This patch is a raw application of find src/ -type f | xargs sed -i -e 's/IS_ENABLED\s*(CONFIG_/CONFIG(/g' Change-Id: I6262d6d5c23cabe23c242b4f38d446b74fe16b88 Signed-off-by: Julius Werner <jwerner@chromium.org> Reviewed-on: https://review.coreboot.org/c/coreboot/+/31774 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Patrick Georgi <pgeorgi@google.com>
415 lines
12 KiB
C
415 lines
12 KiB
C
/*
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* This file is part of the coreboot project.
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*
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* Copyright 2018 Facebook, Inc.
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* Copyright 2003-2017 Cavium Inc. <support@cavium.com>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; version 2 of the License.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* Derived from Cavium's BSD-3 Clause OCTEONTX-SDK-6.2.0.
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*/
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#include <bootmode.h>
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#include <console/console.h>
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#include <device/device.h>
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#include <soc/addressmap.h>
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#include <soc/clock.h>
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#include <soc/sdram.h>
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#include <soc/timer.h>
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#include <soc/uart.h>
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#include <stddef.h>
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#include <stdlib.h>
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#include <string.h>
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#include <symbols.h>
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#include <libbdk-boot/bdk-boot.h>
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#include <soc/ecam0.h>
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#include <console/uart.h>
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#include <libbdk-hal/bdk-pcie.h>
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#include <device/pci.h>
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#include <libbdk-hal/bdk-qlm.h>
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#include <libbdk-hal/bdk-config.h>
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#include <libbdk-arch/bdk-csrs-bgx.h>
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#include <bootmem.h>
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#include <soc/bl31_plat_params.h>
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#include <cbfs.h>
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#include <cbmem.h>
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#include <fit.h>
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static const char *QLM_BGX_MODE_MAP[BDK_QLM_MODE_LAST] = {
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[BDK_QLM_MODE_SGMII_4X1] = "sgmii",
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[BDK_QLM_MODE_SGMII_2X1] = "sgmii",
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[BDK_QLM_MODE_SGMII_1X1] = "sgmii",
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[BDK_QLM_MODE_XAUI_1X4] = "xaui",
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[BDK_QLM_MODE_RXAUI_2X2] = "rxaui",
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[BDK_QLM_MODE_RXAUI_1X2] = "rxaui",
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[BDK_QLM_MODE_XFI_4X1] = "xfi",
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[BDK_QLM_MODE_XFI_2X1] = "xfi",
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[BDK_QLM_MODE_XFI_1X1] = "xfi",
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[BDK_QLM_MODE_XLAUI_1X4] = "xlaui",
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[BDK_QLM_MODE_10G_KR_4X1] = "xfi-10g-kr",
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[BDK_QLM_MODE_10G_KR_2X1] = "xfi-10g-kr",
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[BDK_QLM_MODE_10G_KR_1X1] = "xfi-10g-kr",
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[BDK_QLM_MODE_40G_KR4_1X4] = "xlaui-40g-kr",
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[BDK_QLM_MODE_QSGMII_4X1] = "qsgmii",
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};
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static void dt_platform_fixup_phy(struct device_tree_node *node, char *path,
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int64_t phy_address, bdk_qlm_modes_t qlm_mode)
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{
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const char *data = NULL;
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size_t size = 0;
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dt_find_bin_prop(node, "qlm-mode", (const void **)&data, &size);
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if (!data || strncmp(data, path, 6) != 0)
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return; /* No key prefix match. */
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printk(BIOS_INFO, "%s: Node %s = %s\n", __func__, node->name, data);
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if (strlen(path) == strlen(data) && strcmp(data, path) == 0) {
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/* Keep node, remove "qlm-mode" property */
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dt_delete_prop(node, "qlm-mode");
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printk(BIOS_INFO, "%s: Removing qlm-mode on "
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"node %s\n", __func__, node->name);
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/* Linux only access the Phy via MDIO.
