000_SVCR); 1215e373323fSSean Bruno reg |= E1000_SVCR_OFF_EN; 1216e373323fSSean Bruno /* Always unblock interrupts to the CPU even when the system is 1217e373323fSSean Bruno * in OBFF mode. This ensures that small round-robin traffic 1218e373323fSSean Bruno * (like ping) does not get dropped or experience long latency. 1219e373323fSSean Bruno */ 1220e373323fSSean Bruno reg |= E1000_SVCR_OFF_MASKINT; 1221e373323fSSean Bruno E1000_WRITE_REG(hw, E1000_SVCR, reg); 1222e373323fSSean Bruno 1223e373323fSSean Bruno return E1000_SUCCESS; 1224e373323fSSean Bruno } 1225e373323fSSean Bruno 1226e373323fSSean Bruno /** 1227e373323fSSean Bruno * e1000_set_obff_timer_pch_lpt - Update Optimized Buffer Flush/Fill timer 1228e373323fSSean Bruno * @hw: pointer to the HW structure 1229e373323fSSean Bruno * @itr: interrupt throttling rate 1230e373323fSSean Bruno * 1231e373323fSSean Bruno * Configure OBFF with the updated interrupt rate. 1232e373323fSSean Bruno **/ 1233e373323fSSean Bruno static s32 e1000_set_obff_timer_pch_lpt(struct e1000_hw *hw, u32 itr) 1234e373323fSSean Bruno { 1235e373323fSSean Bruno u32 svcr; 1236e373323fSSean Bruno s32 timer; 1237e373323fSSean Bruno 1238e373323fSSean Bruno DEBUGFUNC("e1000_set_obff_timer_pch_lpt"); 1239e373323fSSean Bruno 1240e373323fSSean Bruno /* Convert ITR value into microseconds for OBFF timer */ 1241e373323fSSean Bruno timer = itr & E1000_ITR_MASK; 1242e373323fSSean Bruno timer = (timer * E1000_ITR_MULT) / 1000; 1243e373323fSSean Bruno 1244e373323fSSean Bruno if ((timer < 0) || (timer > E1000_ITR_MASK)) { 1245e373323fSSean Bruno DEBUGOUT1("Invalid OBFF timer %d\n", timer); 1246e373323fSSean Bruno return -E1000_ERR_CONFIG; 1247e373323fSSean Bruno } 1248e373323fSSean Bruno 1249e373323fSSean Bruno svcr = E1000_READ_REG(hw, E1000_SVCR); 1250e373323fSSean Bruno svcr &= ~E1000_SVCR_OFF_TIMER_MASK; 1251e373323fSSean Bruno svcr |= timer << E1000_SVCR_OFF_TIMER_SHIFT; 1252e373323fSSean Bruno E1000_WRITE_REG(hw, E1000_SVCR, svcr); 1253e373323fSSean Bruno 1254e373323fSSean Bruno return E1000_SUCCESS; 1255e373323fSSean Bruno } 1256e373323fSSean Bruno 12577d9119bdSJack F Vogel /** 12588cc64f1eSJack F Vogel * e1000_enable_ulp_lpt_lp - configure Ultra Low Power mode for LynxPoint-LP 12598cc64f1eSJack F Vogel * @hw: pointer to the HW structure 12608cc64f1eSJack F Vogel * @to_sx: boolean indicating a system power state transition to Sx 12618cc64f1eSJack F Vogel * 12628cc64f1eSJack F Vogel * When link is down, configure ULP mode to significantly reduce the power 12638cc64f1eSJack F Vogel * to the PHY. If on a Manageability Engine (ME) enabled system, tell the 12648cc64f1eSJack F Vogel * ME firmware to start the ULP configuration. If not on an ME enabled 12658cc64f1eSJack F Vogel * system, configure the ULP mode by software. 12668cc64f1eSJack F Vogel */ 12678cc64f1eSJack F Vogel s32 e1000_enable_ulp_lpt_lp(struct e1000_hw *hw, bool to_sx) 12688cc64f1eSJack F Vogel { 12698cc64f1eSJack F Vogel u32 mac_reg; 12708cc64f1eSJack F Vogel s32 ret_val = E1000_SUCCESS; 12718cc64f1eSJack F Vogel u16 phy_reg; 1272c80429ceSEric Joyner u16 oem_reg = 0; 12738cc64f1eSJack F Vogel 12748cc64f1eSJack F Vogel if ((hw->mac.type < e1000_pch_lpt) || 12758cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_LPT_I217_LM) || 12768cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_LPT_I217_V) || 12778cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_I218_LM2) || 12788cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_I218_V2) || 12798cc64f1eSJack F Vogel (hw->dev_spec.ich8lan.ulp_state == e1000_ulp_state_on)) 12808cc64f1eSJack F Vogel return 0; 12818cc64f1eSJack F Vogel 1282fc7682b1SKevin Bowling if (E1000_READ_REG(hw, E1000_FWSM) & E1000_ICH_FWSM_FW_VALID) { 1283fc7682b1SKevin Bowling /* Request ME configure ULP mode in the PHY */ 1284fc7682b1SKevin Bowling mac_reg = E1000_READ_REG(hw, E1000_H2ME); 1285fc7682b1SKevin Bowling mac_reg |= E1000_H2ME_ULP | E1000_H2ME_ENFORCE_SETTINGS; 1286fc7682b1SKevin Bowling E1000_WRITE_REG(hw, E1000_H2ME, mac_reg); 1287fc7682b1SKevin Bowling 1288fc7682b1SKevin Bowling goto out; 12898cc64f1eSJack F Vogel } 12908cc64f1eSJack F Vogel 1291a4378873SKevin Bowling if (!to_sx) { 1292a4378873SKevin Bowling int i = 0; 1293a4378873SKevin Bowling 1294a4378873SKevin Bowling /* Poll up to 5 seconds for Cable Disconnected indication */ 1295a4378873SKevin Bowling while (!(E1000_READ_REG(hw, E1000_FEXT) & 1296a4378873SKevin Bowling E1000_FEXT_PHY_CABLE_DISCONNECTED)) { 1297a4378873SKevin Bowling /* Bail if link is re-acquired */ 1298a4378873SKevin Bowling if (E1000_READ_REG(hw, E1000_STATUS) & E1000_STATUS_LU) 1299a4378873SKevin Bowling return -E1000_ERR_PHY; 1300a4378873SKevin Bowling 1301a4378873SKevin Bowling if (i++ == 100) 1302a4378873SKevin Bowling break; 1303a4378873SKevin Bowling 1304a4378873SKevin Bowling msec_delay(50); 1305a4378873SKevin Bowling } 1306a4378873SKevin Bowling DEBUGOUT2("CABLE_DISCONNECTED %s set after %dmsec\n", 1307a4378873SKevin Bowling (E1000_READ_REG(hw, E1000_FEXT) & 1308a4378873SKevin Bowling E1000_FEXT_PHY_CABLE_DISCONNECTED) ? "" : "not", 1309a4378873SKevin Bowling i * 50); 1310a4378873SKevin Bowling } 1311a4378873SKevin Bowling 13128cc64f1eSJack F Vogel ret_val = hw->phy.ops.acquire(hw); 13138cc64f1eSJack F Vogel if (ret_val) 13148cc64f1eSJack F Vogel goto out; 13158cc64f1eSJack F Vogel 13168cc64f1eSJack F Vogel /* Force SMBus mode in PHY */ 13178cc64f1eSJack F Vogel ret_val = e1000_read_phy_reg_hv_locked(hw, CV_SMB_CTRL, &phy_reg); 13188cc64f1eSJack F Vogel if (ret_val) 13198cc64f1eSJack F Vogel goto release; 13208cc64f1eSJack F Vogel phy_reg |= CV_SMB_CTRL_FORCE_SMBUS; 13218cc64f1eSJack F Vogel e1000_write_phy_reg_hv_locked(hw, CV_SMB_CTRL, phy_reg); 13228cc64f1eSJack F Vogel 13238cc64f1eSJack F Vogel /* Force SMBus mode in MAC */ 13248cc64f1eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_CTRL_EXT); 13258cc64f1eSJack F Vogel mac_reg |= E1000_CTRL_EXT_FORCE_SMBUS; 13268cc64f1eSJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL_EXT, mac_reg); 13278cc64f1eSJack F Vogel 1328a4378873SKevin Bowling /* Si workaround for ULP entry flow on i127/rev6 h/w. Enable 1329c80429ceSEric Joyner * LPLU and disable Gig speed when entering ULP 1330c80429ceSEric Joyner */ 1331c80429ceSEric Joyner if ((hw->phy.type == e1000_phy_i217) && (hw->phy.revision == 6)) { 1332c80429ceSEric Joyner ret_val = e1000_read_phy_reg_hv_locked(hw, HV_OEM_BITS, 1333c80429ceSEric Joyner &oem_reg); 1334c80429ceSEric Joyner if (ret_val) 1335c80429ceSEric Joyner goto release; 1336c80429ceSEric Joyner 1337c80429ceSEric Joyner phy_reg = oem_reg; 1338c80429ceSEric Joyner phy_reg |= HV_OEM_BITS_LPLU | HV_OEM_BITS_GBE_DIS; 1339c80429ceSEric Joyner 1340c80429ceSEric Joyner ret_val = e1000_write_phy_reg_hv_locked(hw, HV_OEM_BITS, 1341c80429ceSEric Joyner phy_reg); 1342c80429ceSEric Joyner 1343c80429ceSEric Joyner if (ret_val) 1344c80429ceSEric Joyner goto release; 1345c80429ceSEric Joyner } 1346c80429ceSEric Joyner 13478cc64f1eSJack F Vogel /* Set Inband ULP Exit, Reset to SMBus mode and 13488cc64f1eSJack F Vogel * Disable SMBus Release on PERST# in PHY 13498cc64f1eSJack F Vogel */ 13508cc64f1eSJack F Vogel ret_val = e1000_read_phy_reg_hv_locked(hw, I218_ULP_CONFIG1, &phy_reg); 13518cc64f1eSJack F Vogel if (ret_val) 13528cc64f1eSJack F Vogel goto release; 13538cc64f1eSJack F Vogel phy_reg |= (I218_ULP_CONFIG1_RESET_TO_SMBUS | 13548cc64f1eSJack F Vogel I218_ULP_CONFIG1_DISABLE_SMB_PERST); 13558cc64f1eSJack F Vogel if (to_sx) { 13568cc64f1eSJack F Vogel if (E1000_READ_REG(hw, E1000_WUFC) & E1000_WUFC_LNKC) 13578cc64f1eSJack F Vogel phy_reg |= I218_ULP_CONFIG1_WOL_HOST; 1358c80429ceSEric Joyner else 1359c80429ceSEric Joyner phy_reg &= ~I218_ULP_CONFIG1_WOL_HOST; 13608cc64f1eSJack F Vogel 13618cc64f1eSJack F Vogel phy_reg |= I218_ULP_CONFIG1_STICKY_ULP; 1362c80429ceSEric Joyner phy_reg &= ~I218_ULP_CONFIG1_INBAND_EXIT; 13638cc64f1eSJack F Vogel } else { 13648cc64f1eSJack F Vogel phy_reg |= I218_ULP_CONFIG1_INBAND_EXIT; 1365c80429ceSEric Joyner phy_reg &= ~I218_ULP_CONFIG1_STICKY_ULP; 1366c80429ceSEric Joyner phy_reg &= ~I218_ULP_CONFIG1_WOL_HOST; 13678cc64f1eSJack F Vogel } 13688cc64f1eSJack F Vogel e1000_write_phy_reg_hv_locked(hw, I218_ULP_CONFIG1, phy_reg); 13698cc64f1eSJack F Vogel 13708cc64f1eSJack F Vogel /* Set Disable SMBus Release on PERST# in MAC */ 13718cc64f1eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_FEXTNVM7); 13728cc64f1eSJack F Vogel mac_reg |= E1000_FEXTNVM7_DISABLE_SMB_PERST; 13738cc64f1eSJack F Vogel E1000_WRITE_REG(hw, E1000_FEXTNVM7, mac_reg); 13748cc64f1eSJack F Vogel 13758cc64f1eSJack F Vogel /* Commit ULP changes in PHY by starting auto ULP configuration */ 13768cc64f1eSJack F Vogel phy_reg |= I218_ULP_CONFIG1_START; 13778cc64f1eSJack F Vogel e1000_write_phy_reg_hv_locked(hw, I218_ULP_CONFIG1, phy_reg); 1378c80429ceSEric Joyner 1379c80429ceSEric Joyner if ((hw->phy.type == e1000_phy_i217) && (hw->phy.revision == 6) && 1380c80429ceSEric Joyner to_sx && (E1000_READ_REG(hw, E1000_STATUS) & E1000_STATUS_LU)) { 1381c80429ceSEric Joyner ret_val = e1000_write_phy_reg_hv_locked(hw, HV_OEM_BITS, 1382c80429ceSEric Joyner oem_reg); 1383c80429ceSEric Joyner if (ret_val) 1384c80429ceSEric Joyner goto release; 1385c80429ceSEric Joyner } 1386c80429ceSEric Joyner 13878cc64f1eSJack F Vogel release: 13888cc64f1eSJack F Vogel hw->phy.ops.release(hw); 13898cc64f1eSJack F Vogel out: 13908cc64f1eSJack F Vogel if (ret_val) 13918cc64f1eSJack F Vogel DEBUGOUT1("Error in ULP enable flow: %d\n", ret_val); 13928cc64f1eSJack F Vogel else 13938cc64f1eSJack F Vogel hw->dev_spec.ich8lan.ulp_state = e1000_ulp_state_on; 13948cc64f1eSJack F Vogel 13958cc64f1eSJack F Vogel return ret_val; 13968cc64f1eSJack F Vogel } 13978cc64f1eSJack F Vogel 13988cc64f1eSJack F Vogel /** 13998cc64f1eSJack F Vogel * e1000_disable_ulp_lpt_lp - unconfigure Ultra Low Power mode for LynxPoint-LP 14008cc64f1eSJack F Vogel * @hw: pointer to the HW structure 14018cc64f1eSJack F Vogel * @force: boolean indicating whether or not to force disabling ULP 14028cc64f1eSJack F Vogel * 14038cc64f1eSJack F Vogel * Un-configure ULP mode when link is up, the system is transitioned from 14048cc64f1eSJack F Vogel * Sx or the driver is unloaded. If on a Manageability Engine (ME) enabled 14058cc64f1eSJack F Vogel * system, poll for an indication from ME that ULP has been un-configured. 14068cc64f1eSJack F Vogel * If not on an ME enabled system, un-configure the ULP mode by software. 14078cc64f1eSJack F Vogel * 14088cc64f1eSJack F Vogel * During nominal operation, this function is called when link is acquired 14098cc64f1eSJack F Vogel * to disable ULP mode (force=FALSE); otherwise, for example when unloading 14108cc64f1eSJack F Vogel * the driver or during Sx->S0 transitions, this is called with force=TRUE 14118cc64f1eSJack F Vogel * to forcibly disable ULP. 14128cc64f1eSJack F Vogel */ 14138cc64f1eSJack F Vogel s32 e1000_disable_ulp_lpt_lp(struct e1000_hw *hw, bool force) 14148cc64f1eSJack F Vogel { 14158cc64f1eSJack F Vogel s32 ret_val = E1000_SUCCESS; 14168cc64f1eSJack F Vogel u32 mac_reg; 14178cc64f1eSJack F Vogel u16 phy_reg; 14188cc64f1eSJack F Vogel int i = 0; 14198cc64f1eSJack F Vogel 14208cc64f1eSJack F Vogel if ((hw->mac.type < e1000_pch_lpt) || 14218cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_LPT_I217_LM) || 14228cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_LPT_I217_V) || 14238cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_I218_LM2) || 14248cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_I218_V2) || 14258cc64f1eSJack F Vogel (hw->dev_spec.ich8lan.ulp_state == e1000_ulp_state_off)) 14268cc64f1eSJack F Vogel return 0; 14278cc64f1eSJack F Vogel 14288cc64f1eSJack F Vogel if (E1000_READ_REG(hw, E1000_FWSM) & E1000_ICH_FWSM_FW_VALID) { 14298cc64f1eSJack F Vogel if (force) { 14308cc64f1eSJack F Vogel /* Request ME un-configure ULP mode in the PHY */ 14318cc64f1eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_H2ME); 14328cc64f1eSJack F Vogel mac_reg &= ~E1000_H2ME_ULP; 14338cc64f1eSJack F Vogel mac_reg |= E1000_H2ME_ENFORCE_SETTINGS; 14348cc64f1eSJack F Vogel E1000_WRITE_REG(hw, E1000_H2ME, mac_reg); 14358cc64f1eSJack F Vogel } 14368cc64f1eSJack F Vogel 1437a4378873SKevin Bowling /* Poll up to 300msec for ME to clear ULP_CFG_DONE. */ 14388cc64f1eSJack F Vogel while (E1000_READ_REG(hw, E1000_FWSM) & 14398cc64f1eSJack F Vogel E1000_FWSM_ULP_CFG_DONE) { 1440a4378873SKevin Bowling if (i++ == 30) { 14418cc64f1eSJack F Vogel ret_val = -E1000_ERR_PHY; 14428cc64f1eSJack F Vogel goto out; 14438cc64f1eSJack F Vogel } 14448cc64f1eSJack F Vogel 14458cc64f1eSJack F Vogel msec_delay(10); 14468cc64f1eSJack F Vogel } 14478cc64f1eSJack F Vogel DEBUGOUT1("ULP_CONFIG_DONE cleared after %dmsec\n", i * 10); 14488cc64f1eSJack F Vogel 14498cc64f1eSJack F Vogel if (force) { 14508cc64f1eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_H2ME); 14518cc64f1eSJack F Vogel mac_reg &= ~E1000_H2ME_ENFORCE_SETTINGS; 14528cc64f1eSJack F Vogel E1000_WRITE_REG(hw, E1000_H2ME, mac_reg); 14538cc64f1eSJack F Vogel } else { 14548cc64f1eSJack F Vogel /* Clear H2ME.ULP after ME ULP configuration */ 14558cc64f1eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_H2ME); 14568cc64f1eSJack F Vogel mac_reg &= ~E1000_H2ME_ULP; 14578cc64f1eSJack F Vogel E1000_WRITE_REG(hw, E1000_H2ME, mac_reg); 14588cc64f1eSJack F Vogel } 14598cc64f1eSJack F Vogel 14608cc64f1eSJack F Vogel goto out; 14618cc64f1eSJack F Vogel } 14628cc64f1eSJack F Vogel 14638cc64f1eSJack F Vogel ret_val = hw->phy.ops.acquire(hw); 14648cc64f1eSJack F Vogel if (ret_val) 14658cc64f1eSJack F Vogel goto out; 14668cc64f1eSJack F Vogel 14678cc64f1eSJack F Vogel if (force) 14688cc64f1eSJack F Vogel /* Toggle LANPHYPC Value bit */ 14698cc64f1eSJack F Vogel e1000_toggle_lanphypc_pch_lpt(hw); 14708cc64f1eSJack F Vogel 14718cc64f1eSJack F Vogel /* Unforce SMBus mode in PHY */ 14728cc64f1eSJack F Vogel ret_val = e1000_read_phy_reg_hv_locked(hw, CV_SMB_CTRL, &phy_reg); 14738cc64f1eSJack F Vogel if (ret_val) { 14748cc64f1eSJack F Vogel /* The MAC might be in PCIe mode, so temporarily force to 14758cc64f1eSJack F Vogel * SMBus mode in order to access the PHY. 14768cc64f1eSJack F Vogel */ 14778cc64f1eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_CTRL_EXT); 14788cc64f1eSJack F Vogel mac_reg |= E1000_CTRL_EXT_FORCE_SMBUS; 14798cc64f1eSJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL_EXT, mac_reg); 14808cc64f1eSJack F Vogel 14818cc64f1eSJack F Vogel msec_delay(50); 14828cc64f1eSJack F Vogel 14838cc64f1eSJack F Vogel ret_val = e1000_read_phy_reg_hv_locked(hw, CV_SMB_CTRL, 14848cc64f1eSJack F Vogel &phy_reg); 14858cc64f1eSJack F Vogel if (ret_val) 14868cc64f1eSJack F Vogel goto release; 14878cc64f1eSJack F Vogel } 14888cc64f1eSJack F Vogel phy_reg &= ~CV_SMB_CTRL_FORCE_SMBUS; 14898cc64f1eSJack F Vogel e1000_write_phy_reg_hv_locked(hw, CV_SMB_CTRL, phy_reg); 14908cc64f1eSJack F Vogel 14918cc64f1eSJack F Vogel /* Unforce SMBus mode in MAC */ 14928cc64f1eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_CTRL_EXT); 14938cc64f1eSJack F Vogel mac_reg &= ~E1000_CTRL_EXT_FORCE_SMBUS; 14948cc64f1eSJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL_EXT, mac_reg); 14958cc64f1eSJack F Vogel 14968cc64f1eSJack F Vogel /* When ULP mode was previously entered, K1 was disabled by the 14978cc64f1eSJack F Vogel * hardware. Re-Enable K1 in the PHY when exiting ULP. 14988cc64f1eSJack F Vogel */ 14998cc64f1eSJack F Vogel ret_val = e1000_read_phy_reg_hv_locked(hw, HV_PM_CTRL, &phy_reg); 15008cc64f1eSJack F Vogel if (ret_val) 15018cc64f1eSJack F Vogel goto release; 15028cc64f1eSJack F Vogel phy_reg |= HV_PM_CTRL_K1_ENABLE; 15038cc64f1eSJack F Vogel e1000_write_phy_reg_hv_locked(hw, HV_PM_CTRL, phy_reg); 15048cc64f1eSJack F Vogel 15058cc64f1eSJack F Vogel /* Clear ULP enabled configuration */ 15068cc64f1eSJack F Vogel ret_val = e1000_read_phy_reg_hv_locked(hw, I218_ULP_CONFIG1, &phy_reg); 15078cc64f1eSJack F Vogel if (ret_val) 15088cc64f1eSJack F Vogel goto release; 15098cc64f1eSJack F Vogel phy_reg &= ~(I218_ULP_CONFIG1_IND | 15108cc64f1eSJack F Vogel I218_ULP_CONFIG1_STICKY_ULP | 15118cc64f1eSJack F Vogel I218_ULP_CONFIG1_RESET_TO_SMBUS | 15128cc64f1eSJack F Vogel I218_ULP_CONFIG1_WOL_HOST | 15138cc64f1eSJack F Vogel I218_ULP_CONFIG1_INBAND_EXIT | 1514c80429ceSEric Joyner I218_ULP_CONFIG1_EN_ULP_LANPHYPC | 1515c80429ceSEric Joyner I218_ULP_CONFIG1_DIS_CLR_STICKY_ON_PERST | 15168cc64f1eSJack F Vogel I218_ULP_CONFIG1_DISABLE_SMB_PERST); 15178cc64f1eSJack F Vogel e1000_write_phy_reg_hv_locked(hw, I218_ULP_CONFIG1, phy_reg); 15188cc64f1eSJack F Vogel 15198cc64f1eSJack F Vogel /* Commit ULP changes by starting auto ULP configuration */ 15208cc64f1eSJack F Vogel phy_reg |= I218_ULP_CONFIG1_START; 15218cc64f1eSJack F Vogel e1000_write_phy_reg_hv_locked(hw, I218_ULP_CONFIG1, phy_reg); 15228cc64f1eSJack F Vogel 15238cc64f1eSJack F Vogel /* Clear Disable SMBus Release on PERST# in MAC */ 15248cc64f1eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_FEXTNVM7); 15258cc64f1eSJack F Vogel mac_reg &= ~E1000_FEXTNVM7_DISABLE_SMB_PERST; 15268cc64f1eSJack F Vogel E1000_WRITE_REG(hw, E1000_FEXTNVM7, mac_reg); 15278cc64f1eSJack F Vogel 15288cc64f1eSJack F Vogel release: 15298cc64f1eSJack F Vogel hw->phy.ops.release(hw); 15308cc64f1eSJack F Vogel if (force) { 15318cc64f1eSJack F Vogel hw->phy.ops.reset(hw); 15328cc64f1eSJack F Vogel msec_delay(50); 15338cc64f1eSJack F Vogel } 15348cc64f1eSJack F Vogel out: 15358cc64f1eSJack F Vogel if (ret_val) 15368cc64f1eSJack F Vogel DEBUGOUT1("Error in ULP disable flow: %d\n", ret_val); 15378cc64f1eSJack F Vogel else 15388cc64f1eSJack F Vogel hw->dev_spec.ich8lan.ulp_state = e1000_ulp_state_off; 15398cc64f1eSJack F Vogel 15408cc64f1eSJack F Vogel return ret_val; 15418cc64f1eSJack F Vogel } 15428cc64f1eSJack F Vogel 15438cc64f1eSJack F Vogel /** 15444edd8523SJack F Vogel * e1000_check_for_copper_link_ich8lan - Check for link (Copper) 15454edd8523SJack F Vogel * @hw: pointer to the HW structure 15464edd8523SJack F Vogel * 15474edd8523SJack F Vogel * Checks to see of the link status of the hardware has changed. If a 15484edd8523SJack F Vogel * change in link status has been detected, then we read the PHY registers 15494edd8523SJack F Vogel * to get the current speed/duplex if link exists. 15504edd8523SJack F Vogel **/ 15514edd8523SJack F Vogel static s32 e1000_check_for_copper_link_ich8lan(struct e1000_hw *hw) 15524edd8523SJack F Vogel { 15534edd8523SJack F Vogel struct e1000_mac_info *mac = &hw->mac; 1554c80429ceSEric Joyner s32 ret_val, tipg_reg = 0; 1555c80429ceSEric Joyner u16 emi_addr, emi_val = 0; 1556a4378873SKevin Bowling bool link; 15574dab5c37SJack F Vogel u16 phy_reg; 15584edd8523SJack F Vogel 15594edd8523SJack F Vogel DEBUGFUNC("e1000_check_for_copper_link_ich8lan"); 15604edd8523SJack F Vogel 15616ab6bfe3SJack F Vogel /* We only want to go out to the PHY registers to see if Auto-Neg 15624edd8523SJack F Vogel * has completed and/or if our link status has changed. The 15634edd8523SJack F Vogel * get_link_status flag is set upon receiving a Link Status 15644edd8523SJack F Vogel * Change or Rx Sequence Error interrupt. 15654edd8523SJack F Vogel */ 15666ab6bfe3SJack F Vogel if (!mac->get_link_status) 15676ab6bfe3SJack F Vogel return E1000_SUCCESS; 15684edd8523SJack F Vogel 15696ab6bfe3SJack F Vogel /* First we want to see if the MII Status Register reports 15704edd8523SJack F Vogel * link. If so, then we want to get the current speed/duplex 15714edd8523SJack F Vogel * of the PHY. 15724edd8523SJack F Vogel */ 15734edd8523SJack F Vogel ret_val = e1000_phy_has_link_generic(hw, 1, 0, &link); 15744edd8523SJack F Vogel if (ret_val) 15756ab6bfe3SJack F Vogel return ret_val; 15764edd8523SJack F Vogel 15774edd8523SJack F Vogel if (hw->mac.type == e1000_pchlan) { 15784edd8523SJack F Vogel ret_val = e1000_k1_gig_workaround_hv(hw, link); 15794edd8523SJack F Vogel if (ret_val) 15806ab6bfe3SJack F Vogel return ret_val; 15814edd8523SJack F Vogel } 15824edd8523SJack F Vogel 15838cc64f1eSJack F Vogel /* When connected at 10Mbps half-duplex, some parts are excessively 15846ab6bfe3SJack F Vogel * aggressive resulting in many collisions. To avoid this, increase 15856ab6bfe3SJack F Vogel * the IPG and reduce Rx latency in the PHY. 15866ab6bfe3SJack F Vogel */ 1587295df609SEric Joyner if ((hw->mac.type >= e1000_pch2lan) && link) { 1588c80429ceSEric Joyner u16 speed, duplex; 15898cc64f1eSJack F Vogel 1590c80429ceSEric Joyner e1000_get_speed_and_duplex_copper_generic(hw, &speed, &duplex); 1591c80429ceSEric Joyner tipg_reg = E1000_READ_REG(hw, E1000_TIPG); 1592c80429ceSEric Joyner tipg_reg &= ~E1000_TIPG_IPGT_MASK; 15936ab6bfe3SJack F Vogel 1594c80429ceSEric Joyner if (duplex == HALF_DUPLEX && speed == SPEED_10) { 1595c80429ceSEric Joyner tipg_reg |= 0xFF; 15966ab6bfe3SJack F Vogel /* Reduce Rx latency in analog PHY */ 1597c80429ceSEric Joyner emi_val = 0; 1598295df609SEric Joyner } else if (hw->mac.type >= e1000_pch_spt && 1599c80429ceSEric Joyner duplex == FULL_DUPLEX && speed != SPEED_1000) { 1600c80429ceSEric Joyner tipg_reg |= 0xC; 1601c80429ceSEric Joyner emi_val = 1; 1602c80429ceSEric Joyner } else { 1603c80429ceSEric Joyner /* Roll back the default values */ 1604c80429ceSEric Joyner tipg_reg |= 0x08; 1605c80429ceSEric Joyner emi_val = 1; 1606c80429ceSEric Joyner } 1607c80429ceSEric Joyner 1608c80429ceSEric Joyner E1000_WRITE_REG(hw, E1000_TIPG, tipg_reg); 1609c80429ceSEric Joyner 16106ab6bfe3SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 16116ab6bfe3SJack F Vogel if (ret_val) 16126ab6bfe3SJack F Vogel return ret_val; 16136ab6bfe3SJack F Vogel 16148cc64f1eSJack F Vogel if (hw->mac.type == e1000_pch2lan) 16158cc64f1eSJack F Vogel emi_addr = I82579_RX_CONFIG; 16168cc64f1eSJack F Vogel else 16178cc64f1eSJack F Vogel emi_addr = I217_RX_CONFIG; 1618c80429ceSEric Joyner ret_val = e1000_write_emi_reg_locked(hw, emi_addr, emi_val); 16196ab6bfe3SJack F Vogel 1620295df609SEric Joyner 1621295df609SEric Joyner if (hw->mac.type >= e1000_pch_lpt) { 1622a4378873SKevin Bowling u16 phy_reg; 1623a4378873SKevin Bowling 1624c80429ceSEric Joyner hw->phy.ops.read_reg_locked(hw, I217_PLL_CLOCK_GATE_REG, 1625c80429ceSEric Joyner &phy_reg); 1626c80429ceSEric Joyner phy_reg &= ~I217_PLL_CLOCK_GATE_MASK; 1627c80429ceSEric Joyner if (speed == SPEED_100 || speed == SPEED_10) 1628c80429ceSEric Joyner phy_reg |= 0x3E8; 1629c80429ceSEric Joyner else 1630c80429ceSEric Joyner phy_reg |= 0xFA; 1631c80429ceSEric Joyner hw->phy.ops.write_reg_locked(hw, 1632c80429ceSEric Joyner I217_PLL_CLOCK_GATE_REG, 1633c80429ceSEric Joyner phy_reg); 1634e760e292SSean Bruno 1635e760e292SSean Bruno if (speed == SPEED_1000) { 1636e760e292SSean Bruno hw->phy.ops.read_reg_locked(hw, HV_PM_CTRL, 1637e760e292SSean Bruno &phy_reg); 1638e760e292SSean Bruno 1639e760e292SSean Bruno phy_reg |= HV_PM_CTRL_K1_CLK_REQ; 1640e760e292SSean Bruno 1641e760e292SSean Bruno hw->phy.ops.write_reg_locked(hw, HV_PM_CTRL, 1642e760e292SSean Bruno phy_reg); 1643e760e292SSean Bruno } 1644c80429ceSEric Joyner } 16456ab6bfe3SJack F Vogel hw->phy.ops.release(hw); 16466ab6bfe3SJack F Vogel 16476ab6bfe3SJack F Vogel if (ret_val) 16486ab6bfe3SJack F Vogel return ret_val; 1649c80429ceSEric Joyner 1650295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) { 1651c80429ceSEric Joyner u16 data; 1652c80429ceSEric Joyner u16 ptr_gap; 1653c80429ceSEric Joyner 1654c80429ceSEric Joyner if (speed == SPEED_1000) { 1655c80429ceSEric Joyner ret_val = hw->phy.ops.acquire(hw); 1656c80429ceSEric Joyner if (ret_val) 1657c80429ceSEric Joyner return ret_val; 1658c80429ceSEric Joyner 1659c80429ceSEric Joyner ret_val = hw->phy.ops.read_reg_locked(hw, 1660c80429ceSEric Joyner PHY_REG(776, 20), 1661c80429ceSEric Joyner &data); 1662c80429ceSEric Joyner if (ret_val) { 1663c80429ceSEric Joyner hw->phy.ops.release(hw); 1664c80429ceSEric Joyner return ret_val; 16656ab6bfe3SJack F Vogel } 1666c80429ceSEric Joyner 1667c80429ceSEric Joyner ptr_gap = (data & (0x3FF << 2)) >> 2; 1668c80429ceSEric Joyner if (ptr_gap < 0x18) { 1669c80429ceSEric Joyner data &= ~(0x3FF << 2); 1670c80429ceSEric Joyner data |= (0x18 << 2); 1671c80429ceSEric Joyner ret_val = 1672c80429ceSEric Joyner hw->phy.ops.write_reg_locked(hw, 1673c80429ceSEric Joyner PHY_REG(776, 20), data); 1674c80429ceSEric Joyner } 1675c80429ceSEric Joyner hw->phy.ops.release(hw); 1676c80429ceSEric Joyner if (ret_val) 1677c80429ceSEric Joyner return ret_val; 1678c80429ceSEric Joyner } else { 1679c80429ceSEric Joyner ret_val = hw->phy.ops.acquire(hw); 1680c80429ceSEric Joyner if (ret_val) 1681c80429ceSEric Joyner return ret_val; 1682c80429ceSEric Joyner 1683c80429ceSEric Joyner ret_val = hw->phy.ops.write_reg_locked(hw, 1684c80429ceSEric Joyner PHY_REG(776, 20), 1685c80429ceSEric Joyner 0xC023); 1686c80429ceSEric Joyner hw->phy.ops.release(hw); 1687c80429ceSEric Joyner if (ret_val) 1688c80429ceSEric Joyner return ret_val; 1689c80429ceSEric Joyner 1690c80429ceSEric Joyner } 1691c80429ceSEric Joyner } 1692c80429ceSEric Joyner } 1693c80429ceSEric Joyner 1694c80429ceSEric Joyner /* I217 Packet Loss issue: 1695c80429ceSEric Joyner * ensure that FEXTNVM4 Beacon Duration is set correctly 1696c80429ceSEric Joyner * on power up. 1697c80429ceSEric Joyner * Set the Beacon Duration for I217 to 8 usec 1698c80429ceSEric Joyner */ 1699295df609SEric Joyner if (hw->mac.type >= e1000_pch_lpt) { 1700c80429ceSEric Joyner u32 mac_reg; 1701c80429ceSEric Joyner 1702c80429ceSEric Joyner mac_reg = E1000_READ_REG(hw, E1000_FEXTNVM4); 1703c80429ceSEric Joyner mac_reg &= ~E1000_FEXTNVM4_BEACON_DURATION_MASK; 1704c80429ceSEric Joyner mac_reg |= E1000_FEXTNVM4_BEACON_DURATION_8USEC; 1705c80429ceSEric Joyner E1000_WRITE_REG(hw, E1000_FEXTNVM4, mac_reg); 17066ab6bfe3SJack F Vogel } 17076ab6bfe3SJack F Vogel 17086ab6bfe3SJack F Vogel /* Work-around I218 hang issue */ 17096ab6bfe3SJack F Vogel if ((hw->device_id == E1000_DEV_ID_PCH_LPTLP_I218_LM) || 17108cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_LPTLP_I218_V) || 17118cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_I218_LM3) || 17128cc64f1eSJack F Vogel (hw->device_id == E1000_DEV_ID_PCH_I218_V3)) { 17136ab6bfe3SJack F Vogel ret_val = e1000_k1_workaround_lpt_lp(hw, link); 17146ab6bfe3SJack F Vogel if (ret_val) 17156ab6bfe3SJack F Vogel return ret_val; 17166ab6bfe3SJack F Vogel } 1717295df609SEric Joyner if (hw->mac.type >= e1000_pch_lpt) { 1718e373323fSSean Bruno /* Set platform power management values for 1719e373323fSSean Bruno * Latency Tolerance Reporting (LTR) 1720e373323fSSean Bruno * Optimized Buffer Flush/Fill (OBFF) 1721e373323fSSean Bruno */ 1722e373323fSSean Bruno ret_val = e1000_platform_pm_pch_lpt(hw, link); 1723e373323fSSean Bruno if (ret_val) 1724e373323fSSean Bruno return ret_val; 1725e373323fSSean Bruno } 1726e373323fSSean Bruno 17276ab6bfe3SJack F Vogel /* Clear link partner's EEE ability */ 17286ab6bfe3SJack F Vogel hw->dev_spec.ich8lan.eee_lp_ability = 0; 17296ab6bfe3SJack F Vogel 1730295df609SEric Joyner if (hw->mac.type >= e1000_pch_lpt) { 1731c80429ceSEric Joyner u32 fextnvm6 = E1000_READ_REG(hw, E1000_FEXTNVM6); 1732c80429ceSEric Joyner 1733295df609SEric Joyner if (hw->mac.type == e1000_pch_spt) { 1734295df609SEric Joyner /* FEXTNVM6 K1-off workaround - for SPT only */ 1735295df609SEric Joyner u32 pcieanacfg = E1000_READ_REG(hw, E1000_PCIEANACFG); 1736295df609SEric Joyner 1737295df609SEric Joyner if (pcieanacfg & E1000_FEXTNVM6_K1_OFF_ENABLE) 1738c80429ceSEric Joyner fextnvm6 |= E1000_FEXTNVM6_K1_OFF_ENABLE; 1739c80429ceSEric Joyner else 1740c80429ceSEric Joyner fextnvm6 &= ~E1000_FEXTNVM6_K1_OFF_ENABLE; 1741295df609SEric Joyner } 1742295df609SEric Joyner 1743295df609SEric Joyner if (hw->dev_spec.ich8lan.disable_k1_off == TRUE) 1744295df609SEric Joyner fextnvm6 &= ~E1000_FEXTNVM6_K1_OFF_ENABLE; 1745c80429ceSEric Joyner 1746c80429ceSEric Joyner E1000_WRITE_REG(hw, E1000_FEXTNVM6, fextnvm6); 1747c80429ceSEric Joyner } 1748c80429ceSEric Joyner 17494edd8523SJack F Vogel if (!link) 17506ab6bfe3SJack F Vogel return E1000_SUCCESS; /* No link detected */ 17514edd8523SJack F Vogel 17524edd8523SJack F Vogel mac->get_link_status = FALSE; 17534edd8523SJack F Vogel 17544dab5c37SJack F Vogel switch (hw->mac.type) { 17554dab5c37SJack F Vogel case e1000_pch2lan: 17564dab5c37SJack F Vogel ret_val = e1000_k1_workaround_lv(hw); 17574dab5c37SJack F Vogel if (ret_val) 17586ab6bfe3SJack F Vogel return ret_val; 17594dab5c37SJack F Vogel /* fall-thru */ 17604dab5c37SJack F Vogel case e1000_pchlan: 17614edd8523SJack F Vogel if (hw->phy.type == e1000_phy_82578) { 17624edd8523SJack F Vogel ret_val = e1000_link_stall_workaround_hv(hw); 17634edd8523SJack F Vogel if (ret_val) 17646ab6bfe3SJack F Vogel return ret_val; 17654edd8523SJack F Vogel } 17664edd8523SJack F Vogel 17676ab6bfe3SJack F Vogel /* Workaround for PCHx parts in half-duplex: 17684dab5c37SJack F Vogel * Set the number of preambles removed from the packet 17694dab5c37SJack F Vogel * when it is passed from the PHY to the MAC to prevent 17704dab5c37SJack F Vogel * the MAC from misinterpreting the packet type. 17714dab5c37SJack F Vogel */ 17724dab5c37SJack F Vogel hw->phy.ops.read_reg(hw, HV_KMRN_FIFO_CTRLSTA, &phy_reg); 17734dab5c37SJack F Vogel phy_reg &= ~HV_KMRN_FIFO_CTRLSTA_PREAMBLE_MASK; 17744dab5c37SJack F Vogel 17754dab5c37SJack F Vogel if ((E1000_READ_REG(hw, E1000_STATUS) & E1000_STATUS_FD) != 17764dab5c37SJack F Vogel E1000_STATUS_FD) 17774dab5c37SJack F Vogel phy_reg |= (1 << HV_KMRN_FIFO_CTRLSTA_PREAMBLE_SHIFT); 17784dab5c37SJack F Vogel 17794dab5c37SJack F Vogel hw->phy.ops.write_reg(hw, HV_KMRN_FIFO_CTRLSTA, phy_reg); 17804dab5c37SJack F Vogel break; 17814dab5c37SJack F Vogel default: 17824dab5c37SJack F Vogel break; 17837d9119bdSJack F Vogel } 17847d9119bdSJack F Vogel 17856ab6bfe3SJack F Vogel /* Check if there was DownShift, must be checked 17864edd8523SJack F Vogel * immediately after link-up 17874edd8523SJack F Vogel */ 17884edd8523SJack F Vogel e1000_check_downshift_generic(hw); 17894edd8523SJack F Vogel 17907d9119bdSJack F Vogel /* Enable/Disable EEE after link up */ 17917609433eSJack F Vogel if (hw->phy.type > e1000_phy_82579) { 17927d9119bdSJack F Vogel ret_val = e1000_set_eee_pchlan(hw); 17937d9119bdSJack F Vogel if (ret_val) 17946ab6bfe3SJack F Vogel return ret_val; 17957609433eSJack F Vogel } 17967d9119bdSJack F Vogel 17976ab6bfe3SJack F Vogel /* If we are forcing speed/duplex, then we simply return since 17984edd8523SJack F Vogel * we have already determined whether we have link or not. 17994edd8523SJack F Vogel */ 18006ab6bfe3SJack F Vogel if (!mac->autoneg) 18016ab6bfe3SJack F Vogel return -E1000_ERR_CONFIG; 18024edd8523SJack F Vogel 18036ab6bfe3SJack F Vogel /* Auto-Neg is enabled. Auto Speed Detection takes care 18044edd8523SJack F Vogel * of MAC speed/duplex configuration. So we only need to 18054edd8523SJack F Vogel * configure Collision Distance in the MAC. 18064edd8523SJack F Vogel */ 18076ab6bfe3SJack F Vogel mac->ops.config_collision_dist(hw); 18084edd8523SJack F Vogel 18096ab6bfe3SJack F Vogel /* Configure Flow Control now that Auto-Neg has completed. 18104edd8523SJack F Vogel * First, we need to restore the desired flow control 18114edd8523SJack F Vogel * settings because we may have had to re-autoneg with a 18124edd8523SJack F Vogel * different link partner. 