mirror of
https://github.com/AuxXxilium/linux_dsm_epyc7002.git
synced 2024-12-23 01:13:55 +07:00
373c78e19d
The code in otp.c now uses the bcma core access functions to read the OTP information from the device. Reviewed-by: Pieter-Paul Giesberts <pieterpg@broadcom.com> Reviewed-by: Alwin Beukers <alwin@broadcom.com> Signed-off-by: Arend van Spriel <arend@broadcom.com> Signed-off-by: Franky Lin <frankyl@broadcom.com> Signed-off-by: John W. Linville <linville@tuxdriver.com>
411 lines
9.8 KiB
C
411 lines
9.8 KiB
C
/*
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* Copyright (c) 2010 Broadcom Corporation
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*
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* Permission to use, copy, modify, and/or distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
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* SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
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* OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
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* CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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#include <linux/io.h>
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#include <linux/errno.h>
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#include <linux/string.h>
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#include <brcm_hw_ids.h>
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#include <chipcommon.h>
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#include "aiutils.h"
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#include "otp.h"
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#define OTPS_GUP_MASK 0x00000f00
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#define OTPS_GUP_SHIFT 8
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/* h/w subregion is programmed */
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#define OTPS_GUP_HW 0x00000100
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/* s/w subregion is programmed */
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#define OTPS_GUP_SW 0x00000200
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/* chipid/pkgopt subregion is programmed */
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#define OTPS_GUP_CI 0x00000400
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/* fuse subregion is programmed */
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#define OTPS_GUP_FUSE 0x00000800
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/* Fields in otpprog in rev >= 21 */
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#define OTPP_COL_MASK 0x000000ff
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#define OTPP_COL_SHIFT 0
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#define OTPP_ROW_MASK 0x0000ff00
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#define OTPP_ROW_SHIFT 8
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#define OTPP_OC_MASK 0x0f000000
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#define OTPP_OC_SHIFT 24
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#define OTPP_READERR 0x10000000
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#define OTPP_VALUE_MASK 0x20000000
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#define OTPP_VALUE_SHIFT 29
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#define OTPP_START_BUSY 0x80000000
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#define OTPP_READ 0x40000000
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/* Opcodes for OTPP_OC field */
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#define OTPPOC_READ 0
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#define OTPPOC_BIT_PROG 1
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#define OTPPOC_VERIFY 3
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#define OTPPOC_INIT 4
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#define OTPPOC_SET 5
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#define OTPPOC_RESET 6
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#define OTPPOC_OCST 7
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#define OTPPOC_ROW_LOCK 8
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#define OTPPOC_PRESCN_TEST 9
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#define OTPTYPE_IPX(ccrev) ((ccrev) == 21 || (ccrev) >= 23)
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#define OTPP_TRIES 10000000 /* # of tries for OTPP */
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#define MAXNUMRDES 9 /* Maximum OTP redundancy entries */
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/* Fixed size subregions sizes in words */
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#define OTPGU_CI_SZ 2
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struct otpinfo;
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/* OTP function struct */
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struct otp_fn_s {
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int (*init)(struct si_pub *sih, struct otpinfo *oi);
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int (*read_region)(struct otpinfo *oi, int region, u16 *data,
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uint *wlen);
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};
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struct otpinfo {
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struct bcma_device *core; /* chipc core */
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const struct otp_fn_s *fn; /* OTP functions */
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struct si_pub *sih; /* Saved sb handle */
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/* IPX OTP section */
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u16 wsize; /* Size of otp in words */
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u16 rows; /* Geometry */
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u16 cols; /* Geometry */
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u32 status; /* Flag bits (lock/prog/rv).
