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Merge tag 'nand/for-5.12' of git://git.kernel.org/pub/scm/linux/kernel/git/mtd/linux into mtd/next
Raw NAND controller drivers: * Intel: Fix an error handling path in 'ebu_dma_start()' * Tango: Remove the driver * Marvell: Convert comma to semicolon * MXC: Convert comma to semicolon * Qcom: Add support for Qcom SMEM parser Related MTD changes: * parsers: Add Qcom SMEM parser
This commit is contained in:
@@ -0,0 +1,33 @@
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# SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
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%YAML 1.2
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---
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$id: http://devicetree.org/schemas/mtd/partitions/qcom,smem-part.yaml#
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$schema: http://devicetree.org/meta-schemas/core.yaml#
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title: Qualcomm SMEM NAND flash partition parser binding
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maintainers:
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- Manivannan Sadhasivam <manivannan.sadhasivam@linaro.org>
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description: |
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The Qualcomm SoCs supporting the NAND controller interface features a Shared
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Memory (SMEM) based partition table scheme. The maximum partitions supported
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varies between partition table revisions. V3 supports maximum 16 partitions
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and V4 supports 48 partitions.
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properties:
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compatible:
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const: qcom,smem-part
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required:
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- compatible
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additionalProperties: false
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examples:
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- |
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flash {
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partitions {
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compatible = "qcom,smem-part";
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};
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};
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@@ -102,13 +102,6 @@ config MTD_NAND_S3C2410_CLKSTOP
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when the is NAND chip selected or released, but will save
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approximately 5mA of power when there is nothing happening.
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config MTD_NAND_TANGO
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tristate "Tango NAND controller"
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depends on ARCH_TANGO || COMPILE_TEST
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depends on HAS_IOMEM
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help
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Enables the NAND Flash controller on Tango chips.
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config MTD_NAND_SHARPSL
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tristate "Sharp SL Series (C7xx + others) NAND controller"
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depends on ARCH_PXA || COMPILE_TEST
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@@ -10,7 +10,6 @@ obj-$(CONFIG_MTD_NAND_DENALI_PCI) += denali_pci.o
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obj-$(CONFIG_MTD_NAND_DENALI_DT) += denali_dt.o
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obj-$(CONFIG_MTD_NAND_AU1550) += au1550nd.o
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obj-$(CONFIG_MTD_NAND_S3C2410) += s3c2410.o
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obj-$(CONFIG_MTD_NAND_TANGO) += tango_nand.o
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obj-$(CONFIG_MTD_NAND_DAVINCI) += davinci_nand.o
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obj-$(CONFIG_MTD_NAND_DISKONCHIP) += diskonchip.o
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obj-$(CONFIG_MTD_NAND_FSMC) += fsmc_nand.o
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@@ -318,8 +318,10 @@ static int ebu_dma_start(struct ebu_nand_controller *ebu_host, u32 dir,
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}
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tx = dmaengine_prep_slave_single(chan, buf_dma, len, dir, flags);
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if (!tx)
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return -ENXIO;
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if (!tx) {
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ret = -ENXIO;
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goto err_unmap;
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}
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tx->callback = callback;
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tx->callback_param = ebu_host;
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@@ -2396,7 +2396,7 @@ static int marvell_nfc_setup_interface(struct nand_chip *chip, int chipnr,
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* be greater than that to be sure tCCS delay is respected.
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*/
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nfc_tmg.tWHR = TO_CYCLES(max_t(int, sdr->tWHR_min, sdr->tCCS_min),
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period_ns) - 2,
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period_ns) - 2;
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nfc_tmg.tRHW = TO_CYCLES(max_t(int, sdr->tRHW_min, sdr->tCCS_min),
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period_ns);
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@@ -1731,7 +1731,7 @@ static int mxcnd_probe(struct platform_device *pdev)
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this->legacy.chip_delay = 5;
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nand_set_controller_data(this, host);
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nand_set_flash_node(this, pdev->dev.of_node),
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nand_set_flash_node(this, pdev->dev.of_node);
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this->legacy.dev_ready = mxc_nand_dev_ready;
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this->legacy.cmdfunc = mxc_nand_command;
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this->legacy.read_byte = mxc_nand_read_byte;
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@@ -2821,6 +2821,8 @@ static int qcom_nandc_setup(struct qcom_nand_controller *nandc)
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return 0;
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}
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static const char * const probes[] = { "qcomsmem", NULL };
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static int qcom_nand_host_init_and_register(struct qcom_nand_controller *nandc,
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struct qcom_nand_host *host,
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struct device_node *dn)
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@@ -2884,7 +2886,7 @@ static int qcom_nand_host_init_and_register(struct qcom_nand_controller *nandc,
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}
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}
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ret = mtd_device_register(mtd, NULL, 0);
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ret = mtd_device_parse_register(mtd, probes, NULL, NULL, 0);
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if (ret)
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nand_cleanup(chip);
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File diff suppressed because it is too large
Load Diff
@@ -160,3 +160,11 @@ config MTD_REDBOOT_PARTS_READONLY
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'FIS directory' images, enable this option.