18134edd8523SJack F Vogel */ 18144edd8523SJack F Vogel ret_val = e1000_config_fc_after_link_up_generic(hw); 18154edd8523SJack F Vogel if (ret_val) 18164edd8523SJack F Vogel DEBUGOUT("Error configuring flow control\n"); 18174edd8523SJack F Vogel 18184edd8523SJack F Vogel return ret_val; 18194edd8523SJack F Vogel } 18204edd8523SJack F Vogel 18214edd8523SJack F Vogel /** 18228cfa0ad2SJack F Vogel * e1000_init_function_pointers_ich8lan - Initialize ICH8 function pointers 18238cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 18248cfa0ad2SJack F Vogel * 18258cfa0ad2SJack F Vogel * Initialize family-specific function pointers for PHY, MAC, and NVM. 18268cfa0ad2SJack F Vogel **/ 18278cfa0ad2SJack F Vogel void e1000_init_function_pointers_ich8lan(struct e1000_hw *hw) 18288cfa0ad2SJack F Vogel { 18298cfa0ad2SJack F Vogel DEBUGFUNC("e1000_init_function_pointers_ich8lan"); 18308cfa0ad2SJack F Vogel 18318cfa0ad2SJack F Vogel hw->mac.ops.init_params = e1000_init_mac_params_ich8lan; 18328cfa0ad2SJack F Vogel hw->nvm.ops.init_params = e1000_init_nvm_params_ich8lan; 18339d81738fSJack F Vogel switch (hw->mac.type) { 18349d81738fSJack F Vogel case e1000_ich8lan: 18359d81738fSJack F Vogel case e1000_ich9lan: 18369d81738fSJack F Vogel case e1000_ich10lan: 18378cfa0ad2SJack F Vogel hw->phy.ops.init_params = e1000_init_phy_params_ich8lan; 18389d81738fSJack F Vogel break; 18399d81738fSJack F Vogel case e1000_pchlan: 18407d9119bdSJack F Vogel case e1000_pch2lan: 18416ab6bfe3SJack F Vogel case e1000_pch_lpt: 1842c80429ceSEric Joyner case e1000_pch_spt: 18436fe4c0a0SSean Bruno case e1000_pch_cnp: 184459690eabSKevin Bowling case e1000_pch_tgp: 184559690eabSKevin Bowling case e1000_pch_adp: 184659690eabSKevin Bowling case e1000_pch_mtp: 18479d81738fSJack F Vogel hw->phy.ops.init_params = e1000_init_phy_params_pchlan; 18489d81738fSJack F Vogel break; 18499d81738fSJack F Vogel default: 18509d81738fSJack F Vogel break; 18519d81738fSJack F Vogel } 18528cfa0ad2SJack F Vogel } 18538cfa0ad2SJack F Vogel 18548cfa0ad2SJack F Vogel /** 18554edd8523SJack F Vogel * e1000_acquire_nvm_ich8lan - Acquire NVM mutex 18564edd8523SJack F Vogel * @hw: pointer to the HW structure 18574edd8523SJack F Vogel * 18584edd8523SJack F Vogel * Acquires the mutex for performing NVM operations. 18594edd8523SJack F Vogel **/ 18604edd8523SJack F Vogel static s32 e1000_acquire_nvm_ich8lan(struct e1000_hw *hw) 18614edd8523SJack F Vogel { 18624edd8523SJack F Vogel DEBUGFUNC("e1000_acquire_nvm_ich8lan"); 18634edd8523SJack F Vogel 1864d5210708SMatt Macy ASSERT_CTX_LOCK_HELD(hw); 18654edd8523SJack F Vogel 18664edd8523SJack F Vogel return E1000_SUCCESS; 18674edd8523SJack F Vogel } 18684edd8523SJack F Vogel 18694edd8523SJack F Vogel /** 18704edd8523SJack F Vogel * e1000_release_nvm_ich8lan - Release NVM mutex 18714edd8523SJack F Vogel * @hw: pointer to the HW structure 18724edd8523SJack F Vogel * 18734edd8523SJack F Vogel * Releases the mutex used while performing NVM operations. 18744edd8523SJack F Vogel **/ 18754edd8523SJack F Vogel static void e1000_release_nvm_ich8lan(struct e1000_hw *hw) 18764edd8523SJack F Vogel { 18774edd8523SJack F Vogel DEBUGFUNC("e1000_release_nvm_ich8lan"); 18784edd8523SJack F Vogel 1879d5210708SMatt Macy ASSERT_CTX_LOCK_HELD(hw); 18804edd8523SJack F Vogel } 18814edd8523SJack F Vogel 18824edd8523SJack F Vogel /** 18838cfa0ad2SJack F Vogel * e1000_acquire_swflag_ich8lan - Acquire software control flag 18848cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 18858cfa0ad2SJack F Vogel * 18864edd8523SJack F Vogel * Acquires the software control flag for performing PHY and select 18874edd8523SJack F Vogel * MAC CSR accesses. 18888cfa0ad2SJack F Vogel **/ 18898cfa0ad2SJack F Vogel static s32 e1000_acquire_swflag_ich8lan(struct e1000_hw *hw) 18908cfa0ad2SJack F Vogel { 18918cfa0ad2SJack F Vogel u32 extcnf_ctrl, timeout = PHY_CFG_TIMEOUT; 18928cfa0ad2SJack F Vogel s32 ret_val = E1000_SUCCESS; 18938cfa0ad2SJack F Vogel 18948cfa0ad2SJack F Vogel DEBUGFUNC("e1000_acquire_swflag_ich8lan"); 18958cfa0ad2SJack F Vogel 1896d5210708SMatt Macy ASSERT_CTX_LOCK_HELD(hw); 18974edd8523SJack F Vogel 18988cfa0ad2SJack F Vogel while (timeout) { 18998cfa0ad2SJack F Vogel extcnf_ctrl = E1000_READ_REG(hw, E1000_EXTCNF_CTRL); 19004edd8523SJack F Vogel if (!(extcnf_ctrl & E1000_EXTCNF_CTRL_SWFLAG)) 19018cfa0ad2SJack F Vogel break; 19024edd8523SJack F Vogel 19038cfa0ad2SJack F Vogel msec_delay_irq(1); 19048cfa0ad2SJack F Vogel timeout--; 19058cfa0ad2SJack F Vogel } 19068cfa0ad2SJack F Vogel 19078cfa0ad2SJack F Vogel if (!timeout) { 19084dab5c37SJack F Vogel DEBUGOUT("SW has already locked the resource.\n"); 19094edd8523SJack F Vogel ret_val = -E1000_ERR_CONFIG; 19104edd8523SJack F Vogel goto out; 19114edd8523SJack F Vogel } 19124edd8523SJack F Vogel 19134edd8523SJack F Vogel timeout = SW_FLAG_TIMEOUT; 19144edd8523SJack F Vogel 19154edd8523SJack F Vogel extcnf_ctrl |= E1000_EXTCNF_CTRL_SWFLAG; 19164edd8523SJack F Vogel E1000_WRITE_REG(hw, E1000_EXTCNF_CTRL, extcnf_ctrl); 19174edd8523SJack F Vogel 19184edd8523SJack F Vogel while (timeout) { 19194edd8523SJack F Vogel extcnf_ctrl = E1000_READ_REG(hw, E1000_EXTCNF_CTRL); 19204edd8523SJack F Vogel if (extcnf_ctrl & E1000_EXTCNF_CTRL_SWFLAG) 19214edd8523SJack F Vogel break; 19224edd8523SJack F Vogel 19234edd8523SJack F Vogel msec_delay_irq(1); 19244edd8523SJack F Vogel timeout--; 19254edd8523SJack F Vogel } 19264edd8523SJack F Vogel 19274edd8523SJack F Vogel if (!timeout) { 19284dab5c37SJack F Vogel DEBUGOUT2("Failed to acquire the semaphore, FW or HW has it: FWSM=0x%8.8x EXTCNF_CTRL=0x%8.8x)\n", 19294dab5c37SJack F Vogel E1000_READ_REG(hw, E1000_FWSM), extcnf_ctrl); 19308cfa0ad2SJack F Vogel extcnf_ctrl &= ~E1000_EXTCNF_CTRL_SWFLAG; 19318cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_EXTCNF_CTRL, extcnf_ctrl); 19328cfa0ad2SJack F Vogel ret_val = -E1000_ERR_CONFIG; 19338cfa0ad2SJack F Vogel goto out; 19348cfa0ad2SJack F Vogel } 19358cfa0ad2SJack F Vogel 19368cfa0ad2SJack F Vogel out: 19378cfa0ad2SJack F Vogel return ret_val; 19388cfa0ad2SJack F Vogel } 19398cfa0ad2SJack F Vogel 19408cfa0ad2SJack F Vogel /** 19418cfa0ad2SJack F Vogel * e1000_release_swflag_ich8lan - Release software control flag 19428cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 19438cfa0ad2SJack F Vogel * 19444edd8523SJack F Vogel * Releases the software control flag for performing PHY and select 19454edd8523SJack F Vogel * MAC CSR accesses. 19468cfa0ad2SJack F Vogel **/ 19478cfa0ad2SJack F Vogel static void e1000_release_swflag_ich8lan(struct e1000_hw *hw) 19488cfa0ad2SJack F Vogel { 19498cfa0ad2SJack F Vogel u32 extcnf_ctrl; 19508cfa0ad2SJack F Vogel 19518cfa0ad2SJack F Vogel DEBUGFUNC("e1000_release_swflag_ich8lan"); 19528cfa0ad2SJack F Vogel 19538cfa0ad2SJack F Vogel extcnf_ctrl = E1000_READ_REG(hw, E1000_EXTCNF_CTRL); 1954730d3130SJack F Vogel 1955730d3130SJack F Vogel if (extcnf_ctrl & E1000_EXTCNF_CTRL_SWFLAG) { 19568cfa0ad2SJack F Vogel extcnf_ctrl &= ~E1000_EXTCNF_CTRL_SWFLAG; 19578cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_EXTCNF_CTRL, extcnf_ctrl); 1958730d3130SJack F Vogel } else { 1959730d3130SJack F Vogel DEBUGOUT("Semaphore unexpectedly released by sw/fw/hw\n"); 1960730d3130SJack F Vogel } 19618cfa0ad2SJack F Vogel } 19628cfa0ad2SJack F Vogel 19638cfa0ad2SJack F Vogel /** 19648cfa0ad2SJack F Vogel * e1000_check_mng_mode_ich8lan - Checks management mode 19658cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 19668cfa0ad2SJack F Vogel * 19677d9119bdSJack F Vogel * This checks if the adapter has any manageability enabled. 19688cfa0ad2SJack F Vogel * This is a function pointer entry point only called by read/write 19698cfa0ad2SJack F Vogel * routines for the PHY and NVM parts. 19708cfa0ad2SJack F Vogel **/ 19718cfa0ad2SJack F Vogel static bool e1000_check_mng_mode_ich8lan(struct e1000_hw *hw) 19728cfa0ad2SJack F Vogel { 19738cfa0ad2SJack F Vogel u32 fwsm; 19748cfa0ad2SJack F Vogel 19758cfa0ad2SJack F Vogel DEBUGFUNC("e1000_check_mng_mode_ich8lan"); 19768cfa0ad2SJack F Vogel 19778cfa0ad2SJack F Vogel fwsm = E1000_READ_REG(hw, E1000_FWSM); 19788cfa0ad2SJack F Vogel 19798cc64f1eSJack F Vogel return (fwsm & E1000_ICH_FWSM_FW_VALID) && 19807d9119bdSJack F Vogel ((fwsm & E1000_FWSM_MODE_MASK) == 19818cc64f1eSJack F Vogel (E1000_ICH_MNG_IAMT_MODE << E1000_FWSM_MODE_SHIFT)); 19827d9119bdSJack F Vogel } 19837d9119bdSJack F Vogel 19847d9119bdSJack F Vogel /** 19857d9119bdSJack F Vogel * e1000_check_mng_mode_pchlan - Checks management mode 19867d9119bdSJack F Vogel * @hw: pointer to the HW structure 19877d9119bdSJack F Vogel * 19887d9119bdSJack F Vogel * This checks if the adapter has iAMT enabled. 19897d9119bdSJack F Vogel * This is a function pointer entry point only called by read/write 19907d9119bdSJack F Vogel * routines for the PHY and NVM parts. 19917d9119bdSJack F Vogel **/ 19927d9119bdSJack F Vogel static bool e1000_check_mng_mode_pchlan(struct e1000_hw *hw) 19937d9119bdSJack F Vogel { 19947d9119bdSJack F Vogel u32 fwsm; 19957d9119bdSJack F Vogel 19967d9119bdSJack F Vogel DEBUGFUNC("e1000_check_mng_mode_pchlan"); 19977d9119bdSJack F Vogel 19987d9119bdSJack F Vogel fwsm = E1000_READ_REG(hw, E1000_FWSM); 19997d9119bdSJack F Vogel 20007d9119bdSJack F Vogel return (fwsm & E1000_ICH_FWSM_FW_VALID) && 20017d9119bdSJack F Vogel (fwsm & (E1000_ICH_MNG_IAMT_MODE << E1000_FWSM_MODE_SHIFT)); 20027d9119bdSJack F Vogel } 20037d9119bdSJack F Vogel 20047d9119bdSJack F Vogel /** 20057d9119bdSJack F Vogel * e1000_rar_set_pch2lan - Set receive address register 20067d9119bdSJack F Vogel * @hw: pointer to the HW structure 20077d9119bdSJack F Vogel * @addr: pointer to the receive address 20087d9119bdSJack F Vogel * @index: receive address array register 20097d9119bdSJack F Vogel * 20107d9119bdSJack F Vogel * Sets the receive address array register at index to the address passed 20117d9119bdSJack F Vogel * in by addr. For 82579, RAR[0] is the base address register that is to 20127d9119bdSJack F Vogel * contain the MAC address but RAR[1-6] are reserved for manageability (ME). 20137d9119bdSJack F Vogel * Use SHRA[0-3] in place of those reserved for ME. 20147d9119bdSJack F Vogel **/ 20158cc64f1eSJack F Vogel static int e1000_rar_set_pch2lan(struct e1000_hw *hw, u8 *addr, u32 index) 20167d9119bdSJack F Vogel { 20177d9119bdSJack F Vogel u32 rar_low, rar_high; 20187d9119bdSJack F Vogel 20197d9119bdSJack F Vogel DEBUGFUNC("e1000_rar_set_pch2lan"); 20207d9119bdSJack F Vogel 20216ab6bfe3SJack F Vogel /* HW expects these in little endian so we reverse the byte order 20227d9119bdSJack F Vogel * from network order (big endian) to little endian 20237d9119bdSJack F Vogel */ 20247d9119bdSJack F Vogel rar_low = ((u32) addr[0] | 20257d9119bdSJack F Vogel ((u32) addr[1] << 8) | 20267d9119bdSJack F Vogel ((u32) addr[2] << 16) | ((u32) addr[3] << 24)); 20277d9119bdSJack F Vogel 20287d9119bdSJack F Vogel rar_high = ((u32) addr[4] | ((u32) addr[5] << 8)); 20297d9119bdSJack F Vogel 20307d9119bdSJack F Vogel /* If MAC address zero, no need to set the AV bit */ 20317d9119bdSJack F Vogel if (rar_low || rar_high) 20327d9119bdSJack F Vogel rar_high |= E1000_RAH_AV; 20337d9119bdSJack F Vogel 20347d9119bdSJack F Vogel if (index == 0) { 20357d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_RAL(index), rar_low); 20367d9119bdSJack F Vogel E1000_WRITE_FLUSH(hw); 20377d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_RAH(index), rar_high); 20387d9119bdSJack F Vogel E1000_WRITE_FLUSH(hw); 20398cc64f1eSJack F Vogel return E1000_SUCCESS; 20407d9119bdSJack F Vogel } 20417d9119bdSJack F Vogel 20427609433eSJack F Vogel /* RAR[1-6] are owned by manageability. Skip those and program the 20437609433eSJack F Vogel * next address into the SHRA register array. 20447609433eSJack F Vogel */ 20458cc64f1eSJack F Vogel if (index < (u32) (hw->mac.rar_entry_count)) { 20466ab6bfe3SJack F Vogel s32 ret_val; 20476ab6bfe3SJack F Vogel 20486ab6bfe3SJack F Vogel ret_val = e1000_acquire_swflag_ich8lan(hw); 20496ab6bfe3SJack F Vogel if (ret_val) 20506ab6bfe3SJack F Vogel goto out; 20516ab6bfe3SJack F Vogel 20527d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_SHRAL(index - 1), rar_low); 20537d9119bdSJack F Vogel E1000_WRITE_FLUSH(hw); 20547d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_SHRAH(index - 1), rar_high); 20557d9119bdSJack F Vogel E1000_WRITE_FLUSH(hw); 20567d9119bdSJack F Vogel 20576ab6bfe3SJack F Vogel e1000_release_swflag_ich8lan(hw); 20586ab6bfe3SJack F Vogel 20597d9119bdSJack F Vogel /* verify the register updates */ 20607d9119bdSJack F Vogel if ((E1000_READ_REG(hw, E1000_SHRAL(index - 1)) == rar_low) && 20617d9119bdSJack F Vogel (E1000_READ_REG(hw, E1000_SHRAH(index - 1)) == rar_high)) 20628cc64f1eSJack F Vogel return E1000_SUCCESS; 20637d9119bdSJack F Vogel 20647d9119bdSJack F Vogel DEBUGOUT2("SHRA[%d] might be locked by ME - FWSM=0x%8.8x\n", 20657d9119bdSJack F Vogel (index - 1), E1000_READ_REG(hw, E1000_FWSM)); 20667d9119bdSJack F Vogel } 20677d9119bdSJack F Vogel 20686ab6bfe3SJack F Vogel out: 20696ab6bfe3SJack F Vogel DEBUGOUT1("Failed to write receive address at index %d\n", index); 20708cc64f1eSJack F Vogel return -E1000_ERR_CONFIG; 20716ab6bfe3SJack F Vogel } 20726ab6bfe3SJack F Vogel 20736ab6bfe3SJack F Vogel /** 20746ab6bfe3SJack F Vogel * e1000_rar_set_pch_lpt - Set receive address registers 20756ab6bfe3SJack F Vogel * @hw: pointer to the HW structure 20766ab6bfe3SJack F Vogel * @addr: pointer to the receive address 20776ab6bfe3SJack F Vogel * @index: receive address array register 20786ab6bfe3SJack F Vogel * 20796ab6bfe3SJack F Vogel * Sets the receive address register array at index to the address passed 20806ab6bfe3SJack F Vogel * in by addr. For LPT, RAR[0] is the base address register that is to 20816ab6bfe3SJack F Vogel * contain the MAC address. SHRA[0-10] are the shared receive address 20826ab6bfe3SJack F Vogel * registers that are shared between the Host and manageability engine (ME). 20836ab6bfe3SJack F Vogel **/ 20848cc64f1eSJack F Vogel static int e1000_rar_set_pch_lpt(struct e1000_hw *hw, u8 *addr, u32 index) 20856ab6bfe3SJack F Vogel { 20866ab6bfe3SJack F Vogel u32 rar_low, rar_high; 20876ab6bfe3SJack F Vogel u32 wlock_mac; 20886ab6bfe3SJack F Vogel 20896ab6bfe3SJack F Vogel DEBUGFUNC("e1000_rar_set_pch_lpt"); 20906ab6bfe3SJack F Vogel 20916ab6bfe3SJack F Vogel /* HW expects these in little endian so we reverse the byte order 20926ab6bfe3SJack F Vogel * from network order (big endian) to little endian 20936ab6bfe3SJack F Vogel */ 20946ab6bfe3SJack F Vogel rar_low = ((u32) addr[0] | ((u32) addr[1] << 8) | 20956ab6bfe3SJack F Vogel ((u32) addr[2] << 16) | ((u32) addr[3] << 24)); 20966ab6bfe3SJack F Vogel 20976ab6bfe3SJack F Vogel rar_high = ((u32) addr[4] | ((u32) addr[5] << 8)); 20986ab6bfe3SJack F Vogel 20996ab6bfe3SJack F Vogel /* If MAC address zero, no need to set the AV bit */ 21006ab6bfe3SJack F Vogel if (rar_low || rar_high) 21016ab6bfe3SJack F Vogel rar_high |= E1000_RAH_AV; 21026ab6bfe3SJack F Vogel 21036ab6bfe3SJack F Vogel if (index == 0) { 21046ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_RAL(index), rar_low); 21056ab6bfe3SJack F Vogel E1000_WRITE_FLUSH(hw); 21066ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_RAH(index), rar_high); 21076ab6bfe3SJack F Vogel E1000_WRITE_FLUSH(hw); 21088cc64f1eSJack F Vogel return E1000_SUCCESS; 21096ab6bfe3SJack F Vogel } 21106ab6bfe3SJack F Vogel 21116ab6bfe3SJack F Vogel /* The manageability engine (ME) can lock certain SHRAR registers that 21126ab6bfe3SJack F Vogel * it is using - those registers are unavailable for use. 21136ab6bfe3SJack F Vogel */ 21146ab6bfe3SJack F Vogel if (index < hw->mac.rar_entry_count) { 21156ab6bfe3SJack F Vogel wlock_mac = E1000_READ_REG(hw, E1000_FWSM) & 21166ab6bfe3SJack F Vogel E1000_FWSM_WLOCK_MAC_MASK; 21176ab6bfe3SJack F Vogel wlock_mac >>= E1000_FWSM_WLOCK_MAC_SHIFT; 21186ab6bfe3SJack F Vogel 21196ab6bfe3SJack F Vogel /* Check if all SHRAR registers are locked */ 21206ab6bfe3SJack F Vogel if (wlock_mac == 1) 21216ab6bfe3SJack F Vogel goto out; 21226ab6bfe3SJack F Vogel 21236ab6bfe3SJack F Vogel if ((wlock_mac == 0) || (index <= wlock_mac)) { 21246ab6bfe3SJack F Vogel s32 ret_val; 21256ab6bfe3SJack F Vogel 21266ab6bfe3SJack F Vogel ret_val = e1000_acquire_swflag_ich8lan(hw); 21276ab6bfe3SJack F Vogel 21286ab6bfe3SJack F Vogel if (ret_val) 21296ab6bfe3SJack F Vogel goto out; 21306ab6bfe3SJack F Vogel 21316ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_SHRAL_PCH_LPT(index - 1), 21326ab6bfe3SJack F Vogel rar_low); 21336ab6bfe3SJack F Vogel E1000_WRITE_FLUSH(hw); 21346ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_SHRAH_PCH_LPT(index - 1), 21356ab6bfe3SJack F Vogel rar_high); 21366ab6bfe3SJack F Vogel E1000_WRITE_FLUSH(hw); 21376ab6bfe3SJack F Vogel 21386ab6bfe3SJack F Vogel e1000_release_swflag_ich8lan(hw); 21396ab6bfe3SJack F Vogel 21406ab6bfe3SJack F Vogel /* verify the register updates */ 21416ab6bfe3SJack F Vogel if ((E1000_READ_REG(hw, E1000_SHRAL_PCH_LPT(index - 1)) == rar_low) && 21426ab6bfe3SJack F Vogel (E1000_READ_REG(hw, E1000_SHRAH_PCH_LPT(index - 1)) == rar_high)) 21438cc64f1eSJack F Vogel return E1000_SUCCESS; 21446ab6bfe3SJack F Vogel } 21456ab6bfe3SJack F Vogel } 21466ab6bfe3SJack F Vogel 21476ab6bfe3SJack F Vogel out: 21487d9119bdSJack F Vogel DEBUGOUT1("Failed to write receive address at index %d\n", index); 21498cc64f1eSJack F Vogel return -E1000_ERR_CONFIG; 21508cfa0ad2SJack F Vogel } 21518cfa0ad2SJack F Vogel 21528cfa0ad2SJack F Vogel /** 2153730d3130SJack F Vogel * e1000_update_mc_addr_list_pch2lan - Update Multicast addresses 2154730d3130SJack F Vogel * @hw: pointer to the HW structure 2155730d3130SJack F Vogel * @mc_addr_list: array of multicast addresses to program 2156730d3130SJack F Vogel * @mc_addr_count: number of multicast addresses to program 2157730d3130SJack F Vogel * 2158730d3130SJack F Vogel * Updates entire Multicast Table Array of the PCH2 MAC and PHY. 2159730d3130SJack F Vogel * The caller must have a packed mc_addr_list of multicast addresses. 2160730d3130SJack F Vogel **/ 2161730d3130SJack F Vogel static void e1000_update_mc_addr_list_pch2lan(struct e1000_hw *hw, 2162730d3130SJack F Vogel u8 *mc_addr_list, 2163730d3130SJack F Vogel u32 mc_addr_count) 2164730d3130SJack F Vogel { 21654dab5c37SJack F Vogel u16 phy_reg = 0; 2166730d3130SJack F Vogel int i; 21674dab5c37SJack F Vogel s32 ret_val; 2168730d3130SJack F Vogel 2169730d3130SJack F Vogel DEBUGFUNC("e1000_update_mc_addr_list_pch2lan"); 2170730d3130SJack F Vogel 2171730d3130SJack F Vogel e1000_update_mc_addr_list_generic(hw, mc_addr_list, mc_addr_count); 2172730d3130SJack F Vogel 21734dab5c37SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 21744dab5c37SJack F Vogel if (ret_val) 21754dab5c37SJack F Vogel return; 21764dab5c37SJack F Vogel 21774dab5c37SJack F Vogel ret_val = e1000_enable_phy_wakeup_reg_access_bm(hw, &phy_reg); 21784dab5c37SJack F Vogel if (ret_val) 21794dab5c37SJack F Vogel goto release; 21804dab5c37SJack F Vogel 2181730d3130SJack F Vogel for (i = 0; i < hw->mac.mta_reg_count; i++) { 21824dab5c37SJack F Vogel hw->phy.ops.write_reg_page(hw, BM_MTA(i), 21834dab5c37SJack F Vogel (u16)(hw->mac.mta_shadow[i] & 21844dab5c37SJack F Vogel 0xFFFF)); 21854dab5c37SJack F Vogel hw->phy.ops.write_reg_page(hw, (BM_MTA(i) + 1), 2186730d3130SJack F Vogel (u16)((hw->mac.mta_shadow[i] >> 16) & 2187730d3130SJack F Vogel 0xFFFF)); 2188730d3130SJack F Vogel } 21894dab5c37SJack F Vogel 21904dab5c37SJack F Vogel e1000_disable_phy_wakeup_reg_access_bm(hw, &phy_reg); 21914dab5c37SJack F Vogel 21924dab5c37SJack F Vogel release: 21934dab5c37SJack F Vogel hw->phy.ops.release(hw); 2194730d3130SJack F Vogel } 2195730d3130SJack F Vogel 2196730d3130SJack F Vogel /** 21978cfa0ad2SJack F Vogel * e1000_check_reset_block_ich8lan - Check if PHY reset is blocked 21988cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 21998cfa0ad2SJack F Vogel * 22008cfa0ad2SJack F Vogel * Checks if firmware is blocking the reset of the PHY. 22018cfa0ad2SJack F Vogel * This is a function pointer entry point only called by 22028cfa0ad2SJack F Vogel * reset routines. 22038cfa0ad2SJack F Vogel **/ 22048cfa0ad2SJack F Vogel static s32 e1000_check_reset_block_ich8lan(struct e1000_hw *hw) 22058cfa0ad2SJack F Vogel { 22068cfa0ad2SJack F Vogel u32 fwsm; 22077609433eSJack F Vogel bool blocked = FALSE; 22087609433eSJack F Vogel int i = 0; 22098cfa0ad2SJack F Vogel 22108cfa0ad2SJack F Vogel DEBUGFUNC("e1000_check_reset_block_ich8lan"); 22118cfa0ad2SJack F Vogel 22127609433eSJack F Vogel do { 22138cfa0ad2SJack F Vogel fwsm = E1000_READ_REG(hw, E1000_FWSM); 22147609433eSJack F Vogel if (!(fwsm & E1000_ICH_FWSM_RSPCIPHY)) { 22157609433eSJack F Vogel blocked = TRUE; 22167609433eSJack F Vogel msec_delay(10); 22177609433eSJack F Vogel continue; 22187609433eSJack F Vogel } 22197609433eSJack F Vogel blocked = FALSE; 2220c80429ceSEric Joyner } while (blocked && (i++ < 30)); 22217609433eSJack F Vogel return blocked ? E1000_BLK_PHY_RESET : E1000_SUCCESS; 22228cfa0ad2SJack F Vogel } 22238cfa0ad2SJack F Vogel 22248cfa0ad2SJack F Vogel /** 22257d9119bdSJack F Vogel * e1000_write_smbus_addr - Write SMBus address to PHY needed during Sx states 22267d9119bdSJack F Vogel * @hw: pointer to the HW structure 22277d9119bdSJack F Vogel * 22287d9119bdSJack F Vogel * Assumes semaphore already acquired. 22297d9119bdSJack F Vogel * 22307d9119bdSJack F Vogel **/ 22317d9119bdSJack F Vogel static s32 e1000_write_smbus_addr(struct e1000_hw *hw) 22327d9119bdSJack F Vogel { 22337d9119bdSJack F Vogel u16 phy_data; 22347d9119bdSJack F Vogel u32 strap = E1000_READ_REG(hw, E1000_STRAP); 22356ab6bfe3SJack F Vogel u32 freq = (strap & E1000_STRAP_SMT_FREQ_MASK) >> 22366ab6bfe3SJack F Vogel E1000_STRAP_SMT_FREQ_SHIFT; 22376ab6bfe3SJack F Vogel s32 ret_val; 22387d9119bdSJack F Vogel 22397d9119bdSJack F Vogel strap &= E1000_STRAP_SMBUS_ADDRESS_MASK; 22407d9119bdSJack F Vogel 22417d9119bdSJack F Vogel ret_val = e1000_read_phy_reg_hv_locked(hw, HV_SMB_ADDR, &phy_data); 22427d9119bdSJack F Vogel if (ret_val) 22436ab6bfe3SJack F Vogel return ret_val; 22447d9119bdSJack F Vogel 22457d9119bdSJack F Vogel phy_data &= ~HV_SMB_ADDR_MASK; 22467d9119bdSJack F Vogel phy_data |= (strap >> E1000_STRAP_SMBUS_ADDRESS_SHIFT); 22477d9119bdSJack F Vogel phy_data |= HV_SMB_ADDR_PEC_EN | HV_SMB_ADDR_VALID; 22487d9119bdSJack F Vogel 22496ab6bfe3SJack F Vogel if (hw->phy.type == e1000_phy_i217) { 22506ab6bfe3SJack F Vogel /* Restore SMBus frequency */ 22516ab6bfe3SJack F Vogel if (freq--) { 22526ab6bfe3SJack F Vogel phy_data &= ~HV_SMB_ADDR_FREQ_MASK; 22536ab6bfe3SJack F Vogel phy_data |= (freq & (1 << 0)) << 22546ab6bfe3SJack F Vogel HV_SMB_ADDR_FREQ_LOW_SHIFT; 22556ab6bfe3SJack F Vogel phy_data |= (freq & (1 << 1)) << 22566ab6bfe3SJack F Vogel (HV_SMB_ADDR_FREQ_HIGH_SHIFT - 1); 22576ab6bfe3SJack F Vogel } else { 22586ab6bfe3SJack F Vogel DEBUGOUT("Unsupported SMB frequency in PHY\n"); 22596ab6bfe3SJack F Vogel } 22606ab6bfe3SJack F Vogel } 22616ab6bfe3SJack F Vogel 22626ab6bfe3SJack F Vogel return e1000_write_phy_reg_hv_locked(hw, HV_SMB_ADDR, phy_data); 22637d9119bdSJack F Vogel } 22647d9119bdSJack F Vogel 22657d9119bdSJack F Vogel /** 22664edd8523SJack F Vogel * e1000_sw_lcd_config_ich8lan - SW-based LCD Configuration 22674edd8523SJack F Vogel * @hw: pointer to the HW structure 22684edd8523SJack F Vogel * 22694edd8523SJack F Vogel * SW should configure the LCD from the NVM extended configuration region 22704edd8523SJack F Vogel * as a workaround for certain parts. 22714edd8523SJack F Vogel **/ 22724edd8523SJack F Vogel static s32 e1000_sw_lcd_config_ich8lan(struct e1000_hw *hw) 22734edd8523SJack F Vogel { 22744edd8523SJack F Vogel struct e1000_phy_info *phy = &hw->phy; 22754edd8523SJack F Vogel u32 i, data, cnf_size, cnf_base_addr, sw_cfg_mask; 2276a69ed8dfSJack F Vogel s32 ret_val = E1000_SUCCESS; 22774edd8523SJack F Vogel u16 word_addr, reg_data, reg_addr, phy_page = 0; 22784edd8523SJack F Vogel 22797d9119bdSJack F Vogel DEBUGFUNC("e1000_sw_lcd_config_ich8lan"); 22804edd8523SJack F Vogel 22816ab6bfe3SJack F Vogel /* Initialize the PHY from the NVM on ICH platforms. This 22824edd8523SJack F Vogel * is needed due to an issue where the NVM configuration is 22834edd8523SJack F Vogel * not properly autoloaded after power transitions. 22844edd8523SJack F Vogel * Therefore, after each PHY reset, we will load the 22854edd8523SJack F Vogel * configuration data out of the NVM manually. 22864edd8523SJack F Vogel */ 22877d9119bdSJack F Vogel switch (hw->mac.type) { 22887d9119bdSJack F Vogel case e1000_ich8lan: 22897d9119bdSJack F Vogel if (phy->type != e1000_phy_igp_3) 22907d9119bdSJack F Vogel return ret_val; 22917d9119bdSJack F Vogel 22927d9119bdSJack F Vogel if ((hw->device_id == E1000_DEV_ID_ICH8_IGP_AMT) || 22937d9119bdSJack F Vogel (hw->device_id == E1000_DEV_ID_ICH8_IGP_C)) { 22944edd8523SJack F Vogel sw_cfg_mask = E1000_FEXTNVM_SW_CONFIG; 22957d9119bdSJack F Vogel break; 22967d9119bdSJack F Vogel } 22977d9119bdSJack F Vogel /* Fall-thru */ 22987d9119bdSJack F Vogel case e1000_pchlan: 22997d9119bdSJack F Vogel case e1000_pch2lan: 23006ab6bfe3SJack F Vogel case e1000_pch_lpt: 2301c80429ceSEric Joyner case e1000_pch_spt: 23026fe4c0a0SSean Bruno case e1000_pch_cnp: 230359690eabSKevin Bowling case e1000_pch_tgp: 230459690eabSKevin Bowling case e1000_pch_adp: 230559690eabSKevin Bowling case e1000_pch_mtp: 23067d9119bdSJack F Vogel sw_cfg_mask = E1000_FEXTNVM_SW_CONFIG_ICH8M; 23077d9119bdSJack F Vogel break; 23087d9119bdSJack F Vogel default: 23097d9119bdSJack F Vogel return ret_val; 23107d9119bdSJack F Vogel } 23117d9119bdSJack F Vogel 23127d9119bdSJack F Vogel ret_val = hw->phy.ops.acquire(hw); 23137d9119bdSJack F Vogel if (ret_val) 23147d9119bdSJack F Vogel return ret_val; 23154edd8523SJack F Vogel 23164edd8523SJack F Vogel data = E1000_READ_REG(hw, E1000_FEXTNVM); 23174edd8523SJack F Vogel if (!(data & sw_cfg_mask)) 23186ab6bfe3SJack F Vogel goto release; 23194edd8523SJack F Vogel 23206ab6bfe3SJack F Vogel /* Make sure HW does not configure LCD from PHY 23214edd8523SJack F Vogel * extended configuration before SW configuration 23224edd8523SJack F Vogel */ 23234edd8523SJack F Vogel data = E1000_READ_REG(hw, E1000_EXTCNF_CTRL); 23246ab6bfe3SJack F Vogel if ((hw->mac.type < e1000_pch2lan) && 23256ab6bfe3SJack F Vogel (data & E1000_EXTCNF_CTRL_LCD_WRITE_ENABLE)) 23266ab6bfe3SJack F Vogel goto release; 23274edd8523SJack F Vogel 23284edd8523SJack F Vogel cnf_size = E1000_READ_REG(hw, E1000_EXTCNF_SIZE); 23294edd8523SJack F Vogel cnf_size &= E1000_EXTCNF_SIZE_EXT_PCIE_LENGTH_MASK; 23304edd8523SJack F Vogel cnf_size >>= E1000_EXTCNF_SIZE_EXT_PCIE_LENGTH_SHIFT; 23314edd8523SJack F Vogel if (!cnf_size) 23326ab6bfe3SJack F Vogel goto release; 23334edd8523SJack F Vogel 23344edd8523SJack F Vogel cnf_base_addr = data & E1000_EXTCNF_CTRL_EXT_CNF_POINTER_MASK; 23354edd8523SJack F Vogel cnf_base_addr >>= E1000_EXTCNF_CTRL_EXT_CNF_POINTER_SHIFT; 23364edd8523SJack F Vogel 23376ab6bfe3SJack F Vogel if (((hw->mac.type == e1000_pchlan) && 23386ab6bfe3SJack F Vogel !(data & E1000_EXTCNF_CTRL_OEM_WRITE_ENABLE)) || 23396ab6bfe3SJack F Vogel (hw->mac.type > e1000_pchlan)) { 23406ab6bfe3SJack F Vogel /* HW configures the SMBus address and LEDs when the 23414edd8523SJack F Vogel * OEM and LCD Write Enable bits are set in the NVM. 23424edd8523SJack F Vogel * When both NVM bits are cleared, SW will configure 23434edd8523SJack F Vogel * them instead. 23444edd8523SJack F Vogel */ 23457d9119bdSJack F Vogel ret_val = e1000_write_smbus_addr(hw); 23464edd8523SJack F Vogel if (ret_val) 23476ab6bfe3SJack F Vogel goto release; 23484edd8523SJack F Vogel 23494edd8523SJack F Vogel data = E1000_READ_REG(hw, E1000_LEDCTL); 2350a69ed8dfSJack F Vogel ret_val = e1000_write_phy_reg_hv_locked(hw, HV_LED_CONFIG, 23514edd8523SJack F Vogel (u16)data); 23524edd8523SJack F Vogel if (ret_val) 23536ab6bfe3SJack F Vogel goto release; 23544edd8523SJack F Vogel } 23554edd8523SJack F Vogel 23564edd8523SJack F Vogel /* Configure LCD from extended configuration region. */ 23574edd8523SJack F Vogel 23584edd8523SJack F Vogel /* cnf_base_addr is in DWORD */ 23594edd8523SJack F Vogel word_addr = (u16)(cnf_base_addr << 1); 23604edd8523SJack F Vogel 23614edd8523SJack F Vogel for (i = 0; i < cnf_size; i++) { 23624edd8523SJack F Vogel ret_val = hw->nvm.ops.read(hw, (word_addr + i * 2), 1, 23634edd8523SJack F Vogel ®_data); 23644edd8523SJack F Vogel if (ret_val) 23656ab6bfe3SJack F Vogel goto release; 23664edd8523SJack F Vogel 23674edd8523SJack F Vogel ret_val = hw->nvm.ops.read(hw, (word_addr + i * 2 + 1), 23684edd8523SJack F Vogel 1, ®_addr); 23694edd8523SJack F Vogel if (ret_val) 23706ab6bfe3SJack F Vogel goto release; 23714edd8523SJack F Vogel 23724edd8523SJack F Vogel /* Save off the PHY page for future writes. */ 23734edd8523SJack F Vogel if (reg_addr == IGP01E1000_PHY_PAGE_SELECT) { 23744edd8523SJack F Vogel phy_page = reg_data; 23754edd8523SJack F Vogel continue; 23764edd8523SJack F Vogel } 23774edd8523SJack F Vogel 23784edd8523SJack F Vogel reg_addr &= PHY_REG_MASK; 23794edd8523SJack F Vogel reg_addr |= phy_page; 23804edd8523SJack F Vogel 23814edd8523SJack F Vogel ret_val = phy->ops.write_reg_locked(hw, (u32)reg_addr, 23824edd8523SJack F Vogel reg_data); 23834edd8523SJack F Vogel if (ret_val) 23846ab6bfe3SJack F Vogel goto release; 23854edd8523SJack F Vogel } 23864edd8523SJack F Vogel 23876ab6bfe3SJack F Vogel release: 23884edd8523SJack F Vogel hw->phy.ops.release(hw); 23894edd8523SJack F Vogel return ret_val; 23904edd8523SJack F Vogel } 23914edd8523SJack F Vogel 23924edd8523SJack F Vogel /** 23934edd8523SJack F Vogel * e1000_k1_gig_workaround_hv - K1 Si workaround 23944edd8523SJack F Vogel * @hw: pointer to the HW structure 23954edd8523SJack F Vogel * @link: link up bool flag 23964edd8523SJack F Vogel * 23974edd8523SJack F Vogel * If K1 is enabled for 1Gbps, the MAC might stall when transitioning 23984edd8523SJack F Vogel * from a lower speed. This workaround disables K1 whenever link is at 1Gig 23994edd8523SJack F Vogel * If link is down, the function will restore the default K1 setting located 24004edd8523SJack F Vogel * in the NVM. 24014edd8523SJack F Vogel **/ 24024edd8523SJack F Vogel static s32 e1000_k1_gig_workaround_hv(struct e1000_hw *hw, bool link) 24034edd8523SJack F Vogel { 24044edd8523SJack F Vogel s32 ret_val = E1000_SUCCESS; 24054edd8523SJack F Vogel u16 status_reg = 0; 24064edd8523SJack F Vogel bool k1_enable = hw->dev_spec.ich8lan.nvm_k1_enabled; 24074edd8523SJack F Vogel 24084edd8523SJack F Vogel DEBUGFUNC("e1000_k1_gig_workaround_hv"); 24094edd8523SJack F Vogel 24104edd8523SJack F Vogel if (hw->mac.type != e1000_pchlan) 24116ab6bfe3SJack F Vogel return E1000_SUCCESS; 24124edd8523SJack F Vogel 24134edd8523SJack F Vogel /* Wrap the whole flow with the sw flag */ 24144edd8523SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 24154edd8523SJack F Vogel if (ret_val) 24166ab6bfe3SJack F Vogel return ret_val; 24174edd8523SJack F Vogel 24184edd8523SJack F Vogel /* Disable K1 when link is 1Gbps, otherwise use the NVM setting */ 24194edd8523SJack F Vogel if (link) { 24204edd8523SJack F Vogel if (hw->phy.type == e1000_phy_82578) { 24214edd8523SJack F Vogel ret_val = hw->phy.ops.read_reg_locked(hw, BM_CS_STATUS, 24224edd8523SJack F Vogel &status_reg); 24234edd8523SJack F Vogel if (ret_val) 24244edd8523SJack F Vogel goto release; 24254edd8523SJack F Vogel 24267609433eSJack F Vogel status_reg &= (BM_CS_STATUS_LINK_UP | 24274edd8523SJack F Vogel BM_CS_STATUS_RESOLVED | 24287609433eSJack F Vogel BM_CS_STATUS_SPEED_MASK); 24294edd8523SJack F Vogel 24304edd8523SJack F Vogel if (status_reg == (BM_CS_STATUS_LINK_UP | 24314edd8523SJack F Vogel BM_CS_STATUS_RESOLVED | 24324edd8523SJack F Vogel BM_CS_STATUS_SPEED_1000)) 24334edd8523SJack F Vogel k1_enable = FALSE; 24344edd8523SJack F Vogel } 24354edd8523SJack F Vogel 24364edd8523SJack F Vogel if (hw->phy.type == e1000_phy_82577) { 24374edd8523SJack F Vogel ret_val = hw->phy.ops.read_reg_locked(hw, HV_M_STATUS, 24384edd8523SJack F Vogel &status_reg); 24394edd8523SJack F Vogel if (ret_val) 24404edd8523SJack F Vogel goto release; 24414edd8523SJack F Vogel 24427609433eSJack F Vogel status_reg &= (HV_M_STATUS_LINK_UP | 24434edd8523SJack F Vogel HV_M_STATUS_AUTONEG_COMPLETE | 24447609433eSJack F Vogel HV_M_STATUS_SPEED_MASK); 24454edd8523SJack F Vogel 24464edd8523SJack F Vogel if (status_reg == (HV_M_STATUS_LINK_UP | 24474edd8523SJack F Vogel HV_M_STATUS_AUTONEG_COMPLETE | 24484edd8523SJack F Vogel HV_M_STATUS_SPEED_1000)) 24494edd8523SJack F Vogel k1_enable = FALSE; 24504edd8523SJack F Vogel } 24514edd8523SJack F Vogel 24524edd8523SJack F Vogel /* Link stall fix for link up */ 24534edd8523SJack F Vogel ret_val = hw->phy.ops.write_reg_locked(hw, PHY_REG(770, 19), 24544edd8523SJack F Vogel 0x0100); 24554edd8523SJack F Vogel if (ret_val) 24564edd8523SJack F Vogel goto release; 24574edd8523SJack F Vogel 24584edd8523SJack F Vogel } else { 24594edd8523SJack F Vogel /* Link stall fix for link down */ 24604edd8523SJack F Vogel ret_val = hw->phy.ops.write_reg_locked(hw, PHY_REG(770, 19), 24614edd8523SJack F Vogel 0x4100); 24624edd8523SJack F Vogel if (ret_val) 24634edd8523SJack F Vogel goto release; 24644edd8523SJack F Vogel } 24654edd8523SJack F Vogel 24664edd8523SJack F Vogel ret_val = e1000_configure_k1_ich8lan(hw, k1_enable); 24674edd8523SJack F Vogel 24684edd8523SJack F Vogel release: 24694edd8523SJack F Vogel hw->phy.ops.release(hw); 24706ab6bfe3SJack F Vogel 24714edd8523SJack F Vogel return ret_val; 24724edd8523SJack F Vogel } 24734edd8523SJack F Vogel 24744edd8523SJack F Vogel /** 24754edd8523SJack F Vogel * e1000_configure_k1_ich8lan - Configure K1 power state 24764edd8523SJack F Vogel * @hw: pointer to the HW structure 2477a4378873SKevin Bowling * @enable: K1 state to configure 24784edd8523SJack F Vogel * 24794edd8523SJack F Vogel * Configure the K1 power state based on the provided parameter. 