55caa76834
""" On Thu, Dec 02, 2010 at 01:15:10PM -0800, Seth Goldberg wrote: When assembling grub-core/kern/i386/pc/startup.S, gas on some platforms chokes on this line: movl $((LOCAL(bypass_table_end) - LOCAL(bypass_table)) / 2), %ecx Because on non i386-linux targets, '/' is used as a comment delimiter for compatibility purposes. This can be overridden with the --divide switch. Since the default for gas on these platforms is to use he division operator as a comment delimiter, the "-Wa,--divide" flags need to be passed on the gcc command line when assembling such files. Can we just use>> 1 instead? Sure, that works for me :). """ Which led to two thoughts, 1) we're not using gas to assemble this code so we don't need this compile time option, and 2) for both portability speed where we do divide by 2 the bit shift operator is a much better solution. So I've removed the compiler flag.
275 lines
7.8 KiB
Makefile
275 lines
7.8 KiB
Makefile
OBJS = \
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bio.o\
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console.o\
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exec.o\
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file.o\
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fs.o\
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ide.o\
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ioapic.o\
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kalloc.o\
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kbd.o\
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lapic.o\
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log.o\
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main.o\
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mp.o\
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picirq.o\
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pipe.o\
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proc.o\
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spinlock.o\
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string.o\
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swtch.o\
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syscall.o\
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sysfile.o\
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sysproc.o\
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timer.o\
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trapasm.o\
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trap.o\
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uart.o\
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vectors.o\
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vm.o\
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# Cross-compiling (e.g., on Mac OS X)
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#TOOLPREFIX = i386-jos-elf-
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# Using native tools (e.g., on X86 Linux)
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#TOOLPREFIX =
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# Try to infer the correct TOOLPREFIX if not set
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ifndef TOOLPREFIX
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TOOLPREFIX := $(shell if i386-jos-elf-objdump -i 2>&1 | grep '^elf32-i386$$' >/dev/null 2>&1; \
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then echo 'i386-jos-elf-'; \
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elif objdump -i 2>&1 | grep 'elf32-i386' >/dev/null 2>&1; \
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then echo ''; \
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else echo "***" 1>&2; \
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echo "*** Error: Couldn't find an i386-*-elf version of GCC/binutils." 1>&2; \
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echo "*** Is the directory with i386-jos-elf-gcc in your PATH?" 1>&2; \
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echo "*** If your i386-*-elf toolchain is installed with a command" 1>&2; \
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echo "*** prefix other than 'i386-jos-elf-', set your TOOLPREFIX" 1>&2; \
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echo "*** environment variable to that prefix and run 'make' again." 1>&2; \
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echo "*** To turn off this error, run 'gmake TOOLPREFIX= ...'." 1>&2; \
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echo "***" 1>&2; exit 1; fi)
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endif
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# If the makefile can't find QEMU, specify its path here
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QEMU = qemu-system-x86_64
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# Try to infer the correct QEMU
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ifndef QEMU
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QEMU = $(shell if which qemu > /dev/null; \
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then echo qemu; exit; \
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else \
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qemu=/Applications/Q.app/Contents/MacOS/i386-softmmu.app/Contents/MacOS/i386-softmmu; \
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if test -x $$qemu; then echo $$qemu; exit; fi; fi; \
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echo "***" 1>&2; \
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echo "*** Error: Couldn't find a working QEMU executable." 1>&2; \
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echo "*** Is the directory containing the qemu binary in your PATH" 1>&2; \
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echo "*** or have you tried setting the QEMU variable in Makefile?" 1>&2; \
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echo "***" 1>&2; exit 1)
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endif
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CC = $(TOOLPREFIX)gcc
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AS = $(TOOLPREFIX)gas
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LD = $(TOOLPREFIX)ld
