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author | Michael Hennerich <michael.hennerich@analog.com> | 2008-04-24 01:32:41 +0200 |
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committer | Bryan Wu <cooloney@kernel.org> | 2008-04-24 01:32:41 +0200 |
commit | a81501af19830ff43688781edad7e9c0cbd668af (patch) | |
tree | 856be99eb74bfc5e6cf20369b633107d8d4170f6 /include/asm-blackfin/mach-bf548 | |
parent | [Blackfin] arch: add implicit icplb for the bootrom so we can use the utility... (diff) | |
download | linux-a81501af19830ff43688781edad7e9c0cbd668af.tar.xz linux-a81501af19830ff43688781edad7e9c0cbd668af.zip |
[Blackfin] arch: Prevent potential Core Hang situation
If the new value written to the PLL_CTL or VR_CTL register is the
same as the previous value, the PLL wake-up will occur immediately
(PLL is already locked), but the core and system clock will be
bypassed for the PLL_LOCKCNT duration. For this interval, code will
execute at the CLKIN rate instead of at the expected CCLK rate.
Software should guard against this condition by comparing the
current value to the new value before writing the new value.
Signed-off-by: Michael Hennerich <michael.hennerich@analog.com>
Signed-off-by: Bryan Wu <cooloney@kernel.org>
Diffstat (limited to 'include/asm-blackfin/mach-bf548')
-rw-r--r-- | include/asm-blackfin/mach-bf548/cdefBF54x_base.h | 37 |
1 files changed, 33 insertions, 4 deletions
diff --git a/include/asm-blackfin/mach-bf548/cdefBF54x_base.h b/include/asm-blackfin/mach-bf548/cdefBF54x_base.h index 33c67500717c..57ac8cb9b1f6 100644 --- a/include/asm-blackfin/mach-bf548/cdefBF54x_base.h +++ b/include/asm-blackfin/mach-bf548/cdefBF54x_base.h @@ -43,7 +43,33 @@ /* PLL Registers */ #define bfin_read_PLL_CTL() bfin_read16(PLL_CTL) -#define bfin_write_PLL_CTL(val) bfin_write16(PLL_CTL, val) +/* Writing to PLL_CTL initiates a PLL relock sequence. */ +static __inline__ void bfin_write_PLL_CTL(unsigned int val) +{ + unsigned long flags, iwr0, iwr1, iwr2; + + if (val == bfin_read_PLL_CTL()) + return; + + local_irq_save(flags); + /* Enable the PLL Wakeup bit in SIC IWR */ + iwr0 = bfin_read32(SIC_IWR0); + iwr1 = bfin_read32(SIC_IWR1); + iwr2 = bfin_read32(SIC_IWR2); + /* Only allow PPL Wakeup) */ + bfin_write32(SIC_IWR0, IWR_ENABLE(0)); + bfin_write32(SIC_IWR1, 0); + bfin_write32(SIC_IWR2, 0); + + bfin_write16(PLL_CTL, val); + SSYNC(); + asm("IDLE;"); + + bfin_write32(SIC_IWR0, iwr0); + bfin_write32(SIC_IWR1, iwr1); + bfin_write32(SIC_IWR2, iwr2); + local_irq_restore(flags); +} #define bfin_read_PLL_DIV() bfin_read16(PLL_DIV) #define bfin_write_PLL_DIV(val) bfin_write16(PLL_DIV, val) #define bfin_read_VR_CTL() bfin_read16(VR_CTL) @@ -52,6 +78,10 @@ static __inline__ void bfin_write_VR_CTL(unsigned int val) { unsigned long flags, iwr0, iwr1, iwr2; + if (val == bfin_read_VR_CTL()) + return; + + local_irq_save(flags); /* Enable the PLL Wakeup bit in SIC IWR */ iwr0 = bfin_read32(SIC_IWR0); iwr1 = bfin_read32(SIC_IWR1); @@ -63,13 +93,12 @@ static __inline__ void bfin_write_VR_CTL(unsigned int val) bfin_write16(VR_CTL, val); SSYNC(); - - local_irq_save(flags); asm("IDLE;"); - local_irq_restore(flags); + bfin_write32(SIC_IWR0, iwr0); bfin_write32(SIC_IWR1, iwr1); bfin_write32(SIC_IWR2, iwr2); + local_irq_restore(flags); } #define bfin_read_PLL_STAT() bfin_read16(PLL_STAT) #define bfin_write_PLL_STAT(val) bfin_write16(PLL_STAT, val) |