24804edd8523SJack F Vogel * Assumes semaphore already acquired. 24814edd8523SJack F Vogel * 24824edd8523SJack F Vogel * Success returns 0, Failure returns -E1000_ERR_PHY (-2) 24834edd8523SJack F Vogel **/ 24844edd8523SJack F Vogel s32 e1000_configure_k1_ich8lan(struct e1000_hw *hw, bool k1_enable) 24854edd8523SJack F Vogel { 24866ab6bfe3SJack F Vogel s32 ret_val; 24874edd8523SJack F Vogel u32 ctrl_reg = 0; 24884edd8523SJack F Vogel u32 ctrl_ext = 0; 24894edd8523SJack F Vogel u32 reg = 0; 24904edd8523SJack F Vogel u16 kmrn_reg = 0; 24914edd8523SJack F Vogel 24927d9119bdSJack F Vogel DEBUGFUNC("e1000_configure_k1_ich8lan"); 24937d9119bdSJack F Vogel 24944dab5c37SJack F Vogel ret_val = e1000_read_kmrn_reg_locked(hw, E1000_KMRNCTRLSTA_K1_CONFIG, 24954edd8523SJack F Vogel &kmrn_reg); 24964edd8523SJack F Vogel if (ret_val) 24976ab6bfe3SJack F Vogel return ret_val; 24984edd8523SJack F Vogel 24994edd8523SJack F Vogel if (k1_enable) 25004edd8523SJack F Vogel kmrn_reg |= E1000_KMRNCTRLSTA_K1_ENABLE; 25014edd8523SJack F Vogel else 25024edd8523SJack F Vogel kmrn_reg &= ~E1000_KMRNCTRLSTA_K1_ENABLE; 25034edd8523SJack F Vogel 25044dab5c37SJack F Vogel ret_val = e1000_write_kmrn_reg_locked(hw, E1000_KMRNCTRLSTA_K1_CONFIG, 25054edd8523SJack F Vogel kmrn_reg); 25064edd8523SJack F Vogel if (ret_val) 25076ab6bfe3SJack F Vogel return ret_val; 25084edd8523SJack F Vogel 25094edd8523SJack F Vogel usec_delay(20); 25104edd8523SJack F Vogel ctrl_ext = E1000_READ_REG(hw, E1000_CTRL_EXT); 25114edd8523SJack F Vogel ctrl_reg = E1000_READ_REG(hw, E1000_CTRL); 25124edd8523SJack F Vogel 25134edd8523SJack F Vogel reg = ctrl_reg & ~(E1000_CTRL_SPD_1000 | E1000_CTRL_SPD_100); 25144edd8523SJack F Vogel reg |= E1000_CTRL_FRCSPD; 25154edd8523SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL, reg); 25164edd8523SJack F Vogel 25174edd8523SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL_EXT, ctrl_ext | E1000_CTRL_EXT_SPD_BYPS); 25184dab5c37SJack F Vogel E1000_WRITE_FLUSH(hw); 25194edd8523SJack F Vogel usec_delay(20); 25204edd8523SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL, ctrl_reg); 25214edd8523SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL_EXT, ctrl_ext); 25224dab5c37SJack F Vogel E1000_WRITE_FLUSH(hw); 25234edd8523SJack F Vogel usec_delay(20); 25244edd8523SJack F Vogel 25256ab6bfe3SJack F Vogel return E1000_SUCCESS; 25264edd8523SJack F Vogel } 25274edd8523SJack F Vogel 25284edd8523SJack F Vogel /** 25294edd8523SJack F Vogel * e1000_oem_bits_config_ich8lan - SW-based LCD Configuration 25304edd8523SJack F Vogel * @hw: pointer to the HW structure 25314edd8523SJack F Vogel * @d0_state: boolean if entering d0 or d3 device state 25324edd8523SJack F Vogel * 25334edd8523SJack F Vogel * SW will configure Gbe Disable and LPLU based on the NVM. The four bits are 25344edd8523SJack F Vogel * collectively called OEM bits. The OEM Write Enable bit and SW Config bit 25354edd8523SJack F Vogel * in NVM determines whether HW should configure LPLU and Gbe Disable. 25364edd8523SJack F Vogel **/ 25374dab5c37SJack F Vogel static s32 e1000_oem_bits_config_ich8lan(struct e1000_hw *hw, bool d0_state) 25384edd8523SJack F Vogel { 25394edd8523SJack F Vogel s32 ret_val = 0; 25404edd8523SJack F Vogel u32 mac_reg; 25414edd8523SJack F Vogel u16 oem_reg; 25424edd8523SJack F Vogel 25437d9119bdSJack F Vogel DEBUGFUNC("e1000_oem_bits_config_ich8lan"); 25447d9119bdSJack F Vogel 25456ab6bfe3SJack F Vogel if (hw->mac.type < e1000_pchlan) 25464edd8523SJack F Vogel return ret_val; 25474edd8523SJack F Vogel 25484edd8523SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 25494edd8523SJack F Vogel if (ret_val) 25504edd8523SJack F Vogel return ret_val; 25514edd8523SJack F Vogel 25526ab6bfe3SJack F Vogel if (hw->mac.type == e1000_pchlan) { 25534edd8523SJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_EXTCNF_CTRL); 25544edd8523SJack F Vogel if (mac_reg & E1000_EXTCNF_CTRL_OEM_WRITE_ENABLE) 25556ab6bfe3SJack F Vogel goto release; 25567d9119bdSJack F Vogel } 25574edd8523SJack F Vogel 25584edd8523SJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_FEXTNVM); 25594edd8523SJack F Vogel if (!(mac_reg & E1000_FEXTNVM_SW_CONFIG_ICH8M)) 25606ab6bfe3SJack F Vogel goto release; 25614edd8523SJack F Vogel 25624edd8523SJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_PHY_CTRL); 25634edd8523SJack F Vogel 25644edd8523SJack F Vogel ret_val = hw->phy.ops.read_reg_locked(hw, HV_OEM_BITS, &oem_reg); 25654edd8523SJack F Vogel if (ret_val) 25666ab6bfe3SJack F Vogel goto release; 25674edd8523SJack F Vogel 25684edd8523SJack F Vogel oem_reg &= ~(HV_OEM_BITS_GBE_DIS | HV_OEM_BITS_LPLU); 25694edd8523SJack F Vogel 25704edd8523SJack F Vogel if (d0_state) { 25714edd8523SJack F Vogel if (mac_reg & E1000_PHY_CTRL_GBE_DISABLE) 25724edd8523SJack F Vogel oem_reg |= HV_OEM_BITS_GBE_DIS; 25734edd8523SJack F Vogel 25744edd8523SJack F Vogel if (mac_reg & E1000_PHY_CTRL_D0A_LPLU) 25754edd8523SJack F Vogel oem_reg |= HV_OEM_BITS_LPLU; 25764dab5c37SJack F Vogel } else { 25774dab5c37SJack F Vogel if (mac_reg & (E1000_PHY_CTRL_GBE_DISABLE | 25784dab5c37SJack F Vogel E1000_PHY_CTRL_NOND0A_GBE_DISABLE)) 25794dab5c37SJack F Vogel oem_reg |= HV_OEM_BITS_GBE_DIS; 25804dab5c37SJack F Vogel 25814dab5c37SJack F Vogel if (mac_reg & (E1000_PHY_CTRL_D0A_LPLU | 25824dab5c37SJack F Vogel E1000_PHY_CTRL_NOND0A_LPLU)) 25834dab5c37SJack F Vogel oem_reg |= HV_OEM_BITS_LPLU; 25844dab5c37SJack F Vogel } 25854dab5c37SJack F Vogel 25866ab6bfe3SJack F Vogel /* Set Restart auto-neg to activate the bits */ 25876ab6bfe3SJack F Vogel if ((d0_state || (hw->mac.type != e1000_pchlan)) && 25886ab6bfe3SJack F Vogel !hw->phy.ops.check_reset_block(hw)) 25896ab6bfe3SJack F Vogel oem_reg |= HV_OEM_BITS_RESTART_AN; 25906ab6bfe3SJack F Vogel 25914edd8523SJack F Vogel ret_val = hw->phy.ops.write_reg_locked(hw, HV_OEM_BITS, oem_reg); 25924edd8523SJack F Vogel 25936ab6bfe3SJack F Vogel release: 25944edd8523SJack F Vogel hw->phy.ops.release(hw); 25954edd8523SJack F Vogel 25964edd8523SJack F Vogel return ret_val; 25974edd8523SJack F Vogel } 25984edd8523SJack F Vogel 25994edd8523SJack F Vogel 26004edd8523SJack F Vogel /** 2601a69ed8dfSJack F Vogel * e1000_set_mdio_slow_mode_hv - Set slow MDIO access mode 2602a69ed8dfSJack F Vogel * @hw: pointer to the HW structure 2603a69ed8dfSJack F Vogel **/ 2604a69ed8dfSJack F Vogel static s32 e1000_set_mdio_slow_mode_hv(struct e1000_hw *hw) 2605a69ed8dfSJack F Vogel { 2606a69ed8dfSJack F Vogel s32 ret_val; 2607a69ed8dfSJack F Vogel u16 data; 2608a69ed8dfSJack F Vogel 26097d9119bdSJack F Vogel DEBUGFUNC("e1000_set_mdio_slow_mode_hv"); 26107d9119bdSJack F Vogel 2611a69ed8dfSJack F Vogel ret_val = hw->phy.ops.read_reg(hw, HV_KMRN_MODE_CTRL, &data); 2612a69ed8dfSJack F Vogel if (ret_val) 2613a69ed8dfSJack F Vogel return ret_val; 2614a69ed8dfSJack F Vogel 2615a69ed8dfSJack F Vogel data |= HV_KMRN_MDIO_SLOW; 2616a69ed8dfSJack F Vogel 2617a69ed8dfSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, HV_KMRN_MODE_CTRL, data); 2618a69ed8dfSJack F Vogel 2619a69ed8dfSJack F Vogel return ret_val; 2620a69ed8dfSJack F Vogel } 2621a69ed8dfSJack F Vogel 2622a69ed8dfSJack F Vogel /** 26239d81738fSJack F Vogel * e1000_hv_phy_workarounds_ich8lan - A series of Phy workarounds to be 26249d81738fSJack F Vogel * done after every PHY reset. 26259d81738fSJack F Vogel **/ 26269d81738fSJack F Vogel static s32 e1000_hv_phy_workarounds_ich8lan(struct e1000_hw *hw) 26279d81738fSJack F Vogel { 26289d81738fSJack F Vogel s32 ret_val = E1000_SUCCESS; 2629a69ed8dfSJack F Vogel u16 phy_data; 26309d81738fSJack F Vogel 26317d9119bdSJack F Vogel DEBUGFUNC("e1000_hv_phy_workarounds_ich8lan"); 26327d9119bdSJack F Vogel 26339d81738fSJack F Vogel if (hw->mac.type != e1000_pchlan) 26346ab6bfe3SJack F Vogel return E1000_SUCCESS; 26359d81738fSJack F Vogel 2636a69ed8dfSJack F Vogel /* Set MDIO slow mode before any other MDIO access */ 2637a69ed8dfSJack F Vogel if (hw->phy.type == e1000_phy_82577) { 2638a69ed8dfSJack F Vogel ret_val = e1000_set_mdio_slow_mode_hv(hw); 2639a69ed8dfSJack F Vogel if (ret_val) 26406ab6bfe3SJack F Vogel return ret_val; 2641a69ed8dfSJack F Vogel } 2642a69ed8dfSJack F Vogel 26439d81738fSJack F Vogel if (((hw->phy.type == e1000_phy_82577) && 26449d81738fSJack F Vogel ((hw->phy.revision == 1) || (hw->phy.revision == 2))) || 26459d81738fSJack F Vogel ((hw->phy.type == e1000_phy_82578) && (hw->phy.revision == 1))) { 26469d81738fSJack F Vogel /* Disable generation of early preamble */ 26479d81738fSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_REG(769, 25), 0x4431); 26489d81738fSJack F Vogel if (ret_val) 26496ab6bfe3SJack F Vogel return ret_val; 26509d81738fSJack F Vogel 26519d81738fSJack F Vogel /* Preamble tuning for SSC */ 26524dab5c37SJack F Vogel ret_val = hw->phy.ops.write_reg(hw, HV_KMRN_FIFO_CTRLSTA, 26534dab5c37SJack F Vogel 0xA204); 26549d81738fSJack F Vogel if (ret_val) 26556ab6bfe3SJack F Vogel return ret_val; 26569d81738fSJack F Vogel } 26579d81738fSJack F Vogel 26589d81738fSJack F Vogel if (hw->phy.type == e1000_phy_82578) { 26596ab6bfe3SJack F Vogel /* Return registers to default by doing a soft reset then 26609d81738fSJack F Vogel * writing 0x3140 to the control register. 26619d81738fSJack F Vogel */ 26629d81738fSJack F Vogel if (hw->phy.revision < 2) { 26639d81738fSJack F Vogel e1000_phy_sw_reset_generic(hw); 26649d81738fSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_CONTROL, 26659d81738fSJack F Vogel 0x3140); 26666fe4c0a0SSean Bruno if (ret_val) 26676fe4c0a0SSean Bruno return ret_val; 26689d81738fSJack F Vogel } 26699d81738fSJack F Vogel } 26709d81738fSJack F Vogel 26719d81738fSJack F Vogel /* Select page 0 */ 26729d81738fSJack F Vogel ret_val = hw->phy.ops.acquire(hw); 26739d81738fSJack F Vogel if (ret_val) 26746ab6bfe3SJack F Vogel return ret_val; 26754edd8523SJack F Vogel 26769d81738fSJack F Vogel hw->phy.addr = 1; 26774edd8523SJack F Vogel ret_val = e1000_write_phy_reg_mdic(hw, IGP01E1000_PHY_PAGE_SELECT, 0); 2678a69ed8dfSJack F Vogel hw->phy.ops.release(hw); 26794edd8523SJack F Vogel if (ret_val) 26806ab6bfe3SJack F Vogel return ret_val; 26819d81738fSJack F Vogel 26826ab6bfe3SJack F Vogel /* Configure the K1 Si workaround during phy reset assuming there is 26834edd8523SJack F Vogel * link so that it disables K1 if link is in 1Gbps. 26844edd8523SJack F Vogel */ 26854edd8523SJack F Vogel ret_val = e1000_k1_gig_workaround_hv(hw, TRUE); 2686a69ed8dfSJack F Vogel if (ret_val) 26876ab6bfe3SJack F Vogel return ret_val; 26884edd8523SJack F Vogel 2689a69ed8dfSJack F Vogel /* Workaround for link disconnects on a busy hub in half duplex */ 2690a69ed8dfSJack F Vogel ret_val = hw->phy.ops.acquire(hw); 2691a69ed8dfSJack F Vogel if (ret_val) 26926ab6bfe3SJack F Vogel return ret_val; 26934dab5c37SJack F Vogel ret_val = hw->phy.ops.read_reg_locked(hw, BM_PORT_GEN_CFG, &phy_data); 2694a69ed8dfSJack F Vogel if (ret_val) 2695a69ed8dfSJack F Vogel goto release; 26964dab5c37SJack F Vogel ret_val = hw->phy.ops.write_reg_locked(hw, BM_PORT_GEN_CFG, 2697a69ed8dfSJack F Vogel phy_data & 0x00FF); 26986ab6bfe3SJack F Vogel if (ret_val) 26996ab6bfe3SJack F Vogel goto release; 27006ab6bfe3SJack F Vogel 27016ab6bfe3SJack F Vogel /* set MSE higher to enable link to stay up when noise is high */ 27026ab6bfe3SJack F Vogel ret_val = e1000_write_emi_reg_locked(hw, I82577_MSE_THRESHOLD, 0x0034); 2703a69ed8dfSJack F Vogel release: 2704a69ed8dfSJack F Vogel hw->phy.ops.release(hw); 27056ab6bfe3SJack F Vogel 27069d81738fSJack F Vogel return ret_val; 27079d81738fSJack F Vogel } 27089d81738fSJack F Vogel 27099d81738fSJack F Vogel /** 27107d9119bdSJack F Vogel * e1000_copy_rx_addrs_to_phy_ich8lan - Copy Rx addresses from MAC to PHY 27117d9119bdSJack F Vogel * @hw: pointer to the HW structure 27127d9119bdSJack F Vogel **/ 27137d9119bdSJack F Vogel void e1000_copy_rx_addrs_to_phy_ich8lan(struct e1000_hw *hw) 27147d9119bdSJack F Vogel { 27157d9119bdSJack F Vogel u32 mac_reg; 27164dab5c37SJack F Vogel u16 i, phy_reg = 0; 27174dab5c37SJack F Vogel s32 ret_val; 27187d9119bdSJack F Vogel 27197d9119bdSJack F Vogel DEBUGFUNC("e1000_copy_rx_addrs_to_phy_ich8lan"); 27207d9119bdSJack F Vogel 27214dab5c37SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 27224dab5c37SJack F Vogel if (ret_val) 27234dab5c37SJack F Vogel return; 27244dab5c37SJack F Vogel ret_val = e1000_enable_phy_wakeup_reg_access_bm(hw, &phy_reg); 27254dab5c37SJack F Vogel if (ret_val) 27264dab5c37SJack F Vogel goto release; 27274dab5c37SJack F Vogel 27287609433eSJack F Vogel /* Copy both RAL/H (rar_entry_count) and SHRAL/H to PHY */ 27297609433eSJack F Vogel for (i = 0; i < (hw->mac.rar_entry_count); i++) { 27307d9119bdSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_RAL(i)); 27314dab5c37SJack F Vogel hw->phy.ops.write_reg_page(hw, BM_RAR_L(i), 27324dab5c37SJack F Vogel (u16)(mac_reg & 0xFFFF)); 27334dab5c37SJack F Vogel hw->phy.ops.write_reg_page(hw, BM_RAR_M(i), 27344dab5c37SJack F Vogel (u16)((mac_reg >> 16) & 0xFFFF)); 27354dab5c37SJack F Vogel 27367d9119bdSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_RAH(i)); 27374dab5c37SJack F Vogel hw->phy.ops.write_reg_page(hw, BM_RAR_H(i), 27384dab5c37SJack F Vogel (u16)(mac_reg & 0xFFFF)); 27394dab5c37SJack F Vogel hw->phy.ops.write_reg_page(hw, BM_RAR_CTRL(i), 27404dab5c37SJack F Vogel (u16)((mac_reg & E1000_RAH_AV) 27414dab5c37SJack F Vogel >> 16)); 27427d9119bdSJack F Vogel } 27434dab5c37SJack F Vogel 27444dab5c37SJack F Vogel e1000_disable_phy_wakeup_reg_access_bm(hw, &phy_reg); 27454dab5c37SJack F Vogel 27464dab5c37SJack F Vogel release: 27474dab5c37SJack F Vogel hw->phy.ops.release(hw); 27487d9119bdSJack F Vogel } 27497d9119bdSJack F Vogel 27507d9119bdSJack F Vogel static u32 e1000_calc_rx_da_crc(u8 mac[]) 27517d9119bdSJack F Vogel { 27527d9119bdSJack F Vogel u32 poly = 0xEDB88320; /* Polynomial for 802.3 CRC calculation */ 27537d9119bdSJack F Vogel u32 i, j, mask, crc; 27547d9119bdSJack F Vogel 27557d9119bdSJack F Vogel DEBUGFUNC("e1000_calc_rx_da_crc"); 27567d9119bdSJack F Vogel 27577d9119bdSJack F Vogel crc = 0xffffffff; 27587d9119bdSJack F Vogel for (i = 0; i < 6; i++) { 27597d9119bdSJack F Vogel crc = crc ^ mac[i]; 27607d9119bdSJack F Vogel for (j = 8; j > 0; j--) { 27617d9119bdSJack F Vogel mask = (crc & 1) * (-1); 27627d9119bdSJack F Vogel crc = (crc >> 1) ^ (poly & mask); 27637d9119bdSJack F Vogel } 27647d9119bdSJack F Vogel } 27657d9119bdSJack F Vogel return ~crc; 27667d9119bdSJack F Vogel } 27677d9119bdSJack F Vogel 27687d9119bdSJack F Vogel /** 27697d9119bdSJack F Vogel * e1000_lv_jumbo_workaround_ich8lan - required for jumbo frame operation 27707d9119bdSJack F Vogel * with 82579 PHY 27717d9119bdSJack F Vogel * @hw: pointer to the HW structure 27727d9119bdSJack F Vogel * @enable: flag to enable/disable workaround when enabling/disabling jumbos 27737d9119bdSJack F Vogel **/ 27747d9119bdSJack F Vogel s32 e1000_lv_jumbo_workaround_ich8lan(struct e1000_hw *hw, bool enable) 27757d9119bdSJack F Vogel { 27767d9119bdSJack F Vogel s32 ret_val = E1000_SUCCESS; 27777d9119bdSJack F Vogel u16 phy_reg, data; 27787d9119bdSJack F Vogel u32 mac_reg; 27797d9119bdSJack F Vogel u16 i; 27807d9119bdSJack F Vogel 27817d9119bdSJack F Vogel DEBUGFUNC("e1000_lv_jumbo_workaround_ich8lan"); 27827d9119bdSJack F Vogel 27836ab6bfe3SJack F Vogel if (hw->mac.type < e1000_pch2lan) 27846ab6bfe3SJack F Vogel return E1000_SUCCESS; 27857d9119bdSJack F Vogel 27867d9119bdSJack F Vogel /* disable Rx path while enabling/disabling workaround */ 27877d9119bdSJack F Vogel hw->phy.ops.read_reg(hw, PHY_REG(769, 20), &phy_reg); 27884dab5c37SJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_REG(769, 20), 27894dab5c37SJack F Vogel phy_reg | (1 << 14)); 27907d9119bdSJack F Vogel if (ret_val) 27916ab6bfe3SJack F Vogel return ret_val; 27927d9119bdSJack F Vogel 27937d9119bdSJack F Vogel if (enable) { 27947609433eSJack F Vogel /* Write Rx addresses (rar_entry_count for RAL/H, and 27957d9119bdSJack F Vogel * SHRAL/H) and initial CRC values to the MAC 27967d9119bdSJack F Vogel */ 27977609433eSJack F Vogel for (i = 0; i < hw->mac.rar_entry_count; i++) { 2798e81998f4SEric Joyner u8 mac_addr[ETHER_ADDR_LEN] = {0}; 27997d9119bdSJack F Vogel u32 addr_high, addr_low; 28007d9119bdSJack F Vogel 28017d9119bdSJack F Vogel addr_high = E1000_READ_REG(hw, E1000_RAH(i)); 28027d9119bdSJack F Vogel if (!(addr_high & E1000_RAH_AV)) 28037d9119bdSJack F Vogel continue; 28047d9119bdSJack F Vogel addr_low = E1000_READ_REG(hw, E1000_RAL(i)); 28057d9119bdSJack F Vogel mac_addr[0] = (addr_low & 0xFF); 28067d9119bdSJack F Vogel mac_addr[1] = ((addr_low >> 8) & 0xFF); 28077d9119bdSJack F Vogel mac_addr[2] = ((addr_low >> 16) & 0xFF); 28087d9119bdSJack F Vogel mac_addr[3] = ((addr_low >> 24) & 0xFF); 28097d9119bdSJack F Vogel mac_addr[4] = (addr_high & 0xFF); 28107d9119bdSJack F Vogel mac_addr[5] = ((addr_high >> 8) & 0xFF); 28117d9119bdSJack F Vogel 28127d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_PCH_RAICC(i), 28137d9119bdSJack F Vogel e1000_calc_rx_da_crc(mac_addr)); 28147d9119bdSJack F Vogel } 28157d9119bdSJack F Vogel 28167d9119bdSJack F Vogel /* Write Rx addresses to the PHY */ 28177d9119bdSJack F Vogel e1000_copy_rx_addrs_to_phy_ich8lan(hw); 28187d9119bdSJack F Vogel 28197d9119bdSJack F Vogel /* Enable jumbo frame workaround in the MAC */ 28207d9119bdSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_FFLT_DBG); 28217d9119bdSJack F Vogel mac_reg &= ~(1 << 14); 28227d9119bdSJack F Vogel mac_reg |= (7 << 15); 28237d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_FFLT_DBG, mac_reg); 28247d9119bdSJack F Vogel 28257d9119bdSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_RCTL); 28267d9119bdSJack F Vogel mac_reg |= E1000_RCTL_SECRC; 28277d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_RCTL, mac_reg); 28287d9119bdSJack F Vogel 28297d9119bdSJack F Vogel ret_val = e1000_read_kmrn_reg_generic(hw, 28307d9119bdSJack F Vogel E1000_KMRNCTRLSTA_CTRL_OFFSET, 28317d9119bdSJack F Vogel &data); 28327d9119bdSJack F Vogel if (ret_val) 28336ab6bfe3SJack F Vogel return ret_val; 28347d9119bdSJack F Vogel ret_val = e1000_write_kmrn_reg_generic(hw, 28357d9119bdSJack F Vogel E1000_KMRNCTRLSTA_CTRL_OFFSET, 28367d9119bdSJack F Vogel data | (1 << 0)); 28377d9119bdSJack F Vogel if (ret_val) 28386ab6bfe3SJack F Vogel return ret_val; 28397d9119bdSJack F Vogel ret_val = e1000_read_kmrn_reg_generic(hw, 28407d9119bdSJack F Vogel E1000_KMRNCTRLSTA_HD_CTRL, 28417d9119bdSJack F Vogel &data); 28427d9119bdSJack F Vogel if (ret_val) 28436ab6bfe3SJack F Vogel return ret_val; 28447d9119bdSJack F Vogel data &= ~(0xF << 8); 28457d9119bdSJack F Vogel data |= (0xB << 8); 28467d9119bdSJack F Vogel ret_val = e1000_write_kmrn_reg_generic(hw, 28477d9119bdSJack F Vogel E1000_KMRNCTRLSTA_HD_CTRL, 28487d9119bdSJack F Vogel data); 28497d9119bdSJack F Vogel if (ret_val) 28506ab6bfe3SJack F Vogel return ret_val; 28517d9119bdSJack F Vogel 28527d9119bdSJack F Vogel /* Enable jumbo frame workaround in the PHY */ 28537d9119bdSJack F Vogel hw->phy.ops.read_reg(hw, PHY_REG(769, 23), &data); 28547d9119bdSJack F Vogel data &= ~(0x7F << 5); 28557d9119bdSJack F Vogel data |= (0x37 << 5); 28567d9119bdSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_REG(769, 23), data); 28577d9119bdSJack F Vogel if (ret_val) 28586ab6bfe3SJack F Vogel return ret_val; 28597d9119bdSJack F Vogel hw->phy.ops.read_reg(hw, PHY_REG(769, 16), &data); 28607d9119bdSJack F Vogel data &= ~(1 << 13); 28617d9119bdSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_REG(769, 16), data); 28627d9119bdSJack F Vogel if (ret_val) 28636ab6bfe3SJack F Vogel return ret_val; 28647d9119bdSJack F Vogel hw->phy.ops.read_reg(hw, PHY_REG(776, 20), &data); 28657d9119bdSJack F Vogel data &= ~(0x3FF << 2); 28668cc64f1eSJack F Vogel data |= (E1000_TX_PTR_GAP << 2); 28677d9119bdSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_REG(776, 20), data); 28687d9119bdSJack F Vogel if (ret_val) 28696ab6bfe3SJack F Vogel return ret_val; 28704dab5c37SJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_REG(776, 23), 0xF100); 28717d9119bdSJack F Vogel if (ret_val) 28726ab6bfe3SJack F Vogel return ret_val; 28737d9119bdSJack F Vogel hw->phy.ops.read_reg(hw, HV_PM_CTRL, &data); 28744dab5c37SJack F Vogel ret_val = hw->phy.ops.write_reg(hw, HV_PM_CTRL, data | 28754dab5c37SJack F Vogel (1 << 10)); 28767d9119bdSJack F Vogel if (ret_val) 28776ab6bfe3SJack F Vogel return ret_val; 28787d9119bdSJack F Vogel } else { 28797d9119bdSJack F Vogel /* Write MAC register values back to h/w defaults */ 28807d9119bdSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_FFLT_DBG); 28817d9119bdSJack F Vogel mac_reg &= ~(0xF << 14); 28827d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_FFLT_DBG, mac_reg); 28837d9119bdSJack F Vogel 28847d9119bdSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_RCTL); 28857d9119bdSJack F Vogel mac_reg &= ~E1000_RCTL_SECRC; 28867d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_RCTL, mac_reg); 28877d9119bdSJack F Vogel 28887d9119bdSJack F Vogel ret_val = e1000_read_kmrn_reg_generic(hw, 28897d9119bdSJack F Vogel E1000_KMRNCTRLSTA_CTRL_OFFSET, 28907d9119bdSJack F Vogel &data); 28917d9119bdSJack F Vogel if (ret_val) 28926ab6bfe3SJack F Vogel return ret_val; 28937d9119bdSJack F Vogel ret_val = e1000_write_kmrn_reg_generic(hw, 28947d9119bdSJack F Vogel E1000_KMRNCTRLSTA_CTRL_OFFSET, 28957d9119bdSJack F Vogel data & ~(1 << 0)); 28967d9119bdSJack F Vogel if (ret_val) 28976ab6bfe3SJack F Vogel return ret_val; 28987d9119bdSJack F Vogel ret_val = e1000_read_kmrn_reg_generic(hw, 28997d9119bdSJack F Vogel E1000_KMRNCTRLSTA_HD_CTRL, 29007d9119bdSJack F Vogel &data); 29017d9119bdSJack F Vogel if (ret_val) 29026ab6bfe3SJack F Vogel return ret_val; 29037d9119bdSJack F Vogel data &= ~(0xF << 8); 29047d9119bdSJack F Vogel data |= (0xB << 8); 29057d9119bdSJack F Vogel ret_val = e1000_write_kmrn_reg_generic(hw, 29067d9119bdSJack F Vogel E1000_KMRNCTRLSTA_HD_CTRL, 29077d9119bdSJack F Vogel data); 29087d9119bdSJack F Vogel if (ret_val) 29096ab6bfe3SJack F Vogel return ret_val; 29107d9119bdSJack F Vogel 29117d9119bdSJack F Vogel /* Write PHY register values back to h/w defaults */ 29127d9119bdSJack F Vogel hw->phy.ops.read_reg(hw, PHY_REG(769, 23), &data); 29137d9119bdSJack F Vogel data &= ~(0x7F << 5); 29147d9119bdSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_REG(769, 23), data); 29157d9119bdSJack F Vogel if (ret_val) 29166ab6bfe3SJack F Vogel return ret_val; 29177d9119bdSJack F Vogel hw->phy.ops.read_reg(hw, PHY_REG(769, 16), &data); 29187d9119bdSJack F Vogel data |= (1 << 13); 29197d9119bdSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_REG(769, 16), data); 29207d9119bdSJack F Vogel if (ret_val) 29216ab6bfe3SJack F Vogel return ret_val; 29227d9119bdSJack F Vogel hw->phy.ops.read_reg(hw, PHY_REG(776, 20), &data); 29237d9119bdSJack F Vogel data &= ~(0x3FF << 2); 29247d9119bdSJack F Vogel data |= (0x8 << 2); 29257d9119bdSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_REG(776, 20), data); 29267d9119bdSJack F Vogel if (ret_val) 29276ab6bfe3SJack F Vogel return ret_val; 29287d9119bdSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, PHY_REG(776, 23), 0x7E00); 29297d9119bdSJack F Vogel if (ret_val) 29306ab6bfe3SJack F Vogel return ret_val; 29317d9119bdSJack F Vogel hw->phy.ops.read_reg(hw, HV_PM_CTRL, &data); 29324dab5c37SJack F Vogel ret_val = hw->phy.ops.write_reg(hw, HV_PM_CTRL, data & 29334dab5c37SJack F Vogel ~(1 << 10)); 29347d9119bdSJack F Vogel if (ret_val) 29356ab6bfe3SJack F Vogel return ret_val; 29367d9119bdSJack F Vogel } 29377d9119bdSJack F Vogel 29387d9119bdSJack F Vogel /* re-enable Rx path after enabling/disabling workaround */ 29396ab6bfe3SJack F Vogel return hw->phy.ops.write_reg(hw, PHY_REG(769, 20), phy_reg & 29404dab5c37SJack F Vogel ~(1 << 14)); 29417d9119bdSJack F Vogel } 29427d9119bdSJack F Vogel 29437d9119bdSJack F Vogel /** 29447d9119bdSJack F Vogel * e1000_lv_phy_workarounds_ich8lan - A series of Phy workarounds to be 29457d9119bdSJack F Vogel * done after every PHY reset. 29467d9119bdSJack F Vogel **/ 29477d9119bdSJack F Vogel static s32 e1000_lv_phy_workarounds_ich8lan(struct e1000_hw *hw) 29487d9119bdSJack F Vogel { 29497d9119bdSJack F Vogel s32 ret_val = E1000_SUCCESS; 29507d9119bdSJack F Vogel 29517d9119bdSJack F Vogel DEBUGFUNC("e1000_lv_phy_workarounds_ich8lan"); 29527d9119bdSJack F Vogel 29537d9119bdSJack F Vogel if (hw->mac.type != e1000_pch2lan) 29546ab6bfe3SJack F Vogel return E1000_SUCCESS; 29557d9119bdSJack F Vogel 29567d9119bdSJack F Vogel /* Set MDIO slow mode before any other MDIO access */ 29577d9119bdSJack F Vogel ret_val = e1000_set_mdio_slow_mode_hv(hw); 29586ab6bfe3SJack F Vogel if (ret_val) 29596ab6bfe3SJack F Vogel return ret_val; 29607d9119bdSJack F Vogel 29614dab5c37SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 29624dab5c37SJack F Vogel if (ret_val) 29636ab6bfe3SJack F Vogel return ret_val; 29644dab5c37SJack F Vogel /* set MSE higher to enable link to stay up when noise is high */ 29656ab6bfe3SJack F Vogel ret_val = e1000_write_emi_reg_locked(hw, I82579_MSE_THRESHOLD, 0x0034); 29664dab5c37SJack F Vogel if (ret_val) 29674dab5c37SJack F Vogel goto release; 29684dab5c37SJack F Vogel /* drop link after 5 times MSE threshold was reached */ 29696ab6bfe3SJack F Vogel ret_val = e1000_write_emi_reg_locked(hw, I82579_MSE_LINK_DOWN, 0x0005); 29704dab5c37SJack F Vogel release: 29714dab5c37SJack F Vogel hw->phy.ops.release(hw); 29724dab5c37SJack F Vogel 29737d9119bdSJack F Vogel return ret_val; 29747d9119bdSJack F Vogel } 29757d9119bdSJack F Vogel 29767d9119bdSJack F Vogel /** 29777d9119bdSJack F Vogel * e1000_k1_gig_workaround_lv - K1 Si workaround 29787d9119bdSJack F Vogel * @hw: pointer to the HW structure 29797d9119bdSJack F Vogel * 29808cc64f1eSJack F Vogel * Workaround to set the K1 beacon duration for 82579 parts in 10Mbps 29818cc64f1eSJack F Vogel * Disable K1 for 1000 and 100 speeds 29827d9119bdSJack F Vogel **/ 29837d9119bdSJack F Vogel static s32 e1000_k1_workaround_lv(struct e1000_hw *hw) 29847d9119bdSJack F Vogel { 29857d9119bdSJack F Vogel s32 ret_val = E1000_SUCCESS; 29867d9119bdSJack F Vogel u16 status_reg = 0; 29877d9119bdSJack F Vogel 29887d9119bdSJack F Vogel DEBUGFUNC("e1000_k1_workaround_lv"); 29897d9119bdSJack F Vogel 29907d9119bdSJack F Vogel if (hw->mac.type != e1000_pch2lan) 29916ab6bfe3SJack F Vogel return E1000_SUCCESS; 29927d9119bdSJack F Vogel 29938cc64f1eSJack F Vogel /* Set K1 beacon duration based on 10Mbs speed */ 29947d9119bdSJack F Vogel ret_val = hw->phy.ops.read_reg(hw, HV_M_STATUS, &status_reg); 29957d9119bdSJack F Vogel if (ret_val) 29966ab6bfe3SJack F Vogel return ret_val; 29977d9119bdSJack F Vogel 29987d9119bdSJack F Vogel if ((status_reg & (HV_M_STATUS_LINK_UP | HV_M_STATUS_AUTONEG_COMPLETE)) 29997d9119bdSJack F Vogel == (HV_M_STATUS_LINK_UP | HV_M_STATUS_AUTONEG_COMPLETE)) { 30008cc64f1eSJack F Vogel if (status_reg & 30018cc64f1eSJack F Vogel (HV_M_STATUS_SPEED_1000 | HV_M_STATUS_SPEED_100)) { 30026ab6bfe3SJack F Vogel u16 pm_phy_reg; 30036ab6bfe3SJack F Vogel 30048cc64f1eSJack F Vogel /* LV 1G/100 Packet drop issue wa */ 30056ab6bfe3SJack F Vogel ret_val = hw->phy.ops.read_reg(hw, HV_PM_CTRL, 30066ab6bfe3SJack F Vogel &pm_phy_reg); 30076ab6bfe3SJack F Vogel if (ret_val) 30086ab6bfe3SJack F Vogel return ret_val; 30098cc64f1eSJack F Vogel pm_phy_reg &= ~HV_PM_CTRL_K1_ENABLE; 30106ab6bfe3SJack F Vogel ret_val = hw->phy.ops.write_reg(hw, HV_PM_CTRL, 30116ab6bfe3SJack F Vogel pm_phy_reg); 30126ab6bfe3SJack F Vogel if (ret_val) 30136ab6bfe3SJack F Vogel return ret_val; 30144dab5c37SJack F Vogel } else { 30158cc64f1eSJack F Vogel u32 mac_reg; 30168cc64f1eSJack F Vogel mac_reg = E1000_READ_REG(hw, E1000_FEXTNVM4); 30178cc64f1eSJack F Vogel mac_reg &= ~E1000_FEXTNVM4_BEACON_DURATION_MASK; 30184dab5c37SJack F Vogel mac_reg |= E1000_FEXTNVM4_BEACON_DURATION_16USEC; 30197d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_FEXTNVM4, mac_reg); 30208cc64f1eSJack F Vogel } 30217d9119bdSJack F Vogel } 30227d9119bdSJack F Vogel 30237d9119bdSJack F Vogel return ret_val; 30247d9119bdSJack F Vogel } 30257d9119bdSJack F Vogel 30267d9119bdSJack F Vogel /** 30277d9119bdSJack F Vogel * e1000_gate_hw_phy_config_ich8lan - disable PHY config via hardware 30287d9119bdSJack F Vogel * @hw: pointer to the HW structure 3029730d3130SJack F Vogel * @gate: boolean set to TRUE to gate, FALSE to ungate 30307d9119bdSJack F Vogel * 30317d9119bdSJack F Vogel * Gate/ungate the automatic PHY configuration via hardware; perform 30327d9119bdSJack F Vogel * the configuration via software instead. 30337d9119bdSJack F Vogel **/ 30347d9119bdSJack F Vogel static void e1000_gate_hw_phy_config_ich8lan(struct e1000_hw *hw, bool gate) 30357d9119bdSJack F Vogel { 30367d9119bdSJack F Vogel u32 extcnf_ctrl; 30377d9119bdSJack F Vogel 30387d9119bdSJack F Vogel DEBUGFUNC("e1000_gate_hw_phy_config_ich8lan"); 30397d9119bdSJack F Vogel 30406ab6bfe3SJack F Vogel if (hw->mac.type < e1000_pch2lan) 30417d9119bdSJack F Vogel return; 30427d9119bdSJack F Vogel 30437d9119bdSJack F Vogel extcnf_ctrl = E1000_READ_REG(hw, E1000_EXTCNF_CTRL); 30447d9119bdSJack F Vogel 30457d9119bdSJack F Vogel if (gate) 30467d9119bdSJack F Vogel extcnf_ctrl |= E1000_EXTCNF_CTRL_GATE_PHY_CFG; 30477d9119bdSJack F Vogel else 30487d9119bdSJack F Vogel extcnf_ctrl &= ~E1000_EXTCNF_CTRL_GATE_PHY_CFG; 30497d9119bdSJack F Vogel 30507d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_EXTCNF_CTRL, extcnf_ctrl); 30517d9119bdSJack F Vogel } 30527d9119bdSJack F Vogel 30537d9119bdSJack F Vogel /** 30549d81738fSJack F Vogel * e1000_lan_init_done_ich8lan - Check for PHY config completion 30558cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 30568cfa0ad2SJack F Vogel * 30579d81738fSJack F Vogel * Check the appropriate indication the MAC has finished configuring the 30589d81738fSJack F Vogel * PHY after a software reset. 