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https://github.com/AsahiLinux/u-boot
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107c3391b9
This syncs drivers/ddr/marvell/a38x/ with the master branch of repository https://github.com/MarvellEmbeddedProcessors/mv-ddr-marvell.git up to the commit 7c351731d196 ("Merge pull request #29 from pali/sync-a38x-uboot"). This patch was created by following steps: 1. Replace all a38x files in U-Boot tree by files from upstream github Marvell mv-ddr-marvell repository. 2. Run following command to omit portions not relevant for a38x and ddr3: files=drivers/ddr/marvell/a38x/* sed 's/#if defined(CONFIG_ARMADA_38X) || defined(CONFIG_ARMADA_39X)/#ifdef TRUE/' -i $files unifdef -m -UMV_DDR -UMV_DDR_ATF -UCONFIG_DDR4 -UCONFIG_APN806 \ -UCONFIG_MC_STATIC -UCONFIG_MC_STATIC_PRINT -UCONFIG_PHY_STATIC \ -UCONFIG_PHY_STATIC_PRINT -UCONFIG_CUSTOMER_BOARD_SUPPORT \ -UCONFIG_A3700 -UA3900 -UA80X0 -UA70X0 -DTRUE $files 3. Manually omit SPDX-License-Identifier changes from this patch as upstream license in upstream github repository contains long license texts and U-Boot is using just SPDX-License-Identifier. After applying this patch, a38x ddr3 code in upstream Marvell github repository and in U-Boot would be fully identical. So in future applying above steps could be used to sync code again. The only change in this patch is removal of dead code and some fixes with include files. Signed-off-by: Pali Rohár <pali@kernel.org> Tested-by: Chris Packham <judge.packham@gmail.com> Reviewed-by: Stefan Roese <sr@denx.de>
148 lines
3.4 KiB
C
148 lines
3.4 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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* Copyright (C) Marvell International Ltd. and its affiliates
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*/
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#include "ddr3_init.h"
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#include "mv_ddr_common.h"
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static char *ddr_type = "DDR3";
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/*
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* generic_init_controller controls D-unit configuration:
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* '1' - dynamic D-unit configuration,
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*/
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u8 generic_init_controller = 1;
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static int mv_ddr_training_params_set(u8 dev_num);
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/*
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* Name: ddr3_init - Main DDR3 Init function
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* Desc: This routine initialize the DDR3 MC and runs HW training.
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* Args: None.
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* Notes:
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* Returns: None.
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*/
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int ddr3_init(void)
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{
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int status;
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int is_manual_cal_done;
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/* Print mv_ddr version */
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mv_ddr_ver_print();
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mv_ddr_pre_training_fixup();
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/* SoC/Board special initializations */
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mv_ddr_pre_training_soc_config(ddr_type);
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/* Set log level for training library */
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mv_ddr_user_log_level_set(DEBUG_BLOCK_ALL);
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mv_ddr_early_init();
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if (mv_ddr_topology_map_update()) {
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printf("mv_ddr: failed to update topology\n");
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return MV_FAIL;
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}
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if (mv_ddr_early_init2() != MV_OK)
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return MV_FAIL;
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/* Set training algorithm's parameters */
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status = mv_ddr_training_params_set(0);
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if (MV_OK != status)
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return status;
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mv_ddr_mc_config();
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is_manual_cal_done = mv_ddr_manual_cal_do();
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mv_ddr_mc_init();
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if (!is_manual_cal_done) {
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}
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status = ddr3_silicon_post_init();
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if (MV_OK != status) {
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printf("DDR3 Post Init - FAILED 0x%x\n", status);
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return status;
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}
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/* PHY initialization (Training) */
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status = hws_ddr3_tip_run_alg(0, ALGO_TYPE_DYNAMIC);
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if (MV_OK != status) {
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printf("%s Training Sequence - FAILED\n", ddr_type);
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return status;
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}
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/* Post MC/PHY initializations */
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mv_ddr_post_training_soc_config(ddr_type);
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mv_ddr_post_training_fixup();
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if (mv_ddr_is_ecc_ena())
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mv_ddr_mem_scrubbing();
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printf("mv_ddr: completed successfully\n");
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return MV_OK;
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}
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/*
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* Name: mv_ddr_training_params_set
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* Desc:
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* Args:
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* Notes: sets internal training params
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* Returns:
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*/
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static int mv_ddr_training_params_set(u8 dev_num)
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{
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struct tune_train_params params;
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struct mv_ddr_topology_map *tm = mv_ddr_topology_map_get();
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int status;
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u32 cs_num;
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int ck_delay;
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cs_num = mv_ddr_cs_num_get();
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ck_delay = mv_ddr_ck_delay_get();
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/* NOTE: do not remove any field initilization */
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params.ck_delay = TUNE_TRAINING_PARAMS_CK_DELAY;
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params.phy_reg3_val = TUNE_TRAINING_PARAMS_PHYREG3VAL;
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params.g_zpri_data = TUNE_TRAINING_PARAMS_PRI_DATA;
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params.g_znri_data = TUNE_TRAINING_PARAMS_NRI_DATA;
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params.g_zpri_ctrl = TUNE_TRAINING_PARAMS_PRI_CTRL;
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params.g_znri_ctrl = TUNE_TRAINING_PARAMS_NRI_CTRL;
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params.g_znodt_data = TUNE_TRAINING_PARAMS_N_ODT_DATA;
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params.g_zpodt_ctrl = TUNE_TRAINING_PARAMS_P_ODT_CTRL;
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params.g_znodt_ctrl = TUNE_TRAINING_PARAMS_N_ODT_CTRL;
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params.g_zpodt_data = TUNE_TRAINING_PARAMS_P_ODT_DATA;
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params.g_dic = TUNE_TRAINING_PARAMS_DIC;
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params.g_rtt_nom = TUNE_TRAINING_PARAMS_RTT_NOM;
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if (cs_num == 1) {
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params.g_rtt_wr = TUNE_TRAINING_PARAMS_RTT_WR_1CS;
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params.g_odt_config = TUNE_TRAINING_PARAMS_ODT_CONFIG_1CS;
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} else {
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params.g_rtt_wr = TUNE_TRAINING_PARAMS_RTT_WR_2CS;
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params.g_odt_config = TUNE_TRAINING_PARAMS_ODT_CONFIG_2CS;
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}
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if (ck_delay > 0)
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params.ck_delay = ck_delay;
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/* Use platform specific override ODT value */
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if (tm->odt_config)
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params.g_odt_config = tm->odt_config;
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status = ddr3_tip_tune_training_params(dev_num, ¶ms);
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if (MV_OK != status) {
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printf("%s Training Sequence - FAILED\n", ddr_type);
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return status;
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}
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return MV_OK;
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}
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