Finish Chapter 14

Implements code chunks, a couple of basic opcodes, constants, and
basic execution of those opcodes.

Signed-off-by: Daniel Henry <iamdanhenry@gmail.com>
This commit is contained in:
2025-08-21 16:14:22 -05:00
commit 44c7626cd7
13 changed files with 286 additions and 0 deletions

7
.gitignore vendored Normal file
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.cache
compile_commands.json
.clang-format
build/
obj/
bin/

8
.ignore Normal file
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.cache
.ignore
compile_commands.json
build/
obj/
bin/
.git/

50
Makefile Normal file
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# Compiler and flags
CC := clang
CFLAGS := -Wall -Wextra -g -xc -std=c99 -I./include
LDFLAGS :=
EXEC_NAME := $(notdir $(shell dirname $(realpath $(lastword $(MAKEFILE_LIST)))))
# Directories
SRC_DIR := src
OBJ_DIR := obj
BIN_DIR := bin
# Find all source files recursively
SRCS := $(shell find $(SRC_DIR) -name '*.c')
# Generate object file paths by replacing src/ with obj/ and .c with .o
OBJS := $(SRCS:$(SRC_DIR)/%.c=$(OBJ_DIR)/%.o)
# Final executable name
EXEC := $(BIN_DIR)/$(EXEC_NAME)
# First rule is the default rule
.PHONY: all
all: $(EXEC)
# Rule to create directories if they don't exist
$(BIN_DIR) $(OBJ_DIR):
mkdir -p $@
# Rule to create object files
$(OBJ_DIR)/%.o: $(SRC_DIR)/%.c | $(OBJ_DIR)
@mkdir -p $(dir $@)
$(CC) $(CFLAGS) -c $< -o $@
# Rule to create the executable
$(EXEC): $(OBJS) | $(BIN_DIR)
$(CC) $(OBJS) $(LDFLAGS) -o $@
# Clean rule to remove generated files
.PHONY: clean
clean:
rm -rf $(OBJ_DIR) $(BIN_DIR)
# Debug rule to print variables
.PHONY: debug
debug:
@echo "Source files:" $(SRCS)
@echo "Object files:" $(OBJS)
.PHONY: compiledb
bear: clean
bear -- make

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include/chunk.h Normal file
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#ifndef clox_chunk_h
#define clox_chunk_h
#include "common.h"
#include "value.h"
typedef enum {
OP_CONSTANT,
OP_RETURN,
} OpCode;
typedef struct {
int count;
int capacity;
uint8_t *code;
int *lines;
ValueArray constants;
} Chunk;
void initChunk(Chunk *chunk);
void freeChunk(Chunk *chunk);
void writeChunk(Chunk *chunk, uint8_t byte, int line);
int addConstant(Chunk *chunk, Value value);
#endif /* clox_chunk_h */

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include/common.h Normal file
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#ifndef clox_common_h
#define clox_common_h
#include <stdbool.h>
#include <stddef.h>
#include <stdint.h>
#endif

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include/debug.h Normal file
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#ifndef clox_debug_h
#define clox_debug_h
#include "chunk.h"
void disassembleChunk(Chunk *chunk, const char *name);
int disassembleInstruction(Chunk *chunk, int offset);
#endif /* clox_debug_h */

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include/memory.h Normal file
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#ifndef clox_memory_h
#define clox_memory_h
#include "common.h"
#define GROW_CAPACITY(capacity) ((capacity) < 8 ? 8 : (capacity) * 2)
#define GROW_ARRAY(type, pointer, oldCount, newCount) \
(type *)reallocate(pointer, sizeof(type) * (oldCount), \
sizeof(type) * (newCount))
#define FREE_ARRAY(type, pointer, oldCount) \
reallocate(pointer, sizeof(type) * oldCount, 0);
void *reallocate(void *pointer, size_t oldSize, size_t newSize);
#endif /* clox_memory_h */

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include/value.h Normal file
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#ifndef clox_value_h
#define clox_value_h
#include "common.h"
typedef double Value;
typedef struct {
int capacity;
int count;
Value *values;
} ValueArray;
void initValueArray(ValueArray *array);
void writeValueArray(ValueArray *array, Value value);
void freeValueArray(ValueArray *array);
void printValue(Value value);
#endif /* clox_value_h */