30598cfa0ad2SJack F Vogel **/ 30609d81738fSJack F Vogel static void e1000_lan_init_done_ich8lan(struct e1000_hw *hw) 30618cfa0ad2SJack F Vogel { 30629d81738fSJack F Vogel u32 data, loop = E1000_ICH8_LAN_INIT_TIMEOUT; 30638cfa0ad2SJack F Vogel 30649d81738fSJack F Vogel DEBUGFUNC("e1000_lan_init_done_ich8lan"); 30658cfa0ad2SJack F Vogel 30669d81738fSJack F Vogel /* Wait for basic configuration completes before proceeding */ 30679d81738fSJack F Vogel do { 30689d81738fSJack F Vogel data = E1000_READ_REG(hw, E1000_STATUS); 30699d81738fSJack F Vogel data &= E1000_STATUS_LAN_INIT_DONE; 30709d81738fSJack F Vogel usec_delay(100); 30719d81738fSJack F Vogel } while ((!data) && --loop); 30728cfa0ad2SJack F Vogel 30736ab6bfe3SJack F Vogel /* If basic configuration is incomplete before the above loop 30749d81738fSJack F Vogel * count reaches 0, loading the configuration from NVM will 30759d81738fSJack F Vogel * leave the PHY in a bad state possibly resulting in no link. 30769d81738fSJack F Vogel */ 30779d81738fSJack F Vogel if (loop == 0) 30789d81738fSJack F Vogel DEBUGOUT("LAN_INIT_DONE not set, increase timeout\n"); 30798cfa0ad2SJack F Vogel 30809d81738fSJack F Vogel /* Clear the Init Done bit for the next init event */ 30819d81738fSJack F Vogel data = E1000_READ_REG(hw, E1000_STATUS); 30829d81738fSJack F Vogel data &= ~E1000_STATUS_LAN_INIT_DONE; 30839d81738fSJack F Vogel E1000_WRITE_REG(hw, E1000_STATUS, data); 30848cfa0ad2SJack F Vogel } 30858cfa0ad2SJack F Vogel 30868cfa0ad2SJack F Vogel /** 30877d9119bdSJack F Vogel * e1000_post_phy_reset_ich8lan - Perform steps required after a PHY reset 30887d9119bdSJack F Vogel * @hw: pointer to the HW structure 30897d9119bdSJack F Vogel **/ 30907d9119bdSJack F Vogel static s32 e1000_post_phy_reset_ich8lan(struct e1000_hw *hw) 30917d9119bdSJack F Vogel { 30927d9119bdSJack F Vogel s32 ret_val = E1000_SUCCESS; 30937d9119bdSJack F Vogel u16 reg; 30947d9119bdSJack F Vogel 30957d9119bdSJack F Vogel DEBUGFUNC("e1000_post_phy_reset_ich8lan"); 30967d9119bdSJack F Vogel 30977d9119bdSJack F Vogel if (hw->phy.ops.check_reset_block(hw)) 30986ab6bfe3SJack F Vogel return E1000_SUCCESS; 30997d9119bdSJack F Vogel 31007d9119bdSJack F Vogel /* Allow time for h/w to get to quiescent state after reset */ 31017d9119bdSJack F Vogel msec_delay(10); 31027d9119bdSJack F Vogel 31037d9119bdSJack F Vogel /* Perform any necessary post-reset workarounds */ 31047d9119bdSJack F Vogel switch (hw->mac.type) { 31057d9119bdSJack F Vogel case e1000_pchlan: 31067d9119bdSJack F Vogel ret_val = e1000_hv_phy_workarounds_ich8lan(hw); 31077d9119bdSJack F Vogel if (ret_val) 31086ab6bfe3SJack F Vogel return ret_val; 31097d9119bdSJack F Vogel break; 31107d9119bdSJack F Vogel case e1000_pch2lan: 31117d9119bdSJack F Vogel ret_val = e1000_lv_phy_workarounds_ich8lan(hw); 31127d9119bdSJack F Vogel if (ret_val) 31136ab6bfe3SJack F Vogel return ret_val; 31147d9119bdSJack F Vogel break; 31157d9119bdSJack F Vogel default: 31167d9119bdSJack F Vogel break; 31177d9119bdSJack F Vogel } 31187d9119bdSJack F Vogel 31194dab5c37SJack F Vogel /* Clear the host wakeup bit after lcd reset */ 31204dab5c37SJack F Vogel if (hw->mac.type >= e1000_pchlan) { 31214dab5c37SJack F Vogel hw->phy.ops.read_reg(hw, BM_PORT_GEN_CFG, ®); 31224dab5c37SJack F Vogel reg &= ~BM_WUC_HOST_WU_BIT; 31234dab5c37SJack F Vogel hw->phy.ops.write_reg(hw, BM_PORT_GEN_CFG, reg); 31247d9119bdSJack F Vogel } 31257d9119bdSJack F Vogel 31267d9119bdSJack F Vogel /* Configure the LCD with the extended configuration region in NVM */ 31277d9119bdSJack F Vogel ret_val = e1000_sw_lcd_config_ich8lan(hw); 31287d9119bdSJack F Vogel if (ret_val) 31296ab6bfe3SJack F Vogel return ret_val; 31307d9119bdSJack F Vogel 31317d9119bdSJack F Vogel /* Configure the LCD with the OEM bits in NVM */ 31327d9119bdSJack F Vogel ret_val = e1000_oem_bits_config_ich8lan(hw, TRUE); 31337d9119bdSJack F Vogel 3134730d3130SJack F Vogel if (hw->mac.type == e1000_pch2lan) { 31357d9119bdSJack F Vogel /* Ungate automatic PHY configuration on non-managed 82579 */ 3136730d3130SJack F Vogel if (!(E1000_READ_REG(hw, E1000_FWSM) & 3137730d3130SJack F Vogel E1000_ICH_FWSM_FW_VALID)) { 31387d9119bdSJack F Vogel msec_delay(10); 31397d9119bdSJack F Vogel e1000_gate_hw_phy_config_ich8lan(hw, FALSE); 31407d9119bdSJack F Vogel } 31417d9119bdSJack F Vogel 3142730d3130SJack F Vogel /* Set EEE LPI Update Timer to 200usec */ 3143730d3130SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 3144730d3130SJack F Vogel if (ret_val) 31456ab6bfe3SJack F Vogel return ret_val; 31466ab6bfe3SJack F Vogel ret_val = e1000_write_emi_reg_locked(hw, 31476ab6bfe3SJack F Vogel I82579_LPI_UPDATE_TIMER, 3148730d3130SJack F Vogel 0x1387); 3149730d3130SJack F Vogel hw->phy.ops.release(hw); 3150730d3130SJack F Vogel } 3151730d3130SJack F Vogel 31527d9119bdSJack F Vogel return ret_val; 31537d9119bdSJack F Vogel } 31547d9119bdSJack F Vogel 31557d9119bdSJack F Vogel /** 31568cfa0ad2SJack F Vogel * e1000_phy_hw_reset_ich8lan - Performs a PHY reset 31578cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 31588cfa0ad2SJack F Vogel * 31598cfa0ad2SJack F Vogel * Resets the PHY 31608cfa0ad2SJack F Vogel * This is a function pointer entry point called by drivers 31618cfa0ad2SJack F Vogel * or other shared routines. 31628cfa0ad2SJack F Vogel **/ 31638cfa0ad2SJack F Vogel static s32 e1000_phy_hw_reset_ich8lan(struct e1000_hw *hw) 31648cfa0ad2SJack F Vogel { 31654edd8523SJack F Vogel s32 ret_val = E1000_SUCCESS; 31668cfa0ad2SJack F Vogel 31678cfa0ad2SJack F Vogel DEBUGFUNC("e1000_phy_hw_reset_ich8lan"); 31688cfa0ad2SJack F Vogel 31697d9119bdSJack F Vogel /* Gate automatic PHY configuration by hardware on non-managed 82579 */ 31707d9119bdSJack F Vogel if ((hw->mac.type == e1000_pch2lan) && 31717d9119bdSJack F Vogel !(E1000_READ_REG(hw, E1000_FWSM) & E1000_ICH_FWSM_FW_VALID)) 31727d9119bdSJack F Vogel e1000_gate_hw_phy_config_ich8lan(hw, TRUE); 31737d9119bdSJack F Vogel 31748cfa0ad2SJack F Vogel ret_val = e1000_phy_hw_reset_generic(hw); 31758cfa0ad2SJack F Vogel if (ret_val) 31768cfa0ad2SJack F Vogel return ret_val; 31776ab6bfe3SJack F Vogel 31786ab6bfe3SJack F Vogel return e1000_post_phy_reset_ich8lan(hw); 31798cfa0ad2SJack F Vogel } 31808cfa0ad2SJack F Vogel 31818cfa0ad2SJack F Vogel /** 31824edd8523SJack F Vogel * e1000_set_lplu_state_pchlan - Set Low Power Link Up state 31838cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 31844edd8523SJack F Vogel * @active: TRUE to enable LPLU, FALSE to disable 31858cfa0ad2SJack F Vogel * 31864edd8523SJack F Vogel * Sets the LPLU state according to the active flag. For PCH, if OEM write 31874edd8523SJack F Vogel * bit are disabled in the NVM, writing the LPLU bits in the MAC will not set 31884edd8523SJack F Vogel * the phy speed. This function will manually set the LPLU bit and restart 31894edd8523SJack F Vogel * auto-neg as hw would do. D3 and D0 LPLU will call the same function 31904edd8523SJack F Vogel * since it configures the same bit. 31918cfa0ad2SJack F Vogel **/ 31924edd8523SJack F Vogel static s32 e1000_set_lplu_state_pchlan(struct e1000_hw *hw, bool active) 31938cfa0ad2SJack F Vogel { 31946ab6bfe3SJack F Vogel s32 ret_val; 31954edd8523SJack F Vogel u16 oem_reg; 31968cfa0ad2SJack F Vogel 31974edd8523SJack F Vogel DEBUGFUNC("e1000_set_lplu_state_pchlan"); 31984edd8523SJack F Vogel ret_val = hw->phy.ops.read_reg(hw, HV_OEM_BITS, &oem_reg); 31998cfa0ad2SJack F Vogel if (ret_val) 32006ab6bfe3SJack F Vogel return ret_val; 32018cfa0ad2SJack F Vogel 32024edd8523SJack F Vogel if (active) 32034edd8523SJack F Vogel oem_reg |= HV_OEM_BITS_LPLU; 32044edd8523SJack F Vogel else 32054edd8523SJack F Vogel oem_reg &= ~HV_OEM_BITS_LPLU; 32068cfa0ad2SJack F Vogel 32074dab5c37SJack F Vogel if (!hw->phy.ops.check_reset_block(hw)) 32084edd8523SJack F Vogel oem_reg |= HV_OEM_BITS_RESTART_AN; 32094dab5c37SJack F Vogel 32106ab6bfe3SJack F Vogel return hw->phy.ops.write_reg(hw, HV_OEM_BITS, oem_reg); 32118cfa0ad2SJack F Vogel } 32128cfa0ad2SJack F Vogel 32138cfa0ad2SJack F Vogel /** 32148cfa0ad2SJack F Vogel * e1000_set_d0_lplu_state_ich8lan - Set Low Power Linkup D0 state 32158cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 32168cfa0ad2SJack F Vogel * @active: TRUE to enable LPLU, FALSE to disable 32178cfa0ad2SJack F Vogel * 32188cfa0ad2SJack F Vogel * Sets the LPLU D0 state according to the active flag. When 32198cfa0ad2SJack F Vogel * activating LPLU this function also disables smart speed 32208cfa0ad2SJack F Vogel * and vice versa. LPLU will not be activated unless the 32218cfa0ad2SJack F Vogel * device autonegotiation advertisement meets standards of 32228cfa0ad2SJack F Vogel * either 10 or 10/100 or 10/100/1000 at all duplexes. 32238cfa0ad2SJack F Vogel * This is a function pointer entry point only called by 32248cfa0ad2SJack F Vogel * PHY setup routines. 32258cfa0ad2SJack F Vogel **/ 3226daf9197cSJack F Vogel static s32 e1000_set_d0_lplu_state_ich8lan(struct e1000_hw *hw, bool active) 32278cfa0ad2SJack F Vogel { 32288cfa0ad2SJack F Vogel struct e1000_phy_info *phy = &hw->phy; 32298cfa0ad2SJack F Vogel u32 phy_ctrl; 32308cfa0ad2SJack F Vogel s32 ret_val = E1000_SUCCESS; 32318cfa0ad2SJack F Vogel u16 data; 32328cfa0ad2SJack F Vogel 32338cfa0ad2SJack F Vogel DEBUGFUNC("e1000_set_d0_lplu_state_ich8lan"); 32348cfa0ad2SJack F Vogel 32358cfa0ad2SJack F Vogel if (phy->type == e1000_phy_ife) 32366ab6bfe3SJack F Vogel return E1000_SUCCESS; 32378cfa0ad2SJack F Vogel 32388cfa0ad2SJack F Vogel phy_ctrl = E1000_READ_REG(hw, E1000_PHY_CTRL); 32398cfa0ad2SJack F Vogel 32408cfa0ad2SJack F Vogel if (active) { 32418cfa0ad2SJack F Vogel phy_ctrl |= E1000_PHY_CTRL_D0A_LPLU; 32428cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_PHY_CTRL, phy_ctrl); 32438cfa0ad2SJack F Vogel 32449d81738fSJack F Vogel if (phy->type != e1000_phy_igp_3) 32456ab6bfe3SJack F Vogel return E1000_SUCCESS; 32469d81738fSJack F Vogel 32476ab6bfe3SJack F Vogel /* Call gig speed drop workaround on LPLU before accessing 32488cfa0ad2SJack F Vogel * any PHY registers 32498cfa0ad2SJack F Vogel */ 32509d81738fSJack F Vogel if (hw->mac.type == e1000_ich8lan) 32518cfa0ad2SJack F Vogel e1000_gig_downshift_workaround_ich8lan(hw); 32528cfa0ad2SJack F Vogel 32538cfa0ad2SJack F Vogel /* When LPLU is enabled, we should disable SmartSpeed */ 32548cfa0ad2SJack F Vogel ret_val = phy->ops.read_reg(hw, 32558cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 32568cfa0ad2SJack F Vogel &data); 32576ab6bfe3SJack F Vogel if (ret_val) 32586ab6bfe3SJack F Vogel return ret_val; 32598cfa0ad2SJack F Vogel data &= ~IGP01E1000_PSCFR_SMART_SPEED; 32608cfa0ad2SJack F Vogel ret_val = phy->ops.write_reg(hw, 32618cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 32628cfa0ad2SJack F Vogel data); 32638cfa0ad2SJack F Vogel if (ret_val) 32646ab6bfe3SJack F Vogel return ret_val; 32658cfa0ad2SJack F Vogel } else { 32668cfa0ad2SJack F Vogel phy_ctrl &= ~E1000_PHY_CTRL_D0A_LPLU; 32678cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_PHY_CTRL, phy_ctrl); 32688cfa0ad2SJack F Vogel 32699d81738fSJack F Vogel if (phy->type != e1000_phy_igp_3) 32706ab6bfe3SJack F Vogel return E1000_SUCCESS; 32719d81738fSJack F Vogel 32726ab6bfe3SJack F Vogel /* LPLU and SmartSpeed are mutually exclusive. LPLU is used 32738cfa0ad2SJack F Vogel * during Dx states where the power conservation is most 32748cfa0ad2SJack F Vogel * important. During driver activity we should enable 32758cfa0ad2SJack F Vogel * SmartSpeed, so performance is maintained. 32768cfa0ad2SJack F Vogel */ 32778cfa0ad2SJack F Vogel if (phy->smart_speed == e1000_smart_speed_on) { 32788cfa0ad2SJack F Vogel ret_val = phy->ops.read_reg(hw, 32798cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 32808cfa0ad2SJack F Vogel &data); 32818cfa0ad2SJack F Vogel if (ret_val) 32826ab6bfe3SJack F Vogel return ret_val; 32838cfa0ad2SJack F Vogel 32848cfa0ad2SJack F Vogel data |= IGP01E1000_PSCFR_SMART_SPEED; 32858cfa0ad2SJack F Vogel ret_val = phy->ops.write_reg(hw, 32868cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 32878cfa0ad2SJack F Vogel data); 32888cfa0ad2SJack F Vogel if (ret_val) 32896ab6bfe3SJack F Vogel return ret_val; 32908cfa0ad2SJack F Vogel } else if (phy->smart_speed == e1000_smart_speed_off) { 32918cfa0ad2SJack F Vogel ret_val = phy->ops.read_reg(hw, 32928cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 32938cfa0ad2SJack F Vogel &data); 32948cfa0ad2SJack F Vogel if (ret_val) 32956ab6bfe3SJack F Vogel return ret_val; 32968cfa0ad2SJack F Vogel 32978cfa0ad2SJack F Vogel data &= ~IGP01E1000_PSCFR_SMART_SPEED; 32988cfa0ad2SJack F Vogel ret_val = phy->ops.write_reg(hw, 32998cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 33008cfa0ad2SJack F Vogel data); 33018cfa0ad2SJack F Vogel if (ret_val) 33026ab6bfe3SJack F Vogel return ret_val; 33038cfa0ad2SJack F Vogel } 33048cfa0ad2SJack F Vogel } 33058cfa0ad2SJack F Vogel 33066ab6bfe3SJack F Vogel return E1000_SUCCESS; 33078cfa0ad2SJack F Vogel } 33088cfa0ad2SJack F Vogel 33098cfa0ad2SJack F Vogel /** 33108cfa0ad2SJack F Vogel * e1000_set_d3_lplu_state_ich8lan - Set Low Power Linkup D3 state 33118cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 33128cfa0ad2SJack F Vogel * @active: TRUE to enable LPLU, FALSE to disable 33138cfa0ad2SJack F Vogel * 33148cfa0ad2SJack F Vogel * Sets the LPLU D3 state according to the active flag. When 33158cfa0ad2SJack F Vogel * activating LPLU this function also disables smart speed 33168cfa0ad2SJack F Vogel * and vice versa. LPLU will not be activated unless the 33178cfa0ad2SJack F Vogel * device autonegotiation advertisement meets standards of 33188cfa0ad2SJack F Vogel * either 10 or 10/100 or 10/100/1000 at all duplexes. 33198cfa0ad2SJack F Vogel * This is a function pointer entry point only called by 33208cfa0ad2SJack F Vogel * PHY setup routines. 33218cfa0ad2SJack F Vogel **/ 3322daf9197cSJack F Vogel static s32 e1000_set_d3_lplu_state_ich8lan(struct e1000_hw *hw, bool active) 33238cfa0ad2SJack F Vogel { 33248cfa0ad2SJack F Vogel struct e1000_phy_info *phy = &hw->phy; 33258cfa0ad2SJack F Vogel u32 phy_ctrl; 33268cfa0ad2SJack F Vogel s32 ret_val = E1000_SUCCESS; 33278cfa0ad2SJack F Vogel u16 data; 33288cfa0ad2SJack F Vogel 33298cfa0ad2SJack F Vogel DEBUGFUNC("e1000_set_d3_lplu_state_ich8lan"); 33308cfa0ad2SJack F Vogel 33318cfa0ad2SJack F Vogel phy_ctrl = E1000_READ_REG(hw, E1000_PHY_CTRL); 33328cfa0ad2SJack F Vogel 33338cfa0ad2SJack F Vogel if (!active) { 33348cfa0ad2SJack F Vogel phy_ctrl &= ~E1000_PHY_CTRL_NOND0A_LPLU; 33358cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_PHY_CTRL, phy_ctrl); 33369d81738fSJack F Vogel 33379d81738fSJack F Vogel if (phy->type != e1000_phy_igp_3) 33386ab6bfe3SJack F Vogel return E1000_SUCCESS; 33399d81738fSJack F Vogel 33406ab6bfe3SJack F Vogel /* LPLU and SmartSpeed are mutually exclusive. LPLU is used 33418cfa0ad2SJack F Vogel * during Dx states where the power conservation is most 33428cfa0ad2SJack F Vogel * important. During driver activity we should enable 33438cfa0ad2SJack F Vogel * SmartSpeed, so performance is maintained. 33448cfa0ad2SJack F Vogel */ 33458cfa0ad2SJack F Vogel if (phy->smart_speed == e1000_smart_speed_on) { 33468cfa0ad2SJack F Vogel ret_val = phy->ops.read_reg(hw, 33478cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 33488cfa0ad2SJack F Vogel &data); 33498cfa0ad2SJack F Vogel if (ret_val) 33506ab6bfe3SJack F Vogel return ret_val; 33518cfa0ad2SJack F Vogel 33528cfa0ad2SJack F Vogel data |= IGP01E1000_PSCFR_SMART_SPEED; 33538cfa0ad2SJack F Vogel ret_val = phy->ops.write_reg(hw, 33548cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 33558cfa0ad2SJack F Vogel data); 33568cfa0ad2SJack F Vogel if (ret_val) 33576ab6bfe3SJack F Vogel return ret_val; 33588cfa0ad2SJack F Vogel } else if (phy->smart_speed == e1000_smart_speed_off) { 33598cfa0ad2SJack F Vogel ret_val = phy->ops.read_reg(hw, 33608cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 33618cfa0ad2SJack F Vogel &data); 33628cfa0ad2SJack F Vogel if (ret_val) 33636ab6bfe3SJack F Vogel return ret_val; 33648cfa0ad2SJack F Vogel 33658cfa0ad2SJack F Vogel data &= ~IGP01E1000_PSCFR_SMART_SPEED; 33668cfa0ad2SJack F Vogel ret_val = phy->ops.write_reg(hw, 33678cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 33688cfa0ad2SJack F Vogel data); 33698cfa0ad2SJack F Vogel if (ret_val) 33706ab6bfe3SJack F Vogel return ret_val; 33718cfa0ad2SJack F Vogel } 33728cfa0ad2SJack F Vogel } else if ((phy->autoneg_advertised == E1000_ALL_SPEED_DUPLEX) || 33738cfa0ad2SJack F Vogel (phy->autoneg_advertised == E1000_ALL_NOT_GIG) || 33748cfa0ad2SJack F Vogel (phy->autoneg_advertised == E1000_ALL_10_SPEED)) { 33758cfa0ad2SJack F Vogel phy_ctrl |= E1000_PHY_CTRL_NOND0A_LPLU; 33768cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_PHY_CTRL, phy_ctrl); 33778cfa0ad2SJack F Vogel 33789d81738fSJack F Vogel if (phy->type != e1000_phy_igp_3) 33796ab6bfe3SJack F Vogel return E1000_SUCCESS; 33809d81738fSJack F Vogel 33816ab6bfe3SJack F Vogel /* Call gig speed drop workaround on LPLU before accessing 33828cfa0ad2SJack F Vogel * any PHY registers 33838cfa0ad2SJack F Vogel */ 33849d81738fSJack F Vogel if (hw->mac.type == e1000_ich8lan) 33858cfa0ad2SJack F Vogel e1000_gig_downshift_workaround_ich8lan(hw); 33868cfa0ad2SJack F Vogel 33878cfa0ad2SJack F Vogel /* When LPLU is enabled, we should disable SmartSpeed */ 33888cfa0ad2SJack F Vogel ret_val = phy->ops.read_reg(hw, 33898cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 33908cfa0ad2SJack F Vogel &data); 33918cfa0ad2SJack F Vogel if (ret_val) 33926ab6bfe3SJack F Vogel return ret_val; 33938cfa0ad2SJack F Vogel 33948cfa0ad2SJack F Vogel data &= ~IGP01E1000_PSCFR_SMART_SPEED; 33958cfa0ad2SJack F Vogel ret_val = phy->ops.write_reg(hw, 33968cfa0ad2SJack F Vogel IGP01E1000_PHY_PORT_CONFIG, 33978cfa0ad2SJack F Vogel data); 33988cfa0ad2SJack F Vogel } 33998cfa0ad2SJack F Vogel 34008cfa0ad2SJack F Vogel return ret_val; 34018cfa0ad2SJack F Vogel } 34028cfa0ad2SJack F Vogel 34038cfa0ad2SJack F Vogel /** 34048cfa0ad2SJack F Vogel * e1000_valid_nvm_bank_detect_ich8lan - finds out the valid bank 0 or 1 34058cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 34068cfa0ad2SJack F Vogel * @bank: pointer to the variable that returns the active bank 34078cfa0ad2SJack F Vogel * 34088cfa0ad2SJack F Vogel * Reads signature byte from the NVM using the flash access registers. 3409d035aa2dSJack F Vogel * Word 0x13 bits 15:14 = 10b indicate a valid signature for that bank. 34108cfa0ad2SJack F Vogel **/ 34118cfa0ad2SJack F Vogel static s32 e1000_valid_nvm_bank_detect_ich8lan(struct e1000_hw *hw, u32 *bank) 34128cfa0ad2SJack F Vogel { 3413d035aa2dSJack F Vogel u32 eecd; 34148cfa0ad2SJack F Vogel struct e1000_nvm_info *nvm = &hw->nvm; 34158cfa0ad2SJack F Vogel u32 bank1_offset = nvm->flash_bank_size * sizeof(u16); 34168cfa0ad2SJack F Vogel u32 act_offset = E1000_ICH_NVM_SIG_WORD * 2 + 1; 3417c80429ceSEric Joyner u32 nvm_dword = 0; 3418d035aa2dSJack F Vogel u8 sig_byte = 0; 34196ab6bfe3SJack F Vogel s32 ret_val; 34208cfa0ad2SJack F Vogel 34217d9119bdSJack F Vogel DEBUGFUNC("e1000_valid_nvm_bank_detect_ich8lan"); 34227d9119bdSJack F Vogel 3423d035aa2dSJack F Vogel switch (hw->mac.type) { 3424c80429ceSEric Joyner case e1000_pch_spt: 34256fe4c0a0SSean Bruno case e1000_pch_cnp: 342659690eabSKevin Bowling case e1000_pch_tgp: 342759690eabSKevin Bowling case e1000_pch_adp: 342859690eabSKevin Bowling case e1000_pch_mtp: 3429c80429ceSEric Joyner bank1_offset = nvm->flash_bank_size; 3430c80429ceSEric Joyner act_offset = E1000_ICH_NVM_SIG_WORD; 3431c80429ceSEric Joyner 3432c80429ceSEric Joyner /* set bank to 0 in case flash read fails */ 3433c80429ceSEric Joyner *bank = 0; 3434c80429ceSEric Joyner 3435c80429ceSEric Joyner /* Check bank 0 */ 3436c80429ceSEric Joyner ret_val = e1000_read_flash_dword_ich8lan(hw, act_offset, 3437c80429ceSEric Joyner &nvm_dword); 3438c80429ceSEric Joyner if (ret_val) 3439c80429ceSEric Joyner return ret_val; 3440c80429ceSEric Joyner sig_byte = (u8)((nvm_dword & 0xFF00) >> 8); 3441c80429ceSEric Joyner if ((sig_byte & E1000_ICH_NVM_VALID_SIG_MASK) == 3442c80429ceSEric Joyner E1000_ICH_NVM_SIG_VALUE) { 3443c80429ceSEric Joyner *bank = 0; 3444c80429ceSEric Joyner return E1000_SUCCESS; 3445c80429ceSEric Joyner } 3446c80429ceSEric Joyner 3447c80429ceSEric Joyner /* Check bank 1 */ 3448c80429ceSEric Joyner ret_val = e1000_read_flash_dword_ich8lan(hw, act_offset + 3449c80429ceSEric Joyner bank1_offset, 3450c80429ceSEric Joyner &nvm_dword); 3451c80429ceSEric Joyner if (ret_val) 3452c80429ceSEric Joyner return ret_val; 3453c80429ceSEric Joyner sig_byte = (u8)((nvm_dword & 0xFF00) >> 8); 3454c80429ceSEric Joyner if ((sig_byte & E1000_ICH_NVM_VALID_SIG_MASK) == 3455c80429ceSEric Joyner E1000_ICH_NVM_SIG_VALUE) { 3456c80429ceSEric Joyner *bank = 1; 3457c80429ceSEric Joyner return E1000_SUCCESS; 3458c80429ceSEric Joyner } 3459c80429ceSEric Joyner 3460c80429ceSEric Joyner DEBUGOUT("ERROR: No valid NVM bank present\n"); 3461c80429ceSEric Joyner return -E1000_ERR_NVM; 3462d035aa2dSJack F Vogel case e1000_ich8lan: 3463d035aa2dSJack F Vogel case e1000_ich9lan: 3464d035aa2dSJack F Vogel eecd = E1000_READ_REG(hw, E1000_EECD); 3465d035aa2dSJack F Vogel if ((eecd & E1000_EECD_SEC1VAL_VALID_MASK) == 3466d035aa2dSJack F Vogel E1000_EECD_SEC1VAL_VALID_MASK) { 3467d035aa2dSJack F Vogel if (eecd & E1000_EECD_SEC1VAL) 34688cfa0ad2SJack F Vogel *bank = 1; 34698cfa0ad2SJack F Vogel else 34708cfa0ad2SJack F Vogel *bank = 0; 3471d035aa2dSJack F Vogel 34726ab6bfe3SJack F Vogel return E1000_SUCCESS; 3473d035aa2dSJack F Vogel } 34744dab5c37SJack F Vogel DEBUGOUT("Unable to determine valid NVM bank via EEC - reading flash signature\n"); 3475d035aa2dSJack F Vogel /* fall-thru */ 3476d035aa2dSJack F Vogel default: 3477d035aa2dSJack F Vogel /* set bank to 0 in case flash read fails */ 34788cfa0ad2SJack F Vogel *bank = 0; 34798cfa0ad2SJack F Vogel 3480d035aa2dSJack F Vogel /* Check bank 0 */ 3481d035aa2dSJack F Vogel ret_val = e1000_read_flash_byte_ich8lan(hw, act_offset, 3482d035aa2dSJack F Vogel &sig_byte); 3483d035aa2dSJack F Vogel if (ret_val) 34846ab6bfe3SJack F Vogel return ret_val; 3485d035aa2dSJack F Vogel if ((sig_byte & E1000_ICH_NVM_VALID_SIG_MASK) == 3486d035aa2dSJack F Vogel E1000_ICH_NVM_SIG_VALUE) { 3487d035aa2dSJack F Vogel *bank = 0; 34886ab6bfe3SJack F Vogel return E1000_SUCCESS; 3489d035aa2dSJack F Vogel } 3490d035aa2dSJack F Vogel 3491d035aa2dSJack F Vogel /* Check bank 1 */ 3492d035aa2dSJack F Vogel ret_val = e1000_read_flash_byte_ich8lan(hw, act_offset + 3493d035aa2dSJack F Vogel bank1_offset, 3494d035aa2dSJack F Vogel &sig_byte); 3495d035aa2dSJack F Vogel if (ret_val) 34966ab6bfe3SJack F Vogel return ret_val; 3497d035aa2dSJack F Vogel if ((sig_byte & E1000_ICH_NVM_VALID_SIG_MASK) == 3498d035aa2dSJack F Vogel E1000_ICH_NVM_SIG_VALUE) { 34998cfa0ad2SJack F Vogel *bank = 1; 35006ab6bfe3SJack F Vogel return E1000_SUCCESS; 35018cfa0ad2SJack F Vogel } 35028cfa0ad2SJack F Vogel 3503d035aa2dSJack F Vogel DEBUGOUT("ERROR: No valid NVM bank present\n"); 35046ab6bfe3SJack F Vogel return -E1000_ERR_NVM; 3505d035aa2dSJack F Vogel } 35068cfa0ad2SJack F Vogel } 35078cfa0ad2SJack F Vogel 35088cfa0ad2SJack F Vogel /** 3509c80429ceSEric Joyner * e1000_read_nvm_spt - NVM access for SPT 3510c80429ceSEric Joyner * @hw: pointer to the HW structure 3511c80429ceSEric Joyner * @offset: The offset (in bytes) of the word(s) to read. 3512c80429ceSEric Joyner * @words: Size of data to read in words. 3513c80429ceSEric Joyner * @data: pointer to the word(s) to read at offset. 3514c80429ceSEric Joyner * 3515c80429ceSEric Joyner * Reads a word(s) from the NVM 3516c80429ceSEric Joyner **/ 3517c80429ceSEric Joyner static s32 e1000_read_nvm_spt(struct e1000_hw *hw, u16 offset, u16 words, 3518c80429ceSEric Joyner u16 *data) 3519c80429ceSEric Joyner { 3520c80429ceSEric Joyner struct e1000_nvm_info *nvm = &hw->nvm; 3521c80429ceSEric Joyner struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 3522c80429ceSEric Joyner u32 act_offset; 3523c80429ceSEric Joyner s32 ret_val = E1000_SUCCESS; 3524c80429ceSEric Joyner u32 bank = 0; 3525c80429ceSEric Joyner u32 dword = 0; 3526c80429ceSEric Joyner u16 offset_to_read; 3527c80429ceSEric Joyner u16 i; 3528c80429ceSEric Joyner 3529c80429ceSEric Joyner DEBUGFUNC("e1000_read_nvm_spt"); 3530c80429ceSEric Joyner 3531c80429ceSEric Joyner if ((offset >= nvm->word_size) || (words > nvm->word_size - offset) || 3532c80429ceSEric Joyner (words == 0)) { 3533c80429ceSEric Joyner DEBUGOUT("nvm parameter(s) out of bounds\n"); 3534c80429ceSEric Joyner ret_val = -E1000_ERR_NVM; 3535c80429ceSEric Joyner goto out; 3536c80429ceSEric Joyner } 3537c80429ceSEric Joyner 3538c80429ceSEric Joyner nvm->ops.acquire(hw); 3539c80429ceSEric Joyner 3540c80429ceSEric Joyner ret_val = e1000_valid_nvm_bank_detect_ich8lan(hw, &bank); 3541c80429ceSEric Joyner if (ret_val != E1000_SUCCESS) { 3542c80429ceSEric Joyner DEBUGOUT("Could not detect valid bank, assuming bank 0\n"); 3543c80429ceSEric Joyner bank = 0; 3544c80429ceSEric Joyner } 3545c80429ceSEric Joyner 3546c80429ceSEric Joyner act_offset = (bank) ? nvm->flash_bank_size : 0; 3547c80429ceSEric Joyner act_offset += offset; 3548c80429ceSEric Joyner 3549c80429ceSEric Joyner ret_val = E1000_SUCCESS; 3550c80429ceSEric Joyner 3551c80429ceSEric Joyner for (i = 0; i < words; i += 2) { 3552c80429ceSEric Joyner if (words - i == 1) { 3553c80429ceSEric Joyner if (dev_spec->shadow_ram[offset+i].modified) { 3554c80429ceSEric Joyner data[i] = dev_spec->shadow_ram[offset+i].value; 3555c80429ceSEric Joyner } else { 3556c80429ceSEric Joyner offset_to_read = act_offset + i - 3557c80429ceSEric Joyner ((act_offset + i) % 2); 3558c80429ceSEric Joyner ret_val = 3559c80429ceSEric Joyner e1000_read_flash_dword_ich8lan(hw, 3560c80429ceSEric Joyner offset_to_read, 3561c80429ceSEric Joyner &dword); 3562c80429ceSEric Joyner if (ret_val) 3563c80429ceSEric Joyner break; 3564c80429ceSEric Joyner if ((act_offset + i) % 2 == 0) 3565c80429ceSEric Joyner data[i] = (u16)(dword & 0xFFFF); 3566c80429ceSEric Joyner else 3567c80429ceSEric Joyner data[i] = (u16)((dword >> 16) & 0xFFFF); 3568c80429ceSEric Joyner } 3569c80429ceSEric Joyner } else { 3570c80429ceSEric Joyner offset_to_read = act_offset + i; 3571c80429ceSEric Joyner if (!(dev_spec->shadow_ram[offset+i].modified) || 3572c80429ceSEric Joyner !(dev_spec->shadow_ram[offset+i+1].modified)) { 3573c80429ceSEric Joyner ret_val = 3574c80429ceSEric Joyner e1000_read_flash_dword_ich8lan(hw, 3575c80429ceSEric Joyner offset_to_read, 3576c80429ceSEric Joyner &dword); 3577c80429ceSEric Joyner if (ret_val) 3578c80429ceSEric Joyner break; 3579c80429ceSEric Joyner } 3580c80429ceSEric Joyner if (dev_spec->shadow_ram[offset+i].modified) 3581c80429ceSEric Joyner data[i] = dev_spec->shadow_ram[offset+i].value; 3582c80429ceSEric Joyner else 3583c80429ceSEric Joyner data[i] = (u16) (dword & 0xFFFF); 3584c80429ceSEric Joyner if (dev_spec->shadow_ram[offset+i].modified) 3585c80429ceSEric Joyner data[i+1] = 3586c80429ceSEric Joyner dev_spec->shadow_ram[offset+i+1].value; 3587c80429ceSEric Joyner else 3588c80429ceSEric Joyner data[i+1] = (u16) (dword >> 16 & 0xFFFF); 3589c80429ceSEric Joyner } 3590c80429ceSEric Joyner } 3591c80429ceSEric Joyner 3592c80429ceSEric Joyner nvm->ops.release(hw); 3593c80429ceSEric Joyner 3594c80429ceSEric Joyner out: 3595c80429ceSEric Joyner if (ret_val) 3596c80429ceSEric Joyner DEBUGOUT1("NVM read error: %d\n", ret_val); 3597c80429ceSEric Joyner 3598c80429ceSEric Joyner return ret_val; 3599c80429ceSEric Joyner } 3600c80429ceSEric Joyner 3601c80429ceSEric Joyner /** 36028cfa0ad2SJack F Vogel * e1000_read_nvm_ich8lan - Read word(s) from the NVM 36038cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 36048cfa0ad2SJack F Vogel * @offset: The offset (in bytes) of the word(s) to read. 36058cfa0ad2SJack F Vogel * @words: Size of data to read in words 36068cfa0ad2SJack F Vogel * @data: Pointer to the word(s) to read at offset. 36078cfa0ad2SJack F Vogel * 36088cfa0ad2SJack F Vogel * Reads a word(s) from the NVM using the flash access registers. 36098cfa0ad2SJack F Vogel **/ 36108cfa0ad2SJack F Vogel static s32 e1000_read_nvm_ich8lan(struct e1000_hw *hw, u16 offset, u16 words, 36118cfa0ad2SJack F Vogel u16 *data) 36128cfa0ad2SJack F Vogel { 36138cfa0ad2SJack F Vogel struct e1000_nvm_info *nvm = &hw->nvm; 3614daf9197cSJack F Vogel struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 36158cfa0ad2SJack F Vogel u32 act_offset; 36168cfa0ad2SJack F Vogel s32 ret_val = E1000_SUCCESS; 36178cfa0ad2SJack F Vogel u32 bank = 0; 36188cfa0ad2SJack F Vogel u16 i, word; 36198cfa0ad2SJack F Vogel 36208cfa0ad2SJack F Vogel DEBUGFUNC("e1000_read_nvm_ich8lan"); 36218cfa0ad2SJack F Vogel 36228cfa0ad2SJack F Vogel if ((offset >= nvm->word_size) || (words > nvm->word_size - offset) || 36238cfa0ad2SJack F Vogel (words == 0)) { 36248cfa0ad2SJack F Vogel DEBUGOUT("nvm parameter(s) out of bounds\n"); 36258cfa0ad2SJack F Vogel ret_val = -E1000_ERR_NVM; 36268cfa0ad2SJack F Vogel goto out; 36278cfa0ad2SJack F Vogel } 36288cfa0ad2SJack F Vogel 36294edd8523SJack F Vogel nvm->ops.acquire(hw); 36308cfa0ad2SJack F Vogel 36318cfa0ad2SJack F Vogel ret_val = e1000_valid_nvm_bank_detect_ich8lan(hw, &bank); 36324edd8523SJack F Vogel if (ret_val != E1000_SUCCESS) { 36334edd8523SJack F Vogel DEBUGOUT("Could not detect valid bank, assuming bank 0\n"); 36344edd8523SJack F Vogel bank = 0; 36354edd8523SJack F Vogel } 36368cfa0ad2SJack F Vogel 36378cfa0ad2SJack F Vogel act_offset = (bank) ? nvm->flash_bank_size : 0; 36388cfa0ad2SJack F Vogel act_offset += offset; 36398cfa0ad2SJack F Vogel 36404edd8523SJack F Vogel ret_val = E1000_SUCCESS; 36418cfa0ad2SJack F Vogel for (i = 0; i < words; i++) { 36424dab5c37SJack F Vogel if (dev_spec->shadow_ram[offset+i].modified) { 36438cfa0ad2SJack F Vogel data[i] = dev_spec->shadow_ram[offset+i].value; 36448cfa0ad2SJack F Vogel } else { 36458cfa0ad2SJack F Vogel ret_val = e1000_read_flash_word_ich8lan(hw, 36468cfa0ad2SJack F Vogel act_offset + i, 36478cfa0ad2SJack F Vogel &word); 36488cfa0ad2SJack F Vogel if (ret_val) 36498cfa0ad2SJack F Vogel break; 36508cfa0ad2SJack F Vogel data[i] = word; 36518cfa0ad2SJack F Vogel } 36528cfa0ad2SJack F Vogel } 36538cfa0ad2SJack F Vogel 36548cfa0ad2SJack F Vogel nvm->ops.release(hw); 36558cfa0ad2SJack F Vogel 36568cfa0ad2SJack F Vogel out: 3657d035aa2dSJack F Vogel if (ret_val) 3658d035aa2dSJack F Vogel DEBUGOUT1("NVM read error: %d\n", ret_val); 3659d035aa2dSJack F Vogel 36608cfa0ad2SJack F Vogel return ret_val; 36618cfa0ad2SJack F Vogel } 36628cfa0ad2SJack F Vogel 36638cfa0ad2SJack F Vogel /** 36648cfa0ad2SJack F Vogel * e1000_flash_cycle_init_ich8lan - Initialize flash 36658cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 36668cfa0ad2SJack F Vogel * 36678cfa0ad2SJack F Vogel * This function does initial flash setup so that a new read/write/erase cycle 36688cfa0ad2SJack F Vogel * can be started. 36698cfa0ad2SJack F Vogel **/ 36708cfa0ad2SJack F Vogel static s32 e1000_flash_cycle_init_ich8lan(struct e1000_hw *hw) 36718cfa0ad2SJack F Vogel { 36728cfa0ad2SJack F Vogel union ich8_hws_flash_status hsfsts; 36738cfa0ad2SJack F Vogel s32 ret_val = -E1000_ERR_NVM; 36748cfa0ad2SJack F Vogel 36758cfa0ad2SJack F Vogel DEBUGFUNC("e1000_flash_cycle_init_ich8lan"); 36768cfa0ad2SJack F Vogel 36778cfa0ad2SJack F Vogel hsfsts.regval = E1000_READ_FLASH_REG16(hw, ICH_FLASH_HSFSTS); 36788cfa0ad2SJack F Vogel 36798cfa0ad2SJack F Vogel /* Check if the flash descriptor is valid */ 36806ab6bfe3SJack F Vogel if (!hsfsts.hsf_status.fldesvalid) { 36814dab5c37SJack F Vogel DEBUGOUT("Flash descriptor invalid. SW Sequencing must be used.\n"); 36826ab6bfe3SJack F Vogel return -E1000_ERR_NVM; 36838cfa0ad2SJack F Vogel } 36848cfa0ad2SJack F Vogel 36858cfa0ad2SJack F Vogel /* Clear FCERR and DAEL in hw status by writing 1 */ 36868cfa0ad2SJack F Vogel hsfsts.hsf_status.flcerr = 1; 36878cfa0ad2SJack F Vogel hsfsts.hsf_status.dael = 1; 3688295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 3689c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_HSFSTS, 3690c80429ceSEric Joyner hsfsts.regval & 0xFFFF); 3691c80429ceSEric Joyner else 36928cfa0ad2SJack F Vogel E1000_WRITE_FLASH_REG16(hw, ICH_FLASH_HSFSTS, hsfsts.regval); 36938cfa0ad2SJack F Vogel 36946ab6bfe3SJack F Vogel /* Either we should have a hardware SPI cycle in progress 36958cfa0ad2SJack F Vogel * bit to check against, in order to start a new cycle or 36968cfa0ad2SJack F Vogel * FDONE bit should be changed in the hardware so that it 36978cfa0ad2SJack F Vogel * is 1 after hardware reset, which can then be used as an 36988cfa0ad2SJack F Vogel * indication whether a cycle is in progress or has been 36998cfa0ad2SJack F Vogel * completed. 