mirror of
https://github.com/cfenollosa/os-tutorial.git
synced 2024-10-27 20:34:19 +00:00
Merge d7469c76b3
into ce8e050d24
This commit is contained in:
commit
b863e67d68
@ -6,28 +6,29 @@ OBJ = ${C_SOURCES:.c=.o}
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# Change this if your cross-compiler is somewhere else
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CC = /usr/local/i386elfgcc/bin/i386-elf-gcc
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GDB = /usr/local/i386elfgcc/bin/i386-elf-gdb
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LD = /usr/local/i386elfgcc/bin/i386-elf-ld
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# -g: Use debugging symbols in gcc
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CFLAGS = -g
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# First rule is run by default
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os-image.bin: boot/bootsect.bin kernel.bin
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cat $^ > os-image.bin
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cat $^ > $@
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# '--oformat binary' deletes all symbols as a collateral, so we don't need
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# to 'strip' them manually on this case
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kernel.bin: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
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${LD} -o $@ -Ttext 0x1000 $^ --oformat binary
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# Used for debugging purposes
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kernel.elf: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^
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${LD} -o $@ -Ttext 0x1000 $^
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run: os-image.bin
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qemu-system-i386 -fda os-image.bin
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# Open the connection to qemu and load our kernel-object file with symbols
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debug: os-image.bin kernel.elf
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qemu-system-i386 -s -fda os-image.bin &
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qemu-system-i386 -s -S -fda os-image.bin &
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${GDB} -ex "target remote localhost:1234" -ex "symbol-file kernel.elf"
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# Generic rules for wildcards
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@ -6,28 +6,29 @@ OBJ = ${C_SOURCES:.c=.o}
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# Change this if your cross-compiler is somewhere else
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CC = /usr/local/i386elfgcc/bin/i386-elf-gcc
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GDB = /usr/local/i386elfgcc/bin/i386-elf-gdb
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LD = /usr/local/i386elfgcc/bin/i386-elf-ld
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# -g: Use debugging symbols in gcc
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CFLAGS = -g
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# First rule is run by default
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os-image.bin: boot/bootsect.bin kernel.bin
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cat $^ > os-image.bin
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cat $^ > $@
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# '--oformat binary' deletes all symbols as a collateral, so we don't need
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# to 'strip' them manually on this case
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kernel.bin: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
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${LD} -o $@ -Ttext 0x1000 $^ --oformat binary
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# Used for debugging purposes
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kernel.elf: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^
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${LD} -o $@ -Ttext 0x1000 $^
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run: os-image.bin
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qemu-system-i386 -fda os-image.bin
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# Open the connection to qemu and load our kernel-object file with symbols
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debug: os-image.bin kernel.elf
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qemu-system-i386 -s -fda os-image.bin &
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qemu-system-i386 -s -S -fda os-image.bin &
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${GDB} -ex "target remote localhost:1234" -ex "symbol-file kernel.elf"
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# Generic rules for wildcards
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@ -6,28 +6,29 @@ OBJ = ${C_SOURCES:.c=.o}
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# Change this if your cross-compiler is somewhere else
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CC = /usr/local/i386elfgcc/bin/i386-elf-gcc
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GDB = /usr/local/i386elfgcc/bin/i386-elf-gdb
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LD = /usr/local/i386elfgcc/bin/i386-elf-ld
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# -g: Use debugging symbols in gcc
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CFLAGS = -g
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# First rule is run by default
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os-image.bin: boot/bootsect.bin kernel.bin
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cat $^ > os-image.bin
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cat $^ > $@
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# '--oformat binary' deletes all symbols as a collateral, so we don't need
