add 3d game
I added a simple 3D maze game that is a pretty impressive demo of what Microwatt can do. It's based on #347 Signed-off-by: Jacob Lifshay <programmerjake@gmail.com>pull/354/head^2
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9cb4948690
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73835ceb1b
@ -1,11 +1,24 @@
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#pragma once
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#include <stdbool.h>
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#include <stddef.h>
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#ifdef __cplusplus
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extern "C"
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{
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#endif
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void console_init(void);
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void console_set_irq_en(bool rx_irq, bool tx_irq);
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int getchar(void);
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bool console_havechar(void);
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int putchar(int c);
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int puts(const char *str);
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#ifndef __USE_LIBC
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size_t strlen(const char *s);
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#endif
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#ifdef __cplusplus
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}
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#endif
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#pragma once
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#include <stdbool.h>
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#ifdef __cplusplus
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extern "C"
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{
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#endif
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int usb_getchar(void);
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bool usb_havechar(void);
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int usb_putchar(int c);
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int usb_puts(const char *str);
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void usb_console_init(void);
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#ifdef __cplusplus
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}
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#endif
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@ -0,0 +1,6 @@
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usb_3d_game_emu
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*.o
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*.elf
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*.hex
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*.bin
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ARCH = $(shell uname -m)
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ifneq ("$(ARCH)", "ppc64")
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ifneq ("$(ARCH)", "ppc64le")
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CROSS_COMPILE ?= powerpc64le-linux-gnu-
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endif
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endif
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CC = $(CROSS_COMPILE)gcc
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CXX = $(CROSS_COMPILE)g++
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LD = $(CROSS_COMPILE)ld
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OBJCOPY = $(CROSS_COMPILE)objcopy
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COMMON_FLAGS = -Os -g -Wall -msoft-float -mno-string -mno-multiple -mno-vsx -mno-altivec -mlittle-endian -fno-stack-protector -mstrict-align -ffreestanding -fdata-sections -ffunction-sections -I../include
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COMMON_FLAGS += -Werror -Wextra
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CXXFLAGS = $(COMMON_FLAGS) -std=c++14 -fno-exceptions
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CFLAGS = $(COMMON_FLAGS) -std=c99
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ASFLAGS = $(CFLAGS)
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LDFLAGS = -T powerpc.lds
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all: usb_3d_game.hex
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console.o: ../lib/console.c
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$(CC) $(CPPFLAGS) $(CFLAGS) -c $< -o $@
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liteuart_console.o: ../lib/liteuart_console.c
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$(CC) $(CPPFLAGS) $(CFLAGS) -c $< -o $@
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usb_3d_game.elf: usb_3d_game.o head.o console.o liteuart_console.o
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$(LD) $(LDFLAGS) -o $@ $^
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usb_3d_game.bin: usb_3d_game.elf
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$(OBJCOPY) -O binary $^ $@
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usb_3d_game.hex: usb_3d_game.bin
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../scripts/bin2hex.py $^ > $@
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usb_3d_game_emu: usb_3d_game.cpp
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c++ -g -Wall -std=c++14 -Werror -Wextra -o usb_3d_game_emu usb_3d_game.cpp -DEMULATE_TARGET
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clean:
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@rm -f *.o usb_3d_game.elf usb_3d_game.bin usb_3d_game.hex usb_3d_game_emu
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distclean: clean
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rm -f *~
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@ -0,0 +1,39 @@
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# 3D Maze Game
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Based on: <https://github.com/programmerjake/rv32/tree/v0.1.0.1-alpha/software>
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# Run without FPGA/hardware-simulation
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Resize your terminal to be at least 100x76.
