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@ -1,5 +1,5 @@ |
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/*
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* Copyright (c) 2015-2018, ARM Limited and Contributors. All rights reserved. |
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* Copyright (c) 2015-2019, ARM Limited and Contributors. All rights reserved. |
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* |
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* SPDX-License-Identifier: BSD-3-Clause |
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*/ |
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@ -27,23 +27,32 @@ void udelay(uint32_t usec) |
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(timer_ops->clk_div != 0U) && |
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(timer_ops->get_timer_value != NULL)); |
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uint32_t start, delta, total_delta; |
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uint32_t start, delta; |
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uint64_t total_delta; |
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assert(usec < (UINT32_MAX / timer_ops->clk_div)); |
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assert(usec < (UINT64_MAX / timer_ops->clk_div)); |
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start = timer_ops->get_timer_value(); |
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/* Add an extra tick to avoid delaying less than requested. */ |
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total_delta = |
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div_round_up(usec * timer_ops->clk_div, |
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div_round_up((uint64_t)usec * timer_ops->clk_div, |
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timer_ops->clk_mult) + 1U; |
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/*
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* Precaution for the total_delta ~ UINT32_MAX and the fact that we |
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* cannot catch every tick of the timer. |
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* For example 100MHz timer over 25MHz APB will miss at least 4 ticks. |
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* 1000U is an arbitrary big number which is believed to be sufficient. |
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*/ |
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assert(total_delta < (UINT32_MAX - 1000U)); |
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do { |
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/*
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* If the timer value wraps around, the subtraction will |
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* overflow and it will still give the correct result. |
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* delta is decreasing counter |
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*/ |
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delta = start - timer_ops->get_timer_value(); /* Decreasing counter */ |
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delta = start - timer_ops->get_timer_value(); |
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} while (delta < total_delta); |
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} |
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@ -54,6 +63,7 @@ void udelay(uint32_t usec) |
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***********************************************************/ |
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void mdelay(uint32_t msec) |
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{ |
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assert((msec * 1000UL) < UINT32_MAX); |
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udelay(msec * 1000U); |
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} |
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