37008cfa0ad2SJack F Vogel */ 37018cfa0ad2SJack F Vogel 37026ab6bfe3SJack F Vogel if (!hsfsts.hsf_status.flcinprog) { 37036ab6bfe3SJack F Vogel /* There is no cycle running at present, 37048cfa0ad2SJack F Vogel * so we can start a cycle. 37058cfa0ad2SJack F Vogel * Begin by setting Flash Cycle Done. 37068cfa0ad2SJack F Vogel */ 37078cfa0ad2SJack F Vogel hsfsts.hsf_status.flcdone = 1; 3708295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 3709c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_HSFSTS, 3710c80429ceSEric Joyner hsfsts.regval & 0xFFFF); 3711c80429ceSEric Joyner else 3712c80429ceSEric Joyner E1000_WRITE_FLASH_REG16(hw, ICH_FLASH_HSFSTS, 3713c80429ceSEric Joyner hsfsts.regval); 37148cfa0ad2SJack F Vogel ret_val = E1000_SUCCESS; 37158cfa0ad2SJack F Vogel } else { 3716730d3130SJack F Vogel s32 i; 3717730d3130SJack F Vogel 37186ab6bfe3SJack F Vogel /* Otherwise poll for sometime so the current 37198cfa0ad2SJack F Vogel * cycle has a chance to end before giving up. 37208cfa0ad2SJack F Vogel */ 37218cfa0ad2SJack F Vogel for (i = 0; i < ICH_FLASH_READ_COMMAND_TIMEOUT; i++) { 37228cfa0ad2SJack F Vogel hsfsts.regval = E1000_READ_FLASH_REG16(hw, 37238cfa0ad2SJack F Vogel ICH_FLASH_HSFSTS); 37246ab6bfe3SJack F Vogel if (!hsfsts.hsf_status.flcinprog) { 37258cfa0ad2SJack F Vogel ret_val = E1000_SUCCESS; 37268cfa0ad2SJack F Vogel break; 37278cfa0ad2SJack F Vogel } 37288cfa0ad2SJack F Vogel usec_delay(1); 37298cfa0ad2SJack F Vogel } 37308cfa0ad2SJack F Vogel if (ret_val == E1000_SUCCESS) { 37316ab6bfe3SJack F Vogel /* Successful in waiting for previous cycle to timeout, 37328cfa0ad2SJack F Vogel * now set the Flash Cycle Done. 37338cfa0ad2SJack F Vogel */ 37348cfa0ad2SJack F Vogel hsfsts.hsf_status.flcdone = 1; 3735295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 3736c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_HSFSTS, 3737c80429ceSEric Joyner hsfsts.regval & 0xFFFF); 3738c80429ceSEric Joyner else 3739daf9197cSJack F Vogel E1000_WRITE_FLASH_REG16(hw, ICH_FLASH_HSFSTS, 37408cfa0ad2SJack F Vogel hsfsts.regval); 37418cfa0ad2SJack F Vogel } else { 37424dab5c37SJack F Vogel DEBUGOUT("Flash controller busy, cannot get access\n"); 37438cfa0ad2SJack F Vogel } 37448cfa0ad2SJack F Vogel } 37458cfa0ad2SJack F Vogel 37468cfa0ad2SJack F Vogel return ret_val; 37478cfa0ad2SJack F Vogel } 37488cfa0ad2SJack F Vogel 37498cfa0ad2SJack F Vogel /** 37508cfa0ad2SJack F Vogel * e1000_flash_cycle_ich8lan - Starts flash cycle (read/write/erase) 37518cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 37528cfa0ad2SJack F Vogel * @timeout: maximum time to wait for completion 37538cfa0ad2SJack F Vogel * 37548cfa0ad2SJack F Vogel * This function starts a flash cycle and waits for its completion. 37558cfa0ad2SJack F Vogel **/ 37568cfa0ad2SJack F Vogel static s32 e1000_flash_cycle_ich8lan(struct e1000_hw *hw, u32 timeout) 37578cfa0ad2SJack F Vogel { 37588cfa0ad2SJack F Vogel union ich8_hws_flash_ctrl hsflctl; 37598cfa0ad2SJack F Vogel union ich8_hws_flash_status hsfsts; 37608cfa0ad2SJack F Vogel u32 i = 0; 37618cfa0ad2SJack F Vogel 37628cfa0ad2SJack F Vogel DEBUGFUNC("e1000_flash_cycle_ich8lan"); 37638cfa0ad2SJack F Vogel 37648cfa0ad2SJack F Vogel /* Start a cycle by writing 1 in Flash Cycle Go in Hw Flash Control */ 3765295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 3766c80429ceSEric Joyner hsflctl.regval = E1000_READ_FLASH_REG(hw, ICH_FLASH_HSFSTS)>>16; 3767c80429ceSEric Joyner else 37688cfa0ad2SJack F Vogel hsflctl.regval = E1000_READ_FLASH_REG16(hw, ICH_FLASH_HSFCTL); 37698cfa0ad2SJack F Vogel hsflctl.hsf_ctrl.flcgo = 1; 37708cc64f1eSJack F Vogel 3771295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 3772c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_HSFSTS, 3773c80429ceSEric Joyner hsflctl.regval << 16); 3774c80429ceSEric Joyner else 37758cfa0ad2SJack F Vogel E1000_WRITE_FLASH_REG16(hw, ICH_FLASH_HSFCTL, hsflctl.regval); 37768cfa0ad2SJack F Vogel 37778cfa0ad2SJack F Vogel /* wait till FDONE bit is set to 1 */ 37788cfa0ad2SJack F Vogel do { 37798cfa0ad2SJack F Vogel hsfsts.regval = E1000_READ_FLASH_REG16(hw, ICH_FLASH_HSFSTS); 37806ab6bfe3SJack F Vogel if (hsfsts.hsf_status.flcdone) 37818cfa0ad2SJack F Vogel break; 37828cfa0ad2SJack F Vogel usec_delay(1); 37838cfa0ad2SJack F Vogel } while (i++ < timeout); 37848cfa0ad2SJack F Vogel 37856ab6bfe3SJack F Vogel if (hsfsts.hsf_status.flcdone && !hsfsts.hsf_status.flcerr) 37866ab6bfe3SJack F Vogel return E1000_SUCCESS; 37878cfa0ad2SJack F Vogel 37886ab6bfe3SJack F Vogel return -E1000_ERR_NVM; 37898cfa0ad2SJack F Vogel } 37908cfa0ad2SJack F Vogel 37918cfa0ad2SJack F Vogel /** 3792c80429ceSEric Joyner * e1000_read_flash_dword_ich8lan - Read dword from flash 3793c80429ceSEric Joyner * @hw: pointer to the HW structure 3794c80429ceSEric Joyner * @offset: offset to data location 3795c80429ceSEric Joyner * @data: pointer to the location for storing the data 3796c80429ceSEric Joyner * 3797c80429ceSEric Joyner * Reads the flash dword at offset into data. Offset is converted 3798c80429ceSEric Joyner * to bytes before read. 3799c80429ceSEric Joyner **/ 3800c80429ceSEric Joyner static s32 e1000_read_flash_dword_ich8lan(struct e1000_hw *hw, u32 offset, 3801c80429ceSEric Joyner u32 *data) 3802c80429ceSEric Joyner { 3803c80429ceSEric Joyner DEBUGFUNC("e1000_read_flash_dword_ich8lan"); 3804c80429ceSEric Joyner 3805c80429ceSEric Joyner if (!data) 3806c80429ceSEric Joyner return -E1000_ERR_NVM; 3807c80429ceSEric Joyner 3808c80429ceSEric Joyner /* Must convert word offset into bytes. */ 3809c80429ceSEric Joyner offset <<= 1; 3810c80429ceSEric Joyner 3811c80429ceSEric Joyner return e1000_read_flash_data32_ich8lan(hw, offset, data); 3812c80429ceSEric Joyner } 3813c80429ceSEric Joyner 3814c80429ceSEric Joyner /** 38158cfa0ad2SJack F Vogel * e1000_read_flash_word_ich8lan - Read word from flash 38168cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 38178cfa0ad2SJack F Vogel * @offset: offset to data location 38188cfa0ad2SJack F Vogel * @data: pointer to the location for storing the data 38198cfa0ad2SJack F Vogel * 38208cfa0ad2SJack F Vogel * Reads the flash word at offset into data. Offset is converted 38218cfa0ad2SJack F Vogel * to bytes before read. 38228cfa0ad2SJack F Vogel **/ 38238cfa0ad2SJack F Vogel static s32 e1000_read_flash_word_ich8lan(struct e1000_hw *hw, u32 offset, 38248cfa0ad2SJack F Vogel u16 *data) 38258cfa0ad2SJack F Vogel { 38268cfa0ad2SJack F Vogel DEBUGFUNC("e1000_read_flash_word_ich8lan"); 38278cfa0ad2SJack F Vogel 38286ab6bfe3SJack F Vogel if (!data) 38296ab6bfe3SJack F Vogel return -E1000_ERR_NVM; 38308cfa0ad2SJack F Vogel 38318cfa0ad2SJack F Vogel /* Must convert offset into bytes. */ 38328cfa0ad2SJack F Vogel offset <<= 1; 38338cfa0ad2SJack F Vogel 38346ab6bfe3SJack F Vogel return e1000_read_flash_data_ich8lan(hw, offset, 2, data); 38358cfa0ad2SJack F Vogel } 38368cfa0ad2SJack F Vogel 38378cfa0ad2SJack F Vogel /** 38388cfa0ad2SJack F Vogel * e1000_read_flash_byte_ich8lan - Read byte from flash 38398cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 38408cfa0ad2SJack F Vogel * @offset: The offset of the byte to read. 38418cfa0ad2SJack F Vogel * @data: Pointer to a byte to store the value read. 38428cfa0ad2SJack F Vogel * 38438cfa0ad2SJack F Vogel * Reads a single byte from the NVM using the flash access registers. 38448cfa0ad2SJack F Vogel **/ 38458cfa0ad2SJack F Vogel static s32 e1000_read_flash_byte_ich8lan(struct e1000_hw *hw, u32 offset, 38468cfa0ad2SJack F Vogel u8 *data) 38478cfa0ad2SJack F Vogel { 38486ab6bfe3SJack F Vogel s32 ret_val; 38498cfa0ad2SJack F Vogel u16 word = 0; 38508cfa0ad2SJack F Vogel 3851c80429ceSEric Joyner /* In SPT, only 32 bits access is supported, 3852c80429ceSEric Joyner * so this function should not be called. 3853c80429ceSEric Joyner */ 3854295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 3855c80429ceSEric Joyner return -E1000_ERR_NVM; 3856c80429ceSEric Joyner else 38578cfa0ad2SJack F Vogel ret_val = e1000_read_flash_data_ich8lan(hw, offset, 1, &word); 38588cc64f1eSJack F Vogel 38598cfa0ad2SJack F Vogel if (ret_val) 38606ab6bfe3SJack F Vogel return ret_val; 38618cfa0ad2SJack F Vogel 38628cfa0ad2SJack F Vogel *data = (u8)word; 38638cfa0ad2SJack F Vogel 38646ab6bfe3SJack F Vogel return E1000_SUCCESS; 38658cfa0ad2SJack F Vogel } 38668cfa0ad2SJack F Vogel 38678cfa0ad2SJack F Vogel /** 38688cfa0ad2SJack F Vogel * e1000_read_flash_data_ich8lan - Read byte or word from NVM 38698cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 38708cfa0ad2SJack F Vogel * @offset: The offset (in bytes) of the byte or word to read. 38718cfa0ad2SJack F Vogel * @size: Size of data to read, 1=byte 2=word 38728cfa0ad2SJack F Vogel * @data: Pointer to the word to store the value read. 38738cfa0ad2SJack F Vogel * 38748cfa0ad2SJack F Vogel * Reads a byte or word from the NVM using the flash access registers. 38758cfa0ad2SJack F Vogel **/ 38768cfa0ad2SJack F Vogel static s32 e1000_read_flash_data_ich8lan(struct e1000_hw *hw, u32 offset, 38778cfa0ad2SJack F Vogel u8 size, u16 *data) 38788cfa0ad2SJack F Vogel { 38798cfa0ad2SJack F Vogel union ich8_hws_flash_status hsfsts; 38808cfa0ad2SJack F Vogel union ich8_hws_flash_ctrl hsflctl; 38818cfa0ad2SJack F Vogel u32 flash_linear_addr; 38828cfa0ad2SJack F Vogel u32 flash_data = 0; 38838cfa0ad2SJack F Vogel s32 ret_val = -E1000_ERR_NVM; 38848cfa0ad2SJack F Vogel u8 count = 0; 38858cfa0ad2SJack F Vogel 38868cfa0ad2SJack F Vogel DEBUGFUNC("e1000_read_flash_data_ich8lan"); 38878cfa0ad2SJack F Vogel 38888cfa0ad2SJack F Vogel if (size < 1 || size > 2 || offset > ICH_FLASH_LINEAR_ADDR_MASK) 38896ab6bfe3SJack F Vogel return -E1000_ERR_NVM; 38907609433eSJack F Vogel flash_linear_addr = ((ICH_FLASH_LINEAR_ADDR_MASK & offset) + 38917609433eSJack F Vogel hw->nvm.flash_base_addr); 38928cfa0ad2SJack F Vogel 38938cfa0ad2SJack F Vogel do { 38948cfa0ad2SJack F Vogel usec_delay(1); 38958cfa0ad2SJack F Vogel /* Steps */ 38968cfa0ad2SJack F Vogel ret_val = e1000_flash_cycle_init_ich8lan(hw); 38978cfa0ad2SJack F Vogel if (ret_val != E1000_SUCCESS) 38988cfa0ad2SJack F Vogel break; 38998cfa0ad2SJack F Vogel hsflctl.regval = E1000_READ_FLASH_REG16(hw, ICH_FLASH_HSFCTL); 39008cc64f1eSJack F Vogel 39018cfa0ad2SJack F Vogel /* 0b/1b corresponds to 1 or 2 byte size, respectively. */ 39028cfa0ad2SJack F Vogel hsflctl.hsf_ctrl.fldbcount = size - 1; 39038cfa0ad2SJack F Vogel hsflctl.hsf_ctrl.flcycle = ICH_CYCLE_READ; 39048cfa0ad2SJack F Vogel E1000_WRITE_FLASH_REG16(hw, ICH_FLASH_HSFCTL, hsflctl.regval); 39058cfa0ad2SJack F Vogel E1000_WRITE_FLASH_REG(hw, ICH_FLASH_FADDR, flash_linear_addr); 39068cfa0ad2SJack F Vogel 39078cc64f1eSJack F Vogel ret_val = e1000_flash_cycle_ich8lan(hw, 39088cfa0ad2SJack F Vogel ICH_FLASH_READ_COMMAND_TIMEOUT); 39098cfa0ad2SJack F Vogel 39106ab6bfe3SJack F Vogel /* Check if FCERR is set to 1, if set to 1, clear it 39118cfa0ad2SJack F Vogel * and try the whole sequence a few more times, else 39128cfa0ad2SJack F Vogel * read in (shift in) the Flash Data0, the order is 39138cfa0ad2SJack F Vogel * least significant byte first msb to lsb 39148cfa0ad2SJack F Vogel */ 39158cfa0ad2SJack F Vogel if (ret_val == E1000_SUCCESS) { 39168cfa0ad2SJack F Vogel flash_data = E1000_READ_FLASH_REG(hw, ICH_FLASH_FDATA0); 3917daf9197cSJack F Vogel if (size == 1) 39188cfa0ad2SJack F Vogel *data = (u8)(flash_data & 0x000000FF); 3919daf9197cSJack F Vogel else if (size == 2) 39208cfa0ad2SJack F Vogel *data = (u16)(flash_data & 0x0000FFFF); 39218cfa0ad2SJack F Vogel break; 39228cfa0ad2SJack F Vogel } else { 39236ab6bfe3SJack F Vogel /* If we've gotten here, then things are probably 39248cfa0ad2SJack F Vogel * completely hosed, but if the error condition is 39258cfa0ad2SJack F Vogel * detected, it won't hurt to give it another try... 39268cfa0ad2SJack F Vogel * ICH_FLASH_CYCLE_REPEAT_COUNT times. 39278cfa0ad2SJack F Vogel */ 39288cfa0ad2SJack F Vogel hsfsts.regval = E1000_READ_FLASH_REG16(hw, 39298cfa0ad2SJack F Vogel ICH_FLASH_HSFSTS); 39306ab6bfe3SJack F Vogel if (hsfsts.hsf_status.flcerr) { 39318cfa0ad2SJack F Vogel /* Repeat for some time before giving up. */ 39328cfa0ad2SJack F Vogel continue; 39336ab6bfe3SJack F Vogel } else if (!hsfsts.hsf_status.flcdone) { 39344dab5c37SJack F Vogel DEBUGOUT("Timeout error - flash cycle did not complete.\n"); 39358cfa0ad2SJack F Vogel break; 39368cfa0ad2SJack F Vogel } 39378cfa0ad2SJack F Vogel } 39388cfa0ad2SJack F Vogel } while (count++ < ICH_FLASH_CYCLE_REPEAT_COUNT); 39398cfa0ad2SJack F Vogel 39408cfa0ad2SJack F Vogel return ret_val; 39418cfa0ad2SJack F Vogel } 39428cfa0ad2SJack F Vogel 3943c80429ceSEric Joyner /** 3944c80429ceSEric Joyner * e1000_read_flash_data32_ich8lan - Read dword from NVM 3945c80429ceSEric Joyner * @hw: pointer to the HW structure 3946c80429ceSEric Joyner * @offset: The offset (in bytes) of the dword to read. 3947c80429ceSEric Joyner * @data: Pointer to the dword to store the value read. 3948c80429ceSEric Joyner * 3949c80429ceSEric Joyner * Reads a byte or word from the NVM using the flash access registers. 3950c80429ceSEric Joyner **/ 3951c80429ceSEric Joyner static s32 e1000_read_flash_data32_ich8lan(struct e1000_hw *hw, u32 offset, 3952c80429ceSEric Joyner u32 *data) 3953c80429ceSEric Joyner { 3954c80429ceSEric Joyner union ich8_hws_flash_status hsfsts; 3955c80429ceSEric Joyner union ich8_hws_flash_ctrl hsflctl; 3956c80429ceSEric Joyner u32 flash_linear_addr; 3957c80429ceSEric Joyner s32 ret_val = -E1000_ERR_NVM; 3958c80429ceSEric Joyner u8 count = 0; 3959c80429ceSEric Joyner 3960c80429ceSEric Joyner DEBUGFUNC("e1000_read_flash_data_ich8lan"); 3961c80429ceSEric Joyner 3962c80429ceSEric Joyner if (offset > ICH_FLASH_LINEAR_ADDR_MASK || 3963295df609SEric Joyner hw->mac.type < e1000_pch_spt) 3964c80429ceSEric Joyner return -E1000_ERR_NVM; 3965c80429ceSEric Joyner flash_linear_addr = ((ICH_FLASH_LINEAR_ADDR_MASK & offset) + 3966c80429ceSEric Joyner hw->nvm.flash_base_addr); 3967c80429ceSEric Joyner 3968c80429ceSEric Joyner do { 3969c80429ceSEric Joyner usec_delay(1); 3970c80429ceSEric Joyner /* Steps */ 3971c80429ceSEric Joyner ret_val = e1000_flash_cycle_init_ich8lan(hw); 3972c80429ceSEric Joyner if (ret_val != E1000_SUCCESS) 3973c80429ceSEric Joyner break; 3974c80429ceSEric Joyner /* In SPT, This register is in Lan memory space, not flash. 3975c80429ceSEric Joyner * Therefore, only 32 bit access is supported 3976c80429ceSEric Joyner */ 3977c80429ceSEric Joyner hsflctl.regval = E1000_READ_FLASH_REG(hw, ICH_FLASH_HSFSTS)>>16; 3978c80429ceSEric Joyner 3979c80429ceSEric Joyner /* 0b/1b corresponds to 1 or 2 byte size, respectively. */ 3980c80429ceSEric Joyner hsflctl.hsf_ctrl.fldbcount = sizeof(u32) - 1; 3981c80429ceSEric Joyner hsflctl.hsf_ctrl.flcycle = ICH_CYCLE_READ; 3982c80429ceSEric Joyner /* In SPT, This register is in Lan memory space, not flash. 3983c80429ceSEric Joyner * Therefore, only 32 bit access is supported 3984c80429ceSEric Joyner */ 3985c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_HSFSTS, 3986c80429ceSEric Joyner (u32)hsflctl.regval << 16); 3987c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_FADDR, flash_linear_addr); 3988c80429ceSEric Joyner 3989c80429ceSEric Joyner ret_val = e1000_flash_cycle_ich8lan(hw, 3990c80429ceSEric Joyner ICH_FLASH_READ_COMMAND_TIMEOUT); 3991c80429ceSEric Joyner 3992c80429ceSEric Joyner /* Check if FCERR is set to 1, if set to 1, clear it 3993c80429ceSEric Joyner * and try the whole sequence a few more times, else 3994c80429ceSEric Joyner * read in (shift in) the Flash Data0, the order is 3995c80429ceSEric Joyner * least significant byte first msb to lsb 3996c80429ceSEric Joyner */ 3997c80429ceSEric Joyner if (ret_val == E1000_SUCCESS) { 3998c80429ceSEric Joyner *data = E1000_READ_FLASH_REG(hw, ICH_FLASH_FDATA0); 3999c80429ceSEric Joyner break; 4000c80429ceSEric Joyner } else { 4001c80429ceSEric Joyner /* If we've gotten here, then things are probably 4002c80429ceSEric Joyner * completely hosed, but if the error condition is 4003c80429ceSEric Joyner * detected, it won't hurt to give it another try... 4004c80429ceSEric Joyner * ICH_FLASH_CYCLE_REPEAT_COUNT times. 4005c80429ceSEric Joyner */ 4006c80429ceSEric Joyner hsfsts.regval = E1000_READ_FLASH_REG16(hw, 4007c80429ceSEric Joyner ICH_FLASH_HSFSTS); 4008c80429ceSEric Joyner if (hsfsts.hsf_status.flcerr) { 4009c80429ceSEric Joyner /* Repeat for some time before giving up. */ 4010c80429ceSEric Joyner continue; 4011c80429ceSEric Joyner } else if (!hsfsts.hsf_status.flcdone) { 4012c80429ceSEric Joyner DEBUGOUT("Timeout error - flash cycle did not complete.\n"); 4013c80429ceSEric Joyner break; 4014c80429ceSEric Joyner } 4015c80429ceSEric Joyner } 4016c80429ceSEric Joyner } while (count++ < ICH_FLASH_CYCLE_REPEAT_COUNT); 4017c80429ceSEric Joyner 4018c80429ceSEric Joyner return ret_val; 4019c80429ceSEric Joyner } 40208cc64f1eSJack F Vogel 40218cfa0ad2SJack F Vogel /** 40228cfa0ad2SJack F Vogel * e1000_write_nvm_ich8lan - Write word(s) to the NVM 40238cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 40248cfa0ad2SJack F Vogel * @offset: The offset (in bytes) of the word(s) to write. 40258cfa0ad2SJack F Vogel * @words: Size of data to write in words 40268cfa0ad2SJack F Vogel * @data: Pointer to the word(s) to write at offset. 40278cfa0ad2SJack F Vogel * 40288cfa0ad2SJack F Vogel * Writes a byte or word to the NVM using the flash access registers. 40298cfa0ad2SJack F Vogel **/ 40308cfa0ad2SJack F Vogel static s32 e1000_write_nvm_ich8lan(struct e1000_hw *hw, u16 offset, u16 words, 40318cfa0ad2SJack F Vogel u16 *data) 40328cfa0ad2SJack F Vogel { 40338cfa0ad2SJack F Vogel struct e1000_nvm_info *nvm = &hw->nvm; 4034daf9197cSJack F Vogel struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 40358cfa0ad2SJack F Vogel u16 i; 40368cfa0ad2SJack F Vogel 40378cfa0ad2SJack F Vogel DEBUGFUNC("e1000_write_nvm_ich8lan"); 40388cfa0ad2SJack F Vogel 40398cfa0ad2SJack F Vogel if ((offset >= nvm->word_size) || (words > nvm->word_size - offset) || 40408cfa0ad2SJack F Vogel (words == 0)) { 40418cfa0ad2SJack F Vogel DEBUGOUT("nvm parameter(s) out of bounds\n"); 40426ab6bfe3SJack F Vogel return -E1000_ERR_NVM; 40438cfa0ad2SJack F Vogel } 40448cfa0ad2SJack F Vogel 40454edd8523SJack F Vogel nvm->ops.acquire(hw); 40468cfa0ad2SJack F Vogel 40478cfa0ad2SJack F Vogel for (i = 0; i < words; i++) { 40488cfa0ad2SJack F Vogel dev_spec->shadow_ram[offset+i].modified = TRUE; 40498cfa0ad2SJack F Vogel dev_spec->shadow_ram[offset+i].value = data[i]; 40508cfa0ad2SJack F Vogel } 40518cfa0ad2SJack F Vogel 40528cfa0ad2SJack F Vogel nvm->ops.release(hw); 40538cfa0ad2SJack F Vogel 40546ab6bfe3SJack F Vogel return E1000_SUCCESS; 40558cfa0ad2SJack F Vogel } 40568cfa0ad2SJack F Vogel 40578cfa0ad2SJack F Vogel /** 4058c80429ceSEric Joyner * e1000_update_nvm_checksum_spt - Update the checksum for NVM 4059c80429ceSEric Joyner * @hw: pointer to the HW structure 4060c80429ceSEric Joyner * 4061c80429ceSEric Joyner * The NVM checksum is updated by calling the generic update_nvm_checksum, 4062c80429ceSEric Joyner * which writes the checksum to the shadow ram. The changes in the shadow 4063c80429ceSEric Joyner * ram are then committed to the EEPROM by processing each bank at a time 4064c80429ceSEric Joyner * checking for the modified bit and writing only the pending changes. 4065c80429ceSEric Joyner * After a successful commit, the shadow ram is cleared and is ready for 4066c80429ceSEric Joyner * future writes. 4067c80429ceSEric Joyner **/ 4068c80429ceSEric Joyner static s32 e1000_update_nvm_checksum_spt(struct e1000_hw *hw) 4069c80429ceSEric Joyner { 4070c80429ceSEric Joyner struct e1000_nvm_info *nvm = &hw->nvm; 4071c80429ceSEric Joyner struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 4072c80429ceSEric Joyner u32 i, act_offset, new_bank_offset, old_bank_offset, bank; 4073c80429ceSEric Joyner s32 ret_val; 4074c80429ceSEric Joyner u32 dword = 0; 4075c80429ceSEric Joyner 4076c80429ceSEric Joyner DEBUGFUNC("e1000_update_nvm_checksum_spt"); 4077c80429ceSEric Joyner 4078c80429ceSEric Joyner ret_val = e1000_update_nvm_checksum_generic(hw); 4079c80429ceSEric Joyner if (ret_val) 4080c80429ceSEric Joyner goto out; 4081c80429ceSEric Joyner 4082c80429ceSEric Joyner if (nvm->type != e1000_nvm_flash_sw) 4083c80429ceSEric Joyner goto out; 4084c80429ceSEric Joyner 4085c80429ceSEric Joyner nvm->ops.acquire(hw); 4086c80429ceSEric Joyner 4087c80429ceSEric Joyner /* We're writing to the opposite bank so if we're on bank 1, 4088c80429ceSEric Joyner * write to bank 0 etc. We also need to erase the segment that 4089c80429ceSEric Joyner * is going to be written 4090c80429ceSEric Joyner */ 4091c80429ceSEric Joyner ret_val = e1000_valid_nvm_bank_detect_ich8lan(hw, &bank); 4092c80429ceSEric Joyner if (ret_val != E1000_SUCCESS) { 4093c80429ceSEric Joyner DEBUGOUT("Could not detect valid bank, assuming bank 0\n"); 4094c80429ceSEric Joyner bank = 0; 4095c80429ceSEric Joyner } 4096c80429ceSEric Joyner 4097c80429ceSEric Joyner if (bank == 0) { 4098c80429ceSEric Joyner new_bank_offset = nvm->flash_bank_size; 4099c80429ceSEric Joyner old_bank_offset = 0; 4100c80429ceSEric Joyner ret_val = e1000_erase_flash_bank_ich8lan(hw, 1); 4101c80429ceSEric Joyner if (ret_val) 4102c80429ceSEric Joyner goto release; 4103c80429ceSEric Joyner } else { 4104c80429ceSEric Joyner old_bank_offset = nvm->flash_bank_size; 4105c80429ceSEric Joyner new_bank_offset = 0; 4106c80429ceSEric Joyner ret_val = e1000_erase_flash_bank_ich8lan(hw, 0); 4107c80429ceSEric Joyner if (ret_val) 4108c80429ceSEric Joyner goto release; 4109c80429ceSEric Joyner } 4110c80429ceSEric Joyner for (i = 0; i < E1000_SHADOW_RAM_WORDS; i += 2) { 4111c80429ceSEric Joyner /* Determine whether to write the value stored 4112c80429ceSEric Joyner * in the other NVM bank or a modified value stored 4113c80429ceSEric Joyner * in the shadow RAM 4114c80429ceSEric Joyner */ 4115c80429ceSEric Joyner ret_val = e1000_read_flash_dword_ich8lan(hw, 4116c80429ceSEric Joyner i + old_bank_offset, 4117c80429ceSEric Joyner &dword); 4118c80429ceSEric Joyner 4119c80429ceSEric Joyner if (dev_spec->shadow_ram[i].modified) { 4120c80429ceSEric Joyner dword &= 0xffff0000; 4121c80429ceSEric Joyner dword |= (dev_spec->shadow_ram[i].value & 0xffff); 4122c80429ceSEric Joyner } 4123c80429ceSEric Joyner if (dev_spec->shadow_ram[i + 1].modified) { 4124c80429ceSEric Joyner dword &= 0x0000ffff; 4125c80429ceSEric Joyner dword |= ((dev_spec->shadow_ram[i + 1].value & 0xffff) 4126c80429ceSEric Joyner << 16); 4127c80429ceSEric Joyner } 4128c80429ceSEric Joyner if (ret_val) 4129c80429ceSEric Joyner break; 4130c80429ceSEric Joyner 4131c80429ceSEric Joyner /* If the word is 0x13, then make sure the signature bits 4132c80429ceSEric Joyner * (15:14) are 11b until the commit has completed. 4133c80429ceSEric Joyner * This will allow us to write 10b which indicates the 4134c80429ceSEric Joyner * signature is valid. We want to do this after the write 4135c80429ceSEric Joyner * has completed so that we don't mark the segment valid 4136c80429ceSEric Joyner * while the write is still in progress 4137c80429ceSEric Joyner */ 4138c80429ceSEric Joyner if (i == E1000_ICH_NVM_SIG_WORD - 1) 4139c80429ceSEric Joyner dword |= E1000_ICH_NVM_SIG_MASK << 16; 4140c80429ceSEric Joyner 4141c80429ceSEric Joyner /* Convert offset to bytes. */ 4142c80429ceSEric Joyner act_offset = (i + new_bank_offset) << 1; 4143c80429ceSEric Joyner 4144c80429ceSEric Joyner usec_delay(100); 4145c80429ceSEric Joyner 4146c80429ceSEric Joyner /* Write the data to the new bank. Offset in words*/ 4147c80429ceSEric Joyner act_offset = i + new_bank_offset; 4148c80429ceSEric Joyner ret_val = e1000_retry_write_flash_dword_ich8lan(hw, act_offset, 4149c80429ceSEric Joyner dword); 4150c80429ceSEric Joyner if (ret_val) 4151c80429ceSEric Joyner break; 4152c80429ceSEric Joyner } 4153c80429ceSEric Joyner 4154c80429ceSEric Joyner /* Don't bother writing the segment valid bits if sector 4155c80429ceSEric Joyner * programming failed. 4156c80429ceSEric Joyner */ 4157c80429ceSEric Joyner if (ret_val) { 4158c80429ceSEric Joyner DEBUGOUT("Flash commit failed.\n"); 4159c80429ceSEric Joyner goto release; 4160c80429ceSEric Joyner } 4161c80429ceSEric Joyner 4162c80429ceSEric Joyner /* Finally validate the new segment by setting bit 15:14 4163c80429ceSEric Joyner * to 10b in word 0x13 , this can be done without an 4164c80429ceSEric Joyner * erase as well since these bits are 11 to start with 4165c80429ceSEric Joyner * and we need to change bit 14 to 0b 4166c80429ceSEric Joyner */ 4167c80429ceSEric Joyner act_offset = new_bank_offset + E1000_ICH_NVM_SIG_WORD; 4168c80429ceSEric Joyner 4169c80429ceSEric Joyner /*offset in words but we read dword*/ 4170c80429ceSEric Joyner --act_offset; 4171c80429ceSEric Joyner ret_val = e1000_read_flash_dword_ich8lan(hw, act_offset, &dword); 4172c80429ceSEric Joyner 4173c80429ceSEric Joyner if (ret_val) 4174c80429ceSEric Joyner goto release; 4175c80429ceSEric Joyner 4176c80429ceSEric Joyner dword &= 0xBFFFFFFF; 4177c80429ceSEric Joyner ret_val = e1000_retry_write_flash_dword_ich8lan(hw, act_offset, dword); 4178c80429ceSEric Joyner 4179c80429ceSEric Joyner if (ret_val) 4180c80429ceSEric Joyner goto release; 4181c80429ceSEric Joyner 4182c80429ceSEric Joyner /* offset in words but we read dword*/ 4183c80429ceSEric Joyner act_offset = old_bank_offset + E1000_ICH_NVM_SIG_WORD - 1; 4184c80429ceSEric Joyner ret_val = e1000_read_flash_dword_ich8lan(hw, act_offset, &dword); 4185c80429ceSEric Joyner 4186c80429ceSEric Joyner if (ret_val) 4187c80429ceSEric Joyner goto release; 4188c80429ceSEric Joyner 4189c80429ceSEric Joyner dword &= 0x00FFFFFF; 4190c80429ceSEric Joyner ret_val = e1000_retry_write_flash_dword_ich8lan(hw, act_offset, dword); 4191c80429ceSEric Joyner 4192c80429ceSEric Joyner if (ret_val) 4193c80429ceSEric Joyner goto release; 4194c80429ceSEric Joyner 4195c80429ceSEric Joyner /* Great! Everything worked, we can now clear the cached entries. */ 4196c80429ceSEric Joyner for (i = 0; i < E1000_SHADOW_RAM_WORDS; i++) { 4197c80429ceSEric Joyner dev_spec->shadow_ram[i].modified = FALSE; 4198c80429ceSEric Joyner dev_spec->shadow_ram[i].value = 0xFFFF; 4199c80429ceSEric Joyner } 4200c80429ceSEric Joyner 4201c80429ceSEric Joyner release: 4202c80429ceSEric Joyner nvm->ops.release(hw); 4203c80429ceSEric Joyner 4204c80429ceSEric Joyner /* Reload the EEPROM, or else modifications will not appear 4205c80429ceSEric Joyner * until after the next adapter reset. 4206c80429ceSEric Joyner */ 4207c80429ceSEric Joyner if (!ret_val) { 4208c80429ceSEric Joyner nvm->ops.reload(hw); 4209c80429ceSEric Joyner msec_delay(10); 4210c80429ceSEric Joyner } 4211c80429ceSEric Joyner 4212c80429ceSEric Joyner out: 4213c80429ceSEric Joyner if (ret_val) 4214c80429ceSEric Joyner DEBUGOUT1("NVM update error: %d\n", ret_val); 4215c80429ceSEric Joyner 4216c80429ceSEric Joyner return ret_val; 4217c80429ceSEric Joyner } 4218c80429ceSEric Joyner 4219c80429ceSEric Joyner /** 42208cfa0ad2SJack F Vogel * e1000_update_nvm_checksum_ich8lan - Update the checksum for NVM 42218cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 42228cfa0ad2SJack F Vogel * 42238cfa0ad2SJack F Vogel * The NVM checksum is updated by calling the generic update_nvm_checksum, 42248cfa0ad2SJack F Vogel * which writes the checksum to the shadow ram. The changes in the shadow 42258cfa0ad2SJack F Vogel * ram are then committed to the EEPROM by processing each bank at a time 42268cfa0ad2SJack F Vogel * checking for the modified bit and writing only the pending changes. 42278cfa0ad2SJack F Vogel * After a successful commit, the shadow ram is cleared and is ready for 42288cfa0ad2SJack F Vogel * future writes. 42298cfa0ad2SJack F Vogel **/ 42308cfa0ad2SJack F Vogel static s32 e1000_update_nvm_checksum_ich8lan(struct e1000_hw *hw) 42318cfa0ad2SJack F Vogel { 42328cfa0ad2SJack F Vogel struct e1000_nvm_info *nvm = &hw->nvm; 4233daf9197cSJack F Vogel struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 42348cfa0ad2SJack F Vogel u32 i, act_offset, new_bank_offset, old_bank_offset, bank; 42358cfa0ad2SJack F Vogel s32 ret_val; 42368cc64f1eSJack F Vogel u16 data = 0; 42378cfa0ad2SJack F Vogel 42388cfa0ad2SJack F Vogel DEBUGFUNC("e1000_update_nvm_checksum_ich8lan"); 42398cfa0ad2SJack F Vogel 42408cfa0ad2SJack F Vogel ret_val = e1000_update_nvm_checksum_generic(hw); 42418cfa0ad2SJack F Vogel if (ret_val) 42428cfa0ad2SJack F Vogel goto out; 42438cfa0ad2SJack F Vogel 42448cfa0ad2SJack F Vogel if (nvm->type != e1000_nvm_flash_sw) 42458cfa0ad2SJack F Vogel goto out; 42468cfa0ad2SJack F Vogel 42474edd8523SJack F Vogel nvm->ops.acquire(hw); 42488cfa0ad2SJack F Vogel 42496ab6bfe3SJack F Vogel /* We're writing to the opposite bank so if we're on bank 1, 42508cfa0ad2SJack F Vogel * write to bank 0 etc. We also need to erase the segment that 42518cfa0ad2SJack F Vogel * is going to be written 42528cfa0ad2SJack F Vogel */ 42538cfa0ad2SJack F Vogel ret_val = e1000_valid_nvm_bank_detect_ich8lan(hw, &bank); 4254d035aa2dSJack F Vogel if (ret_val != E1000_SUCCESS) { 42554edd8523SJack F Vogel DEBUGOUT("Could not detect valid bank, assuming bank 0\n"); 42564edd8523SJack F Vogel bank = 0; 4257d035aa2dSJack F Vogel } 42588cfa0ad2SJack F Vogel 42598cfa0ad2SJack F Vogel if (bank == 0) { 42608cfa0ad2SJack F Vogel new_bank_offset = nvm->flash_bank_size; 42618cfa0ad2SJack F Vogel old_bank_offset = 0; 4262d035aa2dSJack F Vogel ret_val = e1000_erase_flash_bank_ich8lan(hw, 1); 4263a69ed8dfSJack F Vogel if (ret_val) 4264a69ed8dfSJack F Vogel goto release; 42658cfa0ad2SJack F Vogel } else { 42668cfa0ad2SJack F Vogel old_bank_offset = nvm->flash_bank_size; 42678cfa0ad2SJack F Vogel new_bank_offset = 0; 4268d035aa2dSJack F Vogel ret_val = e1000_erase_flash_bank_ich8lan(hw, 0); 4269a69ed8dfSJack F Vogel if (ret_val) 4270a69ed8dfSJack F Vogel goto release; 42718cfa0ad2SJack F Vogel } 42728cfa0ad2SJack F Vogel for (i = 0; i < E1000_SHADOW_RAM_WORDS; i++) { 42738cfa0ad2SJack F Vogel if (dev_spec->shadow_ram[i].modified) { 42748cfa0ad2SJack F Vogel data = dev_spec->shadow_ram[i].value; 42758cfa0ad2SJack F Vogel } else { 4276d035aa2dSJack F Vogel ret_val = e1000_read_flash_word_ich8lan(hw, i + 4277d035aa2dSJack F Vogel old_bank_offset, 42788cfa0ad2SJack F Vogel &data); 4279d035aa2dSJack F Vogel if (ret_val) 4280d035aa2dSJack F Vogel break; 42818cfa0ad2SJack F Vogel } 42826ab6bfe3SJack F Vogel /* If the word is 0x13, then make sure the signature bits 42838cfa0ad2SJack F Vogel * (15:14) are 11b until the commit has completed. 42848cfa0ad2SJack F Vogel * This will allow us to write 10b which indicates the 42858cfa0ad2SJack F Vogel * signature is valid. We want to do this after the write 42868cfa0ad2SJack F Vogel * has completed so that we don't mark the segment valid 42878cfa0ad2SJack F Vogel * while the write is still in progress 42888cfa0ad2SJack F Vogel */ 42898cfa0ad2SJack F Vogel if (i == E1000_ICH_NVM_SIG_WORD) 42908cfa0ad2SJack F Vogel data |= E1000_ICH_NVM_SIG_MASK; 42918cfa0ad2SJack F Vogel 42928cfa0ad2SJack F Vogel /* Convert offset to bytes. */ 42938cfa0ad2SJack F Vogel act_offset = (i + new_bank_offset) << 1; 42948cfa0ad2SJack F Vogel 42958cfa0ad2SJack F Vogel usec_delay(100); 42968cc64f1eSJack F Vogel 42978cfa0ad2SJack F Vogel /* Write the bytes to the new bank. */ 42988cfa0ad2SJack F Vogel ret_val = e1000_retry_write_flash_byte_ich8lan(hw, 42998cfa0ad2SJack F Vogel act_offset, 43008cfa0ad2SJack F Vogel (u8)data); 43018cfa0ad2SJack F Vogel if (ret_val) 43028cfa0ad2SJack F Vogel break; 43038cfa0ad2SJack F Vogel 43048cfa0ad2SJack F Vogel usec_delay(100); 43058cfa0ad2SJack F Vogel ret_val = e1000_retry_write_flash_byte_ich8lan(hw, 43068cfa0ad2SJack F Vogel act_offset + 1, 43078cfa0ad2SJack F Vogel (u8)(data >> 8)); 43088cfa0ad2SJack F Vogel if (ret_val) 43098cfa0ad2SJack F Vogel break; 43108cfa0ad2SJack F Vogel } 43118cfa0ad2SJack F Vogel 43126ab6bfe3SJack F Vogel /* Don't bother writing the segment valid bits if sector 43138cfa0ad2SJack F Vogel * programming failed. 