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Building:
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```bash
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cd usb_3d_game
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make usb_3d_game_emu
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```
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Running:
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```bash
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./usb_3d_game_emu
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```
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# Run on OrangeCrab v0.2.1
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Set the OrangeCrab into firmware upload mode by plugging it in to USB while the button is pressed, then run the following commands:
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Building/Flashing:
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```bash
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(cd usb_3d_game; make)
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sudo make FPGA_TARGET=ORANGE-CRAB-0.21 dfuprog DOCKER=1 LITEDRAM_GHDL_ARG=-gUSE_LITEDRAM=false RAM_INIT_FILE=usb_3d_game/usb_3d_game.hex MEMORY_SIZE=$((1<<18))
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```
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Then, in a separate terminal that you've resized to be at least 100x76, run (replacing ttyACM0 with whatever serial device the OrangeCrab is):
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```bash
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sudo tio /dev/ttyACM0
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```
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# Controls
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Use WASD or the Arrow keys to move around. Press Ctrl+C to quit or restart.
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The goal is a set of flashing blocks, nothing special yet happens when you reach them though.
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/* Copyright 2013-2014 IBM Corp.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
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* implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#define STACK_TOP 0x20000
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#define FIXUP_ENDIAN \
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tdi 0,0,0x48; /* Reverse endian of b . + 8 */ \
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b 191f; /* Skip trampoline if endian is good */ \
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.long 0xa600607d; /* mfmsr r11 */ \
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.long 0x01006b69; /* xori r11,r11,1 */ \
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.long 0x05009f42; /* bcl 20,31,$+4 */ \
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.long 0xa602487d; /* mflr r10 */ \
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.long 0x14004a39; /* addi r10,r10,20 */ \
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.long 0xa64b5a7d; /* mthsrr0 r10 */ \
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.long 0xa64b7b7d; /* mthsrr1 r11 */ \
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.long 0x2402004c; /* hrfid */ \
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191:
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/* Load an immediate 64-bit value into a register */
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#define LOAD_IMM64(r, e) \
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lis r,(e)@highest; \
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ori r,r,(e)@higher; \
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rldicr r,r, 32, 31; \
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oris r,r, (e)@h; \
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ori r,r, (e)@l;
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.section ".head","ax"
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/*
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* Microwatt currently enters in LE mode at 0x0, so we don't need to
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* do any endian fix ups>
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*/
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. = 0
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.global _start
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_start:
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b boot_entry
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/* QEMU enters at 0x10 */
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. = 0x10
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FIXUP_ENDIAN
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b boot_entry
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. = 0x100
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FIXUP_ENDIAN
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b boot_entry
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.global boot_entry
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boot_entry:
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/* setup stack */
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LOAD_IMM64(%r1, STACK_TOP - 0x100)
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LOAD_IMM64(%r12, main)
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mtctr %r12,
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bctrl
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b .
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#define EXCEPTION(nr) \
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.= nr ;\
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b .
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/* More exception stubs */
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EXCEPTION(0x300)
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EXCEPTION(0x380)
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EXCEPTION(0x400)
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EXCEPTION(0x480)
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EXCEPTION(0x500)
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EXCEPTION(0x600)
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EXCEPTION(0x700)
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EXCEPTION(0x800)
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EXCEPTION(0x900)
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EXCEPTION(0x980)
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EXCEPTION(0xa00)
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EXCEPTION(0xb00)
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EXCEPTION(0xc00)
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EXCEPTION(0xd00)
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EXCEPTION(0xe00)
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EXCEPTION(0xe20)
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EXCEPTION(0xe40)
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EXCEPTION(0xe60)
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EXCEPTION(0xe80)
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EXCEPTION(0xf00)
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EXCEPTION(0xf20)
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EXCEPTION(0xf40)
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EXCEPTION(0xf60)
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EXCEPTION(0xf80)
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#if 0
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EXCEPTION(0x1000)
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EXCEPTION(0x1100)
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EXCEPTION(0x1200)
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EXCEPTION(0x1300)
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EXCEPTION(0x1400)
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EXCEPTION(0x1500)
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EXCEPTION(0x1600)
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#endif
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SECTIONS
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{
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. = 0;
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.head : {
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KEEP(*(.head))
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}
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. = 0x1000;
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.text : { *(.text) }
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. = 0x2a000;
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.data : { *(.data) }
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.rodata : { *(.rodata) }
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.bss : { *(.bss) }
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}
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