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|
#include "ccc.h"
#include "codegen.h"
#include "scope.h"
#include "register.h"
#include <stdlib.h>
#include <stdio.h>
#include <string.h>
#define CGEN_PANIC(format, ...) {\
fprintf(\
stderr,\
"ccc: code gen error: " format "\n" __VA_OPT__(,)\
__VA_ARGS__);\
exit(1);\
}
struct lval_def {
struct storage_location loc;
unsigned long long sz;
};
static const struct storage_location RV_LOC = {
.type = STO_REG,
.reg = &RAX,
};
static const struct storage_location MULDIV_LOC = RV_LOC;
static const struct storage_location MULDIV_OVERFLOW_LOC = {
.type = STO_REG,
.reg = &RDX,
};
#define RETURN_LABEL_FMT "%s@coda"
#define FULL_REG_SZ 8
static struct scope* scope;
static const struct fn_decl_node* active_fn;
static struct lval_def allocate_register(unsigned long long sz) {
return (struct lval_def) {
.loc = {
.type = STO_REG,
.reg = &RAX, /* TODO: no real register coloring happening LOL */
},
.sz = sz,
};
}
static struct lval_def allocate_stack(FILE* outfile, unsigned long long sz) {
fprintf(outfile, "\tsub rsp, %llu\n", sz);
scope->bp_offset += sz;
return (struct lval_def) {
.loc = {
.type = STO_STACK,
.bp_offset = scope->bp_offset,
},
.sz = sz,
};
}
static struct lval_def allocate_temporary(
FILE* outfile,
unsigned long long sz
) {
return allocate_stack(outfile, sz);
}
static void deallocate_temporary(FILE* outfile, const struct lval_def* tmp) {
if (tmp->loc.type == STO_STACK) {
fprintf(outfile, "\tadd rsp, %llu\n", tmp->sz);
scope->bp_offset -= tmp->sz;
}
}
static void emit_storage_loc(
FILE* outfile,
const struct storage_location* loc,
unsigned long long sz
) {
switch (loc->type) {
case STO_LABEL:
fprintf(outfile, "%s", loc->label);
break;
case STO_FN:
fprintf(outfile, "%s", loc->decl->name);
break;
case STO_REG:
if (sz > 4) fprintf(outfile, "%s", loc->reg->qword);
else if (sz > 2) fprintf(outfile, "%s", loc->reg->dword);
else if (sz > 1) fprintf(outfile, "%s", loc->reg->word);
else fprintf(outfile, "%s", loc->reg->byte);
break;
case STO_STACK:
if (loc->bp_offset < 0)
fprintf(outfile, "[rbp + %lld]", -loc->bp_offset);
else if (loc->bp_offset > 0)
fprintf(outfile, "[rbp - %lld]", loc->bp_offset);
else
fprintf(outfile, "[rbp]");
break;
case STO_IMM:
fprintf(outfile, "%llu", loc->value);
break;
}
}
static bool locs_equal(
const struct storage_location* a,
const struct storage_location* b
) {
if (a->type != b->type) return false;
switch (a->type) {
case STO_IMM:
return a->value == b->value;
case STO_REG:
return strcmp(a->reg->qword, b->reg->qword) == 0;
case STO_STACK:
return a->bp_offset == b->bp_offset;
case STO_LABEL:
return strcmp(a->label, b->label) == 0;
case STO_FN:
return a->decl == b->decl;
}
CGEN_PANIC("unhandled storage type case");
}
static void emit_size_const(FILE* outfile, unsigned long long sz) {
if (sz > 4) fprintf(outfile, "qword ");
else if (sz > 2) fprintf(outfile, "dword ");
else if (sz > 1) fprintf(outfile, "word ");
else fprintf(outfile, "byte ");
}
static void emit_mov(
FILE* outfile,
const struct lval_def* dst,
const struct storage_location* src
) {
