2019-11-11 09:43:05 +08:00
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use r0::zero_bss;
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use crate::regs::{RegisterR, RegisterW};
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use crate::cortex_a9::{asm, regs::*, mmu};
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2019-11-16 06:54:26 +08:00
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use crate::zynq::mpcore;
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2019-11-11 09:43:05 +08:00
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extern "C" {
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static mut __bss_start: u32;
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static mut __bss_end: u32;
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static mut __stack_start: u32;
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}
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2019-11-16 06:54:26 +08:00
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static mut CORE1_STACK: u32 = 0;
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2019-11-11 09:43:05 +08:00
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#[link_section = ".text.boot"]
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#[no_mangle]
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#[naked]
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pub unsafe extern "C" fn _boot_cores() -> ! {
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const CORE_MASK: u32 = 0x3;
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match MPIDR.read() & CORE_MASK {
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0 => {
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SP.write(&mut __stack_start as *mut _ as u32);
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boot_core0();
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}
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2019-11-16 06:54:26 +08:00
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1 => {
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// Wait for a first `sev` so that `CORE1_STACK` is cleared
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// by `zero_bss()` on core 0.
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2019-11-11 09:43:05 +08:00
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asm::wfe();
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2019-11-16 06:54:26 +08:00
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while CORE1_STACK == 0 {
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asm::wfe();
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}
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SP.write(CORE1_STACK);
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boot_core1();
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}
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_ => unreachable!(),
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2019-11-11 09:43:05 +08:00
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}
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}
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#[naked]
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#[inline(never)]
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unsafe fn boot_core0() -> ! {
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l1_cache_init();
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2019-11-16 06:54:26 +08:00
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let mpcore = mpcore::RegisterBlock::new();
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mpcore.scu_invalidate.invalidate_all_cores();
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2019-11-11 09:43:05 +08:00
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zero_bss(&mut __bss_start, &mut __bss_end);
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let mmu_table = mmu::L1Table::get()
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.setup_flat_layout();
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mmu::with_mmu(mmu_table, || {
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2019-11-16 06:54:26 +08:00
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mpcore.scu_control.start();
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2019-11-11 09:43:05 +08:00
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crate::main();
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panic!("return from main");
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});
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}
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2019-11-16 06:54:26 +08:00
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#[naked]
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#[inline(never)]
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unsafe fn boot_core1() -> ! {
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l1_cache_init();
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let mpcore = mpcore::RegisterBlock::new();
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mpcore.scu_invalidate.invalidate_core1();
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let mmu_table = mmu::L1Table::get();
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mmu::with_mmu(mmu_table, || {
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crate::main_core1();
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panic!("return from main_core1");
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});
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}
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2019-11-11 09:43:05 +08:00
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fn l1_cache_init() {
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use crate::cortex_a9::cache::*;
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// Invalidate TLBs
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tlbiall();
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// Invalidate I-Cache
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iciallu();
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// Invalidate Branch Predictor Array
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bpiall();
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// Invalidate D-Cache
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//
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// NOTE: It is both faster and correct to only invalidate instead
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// of also flush the cache (as was done before with
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// `dccisw()`) and it is correct to perform this operation
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// for all of the L1 data cache rather than a (previously
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// unspecified) combination of one cache set and one cache
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// way.
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dciall();
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}
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