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According to De Morgan's Law[1]: !(A && B) = !A || !B !(A || B) = !A && !B There are 5 places in the code where we find: #if !(defined(CONFIG_SYS_ICACHE_OFF) && defined(CONFIG_SYS_DCACHE_OFF)) and 4 places in the code where we find: #if (!defined(CONFIG_SYS_ICACHE_OFF) || !defined(CONFIG_SYS_DCACHE_OFF)) In words, the construct: !defined(CONFIG_SYS_[DI]CACHE_OFF) means: "is the [DI]CACHE on?" and the construct: defined(CONFIG_SYS_[DI]CACHE_OFF) means: "is the [DI]CACHE off?" Therefore !(defined(CONFIG_SYS_ICACHE_OFF) && defined(CONFIG_SYS_DCACHE_OFF)) means: "the opposite of 'are they both off?'" in other words: "are either or both on?" and: (!defined(CONFIG_SYS_ICACHE_OFF) || !defined(CONFIG_SYS_DCACHE_OFF) means: "are either or both on?" As a result, I've converted the 4 instances of '(!A || !B)' to '!(A && B)' for consistency. [1] https://en.wikipedia.org/wiki/De_Morgan%27s_laws Signed-off-by: Trevor Woerner <trevor@toganlabs.com>
266 lines
4.8 KiB
C
266 lines
4.8 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* Copyright (C) 2012 Andes Technology Corporation
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* Shawn Lin, Andes Technology Corporation <nobuhiro@andestech.com>
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* Macpaul Lin, Andes Technology Corporation <macpaul@andestech.com>
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*/
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#include <common.h>
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#if !(defined(CONFIG_SYS_ICACHE_OFF) && defined(CONFIG_SYS_DCACHE_OFF))
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static inline unsigned long CACHE_SET(unsigned char cache)
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{
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if (cache == ICACHE)
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return 64 << ((GET_ICM_CFG() & ICM_CFG_MSK_ISET) \
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>> ICM_CFG_OFF_ISET);
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else
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return 64 << ((GET_DCM_CFG() & DCM_CFG_MSK_DSET) \
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>> DCM_CFG_OFF_DSET);
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}
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static inline unsigned long CACHE_WAY(unsigned char cache)
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{
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if (cache == ICACHE)
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return 1 + ((GET_ICM_CFG() & ICM_CFG_MSK_IWAY) \
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>> ICM_CFG_OFF_IWAY);
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else
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return 1 + ((GET_DCM_CFG() & DCM_CFG_MSK_DWAY) \
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>> DCM_CFG_OFF_DWAY);
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}
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static inline unsigned long CACHE_LINE_SIZE(enum cache_t cache)
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{
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if (cache == ICACHE)
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return 8 << (((GET_ICM_CFG() & ICM_CFG_MSK_ISZ) \
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>> ICM_CFG_OFF_ISZ) - 1);
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else
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return 8 << (((GET_DCM_CFG() & DCM_CFG_MSK_DSZ) \
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>> DCM_CFG_OFF_DSZ) - 1);
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}
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#endif
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#ifndef CONFIG_SYS_ICACHE_OFF
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void invalidate_icache_all(void)
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{
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unsigned long end, line_size;
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line_size = CACHE_LINE_SIZE(ICACHE);
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end = line_size * CACHE_WAY(ICACHE) * CACHE_SET(ICACHE);
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do {
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end -= line_size;
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__asm__ volatile ("\n\tcctl %0, L1I_IX_INVAL" : : "r" (end));
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end -= line_size;
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__asm__ volatile ("\n\tcctl %0, L1I_IX_INVAL" : : "r" (end));
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end -= line_size;
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__asm__ volatile ("\n\tcctl %0, L1I_IX_INVAL" : : "r" (end));
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end -= line_size;
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__asm__ volatile ("\n\tcctl %0, L1I_IX_INVAL" : : "r" (end));
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} while (end > 0);
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}
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void invalidate_icache_range(unsigned long start, unsigned long end)
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{
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unsigned long line_size;
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line_size = CACHE_LINE_SIZE(ICACHE);
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while (end > start) {
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asm volatile (
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"\n\tcctl %0, L1I_VA_INVAL"
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:
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: "r"(start)
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);
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start += line_size;
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}
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}
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void icache_enable(void)
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{
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asm volatile (
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"mfsr $p0, $mr8\n\t"
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"ori $p0, $p0, 0x01\n\t"
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"mtsr $p0, $mr8\n\t"
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"isb\n\t"
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);
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}
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void icache_disable(void)
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{
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asm volatile (
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"mfsr $p0, $mr8\n\t"
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"li $p1, ~0x01\n\t"
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"and $p0, $p0, $p1\n\t"
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"mtsr $p0, $mr8\n\t"
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"isb\n\t"
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);
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}
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int icache_status(void)
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{
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int ret;
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asm volatile (
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"mfsr $p0, $mr8\n\t"
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"andi %0, $p0, 0x01\n\t"
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: "=r" (ret)
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:
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: "memory"
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);
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return ret;
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}
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#else
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void invalidate_icache_all(void)
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{
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}
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void invalidate_icache_range(unsigned long start, unsigned long end)
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{
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}