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# to 'strip' them manually on this case
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kernel.bin: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
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${LD} -o $@ -Ttext 0x1000 $^ --oformat binary
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# Used for debugging purposes
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kernel.elf: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^
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${LD} -o $@ -Ttext 0x1000 $^
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run: os-image.bin
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qemu-system-i386 -fda os-image.bin
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# Open the connection to qemu and load our kernel-object file with symbols
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debug: os-image.bin kernel.elf
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qemu-system-i386 -s -fda os-image.bin &
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qemu-system-i386 -s -S -fda os-image.bin &
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${GDB} -ex "target remote localhost:1234" -ex "symbol-file kernel.elf"
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# Generic rules for wildcards
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@ -6,28 +6,29 @@ OBJ = ${C_SOURCES:.c=.o}
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# Change this if your cross-compiler is somewhere else
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CC = /usr/local/i386elfgcc/bin/i386-elf-gcc
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GDB = /usr/local/i386elfgcc/bin/i386-elf-gdb
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LD = /usr/local/i386elfgcc/bin/i386-elf-ld
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# -g: Use debugging symbols in gcc
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CFLAGS = -g
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# First rule is run by default
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os-image.bin: boot/bootsect.bin kernel.bin
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cat $^ > os-image.bin
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cat $^ > $@
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# '--oformat binary' deletes all symbols as a collateral, so we don't need
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# to 'strip' them manually on this case
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kernel.bin: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
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${LD} -o $@ -Ttext 0x1000 $^ --oformat binary
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# Used for debugging purposes
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kernel.elf: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^
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${LD} -o $@ -Ttext 0x1000 $^
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run: os-image.bin
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qemu-system-i386 -fda os-image.bin
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# Open the connection to qemu and load our kernel-object file with symbols
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debug: os-image.bin kernel.elf
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qemu-system-i386 -s -fda os-image.bin &
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qemu-system-i386 -s -S -fda os-image.bin &
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${GDB} -ex "target remote localhost:1234" -ex "symbol-file kernel.elf"
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# Generic rules for wildcards
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@ -6,28 +6,29 @@ OBJ = ${C_SOURCES:.c=.o cpu/interrupt.o}
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# Change this if your cross-compiler is somewhere else
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CC = /usr/local/i386elfgcc/bin/i386-elf-gcc
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GDB = /usr/local/i386elfgcc/bin/i386-elf-gdb
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LD = /usr/local/i386elfgcc/bin/i386-elf-ld
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# -g: Use debugging symbols in gcc
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CFLAGS = -g
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# First rule is run by default
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os-image.bin: boot/bootsect.bin kernel.bin
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cat $^ > os-image.bin
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cat $^ > $@
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# '--oformat binary' deletes all symbols as a collateral, so we don't need
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# to 'strip' them manually on this case
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kernel.bin: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
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${LD} -o $@ -Ttext 0x1000 $^ --oformat binary
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# Used for debugging purposes
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kernel.elf: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^
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${LD} -o $@ -Ttext 0x1000 $^
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run: os-image.bin
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qemu-system-i386 -fda os-image.bin
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# Open the connection to qemu and load our kernel-object file with symbols
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debug: os-image.bin kernel.elf
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qemu-system-i386 -s -fda os-image.bin -d guest_errors,int &
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qemu-system-i386 -s -S -fda os-image.bin -d guest_errors,int &