/* first optimization: if dst == src, emit nothing */
if (locs_equal(&dst->loc, src)) return;
switch (dst->loc.type) {
case STO_REG:
if (src->type == STO_REG && dst->sz < 4) {
fprintf(outfile, "\tmovzx ");
emit_storage_loc(outfile, &dst->loc, FULL_REG_SZ);
} else {
fprintf(outfile, "\tmov ");
emit_storage_loc(outfile, &dst->loc, dst->sz);
}
fprintf(outfile, ", ");
emit_storage_loc(outfile, src, dst->sz);
break;
case STO_STACK:
if (src->type == STO_STACK) {
/* `mov mem, mem` is illegal in x86_64 */
struct lval_def tmp = allocate_register(dst->sz);
emit_mov(outfile, &tmp, src);
emit_mov(outfile, dst, &tmp.loc);
return;
}
fprintf(outfile, "\tmov ");
if (src->type == STO_IMM) emit_size_const(outfile, dst->sz);
emit_storage_loc(outfile, &dst->loc, dst->sz);
fprintf(outfile, ", ");
emit_storage_loc(outfile, src, dst->sz);
break;
case STO_LABEL:
CGEN_PANIC("can't move value into label %s", dst->loc.label);
case STO_FN:
CGEN_PANIC(
"can't move value into function %s", dst->loc.decl->name);
case STO_IMM:
CGEN_PANIC(
"can't move value into immediate value %lld", dst->loc.value);
}
fprintf(outfile, "\n");
}
/* TODO: move this utility to the type checker and use evaluated_type */
static unsigned long long get_type_size(const struct type_node* type) {
if (type->ptr_level > 0) return PTR_SIZE;
return type->def->sz;
}
static inline struct lval_def make_stack_lval(
FILE* outfile,
const struct type_node* type
) {
return allocate_stack(outfile, get_type_size(type));
}
static void emit_expr(
FILE* outfile,
const struct expr_node* node,
const struct lval_def* dst);
static void emit_int_lit(
FILE* outfile,
const struct int_lit_node* node,
const struct lval_def* dst
) {
if (dst != NULL)
emit_mov(
outfile,
dst,
&(struct storage_location) {
.type = STO_IMM,
.value = node->val,
});
}
static void emit_float_lit(
FILE* outfile,
const struct float_lit_node* node,
const struct lval_def* dst
) {
if (dst != NULL) {
CGEN_PANIC("float literals are not implemented");
}
}
static void emit_char_lit(
FILE* outfile,
const struct char_lit_node* node,
const struct lval_def* dst
) {
if (dst != NULL) {
emit_mov(
outfile,
dst,
&(struct storage_location) {
.type = STO_IMM,
.value = (unsigned long long) node->val
});
}
}
static void emit_str_lit(
FILE* outfile,
const struct str_lit_node* node,
const struct lval_def* dst
) {
if (dst != NULL) {
CGEN_PANIC("string literals are not implemented");
}
}
static struct var_def get_var(const char* name) {
struct var_def var_def;
if (!scope_get_var(scope, &var_def, name))
CGEN_PANIC("reference to undefined variable %s", name);
return var_def;
}
static void emit_var_ref(
FILE* outfile,
const struct var_ref_node* node,
const struct lval_def* dst
) {
if (dst != NULL) {
struct var_def var_def = get_var(node->ident);
emit_mov(outfile, dst, &var_def.loc);
}
}
static void emit_stmt(FILE* outfile, const struct stmt_node* node);
static struct var_def emit_var_decl(
FILE* outfile,
const struct var_decl_node* node
) {
/* TODO: type checker should define vars, we just set their loc */
struct lval_def var_dst = make_stack_lval(outfile, &node->type);