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void icache_enable(void)
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{
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}
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void icache_disable(void)
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{
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}
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int icache_status(void)
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{
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return 0;
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}
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#endif
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#ifndef CONFIG_SYS_DCACHE_OFF
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void dcache_wbinval_all(void)
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{
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unsigned long end, line_size;
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line_size = CACHE_LINE_SIZE(DCACHE);
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end = line_size * CACHE_WAY(DCACHE) * CACHE_SET(DCACHE);
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do {
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end -= line_size;
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__asm__ volatile ("\n\tcctl %0, L1D_IX_WB" : : "r" (end));
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__asm__ volatile ("\n\tcctl %0, L1D_IX_INVAL" : : "r" (end));
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end -= line_size;
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__asm__ volatile ("\n\tcctl %0, L1D_IX_WB" : : "r" (end));
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__asm__ volatile ("\n\tcctl %0, L1D_IX_INVAL" : : "r" (end));
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end -= line_size;
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__asm__ volatile ("\n\tcctl %0, L1D_IX_WB" : : "r" (end));
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__asm__ volatile ("\n\tcctl %0, L1D_IX_INVAL" : : "r" (end));
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end -= line_size;
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__asm__ volatile ("\n\tcctl %0, L1D_IX_WB" : : "r" (end));
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__asm__ volatile ("\n\tcctl %0, L1D_IX_INVAL" : : "r" (end));
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} while (end > 0);
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}
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void flush_dcache_range(unsigned long start, unsigned long end)
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{
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unsigned long line_size;
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line_size = CACHE_LINE_SIZE(DCACHE);
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while (end > start) {
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asm volatile (
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"\n\tcctl %0, L1D_VA_WB"
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"\n\tcctl %0, L1D_VA_INVAL" : : "r" (start)
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);
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start += line_size;
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}
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}
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void invalidate_dcache_range(unsigned long start, unsigned long end)
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{
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unsigned long line_size;
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line_size = CACHE_LINE_SIZE(DCACHE);
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while (end > start) {
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asm volatile (
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"\n\tcctl %0, L1D_VA_INVAL" : : "r"(start)
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);
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start += line_size;
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}
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}
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void dcache_enable(void)
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{
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asm volatile (
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"mfsr $p0, $mr8\n\t"
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"ori $p0, $p0, 0x02\n\t"
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"mtsr $p0, $mr8\n\t"
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"isb\n\t"
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);
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}
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void dcache_disable(void)
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{
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asm volatile (
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"mfsr $p0, $mr8\n\t"
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"li $p1, ~0x02\n\t"
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"and $p0, $p0, $p1\n\t"
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"mtsr $p0, $mr8\n\t"
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"isb\n\t"
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);
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}
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int dcache_status(void)
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{
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int ret;
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asm volatile (
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"mfsr $p0, $mr8\n\t"
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"andi %0, $p0, 0x02\n\t"
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: "=r" (ret)
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:
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: "memory"
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);
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return ret;
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}
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#else
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void dcache_wbinval_all(void)
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{
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}
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void flush_dcache_range(unsigned long start, unsigned long end)
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{
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}
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void invalidate_dcache_range(unsigned long start, unsigned long end)
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{
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}
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void dcache_enable(void)
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{
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}
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void dcache_disable(void)
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{
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}
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int dcache_status(void)
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{
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return 0;
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}
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#endif
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void flush_dcache_all(void)
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{
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dcache_wbinval_all();
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}
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void cache_flush(void)
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{
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flush_dcache_all();
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invalidate_icache_all();
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}
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void flush_cache(unsigned long addr, unsigned long size)
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{
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flush_dcache_range(addr, addr + size);
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invalidate_icache_range(addr, addr + size);
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}
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