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Remove 'phy-handle' if this option is not available */
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switch (qlm_mode) {
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case BDK_QLM_MODE_SGMII_4X1:
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case BDK_QLM_MODE_SGMII_2X1:
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case BDK_QLM_MODE_SGMII_1X1:
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case BDK_QLM_MODE_QSGMII_4X1:
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if ((phy_address & BDK_IF_PHY_TYPE_MASK) !=
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BDK_IF_PHY_MDIO) {
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dt_delete_prop(node, "phy-handle");
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printk(BIOS_INFO, "%s: Removing phy-handle on "
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"node %s\n", __func__, node->name);
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}
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break;
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default:
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break;
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}
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} else {
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printk(BIOS_INFO, "%s: Removing node %s\n", __func__,
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node->name);
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/* No match, remove node */
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list_remove(&node->list_node);
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}
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}
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static void dt_iterate_phy(struct device_tree_node *parent,
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const char *name,
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char *path,
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int64_t phy_address,
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bdk_qlm_modes_t qlm_mode)
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{
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struct device_tree_property *prop;
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/* Check if parent itself has the required property value. */
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list_for_each(prop, parent->properties, list_node) {
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if (!strcmp(name, prop->prop.name)) {
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dt_platform_fixup_phy(parent, path, phy_address,
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qlm_mode);
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}
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}
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struct device_tree_node *child;
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list_for_each(child, parent->children, list_node) {
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dt_iterate_phy(child, name, path, phy_address, qlm_mode);
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}
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}
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static void dt_platform_fixup_mac(struct device_tree_node *node)
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{
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const char *name = "local-mac-address";
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const u64 *localmac = NULL;
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size_t size = 0;
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dt_find_bin_prop(node, name, (const void **)&localmac, &size);
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if (!localmac)
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return;
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static size_t used_mac;
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/* Extract our MAC address info so we can assign them */
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size_t next_free_mac_address =
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bdk_config_get_int(BDK_CONFIG_MAC_ADDRESS);
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size_t num_free_mac_addresses =
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bdk_config_get_int(BDK_CONFIG_MAC_ADDRESS_NUM);
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size_t num_free_override =
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bdk_config_get_int(BDK_CONFIG_MAC_ADDRESS_NUM_OVERRIDE);
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if (num_free_override != -1)
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num_free_mac_addresses = num_free_override;
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if (size == 6) {
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if (*localmac)
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return;
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if (used_mac < num_free_mac_addresses) {
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const u64 genmac = next_free_mac_address + used_mac;
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dt_add_bin_prop(node, name, &genmac, 6);
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used_mac++;
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return;
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}
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}
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printk(BIOS_INFO, "%s: Removing node %s\n", __func__, node->name);
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list_remove(&node->list_node);
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}
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static void dt_iterate_mac(struct device_tree_node *parent)
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{
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struct device_tree_property *prop;
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const char *name = "local-mac-address";
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/* Check if parent itself has the required property value. */
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list_for_each(prop, parent->properties, list_node) {
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if (!strcmp(name, prop->prop.name))
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dt_platform_fixup_mac(parent);
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}
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struct device_tree_node *child;
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list_for_each(child, parent->children, list_node) {
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dt_iterate_mac(child);
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}
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}
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/* Do additional device_tree modifications. */
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static int dt_platform_fixup(struct device_tree_fixup *fixup,
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struct device_tree *tree)
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{
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struct device_tree_node *dt_node;
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size_t i;
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/* Set the sclk clock rate. */