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${GDB} -ex "target remote localhost:1234" -ex "symbol-file kernel.elf"
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# Generic rules for wildcards
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@ -6,28 +6,29 @@ OBJ = ${C_SOURCES:.c=.o cpu/interrupt.o}
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# Change this if your cross-compiler is somewhere else
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CC = /usr/local/i386elfgcc/bin/i386-elf-gcc
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GDB = /usr/local/i386elfgcc/bin/i386-elf-gdb
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LD = /usr/local/i386elfgcc/bin/i386-elf-ld
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# -g: Use debugging symbols in gcc
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CFLAGS = -g
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# First rule is run by default
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os-image.bin: boot/bootsect.bin kernel.bin
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cat $^ > os-image.bin
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cat $^ > $@
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# '--oformat binary' deletes all symbols as a collateral, so we don't need
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# to 'strip' them manually on this case
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kernel.bin: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
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${LD} -o $@ -Ttext 0x1000 $^ --oformat binary
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# Used for debugging purposes
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kernel.elf: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^
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${LD} -o $@ -Ttext 0x1000 $^
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run: os-image.bin
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qemu-system-i386 -fda os-image.bin
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# Open the connection to qemu and load our kernel-object file with symbols
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debug: os-image.bin kernel.elf
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qemu-system-i386 -s -fda os-image.bin -d guest_errors,int &
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qemu-system-i386 -s -S -fda os-image.bin -d guest_errors,int &
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${GDB} -ex "target remote localhost:1234" -ex "symbol-file kernel.elf"
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# Generic rules for wildcards
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@ -6,28 +6,29 @@ OBJ = ${C_SOURCES:.c=.o cpu/interrupt.o}
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# Change this if your cross-compiler is somewhere else
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CC = /usr/local/i386elfgcc/bin/i386-elf-gcc
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GDB = /usr/local/i386elfgcc/bin/i386-elf-gdb
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LD = /usr/local/i386elfgcc/bin/i386-elf-ld
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# -g: Use debugging symbols in gcc
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CFLAGS = -g
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# First rule is run by default
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os-image.bin: boot/bootsect.bin kernel.bin
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cat $^ > os-image.bin
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cat $^ > $@
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# '--oformat binary' deletes all symbols as a collateral, so we don't need
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# to 'strip' them manually on this case
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kernel.bin: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
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${LD} -o $@ -Ttext 0x1000 $^ --oformat binary
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# Used for debugging purposes
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kernel.elf: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^
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${LD} -o $@ -Ttext 0x1000 $^
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run: os-image.bin
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qemu-system-i386 -fda os-image.bin
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# Open the connection to qemu and load our kernel-object file with symbols
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debug: os-image.bin kernel.elf
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qemu-system-i386 -s -fda os-image.bin -d guest_errors,int &
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qemu-system-i386 -s -S -fda os-image.bin -d guest_errors,int &
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${GDB} -ex "target remote localhost:1234" -ex "symbol-file kernel.elf"
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# Generic rules for wildcards
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|
@ -6,29 +6,30 @@ OBJ = ${C_SOURCES:.c=.o cpu/interrupt.o}
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# Change this if your cross-compiler is somewhere else
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CC = /usr/local/i386elfgcc/bin/i386-elf-gcc
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GDB = /usr/local/i386elfgcc/bin/i386-elf-gdb
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LD = /usr/local/i386elfgcc/bin/i386-elf-ld
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# -g: Use debugging symbols in gcc
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CFLAGS = -g -m32 -nostdlib -nostdinc -fno-builtin -fno-stack-protector -nostartfiles -nodefaultlibs \
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-Wall -Wextra -Werror