struct var_def var_def = {
.name = node->ident,
.loc = var_dst.loc,
.sz = var_dst.sz,
};
scope_define_var(scope, var_def);
return var_def;
}
static struct lval_def emit_lval(
FILE* outfile,
const struct lval_node* node
) {
struct var_def var_def;
switch (node->type) {
case LVAL_VAR_DECL:
var_def = emit_var_decl(outfile, &node->inner.var_decl);
return (struct lval_def) {.loc = var_def.loc, .sz = var_def.sz};
case LVAL_VAR_REF:
var_def = get_var(node->inner.var_ref.ident);
return (struct lval_def) {.loc = var_def.loc, .sz = var_def.sz};
}
CGEN_PANIC("unknown lval type: %d", node->type);
}
static void emit_assignment(
FILE* outfile,
const struct assign_node* node,
const struct lval_def* dst
) {
const struct lval_def lval_def = emit_lval(outfile, &node->lval);
emit_expr(outfile, node->rval, &lval_def);
if (dst != NULL) emit_mov(outfile, dst, &lval_def.loc);
}
static void emit_call(
FILE* outfile,
const struct call_node* node,
const struct lval_def* dst
) {
unsigned long long orig_bp_offset = scope->bp_offset;
unsigned long long arg_bp_offset = orig_bp_offset;
struct args_decl_node* arg_decl = node->called_fn_ref->args;
struct args_eval_node* arg_eval = node->args;
while (arg_decl != NULL && arg_eval != NULL) {
struct lval_def arg_dst =
make_stack_lval(outfile, &arg_decl->decl->type);
emit_expr(outfile, arg_eval->expr, &arg_dst);
arg_decl = arg_decl->next;
arg_eval = arg_eval->next;
}
if (arg_decl != NULL)
CGEN_PANIC(
"too many arguments to function %s",
node->called_fn_ref->name);
if (arg_eval != NULL)
CGEN_PANIC(
"missing arguments to function %s",
node->called_fn_ref->name);
unsigned char arg_regnum = 0;
arg_decl = node->called_fn_ref->args;
while (arg_decl != NULL) {
unsigned long long type_sz = get_type_size(&arg_decl->decl->type);
arg_bp_offset += type_sz;
struct lval_def arg_dst;
if (arg_regnum < CC_N_REGS)
arg_dst = (struct lval_def) {
.loc = (struct storage_location) {
.type = STO_REG,
.reg = CALLING_CONV[arg_regnum++],
},
.sz = type_sz,
};
else
arg_dst = make_stack_lval(outfile, &arg_decl->decl->type);
emit_mov(outfile, &arg_dst, &(struct storage_location) {
.type = STO_STACK,
.bp_offset = arg_bp_offset,
});
arg_decl = arg_decl->next;
}
fprintf(outfile, "\tcall %s\n", node->called_fn_ref->name);
if (dst != NULL) {
if (get_type_size(&node->called_fn_ref->return_type) == 0)
CGEN_PANIC("can't assign the result of a void function");
emit_mov(outfile, dst, &RV_LOC);
}
/* mass-pop our argument temporaries off the stack */
scope->bp_offset = orig_bp_offset;
if (orig_bp_offset > 0)
fprintf(outfile, "\tlea rsp, [rbp - %llu]\n", orig_bp_offset);
else
fprintf(outfile, "\tmov rsp, rbp\n");
}
static void emit_unary(
FILE* outfile,
const struct unary_node* node,
const struct lval_def* dst
) {
emit_expr(outfile, node->expr, dst);
if (dst == NULL) return;
switch (node->op) {
case UNARY_NEG:
fprintf(outfile, "\tneg ");
if (dst->loc.type == STO_STACK) emit_size_const(outfile, dst->sz);
emit_storage_loc(outfile, &dst->loc, dst->sz);
fprintf(outfile, "\n");
break;
}
}
/* TODO: tighten up/enforce with regard to up-casting smaller operands */