43148cfa0ad2SJack F Vogel */ 43158cfa0ad2SJack F Vogel if (ret_val) { 43168cfa0ad2SJack F Vogel DEBUGOUT("Flash commit failed.\n"); 4317a69ed8dfSJack F Vogel goto release; 43188cfa0ad2SJack F Vogel } 43198cfa0ad2SJack F Vogel 43206ab6bfe3SJack F Vogel /* Finally validate the new segment by setting bit 15:14 43218cfa0ad2SJack F Vogel * to 10b in word 0x13 , this can be done without an 43228cfa0ad2SJack F Vogel * erase as well since these bits are 11 to start with 43238cfa0ad2SJack F Vogel * and we need to change bit 14 to 0b 43248cfa0ad2SJack F Vogel */ 43258cfa0ad2SJack F Vogel act_offset = new_bank_offset + E1000_ICH_NVM_SIG_WORD; 4326d035aa2dSJack F Vogel ret_val = e1000_read_flash_word_ich8lan(hw, act_offset, &data); 4327a69ed8dfSJack F Vogel if (ret_val) 4328a69ed8dfSJack F Vogel goto release; 43294edd8523SJack F Vogel 43308cfa0ad2SJack F Vogel data &= 0xBFFF; 43318cc64f1eSJack F Vogel ret_val = e1000_retry_write_flash_byte_ich8lan(hw, act_offset * 2 + 1, 43328cfa0ad2SJack F Vogel (u8)(data >> 8)); 4333a69ed8dfSJack F Vogel if (ret_val) 4334a69ed8dfSJack F Vogel goto release; 43358cfa0ad2SJack F Vogel 43366ab6bfe3SJack F Vogel /* And invalidate the previously valid segment by setting 43378cfa0ad2SJack F Vogel * its signature word (0x13) high_byte to 0b. This can be 43388cfa0ad2SJack F Vogel * done without an erase because flash erase sets all bits 43398cfa0ad2SJack F Vogel * to 1's. We can write 1's to 0's without an erase 43408cfa0ad2SJack F Vogel */ 43418cfa0ad2SJack F Vogel act_offset = (old_bank_offset + E1000_ICH_NVM_SIG_WORD) * 2 + 1; 43428cc64f1eSJack F Vogel 43438cfa0ad2SJack F Vogel ret_val = e1000_retry_write_flash_byte_ich8lan(hw, act_offset, 0); 43448cc64f1eSJack F Vogel 4345a69ed8dfSJack F Vogel if (ret_val) 4346a69ed8dfSJack F Vogel goto release; 43478cfa0ad2SJack F Vogel 43488cfa0ad2SJack F Vogel /* Great! Everything worked, we can now clear the cached entries. */ 43498cfa0ad2SJack F Vogel for (i = 0; i < E1000_SHADOW_RAM_WORDS; i++) { 43508cfa0ad2SJack F Vogel dev_spec->shadow_ram[i].modified = FALSE; 43518cfa0ad2SJack F Vogel dev_spec->shadow_ram[i].value = 0xFFFF; 43528cfa0ad2SJack F Vogel } 43538cfa0ad2SJack F Vogel 4354a69ed8dfSJack F Vogel release: 43558cfa0ad2SJack F Vogel nvm->ops.release(hw); 43568cfa0ad2SJack F Vogel 43576ab6bfe3SJack F Vogel /* Reload the EEPROM, or else modifications will not appear 43588cfa0ad2SJack F Vogel * until after the next adapter reset. 43598cfa0ad2SJack F Vogel */ 4360a69ed8dfSJack F Vogel if (!ret_val) { 43618cfa0ad2SJack F Vogel nvm->ops.reload(hw); 43628cfa0ad2SJack F Vogel msec_delay(10); 4363a69ed8dfSJack F Vogel } 43648cfa0ad2SJack F Vogel 43658cfa0ad2SJack F Vogel out: 4366d035aa2dSJack F Vogel if (ret_val) 4367d035aa2dSJack F Vogel DEBUGOUT1("NVM update error: %d\n", ret_val); 4368d035aa2dSJack F Vogel 43698cfa0ad2SJack F Vogel return ret_val; 43708cfa0ad2SJack F Vogel } 43718cfa0ad2SJack F Vogel 43728cfa0ad2SJack F Vogel /** 43738cfa0ad2SJack F Vogel * e1000_validate_nvm_checksum_ich8lan - Validate EEPROM checksum 43748cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 43758cfa0ad2SJack F Vogel * 43768cfa0ad2SJack F Vogel * Check to see if checksum needs to be fixed by reading bit 6 in word 0x19. 4377daf9197cSJack F Vogel * If the bit is 0, that the EEPROM had been modified, but the checksum was not 4378daf9197cSJack F Vogel * calculated, in which case we need to calculate the checksum and set bit 6. 43798cfa0ad2SJack F Vogel **/ 43808cfa0ad2SJack F Vogel static s32 e1000_validate_nvm_checksum_ich8lan(struct e1000_hw *hw) 43818cfa0ad2SJack F Vogel { 43826ab6bfe3SJack F Vogel s32 ret_val; 43838cfa0ad2SJack F Vogel u16 data; 43846ab6bfe3SJack F Vogel u16 word; 43856ab6bfe3SJack F Vogel u16 valid_csum_mask; 43868cfa0ad2SJack F Vogel 43878cfa0ad2SJack F Vogel DEBUGFUNC("e1000_validate_nvm_checksum_ich8lan"); 43888cfa0ad2SJack F Vogel 43896ab6bfe3SJack F Vogel /* Read NVM and check Invalid Image CSUM bit. If this bit is 0, 43906ab6bfe3SJack F Vogel * the checksum needs to be fixed. This bit is an indication that 43916ab6bfe3SJack F Vogel * the NVM was prepared by OEM software and did not calculate 43926ab6bfe3SJack F Vogel * the checksum...a likely scenario. 43938cfa0ad2SJack F Vogel */ 43946ab6bfe3SJack F Vogel switch (hw->mac.type) { 43956ab6bfe3SJack F Vogel case e1000_pch_lpt: 4396c80429ceSEric Joyner case e1000_pch_spt: 43976fe4c0a0SSean Bruno case e1000_pch_cnp: 439859690eabSKevin Bowling case e1000_pch_tgp: 439959690eabSKevin Bowling case e1000_pch_adp: 440059690eabSKevin Bowling case e1000_pch_mtp: 44016ab6bfe3SJack F Vogel word = NVM_COMPAT; 44026ab6bfe3SJack F Vogel valid_csum_mask = NVM_COMPAT_VALID_CSUM; 44036ab6bfe3SJack F Vogel break; 44046ab6bfe3SJack F Vogel default: 44056ab6bfe3SJack F Vogel word = NVM_FUTURE_INIT_WORD1; 44066ab6bfe3SJack F Vogel valid_csum_mask = NVM_FUTURE_INIT_WORD1_VALID_CSUM; 44076ab6bfe3SJack F Vogel break; 44088cfa0ad2SJack F Vogel } 44098cfa0ad2SJack F Vogel 44106ab6bfe3SJack F Vogel ret_val = hw->nvm.ops.read(hw, word, 1, &data); 44116ab6bfe3SJack F Vogel if (ret_val) 44128cfa0ad2SJack F Vogel return ret_val; 44136ab6bfe3SJack F Vogel 44146ab6bfe3SJack F Vogel if (!(data & valid_csum_mask)) { 44156ab6bfe3SJack F Vogel data |= valid_csum_mask; 44166ab6bfe3SJack F Vogel ret_val = hw->nvm.ops.write(hw, word, 1, &data); 44176ab6bfe3SJack F Vogel if (ret_val) 44186ab6bfe3SJack F Vogel return ret_val; 44196ab6bfe3SJack F Vogel ret_val = hw->nvm.ops.update(hw); 44206ab6bfe3SJack F Vogel if (ret_val) 44216ab6bfe3SJack F Vogel return ret_val; 44226ab6bfe3SJack F Vogel } 44236ab6bfe3SJack F Vogel 44246ab6bfe3SJack F Vogel return e1000_validate_nvm_checksum_generic(hw); 44258cfa0ad2SJack F Vogel } 44268cfa0ad2SJack F Vogel 44278cfa0ad2SJack F Vogel /** 44288cfa0ad2SJack F Vogel * e1000_write_flash_data_ich8lan - Writes bytes to the NVM 44298cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 44308cfa0ad2SJack F Vogel * @offset: The offset (in bytes) of the byte/word to read. 44318cfa0ad2SJack F Vogel * @size: Size of data to read, 1=byte 2=word 44328cfa0ad2SJack F Vogel * @data: The byte(s) to write to the NVM. 44338cfa0ad2SJack F Vogel * 44348cfa0ad2SJack F Vogel * Writes one/two bytes to the NVM using the flash access registers. 44358cfa0ad2SJack F Vogel **/ 44368cfa0ad2SJack F Vogel static s32 e1000_write_flash_data_ich8lan(struct e1000_hw *hw, u32 offset, 44378cfa0ad2SJack F Vogel u8 size, u16 data) 44388cfa0ad2SJack F Vogel { 44398cfa0ad2SJack F Vogel union ich8_hws_flash_status hsfsts; 44408cfa0ad2SJack F Vogel union ich8_hws_flash_ctrl hsflctl; 44418cfa0ad2SJack F Vogel u32 flash_linear_addr; 44428cfa0ad2SJack F Vogel u32 flash_data = 0; 44436ab6bfe3SJack F Vogel s32 ret_val; 44448cfa0ad2SJack F Vogel u8 count = 0; 44458cfa0ad2SJack F Vogel 44468cfa0ad2SJack F Vogel DEBUGFUNC("e1000_write_ich8_data"); 44478cfa0ad2SJack F Vogel 4448295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) { 4449c80429ceSEric Joyner if (size != 4 || offset > ICH_FLASH_LINEAR_ADDR_MASK) 4450c80429ceSEric Joyner return -E1000_ERR_NVM; 4451c80429ceSEric Joyner } else { 44528cc64f1eSJack F Vogel if (size < 1 || size > 2 || offset > ICH_FLASH_LINEAR_ADDR_MASK) 44536ab6bfe3SJack F Vogel return -E1000_ERR_NVM; 4454c80429ceSEric Joyner } 44558cfa0ad2SJack F Vogel 44567609433eSJack F Vogel flash_linear_addr = ((ICH_FLASH_LINEAR_ADDR_MASK & offset) + 44577609433eSJack F Vogel hw->nvm.flash_base_addr); 44588cfa0ad2SJack F Vogel 44598cfa0ad2SJack F Vogel do { 44608cfa0ad2SJack F Vogel usec_delay(1); 44618cfa0ad2SJack F Vogel /* Steps */ 44628cfa0ad2SJack F Vogel ret_val = e1000_flash_cycle_init_ich8lan(hw); 44638cfa0ad2SJack F Vogel if (ret_val != E1000_SUCCESS) 44648cfa0ad2SJack F Vogel break; 4465c80429ceSEric Joyner /* In SPT, This register is in Lan memory space, not 4466c80429ceSEric Joyner * flash. Therefore, only 32 bit access is supported 4467c80429ceSEric Joyner */ 4468295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 4469c80429ceSEric Joyner hsflctl.regval = 4470c80429ceSEric Joyner E1000_READ_FLASH_REG(hw, ICH_FLASH_HSFSTS)>>16; 4471c80429ceSEric Joyner else 4472c80429ceSEric Joyner hsflctl.regval = 4473c80429ceSEric Joyner E1000_READ_FLASH_REG16(hw, ICH_FLASH_HSFCTL); 44748cc64f1eSJack F Vogel 44758cfa0ad2SJack F Vogel /* 0b/1b corresponds to 1 or 2 byte size, respectively. */ 44768cfa0ad2SJack F Vogel hsflctl.hsf_ctrl.fldbcount = size - 1; 44778cfa0ad2SJack F Vogel hsflctl.hsf_ctrl.flcycle = ICH_CYCLE_WRITE; 4478c80429ceSEric Joyner /* In SPT, This register is in Lan memory space, 4479c80429ceSEric Joyner * not flash. Therefore, only 32 bit access is 4480c80429ceSEric Joyner * supported 4481c80429ceSEric Joyner */ 4482295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 4483c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_HSFSTS, 4484c80429ceSEric Joyner hsflctl.regval << 16); 4485c80429ceSEric Joyner else 4486c80429ceSEric Joyner E1000_WRITE_FLASH_REG16(hw, ICH_FLASH_HSFCTL, 4487c80429ceSEric Joyner hsflctl.regval); 44888cfa0ad2SJack F Vogel 44898cfa0ad2SJack F Vogel E1000_WRITE_FLASH_REG(hw, ICH_FLASH_FADDR, flash_linear_addr); 44908cfa0ad2SJack F Vogel 44918cfa0ad2SJack F Vogel if (size == 1) 44928cfa0ad2SJack F Vogel flash_data = (u32)data & 0x00FF; 44938cfa0ad2SJack F Vogel else 44948cfa0ad2SJack F Vogel flash_data = (u32)data; 44958cfa0ad2SJack F Vogel 44968cfa0ad2SJack F Vogel E1000_WRITE_FLASH_REG(hw, ICH_FLASH_FDATA0, flash_data); 44978cfa0ad2SJack F Vogel 44986ab6bfe3SJack F Vogel /* check if FCERR is set to 1 , if set to 1, clear it 44998cfa0ad2SJack F Vogel * and try the whole sequence a few more times else done 45008cfa0ad2SJack F Vogel */ 45017609433eSJack F Vogel ret_val = 45027609433eSJack F Vogel e1000_flash_cycle_ich8lan(hw, 45038cfa0ad2SJack F Vogel ICH_FLASH_WRITE_COMMAND_TIMEOUT); 4504daf9197cSJack F Vogel if (ret_val == E1000_SUCCESS) 45058cfa0ad2SJack F Vogel break; 4506daf9197cSJack F Vogel 45076ab6bfe3SJack F Vogel /* If we're here, then things are most likely 45088cfa0ad2SJack F Vogel * completely hosed, but if the error condition 45098cfa0ad2SJack F Vogel * is detected, it won't hurt to give it another 45108cfa0ad2SJack F Vogel * try...ICH_FLASH_CYCLE_REPEAT_COUNT times. 45118cfa0ad2SJack F Vogel */ 4512daf9197cSJack F Vogel hsfsts.regval = E1000_READ_FLASH_REG16(hw, ICH_FLASH_HSFSTS); 45136ab6bfe3SJack F Vogel if (hsfsts.hsf_status.flcerr) 45148cfa0ad2SJack F Vogel /* Repeat for some time before giving up. */ 45158cfa0ad2SJack F Vogel continue; 45166ab6bfe3SJack F Vogel if (!hsfsts.hsf_status.flcdone) { 45174dab5c37SJack F Vogel DEBUGOUT("Timeout error - flash cycle did not complete.\n"); 45188cfa0ad2SJack F Vogel break; 45198cfa0ad2SJack F Vogel } 45208cfa0ad2SJack F Vogel } while (count++ < ICH_FLASH_CYCLE_REPEAT_COUNT); 45218cfa0ad2SJack F Vogel 45228cfa0ad2SJack F Vogel return ret_val; 45238cfa0ad2SJack F Vogel } 45248cfa0ad2SJack F Vogel 4525c80429ceSEric Joyner /** 4526c80429ceSEric Joyner * e1000_write_flash_data32_ich8lan - Writes 4 bytes to the NVM 4527c80429ceSEric Joyner * @hw: pointer to the HW structure 4528c80429ceSEric Joyner * @offset: The offset (in bytes) of the dwords to read. 4529c80429ceSEric Joyner * @data: The 4 bytes to write to the NVM. 4530c80429ceSEric Joyner * 4531c80429ceSEric Joyner * Writes one/two/four bytes to the NVM using the flash access registers. 4532c80429ceSEric Joyner **/ 4533c80429ceSEric Joyner static s32 e1000_write_flash_data32_ich8lan(struct e1000_hw *hw, u32 offset, 4534c80429ceSEric Joyner u32 data) 4535c80429ceSEric Joyner { 4536c80429ceSEric Joyner union ich8_hws_flash_status hsfsts; 4537c80429ceSEric Joyner union ich8_hws_flash_ctrl hsflctl; 4538c80429ceSEric Joyner u32 flash_linear_addr; 4539c80429ceSEric Joyner s32 ret_val; 4540c80429ceSEric Joyner u8 count = 0; 4541c80429ceSEric Joyner 4542c80429ceSEric Joyner DEBUGFUNC("e1000_write_flash_data32_ich8lan"); 4543c80429ceSEric Joyner 4544295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) { 4545c80429ceSEric Joyner if (offset > ICH_FLASH_LINEAR_ADDR_MASK) 4546c80429ceSEric Joyner return -E1000_ERR_NVM; 4547c80429ceSEric Joyner } 4548c80429ceSEric Joyner flash_linear_addr = ((ICH_FLASH_LINEAR_ADDR_MASK & offset) + 4549c80429ceSEric Joyner hw->nvm.flash_base_addr); 4550c80429ceSEric Joyner do { 4551c80429ceSEric Joyner usec_delay(1); 4552c80429ceSEric Joyner /* Steps */ 4553c80429ceSEric Joyner ret_val = e1000_flash_cycle_init_ich8lan(hw); 4554c80429ceSEric Joyner if (ret_val != E1000_SUCCESS) 4555c80429ceSEric Joyner break; 4556c80429ceSEric Joyner 4557c80429ceSEric Joyner /* In SPT, This register is in Lan memory space, not 4558c80429ceSEric Joyner * flash. Therefore, only 32 bit access is supported 4559c80429ceSEric Joyner */ 4560295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 4561c80429ceSEric Joyner hsflctl.regval = E1000_READ_FLASH_REG(hw, 4562c80429ceSEric Joyner ICH_FLASH_HSFSTS) 4563c80429ceSEric Joyner >> 16; 4564c80429ceSEric Joyner else 4565c80429ceSEric Joyner hsflctl.regval = E1000_READ_FLASH_REG16(hw, 4566c80429ceSEric Joyner ICH_FLASH_HSFCTL); 4567c80429ceSEric Joyner 4568c80429ceSEric Joyner hsflctl.hsf_ctrl.fldbcount = sizeof(u32) - 1; 4569c80429ceSEric Joyner hsflctl.hsf_ctrl.flcycle = ICH_CYCLE_WRITE; 4570c80429ceSEric Joyner 4571c80429ceSEric Joyner /* In SPT, This register is in Lan memory space, 4572c80429ceSEric Joyner * not flash. Therefore, only 32 bit access is 4573c80429ceSEric Joyner * supported 4574c80429ceSEric Joyner */ 4575295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 4576c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_HSFSTS, 4577c80429ceSEric Joyner hsflctl.regval << 16); 4578c80429ceSEric Joyner else 4579c80429ceSEric Joyner E1000_WRITE_FLASH_REG16(hw, ICH_FLASH_HSFCTL, 4580c80429ceSEric Joyner hsflctl.regval); 4581c80429ceSEric Joyner 4582c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_FADDR, flash_linear_addr); 4583c80429ceSEric Joyner 4584c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_FDATA0, data); 4585c80429ceSEric Joyner 4586c80429ceSEric Joyner /* check if FCERR is set to 1 , if set to 1, clear it 4587c80429ceSEric Joyner * and try the whole sequence a few more times else done 4588c80429ceSEric Joyner */ 4589c80429ceSEric Joyner ret_val = e1000_flash_cycle_ich8lan(hw, 4590c80429ceSEric Joyner ICH_FLASH_WRITE_COMMAND_TIMEOUT); 4591c80429ceSEric Joyner 4592c80429ceSEric Joyner if (ret_val == E1000_SUCCESS) 4593c80429ceSEric Joyner break; 4594c80429ceSEric Joyner 4595c80429ceSEric Joyner /* If we're here, then things are most likely 4596c80429ceSEric Joyner * completely hosed, but if the error condition 4597c80429ceSEric Joyner * is detected, it won't hurt to give it another 4598c80429ceSEric Joyner * try...ICH_FLASH_CYCLE_REPEAT_COUNT times. 4599c80429ceSEric Joyner */ 4600c80429ceSEric Joyner hsfsts.regval = E1000_READ_FLASH_REG16(hw, ICH_FLASH_HSFSTS); 4601c80429ceSEric Joyner 4602c80429ceSEric Joyner if (hsfsts.hsf_status.flcerr) 4603c80429ceSEric Joyner /* Repeat for some time before giving up. */ 4604c80429ceSEric Joyner continue; 4605c80429ceSEric Joyner if (!hsfsts.hsf_status.flcdone) { 4606c80429ceSEric Joyner DEBUGOUT("Timeout error - flash cycle did not complete.\n"); 4607c80429ceSEric Joyner break; 4608c80429ceSEric Joyner } 4609c80429ceSEric Joyner } while (count++ < ICH_FLASH_CYCLE_REPEAT_COUNT); 4610c80429ceSEric Joyner 4611c80429ceSEric Joyner return ret_val; 4612c80429ceSEric Joyner } 46138cc64f1eSJack F Vogel 46148cfa0ad2SJack F Vogel /** 46158cfa0ad2SJack F Vogel * e1000_write_flash_byte_ich8lan - Write a single byte to NVM 46168cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 46178cfa0ad2SJack F Vogel * @offset: The index of the byte to read. 46188cfa0ad2SJack F Vogel * @data: The byte to write to the NVM. 46198cfa0ad2SJack F Vogel * 46208cfa0ad2SJack F Vogel * Writes a single byte to the NVM using the flash access registers. 46218cfa0ad2SJack F Vogel **/ 46228cfa0ad2SJack F Vogel static s32 e1000_write_flash_byte_ich8lan(struct e1000_hw *hw, u32 offset, 46238cfa0ad2SJack F Vogel u8 data) 46248cfa0ad2SJack F Vogel { 46258cfa0ad2SJack F Vogel u16 word = (u16)data; 46268cfa0ad2SJack F Vogel 46278cfa0ad2SJack F Vogel DEBUGFUNC("e1000_write_flash_byte_ich8lan"); 46288cfa0ad2SJack F Vogel 46298cfa0ad2SJack F Vogel return e1000_write_flash_data_ich8lan(hw, offset, 1, word); 46308cfa0ad2SJack F Vogel } 46318cfa0ad2SJack F Vogel 4632c80429ceSEric Joyner /** 4633c80429ceSEric Joyner * e1000_retry_write_flash_dword_ich8lan - Writes a dword to NVM 4634c80429ceSEric Joyner * @hw: pointer to the HW structure 4635c80429ceSEric Joyner * @offset: The offset of the word to write. 4636c80429ceSEric Joyner * @dword: The dword to write to the NVM. 4637c80429ceSEric Joyner * 4638c80429ceSEric Joyner * Writes a single dword to the NVM using the flash access registers. 4639c80429ceSEric Joyner * Goes through a retry algorithm before giving up. 4640c80429ceSEric Joyner **/ 4641c80429ceSEric Joyner static s32 e1000_retry_write_flash_dword_ich8lan(struct e1000_hw *hw, 4642c80429ceSEric Joyner u32 offset, u32 dword) 4643c80429ceSEric Joyner { 4644c80429ceSEric Joyner s32 ret_val; 4645c80429ceSEric Joyner u16 program_retries; 46468cc64f1eSJack F Vogel 4647c80429ceSEric Joyner DEBUGFUNC("e1000_retry_write_flash_dword_ich8lan"); 4648c80429ceSEric Joyner 4649c80429ceSEric Joyner /* Must convert word offset into bytes. */ 4650c80429ceSEric Joyner offset <<= 1; 4651c80429ceSEric Joyner 4652c80429ceSEric Joyner ret_val = e1000_write_flash_data32_ich8lan(hw, offset, dword); 4653c80429ceSEric Joyner 4654c80429ceSEric Joyner if (!ret_val) 4655c80429ceSEric Joyner return ret_val; 4656c80429ceSEric Joyner for (program_retries = 0; program_retries < 100; program_retries++) { 4657c80429ceSEric Joyner DEBUGOUT2("Retrying Byte %8.8X at offset %u\n", dword, offset); 4658c80429ceSEric Joyner usec_delay(100); 4659c80429ceSEric Joyner ret_val = e1000_write_flash_data32_ich8lan(hw, offset, dword); 4660c80429ceSEric Joyner if (ret_val == E1000_SUCCESS) 4661c80429ceSEric Joyner break; 4662c80429ceSEric Joyner } 4663c80429ceSEric Joyner if (program_retries == 100) 4664c80429ceSEric Joyner return -E1000_ERR_NVM; 4665c80429ceSEric Joyner 4666c80429ceSEric Joyner return E1000_SUCCESS; 4667c80429ceSEric Joyner } 46688cc64f1eSJack F Vogel 46698cfa0ad2SJack F Vogel /** 46708cfa0ad2SJack F Vogel * e1000_retry_write_flash_byte_ich8lan - Writes a single byte to NVM 46718cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 46728cfa0ad2SJack F Vogel * @offset: The offset of the byte to write. 46738cfa0ad2SJack F Vogel * @byte: The byte to write to the NVM. 46748cfa0ad2SJack F Vogel * 46758cfa0ad2SJack F Vogel * Writes a single byte to the NVM using the flash access registers. 46768cfa0ad2SJack F Vogel * Goes through a retry algorithm before giving up. 46778cfa0ad2SJack F Vogel **/ 46788cfa0ad2SJack F Vogel static s32 e1000_retry_write_flash_byte_ich8lan(struct e1000_hw *hw, 46798cfa0ad2SJack F Vogel u32 offset, u8 byte) 46808cfa0ad2SJack F Vogel { 46818cfa0ad2SJack F Vogel s32 ret_val; 46828cfa0ad2SJack F Vogel u16 program_retries; 46838cfa0ad2SJack F Vogel 46848cfa0ad2SJack F Vogel DEBUGFUNC("e1000_retry_write_flash_byte_ich8lan"); 46858cfa0ad2SJack F Vogel 46868cfa0ad2SJack F Vogel ret_val = e1000_write_flash_byte_ich8lan(hw, offset, byte); 46876ab6bfe3SJack F Vogel if (!ret_val) 46886ab6bfe3SJack F Vogel return ret_val; 46898cfa0ad2SJack F Vogel 46908cfa0ad2SJack F Vogel for (program_retries = 0; program_retries < 100; program_retries++) { 46918cfa0ad2SJack F Vogel DEBUGOUT2("Retrying Byte %2.2X at offset %u\n", byte, offset); 46928cfa0ad2SJack F Vogel usec_delay(100); 46938cfa0ad2SJack F Vogel ret_val = e1000_write_flash_byte_ich8lan(hw, offset, byte); 46948cfa0ad2SJack F Vogel if (ret_val == E1000_SUCCESS) 46958cfa0ad2SJack F Vogel break; 46968cfa0ad2SJack F Vogel } 46976ab6bfe3SJack F Vogel if (program_retries == 100) 46986ab6bfe3SJack F Vogel return -E1000_ERR_NVM; 46998cfa0ad2SJack F Vogel 47006ab6bfe3SJack F Vogel return E1000_SUCCESS; 47018cfa0ad2SJack F Vogel } 47028cfa0ad2SJack F Vogel 47038cfa0ad2SJack F Vogel /** 47048cfa0ad2SJack F Vogel * e1000_erase_flash_bank_ich8lan - Erase a bank (4k) from NVM 47058cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 47068cfa0ad2SJack F Vogel * @bank: 0 for first bank, 1 for second bank, etc. 47078cfa0ad2SJack F Vogel * 47088cfa0ad2SJack F Vogel * Erases the bank specified. Each bank is a 4k block. Banks are 0 based. 47098cfa0ad2SJack F Vogel * bank N is 4096 * N + flash_reg_addr. 47108cfa0ad2SJack F Vogel **/ 47118cfa0ad2SJack F Vogel static s32 e1000_erase_flash_bank_ich8lan(struct e1000_hw *hw, u32 bank) 47128cfa0ad2SJack F Vogel { 47138cfa0ad2SJack F Vogel struct e1000_nvm_info *nvm = &hw->nvm; 47148cfa0ad2SJack F Vogel union ich8_hws_flash_status hsfsts; 47158cfa0ad2SJack F Vogel union ich8_hws_flash_ctrl hsflctl; 47168cfa0ad2SJack F Vogel u32 flash_linear_addr; 47178cfa0ad2SJack F Vogel /* bank size is in 16bit words - adjust to bytes */ 47188cfa0ad2SJack F Vogel u32 flash_bank_size = nvm->flash_bank_size * 2; 47196ab6bfe3SJack F Vogel s32 ret_val; 47208cfa0ad2SJack F Vogel s32 count = 0; 47218cfa0ad2SJack F Vogel s32 j, iteration, sector_size; 47228cfa0ad2SJack F Vogel 47238cfa0ad2SJack F Vogel DEBUGFUNC("e1000_erase_flash_bank_ich8lan"); 47248cfa0ad2SJack F Vogel 47258cfa0ad2SJack F Vogel hsfsts.regval = E1000_READ_FLASH_REG16(hw, ICH_FLASH_HSFSTS); 47268cfa0ad2SJack F Vogel 47276ab6bfe3SJack F Vogel /* Determine HW Sector size: Read BERASE bits of hw flash status 47288cfa0ad2SJack F Vogel * register 47298cfa0ad2SJack F Vogel * 00: The Hw sector is 256 bytes, hence we need to erase 16 47308cfa0ad2SJack F Vogel * consecutive sectors. The start index for the nth Hw sector 47318cfa0ad2SJack F Vogel * can be calculated as = bank * 4096 + n * 256 47328cfa0ad2SJack F Vogel * 01: The Hw sector is 4K bytes, hence we need to erase 1 sector. 47338cfa0ad2SJack F Vogel * The start index for the nth Hw sector can be calculated 47348cfa0ad2SJack F Vogel * as = bank * 4096 47358cfa0ad2SJack F Vogel * 10: The Hw sector is 8K bytes, nth sector = bank * 8192 47368cfa0ad2SJack F Vogel * (ich9 only, otherwise error condition) 47378cfa0ad2SJack F Vogel * 11: The Hw sector is 64K bytes, nth sector = bank * 65536 47388cfa0ad2SJack F Vogel */ 47398cfa0ad2SJack F Vogel switch (hsfsts.hsf_status.berasesz) { 47408cfa0ad2SJack F Vogel case 0: 47418cfa0ad2SJack F Vogel /* Hw sector size 256 */ 47428cfa0ad2SJack F Vogel sector_size = ICH_FLASH_SEG_SIZE_256; 47438cfa0ad2SJack F Vogel iteration = flash_bank_size / ICH_FLASH_SEG_SIZE_256; 47448cfa0ad2SJack F Vogel break; 47458cfa0ad2SJack F Vogel case 1: 47468cfa0ad2SJack F Vogel sector_size = ICH_FLASH_SEG_SIZE_4K; 47479d81738fSJack F Vogel iteration = 1; 47488cfa0ad2SJack F Vogel break; 47498cfa0ad2SJack F Vogel case 2: 47508cfa0ad2SJack F Vogel sector_size = ICH_FLASH_SEG_SIZE_8K; 47518bd0025fSJack F Vogel iteration = 1; 47528cfa0ad2SJack F Vogel break; 47538cfa0ad2SJack F Vogel case 3: 47548cfa0ad2SJack F Vogel sector_size = ICH_FLASH_SEG_SIZE_64K; 47559d81738fSJack F Vogel iteration = 1; 47568cfa0ad2SJack F Vogel break; 47578cfa0ad2SJack F Vogel default: 47586ab6bfe3SJack F Vogel return -E1000_ERR_NVM; 47598cfa0ad2SJack F Vogel } 47608cfa0ad2SJack F Vogel 47618cfa0ad2SJack F Vogel /* Start with the base address, then add the sector offset. */ 47628cfa0ad2SJack F Vogel flash_linear_addr = hw->nvm.flash_base_addr; 47634edd8523SJack F Vogel flash_linear_addr += (bank) ? flash_bank_size : 0; 47648cfa0ad2SJack F Vogel 47658cfa0ad2SJack F Vogel for (j = 0; j < iteration; j++) { 47668cfa0ad2SJack F Vogel do { 47677609433eSJack F Vogel u32 timeout = ICH_FLASH_ERASE_COMMAND_TIMEOUT; 47687609433eSJack F Vogel 47698cfa0ad2SJack F Vogel /* Steps */ 47708cfa0ad2SJack F Vogel ret_val = e1000_flash_cycle_init_ich8lan(hw); 47718cfa0ad2SJack F Vogel if (ret_val) 47726ab6bfe3SJack F Vogel return ret_val; 47738cfa0ad2SJack F Vogel 47746ab6bfe3SJack F Vogel /* Write a value 11 (block Erase) in Flash 47758cfa0ad2SJack F Vogel * Cycle field in hw flash control 47768cfa0ad2SJack F Vogel */ 4777295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 47788cc64f1eSJack F Vogel hsflctl.regval = 4779c80429ceSEric Joyner E1000_READ_FLASH_REG(hw, 4780c80429ceSEric Joyner ICH_FLASH_HSFSTS)>>16; 4781c80429ceSEric Joyner else 4782c80429ceSEric Joyner hsflctl.regval = 4783c80429ceSEric Joyner E1000_READ_FLASH_REG16(hw, 4784c80429ceSEric Joyner ICH_FLASH_HSFCTL); 47858cc64f1eSJack F Vogel 47868cfa0ad2SJack F Vogel hsflctl.hsf_ctrl.flcycle = ICH_CYCLE_ERASE; 4787295df609SEric Joyner if (hw->mac.type >= e1000_pch_spt) 4788c80429ceSEric Joyner E1000_WRITE_FLASH_REG(hw, ICH_FLASH_HSFSTS, 4789c80429ceSEric Joyner hsflctl.regval << 16); 4790c80429ceSEric Joyner else 4791daf9197cSJack F Vogel E1000_WRITE_FLASH_REG16(hw, ICH_FLASH_HSFCTL, 47928cfa0ad2SJack F Vogel hsflctl.regval); 47938cfa0ad2SJack F Vogel 47946ab6bfe3SJack F Vogel /* Write the last 24 bits of an index within the 47958cfa0ad2SJack F Vogel * block into Flash Linear address field in Flash 47968cfa0ad2SJack F Vogel * Address. 47978cfa0ad2SJack F Vogel */ 47988cfa0ad2SJack F Vogel flash_linear_addr += (j * sector_size); 4799daf9197cSJack F Vogel E1000_WRITE_FLASH_REG(hw, ICH_FLASH_FADDR, 48008cfa0ad2SJack F Vogel flash_linear_addr); 48018cfa0ad2SJack F Vogel 48027609433eSJack F Vogel ret_val = e1000_flash_cycle_ich8lan(hw, timeout); 4803daf9197cSJack F Vogel if (ret_val == E1000_SUCCESS) 48048cfa0ad2SJack F Vogel break; 4805daf9197cSJack F Vogel 48066ab6bfe3SJack F Vogel /* Check if FCERR is set to 1. If 1, 48078cfa0ad2SJack F Vogel * clear it and try the whole sequence 48088cfa0ad2SJack F Vogel * a few more times else Done 48098cfa0ad2SJack F Vogel */ 48108cfa0ad2SJack F Vogel hsfsts.regval = E1000_READ_FLASH_REG16(hw, 48118cfa0ad2SJack F Vogel ICH_FLASH_HSFSTS); 48126ab6bfe3SJack F Vogel if (hsfsts.hsf_status.flcerr) 4813daf9197cSJack F Vogel /* repeat for some time before giving up */ 48148cfa0ad2SJack F Vogel continue; 48156ab6bfe3SJack F Vogel else if (!hsfsts.hsf_status.flcdone) 48166ab6bfe3SJack F Vogel return ret_val; 48178cfa0ad2SJack F Vogel } while (++count < ICH_FLASH_CYCLE_REPEAT_COUNT); 48188cfa0ad2SJack F Vogel } 48198cfa0ad2SJack F Vogel 48206ab6bfe3SJack F Vogel return E1000_SUCCESS; 48218cfa0ad2SJack F Vogel } 48228cfa0ad2SJack F Vogel 48238cfa0ad2SJack F Vogel /** 48248cfa0ad2SJack F Vogel * e1000_valid_led_default_ich8lan - Set the default LED settings 48258cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 48268cfa0ad2SJack F Vogel * @data: Pointer to the LED settings 48278cfa0ad2SJack F Vogel * 48288cfa0ad2SJack F Vogel * Reads the LED default settings from the NVM to data. If the NVM LED 48298cfa0ad2SJack F Vogel * settings is all 0's or F's, set the LED default to a valid LED default 48308cfa0ad2SJack F Vogel * setting. 48318cfa0ad2SJack F Vogel **/ 48328cfa0ad2SJack F Vogel static s32 e1000_valid_led_default_ich8lan(struct e1000_hw *hw, u16 *data) 48338cfa0ad2SJack F Vogel { 48348cfa0ad2SJack F Vogel s32 ret_val; 48358cfa0ad2SJack F Vogel 48368cfa0ad2SJack F Vogel DEBUGFUNC("e1000_valid_led_default_ich8lan"); 48378cfa0ad2SJack F Vogel 48388cfa0ad2SJack F Vogel ret_val = hw->nvm.ops.read(hw, NVM_ID_LED_SETTINGS, 1, data); 48398cfa0ad2SJack F Vogel if (ret_val) { 48408cfa0ad2SJack F Vogel DEBUGOUT("NVM Read Error\n"); 48416ab6bfe3SJack F Vogel return ret_val; 48428cfa0ad2SJack F Vogel } 48438cfa0ad2SJack F Vogel 48444dab5c37SJack F Vogel if (*data == ID_LED_RESERVED_0000 || *data == ID_LED_RESERVED_FFFF) 48458cfa0ad2SJack F Vogel *data = ID_LED_DEFAULT_ICH8LAN; 48468cfa0ad2SJack F Vogel 48476ab6bfe3SJack F Vogel return E1000_SUCCESS; 48488cfa0ad2SJack F Vogel } 48498cfa0ad2SJack F Vogel 48508cfa0ad2SJack F Vogel /** 48519d81738fSJack F Vogel * e1000_id_led_init_pchlan - store LED configurations 48529d81738fSJack F Vogel * @hw: pointer to the HW structure 48539d81738fSJack F Vogel * 48549d81738fSJack F Vogel * PCH does not control LEDs via the LEDCTL register, rather it uses 48559d81738fSJack F Vogel * the PHY LED configuration register. 48569d81738fSJack F Vogel * 48579d81738fSJack F Vogel * PCH also does not have an "always on" or "always off" mode which 48589d81738fSJack F Vogel * complicates the ID feature. Instead of using the "on" mode to indicate 48599d81738fSJack F Vogel * in ledctl_mode2 the LEDs to use for ID (see e1000_id_led_init_generic()), 48609d81738fSJack F Vogel * use "link_up" mode. The LEDs will still ID on request if there is no 48619d81738fSJack F Vogel * link based on logic in e1000_led_[on|off]_pchlan(). 48629d81738fSJack F Vogel **/ 48639d81738fSJack F Vogel static s32 e1000_id_led_init_pchlan(struct e1000_hw *hw) 48649d81738fSJack F Vogel { 48659d81738fSJack F Vogel struct e1000_mac_info *mac = &hw->mac; 48669d81738fSJack F Vogel s32 ret_val; 48679d81738fSJack F Vogel const u32 ledctl_on = E1000_LEDCTL_MODE_LINK_UP; 48689d81738fSJack F Vogel const u32 ledctl_off = E1000_LEDCTL_MODE_LINK_UP | E1000_PHY_LED0_IVRT; 48699d81738fSJack F Vogel u16 data, i, temp, shift; 48709d81738fSJack F Vogel 48719d81738fSJack F Vogel DEBUGFUNC("e1000_id_led_init_pchlan"); 48729d81738fSJack F Vogel 48739d81738fSJack F Vogel /* Get default ID LED modes */ 48749d81738fSJack F Vogel ret_val = hw->nvm.ops.valid_led_default(hw, &data); 48759d81738fSJack F Vogel if (ret_val) 48766ab6bfe3SJack F Vogel return ret_val; 48779d81738fSJack F Vogel 48789d81738fSJack F Vogel mac->ledctl_default = E1000_READ_REG(hw, E1000_LEDCTL); 48799d81738fSJack F Vogel mac->ledctl_mode1 = mac->ledctl_default; 48809d81738fSJack F Vogel mac->ledctl_mode2 = mac->ledctl_default; 48819d81738fSJack F Vogel 48829d81738fSJack F Vogel for (i = 0; i < 4; i++) { 48839d81738fSJack F Vogel temp = (data >> (i << 2)) & E1000_LEDCTL_LED0_MODE_MASK; 48849d81738fSJack F Vogel shift = (i * 5); 48859d81738fSJack F Vogel switch (temp) { 48869d81738fSJack F Vogel case ID_LED_ON1_DEF2: 48879d81738fSJack F Vogel case ID_LED_ON1_ON2: 48889d81738fSJack F Vogel case ID_LED_ON1_OFF2: 48899d81738fSJack F Vogel mac->ledctl_mode1 &= ~(E1000_PHY_LED0_MASK << shift); 48909d81738fSJack F Vogel mac->ledctl_mode1 |= (ledctl_on << shift); 48919d81738fSJack F Vogel break; 48929d81738fSJack F Vogel case ID_LED_OFF1_DEF2: 48939d81738fSJack F Vogel case ID_LED_OFF1_ON2: 48949d81738fSJack F Vogel case ID_LED_OFF1_OFF2: 48959d81738fSJack F Vogel mac->ledctl_mode1 &= ~(E1000_PHY_LED0_MASK << shift); 48969d81738fSJack F Vogel mac->ledctl_mode1 |= (ledctl_off << shift); 48979d81738fSJack F Vogel break; 48989d81738fSJack F Vogel default: 48999d81738fSJack F Vogel /* Do nothing */ 49009d81738fSJack F Vogel break; 49019d81738fSJack F Vogel } 49029d81738fSJack F Vogel switch (temp) { 49039d81738fSJack F Vogel case ID_LED_DEF1_ON2: 49049d81738fSJack F Vogel case ID_LED_ON1_ON2: 49059d81738fSJack F Vogel case ID_LED_OFF1_ON2: 49069d81738fSJack F Vogel mac->ledctl_mode2 &= ~(E1000_PHY_LED0_MASK << shift); 49079d81738fSJack F Vogel mac->ledctl_mode2 |= (ledctl_on << shift); 49089d81738fSJack F Vogel break; 49099d81738fSJack F Vogel case ID_LED_DEF1_OFF2: 49109d81738fSJack F Vogel case ID_LED_ON1_OFF2: 49119d81738fSJack F Vogel case ID_LED_OFF1_OFF2: 49129d81738fSJack F Vogel mac->ledctl_mode2 &= ~(E1000_PHY_LED0_MASK << shift); 49139d81738fSJack F Vogel mac->ledctl_mode2 |= (ledctl_off << shift); 49149d81738fSJack F Vogel break; 49159d81738fSJack F Vogel default: 49169d81738fSJack F Vogel /* Do nothing */ 49179d81738fSJack F Vogel break; 49189d81738fSJack F Vogel } 49199d81738fSJack F Vogel } 49209d81738fSJack F Vogel 49216ab6bfe3SJack F Vogel return E1000_SUCCESS; 49229d81738fSJack F Vogel } 49239d81738fSJack F Vogel 49249d81738fSJack F Vogel /** 49258cfa0ad2SJack F Vogel * e1000_get_bus_info_ich8lan - Get/Set the bus type and width 49268cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 49278cfa0ad2SJack F Vogel * 49288cfa0ad2SJack F Vogel * ICH8 use the PCI Express bus, but does not contain a PCI Express Capability 4929cef367e6SEitan Adler * register, so the bus width is hard coded. 