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OBJCOPY = $(TOOLPREFIX)objcopy
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OBJDUMP = $(TOOLPREFIX)objdump
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#CFLAGS = -fno-pic -static -fno-builtin -fno-strict-aliasing -O2 -Wall -MD -ggdb -m32 -Werror -fno-omit-frame-pointer
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CFLAGS = -fno-pic -static -fno-builtin -fno-strict-aliasing -Wall -MD -ggdb -m32 -Werror -fno-omit-frame-pointer
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CFLAGS += $(shell $(CC) -fno-stack-protector -E -x c /dev/null >/dev/null 2>&1 && echo -fno-stack-protector)
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ASFLAGS = -m32 -gdwarf-2
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# FreeBSD ld wants ``elf_i386_fbsd''
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LDFLAGS += -m $(shell $(LD) -V | grep elf_i386 2>/dev/null)
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xv6.img: bootblock kernel fs.img
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dd if=/dev/zero of=xv6.img count=10000
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dd if=bootblock of=xv6.img conv=notrunc
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dd if=kernel of=xv6.img seek=1 conv=notrunc
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xv6memfs.img: bootblock kernelmemfs
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dd if=/dev/zero of=xv6memfs.img count=10000
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dd if=bootblock of=xv6memfs.img conv=notrunc
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dd if=kernelmemfs of=xv6memfs.img seek=1 conv=notrunc
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bootblock: bootasm.S bootmain.c
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$(CC) $(CFLAGS) -fno-pic -O -nostdinc -I. -c bootmain.c
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$(CC) $(CFLAGS) -fno-pic -nostdinc -I. -c bootasm.S
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$(LD) $(LDFLAGS) -N -e start -Ttext 0x7C00 -o bootblock.o bootasm.o bootmain.o
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$(OBJDUMP) -S bootblock.o > bootblock.asm
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$(OBJCOPY) -S -O binary -j .text bootblock.o bootblock
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./sign.pl bootblock
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entryother: entryother.S
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$(CC) $(CFLAGS) -fno-pic -nostdinc -I. -c entryother.S
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$(LD) $(LDFLAGS) -N -e start -Ttext 0x7000 -o bootblockother.o entryother.o
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$(OBJCOPY) -S -O binary -j .text bootblockother.o entryother
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$(OBJDUMP) -S bootblockother.o > entryother.asm
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initcode: initcode.S
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$(CC) $(CFLAGS) -nostdinc -I. -c initcode.S
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$(LD) $(LDFLAGS) -N -e start -Ttext 0 -o initcode.out initcode.o
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$(OBJCOPY) -S -O binary initcode.out initcode
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$(OBJDUMP) -S initcode.o > initcode.asm
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kernel: $(OBJS) entry.o entryother initcode kernel.ld
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$(LD) $(LDFLAGS) -T kernel.ld -o kernel entry.o $(OBJS) -b binary initcode entryother
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$(OBJDUMP) -S kernel > kernel.asm
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$(OBJDUMP) -t kernel | sed '1,/SYMBOL TABLE/d; s/ .* / /; /^$$/d' > kernel.sym
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# kernelmemfs is a copy of kernel that maintains the
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# disk image in memory instead of writing to a disk.
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# This is not so useful for testing persistent storage or
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# exploring disk buffering implementations, but it is
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# great for testing the kernel on real hardware without
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# needing a scratch disk.
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MEMFSOBJS = $(filter-out ide.o,$(OBJS)) memide.o
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kernelmemfs: $(MEMFSOBJS) entry.o entryother initcode fs.img
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$(LD) $(LDFLAGS) -Ttext 0x100000 -e main -o kernelmemfs entry.o $(MEMFSOBJS) -b binary initcode entryother fs.img
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$(OBJDUMP) -S kernelmemfs > kernelmemfs.asm
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$(OBJDUMP) -t kernelmemfs | sed '1,/SYMBOL TABLE/d; s/ .* / /; /^$$/d' > kernelmemfs.sym
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tags: $(OBJS) entryother.S _init
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etags *.S *.c
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vectors.S: vectors.pl
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perl vectors.pl > vectors.S
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ULIB = ulib.o usys.o printf.o umalloc.o
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_%: %.o $(ULIB)
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$(LD) $(LDFLAGS) -N -e main -Ttext 0 -o $@ $^
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$(OBJDUMP) -S $@ > $*.asm
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$(OBJDUMP) -t $@ | sed '1,/SYMBOL TABLE/d; s/ .* / /; /^$$/d' > $*.sym
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_forktest: forktest.o $(ULIB)
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# forktest has less library code linked in - needs to be small
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# in order to be able to max out the proc table.