static void emit_binary(
FILE* outfile,
const struct binary_node* node,
const struct lval_def* dst
) {
if (dst == NULL) {
emit_expr(outfile, node->lhs, NULL);
emit_expr(outfile, node->rhs, NULL);
return;
}
/* LHS goes in RAX explicitly because imul and idiv are weird */
struct lval_def rhs_dst = allocate_temporary(outfile, dst->sz);
emit_expr(outfile, node->rhs, &rhs_dst);
struct lval_def lhs_dst = (struct lval_def) {
.loc = MULDIV_LOC,
.sz = dst->sz,
};
emit_expr(outfile, node->lhs, &lhs_dst);
switch (node->op) {
case BINARY_ADD:
fprintf(outfile, "\tadd ");
emit_storage_loc(outfile, &lhs_dst.loc, dst->sz);
fprintf(outfile, ", ");
break;
case BINARY_SUB:
fprintf(outfile, "\tsub ");
emit_storage_loc(outfile, &lhs_dst.loc, dst->sz);
fprintf(outfile, ", ");
break;
case BINARY_MUL:
fprintf(outfile, "\timul ");
if (rhs_dst.loc.type == STO_STACK)
emit_size_const(outfile, dst->sz);
break;
case BINARY_DIV:
/* nothing in the top half reg */
fprintf(outfile, "\txor ");
emit_storage_loc(outfile, &MULDIV_OVERFLOW_LOC, FULL_REG_SZ);
fprintf(outfile, ", ");
emit_storage_loc(outfile, &MULDIV_OVERFLOW_LOC, FULL_REG_SZ);
fprintf(outfile, "\n");
fprintf(outfile, "\tidiv ");
if (rhs_dst.loc.type == STO_STACK)
emit_size_const(outfile, dst->sz);
break;
}
emit_storage_loc(outfile, &rhs_dst.loc, dst->sz);
fprintf(outfile, "\n");
/* TODO: deal with RDX overflow shit for imul and idiv */
emit_mov(outfile, dst, &lhs_dst.loc);
deallocate_temporary(outfile, &lhs_dst);
deallocate_temporary(outfile, &rhs_dst);
}
static void emit_expr(
FILE* outfile,
const struct expr_node* node,
const struct lval_def* dst
) {
switch (node->type) {
case EXPR_INT_LIT:
emit_int_lit(outfile, &node->inner.int_lit, dst);
break;
case EXPR_FLOAT_LIT:
emit_float_lit(outfile, &node->inner.float_lit, dst);
break;
case EXPR_CHAR_LIT:
emit_char_lit(outfile, &node->inner.char_lit, dst);
break;
case EXPR_STR_LIT:
emit_str_lit(outfile, &node->inner.str_lit, dst);
break;
case EXPR_VAR_REF:
emit_var_ref(outfile, &node->inner.var_ref, dst);
break;
case EXPR_ASSIGN:
emit_assignment(outfile, &node->inner.assign, dst);
break;
case EXPR_CALL:
emit_call(outfile, &node->inner.call, dst);
break;
case EXPR_UNARY:
emit_unary(outfile, &node->inner.unary, dst);
break;
case EXPR_BINARY:
emit_binary(outfile, &node->inner.binary, dst);
break;
}
}
static void emit_return(FILE* outfile, const struct return_node* node) {
if (active_fn == NULL) CGEN_PANIC("must be inside a function to return");
if (node->ret_val != NULL) {
if (active_fn->return_type.def->sz == 0)
CGEN_PANIC(
"returning a value from void function %s", active_fn->name);
emit_expr(
outfile,
node->ret_val,
&(struct lval_def) {
.loc = RV_LOC,
.sz = active_fn->return_type.def->sz,
});
} else if (active_fn->return_type.def->sz > 0) {
CGEN_PANIC(
"non-void function %s should return a value", active_fn->name);
}
fprintf(outfile, "\tjmp " RETURN_LABEL_FMT "\n", active_fn->name);
}
static void emit_group(FILE* outfile, const struct group_node* node) {
const struct stmt_node* body_node = node->head;
while (body_node != NULL) {
emit_stmt(outfile, body_node);