49308cfa0ad2SJack F Vogel **/ 49318cfa0ad2SJack F Vogel static s32 e1000_get_bus_info_ich8lan(struct e1000_hw *hw) 49328cfa0ad2SJack F Vogel { 49338cfa0ad2SJack F Vogel struct e1000_bus_info *bus = &hw->bus; 49348cfa0ad2SJack F Vogel s32 ret_val; 49358cfa0ad2SJack F Vogel 49368cfa0ad2SJack F Vogel DEBUGFUNC("e1000_get_bus_info_ich8lan"); 49378cfa0ad2SJack F Vogel 49388cfa0ad2SJack F Vogel ret_val = e1000_get_bus_info_pcie_generic(hw); 49398cfa0ad2SJack F Vogel 49406ab6bfe3SJack F Vogel /* ICH devices are "PCI Express"-ish. They have 49418cfa0ad2SJack F Vogel * a configuration space, but do not contain 49428cfa0ad2SJack F Vogel * PCI Express Capability registers, so bus width 49438cfa0ad2SJack F Vogel * must be hardcoded. 49448cfa0ad2SJack F Vogel */ 49458cfa0ad2SJack F Vogel if (bus->width == e1000_bus_width_unknown) 49468cfa0ad2SJack F Vogel bus->width = e1000_bus_width_pcie_x1; 49478cfa0ad2SJack F Vogel 49488cfa0ad2SJack F Vogel return ret_val; 49498cfa0ad2SJack F Vogel } 49508cfa0ad2SJack F Vogel 49518cfa0ad2SJack F Vogel /** 49528cfa0ad2SJack F Vogel * e1000_reset_hw_ich8lan - Reset the hardware 49538cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 49548cfa0ad2SJack F Vogel * 49558cfa0ad2SJack F Vogel * Does a full reset of the hardware which includes a reset of the PHY and 49568cfa0ad2SJack F Vogel * MAC. 49578cfa0ad2SJack F Vogel **/ 49588cfa0ad2SJack F Vogel static s32 e1000_reset_hw_ich8lan(struct e1000_hw *hw) 49598cfa0ad2SJack F Vogel { 49604edd8523SJack F Vogel struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 49616ab6bfe3SJack F Vogel u16 kum_cfg; 49626ab6bfe3SJack F Vogel u32 ctrl, reg; 49638cfa0ad2SJack F Vogel s32 ret_val; 49648cfa0ad2SJack F Vogel 49658cfa0ad2SJack F Vogel DEBUGFUNC("e1000_reset_hw_ich8lan"); 49668cfa0ad2SJack F Vogel 49676ab6bfe3SJack F Vogel /* Prevent the PCI-E bus from sticking if there is no TLP connection 49688cfa0ad2SJack F Vogel * on the last TLP read/write transaction when MAC is reset. 49698cfa0ad2SJack F Vogel */ 49708cfa0ad2SJack F Vogel ret_val = e1000_disable_pcie_master_generic(hw); 4971daf9197cSJack F Vogel if (ret_val) 49728cfa0ad2SJack F Vogel DEBUGOUT("PCI-E Master disable polling has failed.\n"); 49738cfa0ad2SJack F Vogel 49748cfa0ad2SJack F Vogel DEBUGOUT("Masking off all interrupts\n"); 49758cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_IMC, 0xffffffff); 49768cfa0ad2SJack F Vogel 49776ab6bfe3SJack F Vogel /* Disable the Transmit and Receive units. Then delay to allow 49788cfa0ad2SJack F Vogel * any pending transactions to complete before we hit the MAC 49798cfa0ad2SJack F Vogel * with the global reset. 49808cfa0ad2SJack F Vogel */ 49818cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_RCTL, 0); 49828cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_TCTL, E1000_TCTL_PSP); 49838cfa0ad2SJack F Vogel E1000_WRITE_FLUSH(hw); 49848cfa0ad2SJack F Vogel 49858cfa0ad2SJack F Vogel msec_delay(10); 49868cfa0ad2SJack F Vogel 49878cfa0ad2SJack F Vogel /* Workaround for ICH8 bit corruption issue in FIFO memory */ 49888cfa0ad2SJack F Vogel if (hw->mac.type == e1000_ich8lan) { 49898cfa0ad2SJack F Vogel /* Set Tx and Rx buffer allocation to 8k apiece. */ 49908cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_PBA, E1000_PBA_8K); 49918cfa0ad2SJack F Vogel /* Set Packet Buffer Size to 16k. */ 49928cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_PBS, E1000_PBS_16K); 49938cfa0ad2SJack F Vogel } 49948cfa0ad2SJack F Vogel 49954edd8523SJack F Vogel if (hw->mac.type == e1000_pchlan) { 49964edd8523SJack F Vogel /* Save the NVM K1 bit setting*/ 49976ab6bfe3SJack F Vogel ret_val = e1000_read_nvm(hw, E1000_NVM_K1_CONFIG, 1, &kum_cfg); 49984edd8523SJack F Vogel if (ret_val) 49994edd8523SJack F Vogel return ret_val; 50004edd8523SJack F Vogel 50016ab6bfe3SJack F Vogel if (kum_cfg & E1000_NVM_K1_ENABLE) 50024edd8523SJack F Vogel dev_spec->nvm_k1_enabled = TRUE; 50034edd8523SJack F Vogel else 50044edd8523SJack F Vogel dev_spec->nvm_k1_enabled = FALSE; 50054edd8523SJack F Vogel } 50064edd8523SJack F Vogel 50078cfa0ad2SJack F Vogel ctrl = E1000_READ_REG(hw, E1000_CTRL); 50088cfa0ad2SJack F Vogel 50097d9119bdSJack F Vogel if (!hw->phy.ops.check_reset_block(hw)) { 50106ab6bfe3SJack F Vogel /* Full-chip reset requires MAC and PHY reset at the same 50118cfa0ad2SJack F Vogel * time to make sure the interface between MAC and the 50128cfa0ad2SJack F Vogel * external PHY is reset. 50138cfa0ad2SJack F Vogel */ 50148cfa0ad2SJack F Vogel ctrl |= E1000_CTRL_PHY_RST; 50157d9119bdSJack F Vogel 50166ab6bfe3SJack F Vogel /* Gate automatic PHY configuration by hardware on 50177d9119bdSJack F Vogel * non-managed 82579 50187d9119bdSJack F Vogel */ 50197d9119bdSJack F Vogel if ((hw->mac.type == e1000_pch2lan) && 50207d9119bdSJack F Vogel !(E1000_READ_REG(hw, E1000_FWSM) & E1000_ICH_FWSM_FW_VALID)) 50217d9119bdSJack F Vogel e1000_gate_hw_phy_config_ich8lan(hw, TRUE); 50228cfa0ad2SJack F Vogel } 50238cfa0ad2SJack F Vogel ret_val = e1000_acquire_swflag_ich8lan(hw); 5024daf9197cSJack F Vogel DEBUGOUT("Issuing a global reset to ich8lan\n"); 50258cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL, (ctrl | E1000_CTRL_RST)); 50264dab5c37SJack F Vogel /* cannot issue a flush here because it hangs the hardware */ 50278cfa0ad2SJack F Vogel msec_delay(20); 50288cfa0ad2SJack F Vogel 50296ab6bfe3SJack F Vogel /* Set Phy Config Counter to 50msec */ 50306ab6bfe3SJack F Vogel if (hw->mac.type == e1000_pch2lan) { 50316ab6bfe3SJack F Vogel reg = E1000_READ_REG(hw, E1000_FEXTNVM3); 50326ab6bfe3SJack F Vogel reg &= ~E1000_FEXTNVM3_PHY_CFG_COUNTER_MASK; 50336ab6bfe3SJack F Vogel reg |= E1000_FEXTNVM3_PHY_CFG_COUNTER_50MSEC; 50346ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_FEXTNVM3, reg); 50356ab6bfe3SJack F Vogel } 50366ab6bfe3SJack F Vogel 50379d81738fSJack F Vogel 50387d9119bdSJack F Vogel if (ctrl & E1000_CTRL_PHY_RST) { 50399d81738fSJack F Vogel ret_val = hw->phy.ops.get_cfg_done(hw); 50404edd8523SJack F Vogel if (ret_val) 50416ab6bfe3SJack F Vogel return ret_val; 50424edd8523SJack F Vogel 50437d9119bdSJack F Vogel ret_val = e1000_post_phy_reset_ich8lan(hw); 50444edd8523SJack F Vogel if (ret_val) 50456ab6bfe3SJack F Vogel return ret_val; 50467d9119bdSJack F Vogel } 50477d9119bdSJack F Vogel 50486ab6bfe3SJack F Vogel /* For PCH, this write will make sure that any noise 50494edd8523SJack F Vogel * will be detected as a CRC error and be dropped rather than show up 50504edd8523SJack F Vogel * as a bad packet to the DMA engine. 50514edd8523SJack F Vogel */ 50524edd8523SJack F Vogel if (hw->mac.type == e1000_pchlan) 50534edd8523SJack F Vogel E1000_WRITE_REG(hw, E1000_CRC_OFFSET, 0x65656565); 50548cfa0ad2SJack F Vogel 50558cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_IMC, 0xffffffff); 5056730d3130SJack F Vogel E1000_READ_REG(hw, E1000_ICR); 50578cfa0ad2SJack F Vogel 50586ab6bfe3SJack F Vogel reg = E1000_READ_REG(hw, E1000_KABGTXD); 50596ab6bfe3SJack F Vogel reg |= E1000_KABGTXD_BGSQLBIAS; 50606ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_KABGTXD, reg); 50618cfa0ad2SJack F Vogel 50626ab6bfe3SJack F Vogel return E1000_SUCCESS; 50638cfa0ad2SJack F Vogel } 50648cfa0ad2SJack F Vogel 50658cfa0ad2SJack F Vogel /** 50668cfa0ad2SJack F Vogel * e1000_init_hw_ich8lan - Initialize the hardware 50678cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 50688cfa0ad2SJack F Vogel * 50698cfa0ad2SJack F Vogel * Prepares the hardware for transmit and receive by doing the following: 50708cfa0ad2SJack F Vogel * - initialize hardware bits 50718cfa0ad2SJack F Vogel * - initialize LED identification 50728cfa0ad2SJack F Vogel * - setup receive address registers 50738cfa0ad2SJack F Vogel * - setup flow control 50748cfa0ad2SJack F Vogel * - setup transmit descriptors 50758cfa0ad2SJack F Vogel * - clear statistics 50768cfa0ad2SJack F Vogel **/ 50778cfa0ad2SJack F Vogel static s32 e1000_init_hw_ich8lan(struct e1000_hw *hw) 50788cfa0ad2SJack F Vogel { 50798cfa0ad2SJack F Vogel struct e1000_mac_info *mac = &hw->mac; 50808cfa0ad2SJack F Vogel u32 ctrl_ext, txdctl, snoop; 50818cfa0ad2SJack F Vogel s32 ret_val; 50828cfa0ad2SJack F Vogel u16 i; 50838cfa0ad2SJack F Vogel 50848cfa0ad2SJack F Vogel DEBUGFUNC("e1000_init_hw_ich8lan"); 50858cfa0ad2SJack F Vogel 50868cfa0ad2SJack F Vogel e1000_initialize_hw_bits_ich8lan(hw); 50878cfa0ad2SJack F Vogel 50888cfa0ad2SJack F Vogel /* Initialize identification LED */ 5089d035aa2dSJack F Vogel ret_val = mac->ops.id_led_init(hw); 50906ab6bfe3SJack F Vogel /* An error is not fatal and we should not stop init due to this */ 5091d035aa2dSJack F Vogel if (ret_val) 5092d035aa2dSJack F Vogel DEBUGOUT("Error initializing identification LED\n"); 50938cfa0ad2SJack F Vogel 50948cfa0ad2SJack F Vogel /* Setup the receive address. */ 50958cfa0ad2SJack F Vogel e1000_init_rx_addrs_generic(hw, mac->rar_entry_count); 50968cfa0ad2SJack F Vogel 50978cfa0ad2SJack F Vogel /* Zero out the Multicast HASH table */ 50988cfa0ad2SJack F Vogel DEBUGOUT("Zeroing the MTA\n"); 50998cfa0ad2SJack F Vogel for (i = 0; i < mac->mta_reg_count; i++) 51008cfa0ad2SJack F Vogel E1000_WRITE_REG_ARRAY(hw, E1000_MTA, i, 0); 51018cfa0ad2SJack F Vogel 51026ab6bfe3SJack F Vogel /* The 82578 Rx buffer will stall if wakeup is enabled in host and 51034dab5c37SJack F Vogel * the ME. Disable wakeup by clearing the host wakeup bit. 51049d81738fSJack F Vogel * Reset the phy after disabling host wakeup to reset the Rx buffer. 51059d81738fSJack F Vogel */ 51069d81738fSJack F Vogel if (hw->phy.type == e1000_phy_82578) { 51074dab5c37SJack F Vogel hw->phy.ops.read_reg(hw, BM_PORT_GEN_CFG, &i); 51084dab5c37SJack F Vogel i &= ~BM_WUC_HOST_WU_BIT; 51094dab5c37SJack F Vogel hw->phy.ops.write_reg(hw, BM_PORT_GEN_CFG, i); 51109d81738fSJack F Vogel ret_val = e1000_phy_hw_reset_ich8lan(hw); 51119d81738fSJack F Vogel if (ret_val) 51129d81738fSJack F Vogel return ret_val; 51139d81738fSJack F Vogel } 51149d81738fSJack F Vogel 51158cfa0ad2SJack F Vogel /* Setup link and flow control */ 51168cfa0ad2SJack F Vogel ret_val = mac->ops.setup_link(hw); 51178cfa0ad2SJack F Vogel 51188cfa0ad2SJack F Vogel /* Set the transmit descriptor write-back policy for both queues */ 51198cfa0ad2SJack F Vogel txdctl = E1000_READ_REG(hw, E1000_TXDCTL(0)); 51207609433eSJack F Vogel txdctl = ((txdctl & ~E1000_TXDCTL_WTHRESH) | 51217609433eSJack F Vogel E1000_TXDCTL_FULL_TX_DESC_WB); 51227609433eSJack F Vogel txdctl = ((txdctl & ~E1000_TXDCTL_PTHRESH) | 51237609433eSJack F Vogel E1000_TXDCTL_MAX_TX_DESC_PREFETCH); 51248cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_TXDCTL(0), txdctl); 51258cfa0ad2SJack F Vogel txdctl = E1000_READ_REG(hw, E1000_TXDCTL(1)); 51267609433eSJack F Vogel txdctl = ((txdctl & ~E1000_TXDCTL_WTHRESH) | 51277609433eSJack F Vogel E1000_TXDCTL_FULL_TX_DESC_WB); 51287609433eSJack F Vogel txdctl = ((txdctl & ~E1000_TXDCTL_PTHRESH) | 51297609433eSJack F Vogel E1000_TXDCTL_MAX_TX_DESC_PREFETCH); 51308cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_TXDCTL(1), txdctl); 51318cfa0ad2SJack F Vogel 51326ab6bfe3SJack F Vogel /* ICH8 has opposite polarity of no_snoop bits. 51338cfa0ad2SJack F Vogel * By default, we should use snoop behavior. 51348cfa0ad2SJack F Vogel */ 51358cfa0ad2SJack F Vogel if (mac->type == e1000_ich8lan) 51368cfa0ad2SJack F Vogel snoop = PCIE_ICH8_SNOOP_ALL; 51378cfa0ad2SJack F Vogel else 51388cfa0ad2SJack F Vogel snoop = (u32) ~(PCIE_NO_SNOOP_ALL); 51398cfa0ad2SJack F Vogel e1000_set_pcie_no_snoop_generic(hw, snoop); 51408cfa0ad2SJack F Vogel 51418cfa0ad2SJack F Vogel ctrl_ext = E1000_READ_REG(hw, E1000_CTRL_EXT); 51428cfa0ad2SJack F Vogel ctrl_ext |= E1000_CTRL_EXT_RO_DIS; 51438cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL_EXT, ctrl_ext); 51448cfa0ad2SJack F Vogel 51456ab6bfe3SJack F Vogel /* Clear all of the statistics registers (clear on read). It is 51468cfa0ad2SJack F Vogel * important that we do this after we have tried to establish link 51478cfa0ad2SJack F Vogel * because the symbol error count will increment wildly if there 51488cfa0ad2SJack F Vogel * is no link. 51498cfa0ad2SJack F Vogel */ 51508cfa0ad2SJack F Vogel e1000_clear_hw_cntrs_ich8lan(hw); 51518cfa0ad2SJack F Vogel 51528cfa0ad2SJack F Vogel return ret_val; 51538cfa0ad2SJack F Vogel } 51546ab6bfe3SJack F Vogel 51558cfa0ad2SJack F Vogel /** 51568cfa0ad2SJack F Vogel * e1000_initialize_hw_bits_ich8lan - Initialize required hardware bits 51578cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 51588cfa0ad2SJack F Vogel * 51598cfa0ad2SJack F Vogel * Sets/Clears required hardware bits necessary for correctly setting up the 51608cfa0ad2SJack F Vogel * hardware for transmit and receive. 51618cfa0ad2SJack F Vogel **/ 51628cfa0ad2SJack F Vogel static void e1000_initialize_hw_bits_ich8lan(struct e1000_hw *hw) 51638cfa0ad2SJack F Vogel { 51648cfa0ad2SJack F Vogel u32 reg; 51658cfa0ad2SJack F Vogel 51668cfa0ad2SJack F Vogel DEBUGFUNC("e1000_initialize_hw_bits_ich8lan"); 51678cfa0ad2SJack F Vogel 51688cfa0ad2SJack F Vogel /* Extended Device Control */ 51698cfa0ad2SJack F Vogel reg = E1000_READ_REG(hw, E1000_CTRL_EXT); 51708cfa0ad2SJack F Vogel reg |= (1 << 22); 51719d81738fSJack F Vogel /* Enable PHY low-power state when MAC is at D3 w/o WoL */ 51729d81738fSJack F Vogel if (hw->mac.type >= e1000_pchlan) 51739d81738fSJack F Vogel reg |= E1000_CTRL_EXT_PHYPDEN; 51748cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL_EXT, reg); 51758cfa0ad2SJack F Vogel 51768cfa0ad2SJack F Vogel /* Transmit Descriptor Control 0 */ 51778cfa0ad2SJack F Vogel reg = E1000_READ_REG(hw, E1000_TXDCTL(0)); 51788cfa0ad2SJack F Vogel reg |= (1 << 22); 51798cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_TXDCTL(0), reg); 51808cfa0ad2SJack F Vogel 51818cfa0ad2SJack F Vogel /* Transmit Descriptor Control 1 */ 51828cfa0ad2SJack F Vogel reg = E1000_READ_REG(hw, E1000_TXDCTL(1)); 51838cfa0ad2SJack F Vogel reg |= (1 << 22); 51848cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_TXDCTL(1), reg); 51858cfa0ad2SJack F Vogel 51868cfa0ad2SJack F Vogel /* Transmit Arbitration Control 0 */ 51878cfa0ad2SJack F Vogel reg = E1000_READ_REG(hw, E1000_TARC(0)); 51888cfa0ad2SJack F Vogel if (hw->mac.type == e1000_ich8lan) 51898cfa0ad2SJack F Vogel reg |= (1 << 28) | (1 << 29); 51908cfa0ad2SJack F Vogel reg |= (1 << 23) | (1 << 24) | (1 << 26) | (1 << 27); 51918cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_TARC(0), reg); 51928cfa0ad2SJack F Vogel 51938cfa0ad2SJack F Vogel /* Transmit Arbitration Control 1 */ 51948cfa0ad2SJack F Vogel reg = E1000_READ_REG(hw, E1000_TARC(1)); 51958cfa0ad2SJack F Vogel if (E1000_READ_REG(hw, E1000_TCTL) & E1000_TCTL_MULR) 51968cfa0ad2SJack F Vogel reg &= ~(1 << 28); 51978cfa0ad2SJack F Vogel else 51988cfa0ad2SJack F Vogel reg |= (1 << 28); 51998cfa0ad2SJack F Vogel reg |= (1 << 24) | (1 << 26) | (1 << 30); 52008cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_TARC(1), reg); 52018cfa0ad2SJack F Vogel 52028cfa0ad2SJack F Vogel /* Device Status */ 52038cfa0ad2SJack F Vogel if (hw->mac.type == e1000_ich8lan) { 52048cfa0ad2SJack F Vogel reg = E1000_READ_REG(hw, E1000_STATUS); 52058f07d847SEitan Adler reg &= ~(1U << 31); 52068cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_STATUS, reg); 52078cfa0ad2SJack F Vogel } 52088cfa0ad2SJack F Vogel 52096ab6bfe3SJack F Vogel /* work-around descriptor data corruption issue during nfs v2 udp 52108ec87fc5SJack F Vogel * traffic, just disable the nfs filtering capability 52118ec87fc5SJack F Vogel */ 52128ec87fc5SJack F Vogel reg = E1000_READ_REG(hw, E1000_RFCTL); 52138ec87fc5SJack F Vogel reg |= (E1000_RFCTL_NFSW_DIS | E1000_RFCTL_NFSR_DIS); 52147609433eSJack F Vogel 52156ab6bfe3SJack F Vogel /* Disable IPv6 extension header parsing because some malformed 52166ab6bfe3SJack F Vogel * IPv6 headers can hang the Rx. 52176ab6bfe3SJack F Vogel */ 52186ab6bfe3SJack F Vogel if (hw->mac.type == e1000_ich8lan) 52196ab6bfe3SJack F Vogel reg |= (E1000_RFCTL_IPV6_EX_DIS | E1000_RFCTL_NEW_IPV6_EXT_DIS); 52208ec87fc5SJack F Vogel E1000_WRITE_REG(hw, E1000_RFCTL, reg); 52218ec87fc5SJack F Vogel 52226ab6bfe3SJack F Vogel /* Enable ECC on Lynxpoint */ 5223295df609SEric Joyner if (hw->mac.type >= e1000_pch_lpt) { 52246ab6bfe3SJack F Vogel reg = E1000_READ_REG(hw, E1000_PBECCSTS); 52256ab6bfe3SJack F Vogel reg |= E1000_PBECCSTS_ECC_ENABLE; 52266ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_PBECCSTS, reg); 52276ab6bfe3SJack F Vogel 52286ab6bfe3SJack F Vogel reg = E1000_READ_REG(hw, E1000_CTRL); 52296ab6bfe3SJack F Vogel reg |= E1000_CTRL_MEHE; 52306ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL, reg); 52316ab6bfe3SJack F Vogel } 52326ab6bfe3SJack F Vogel 52338cfa0ad2SJack F Vogel return; 52348cfa0ad2SJack F Vogel } 52358cfa0ad2SJack F Vogel 52368cfa0ad2SJack F Vogel /** 52378cfa0ad2SJack F Vogel * e1000_setup_link_ich8lan - Setup flow control and link settings 52388cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 52398cfa0ad2SJack F Vogel * 52408cfa0ad2SJack F Vogel * Determines which flow control settings to use, then configures flow 52418cfa0ad2SJack F Vogel * control. Calls the appropriate media-specific link configuration 52428cfa0ad2SJack F Vogel * function. Assuming the adapter has a valid link partner, a valid link 52438cfa0ad2SJack F Vogel * should be established. Assumes the hardware has previously been reset 52448cfa0ad2SJack F Vogel * and the transmitter and receiver are not enabled. 52458cfa0ad2SJack F Vogel **/ 52468cfa0ad2SJack F Vogel static s32 e1000_setup_link_ich8lan(struct e1000_hw *hw) 52478cfa0ad2SJack F Vogel { 52486ab6bfe3SJack F Vogel s32 ret_val; 52498cfa0ad2SJack F Vogel 52508cfa0ad2SJack F Vogel DEBUGFUNC("e1000_setup_link_ich8lan"); 52518cfa0ad2SJack F Vogel 52526ab6bfe3SJack F Vogel /* ICH parts do not have a word in the NVM to determine 52538cfa0ad2SJack F Vogel * the default flow control setting, so we explicitly 52548cfa0ad2SJack F Vogel * set it to full. 52558cfa0ad2SJack F Vogel */ 5256daf9197cSJack F Vogel if (hw->fc.requested_mode == e1000_fc_default) 5257daf9197cSJack F Vogel hw->fc.requested_mode = e1000_fc_full; 52588cfa0ad2SJack F Vogel 52596ab6bfe3SJack F Vogel /* Save off the requested flow control mode for use later. Depending 5260daf9197cSJack F Vogel * on the link partner's capabilities, we may or may not use this mode. 5261daf9197cSJack F Vogel */ 5262daf9197cSJack F Vogel hw->fc.current_mode = hw->fc.requested_mode; 52638cfa0ad2SJack F Vogel 5264daf9197cSJack F Vogel DEBUGOUT1("After fix-ups FlowControl is now = %x\n", 5265daf9197cSJack F Vogel hw->fc.current_mode); 52668cfa0ad2SJack F Vogel 526751569bd7SEric Joyner if (!hw->phy.ops.check_reset_block(hw)) { 52688cfa0ad2SJack F Vogel /* Continue to configure the copper link. */ 52698cfa0ad2SJack F Vogel ret_val = hw->mac.ops.setup_physical_interface(hw); 52708cfa0ad2SJack F Vogel if (ret_val) 52716ab6bfe3SJack F Vogel return ret_val; 527251569bd7SEric Joyner } 52738cfa0ad2SJack F Vogel 52748cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_FCTTV, hw->fc.pause_time); 52759d81738fSJack F Vogel if ((hw->phy.type == e1000_phy_82578) || 52767d9119bdSJack F Vogel (hw->phy.type == e1000_phy_82579) || 52776ab6bfe3SJack F Vogel (hw->phy.type == e1000_phy_i217) || 52789d81738fSJack F Vogel (hw->phy.type == e1000_phy_82577)) { 52797d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_FCRTV_PCH, hw->fc.refresh_time); 52807d9119bdSJack F Vogel 52819d81738fSJack F Vogel ret_val = hw->phy.ops.write_reg(hw, 52829d81738fSJack F Vogel PHY_REG(BM_PORT_CTRL_PAGE, 27), 52839d81738fSJack F Vogel hw->fc.pause_time); 52849d81738fSJack F Vogel if (ret_val) 52856ab6bfe3SJack F Vogel return ret_val; 52869d81738fSJack F Vogel } 52878cfa0ad2SJack F Vogel 52886ab6bfe3SJack F Vogel return e1000_set_fc_watermarks_generic(hw); 52898cfa0ad2SJack F Vogel } 52908cfa0ad2SJack F Vogel 52918cfa0ad2SJack F Vogel /** 52928cfa0ad2SJack F Vogel * e1000_setup_copper_link_ich8lan - Configure MAC/PHY interface 52938cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 52948cfa0ad2SJack F Vogel * 52958cfa0ad2SJack F Vogel * Configures the kumeran interface to the PHY to wait the appropriate time 52968cfa0ad2SJack F Vogel * when polling the PHY, then call the generic setup_copper_link to finish 52978cfa0ad2SJack F Vogel * configuring the copper link. 52988cfa0ad2SJack F Vogel **/ 52998cfa0ad2SJack F Vogel static s32 e1000_setup_copper_link_ich8lan(struct e1000_hw *hw) 53008cfa0ad2SJack F Vogel { 53018cfa0ad2SJack F Vogel u32 ctrl; 53028cfa0ad2SJack F Vogel s32 ret_val; 53038cfa0ad2SJack F Vogel u16 reg_data; 53048cfa0ad2SJack F Vogel 53058cfa0ad2SJack F Vogel DEBUGFUNC("e1000_setup_copper_link_ich8lan"); 53068cfa0ad2SJack F Vogel 53078cfa0ad2SJack F Vogel ctrl = E1000_READ_REG(hw, E1000_CTRL); 53088cfa0ad2SJack F Vogel ctrl |= E1000_CTRL_SLU; 53098cfa0ad2SJack F Vogel ctrl &= ~(E1000_CTRL_FRCSPD | E1000_CTRL_FRCDPX); 53108cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL, ctrl); 53118cfa0ad2SJack F Vogel 53126ab6bfe3SJack F Vogel /* Set the mac to wait the maximum time between each iteration 53138cfa0ad2SJack F Vogel * and increase the max iterations when polling the phy; 53148cfa0ad2SJack F Vogel * this fixes erroneous timeouts at 10Mbps. 53158cfa0ad2SJack F Vogel */ 53164edd8523SJack F Vogel ret_val = e1000_write_kmrn_reg_generic(hw, E1000_KMRNCTRLSTA_TIMEOUTS, 53178cfa0ad2SJack F Vogel 0xFFFF); 53188cfa0ad2SJack F Vogel if (ret_val) 53196ab6bfe3SJack F Vogel return ret_val; 53209d81738fSJack F Vogel ret_val = e1000_read_kmrn_reg_generic(hw, 53219d81738fSJack F Vogel E1000_KMRNCTRLSTA_INBAND_PARAM, 53228cfa0ad2SJack F Vogel ®_data); 53238cfa0ad2SJack F Vogel if (ret_val) 53246ab6bfe3SJack F Vogel return ret_val; 53258cfa0ad2SJack F Vogel reg_data |= 0x3F; 53269d81738fSJack F Vogel ret_val = e1000_write_kmrn_reg_generic(hw, 53279d81738fSJack F Vogel E1000_KMRNCTRLSTA_INBAND_PARAM, 53288cfa0ad2SJack F Vogel reg_data); 53298cfa0ad2SJack F Vogel if (ret_val) 53306ab6bfe3SJack F Vogel return ret_val; 53318cfa0ad2SJack F Vogel 5332d035aa2dSJack F Vogel switch (hw->phy.type) { 5333d035aa2dSJack F Vogel case e1000_phy_igp_3: 53348cfa0ad2SJack F Vogel ret_val = e1000_copper_link_setup_igp(hw); 53358cfa0ad2SJack F Vogel if (ret_val) 53366ab6bfe3SJack F Vogel return ret_val; 5337d035aa2dSJack F Vogel break; 5338d035aa2dSJack F Vogel case e1000_phy_bm: 53399d81738fSJack F Vogel case e1000_phy_82578: 53408cfa0ad2SJack F Vogel ret_val = e1000_copper_link_setup_m88(hw); 53418cfa0ad2SJack F Vogel if (ret_val) 53426ab6bfe3SJack F Vogel return ret_val; 5343d035aa2dSJack F Vogel break; 53449d81738fSJack F Vogel case e1000_phy_82577: 53457d9119bdSJack F Vogel case e1000_phy_82579: 53469d81738fSJack F Vogel ret_val = e1000_copper_link_setup_82577(hw); 53479d81738fSJack F Vogel if (ret_val) 53486ab6bfe3SJack F Vogel return ret_val; 53499d81738fSJack F Vogel break; 5350d035aa2dSJack F Vogel case e1000_phy_ife: 53518cfa0ad2SJack F Vogel ret_val = hw->phy.ops.read_reg(hw, IFE_PHY_MDIX_CONTROL, 53528cfa0ad2SJack F Vogel ®_data); 53538cfa0ad2SJack F Vogel if (ret_val) 53546ab6bfe3SJack F Vogel return ret_val; 53558cfa0ad2SJack F Vogel 53568cfa0ad2SJack F Vogel reg_data &= ~IFE_PMC_AUTO_MDIX; 53578cfa0ad2SJack F Vogel 53588cfa0ad2SJack F Vogel switch (hw->phy.mdix) { 53598cfa0ad2SJack F Vogel case 1: 53608cfa0ad2SJack F Vogel reg_data &= ~IFE_PMC_FORCE_MDIX; 53618cfa0ad2SJack F Vogel break; 53628cfa0ad2SJack F Vogel case 2: 53638cfa0ad2SJack F Vogel reg_data |= IFE_PMC_FORCE_MDIX; 53648cfa0ad2SJack F Vogel break; 53658cfa0ad2SJack F Vogel case 0: 53668cfa0ad2SJack F Vogel default: 53678cfa0ad2SJack F Vogel reg_data |= IFE_PMC_AUTO_MDIX; 53688cfa0ad2SJack F Vogel break; 53698cfa0ad2SJack F Vogel } 53708cfa0ad2SJack F Vogel ret_val = hw->phy.ops.write_reg(hw, IFE_PHY_MDIX_CONTROL, 53718cfa0ad2SJack F Vogel reg_data); 53728cfa0ad2SJack F Vogel if (ret_val) 53736ab6bfe3SJack F Vogel return ret_val; 5374d035aa2dSJack F Vogel break; 5375d035aa2dSJack F Vogel default: 5376d035aa2dSJack F Vogel break; 53778cfa0ad2SJack F Vogel } 53788cfa0ad2SJack F Vogel 53796ab6bfe3SJack F Vogel return e1000_setup_copper_link_generic(hw); 53806ab6bfe3SJack F Vogel } 53816ab6bfe3SJack F Vogel 53826ab6bfe3SJack F Vogel /** 53836ab6bfe3SJack F Vogel * e1000_setup_copper_link_pch_lpt - Configure MAC/PHY interface 53846ab6bfe3SJack F Vogel * @hw: pointer to the HW structure 53856ab6bfe3SJack F Vogel * 53866ab6bfe3SJack F Vogel * Calls the PHY specific link setup function and then calls the 53876ab6bfe3SJack F Vogel * generic setup_copper_link to finish configuring the link for 53886ab6bfe3SJack F Vogel * Lynxpoint PCH devices 53896ab6bfe3SJack F Vogel **/ 53906ab6bfe3SJack F Vogel static s32 e1000_setup_copper_link_pch_lpt(struct e1000_hw *hw) 53916ab6bfe3SJack F Vogel { 53926ab6bfe3SJack F Vogel u32 ctrl; 53936ab6bfe3SJack F Vogel s32 ret_val; 53946ab6bfe3SJack F Vogel 53956ab6bfe3SJack F Vogel DEBUGFUNC("e1000_setup_copper_link_pch_lpt"); 53966ab6bfe3SJack F Vogel 53976ab6bfe3SJack F Vogel ctrl = E1000_READ_REG(hw, E1000_CTRL); 53986ab6bfe3SJack F Vogel ctrl |= E1000_CTRL_SLU; 53996ab6bfe3SJack F Vogel ctrl &= ~(E1000_CTRL_FRCSPD | E1000_CTRL_FRCDPX); 54006ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL, ctrl); 54016ab6bfe3SJack F Vogel 54026ab6bfe3SJack F Vogel ret_val = e1000_copper_link_setup_82577(hw); 54036ab6bfe3SJack F Vogel if (ret_val) 54048cfa0ad2SJack F Vogel return ret_val; 54056ab6bfe3SJack F Vogel 54066ab6bfe3SJack F Vogel return e1000_setup_copper_link_generic(hw); 54078cfa0ad2SJack F Vogel } 54088cfa0ad2SJack F Vogel 54098cfa0ad2SJack F Vogel /** 54108cfa0ad2SJack F Vogel * e1000_get_link_up_info_ich8lan - Get current link speed and duplex 54118cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 54128cfa0ad2SJack F Vogel * @speed: pointer to store current link speed 54138cfa0ad2SJack F Vogel * @duplex: pointer to store the current link duplex 54148cfa0ad2SJack F Vogel * 54158cfa0ad2SJack F Vogel * Calls the generic get_speed_and_duplex to retrieve the current link 54168cfa0ad2SJack F Vogel * information and then calls the Kumeran lock loss workaround for links at 54178cfa0ad2SJack F Vogel * gigabit speeds. 54188cfa0ad2SJack F Vogel **/ 54198cfa0ad2SJack F Vogel static s32 e1000_get_link_up_info_ich8lan(struct e1000_hw *hw, u16 *speed, 54208cfa0ad2SJack F Vogel u16 *duplex) 54218cfa0ad2SJack F Vogel { 54228cfa0ad2SJack F Vogel s32 ret_val; 54238cfa0ad2SJack F Vogel 54248cfa0ad2SJack F Vogel DEBUGFUNC("e1000_get_link_up_info_ich8lan"); 54258cfa0ad2SJack F Vogel 54268cfa0ad2SJack F Vogel ret_val = e1000_get_speed_and_duplex_copper_generic(hw, speed, duplex); 54278cfa0ad2SJack F Vogel if (ret_val) 54286ab6bfe3SJack F Vogel return ret_val; 54298cfa0ad2SJack F Vogel 54308cfa0ad2SJack F Vogel if ((hw->mac.type == e1000_ich8lan) && 54318cfa0ad2SJack F Vogel (hw->phy.type == e1000_phy_igp_3) && 54328cfa0ad2SJack F Vogel (*speed == SPEED_1000)) { 54338cfa0ad2SJack F Vogel ret_val = e1000_kmrn_lock_loss_workaround_ich8lan(hw); 54348cfa0ad2SJack F Vogel } 54358cfa0ad2SJack F Vogel 54368cfa0ad2SJack F Vogel return ret_val; 54378cfa0ad2SJack F Vogel } 54388cfa0ad2SJack F Vogel 54398cfa0ad2SJack F Vogel /** 54408cfa0ad2SJack F Vogel * e1000_kmrn_lock_loss_workaround_ich8lan - Kumeran workaround 54418cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 54428cfa0ad2SJack F Vogel * 54438cfa0ad2SJack F Vogel * Work-around for 82566 Kumeran PCS lock loss: 54448cfa0ad2SJack F Vogel * On link status change (i.e. PCI reset, speed change) and link is up and 54458cfa0ad2SJack F Vogel * speed is gigabit- 54468cfa0ad2SJack F Vogel * 0) if workaround is optionally disabled do nothing 54478cfa0ad2SJack F Vogel * 1) wait 1ms for Kumeran link to come up 54488cfa0ad2SJack F Vogel * 2) check Kumeran Diagnostic register PCS lock loss bit 54498cfa0ad2SJack F Vogel * 3) if not set the link is locked (all is good), otherwise... 54508cfa0ad2SJack F Vogel * 4) reset the PHY 54518cfa0ad2SJack F Vogel * 5) repeat up to 10 times 54528cfa0ad2SJack F Vogel * Note: this is only called for IGP3 copper when speed is 1gb. 54538cfa0ad2SJack F Vogel **/ 54548cfa0ad2SJack F Vogel static s32 e1000_kmrn_lock_loss_workaround_ich8lan(struct e1000_hw *hw) 54558cfa0ad2SJack F Vogel { 5456daf9197cSJack F Vogel struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 54578cfa0ad2SJack F Vogel u32 phy_ctrl; 54586ab6bfe3SJack F Vogel s32 ret_val; 54598cfa0ad2SJack F Vogel u16 i, data; 54608cfa0ad2SJack F Vogel bool link; 54618cfa0ad2SJack F Vogel 54628cfa0ad2SJack F Vogel DEBUGFUNC("e1000_kmrn_lock_loss_workaround_ich8lan"); 54638cfa0ad2SJack F Vogel 5464730d3130SJack F Vogel if (!dev_spec->kmrn_lock_loss_workaround_enabled) 54656ab6bfe3SJack F Vogel return E1000_SUCCESS; 54668cfa0ad2SJack F Vogel 54676ab6bfe3SJack F Vogel /* Make sure link is up before proceeding. If not just return. 54688cfa0ad2SJack F Vogel * Attempting this while link is negotiating fouled up link 54698cfa0ad2SJack F Vogel * stability 54708cfa0ad2SJack F Vogel */ 54718cfa0ad2SJack F Vogel ret_val = e1000_phy_has_link_generic(hw, 1, 0, &link); 54726ab6bfe3SJack F Vogel if (!link) 54736ab6bfe3SJack F Vogel return E1000_SUCCESS; 54748cfa0ad2SJack F Vogel 54758cfa0ad2SJack F Vogel for (i = 0; i < 10; i++) { 54768cfa0ad2SJack F Vogel /* read once to clear */ 54778cfa0ad2SJack F Vogel ret_val = hw->phy.ops.read_reg(hw, IGP3_KMRN_DIAG, &data); 54788cfa0ad2SJack F Vogel if (ret_val) 54796ab6bfe3SJack F Vogel return ret_val; 54808cfa0ad2SJack F Vogel /* and again to get new status */ 54818cfa0ad2SJack F Vogel ret_val = hw->phy.ops.read_reg(hw, IGP3_KMRN_DIAG, &data); 54828cfa0ad2SJack F Vogel if (ret_val) 54836ab6bfe3SJack F Vogel return ret_val; 54848cfa0ad2SJack F Vogel 54858cfa0ad2SJack F Vogel /* check for PCS lock */ 54866ab6bfe3SJack F Vogel if (!(data & IGP3_KMRN_DIAG_PCS_LOCK_LOSS)) 54876ab6bfe3SJack F Vogel return E1000_SUCCESS; 54888cfa0ad2SJack F Vogel 54898cfa0ad2SJack F Vogel /* Issue PHY reset */ 54908cfa0ad2SJack F Vogel hw->phy.ops.reset(hw); 54918cfa0ad2SJack F Vogel msec_delay_irq(5); 54928cfa0ad2SJack F Vogel } 54938cfa0ad2SJack F Vogel /* Disable GigE link negotiation */ 54948cfa0ad2SJack F Vogel phy_ctrl = E1000_READ_REG(hw, E1000_PHY_CTRL); 54958cfa0ad2SJack F Vogel phy_ctrl |= (E1000_PHY_CTRL_GBE_DISABLE | 54968cfa0ad2SJack F Vogel E1000_PHY_CTRL_NOND0A_GBE_DISABLE); 54978cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_PHY_CTRL, phy_ctrl); 54988cfa0ad2SJack F Vogel 54996ab6bfe3SJack F Vogel /* Call gig speed drop workaround on Gig disable before accessing 55008cfa0ad2SJack F Vogel * any PHY registers 55018cfa0ad2SJack F Vogel */ 55028cfa0ad2SJack F Vogel e1000_gig_downshift_workaround_ich8lan(hw); 55038cfa0ad2SJack F Vogel 55048cfa0ad2SJack F Vogel /* unable to acquire PCS lock */ 55056ab6bfe3SJack F Vogel return -E1000_ERR_PHY; 55068cfa0ad2SJack F Vogel } 55078cfa0ad2SJack F Vogel 55088cfa0ad2SJack F Vogel /** 55098cfa0ad2SJack F Vogel * e1000_set_kmrn_lock_loss_workaround_ich8lan - Set Kumeran workaround state 55108cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 55118cfa0ad2SJack F Vogel * @state: boolean value used to set the current Kumeran workaround state 55128cfa0ad2SJack F Vogel * 55138cfa0ad2SJack F Vogel * If ICH8, set the current Kumeran workaround state (enabled - TRUE 55148cfa0ad2SJack F Vogel * /disabled - FALSE). 55158cfa0ad2SJack F Vogel **/ 55168cfa0ad2SJack F Vogel void e1000_set_kmrn_lock_loss_workaround_ich8lan(struct e1000_hw *hw, 55178cfa0ad2SJack F Vogel bool state) 55188cfa0ad2SJack F Vogel { 5519daf9197cSJack F Vogel struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 55208cfa0ad2SJack F Vogel 55218cfa0ad2SJack F Vogel DEBUGFUNC("e1000_set_kmrn_lock_loss_workaround_ich8lan"); 55228cfa0ad2SJack F Vogel 55238cfa0ad2SJack F Vogel if (hw->mac.type != e1000_ich8lan) { 55248cfa0ad2SJack F Vogel DEBUGOUT("Workaround applies to ICH8 only.