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endif # MTD_REDBOOT_PARTS
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config MTD_QCOMSMEM_PARTS
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tristate "Qualcomm SMEM NAND flash partition parser"
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depends on MTD_NAND_QCOM || COMPILE_TEST
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depends on QCOM_SMEM
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help
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This provides support for parsing partitions from Shared Memory (SMEM)
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for NAND flash on Qualcomm platforms.
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@@ -9,3 +9,4 @@ obj-$(CONFIG_MTD_AFS_PARTS) += afs.o
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obj-$(CONFIG_MTD_PARSER_TRX) += parser_trx.o
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obj-$(CONFIG_MTD_SHARPSL_PARTS) += sharpslpart.o
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obj-$(CONFIG_MTD_REDBOOT_PARTS) += redboot.o
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obj-$(CONFIG_MTD_QCOMSMEM_PARTS) += qcomsmempart.o
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@@ -0,0 +1,170 @@
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// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Qualcomm SMEM NAND flash partition parser
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*
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* Copyright (C) 2020, Linaro Ltd.
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*/
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#include <linux/ctype.h>
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#include <linux/module.h>
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#include <linux/mtd/mtd.h>
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#include <linux/mtd/partitions.h>
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#include <linux/slab.h>
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#include <linux/soc/qcom/smem.h>
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#define SMEM_AARM_PARTITION_TABLE 9
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#define SMEM_APPS 0
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#define SMEM_FLASH_PART_MAGIC1 0x55ee73aa
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#define SMEM_FLASH_PART_MAGIC2 0xe35ebddb
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#define SMEM_FLASH_PTABLE_V3 3
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#define SMEM_FLASH_PTABLE_V4 4
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#define SMEM_FLASH_PTABLE_MAX_PARTS_V3 16
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#define SMEM_FLASH_PTABLE_MAX_PARTS_V4 48
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#define SMEM_FLASH_PTABLE_HDR_LEN (4 * sizeof(u32))
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#define SMEM_FLASH_PTABLE_NAME_SIZE 16
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/**
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* struct smem_flash_pentry - SMEM Flash partition entry
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* @name: Name of the partition
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* @offset: Offset in blocks
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* @length: Length of the partition in blocks
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* @attr: Flags for this partition
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*/
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struct smem_flash_pentry {
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char name[SMEM_FLASH_PTABLE_NAME_SIZE];
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__le32 offset;
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__le32 length;
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u8 attr;
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} __packed __aligned(4);
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/**
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* struct smem_flash_ptable - SMEM Flash partition table
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* @magic1: Partition table Magic 1
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* @magic2: Partition table Magic 2
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* @version: Partition table version
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* @numparts: Number of partitions in this ptable
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* @pentry: Flash partition entries belonging to this ptable
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*/
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struct smem_flash_ptable {
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__le32 magic1;
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__le32 magic2;
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__le32 version;
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__le32 numparts;
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struct smem_flash_pentry pentry[SMEM_FLASH_PTABLE_MAX_PARTS_V4];
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} __packed __aligned(4);
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static int parse_qcomsmem_part(struct mtd_info *mtd,
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const struct mtd_partition **pparts,
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struct mtd_part_parser_data *data)
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{
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struct smem_flash_pentry *pentry;
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struct smem_flash_ptable *ptable;
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size_t len = SMEM_FLASH_PTABLE_HDR_LEN;
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struct mtd_partition *parts;
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int ret, i, numparts;
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char *name, *c;
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pr_debug("Parsing partition table info from SMEM\n");
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ptable = qcom_smem_get(SMEM_APPS, SMEM_AARM_PARTITION_TABLE, &len);
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if (IS_ERR(ptable)) {
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pr_err("Error reading partition table header\n");
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return PTR_ERR(ptable);
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}
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/* Verify ptable magic */
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if (le32_to_cpu(ptable->magic1) != SMEM_FLASH_PART_MAGIC1 ||
