sb/intel/common/spi.c: Add a SPI write protect function
Could be useful to write protect regions like for instance the MRC_CACHE region. Tested on Intel DG41WV (i82801gx) and Lenovo Thinkpad X220 (bd82x6x) to write protect the mrc_cache region. Change-Id: Id0a9a0de639c5d6761a77a56ceba6d89110a4ea1 Signed-off-by: Arthur Heymans <arthur@aheymans.xyz> Reviewed-on: https://review.coreboot.org/23146 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Patrick Rudolph <siro@das-labor.org>
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@ -83,6 +83,7 @@ typedef struct ich7_spi_regs {
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uint16_t preop;
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uint16_t optype;
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uint8_t opmenu[8];
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uint32_t pbr[3];
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} __packed ich7_spi_regs;
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typedef struct ich9_spi_regs {
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@ -134,6 +135,8 @@ typedef struct ich_spi_controller {
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uint8_t *status;
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uint16_t *control;
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uint32_t *bbar;
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uint32_t *fpr;
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uint8_t fpr_max;
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} ich_spi_controller;
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static ich_spi_controller cntlr;
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@ -319,6 +322,8 @@ void spi_init(void)
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cntlr.control = &ich7_spi->spic;
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cntlr.bbar = &ich7_spi->bbar;
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cntlr.preop = &ich7_spi->preop;
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cntlr.fpr = &ich7_spi->pbr[0];
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cntlr.fpr_max = 3;
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} else {
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ich9_spi = (ich9_spi_regs *)(rcrb + 0x3800);
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cntlr.ich9_spi = ich9_spi;
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@ -335,6 +340,8 @@ void spi_init(void)
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cntlr.control = (uint16_t *)ich9_spi->ssfc;
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cntlr.bbar = &ich9_spi->bbar;
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cntlr.preop = &ich9_spi->preop;
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cntlr.fpr = &ich9_spi->pr[0];
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cntlr.fpr_max = 5;
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if (cntlr.hsfs & HSFS_FDV) {
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writel_ (4, &ich9_spi->fdoc);
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@ -959,10 +966,80 @@ static int xfer_vectors(const struct spi_slave *slave,
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return spi_flash_vector_helper(slave, vectors, count, spi_ctrlr_xfer);
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}
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#define SPI_FPR_SHIFT 12
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#define ICH7_SPI_FPR_MASK 0xfff
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#define ICH9_SPI_FPR_MASK 0x1fff
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#define SPI_FPR_BASE_SHIFT 0
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#define ICH7_SPI_FPR_LIMIT_SHIFT 12
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#define ICH9_SPI_FPR_LIMIT_SHIFT 16
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#define ICH9_SPI_FPR_RPE (1 << 15) /* Read Protect */
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#define SPI_FPR_WPE (1 << 31) /* Write Protect */
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static u32 spi_fpr(u32 base, u32 limit)
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{
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u32 ret;
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u32 mask, limit_shift;
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if (IS_ENABLED(CONFIG_SOUTHBRIDGE_INTEL_I82801GX)) {
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mask = ICH7_SPI_FPR_MASK;
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limit_shift = ICH7_SPI_FPR_LIMIT_SHIFT;
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} else {
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mask = ICH9_SPI_FPR_MASK;
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limit_shift = ICH9_SPI_FPR_LIMIT_SHIFT;
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}
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ret = ((limit >> SPI_FPR_SHIFT) & mask) << limit_shift;
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ret |= ((base >> SPI_FPR_SHIFT) & mask) << SPI_FPR_BASE_SHIFT;
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return ret;
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}
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/*
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* Protect range of SPI flash defined by [start, start+size-1] using Flash
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* Protected Range (FPR) register if available.
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* Returns 0 on success, -1 on failure of programming fpr registers.
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*/
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static int spi_flash_protect(const struct spi_flash *flash,
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const struct region *region)
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{
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u32 start = region_offset(region);
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u32 end = start + region_sz(region) - 1;
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u32 reg;
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int fpr;
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uint32_t *fpr_base;
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fpr_base = cntlr.fpr;
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/* Find first empty FPR */
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for (fpr = 0; fpr < cntlr.fpr_max; fpr++) {
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reg = read32(&fpr_base[fpr]);
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if (reg == 0)
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break;
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}
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if (fpr == cntlr.fpr_max) {
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printk(BIOS_ERR, "ERROR: No SPI FPR free!\n");
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return -1;
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}
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/* Set protected range base and limit */
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reg = spi_fpr(start, end) | SPI_FPR_WPE;
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/* Set the FPR register and verify it is protected */
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write32(&fpr_base[fpr], reg);
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reg = read32(&fpr_base[fpr]);
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if (!(reg & SPI_FPR_WPE)) {
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printk(BIOS_ERR, "ERROR: Unable to set SPI FPR %d\n", fpr);
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return -1;
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}
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printk(BIOS_INFO, "%s: FPR %d is enabled for range 0x%08x-0x%08x\n",
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__func__, fpr, start, end);
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return 0;
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}
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static const struct spi_ctrlr spi_ctrlr = {
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.xfer_vector = xfer_vectors,
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.max_xfer_size = member_size(ich9_spi_regs, fdata),
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.flash_probe = spi_flash_programmer_probe,
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.flash_protect = spi_flash_protect,
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};
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const struct spi_ctrlr_buses spi_ctrlr_bus_map[] = {
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