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* (Reflected only when OTP is power cycled)
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*/
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u16 hwbase; /* hardware subregion offset */
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u16 hwlim; /* hardware subregion boundary */
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u16 swbase; /* software subregion offset */
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u16 swlim; /* software subregion boundary */
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u16 fbase; /* fuse subregion offset */
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u16 flim; /* fuse subregion boundary */
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int otpgu_base; /* offset to General Use Region */
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};
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/* OTP layout */
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/* CC revs 21, 24 and 27 OTP General Use Region word offset */
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#define REVA4_OTPGU_BASE 12
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/* CC revs 23, 25, 26, 28 and above OTP General Use Region word offset */
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#define REVB8_OTPGU_BASE 20
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/* CC rev 36 OTP General Use Region word offset */
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#define REV36_OTPGU_BASE 12
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/* Subregion word offsets in General Use region */
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#define OTPGU_HSB_OFF 0
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#define OTPGU_SFB_OFF 1
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#define OTPGU_CI_OFF 2
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#define OTPGU_P_OFF 3
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#define OTPGU_SROM_OFF 4
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/* Flag bit offsets in General Use region */
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#define OTPGU_HWP_OFF 60
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#define OTPGU_SWP_OFF 61
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#define OTPGU_CIP_OFF 62
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#define OTPGU_FUSEP_OFF 63
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#define OTPGU_CIP_MSK 0x4000
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#define OTPGU_P_MSK 0xf000
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#define OTPGU_P_SHIFT (OTPGU_HWP_OFF % 16)
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/* OTP Size */
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#define OTP_SZ_FU_324 ((roundup(324, 8))/8) /* 324 bits */
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#define OTP_SZ_FU_288 (288/8) /* 288 bits */
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#define OTP_SZ_FU_216 (216/8) /* 216 bits */
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#define OTP_SZ_FU_72 (72/8) /* 72 bits */
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#define OTP_SZ_CHECKSUM (16/8) /* 16 bits */
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#define OTP4315_SWREG_SZ 178 /* 178 bytes */
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#define OTP_SZ_FU_144 (144/8) /* 144 bits */
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static u16
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ipxotp_otpr(struct otpinfo *oi, uint wn)
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{
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return bcma_read16(oi->core,
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CHIPCREGOFFS(sromotp[wn]));
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}
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/*
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* Calculate max HW/SW region byte size by subtracting fuse region
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* and checksum size, osizew is oi->wsize (OTP size - GU size) in words
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*/
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static int ipxotp_max_rgnsz(struct si_pub *sih, int osizew)
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{
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int ret = 0;
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switch (ai_get_chip_id(sih)) {
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case BCM43224_CHIP_ID:
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case BCM43225_CHIP_ID:
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ret = osizew * 2 - OTP_SZ_FU_72 - OTP_SZ_CHECKSUM;
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break;
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case BCM4313_CHIP_ID:
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ret = osizew * 2 - OTP_SZ_FU_72 - OTP_SZ_CHECKSUM;
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break;
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default:
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break; /* Don't know about this chip */
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}
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return ret;
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}
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static void _ipxotp_init(struct otpinfo *oi)
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{
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uint k;
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u32 otpp, st;
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int ccrev = ai_get_ccrev(oi->sih);
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/*
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* record word offset of General Use Region
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* for various chipcommon revs
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*/
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if (ccrev == 21 || ccrev == 24
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|| ccrev == 27) {
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oi->otpgu_base = REVA4_OTPGU_BASE;
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} else if (ccrev == 36) {
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/*
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* OTP size greater than equal to 2KB (128 words),
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* otpgu_base is similar to rev23
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*/
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if (oi->wsize >= 128)
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oi->otpgu_base = REVB8_OTPGU_BASE;
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else
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oi->otpgu_base = REV36_OTPGU_BASE;
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} else if (ccrev == 23 || ccrev >= 25) {
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oi->otpgu_base = REVB8_OTPGU_BASE;
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}
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/* First issue an init command so the status is up to date */
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otpp =
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OTPP_START_BUSY | ((OTPPOC_INIT << OTPP_OC_SHIFT) & OTPP_OC_MASK);
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bcma_write32(oi->core, CHIPCREGOFFS(otpprog), otpp);
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st = bcma_read32(oi->core, CHIPCREGOFFS(otpprog));
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for (k = 0; (st & OTPP_START_BUSY) && (k < OTPP_TRIES); k++)
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st = bcma_read32(oi->core, CHIPCREGOFFS(otpprog));
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if (k >= OTPP_TRIES)
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return;
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/* Read OTP lock bits and subregion programmed indication bits */
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oi->status = bcma_read32(oi->core, CHIPCREGOFFS(otpstatus));
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if ((ai_get_chip_id(oi->sih) == BCM43224_CHIP_ID)
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|| (ai_get_chip_id(oi->sih) == BCM43225_CHIP_ID)) {
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u32 p_bits;
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p_bits = (ipxotp_otpr(oi, oi->otpgu_base + OTPGU_P_OFF) &
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OTPGU_P_MSK) >> OTPGU_P_SHIFT;
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oi->status |= (p_bits << OTPS_GUP_SHIFT);
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}
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/*
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* h/w region base and fuse region limit are fixed to
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* the top and the bottom of the general use region.
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* Everything else can be flexible.