body_node = body_node->next;
}
}
static void emit_stmt_group(FILE* outfile, const struct group_node* node) {
if (node->scope->next_out != scope) CGEN_PANIC("scopes are misaligned");
scope = node->scope;
scope->bp_offset = scope->next_out->bp_offset; /* don't reset bp */
emit_group(outfile, node);
/* don't reset sp because alloca needs to work */
scope->next_out->bp_offset = scope->bp_offset;
scope = scope->next_out;
}
static void emit_stmt(FILE* outfile, const struct stmt_node* node) {
switch (node->type) {
case STMT_EMPTY:
break;
case STMT_VAR_DECL:
emit_var_decl(outfile, &node->inner.var_decl);
break;
case STMT_RETURN:
emit_return(outfile, &node->inner.return_);
break;
case STMT_EXPR:
emit_expr(outfile, &node->inner.expr, NULL);
break;
case STMT_GROUP:
emit_stmt_group(outfile, &node->inner.group);
break;
}
}
static void emit_fn_decl(FILE* outfile, const struct fn_decl_node* node) {
if (active_fn != NULL)
CGEN_PANIC(
"can't define function %s inside function %s",
node->name,
active_fn->name);
active_fn = node;
fprintf(outfile, "%s:\n", node->name);
fprintf(outfile, "\tpush rbp\n");
fprintf(outfile, "\tmov rbp, rsp\n");
if (node->scope->next_out != scope) CGEN_PANIC("scopes are misaligned");
scope = node->scope;
scope->bp_offset = 0;
long long spilled_bp_ofs = -16; // return address + old bp
unsigned char arg_regnum = 0;
struct args_decl_node* arg_decl = node->args;
while (arg_decl != NULL) {
struct lval_def arg_dst =
make_stack_lval(outfile, &arg_decl->decl->type);
scope_define_var(
scope,
(struct var_def) {
.name = arg_decl->decl->ident,
.loc = arg_dst.loc,
.sz = arg_dst.sz,
});
struct storage_location arg_src;
if (arg_regnum < CC_N_REGS) {
arg_src = (struct storage_location) {
.type = STO_REG,
.reg = CALLING_CONV[arg_regnum++]
};
} else {
arg_src = (struct storage_location) {
.type = STO_STACK,
.bp_offset = spilled_bp_ofs,
};
spilled_bp_ofs -= arg_dst.sz;
}
emit_mov(outfile, &arg_dst, &arg_src);
arg_decl = arg_decl->next;
}
emit_group(outfile, &node->body);
scope = scope->next_out;
fprintf(outfile, RETURN_LABEL_FMT ":\n", node->name);
fprintf(outfile, "\tmov rsp, rbp\n");
fprintf(outfile, "\tpop rbp\n");
fprintf(outfile, "\tret\n");
active_fn = NULL;
}
static void emit_root_node(FILE* outfile, const struct root_node* node) {
switch (node->type) {
case ROOT_FN_DECL:
emit_fn_decl(outfile, &node->inner.fn_decl);
break;
}
}
void emit_code(struct ast* ast, const char* path) {
FILE* outfile = fopen(path, "w");
if (outfile == NULL) CCC_PANIC;
scope = ast->root_scope;
fprintf(outfile, "section .text\n");
/* output all function declarations in the root scope as globals */
const struct root_node* node = ast->root_node;
for (; node != NULL; node = node->next) {
if (node->type != ROOT_FN_DECL) continue;
fprintf(outfile, "global %s\n", node->inner.fn_decl.name);
}
fprintf(outfile, "\n");
/* actual code body */
node = ast->root_node;
while (node != NULL) {
emit_root_node(outfile, node);
if (node->next != NULL) fprintf(outfile, "\n");
node = node->next;
}
fclose(outfile);
}
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