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$(LD) $(LDFLAGS) -N -e main -Ttext 0 -o _forktest forktest.o ulib.o usys.o
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$(OBJDUMP) -S _forktest > forktest.asm
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mkfs: mkfs.c fs.h
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gcc -Werror -Wall -o mkfs mkfs.c
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# Prevent deletion of intermediate files, e.g. cat.o, after first build, so
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# that disk image changes after first build are persistent until clean. More
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# details:
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# http://www.gnu.org/software/make/manual/html_node/Chained-Rules.html
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.PRECIOUS: %.o
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UPROGS=\
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_cat\
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_echo\
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_forktest\
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_grep\
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_init\
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_kill\
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_ln\
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_ls\
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_mkdir\
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_rm\
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_sh\
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_stressfs\
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_usertests\
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_wc\
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_zombie\
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fs.img: mkfs README $(UPROGS)
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./mkfs fs.img README $(UPROGS)
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-include *.d
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clean:
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rm -f *.tex *.dvi *.idx *.aux *.log *.ind *.ilg \
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*.o *.d *.asm *.sym vectors.S bootblock entryother \
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initcode initcode.out kernel xv6.img fs.img kernelmemfs mkfs \
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.gdbinit \
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$(UPROGS)
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# make a printout
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FILES = $(shell grep -v '^\#' runoff.list)
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PRINT = runoff.list runoff.spec README toc.hdr toc.ftr $(FILES)
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xv6.pdf: $(PRINT)
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./runoff
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ls -l xv6.pdf
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print: xv6.pdf
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# run in emulators
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bochs : fs.img xv6.img
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if [ ! -e .bochsrc ]; then ln -s dot-bochsrc .bochsrc; fi
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bochs -q
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# try to generate a unique GDB port
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GDBPORT = $(shell expr `id -u` % 5000 + 25000)
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# QEMU's gdb stub command line changed in 0.11
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QEMUGDB = $(shell if $(QEMU) -help | grep -q '^-gdb'; \
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then echo "-gdb tcp::$(GDBPORT)"; \
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else echo "-s -p $(GDBPORT)"; fi)
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ifndef CPUS
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CPUS := 2
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endif
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QEMUOPTS = -hdb fs.img xv6.img -smp $(CPUS) -m 512 $(QEMUEXTRA)
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qemu: fs.img xv6.img
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$(QEMU) -serial mon:stdio $(QEMUOPTS)
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qemu-memfs: xv6memfs.img
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$(QEMU) xv6memfs.img -smp $(CPUS)
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qemu-nox: fs.img xv6.img
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$(QEMU) -nographic $(QEMUOPTS)
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.gdbinit: .gdbinit.tmpl
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sed "s/localhost:1234/localhost:$(GDBPORT)/" < $^ > $@
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qemu-gdb: fs.img xv6.img .gdbinit
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@echo "*** Now run 'gdb'." 1>&2
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$(QEMU) -serial mon:stdio $(QEMUOPTS) -S $(QEMUGDB)
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qemu-nox-gdb: fs.img xv6.img .gdbinit
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@echo "*** Now run 'gdb'." 1>&2
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$(QEMU) -nographic $(QEMUOPTS) -S $(QEMUGDB)
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# CUT HERE
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# prepare dist for students
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# after running make dist, probably want to
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# rename it to rev0 or rev1 or so on and then
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# check in that version.
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EXTRA=\
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mkfs.c ulib.c user.h cat.c echo.c forktest.c grep.c kill.c\
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ln.c ls.c mkdir.c rm.c stressfs.c usertests.c wc.c zombie.c\
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printf.c umalloc.c\
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README dot-bochsrc *.pl toc.* runoff runoff1 runoff.list\
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.gdbinit.tmpl gdbutil\
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dist:
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rm -rf dist
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mkdir dist
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for i in $(FILES); \
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do \
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grep -v PAGEBREAK $$i >dist/$$i; \
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done
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sed '/CUT HERE/,$$d' Makefile >dist/Makefile
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echo >dist/runoff.spec
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cp $(EXTRA) dist
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dist-test:
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rm -rf dist
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make dist
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rm -rf dist-test
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mkdir dist-test
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cp dist/* dist-test
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cd dist-test; $(MAKE) print
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cd dist-test; $(MAKE) bochs || true
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cd dist-test; $(MAKE) qemu
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# update this rule (change rev#) when it is time to
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# make a new revision.
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tar:
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rm -rf /tmp/xv6
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mkdir -p /tmp/xv6
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cp dist/* dist/.gdbinit.tmpl /tmp/xv6
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(cd /tmp; tar cf - xv6) | gzip >xv6-rev5.tar.gz
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.PHONY: dist-test dist
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