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As a result of help from Frank Wunderlich to investigate and test, we now know how to program this PCS for in-band 802.3z negotiation. Add support for this by moving the contents of the two functions into the common mtk_pcs_config() function and adding the register settings for 802.3z negotiation. Signed-off-by: Russell King (Oracle) <rmk+kernel@armlinux.org.uk> Signed-off-by: Jakub Kicinski <kuba@kernel.org>
186 lines
4.7 KiB
C
186 lines
4.7 KiB
C
// SPDX-License-Identifier: GPL-2.0
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// Copyright (c) 2018-2019 MediaTek Inc.
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/* A library for MediaTek SGMII circuit
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*
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* Author: Sean Wang <sean.wang@mediatek.com>
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*
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*/
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#include <linux/mfd/syscon.h>
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#include <linux/of.h>
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#include <linux/phylink.h>
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#include <linux/regmap.h>
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#include "mtk_eth_soc.h"
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static struct mtk_pcs *pcs_to_mtk_pcs(struct phylink_pcs *pcs)
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{
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return container_of(pcs, struct mtk_pcs, pcs);
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}
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static void mtk_pcs_get_state(struct phylink_pcs *pcs,
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struct phylink_link_state *state)
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{
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struct mtk_pcs *mpcs = pcs_to_mtk_pcs(pcs);
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unsigned int bm, adv;
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/* Read the BMSR and LPA */
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regmap_read(mpcs->regmap, SGMSYS_PCS_CONTROL_1, &bm);
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regmap_read(mpcs->regmap, SGMSYS_PCS_ADVERTISE, &adv);
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phylink_mii_c22_pcs_decode_state(state, FIELD_GET(SGMII_BMSR, bm),
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FIELD_GET(SGMII_LPA, adv));
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}
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static int mtk_pcs_config(struct phylink_pcs *pcs, unsigned int mode,
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phy_interface_t interface,
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const unsigned long *advertising,
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bool permit_pause_to_mac)
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{
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struct mtk_pcs *mpcs = pcs_to_mtk_pcs(pcs);
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unsigned int rgc3, sgm_mode, bmcr;
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int advertise, link_timer;
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bool changed, use_an;
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if (interface == PHY_INTERFACE_MODE_2500BASEX)
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rgc3 = RG_PHY_SPEED_3_125G;
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else
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rgc3 = 0;
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advertise = phylink_mii_c22_pcs_encode_advertisement(interface,
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advertising);
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if (advertise < 0)
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return advertise;
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link_timer = phylink_get_link_timer_ns(interface);
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if (link_timer < 0)
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return link_timer;
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/* Clearing IF_MODE_BIT0 switches the PCS to BASE-X mode, and
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* we assume that fixes it's speed at bitrate = line rate (in
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* other words, 1000Mbps or 2500Mbps).
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*/
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if (interface == PHY_INTERFACE_MODE_SGMII) {
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sgm_mode = SGMII_IF_MODE_SGMII;
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if (phylink_autoneg_inband(mode)) {
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sgm_mode |= SGMII_REMOTE_FAULT_DIS |
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SGMII_SPEED_DUPLEX_AN;
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use_an = true;
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} else {
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use_an = false;
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}
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} else if (phylink_autoneg_inband(mode)) {
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/* 1000base-X or 2500base-X autoneg */
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sgm_mode = SGMII_REMOTE_FAULT_DIS;
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use_an = linkmode_test_bit(ETHTOOL_LINK_MODE_Autoneg_BIT,
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advertising);
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} else {
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/* 1000base-X or 2500base-X without autoneg */
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sgm_mode = 0;
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use_an = false;
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}
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if (use_an) {
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/* FIXME: Do we need to set AN_RESTART here? */
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bmcr = SGMII_AN_RESTART | SGMII_AN_ENABLE;
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} else {
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bmcr = 0;
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}
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/* Configure the underlying interface speed */
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regmap_update_bits(mpcs->regmap, mpcs->ana_rgc3,
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RG_PHY_SPEED_3_125G, rgc3);
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/* Update the advertisement, noting whether it has changed */
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regmap_update_bits_check(mpcs->regmap, SGMSYS_PCS_ADVERTISE,
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SGMII_ADVERTISE, advertise, &changed);
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/* Setup the link timer and QPHY power up inside SGMIISYS */
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regmap_write(mpcs->regmap, SGMSYS_PCS_LINK_TIMER, link_timer / 2 / 8);
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/* Update the sgmsys mode register */
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regmap_update_bits(mpcs->regmap, SGMSYS_SGMII_MODE,
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SGMII_REMOTE_FAULT_DIS | SGMII_SPEED_DUPLEX_AN |
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SGMII_IF_MODE_SGMII, sgm_mode);
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/* Update the BMCR */
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regmap_update_bits(mpcs->regmap, SGMSYS_PCS_CONTROL_1,
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SGMII_AN_RESTART | SGMII_AN_ENABLE, bmcr);
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/* Release PHYA power down state */
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regmap_update_bits(mpcs->regmap, SGMSYS_QPHY_PWR_STATE_CTRL,
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SGMII_PHYA_PWD, 0);
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return changed;
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}
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static void mtk_pcs_restart_an(struct phylink_pcs *pcs)
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{
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struct mtk_pcs *mpcs = pcs_to_mtk_pcs(pcs);
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regmap_update_bits(mpcs->regmap, SGMSYS_PCS_CONTROL_1,
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SGMII_AN_RESTART, SGMII_AN_RESTART);
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}
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static void mtk_pcs_link_up(struct phylink_pcs *pcs, unsigned int mode,
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phy_interface_t interface, int speed, int duplex)
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{
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struct mtk_pcs *mpcs = pcs_to_mtk_pcs(pcs);
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unsigned int sgm_mode;
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if (!phylink_autoneg_inband(mode)) {
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/* Force the speed and duplex setting */
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if (speed == SPEED_10)
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sgm_mode = SGMII_SPEED_10;
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else if (speed == SPEED_100)
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sgm_mode = SGMII_SPEED_100;
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else
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sgm_mode = SGMII_SPEED_1000;
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if (duplex == DUPLEX_FULL)
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sgm_mode |= SGMII_DUPLEX_FULL;
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regmap_update_bits(mpcs->regmap, SGMSYS_SGMII_MODE,
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SGMII_DUPLEX_FULL | SGMII_SPEED_MASK,
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sgm_mode);
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}
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}
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static const struct phylink_pcs_ops mtk_pcs_ops = {
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.pcs_get_state = mtk_pcs_get_state,
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.pcs_config = mtk_pcs_config,
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.pcs_an_restart = mtk_pcs_restart_an,
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.pcs_link_up = mtk_pcs_link_up,
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};
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int mtk_sgmii_init(struct mtk_sgmii *ss, struct device_node *r, u32 ana_rgc3)
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{
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struct device_node *np;
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int i;
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for (i = 0; i < MTK_MAX_DEVS; i++) {
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np = of_parse_phandle(r, "mediatek,sgmiisys", i);
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if (!np)
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break;
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ss->pcs[i].ana_rgc3 = ana_rgc3;
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ss->pcs[i].regmap = syscon_node_to_regmap(np);
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of_node_put(np);
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if (IS_ERR(ss->pcs[i].regmap))
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return PTR_ERR(ss->pcs[i].regmap);
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ss->pcs[i].pcs.ops = &mtk_pcs_ops;
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}
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return 0;
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}
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struct phylink_pcs *mtk_sgmii_select_pcs(struct mtk_sgmii *ss, int id)
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{
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if (!ss->pcs[id].regmap)
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return NULL;
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return &ss->pcs[id].pcs;
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}
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