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[/] [aor3000/] [trunk/] [sim/] [tester/] [test_tlb_fetch.cpp] - Rev 2
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/* * This file is subject to the terms and conditions of the BSD License. See * the file "LICENSE" in the main directory of this archive for more details. * * Copyright (C) 2014 Aleksander Osman */ #include <cstdio> #include <cstdlib> #include "tests.h" //------------------------------------------------------------------------------ void tlb_fetch_till_exc_init(tst_t *tst, shared_mem_t *shared_ptr) { for(int i=1; i<32; i++) shared_ptr->initial.reg[i-1] = rand_uint32(); shared_ptr->initial.pc = (rand() % 2)? 0x00091000 : 0xF0001000; shared_ptr->initial.index_p = rand() & 0x1; shared_ptr->initial.index_index = rand() & 0x3F; shared_ptr->initial.random = rand() & 0x3F; shared_ptr->initial.entrylo_pfn = rand() & 0xFFFFF; shared_ptr->initial.entrylo_n = rand() & 0x1; shared_ptr->initial.entrylo_d = rand() & 0x1; shared_ptr->initial.entrylo_v = rand() & 0x1; shared_ptr->initial.entrylo_g = rand() & 0x1; shared_ptr->initial.context_ptebase = rand() & 0x7FF; shared_ptr->initial.context_badvpn = rand() & 0x7FFFF; shared_ptr->initial.bad_vaddr = rand_uint32(); shared_ptr->initial.entryhi_vpn = rand() & 0xFFFFF; shared_ptr->initial.entryhi_asid = rand() & 0x3F; shared_ptr->initial.sr_cp_usable = rand() & 0xF; shared_ptr->initial.sr_rev_endian = rand() & 0x1; shared_ptr->initial.sr_bootstrap_vec = rand() & 0x1; shared_ptr->initial.sr_tlb_shutdown = rand() & 0x1; shared_ptr->initial.sr_parity_err = rand() & 0x1; shared_ptr->initial.sr_cache_miss = rand() & 0x1; shared_ptr->initial.sr_parity_zero = rand() & 0x1; shared_ptr->initial.sr_switch_cache = 0; //rand() & 0x1; shared_ptr->initial.sr_isolate_cache = 0; //rand() & 0x1; shared_ptr->initial.sr_irq_mask = rand() & 0xFF; shared_ptr->initial.sr_ku_ie = rand() & 0x3F; shared_ptr->initial.cause_branch_delay = rand() & 0x1; shared_ptr->initial.cause_cp_error = rand() & 0x3; shared_ptr->initial.cause_irq_pending = 0; shared_ptr->initial.cause_exc_code = rand() & 0x1F; shared_ptr->initial.epc = rand_uint32(); // uint32 vaddr_pc = shared_ptr->initial.pc; uint32 paddr_pc = 0x5000; shared_ptr->initial.tlb[55].vpn = (vaddr_pc >> 12) & 0xFFFFF; shared_ptr->initial.tlb[55].asid = ((rand() % 5) == 0)? (rand() % 0x1F) : shared_ptr->initial.entryhi_asid; shared_ptr->initial.tlb[55].pfn = (paddr_pc >> 12) & 0xFFFFF; shared_ptr->initial.tlb[55].n = rand() % 2; shared_ptr->initial.tlb[55].d = rand() % 2; shared_ptr->initial.tlb[55].v = rand() % 2; shared_ptr->initial.tlb[55].g = rand() % 2; // shared_ptr->initial.reg[0] = 5; // shared_ptr->irq2_at_event = 0xFFFFFFFF; shared_ptr->irq3_at_event = 0xFFFFFFFF; // uint32 *ptr = &shared_ptr->mem.ints[paddr_pc / 4]; for(int i=0; i<10; i++) { (*ptr) = 0; ptr++; } (*ptr) = (0b001000 << 26) | (0b00001 << 21) | (0b00001 << 16) | 0xFFFF; //SUB 1 from reg[0] (reg1) ptr++; (*ptr) = (0b000100 << 26) | (0b00000 << 21) | (0b00001 << 16) | 2; //BEQ ptr++; (*ptr) = 0; //delay slot ptr++; (*ptr) = (0b000010 << 26) | ((vaddr_pc >> 2) & 0x3FFFFFF); //J back ptr++; (*ptr) = 0; //delay slot ptr++; (*ptr) = rand() & 0x03FFFFC0; (*ptr) |= 0b001100; //SYSCALL ptr++; } //------------------------------------------------------------------------------