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le32_to_cpu(ptable->magic2) != SMEM_FLASH_PART_MAGIC2) {
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pr_err("Partition table magic verification failed\n");
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return -EINVAL;
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}
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/* Ensure that # of partitions is less than the max we have allocated */
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numparts = le32_to_cpu(ptable->numparts);
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if (numparts > SMEM_FLASH_PTABLE_MAX_PARTS_V4) {
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pr_err("Partition numbers exceed the max limit\n");
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return -EINVAL;
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}
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/* Find out length of partition data based on table version */
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if (le32_to_cpu(ptable->version) <= SMEM_FLASH_PTABLE_V3) {
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len = SMEM_FLASH_PTABLE_HDR_LEN + SMEM_FLASH_PTABLE_MAX_PARTS_V3 *
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sizeof(struct smem_flash_pentry);
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} else if (le32_to_cpu(ptable->version) == SMEM_FLASH_PTABLE_V4) {
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len = SMEM_FLASH_PTABLE_HDR_LEN + SMEM_FLASH_PTABLE_MAX_PARTS_V4 *
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sizeof(struct smem_flash_pentry);
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} else {
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pr_err("Unknown ptable version (%d)", le32_to_cpu(ptable->version));
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return -EINVAL;
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}
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/*
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* Now that the partition table header has been parsed, verified
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* and the length of the partition table calculated, read the
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* complete partition table
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*/
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ptable = qcom_smem_get(SMEM_APPS, SMEM_AARM_PARTITION_TABLE, &len);
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if (IS_ERR_OR_NULL(ptable)) {
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pr_err("Error reading partition table\n");
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return PTR_ERR(ptable);
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}
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parts = kcalloc(numparts, sizeof(*parts), GFP_KERNEL);
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if (!parts)
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return -ENOMEM;
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for (i = 0; i < numparts; i++) {
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pentry = &ptable->pentry[i];
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if (pentry->name[0] == '\0')
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continue;
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name = kstrdup(pentry->name, GFP_KERNEL);
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if (!name) {
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ret = -ENOMEM;
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goto out_free_parts;
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}
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/* Convert name to lower case */
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for (c = name; *c != '\0'; c++)
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*c = tolower(*c);
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parts[i].name = name;
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parts[i].offset = le32_to_cpu(pentry->offset) * mtd->erasesize;
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parts[i].mask_flags = pentry->attr;
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parts[i].size = le32_to_cpu(pentry->length) * mtd->erasesize;
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pr_debug("%d: %s offs=0x%08x size=0x%08x attr:0x%08x\n",
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i, pentry->name, le32_to_cpu(pentry->offset),
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le32_to_cpu(pentry->length), pentry->attr);
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}
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pr_debug("SMEM partition table found: ver: %d len: %d\n",
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le32_to_cpu(ptable->version), numparts);
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*pparts = parts;
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return numparts;
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out_free_parts:
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while (--i >= 0)
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kfree(parts[i].name);
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kfree(parts);
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*pparts = NULL;
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return ret;
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}
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static const struct of_device_id qcomsmem_of_match_table[] = {
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{ .compatible = "qcom,smem-part" },
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{},
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};
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MODULE_DEVICE_TABLE(of, qcomsmem_of_match_table);
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static struct mtd_part_parser mtd_parser_qcomsmem = {
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.parse_fn = parse_qcomsmem_part,
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.name = "qcomsmem",
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.of_match_table = qcomsmem_of_match_table,
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};
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module_mtd_part_parser(mtd_parser_qcomsmem);
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MODULE_LICENSE("GPL v2");
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MODULE_AUTHOR("Manivannan Sadhasivam <manivannan.sadhasivam@linaro.org>");
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MODULE_DESCRIPTION("Qualcomm SMEM NAND flash partition parser");
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