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*/
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oi->hwbase = oi->otpgu_base + OTPGU_SROM_OFF;
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oi->hwlim = oi->wsize;
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if (oi->status & OTPS_GUP_HW) {
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oi->hwlim =
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ipxotp_otpr(oi, oi->otpgu_base + OTPGU_HSB_OFF) / 16;
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oi->swbase = oi->hwlim;
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} else
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oi->swbase = oi->hwbase;
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/* subtract fuse and checksum from beginning */
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oi->swlim = ipxotp_max_rgnsz(oi->sih, oi->wsize) / 2;
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if (oi->status & OTPS_GUP_SW) {
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oi->swlim =
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ipxotp_otpr(oi, oi->otpgu_base + OTPGU_SFB_OFF) / 16;
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oi->fbase = oi->swlim;
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} else
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oi->fbase = oi->swbase;
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oi->flim = oi->wsize;
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}
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static int ipxotp_init(struct si_pub *sih, struct otpinfo *oi)
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{
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/* Make sure we're running IPX OTP */
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if (!OTPTYPE_IPX(ai_get_ccrev(sih)))
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return -EBADE;
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/* Make sure OTP is not disabled */
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if (ai_is_otp_disabled(sih))
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return -EBADE;
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/* Check for otp size */
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switch ((ai_get_cccaps(sih) & CC_CAP_OTPSIZE) >> CC_CAP_OTPSIZE_SHIFT) {
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case 0:
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/* Nothing there */
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return -EBADE;
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case 1: /* 32x64 */
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oi->rows = 32;
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oi->cols = 64;
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oi->wsize = 128;
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break;
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case 2: /* 64x64 */
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oi->rows = 64;
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oi->cols = 64;
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oi->wsize = 256;
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break;
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case 5: /* 96x64 */
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oi->rows = 96;
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oi->cols = 64;
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oi->wsize = 384;
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break;
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case 7: /* 16x64 *//* 1024 bits */
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oi->rows = 16;
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oi->cols = 64;
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oi->wsize = 64;
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break;
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default:
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/* Don't know the geometry */
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return -EBADE;
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}
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/* Retrieve OTP region info */
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_ipxotp_init(oi);
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return 0;
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}
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static int
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ipxotp_read_region(struct otpinfo *oi, int region, u16 *data, uint *wlen)
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{
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uint base, i, sz;
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/* Validate region selection */
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switch (region) {
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case OTP_HW_RGN:
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sz = (uint) oi->hwlim - oi->hwbase;
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if (!(oi->status & OTPS_GUP_HW)) {
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*wlen = sz;
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return -ENODATA;
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}
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if (*wlen < sz) {
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*wlen = sz;
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return -EOVERFLOW;
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}
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base = oi->hwbase;
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break;
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case OTP_SW_RGN:
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sz = ((uint) oi->swlim - oi->swbase);
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if (!(oi->status & OTPS_GUP_SW)) {
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*wlen = sz;
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return -ENODATA;
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}
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if (*wlen < sz) {
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*wlen = sz;
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return -EOVERFLOW;
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}
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base = oi->swbase;
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break;
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case OTP_CI_RGN:
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sz = OTPGU_CI_SZ;
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if (!(oi->status & OTPS_GUP_CI)) {
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*wlen = sz;
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return -ENODATA;
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}
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if (*wlen < sz) {
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*wlen = sz;
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return -EOVERFLOW;
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}
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base = oi->otpgu_base + OTPGU_CI_OFF;
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break;
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case OTP_FUSE_RGN:
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sz = (uint) oi->flim - oi->fbase;
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if (!(oi->status & OTPS_GUP_FUSE)) {
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*wlen = sz;
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return -ENODATA;
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}
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if (*wlen < sz) {
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*wlen = sz;
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return -EOVERFLOW;
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}
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base = oi->fbase;
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break;
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case OTP_ALL_RGN:
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sz = ((uint) oi->flim - oi->hwbase);
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if (!(oi->status & (OTPS_GUP_HW | OTPS_GUP_SW))) {
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*wlen = sz;
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return -ENODATA;
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}
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if (*wlen < sz) {
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*wlen = sz;
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return -EOVERFLOW;
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}
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base = oi->hwbase;
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break;
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default:
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return -EINVAL;
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}
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/* Read the data */
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for (i = 0; i < sz; i++)
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data[i] = ipxotp_otpr(oi, base + i);
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*wlen = sz;
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return 0;
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}
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static const struct otp_fn_s ipxotp_fn = {
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(int (*)(struct si_pub *, struct otpinfo *)) ipxotp_init,
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(int (*)(struct otpinfo *, int, u16 *, uint *)) ipxotp_read_region,
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};
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static int otp_init(struct si_pub *sih, struct otpinfo *oi)
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{
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int ret;
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memset(oi, 0, sizeof(struct otpinfo));
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oi->core = ai_findcore(sih, BCMA_CORE_CHIPCOMMON, 0);
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if (OTPTYPE_IPX(ai_get_ccrev(sih)))
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oi->fn = &ipxotp_fn;
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if (oi->fn == NULL)
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return -EBADE;
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oi->sih = sih;
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ret = (oi->fn->init)(sih, oi);
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return ret;
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}
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int
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otp_read_region(struct si_pub *sih, int region, u16 *data, uint *wlen) {
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struct otpinfo otpinfo;
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struct otpinfo *oi = &otpinfo;
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int err = 0;
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if (ai_is_otp_disabled(sih)) {
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err = -EPERM;
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goto out;
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}
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err = otp_init(sih, oi);
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if (err)
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goto out;
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err = ((oi)->fn->read_region)(oi, region, data, wlen);
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out:
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return err;
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}
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