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src/chunk.c Normal file
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#include "chunk.h"
#include "memory.h"
#include <stdlib.h>
void initChunk(Chunk *chunk) {
chunk->count = 0;
chunk->capacity = 0;
chunk->code = NULL;
chunk->lines = NULL;
initValueArray(&chunk->constants);
}
void freeChunk(Chunk *chunk) {
FREE_ARRAY(uint8_t, chunk->code, chunk->capacity);
FREE_ARRAY(int, chunk->lines, chunk->capacity);
freeValueArray(&chunk->constants);
initChunk(chunk);
}
void writeChunk(Chunk *chunk, uint8_t byte, int line) {
if (chunk->capacity < chunk->count + 1) {
int oldCapacity = chunk->capacity;
chunk->capacity = GROW_CAPACITY(oldCapacity);
chunk->code =
GROW_ARRAY(uint8_t, chunk->code, oldCapacity, chunk->capacity);
chunk->lines = GROW_ARRAY(int, chunk->lines, oldCapacity, chunk->capacity);
}
chunk->code[chunk->count] = byte;
chunk->lines[chunk->count] = line;
chunk->count++;
}
int addConstant(Chunk *chunk, Value value) {
writeValueArray(&chunk->constants, value);
return chunk->constants.count - 1;
}

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src/debug.c Normal file
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#include "debug.h"
#include <stdio.h>
#include "chunk.h"
#include "value.h"
void disassembleChunk(Chunk *chunk, const char *name) {
printf("== %s ==\n", name);
for (int offset = 0; offset < chunk->count;) {
offset = disassembleInstruction(chunk, offset);
}
}
static int constantInstruction(const char *name, Chunk *chunk, int offset) {
uint8_t constant = chunk->code[offset + 1];
printf("%-16s %4d '", name, constant);
printValue(chunk->constants.values[constant]);
printf("'\n");
return offset + 2;
}
static int simpleInstruction(const char *name, int offset) {
printf("%s\n", name);
return offset + 1;
}
int disassembleInstruction(Chunk *chunk, int offset) {
printf("%04d ", offset);
if (offset > 0 && chunk->lines[offset] == chunk->lines[offset - 1]) {
printf(" | ");
} else {
printf("%4d ", chunk->lines[offset]);
}
uint8_t instruction = chunk->code[offset];
switch (instruction) {
case OP_CONSTANT:
return constantInstruction("OP_CONSTANT", chunk, offset);
case OP_RETURN:
return simpleInstruction("OP_RETURN", offset);
default:
printf("Unknownopcode %d\n", instruction);
return offset + 1;
}
}

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src/main.c Normal file
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#include "chunk.h"
#include "common.h"
#include "debug.h"
int main(int argc, const char *argv[]) {
Chunk chunk;
initChunk(&chunk);
int constant = addConstant(&chunk, 1.2);
writeChunk(&chunk, OP_CONSTANT, 123);
writeChunk(&chunk, constant, 123);
writeChunk(&chunk, OP_RETURN, 123);
disassembleChunk(&chunk, "test chunk");
freeChunk(&chunk);
return 0;
}

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src/memory.c Normal file
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#include "memory.h"
#include <stdlib.h>
void *reallocate(void *pointer, size_t oldSize, size_t newSize) {
if (newSize == 0) {
free(pointer);
return NULL;
}
void *result = realloc(pointer, newSize);
if (result == NULL) {
exit(1);
}
return result;
}

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src/value.c Normal file
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#include <stdio.h>
#include "memory.h"
#include "value.h"
void initValueArray(ValueArray *array) {
array->values = NULL;
array->capacity = 0;
array->count = 0;
}
void writeValueArray(ValueArray *array, Value value) {
if (array->capacity < array->count + 1) {
int oldCapacity = array->capacity;
array->capacity = GROW_CAPACITY(oldCapacity);
array->values =
GROW_ARRAY(Value, array->values, oldCapacity, array->capacity);
}
array->values[array->count] = value;
array->count++;
}
void freeValueArray(ValueArray *array) {
FREE_ARRAY(Value, array->values, array->capacity);
initValueArray(array);
}
void printValue(Value value) {
printf("%g", value);
}