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# First rule is run by default
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os-image.bin: boot/bootsect.bin kernel.bin
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cat $^ > os-image.bin
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cat $^ > $@
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# '--oformat binary' deletes all symbols as a collateral, so we don't need
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# to 'strip' them manually on this case
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kernel.bin: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
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${LD} -o $@ -Ttext 0x1000 $^ --oformat binary
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# Used for debugging purposes
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kernel.elf: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^
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${LD} -o $@ -Ttext 0x1000 $^
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run: os-image.bin
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qemu-system-i386 -fda os-image.bin
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# Open the connection to qemu and load our kernel-object file with symbols
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debug: os-image.bin kernel.elf
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qemu-system-i386 -s -fda os-image.bin -d guest_errors,int &
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qemu-system-i386 -s -S -fda os-image.bin -d guest_errors,int &
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${GDB} -ex "target remote localhost:1234" -ex "symbol-file kernel.elf"
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# Generic rules for wildcards
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|
@ -6,29 +6,30 @@ OBJ = ${C_SOURCES:.c=.o cpu/interrupt.o}
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# Change this if your cross-compiler is somewhere else
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CC = /usr/local/i386elfgcc/bin/i386-elf-gcc
|
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GDB = /usr/local/i386elfgcc/bin/i386-elf-gdb
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||||
LD = /usr/local/i386elfgcc/bin/i386-elf-ld
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# -g: Use debugging symbols in gcc
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CFLAGS = -g -m32 -nostdlib -nostdinc -fno-builtin -fno-stack-protector -nostartfiles -nodefaultlibs \
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-Wall -Wextra -Werror
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|
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# First rule is run by default
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os-image.bin: boot/bootsect.bin kernel.bin
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cat $^ > os-image.bin
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cat $^ > $@
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|
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# '--oformat binary' deletes all symbols as a collateral, so we don't need
|
||||
# to 'strip' them manually on this case
|
||||
kernel.bin: boot/kernel_entry.o ${OBJ}
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||||
i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
|
||||
${LD} -o $@ -Ttext 0x1000 $^ --oformat binary
|
||||
|
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# Used for debugging purposes
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kernel.elf: boot/kernel_entry.o ${OBJ}
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i386-elf-ld -o $@ -Ttext 0x1000 $^
|
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${LD} -o $@ -Ttext 0x1000 $^
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|
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run: os-image.bin
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qemu-system-i386 -fda os-image.bin
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||||
|
||||
# Open the connection to qemu and load our kernel-object file with symbols
|
||||
debug: os-image.bin kernel.elf
|
||||
qemu-system-i386 -s -fda os-image.bin -d guest_errors,int &
|
||||
qemu-system-i386 -s -S -fda os-image.bin -d guest_errors,int &
|
||||
${GDB} -ex "target remote localhost:1234" -ex "symbol-file kernel.elf"
|
||||
|
||||
# Generic rules for wildcards
|
||||
|
@ -6,28 +6,29 @@ OBJ = ${C_SOURCES:.c=.o cpu/interrupt.o}
|
||||
# Change this if your cross-compiler is somewhere else
|
||||
CC = /usr/local/i386elfgcc/bin/i386-elf-gcc
|
||||
GDB = /usr/local/i386elfgcc/bin/i386-elf-gdb
|
||||
LD = /usr/local/i386elfgcc/bin/i386-elf-ld
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||||
# -g: Use debugging symbols in gcc
|
||||
CFLAGS = -g -ffreestanding -Wall -Wextra -fno-exceptions -m32
|
||||
|
||||
# First rule is run by default
|
||||
os-image.bin: boot/bootsect.bin kernel.bin
|
||||
cat $^ > os-image.bin
|
||||
cat $^ > $@
|
||||
|
||||
# '--oformat binary' deletes all symbols as a collateral, so we don't need
|
||||
# to 'strip' them manually on this case
|
||||
kernel.bin: boot/kernel_entry.o ${OBJ}
|
||||
i386-elf-ld -o $@ -Ttext 0x1000 $^ --oformat binary
|
||||
${LD} -o $@ -Ttext 0x1000 $^ --oformat binary
|
||||
|
||||
# Used for debugging purposes
|
||||
kernel.elf: boot/kernel_entry.o ${OBJ}
|
||||
i386-elf-ld -o $@ -Ttext 0x1000 $^
|
||||
${LD} -o $@ -Ttext 0x1000 $^
|
||||
|
||||
run: os-image.bin
|
||||
qemu-system-i386 -fda os-image.bin
|
||||
|
||||
# Open the connection to qemu and load our kernel-object file with symbols
|
||||
debug: os-image.bin kernel.elf
|
||||
qemu-system-i386 -s -fda os-image.bin -d guest_errors,int &
|
||||
qemu-system-i386 -s -S -fda os-image.bin -d guest_errors,int &
|
||||
${GDB} -ex "target remote localhost:1234" -ex "symbol-file kernel.elf"
|
||||
|
||||
# Generic rules for wildcards
|
||||
|
Loading…
Reference in New Issue
Block a user