\n"); 5525daf9197cSJack F Vogel return; 55268cfa0ad2SJack F Vogel } 55278cfa0ad2SJack F Vogel 55288cfa0ad2SJack F Vogel dev_spec->kmrn_lock_loss_workaround_enabled = state; 55298cfa0ad2SJack F Vogel 55308cfa0ad2SJack F Vogel return; 55318cfa0ad2SJack F Vogel } 55328cfa0ad2SJack F Vogel 55338cfa0ad2SJack F Vogel /** 55348cfa0ad2SJack F Vogel * e1000_ipg3_phy_powerdown_workaround_ich8lan - Power down workaround on D3 55358cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 55368cfa0ad2SJack F Vogel * 55378cfa0ad2SJack F Vogel * Workaround for 82566 power-down on D3 entry: 55388cfa0ad2SJack F Vogel * 1) disable gigabit link 55398cfa0ad2SJack F Vogel * 2) write VR power-down enable 55408cfa0ad2SJack F Vogel * 3) read it back 55418cfa0ad2SJack F Vogel * Continue if successful, else issue LCD reset and repeat 55428cfa0ad2SJack F Vogel **/ 55438cfa0ad2SJack F Vogel void e1000_igp3_phy_powerdown_workaround_ich8lan(struct e1000_hw *hw) 55448cfa0ad2SJack F Vogel { 55458cfa0ad2SJack F Vogel u32 reg; 55468cfa0ad2SJack F Vogel u16 data; 55478cfa0ad2SJack F Vogel u8 retry = 0; 55488cfa0ad2SJack F Vogel 55498cfa0ad2SJack F Vogel DEBUGFUNC("e1000_igp3_phy_powerdown_workaround_ich8lan"); 55508cfa0ad2SJack F Vogel 55518cfa0ad2SJack F Vogel if (hw->phy.type != e1000_phy_igp_3) 55526ab6bfe3SJack F Vogel return; 55538cfa0ad2SJack F Vogel 55548cfa0ad2SJack F Vogel /* Try the workaround twice (if needed) */ 55558cfa0ad2SJack F Vogel do { 55568cfa0ad2SJack F Vogel /* Disable link */ 55578cfa0ad2SJack F Vogel reg = E1000_READ_REG(hw, E1000_PHY_CTRL); 55588cfa0ad2SJack F Vogel reg |= (E1000_PHY_CTRL_GBE_DISABLE | 55598cfa0ad2SJack F Vogel E1000_PHY_CTRL_NOND0A_GBE_DISABLE); 55608cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_PHY_CTRL, reg); 55618cfa0ad2SJack F Vogel 55626ab6bfe3SJack F Vogel /* Call gig speed drop workaround on Gig disable before 55638cfa0ad2SJack F Vogel * accessing any PHY registers 55648cfa0ad2SJack F Vogel */ 55658cfa0ad2SJack F Vogel if (hw->mac.type == e1000_ich8lan) 55668cfa0ad2SJack F Vogel e1000_gig_downshift_workaround_ich8lan(hw); 55678cfa0ad2SJack F Vogel 55688cfa0ad2SJack F Vogel /* Write VR power-down enable */ 55698cfa0ad2SJack F Vogel hw->phy.ops.read_reg(hw, IGP3_VR_CTRL, &data); 55708cfa0ad2SJack F Vogel data &= ~IGP3_VR_CTRL_DEV_POWERDOWN_MODE_MASK; 5571daf9197cSJack F Vogel hw->phy.ops.write_reg(hw, IGP3_VR_CTRL, 55728cfa0ad2SJack F Vogel data | IGP3_VR_CTRL_MODE_SHUTDOWN); 55738cfa0ad2SJack F Vogel 55748cfa0ad2SJack F Vogel /* Read it back and test */ 55758cfa0ad2SJack F Vogel hw->phy.ops.read_reg(hw, IGP3_VR_CTRL, &data); 55768cfa0ad2SJack F Vogel data &= IGP3_VR_CTRL_DEV_POWERDOWN_MODE_MASK; 55778cfa0ad2SJack F Vogel if ((data == IGP3_VR_CTRL_MODE_SHUTDOWN) || retry) 55788cfa0ad2SJack F Vogel break; 55798cfa0ad2SJack F Vogel 55808cfa0ad2SJack F Vogel /* Issue PHY reset and repeat at most one more time */ 55818cfa0ad2SJack F Vogel reg = E1000_READ_REG(hw, E1000_CTRL); 55828cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_CTRL, reg | E1000_CTRL_PHY_RST); 55838cfa0ad2SJack F Vogel retry++; 55848cfa0ad2SJack F Vogel } while (retry); 55858cfa0ad2SJack F Vogel } 55868cfa0ad2SJack F Vogel 55878cfa0ad2SJack F Vogel /** 55888cfa0ad2SJack F Vogel * e1000_gig_downshift_workaround_ich8lan - WoL from S5 stops working 55898cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 55908cfa0ad2SJack F Vogel * 55918cfa0ad2SJack F Vogel * Steps to take when dropping from 1Gb/s (eg. link cable removal (LSC), 55928cfa0ad2SJack F Vogel * LPLU, Gig disable, MDIC PHY reset): 55938cfa0ad2SJack F Vogel * 1) Set Kumeran Near-end loopback 55948cfa0ad2SJack F Vogel * 2) Clear Kumeran Near-end loopback 55954dab5c37SJack F Vogel * Should only be called for ICH8[m] devices with any 1G Phy. 55968cfa0ad2SJack F Vogel **/ 55978cfa0ad2SJack F Vogel void e1000_gig_downshift_workaround_ich8lan(struct e1000_hw *hw) 55988cfa0ad2SJack F Vogel { 55996ab6bfe3SJack F Vogel s32 ret_val; 5600a4378873SKevin Bowling u16 reg_data; 56018cfa0ad2SJack F Vogel 56028cfa0ad2SJack F Vogel DEBUGFUNC("e1000_gig_downshift_workaround_ich8lan"); 56038cfa0ad2SJack F Vogel 56048cfa0ad2SJack F Vogel if ((hw->mac.type != e1000_ich8lan) || 56054dab5c37SJack F Vogel (hw->phy.type == e1000_phy_ife)) 56066ab6bfe3SJack F Vogel return; 56078cfa0ad2SJack F Vogel 56088cfa0ad2SJack F Vogel ret_val = e1000_read_kmrn_reg_generic(hw, E1000_KMRNCTRLSTA_DIAG_OFFSET, 56098cfa0ad2SJack F Vogel ®_data); 56108cfa0ad2SJack F Vogel if (ret_val) 56116ab6bfe3SJack F Vogel return; 56128cfa0ad2SJack F Vogel reg_data |= E1000_KMRNCTRLSTA_DIAG_NELPBK; 56138cfa0ad2SJack F Vogel ret_val = e1000_write_kmrn_reg_generic(hw, 56148cfa0ad2SJack F Vogel E1000_KMRNCTRLSTA_DIAG_OFFSET, 56158cfa0ad2SJack F Vogel reg_data); 56168cfa0ad2SJack F Vogel if (ret_val) 56178cfa0ad2SJack F Vogel return; 56186ab6bfe3SJack F Vogel reg_data &= ~E1000_KMRNCTRLSTA_DIAG_NELPBK; 56196ab6bfe3SJack F Vogel e1000_write_kmrn_reg_generic(hw, E1000_KMRNCTRLSTA_DIAG_OFFSET, 56206ab6bfe3SJack F Vogel reg_data); 56218cfa0ad2SJack F Vogel } 56228cfa0ad2SJack F Vogel 56238cfa0ad2SJack F Vogel /** 56244dab5c37SJack F Vogel * e1000_suspend_workarounds_ich8lan - workarounds needed during S0->Sx 56258cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 56268cfa0ad2SJack F Vogel * 56278cfa0ad2SJack F Vogel * During S0 to Sx transition, it is possible the link remains at gig 56288cfa0ad2SJack F Vogel * instead of negotiating to a lower speed. Before going to Sx, set 56294dab5c37SJack F Vogel * 'Gig Disable' to force link speed negotiation to a lower speed based on 56304dab5c37SJack F Vogel * the LPLU setting in the NVM or custom setting. For PCH and newer parts, 56314dab5c37SJack F Vogel * the OEM bits PHY register (LED, GbE disable and LPLU configurations) also 56324dab5c37SJack F Vogel * needs to be written. 56336ab6bfe3SJack F Vogel * Parts that support (and are linked to a partner which support) EEE in 56346ab6bfe3SJack F Vogel * 100Mbps should disable LPLU since 100Mbps w/ EEE requires less power 56356ab6bfe3SJack F Vogel * than 10Mbps w/o EEE. 56368cfa0ad2SJack F Vogel **/ 56374dab5c37SJack F Vogel void e1000_suspend_workarounds_ich8lan(struct e1000_hw *hw) 56388cfa0ad2SJack F Vogel { 56396ab6bfe3SJack F Vogel struct e1000_dev_spec_ich8lan *dev_spec = &hw->dev_spec.ich8lan; 56408cfa0ad2SJack F Vogel u32 phy_ctrl; 56417d9119bdSJack F Vogel s32 ret_val; 56428cfa0ad2SJack F Vogel 56434dab5c37SJack F Vogel DEBUGFUNC("e1000_suspend_workarounds_ich8lan"); 56447d9119bdSJack F Vogel 56458cfa0ad2SJack F Vogel phy_ctrl = E1000_READ_REG(hw, E1000_PHY_CTRL); 56464dab5c37SJack F Vogel phy_ctrl |= E1000_PHY_CTRL_GBE_DISABLE; 56476ab6bfe3SJack F Vogel 56486ab6bfe3SJack F Vogel if (hw->phy.type == e1000_phy_i217) { 56496ab6bfe3SJack F Vogel u16 phy_reg, device_id = hw->device_id; 56506ab6bfe3SJack F Vogel 56516ab6bfe3SJack F Vogel if ((device_id == E1000_DEV_ID_PCH_LPTLP_I218_LM) || 56528cc64f1eSJack F Vogel (device_id == E1000_DEV_ID_PCH_LPTLP_I218_V) || 56538cc64f1eSJack F Vogel (device_id == E1000_DEV_ID_PCH_I218_LM3) || 5654c80429ceSEric Joyner (device_id == E1000_DEV_ID_PCH_I218_V3) || 5655295df609SEric Joyner (hw->mac.type >= e1000_pch_spt)) { 56566ab6bfe3SJack F Vogel u32 fextnvm6 = E1000_READ_REG(hw, E1000_FEXTNVM6); 56576ab6bfe3SJack F Vogel 56586ab6bfe3SJack F Vogel E1000_WRITE_REG(hw, E1000_FEXTNVM6, 56596ab6bfe3SJack F Vogel fextnvm6 & ~E1000_FEXTNVM6_REQ_PLL_CLK); 56606ab6bfe3SJack F Vogel } 56616ab6bfe3SJack F Vogel 56626ab6bfe3SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 56636ab6bfe3SJack F Vogel if (ret_val) 56646ab6bfe3SJack F Vogel goto out; 56656ab6bfe3SJack F Vogel 56666ab6bfe3SJack F Vogel if (!dev_spec->eee_disable) { 56676ab6bfe3SJack F Vogel u16 eee_advert; 56686ab6bfe3SJack F Vogel 56696ab6bfe3SJack F Vogel ret_val = 56706ab6bfe3SJack F Vogel e1000_read_emi_reg_locked(hw, 56716ab6bfe3SJack F Vogel I217_EEE_ADVERTISEMENT, 56726ab6bfe3SJack F Vogel &eee_advert); 56736ab6bfe3SJack F Vogel if (ret_val) 56746ab6bfe3SJack F Vogel goto release; 56756ab6bfe3SJack F Vogel 56766ab6bfe3SJack F Vogel /* Disable LPLU if both link partners support 100BaseT 56776ab6bfe3SJack F Vogel * EEE and 100Full is advertised on both ends of the 56787609433eSJack F Vogel * link, and enable Auto Enable LPI since there will 56797609433eSJack F Vogel * be no driver to enable LPI while in Sx. 56806ab6bfe3SJack F Vogel */ 56816ab6bfe3SJack F Vogel if ((eee_advert & I82579_EEE_100_SUPPORTED) && 56826ab6bfe3SJack F Vogel (dev_spec->eee_lp_ability & 56836ab6bfe3SJack F Vogel I82579_EEE_100_SUPPORTED) && 56847609433eSJack F Vogel (hw->phy.autoneg_advertised & ADVERTISE_100_FULL)) { 56856ab6bfe3SJack F Vogel phy_ctrl &= ~(E1000_PHY_CTRL_D0A_LPLU | 56866ab6bfe3SJack F Vogel E1000_PHY_CTRL_NOND0A_LPLU); 56877609433eSJack F Vogel 56887609433eSJack F Vogel /* Set Auto Enable LPI after link up */ 56897609433eSJack F Vogel hw->phy.ops.read_reg_locked(hw, 56907609433eSJack F Vogel I217_LPI_GPIO_CTRL, 56917609433eSJack F Vogel &phy_reg); 56927609433eSJack F Vogel phy_reg |= I217_LPI_GPIO_CTRL_AUTO_EN_LPI; 56937609433eSJack F Vogel hw->phy.ops.write_reg_locked(hw, 56947609433eSJack F Vogel I217_LPI_GPIO_CTRL, 56957609433eSJack F Vogel phy_reg); 56967609433eSJack F Vogel } 56976ab6bfe3SJack F Vogel } 56986ab6bfe3SJack F Vogel 56996ab6bfe3SJack F Vogel /* For i217 Intel Rapid Start Technology support, 57006ab6bfe3SJack F Vogel * when the system is going into Sx and no manageability engine 57016ab6bfe3SJack F Vogel * is present, the driver must configure proxy to reset only on 57026ab6bfe3SJack F Vogel * power good. LPI (Low Power Idle) state must also reset only 57036ab6bfe3SJack F Vogel * on power good, as well as the MTA (Multicast table array). 57046ab6bfe3SJack F Vogel * The SMBus release must also be disabled on LCD reset. 57056ab6bfe3SJack F Vogel */ 57066ab6bfe3SJack F Vogel if (!(E1000_READ_REG(hw, E1000_FWSM) & 57076ab6bfe3SJack F Vogel E1000_ICH_FWSM_FW_VALID)) { 57086ab6bfe3SJack F Vogel /* Enable proxy to reset only on power good. */ 57096ab6bfe3SJack F Vogel hw->phy.ops.read_reg_locked(hw, I217_PROXY_CTRL, 57106ab6bfe3SJack F Vogel &phy_reg); 57116ab6bfe3SJack F Vogel phy_reg |= I217_PROXY_CTRL_AUTO_DISABLE; 57126ab6bfe3SJack F Vogel hw->phy.ops.write_reg_locked(hw, I217_PROXY_CTRL, 57136ab6bfe3SJack F Vogel phy_reg); 57146ab6bfe3SJack F Vogel 57156ab6bfe3SJack F Vogel /* Set bit enable LPI (EEE) to reset only on 57166ab6bfe3SJack F Vogel * power good. 57176ab6bfe3SJack F Vogel */ 57186ab6bfe3SJack F Vogel hw->phy.ops.read_reg_locked(hw, I217_SxCTRL, &phy_reg); 57196ab6bfe3SJack F Vogel phy_reg |= I217_SxCTRL_ENABLE_LPI_RESET; 57206ab6bfe3SJack F Vogel hw->phy.ops.write_reg_locked(hw, I217_SxCTRL, phy_reg); 57216ab6bfe3SJack F Vogel 57226ab6bfe3SJack F Vogel /* Disable the SMB release on LCD reset. */ 57236ab6bfe3SJack F Vogel hw->phy.ops.read_reg_locked(hw, I217_MEMPWR, &phy_reg); 57246ab6bfe3SJack F Vogel phy_reg &= ~I217_MEMPWR_DISABLE_SMB_RELEASE; 57256ab6bfe3SJack F Vogel hw->phy.ops.write_reg_locked(hw, I217_MEMPWR, phy_reg); 57266ab6bfe3SJack F Vogel } 57276ab6bfe3SJack F Vogel 57286ab6bfe3SJack F Vogel /* Enable MTA to reset for Intel Rapid Start Technology 57296ab6bfe3SJack F Vogel * Support 57306ab6bfe3SJack F Vogel */ 57316ab6bfe3SJack F Vogel hw->phy.ops.read_reg_locked(hw, I217_CGFREG, &phy_reg); 57326ab6bfe3SJack F Vogel phy_reg |= I217_CGFREG_ENABLE_MTA_RESET; 57336ab6bfe3SJack F Vogel hw->phy.ops.write_reg_locked(hw, I217_CGFREG, phy_reg); 57346ab6bfe3SJack F Vogel 57356ab6bfe3SJack F Vogel release: 57366ab6bfe3SJack F Vogel hw->phy.ops.release(hw); 57376ab6bfe3SJack F Vogel } 57386ab6bfe3SJack F Vogel out: 57398cfa0ad2SJack F Vogel E1000_WRITE_REG(hw, E1000_PHY_CTRL, phy_ctrl); 57406ab6bfe3SJack F Vogel 57414dab5c37SJack F Vogel if (hw->mac.type == e1000_ich8lan) 57424dab5c37SJack F Vogel e1000_gig_downshift_workaround_ich8lan(hw); 57439d81738fSJack F Vogel 57447d9119bdSJack F Vogel if (hw->mac.type >= e1000_pchlan) { 57457d9119bdSJack F Vogel e1000_oem_bits_config_ich8lan(hw, FALSE); 57466ab6bfe3SJack F Vogel 57476ab6bfe3SJack F Vogel /* Reset PHY to activate OEM bits on 82577/8 */ 57486ab6bfe3SJack F Vogel if (hw->mac.type == e1000_pchlan) 57496ab6bfe3SJack F Vogel e1000_phy_hw_reset_generic(hw); 57506ab6bfe3SJack F Vogel 57517d9119bdSJack F Vogel ret_val = hw->phy.ops.acquire(hw); 57527d9119bdSJack F Vogel if (ret_val) 57537d9119bdSJack F Vogel return; 57547d9119bdSJack F Vogel e1000_write_smbus_addr(hw); 57557d9119bdSJack F Vogel hw->phy.ops.release(hw); 57568cfa0ad2SJack F Vogel } 57578cfa0ad2SJack F Vogel 57588cfa0ad2SJack F Vogel return; 57598cfa0ad2SJack F Vogel } 57608cfa0ad2SJack F Vogel 57618cfa0ad2SJack F Vogel /** 57624dab5c37SJack F Vogel * e1000_resume_workarounds_pchlan - workarounds needed during Sx->S0 57634dab5c37SJack F Vogel * @hw: pointer to the HW structure 57644dab5c37SJack F Vogel * 57654dab5c37SJack F Vogel * During Sx to S0 transitions on non-managed devices or managed devices 57664dab5c37SJack F Vogel * on which PHY resets are not blocked, if the PHY registers cannot be 57674dab5c37SJack F Vogel * accessed properly by the s/w toggle the LANPHYPC value to power cycle 57684dab5c37SJack F Vogel * the PHY. 57696ab6bfe3SJack F Vogel * On i217, setup Intel Rapid Start Technology. 57704dab5c37SJack F Vogel **/ 5771c80429ceSEric Joyner u32 e1000_resume_workarounds_pchlan(struct e1000_hw *hw) 57724dab5c37SJack F Vogel { 57734dab5c37SJack F Vogel s32 ret_val; 57744dab5c37SJack F Vogel 57754dab5c37SJack F Vogel DEBUGFUNC("e1000_resume_workarounds_pchlan"); 57766ab6bfe3SJack F Vogel if (hw->mac.type < e1000_pch2lan) 5777c80429ceSEric Joyner return E1000_SUCCESS; 57784dab5c37SJack F Vogel 57796ab6bfe3SJack F Vogel ret_val = e1000_init_phy_workarounds_pchlan(hw); 57804dab5c37SJack F Vogel if (ret_val) { 57816ab6bfe3SJack F Vogel DEBUGOUT1("Failed to init PHY flow ret_val=%d\n", ret_val); 5782c80429ceSEric Joyner return ret_val; 57834dab5c37SJack F Vogel } 57844dab5c37SJack F Vogel 57856ab6bfe3SJack F Vogel /* For i217 Intel Rapid Start Technology support when the system 57866ab6bfe3SJack F Vogel * is transitioning from Sx and no manageability engine is present 57876ab6bfe3SJack F Vogel * configure SMBus to restore on reset, disable proxy, and enable 57886ab6bfe3SJack F Vogel * the reset on MTA (Multicast table array). 57896ab6bfe3SJack F Vogel */ 57906ab6bfe3SJack F Vogel if (hw->phy.type == e1000_phy_i217) { 57916ab6bfe3SJack F Vogel u16 phy_reg; 57924dab5c37SJack F Vogel 57936ab6bfe3SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 57946ab6bfe3SJack F Vogel if (ret_val) { 57956ab6bfe3SJack F Vogel DEBUGOUT("Failed to setup iRST\n"); 5796c80429ceSEric Joyner return ret_val; 57976ab6bfe3SJack F Vogel } 57984dab5c37SJack F Vogel 57997609433eSJack F Vogel /* Clear Auto Enable LPI after link up */ 58007609433eSJack F Vogel hw->phy.ops.read_reg_locked(hw, I217_LPI_GPIO_CTRL, &phy_reg); 58017609433eSJack F Vogel phy_reg &= ~I217_LPI_GPIO_CTRL_AUTO_EN_LPI; 58027609433eSJack F Vogel hw->phy.ops.write_reg_locked(hw, I217_LPI_GPIO_CTRL, phy_reg); 58037609433eSJack F Vogel 58046ab6bfe3SJack F Vogel if (!(E1000_READ_REG(hw, E1000_FWSM) & 58056ab6bfe3SJack F Vogel E1000_ICH_FWSM_FW_VALID)) { 58066ab6bfe3SJack F Vogel /* Restore clear on SMB if no manageability engine 58076ab6bfe3SJack F Vogel * is present 58086ab6bfe3SJack F Vogel */ 58096ab6bfe3SJack F Vogel ret_val = hw->phy.ops.read_reg_locked(hw, I217_MEMPWR, 58106ab6bfe3SJack F Vogel &phy_reg); 58116ab6bfe3SJack F Vogel if (ret_val) 58126ab6bfe3SJack F Vogel goto release; 58136ab6bfe3SJack F Vogel phy_reg |= I217_MEMPWR_DISABLE_SMB_RELEASE; 58146ab6bfe3SJack F Vogel hw->phy.ops.write_reg_locked(hw, I217_MEMPWR, phy_reg); 58156ab6bfe3SJack F Vogel 58166ab6bfe3SJack F Vogel /* Disable Proxy */ 58176ab6bfe3SJack F Vogel hw->phy.ops.write_reg_locked(hw, I217_PROXY_CTRL, 0); 58186ab6bfe3SJack F Vogel } 58196ab6bfe3SJack F Vogel /* Enable reset on MTA */ 58206ab6bfe3SJack F Vogel ret_val = hw->phy.ops.read_reg_locked(hw, I217_CGFREG, 58216ab6bfe3SJack F Vogel &phy_reg); 58226ab6bfe3SJack F Vogel if (ret_val) 58236ab6bfe3SJack F Vogel goto release; 58246ab6bfe3SJack F Vogel phy_reg &= ~I217_CGFREG_ENABLE_MTA_RESET; 58256ab6bfe3SJack F Vogel hw->phy.ops.write_reg_locked(hw, I217_CGFREG, phy_reg); 58264dab5c37SJack F Vogel release: 58276ab6bfe3SJack F Vogel if (ret_val) 58286ab6bfe3SJack F Vogel DEBUGOUT1("Error %d in resume workarounds\n", ret_val); 58294dab5c37SJack F Vogel hw->phy.ops.release(hw); 5830c80429ceSEric Joyner return ret_val; 58316ab6bfe3SJack F Vogel } 5832c80429ceSEric Joyner return E1000_SUCCESS; 58334dab5c37SJack F Vogel } 58344dab5c37SJack F Vogel 58354dab5c37SJack F Vogel /** 58368cfa0ad2SJack F Vogel * e1000_cleanup_led_ich8lan - Restore the default LED operation 58378cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 58388cfa0ad2SJack F Vogel * 58398cfa0ad2SJack F Vogel * Return the LED back to the default configuration. 58408cfa0ad2SJack F Vogel **/ 58418cfa0ad2SJack F Vogel static s32 e1000_cleanup_led_ich8lan(struct e1000_hw *hw) 58428cfa0ad2SJack F Vogel { 58438cfa0ad2SJack F Vogel DEBUGFUNC("e1000_cleanup_led_ich8lan"); 58448cfa0ad2SJack F Vogel 58458cfa0ad2SJack F Vogel if (hw->phy.type == e1000_phy_ife) 5846a69ed8dfSJack F Vogel return hw->phy.ops.write_reg(hw, IFE_PHY_SPECIAL_CONTROL_LED, 58478cfa0ad2SJack F Vogel 0); 58488cfa0ad2SJack F Vogel 5849a69ed8dfSJack F Vogel E1000_WRITE_REG(hw, E1000_LEDCTL, hw->mac.ledctl_default); 5850a69ed8dfSJack F Vogel return E1000_SUCCESS; 58518cfa0ad2SJack F Vogel } 58528cfa0ad2SJack F Vogel 58538cfa0ad2SJack F Vogel /** 58548cfa0ad2SJack F Vogel * e1000_led_on_ich8lan - Turn LEDs on 58558cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 58568cfa0ad2SJack F Vogel * 58578cfa0ad2SJack F Vogel * Turn on the LEDs. 58588cfa0ad2SJack F Vogel **/ 58598cfa0ad2SJack F Vogel static s32 e1000_led_on_ich8lan(struct e1000_hw *hw) 58608cfa0ad2SJack F Vogel { 58618cfa0ad2SJack F Vogel DEBUGFUNC("e1000_led_on_ich8lan"); 58628cfa0ad2SJack F Vogel 58638cfa0ad2SJack F Vogel if (hw->phy.type == e1000_phy_ife) 5864a69ed8dfSJack F Vogel return hw->phy.ops.write_reg(hw, IFE_PHY_SPECIAL_CONTROL_LED, 58658cfa0ad2SJack F Vogel (IFE_PSCL_PROBE_MODE | IFE_PSCL_PROBE_LEDS_ON)); 58668cfa0ad2SJack F Vogel 5867a69ed8dfSJack F Vogel E1000_WRITE_REG(hw, E1000_LEDCTL, hw->mac.ledctl_mode2); 5868a69ed8dfSJack F Vogel return E1000_SUCCESS; 58698cfa0ad2SJack F Vogel } 58708cfa0ad2SJack F Vogel 58718cfa0ad2SJack F Vogel /** 58728cfa0ad2SJack F Vogel * e1000_led_off_ich8lan - Turn LEDs off 58738cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 58748cfa0ad2SJack F Vogel * 58758cfa0ad2SJack F Vogel * Turn off the LEDs. 58768cfa0ad2SJack F Vogel **/ 58778cfa0ad2SJack F Vogel static s32 e1000_led_off_ich8lan(struct e1000_hw *hw) 58788cfa0ad2SJack F Vogel { 58798cfa0ad2SJack F Vogel DEBUGFUNC("e1000_led_off_ich8lan"); 58808cfa0ad2SJack F Vogel 58818cfa0ad2SJack F Vogel if (hw->phy.type == e1000_phy_ife) 5882a69ed8dfSJack F Vogel return hw->phy.ops.write_reg(hw, IFE_PHY_SPECIAL_CONTROL_LED, 58838cfa0ad2SJack F Vogel (IFE_PSCL_PROBE_MODE | IFE_PSCL_PROBE_LEDS_OFF)); 58848cfa0ad2SJack F Vogel 5885a69ed8dfSJack F Vogel E1000_WRITE_REG(hw, E1000_LEDCTL, hw->mac.ledctl_mode1); 5886a69ed8dfSJack F Vogel return E1000_SUCCESS; 58878cfa0ad2SJack F Vogel } 58888cfa0ad2SJack F Vogel 58898cfa0ad2SJack F Vogel /** 58909d81738fSJack F Vogel * e1000_setup_led_pchlan - Configures SW controllable LED 58919d81738fSJack F Vogel * @hw: pointer to the HW structure 58929d81738fSJack F Vogel * 58939d81738fSJack F Vogel * This prepares the SW controllable LED for use. 58949d81738fSJack F Vogel **/ 58959d81738fSJack F Vogel static s32 e1000_setup_led_pchlan(struct e1000_hw *hw) 58969d81738fSJack F Vogel { 58979d81738fSJack F Vogel DEBUGFUNC("e1000_setup_led_pchlan"); 58989d81738fSJack F Vogel 58999d81738fSJack F Vogel return hw->phy.ops.write_reg(hw, HV_LED_CONFIG, 59009d81738fSJack F Vogel (u16)hw->mac.ledctl_mode1); 59019d81738fSJack F Vogel } 59029d81738fSJack F Vogel 59039d81738fSJack F Vogel /** 59049d81738fSJack F Vogel * e1000_cleanup_led_pchlan - Restore the default LED operation 59059d81738fSJack F Vogel * @hw: pointer to the HW structure 59069d81738fSJack F Vogel * 59079d81738fSJack F Vogel * Return the LED back to the default configuration. 59089d81738fSJack F Vogel **/ 59099d81738fSJack F Vogel static s32 e1000_cleanup_led_pchlan(struct e1000_hw *hw) 59109d81738fSJack F Vogel { 59119d81738fSJack F Vogel DEBUGFUNC("e1000_cleanup_led_pchlan"); 59129d81738fSJack F Vogel 59139d81738fSJack F Vogel return hw->phy.ops.write_reg(hw, HV_LED_CONFIG, 59149d81738fSJack F Vogel (u16)hw->mac.ledctl_default); 59159d81738fSJack F Vogel } 59169d81738fSJack F Vogel 59179d81738fSJack F Vogel /** 59189d81738fSJack F Vogel * e1000_led_on_pchlan - Turn LEDs on 59199d81738fSJack F Vogel * @hw: pointer to the HW structure 59209d81738fSJack F Vogel * 59219d81738fSJack F Vogel * Turn on the LEDs. 59229d81738fSJack F Vogel **/ 59239d81738fSJack F Vogel static s32 e1000_led_on_pchlan(struct e1000_hw *hw) 59249d81738fSJack F Vogel { 59259d81738fSJack F Vogel u16 data = (u16)hw->mac.ledctl_mode2; 59269d81738fSJack F Vogel u32 i, led; 59279d81738fSJack F Vogel 59289d81738fSJack F Vogel DEBUGFUNC("e1000_led_on_pchlan"); 59299d81738fSJack F Vogel 59306ab6bfe3SJack F Vogel /* If no link, then turn LED on by setting the invert bit 59319d81738fSJack F Vogel * for each LED that's mode is "link_up" in ledctl_mode2. 59329d81738fSJack F Vogel */ 59339d81738fSJack F Vogel if (!(E1000_READ_REG(hw, E1000_STATUS) & E1000_STATUS_LU)) { 59349d81738fSJack F Vogel for (i = 0; i < 3; i++) { 59359d81738fSJack F Vogel led = (data >> (i * 5)) & E1000_PHY_LED0_MASK; 59369d81738fSJack F Vogel if ((led & E1000_PHY_LED0_MODE_MASK) != 59379d81738fSJack F Vogel E1000_LEDCTL_MODE_LINK_UP) 59389d81738fSJack F Vogel continue; 59399d81738fSJack F Vogel if (led & E1000_PHY_LED0_IVRT) 59409d81738fSJack F Vogel data &= ~(E1000_PHY_LED0_IVRT << (i * 5)); 59419d81738fSJack F Vogel else 59429d81738fSJack F Vogel data |= (E1000_PHY_LED0_IVRT << (i * 5)); 59439d81738fSJack F Vogel } 59449d81738fSJack F Vogel } 59459d81738fSJack F Vogel 59469d81738fSJack F Vogel return hw->phy.ops.write_reg(hw, HV_LED_CONFIG, data); 59479d81738fSJack F Vogel } 59489d81738fSJack F Vogel 59499d81738fSJack F Vogel /** 59509d81738fSJack F Vogel * e1000_led_off_pchlan - Turn LEDs off 59519d81738fSJack F Vogel * @hw: pointer to the HW structure 59529d81738fSJack F Vogel * 59539d81738fSJack F Vogel * Turn off the LEDs. 59549d81738fSJack F Vogel **/ 59559d81738fSJack F Vogel static s32 e1000_led_off_pchlan(struct e1000_hw *hw) 59569d81738fSJack F Vogel { 59579d81738fSJack F Vogel u16 data = (u16)hw->mac.ledctl_mode1; 59589d81738fSJack F Vogel u32 i, led; 59599d81738fSJack F Vogel 59609d81738fSJack F Vogel DEBUGFUNC("e1000_led_off_pchlan"); 59619d81738fSJack F Vogel 59626ab6bfe3SJack F Vogel /* If no link, then turn LED off by clearing the invert bit 59639d81738fSJack F Vogel * for each LED that's mode is "link_up" in ledctl_mode1. 59649d81738fSJack F Vogel */ 59659d81738fSJack F Vogel if (!(E1000_READ_REG(hw, E1000_STATUS) & E1000_STATUS_LU)) { 59669d81738fSJack F Vogel for (i = 0; i < 3; i++) { 59679d81738fSJack F Vogel led = (data >> (i * 5)) & E1000_PHY_LED0_MASK; 59689d81738fSJack F Vogel if ((led & E1000_PHY_LED0_MODE_MASK) != 59699d81738fSJack F Vogel E1000_LEDCTL_MODE_LINK_UP) 59709d81738fSJack F Vogel continue; 59719d81738fSJack F Vogel if (led & E1000_PHY_LED0_IVRT) 59729d81738fSJack F Vogel data &= ~(E1000_PHY_LED0_IVRT << (i * 5)); 59739d81738fSJack F Vogel else 59749d81738fSJack F Vogel data |= (E1000_PHY_LED0_IVRT << (i * 5)); 59759d81738fSJack F Vogel } 59769d81738fSJack F Vogel } 59779d81738fSJack F Vogel 59789d81738fSJack F Vogel return hw->phy.ops.write_reg(hw, HV_LED_CONFIG, data); 59799d81738fSJack F Vogel } 59809d81738fSJack F Vogel 59819d81738fSJack F Vogel /** 59827d9119bdSJack F Vogel * e1000_get_cfg_done_ich8lan - Read config done bit after Full or PHY reset 59838cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 59848cfa0ad2SJack F Vogel * 59857d9119bdSJack F Vogel * Read appropriate register for the config done bit for completion status 59867d9119bdSJack F Vogel * and configure the PHY through s/w for EEPROM-less parts. 59877d9119bdSJack F Vogel * 59887d9119bdSJack F Vogel * NOTE: some silicon which is EEPROM-less will fail trying to read the 59897d9119bdSJack F Vogel * config done bit, so only an error is logged and continues. If we were 59907d9119bdSJack F Vogel * to return with error, EEPROM-less silicon would not be able to be reset 59917d9119bdSJack F Vogel * or change link. 59928cfa0ad2SJack F Vogel **/ 59938cfa0ad2SJack F Vogel static s32 e1000_get_cfg_done_ich8lan(struct e1000_hw *hw) 59948cfa0ad2SJack F Vogel { 59958cfa0ad2SJack F Vogel s32 ret_val = E1000_SUCCESS; 59968cfa0ad2SJack F Vogel u32 bank = 0; 59977d9119bdSJack F Vogel u32 status; 59988cfa0ad2SJack F Vogel 59997d9119bdSJack F Vogel DEBUGFUNC("e1000_get_cfg_done_ich8lan"); 60009d81738fSJack F Vogel 60018cfa0ad2SJack F Vogel e1000_get_cfg_done_generic(hw); 60028cfa0ad2SJack F Vogel 60037d9119bdSJack F Vogel /* Wait for indication from h/w that it has completed basic config */ 60047d9119bdSJack F Vogel if (hw->mac.type >= e1000_ich10lan) { 60057d9119bdSJack F Vogel e1000_lan_init_done_ich8lan(hw); 60067d9119bdSJack F Vogel } else { 60077d9119bdSJack F Vogel ret_val = e1000_get_auto_rd_done_generic(hw); 60087d9119bdSJack F Vogel if (ret_val) { 60096ab6bfe3SJack F Vogel /* When auto config read does not complete, do not 60107d9119bdSJack F Vogel * return with an error. This can happen in situations 60117d9119bdSJack F Vogel * where there is no eeprom and prevents getting link. 60127d9119bdSJack F Vogel */ 60137d9119bdSJack F Vogel DEBUGOUT("Auto Read Done did not complete\n"); 60147d9119bdSJack F Vogel ret_val = E1000_SUCCESS; 60157d9119bdSJack F Vogel } 60167d9119bdSJack F Vogel } 60177d9119bdSJack F Vogel 60187d9119bdSJack F Vogel /* Clear PHY Reset Asserted bit */ 60197d9119bdSJack F Vogel status = E1000_READ_REG(hw, E1000_STATUS); 60207d9119bdSJack F Vogel if (status & E1000_STATUS_PHYRA) 60217d9119bdSJack F Vogel E1000_WRITE_REG(hw, E1000_STATUS, status & ~E1000_STATUS_PHYRA); 60227d9119bdSJack F Vogel else 60237d9119bdSJack F Vogel DEBUGOUT("PHY Reset Asserted not set - needs delay\n"); 60247d9119bdSJack F Vogel 60258cfa0ad2SJack F Vogel /* If EEPROM is not marked present, init the IGP 3 PHY manually */ 60264edd8523SJack F Vogel if (hw->mac.type <= e1000_ich9lan) { 60276ab6bfe3SJack F Vogel if (!(E1000_READ_REG(hw, E1000_EECD) & E1000_EECD_PRES) && 60288cfa0ad2SJack F Vogel (hw->phy.type == e1000_phy_igp_3)) { 60298cfa0ad2SJack F Vogel e1000_phy_init_script_igp3(hw); 60308cfa0ad2SJack F Vogel } 60318cfa0ad2SJack F Vogel } else { 60328cfa0ad2SJack F Vogel if (e1000_valid_nvm_bank_detect_ich8lan(hw, &bank)) { 6033daf9197cSJack F Vogel /* Maybe we should do a basic PHY config */ 60348cfa0ad2SJack F Vogel DEBUGOUT("EEPROM not present\n"); 60358cfa0ad2SJack F Vogel ret_val = -E1000_ERR_CONFIG; 60368cfa0ad2SJack F Vogel } 60378cfa0ad2SJack F Vogel } 60388cfa0ad2SJack F Vogel 60398cfa0ad2SJack F Vogel return ret_val; 60408cfa0ad2SJack F Vogel } 60418cfa0ad2SJack F Vogel 60428cfa0ad2SJack F Vogel /** 60438cfa0ad2SJack F Vogel * e1000_power_down_phy_copper_ich8lan - Remove link during PHY power down 60448cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 60458cfa0ad2SJack F Vogel * 60468cfa0ad2SJack F Vogel * In the case of a PHY power down to save power, or to turn off link during a 60478cfa0ad2SJack F Vogel * driver unload, or wake on lan is not enabled, remove the link. 60488cfa0ad2SJack F Vogel **/ 60498cfa0ad2SJack F Vogel static void e1000_power_down_phy_copper_ich8lan(struct e1000_hw *hw) 60508cfa0ad2SJack F Vogel { 60518cfa0ad2SJack F Vogel /* If the management interface is not enabled, then power down */ 6052daf9197cSJack F Vogel if (!(hw->mac.ops.check_mng_mode(hw) || 6053daf9197cSJack F Vogel hw->phy.ops.check_reset_block(hw))) 60548cfa0ad2SJack F Vogel e1000_power_down_phy_copper(hw); 60558cfa0ad2SJack F Vogel 60568cfa0ad2SJack F Vogel return; 60578cfa0ad2SJack F Vogel } 60588cfa0ad2SJack F Vogel 60598cfa0ad2SJack F Vogel /** 60608cfa0ad2SJack F Vogel * e1000_clear_hw_cntrs_ich8lan - Clear statistical counters 60618cfa0ad2SJack F Vogel * @hw: pointer to the HW structure 60628cfa0ad2SJack F Vogel * 60638cfa0ad2SJack F Vogel * Clears hardware counters specific to the silicon family and calls 60648cfa0ad2SJack F Vogel * clear_hw_cntrs_generic to clear all general purpose counters. 60658cfa0ad2SJack F Vogel **/ 60668cfa0ad2SJack F Vogel static void e1000_clear_hw_cntrs_ich8lan(struct e1000_hw *hw) 60678cfa0ad2SJack F Vogel { 60689d81738fSJack F Vogel u16 phy_data; 60694dab5c37SJack F Vogel s32 ret_val; 60709d81738fSJack F Vogel 60718cfa0ad2SJack F Vogel DEBUGFUNC("e1000_clear_hw_cntrs_ich8lan"); 60728cfa0ad2SJack F Vogel 60738cfa0ad2SJack F Vogel e1000_clear_hw_cntrs_base_generic(hw); 60748cfa0ad2SJack F Vogel 6075daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_ALGNERRC); 6076daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_RXERRC); 6077daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_TNCRS); 6078daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_CEXTERR); 6079daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_TSCTC); 6080daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_TSCTFC); 60818cfa0ad2SJack F Vogel 6082daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_MGTPRC); 6083daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_MGTPDC); 6084daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_MGTPTC); 60858cfa0ad2SJack F Vogel 6086daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_IAC); 6087daf9197cSJack F Vogel E1000_READ_REG(hw, E1000_ICRXOC); 60889d81738fSJack F Vogel 60899d81738fSJack F Vogel /* Clear PHY statistics registers */ 60909d81738fSJack F Vogel if ((hw->phy.type == e1000_phy_82578) || 60917d9119bdSJack F Vogel (hw->phy.type == e1000_phy_82579) || 60926ab6bfe3SJack F Vogel (hw->phy.type == e1000_phy_i217) || 60939d81738fSJack F Vogel (hw->phy.type == e1000_phy_82577)) { 60944dab5c37SJack F Vogel ret_val = hw->phy.ops.acquire(hw); 60954dab5c37SJack F Vogel if (ret_val) 60964dab5c37SJack F Vogel return; 60974dab5c37SJack F Vogel ret_val = hw->phy.ops.set_page(hw, 60984dab5c37SJack F Vogel HV_STATS_PAGE << IGP_PAGE_SHIFT); 60994dab5c37SJack F Vogel if (ret_val) 61004dab5c37SJack F Vogel goto release; 61014dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_SCC_UPPER, &phy_data); 61024dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_SCC_LOWER, &phy_data); 61034dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_ECOL_UPPER, &phy_data); 61044dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_ECOL_LOWER, &phy_data); 61054dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_MCC_UPPER, &phy_data); 61064dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_MCC_LOWER, &phy_data); 61074dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_LATECOL_UPPER, &phy_data); 61084dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_LATECOL_LOWER, &phy_data); 61094dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_COLC_UPPER, &phy_data); 61104dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_COLC_LOWER, &phy_data); 61114dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_DC_UPPER, &phy_data); 61124dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_DC_LOWER, &phy_data); 61134dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_TNCRS_UPPER, &phy_data); 61144dab5c37SJack F Vogel hw->phy.ops.read_reg_page(hw, HV_TNCRS_LOWER, &phy_data); 61154dab5c37SJack F Vogel release: 61164dab5c37SJack F Vogel hw->phy.ops.release(hw); 61179d81738fSJack F Vogel } 61188cfa0ad2SJack F Vogel } 61198cfa0ad2SJack F Vogel 6120