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dt_node = dt_find_node_by_path(tree->root, "soc@0/sclk", NULL, NULL, 0);
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if (dt_node) {
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const u32 freq = thunderx_get_io_clock();
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printk(BIOS_INFO, "%s: Set SCLK to %u Hz\n", __func__, freq);
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dt_add_u32_prop(dt_node, "clock-frequency", freq);
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} else
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printk(BIOS_ERR, "%s: Node not found. OS might miss-behave !\n",
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__func__);
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/* Set refclkuaa clock rate. */
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dt_node = dt_find_node_by_path(tree->root, "soc@0/refclkuaa", NULL,
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NULL, 0);
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if (dt_node) {
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const u32 freq = uart_platform_refclk();
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printk(BIOS_INFO, "%s: Set REFCLKUAA to %u Hz\n", __func__,
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freq);
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dt_add_u32_prop(dt_node, "clock-frequency", freq);
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} else
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printk(BIOS_ERR, "%s: Node not found. OS might miss-behave !\n",
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__func__);
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/* Remove unused UART entries */
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for (i = 0; i < 4; i++) {
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char path[32];
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const uint64_t addr = UAAx_PF_BAR0(i);
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/* Remove the node */
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snprintf(path, sizeof(path), "soc@0/serial@%llx", addr);
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dt_node = dt_find_node_by_path(tree->root, path, NULL, NULL, 0);
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if (!dt_node || uart_is_enabled(i)) {
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printk(BIOS_INFO, "%s: ignoring %s\n", __func__, path);
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continue;
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}
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printk(BIOS_INFO, "%s: Removing node %s\n", __func__, path);
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list_remove(&dt_node->list_node);
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}
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/* Remove unused PEM entries */
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for (i = 0; i < 8; i++) {
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char path[32];
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u32 phandle = 0;
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const uint64_t addr = PEM_PEMX_PF_BAR0(i);
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/* Remove the node */
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snprintf(path, sizeof(path), "soc@0/pci@%llx", addr);
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dt_node = dt_find_node_by_path(tree->root, path, NULL, NULL, 0);
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if (!dt_node || bdk_pcie_is_running(0, i)) {
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printk(BIOS_INFO, "%s: ignoring %s\n", __func__, path);
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continue;
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}
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/* Store the phandle */
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phandle = dt_get_phandle(dt_node);
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printk(BIOS_INFO, "%s: Removing node %s\n", __func__, path);
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list_remove(&dt_node->list_node);
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/* Remove phandle to non existing nodes */
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snprintf(path, sizeof(path), "soc@0/smmu0@%llx", SMMU_PF_BAR0);
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dt_node = dt_find_node_by_path(tree->root, path, NULL, NULL, 0);
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if (!dt_node) {
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printk(BIOS_ERR, "%s: SMMU entry not found\n",
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__func__);
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continue;
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}
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const u32 *data = NULL;
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size_t size = 0;
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dt_find_bin_prop(dt_node, "mmu-masters", (const void **)&data,
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&size);
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if (!size) {
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printk(BIOS_ERR, "%s: mmu-masters entry not found\n",
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__func__);
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continue;
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}
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u32 *data_cleaned = malloc(size);
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if (!data_cleaned)
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continue;
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size_t n = 0;
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/* Remove phandle from mmu-masters list */
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for (size_t j = 0; j < size / (sizeof(u32) * 2); j++)
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if (be32_to_cpu(data[j * 2]) != phandle) {
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data_cleaned[n * 2] = data[j * 2];
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data_cleaned[n * 2 + 1] = data[j * 2 + 1];
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n++;
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}
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dt_add_bin_prop(dt_node, "mmu-masters", data_cleaned,
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n * sizeof(u32) * 2);
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free(data_cleaned);
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}
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/* Remove QLM mode entries */
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size_t bgx_index, bgx_iface;
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for (bgx_iface = 0; bgx_iface < 4; bgx_iface++) {
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for (bgx_index = 0; bgx_index < 4; bgx_index++) {
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char path[32];
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int qlm = bdk_qlm_get_qlm_num(0, BDK_IF_BGX,
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bgx_iface, bgx_index);
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bdk_qlm_modes_t qlm_mode = (qlm == -1) ?
