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mtd: mxc_nand: add support for multiple chips on V21 devices
Do the following to add support for up to 4 chips on V21 devices (i.MX25 and i.MX35): * implement .select_chip for V21 * adjust existing NFC_V1_V2_BUF_ADDR writes to take chip select into account * unlock all chip selects at preset_v1_v2() * scan up to 4 devices at .probe This has been tested on i.MX25 with two attached NAND chip (on one die). Signed-off-by: Baruch Siach <baruch@tkos.co.il> Signed-off-by: Artem Bityutskiy <Artem.Bityutskiy@nokia.com> Signed-off-by: David Woodhouse <David.Woodhouse@intel.com>
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@ -56,8 +56,14 @@
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#define NFC_V1_V2_WRPROT (host->regs + 0x12)
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#define NFC_V1_UNLOCKSTART_BLKADDR (host->regs + 0x14)
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#define NFC_V1_UNLOCKEND_BLKADDR (host->regs + 0x16)
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#define NFC_V21_UNLOCKSTART_BLKADDR (host->regs + 0x20)
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#define NFC_V21_UNLOCKEND_BLKADDR (host->regs + 0x22)
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#define NFC_V21_UNLOCKSTART_BLKADDR0 (host->regs + 0x20)
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#define NFC_V21_UNLOCKSTART_BLKADDR1 (host->regs + 0x24)
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#define NFC_V21_UNLOCKSTART_BLKADDR2 (host->regs + 0x28)
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#define NFC_V21_UNLOCKSTART_BLKADDR3 (host->regs + 0x2c)
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#define NFC_V21_UNLOCKEND_BLKADDR0 (host->regs + 0x22)
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#define NFC_V21_UNLOCKEND_BLKADDR1 (host->regs + 0x26)
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#define NFC_V21_UNLOCKEND_BLKADDR2 (host->regs + 0x2a)
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#define NFC_V21_UNLOCKEND_BLKADDR3 (host->regs + 0x2e)
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#define NFC_V1_V2_NF_WRPRST (host->regs + 0x18)
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#define NFC_V1_V2_CONFIG1 (host->regs + 0x1a)
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#define NFC_V1_V2_CONFIG2 (host->regs + 0x1c)
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@ -152,6 +158,7 @@ struct mxc_nand_host {
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int clk_act;
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int irq;
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int eccsize;
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int active_cs;
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struct completion op_completion;
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@ -445,7 +452,7 @@ static void send_page_v1_v2(struct mtd_info *mtd, unsigned int ops)
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for (i = 0; i < bufs; i++) {
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/* NANDFC buffer 0 is used for page read/write */
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writew(i, NFC_V1_V2_BUF_ADDR);
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writew((host->active_cs << 4) | i, NFC_V1_V2_BUF_ADDR);
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writew(ops, NFC_V1_V2_CONFIG2);
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@ -470,7 +477,7 @@ static void send_read_id_v1_v2(struct mxc_nand_host *host)
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struct nand_chip *this = &host->nand;
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/* NANDFC buffer 0 is used for device ID output */
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writew(0x0, NFC_V1_V2_BUF_ADDR);
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writew(host->active_cs << 4, NFC_V1_V2_BUF_ADDR);
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writew(NFC_ID, NFC_V1_V2_CONFIG2);
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@ -505,7 +512,7 @@ static uint16_t get_dev_status_v1_v2(struct mxc_nand_host *host)
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uint32_t store;
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uint16_t ret;
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writew(0x0, NFC_V1_V2_BUF_ADDR);
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writew(host->active_cs << 4, NFC_V1_V2_BUF_ADDR);
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/*
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* The device status is stored in main_area0. To
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@ -686,24 +693,24 @@ static void mxc_nand_select_chip(struct mtd_info *mtd, int chip)
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struct nand_chip *nand_chip = mtd->priv;
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struct mxc_nand_host *host = nand_chip->priv;
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switch (chip) {
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case -1:
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if (chip == -1) {
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/* Disable the NFC clock */
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if (host->clk_act) {
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clk_disable(host->clk);
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host->clk_act = 0;
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}
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break;
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case 0:
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/* Enable the NFC clock */
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if (!host->clk_act) {
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clk_enable(host->clk);
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host->clk_act = 1;
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}
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break;
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return;
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}
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default:
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break;
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if (!host->clk_act) {
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/* Enable the NFC clock */
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clk_enable(host->clk);
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host->clk_act = 1;
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}
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if (nfc_is_v21()) {
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host->active_cs = chip;
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writew(host->active_cs << 4, NFC_V1_V2_BUF_ADDR);
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}
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}
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@ -834,8 +841,14 @@ static void preset_v1_v2(struct mtd_info *mtd)
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/* Blocks to be unlocked */
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if (nfc_is_v21()) {
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writew(0x0, NFC_V21_UNLOCKSTART_BLKADDR);
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writew(0xffff, NFC_V21_UNLOCKEND_BLKADDR);
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writew(0x0, NFC_V21_UNLOCKSTART_BLKADDR0);
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writew(0x0, NFC_V21_UNLOCKSTART_BLKADDR1);
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writew(0x0, NFC_V21_UNLOCKSTART_BLKADDR2);
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writew(0x0, NFC_V21_UNLOCKSTART_BLKADDR3);
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writew(0xffff, NFC_V21_UNLOCKEND_BLKADDR0);
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writew(0xffff, NFC_V21_UNLOCKEND_BLKADDR1);
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writew(0xffff, NFC_V21_UNLOCKEND_BLKADDR2);
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writew(0xffff, NFC_V21_UNLOCKEND_BLKADDR3);
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} else if (nfc_is_v1()) {
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writew(0x0, NFC_V1_UNLOCKSTART_BLKADDR);
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writew(0x4000, NFC_V1_UNLOCKEND_BLKADDR);
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@ -1200,7 +1213,7 @@ static int __init mxcnd_probe(struct platform_device *pdev)
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irq_control_v1_v2(host, 1);
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/* first scan to find the device and get the page size */
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if (nand_scan_ident(mtd, 1, NULL)) {
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if (nand_scan_ident(mtd, nfc_is_v21() ? 4 : 1, NULL)) {
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err = -ENXIO;
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goto escan;
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}
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