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BDK_QLM_MODE_DISABLED :
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bdk_qlm_get_mode(0, qlm);
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/* BGXX_CMRX_RX_DMAC_CTL is used to mark ports as
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* disabled that would otherwise be enabled */
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if (qlm_mode != BDK_QLM_MODE_DISABLED) {
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BDK_CSR_INIT(rx_dmac_ctl, 0,
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BDK_BGXX_CMRX_RX_DMAC_CTL(bgx_iface,
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bgx_index));
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if (rx_dmac_ctl.u == 0)
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qlm_mode = BDK_QLM_MODE_DISABLED;
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}
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if (qlm_mode == BDK_QLM_MODE_DISABLED)
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snprintf(path, sizeof(path), "0x0%x%x,disabled",
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bgx_iface, bgx_index);
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else
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snprintf(path, sizeof(path), "0x0%x%x,%s",
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bgx_iface, bgx_index,
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QLM_BGX_MODE_MAP[qlm_mode]);
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int64_t phy_address =
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bdk_config_get_int(BDK_CONFIG_PHY_ADDRESS, 0,
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bgx_iface, bgx_index);
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dt_iterate_phy(tree->root, "qlm-mode", path,
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phy_address, qlm_mode);
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}
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}
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/* Set local MAC address */
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dt_iterate_mac(tree->root);
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return 0;
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}
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extern u8 _sff8104[];
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extern u8 _esff8104[];
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void bootmem_platform_add_ranges(void)
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{
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bootmem_add_range((uintptr_t)_sff8104,
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((uintptr_t)_esff8104 - (uintptr_t)_sff8104),
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BM_MEM_RESERVED);
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/* Scratchpad for ATF SATA quirks */
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bootmem_add_range((sdram_size_mb() - 1) * MiB, 1 * MiB,
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BM_MEM_RESERVED);
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}
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static void soc_read_resources(struct device *dev)
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{
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// HACK: Don't advertise bootblock romstage CAR region, it's broken...
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ram_resource(dev, 0, 2 * KiB, sdram_size_mb() * KiB - 2 * KiB);
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}
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static void soc_init_atf(void)
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{
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static struct bl31_fdt_param fdt_param = {
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.h = { .type = PARAM_FDT, },
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};
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size_t size = 0;
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void *ptr = cbfs_boot_map_with_leak("sff8104-linux.dtb",
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CBFS_TYPE_RAW, &size);
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if (ptr)
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memcpy(_sff8104, ptr, size);
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/* Point to devicetree in secure memory */
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fdt_param.fdt_ptr = (uintptr_t)_sff8104;
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register_bl31_param(&fdt_param.h);
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static struct bl31_u64_param cbtable_param = {
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.h = { .type = PARAM_COREBOOT_TABLE, },
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};
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/* Point to coreboot tables */
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cbtable_param.value = (uint64_t)cbmem_find(CBMEM_ID_CBTABLE);
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if (cbtable_param.value)
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register_bl31_param(&cbtable_param.h);
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}
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static void soc_init(struct device *dev)
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{
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/* Init ECAM, MDIO, PEM, PHY, QLM ... */
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bdk_boot();
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if (CONFIG(PAYLOAD_FIT_SUPPORT)) {
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struct device_tree_fixup *dt_fixup;
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dt_fixup = malloc(sizeof(*dt_fixup));
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if (dt_fixup) {
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dt_fixup->fixup = dt_platform_fixup;
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list_insert_after(&dt_fixup->list_node,
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&device_tree_fixups);
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}
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}
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if (CONFIG(ARM64_USE_ARM_TRUSTED_FIRMWARE))
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soc_init_atf();
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}
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static void soc_final(struct device *dev)
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{
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watchdog_disable(0);
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}
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static struct device_operations soc_ops = {
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.read_resources = soc_read_resources,
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.set_resources = DEVICE_NOOP,
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.enable_resources = DEVICE_NOOP,
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.init = soc_init,
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.final = soc_final,
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.scan_bus = NULL,
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};
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static void enable_soc_dev(struct device *dev)
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{
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if (dev->path.type == DEVICE_PATH_DOMAIN &&
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dev->path.domain.domain == 0) {
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dev->ops = &pci_domain_ops_ecam0;
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} else if (dev->path.type == DEVICE_PATH_CPU_CLUSTER) {
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dev->ops = &soc_ops;
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}
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}
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struct chip_operations soc_cavium_cn81xx_ops = {
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CHIP_NAME("SOC Cavium CN81XX")
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.enable_dev = enable_soc_dev,
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};
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